BOC v1.0: RS256 auth, Ledger integration, Prometheus metrics, CI/CD, backup

This commit is contained in:
Bernt
2026-07-28 23:08:32 +00:00
parent 0b4f160af1
commit af874040ca
11541 changed files with 1654104 additions and 1103 deletions
+679
View File
@@ -0,0 +1,679 @@
# Rollup core license
Rollup is released under the MIT license:
The MIT License (MIT)
Copyright (c) 2017 [these people](https://github.com/rollup/rollup/graphs/contributors)
Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
# Licenses of bundled dependencies
The published Rollup artifact additionally contains code with the following licenses:
MIT, ISC, 0BSD
# Bundled dependencies:
## @jridgewell/sourcemap-codec
License: MIT
By: Justin Ridgewell
Repository: git+https://github.com/jridgewell/sourcemaps.git
> Copyright 2024 Justin Ridgewell <justin@ridgewell.name>
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
> SOFTWARE.
---------------------------------------
## @rollup/pluginutils
License: MIT
By: Rich Harris
Repository: rollup/plugins
> The MIT License (MIT)
>
> Copyright (c) 2019 RollupJS Plugin Contributors (https://github.com/rollup/plugins/graphs/contributors)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## anymatch
License: ISC
By: Elan Shanker
Repository: https://github.com/micromatch/anymatch
> The ISC License
>
> Copyright (c) 2019 Elan Shanker, Paul Miller (https://paulmillr.com)
>
> Permission to use, copy, modify, and/or distribute this software for any
> purpose with or without fee is hereby granted, provided that the above
> copyright notice and this permission notice appear in all copies.
>
> THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
> WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
> MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
> ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
> WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
> ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR
> IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
---------------------------------------
## binary-extensions
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/binary-extensions
> MIT License
>
> Copyright (c) Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com)
> Copyright (c) Paul Miller (https://paulmillr.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## braces
License: MIT
By: Jon Schlinkert, Brian Woodward, Elan Shanker, Eugene Sharygin, hemanth.hm
Repository: micromatch/braces
> The MIT License (MIT)
>
> Copyright (c) 2014-present, Jon Schlinkert.
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## builtin-modules
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/builtin-modules
> MIT License
>
> Copyright (c) Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## chokidar
License: MIT
By: Paul Miller, Elan Shanker
Repository: git+https://github.com/paulmillr/chokidar.git
> The MIT License (MIT)
>
> Copyright (c) 2012-2019 Paul Miller (https://paulmillr.com), Elan Shanker
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the “Software”), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED “AS IS”, WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## date-time
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/date-time
> MIT License
>
> Copyright (c) Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## fill-range
License: MIT
By: Jon Schlinkert, Edo Rivai, Paul Miller, Rouven Weßling
Repository: jonschlinkert/fill-range
> The MIT License (MIT)
>
> Copyright (c) 2014-present, Jon Schlinkert.
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## flru
License: MIT
By: Luke Edwards
Repository: lukeed/flru
> MIT License
>
> Copyright (c) Luke Edwards <luke.edwards05@gmail.com> (lukeed.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## glob-parent
License: ISC
By: Gulp Team, Elan Shanker, Blaine Bublitz
Repository: gulpjs/glob-parent
> The ISC License
>
> Copyright (c) 2015, 2019 Elan Shanker
>
> Permission to use, copy, modify, and/or distribute this software for any
> purpose with or without fee is hereby granted, provided that the above
> copyright notice and this permission notice appear in all copies.
>
> THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
> WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
> MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
> ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
> WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
> ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR
> IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
---------------------------------------
## is-binary-path
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/is-binary-path
> MIT License
>
> Copyright (c) 2019 Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com), Paul Miller (https://paulmillr.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## is-extglob
License: MIT
By: Jon Schlinkert
Repository: jonschlinkert/is-extglob
> The MIT License (MIT)
>
> Copyright (c) 2014-2016, Jon Schlinkert
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## is-glob
License: MIT
By: Jon Schlinkert, Brian Woodward, Daniel Perez
Repository: micromatch/is-glob
> The MIT License (MIT)
>
> Copyright (c) 2014-2017, Jon Schlinkert.
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## is-number
License: MIT
By: Jon Schlinkert, Olsten Larck, Rouven Weßling
Repository: jonschlinkert/is-number
> The MIT License (MIT)
>
> Copyright (c) 2014-present, Jon Schlinkert.
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## is-reference
License: MIT
By: Rich Harris
Repository: git+https://github.com/Rich-Harris/is-reference.git
---------------------------------------
## locate-character
License: MIT
By: Rich Harris
Repository: git+https://gitlab.com/Rich-Harris/locate-character.git
---------------------------------------
## magic-string
License: MIT
By: Rich Harris
Repository: git+https://github.com/Rich-Harris/magic-string.git
> Copyright 2018 Rich Harris
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## normalize-path
License: MIT
By: Jon Schlinkert, Blaine Bublitz
Repository: jonschlinkert/normalize-path
> The MIT License (MIT)
>
> Copyright (c) 2014-2018, Jon Schlinkert.
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## parse-ms
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/parse-ms
> MIT License
>
> Copyright (c) Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## picocolors
License: ISC
By: Alexey Raspopov
Repository: alexeyraspopov/picocolors
> ISC License
>
> Copyright (c) 2021-2024 Oleksii Raspopov, Kostiantyn Denysov, Anton Verinov
>
> Permission to use, copy, modify, and/or distribute this software for any
> purpose with or without fee is hereby granted, provided that the above
> copyright notice and this permission notice appear in all copies.
>
> THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
> WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
> MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
> ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
> WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
> ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
> OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
---------------------------------------
## picomatch
License: MIT
By: Jon Schlinkert
Repository: micromatch/picomatch
> The MIT License (MIT)
>
> Copyright (c) 2017-present, Jon Schlinkert.
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## pretty-bytes
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/pretty-bytes
> MIT License
>
> Copyright (c) Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## pretty-ms
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/pretty-ms
> MIT License
>
> Copyright (c) Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## readdirp
License: MIT
By: Thorsten Lorenz, Paul Miller
Repository: git://github.com/paulmillr/readdirp.git
> MIT License
>
> Copyright (c) 2012-2019 Thorsten Lorenz, Paul Miller (https://paulmillr.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all
> copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
> SOFTWARE.
---------------------------------------
## signal-exit
License: ISC
By: Ben Coe
Repository: https://github.com/tapjs/signal-exit.git
> The ISC License
>
> Copyright (c) 2015-2023 Benjamin Coe, Isaac Z. Schlueter, and Contributors
>
> Permission to use, copy, modify, and/or distribute this software
> for any purpose with or without fee is hereby granted, provided
> that the above copyright notice and this permission notice
> appear in all copies.
>
> THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
> WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES
> OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE
> LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES
> OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
> WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
> ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
---------------------------------------
## time-zone
License: MIT
By: Sindre Sorhus
Repository: sindresorhus/time-zone
> MIT License
>
> Copyright (c) Sindre Sorhus <sindresorhus@gmail.com> (https://sindresorhus.com)
>
> Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
---------------------------------------
## to-regex-range
License: MIT
By: Jon Schlinkert, Rouven Weßling
Repository: micromatch/to-regex-range
> The MIT License (MIT)
>
> Copyright (c) 2015-present, Jon Schlinkert.
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.
---------------------------------------
## tslib
License: 0BSD
By: Microsoft Corp.
Repository: https://github.com/Microsoft/tslib.git
> Copyright (c) Microsoft Corporation.
>
> Permission to use, copy, modify, and/or distribute this software for any
> purpose with or without fee is hereby granted.
>
> THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
> REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
> AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
> INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
> LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
> OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
> PERFORMANCE OF THIS SOFTWARE.
---------------------------------------
## yargs-parser
License: ISC
By: Ben Coe
Repository: https://github.com/yargs/yargs-parser.git
> Copyright (c) 2016, Contributors
>
> Permission to use, copy, modify, and/or distribute this software
> for any purpose with or without fee is hereby granted, provided
> that the above copyright notice and this permission notice
> appear in all copies.
>
> THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
> WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES
> OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE
> LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES
> OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
> WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
> ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
+134
View File
@@ -0,0 +1,134 @@
<p align="center">
<a href="https://rollupjs.org/"><img src="https://rollupjs.org/rollup-logo.svg" width="150" /></a>
</p>
<p align="center">
<a href="https://www.npmjs.com/package/rollup">
<img src="https://img.shields.io/npm/v/rollup.svg" alt="npm version" >
</a>
<a href="https://nodejs.org/en/about/previous-releases">
<img src="https://img.shields.io/node/v/rollup.svg" alt="node compatibility">
</a>
<a href="https://packagephobia.com/result?p=rollup">
<img src="https://packagephobia.com/badge?p=rollup" alt="install size" >
</a>
<a href="https://codecov.io/gh/rollup/rollup">
<img src="https://codecov.io/gh/rollup/rollup/graph/badge.svg" alt="code coverage" >
</a>
<a href="#backers" alt="sponsors on Open Collective">
<img src="https://opencollective.com/rollup/backers/badge.svg" alt="backers" >
</a>
<a href="#sponsors" alt="Sponsors on Open Collective">
<img src="https://opencollective.com/rollup/sponsors/badge.svg" alt="sponsors" >
</a>
<a href="https://github.com/rollup/rollup/blob/master/LICENSE.md">
<img src="https://img.shields.io/npm/l/rollup.svg" alt="license">
</a>
<a href='https://is.gd/rollup_chat?utm_source=badge&utm_medium=badge&utm_campaign=pr-badge&utm_content=badge'>
<img src='https://img.shields.io/discord/466787075518365708?color=778cd1&label=chat' alt='Join the chat at https://is.gd/rollup_chat'>
</a>
</p>
<h1 align="center">Rollup</h1>
## Overview
Rollup is a module bundler for JavaScript which compiles small pieces of code into something larger and more complex, such as a library or application. It uses the standardized ES module format for code, instead of previous idiosyncratic solutions such as CommonJS and AMD. ES modules let you freely and seamlessly combine the most useful individual functions from your favorite libraries. Rollup can optimize ES modules for faster native loading in modern browsers, or output a legacy module format allowing ES module workflows today.
## Quick Start Guide
Install with `npm install --global rollup`. Rollup can be used either through a [command line interface](https://rollupjs.org/command-line-interface/) with an optional configuration file or else through its [JavaScript API](https://rollupjs.org/javascript-api/). Run `rollup --help` to see the available options and parameters. The starter project templates, [rollup-starter-lib](https://github.com/rollup/rollup-starter-lib) and [rollup-starter-app](https://github.com/rollup/rollup-starter-app), demonstrate common configuration options, and more detailed instructions are available throughout the [user guide](https://rollupjs.org/introduction/).
### Commands
These commands assume the entry point to your application is named main.js, and that you'd like all imports compiled into a single file named bundle.js.
For browsers:
```bash
# compile to a <script> containing a self-executing function
rollup main.js --format iife --name "myBundle" --file bundle.js
```
For Node.js:
```bash
# compile to a CommonJS module
rollup main.js --format cjs --file bundle.js
```
For both browsers and Node.js:
```bash
# UMD format requires a bundle name
rollup main.js --format umd --name "myBundle" --file bundle.js
```
## Why
Developing software is usually easier if you break your project into smaller separate pieces, since that often removes unexpected interactions and dramatically reduces the complexity of the problems you'll need to solve, and simply writing smaller projects in the first place [isn't necessarily the answer](https://medium.com/@Rich_Harris/small-modules-it-s-not-quite-that-simple-3ca532d65de4). Unfortunately, JavaScript has not historically included this capability as a core feature in the language.
This finally changed with ES modules support in JavaScript, which provides a syntax for importing and exporting functions and data so they can be shared between separate scripts. Most browsers and Node.js support ES modules. However, Node.js releases before 12.17 support ES modules only behind the `--experimental-modules` flag, and older browsers like Internet Explorer do not support ES modules at all. Rollup allows you to write your code using ES modules, and run your application even in environments that do not support ES modules natively. For environments that support them, Rollup can output optimized ES modules; for environments that don't, Rollup can compile your code to other formats such as CommonJS modules, AMD modules, and IIFE-style scripts. This means that you get to _write future-proof code_, and you also get the tremendous benefits of...
## Tree Shaking
In addition to enabling the use of ES modules, Rollup also statically analyzes and optimizes the code you are importing, and will exclude anything that isn't actually used. This allows you to build on top of existing tools and modules without adding extra dependencies or bloating the size of your project.
For example, with CommonJS, the _entire tool or library must be imported_.
```js
// import the entire utils object with CommonJS
var utils = require('node:utils');
var query = 'Rollup';
// use the ajax method of the utils object
utils.ajax('https://api.example.com?search=' + query).then(handleResponse);
```
But with ES modules, instead of importing the whole `utils` object, we can just import the one `ajax` function we need:
```js
// import the ajax function with an ES import statement
import { ajax } from 'node:utils';
var query = 'Rollup';
// call the ajax function
ajax('https://api.example.com?search=' + query).then(handleResponse);
```
Because Rollup includes the bare minimum, it results in lighter, faster, and less complicated libraries and applications. Since this approach is based on explicit `import` and `export` statements, it is vastly more effective than simply running an automated minifier to detect unused variables in the compiled output code.
## Compatibility
### Importing CommonJS
Rollup can import existing CommonJS modules [through a plugin](https://github.com/rollup/plugins/tree/master/packages/commonjs).
### Publishing ES Modules
To make sure your ES modules are immediately usable by tools that work with CommonJS such as Node.js and webpack, you can use Rollup to compile to UMD or CommonJS format, and then point to that compiled version with the `main` property in your `package.json` file. If your `package.json` file also has a `module` field, ES-module-aware tools like Rollup and [webpack](https://webpack.js.org/) will [import the ES module version](https://github.com/rollup/rollup/wiki/pkg.module) directly.
## Contributors
This project exists thanks to all the people who contribute. [[Contribute](CONTRIBUTING.md)]. <a href="https://github.com/rollup/rollup/graphs/contributors"><img src="https://opencollective.com/rollup/contributors.svg?width=890" /></a>. If you want to contribute yourself, head over to the [contribution guidelines](CONTRIBUTING.md).
## Backers
Thank you to all our backers! 🙏 [[Become a backer](https://opencollective.com/rollup#backer)]
<a href="https://opencollective.com/rollup#backers" target="_blank"><img src="https://opencollective.com/rollup/backers.svg?width=890"></a>
## Sponsors
Support this project by becoming a sponsor. Your logo will show up here with a link to your website. [[Become a sponsor](https://opencollective.com/rollup#sponsor)]
<a href="https://opencollective.com/rollup/sponsor/0/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/0/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/1/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/1/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/2/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/2/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/3/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/3/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/4/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/4/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/5/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/5/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/6/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/6/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/7/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/7/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/8/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/8/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/9/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/9/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/10/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/10/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/11/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/11/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/12/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/12/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/13/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/13/avatar.svg"></a> <a href="https://opencollective.com/rollup/sponsor/14/website" target="_blank"><img src="https://opencollective.com/rollup/sponsor/14/avatar.svg"></a>
## Special Sponsor
<a href="https://www.tngtech.com/en/index.html" target="_blank"><img src="https://avatars.githubusercontent.com/u/432256?s=200&v=4" alt="TNG Logo"/></a>
TNG has been supporting the work of [Lukas Taegert-Atkinson](https://github.com/lukastaegert) on Rollup since 2017.
## License
[MIT](https://github.com/rollup/rollup/blob/master/LICENSE.md)
Generated Vendored Executable
+1912
View File
File diff suppressed because one or more lines are too long
+65
View File
@@ -0,0 +1,65 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
const getLogFilter = filters => {
if (filters.length === 0)
return () => true;
const normalizedFilters = filters.map(filter => filter.split('&').map(subFilter => {
const inverted = subFilter[0] === '!';
if (inverted)
subFilter = subFilter.slice(1);
const [key, ...value] = subFilter.split(':');
return { inverted, key: key.split('.'), parts: value.join(':').split('*') };
}));
return (log) => {
nextIntersectedFilter: for (const intersectedFilters of normalizedFilters) {
for (const { inverted, key, parts } of intersectedFilters) {
const isFilterSatisfied = testFilter(log, key, parts);
if (inverted ? isFilterSatisfied : !isFilterSatisfied) {
continue nextIntersectedFilter;
}
}
return true;
}
return false;
};
};
const testFilter = (log, key, parts) => {
let rawValue = log;
for (let index = 0; index < key.length; index++) {
if (!rawValue) {
return false;
}
const part = key[index];
if (!(part in rawValue)) {
return false;
}
rawValue = rawValue[part];
}
let value = typeof rawValue === 'object' ? JSON.stringify(rawValue) : String(rawValue);
if (parts.length === 1) {
return value === parts[0];
}
if (!value.startsWith(parts[0])) {
return false;
}
value = value.slice(parts[0].length);
const lastPartIndex = parts.length - 1;
for (let index = 1; index < lastPartIndex; index++) {
const part = parts[index];
const position = value.indexOf(part);
if (position === -1) {
return false;
}
value = value.slice(position + part.length);
}
return value.endsWith(parts[lastPartIndex]);
};
export { getLogFilter };
+1
View File
@@ -0,0 +1 @@
{"type":"module"}
+12
View File
@@ -0,0 +1,12 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
import '../native.js';
export { parseAst, parseAstAsync } from './shared/parseAst.js';
import 'node:path';
+17
View File
@@ -0,0 +1,17 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
export { VERSION, defineConfig, rollup, watch } from './shared/node-entry.js';
import './shared/parseAst.js';
import '../native.js';
import 'node:path';
import 'path';
import 'node:process';
import 'node:perf_hooks';
import 'node:fs/promises';
File diff suppressed because it is too large Load Diff
+2124
View File
@@ -0,0 +1,2124 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
import { parse, parseAsync } from '../../native.js';
import { resolve, dirname, basename, extname } from 'node:path';
const ANY_SLASH_REGEX = /[/\\]/;
function relative(from, to) {
const fromParts = from.split(ANY_SLASH_REGEX).filter(Boolean);
const toParts = to.split(ANY_SLASH_REGEX).filter(Boolean);
if (fromParts[0] === '.')
fromParts.shift();
if (toParts[0] === '.')
toParts.shift();
while (fromParts[0] && toParts[0] && fromParts[0] === toParts[0]) {
fromParts.shift();
toParts.shift();
}
while (toParts[0] === '..' && fromParts.length > 0) {
toParts.shift();
fromParts.pop();
}
while (fromParts.pop()) {
toParts.unshift('..');
}
return toParts.join('/');
}
const BLANK = Object.freeze(Object.create(null));
const EMPTY_OBJECT = Object.freeze({});
const EMPTY_ARRAY = Object.freeze([]);
const EMPTY_SET = Object.freeze(new (class extends Set {
add() {
throw new Error('Cannot add to empty set');
}
})());
// This file is generated by scripts/generate-node-types.js.
// Do not edit this file directly.
const ArrowFunctionExpression = 'ArrowFunctionExpression';
const AwaitExpression = 'AwaitExpression';
const BlockStatement = 'BlockStatement';
const CallExpression = 'CallExpression';
const CatchClause = 'CatchClause';
const ExportDefaultDeclaration = 'ExportDefaultDeclaration';
const ExpressionStatement = 'ExpressionStatement';
const FunctionExpression = 'FunctionExpression';
const Identifier = 'Identifier';
const Literal = 'Literal';
const MemberExpression = 'MemberExpression';
const ObjectExpression = 'ObjectExpression';
const PanicError = 'PanicError';
const ParseError = 'ParseError';
const Program = 'Program';
const Property = 'Property';
const RestElement = 'RestElement';
const ReturnStatement = 'ReturnStatement';
const StaticBlock = 'StaticBlock';
const TemplateLiteral = 'TemplateLiteral';
const VariableDeclarator = 'VariableDeclarator';
/** @typedef {import('./types').Location} Location */
/**
* @param {import('./types').Range} range
* @param {number} index
*/
function rangeContains(range, index) {
return range.start <= index && index < range.end;
}
/**
* @param {string} source
* @param {import('./types').Options} [options]
*/
function getLocator(source, options = {}) {
const { offsetLine = 0, offsetColumn = 0 } = options;
let start = 0;
const ranges = source.split('\n').map((line, i) => {
const end = start + line.length + 1;
/** @type {import('./types').Range} */
const range = { start, end, line: i };
start = end;
return range;
});
let i = 0;
/**
* @param {string | number} search
* @param {number} [index]
* @returns {Location | undefined}
*/
function locator(search, index) {
if (typeof search === 'string') {
search = source.indexOf(search, index ?? 0);
}
if (search === -1) return undefined;
let range = ranges[i];
const d = search >= range.end ? 1 : -1;
while (range) {
if (rangeContains(range, search)) {
return {
line: offsetLine + range.line,
column: offsetColumn + search - range.start,
character: search
};
}
i += d;
range = ranges[i];
}
}
return locator;
}
/**
* @param {string} source
* @param {string | number} search
* @param {import('./types').Options} [options]
* @returns {Location | undefined}
*/
function locate(source, search, options) {
return getLocator(source, options)(search, options && options.startIndex);
}
function spaces(index) {
let result = '';
while (index--)
result += ' ';
return result;
}
function tabsToSpaces(value) {
return value.replace(/^\t+/, match => match.split('\t').join(' '));
}
const LINE_TRUNCATE_LENGTH = 120;
const MIN_CHARACTERS_SHOWN_AFTER_LOCATION = 10;
const ELLIPSIS = '...';
function getCodeFrame(source, line, column) {
let lines = source.split('\n');
// Needed if a plugin did not generate correct sourcemaps
if (line > lines.length)
return '';
const maxLineLength = Math.max(tabsToSpaces(lines[line - 1].slice(0, column)).length +
MIN_CHARACTERS_SHOWN_AFTER_LOCATION +
ELLIPSIS.length, LINE_TRUNCATE_LENGTH);
const frameStart = Math.max(0, line - 3);
let frameEnd = Math.min(line + 2, lines.length);
lines = lines.slice(frameStart, frameEnd);
while (!/\S/.test(lines[lines.length - 1])) {
lines.pop();
frameEnd -= 1;
}
const digits = String(frameEnd).length;
return lines
.map((sourceLine, index) => {
const isErrorLine = frameStart + index + 1 === line;
let lineNumber = String(index + frameStart + 1);
while (lineNumber.length < digits)
lineNumber = ` ${lineNumber}`;
let displayedLine = tabsToSpaces(sourceLine);
if (displayedLine.length > maxLineLength) {
displayedLine = `${displayedLine.slice(0, maxLineLength - ELLIPSIS.length)}${ELLIPSIS}`;
}
if (isErrorLine) {
const indicator = spaces(digits + 2 + tabsToSpaces(sourceLine.slice(0, column)).length) + '^';
return `${lineNumber}: ${displayedLine}\n${indicator}`;
}
return `${lineNumber}: ${displayedLine}`;
})
.join('\n');
}
const LOGLEVEL_SILENT = 'silent';
const LOGLEVEL_ERROR = 'error';
const LOGLEVEL_WARN = 'warn';
const LOGLEVEL_INFO = 'info';
const LOGLEVEL_DEBUG = 'debug';
const logLevelPriority = {
[LOGLEVEL_DEBUG]: 0,
[LOGLEVEL_INFO]: 1,
[LOGLEVEL_SILENT]: 3,
[LOGLEVEL_WARN]: 2
};
const ABSOLUTE_PATH_REGEX = /^(?:\/|(?:[A-Za-z]:)?[/\\|])/;
const RELATIVE_PATH_REGEX = /^\.?\.(\/|$)/;
function isAbsolute(path) {
return ABSOLUTE_PATH_REGEX.test(path);
}
function isRelative(path) {
return RELATIVE_PATH_REGEX.test(path);
}
const BACKSLASH_REGEX = /\\/g;
function normalize(path) {
return path.replace(BACKSLASH_REGEX, '/');
}
function printQuotedStringList(list, verbs) {
const isSingleItem = list.length <= 1;
const quotedList = list.map(item => `"${item}"`);
let output = isSingleItem
? quotedList[0]
: `${quotedList.slice(0, -1).join(', ')} and ${quotedList.slice(-1)[0]}`;
if (verbs) {
output += ` ${isSingleItem ? verbs[0] : verbs[1]}`;
}
return output;
}
function getAliasName(id) {
const base = basename(id);
return base.slice(0, Math.max(0, base.length - extname(id).length));
}
function relativeId(id) {
if (!isAbsolute(id))
return id;
return relative(resolve(), id);
}
function isPathFragment(name) {
// starting with "/", "./", "../", "C:/"
return (name[0] === '/' || (name[0] === '.' && (name[1] === '/' || name[1] === '.')) || isAbsolute(name));
}
const UPPER_DIR_REGEX = /^(\.\.\/)*\.\.$/;
function getImportPath(importerId, targetPath, stripJsExtension, ensureFileName) {
while (targetPath.startsWith('../')) {
targetPath = targetPath.slice(3);
importerId = '_/' + importerId;
}
let relativePath = normalize(relative(dirname(importerId), targetPath));
if (stripJsExtension && relativePath.endsWith('.js')) {
relativePath = relativePath.slice(0, -3);
}
if (ensureFileName) {
if (relativePath === '')
return '../' + basename(targetPath);
if (UPPER_DIR_REGEX.test(relativePath)) {
return [...relativePath.split('/'), '..', basename(targetPath)].join('/');
}
}
return relativePath ? (relativePath.startsWith('..') ? relativePath : './' + relativePath) : '.';
}
function isValidUrl(url) {
try {
new URL(url);
}
catch {
return false;
}
return true;
}
function getRollupUrl(snippet) {
return `https://rollupjs.org/${snippet}`;
}
function addTrailingSlashIfMissed(url) {
if (!url.endsWith('/')) {
return url + '/';
}
return url;
}
// troubleshooting
const URL_AVOIDING_EVAL = 'troubleshooting/#avoiding-eval';
const URL_NAME_IS_NOT_EXPORTED = 'troubleshooting/#error-name-is-not-exported-by-module';
const URL_THIS_IS_UNDEFINED = 'troubleshooting/#error-this-is-undefined';
const URL_TREATING_MODULE_AS_EXTERNAL_DEPENDENCY = 'troubleshooting/#warning-treating-module-as-external-dependency';
const URL_SOURCEMAP_IS_LIKELY_TO_BE_INCORRECT = 'troubleshooting/#warning-sourcemap-is-likely-to-be-incorrect';
// configuration-options
const URL_JSX = 'configuration-options/#jsx';
const URL_OUTPUT_AMD_ID = 'configuration-options/#output-amd-id';
const URL_OUTPUT_AMD_BASEPATH = 'configuration-options/#output-amd-basepath';
const URL_OUTPUT_DIR = 'configuration-options/#output-dir';
const URL_OUTPUT_EXPORTS = 'configuration-options/#output-exports';
const URL_OUTPUT_EXTEND = 'configuration-options/#output-extend';
const URL_OUTPUT_EXTERNALIMPORTATTRIBUTES = 'configuration-options/#output-externalimportattributes';
const URL_OUTPUT_FORMAT = 'configuration-options/#output-format';
const URL_OUTPUT_GENERATEDCODE = 'configuration-options/#output-generatedcode';
const URL_OUTPUT_GLOBALS = 'configuration-options/#output-globals';
const URL_OUTPUT_INLINEDYNAMICIMPORTS = 'configuration-options/#output-inlinedynamicimports';
const URL_OUTPUT_INTEROP = 'configuration-options/#output-interop';
const URL_OUTPUT_MANUALCHUNKS = 'configuration-options/#output-manualchunks';
const URL_OUTPUT_NAME = 'configuration-options/#output-name';
const URL_OUTPUT_SOURCEMAPBASEURL = 'configuration-options/#output-sourcemapbaseurl';
const URL_OUTPUT_SOURCEMAPFILE = 'configuration-options/#output-sourcemapfile';
const URL_PRESERVEENTRYSIGNATURES = 'configuration-options/#preserveentrysignatures';
const URL_TREESHAKE = 'configuration-options/#treeshake';
const URL_TREESHAKE_PURE = 'configuration-options/#pure';
const URL_TREESHAKE_NOSIDEEFFECTS = 'configuration-options/#no-side-effects';
const URL_TREESHAKE_MODULESIDEEFFECTS = 'configuration-options/#treeshake-modulesideeffects';
const URL_WATCH = 'configuration-options/#watch';
// es-module-syntax
const URL_SOURCE_PHASE_IMPORTS = 'es-module-syntax/#source-phase-import';
const URL_GENERATEBUNDLE = 'plugin-development/#generatebundle';
const URL_LOAD = 'plugin-development/#load';
const URL_TRANSFORM = 'plugin-development/#transform';
function error(base) {
throw base instanceof Error ? base : getRollupError(base);
}
function getRollupError(base) {
augmentLogMessage(base);
const errorInstance = Object.assign(new Error(base.message), base);
Object.defineProperty(errorInstance, 'name', {
value: 'RollupError',
writable: true
});
return errorInstance;
}
function augmentCodeLocation(properties, pos, source, id) {
if (typeof pos === 'object') {
const { line, column } = pos;
properties.loc = { column, file: id, line };
}
else {
properties.pos = pos;
const location = locate(source, pos, { offsetLine: 1 });
if (!location) {
return;
}
const { line, column } = location;
properties.loc = { column, file: id, line };
}
if (properties.frame === undefined) {
const { line, column } = properties.loc;
properties.frame = getCodeFrame(source, line, column);
}
}
const symbolAugmented = Symbol('augmented');
function augmentLogMessage(log) {
// Make sure to only augment the log message once
if (!(log.plugin || log.loc) || log[symbolAugmented]) {
return;
}
log[symbolAugmented] = true;
let prefix = '';
if (log.plugin) {
prefix += `[plugin ${log.plugin}] `;
}
const id = log.id || log.loc?.file;
if (id) {
const position = log.loc ? ` (${log.loc.line}:${log.loc.column})` : '';
prefix += `${relativeId(id)}${position}: `;
}
const oldMessage = log.message;
log.message = prefix + log.message;
tweakStackMessage(log, oldMessage);
}
// Error codes should be sorted alphabetically while errors should be sorted by
// error code below
const ADDON_ERROR = 'ADDON_ERROR', ALREADY_CLOSED = 'ALREADY_CLOSED', AMBIGUOUS_EXTERNAL_NAMESPACES = 'AMBIGUOUS_EXTERNAL_NAMESPACES', ANONYMOUS_PLUGIN_CACHE = 'ANONYMOUS_PLUGIN_CACHE', ASSET_NOT_FINALISED = 'ASSET_NOT_FINALISED', ASSET_NOT_FOUND = 'ASSET_NOT_FOUND', ASSET_SOURCE_ALREADY_SET = 'ASSET_SOURCE_ALREADY_SET', ASSET_SOURCE_MISSING = 'ASSET_SOURCE_MISSING', BAD_LOADER = 'BAD_LOADER', CANNOT_CALL_NAMESPACE = 'CANNOT_CALL_NAMESPACE', CANNOT_EMIT_FROM_OPTIONS_HOOK = 'CANNOT_EMIT_FROM_OPTIONS_HOOK', CHUNK_NOT_GENERATED = 'CHUNK_NOT_GENERATED', CHUNK_INVALID = 'CHUNK_INVALID', CIRCULAR_CHUNK = 'CIRCULAR_CHUNK', CIRCULAR_DEPENDENCY = 'CIRCULAR_DEPENDENCY', CIRCULAR_REEXPORT = 'CIRCULAR_REEXPORT', CONST_REASSIGN = 'CONST_REASSIGN', CYCLIC_CROSS_CHUNK_REEXPORT = 'CYCLIC_CROSS_CHUNK_REEXPORT', DEPRECATED_FEATURE = 'DEPRECATED_FEATURE', DUPLICATE_ARGUMENT_NAME = 'DUPLICATE_ARGUMENT_NAME', DUPLICATE_EXPORT = 'DUPLICATE_EXPORT', DUPLICATE_PLUGIN_NAME = 'DUPLICATE_PLUGIN_NAME', EMPTY_BUNDLE = 'EMPTY_BUNDLE', EVAL = 'EVAL', EXTERNAL_MODULES_CANNOT_BE_INCLUDED_IN_MANUAL_CHUNKS = 'EXTERNAL_MODULES_CANNOT_BE_INCLUDED_IN_MANUAL_CHUNKS', EXTERNAL_MODULES_CANNOT_BE_TRANSFORMED_TO_MODULES = 'EXTERNAL_MODULES_CANNOT_BE_TRANSFORMED_TO_MODULES', EXTERNAL_SYNTHETIC_EXPORTS = 'EXTERNAL_SYNTHETIC_EXPORTS', FILE_NAME_CONFLICT = 'FILE_NAME_CONFLICT', FILE_NAME_OUTSIDE_OUTPUT_DIRECTORY = 'FILE_NAME_OUTSIDE_OUTPUT_DIRECTORY', FILE_NOT_FOUND = 'FILE_NOT_FOUND', FIRST_SIDE_EFFECT = 'FIRST_SIDE_EFFECT', ILLEGAL_IDENTIFIER_AS_NAME = 'ILLEGAL_IDENTIFIER_AS_NAME', ILLEGAL_REASSIGNMENT = 'ILLEGAL_REASSIGNMENT', INCONSISTENT_IMPORT_ATTRIBUTES = 'INCONSISTENT_IMPORT_ATTRIBUTES', INVALID_ANNOTATION = 'INVALID_ANNOTATION', INPUT_HOOK_IN_OUTPUT_PLUGIN = 'INPUT_HOOK_IN_OUTPUT_PLUGIN', INVALID_CHUNK = 'INVALID_CHUNK', INVALID_EXPORT_OPTION = 'INVALID_EXPORT_OPTION', INVALID_EXTERNAL_ID = 'INVALID_EXTERNAL_ID', INVALID_IMPORT_ATTRIBUTE = 'INVALID_IMPORT_ATTRIBUTE', INVALID_LOG_POSITION = 'INVALID_LOG_POSITION', INVALID_OPTION = 'INVALID_OPTION', INVALID_PLUGIN_HOOK = 'INVALID_PLUGIN_HOOK', INVALID_ROLLUP_PHASE = 'INVALID_ROLLUP_PHASE', INVALID_SETASSETSOURCE = 'INVALID_SETASSETSOURCE', INVALID_TLA_FORMAT = 'INVALID_TLA_FORMAT', MISSING_EXPORT = 'MISSING_EXPORT', MISSING_GLOBAL_NAME = 'MISSING_GLOBAL_NAME', MISSING_IMPLICIT_DEPENDANT = 'MISSING_IMPLICIT_DEPENDANT', MISSING_JSX_EXPORT = 'MISSING_JSX_EXPORT', MISSING_NAME_OPTION_FOR_IIFE_EXPORT = 'MISSING_NAME_OPTION_FOR_IIFE_EXPORT', MISSING_NODE_BUILTINS = 'MISSING_NODE_BUILTINS', MISSING_OPTION = 'MISSING_OPTION', MIXED_EXPORTS = 'MIXED_EXPORTS', MODULE_LEVEL_DIRECTIVE = 'MODULE_LEVEL_DIRECTIVE', NAMESPACE_CONFLICT = 'NAMESPACE_CONFLICT', NON_EXTERNAL_SOURCE_PHASE_IMPORT = 'NON_EXTERNAL_SOURCE_PHASE_IMPORT', NO_TRANSFORM_MAP_OR_AST_WITHOUT_CODE = 'NO_TRANSFORM_MAP_OR_AST_WITHOUT_CODE', OPTIMIZE_CHUNK_STATUS = 'OPTIMIZE_CHUNK_STATUS', PARSE_ERROR = 'PARSE_ERROR', PLUGIN_ERROR = 'PLUGIN_ERROR', REDECLARATION_ERROR = 'REDECLARATION_ERROR', RESERVED_NAMESPACE = 'RESERVED_NAMESPACE', SHIMMED_EXPORT = 'SHIMMED_EXPORT', SOURCE_PHASE_FORMAT_UNSUPPORTED = 'SOURCE_PHASE_FORMAT_UNSUPPORTED', SOURCEMAP_BROKEN = 'SOURCEMAP_BROKEN', SOURCEMAP_ERROR = 'SOURCEMAP_ERROR', SYNTHETIC_NAMED_EXPORTS_NEED_NAMESPACE_EXPORT = 'SYNTHETIC_NAMED_EXPORTS_NEED_NAMESPACE_EXPORT', THIS_IS_UNDEFINED = 'THIS_IS_UNDEFINED', UNEXPECTED_NAMED_IMPORT = 'UNEXPECTED_NAMED_IMPORT', UNKNOWN_OPTION = 'UNKNOWN_OPTION', UNRESOLVED_ENTRY = 'UNRESOLVED_ENTRY', UNRESOLVED_IMPORT = 'UNRESOLVED_IMPORT', UNUSED_EXTERNAL_IMPORT = 'UNUSED_EXTERNAL_IMPORT', VALIDATION_ERROR = 'VALIDATION_ERROR';
function logAddonNotGenerated(message, hook, plugin) {
return {
code: ADDON_ERROR,
message: `Could not retrieve "${hook}". Check configuration of plugin "${plugin}".
\tError Message: ${message}`
};
}
function logAlreadyClosed() {
return {
code: ALREADY_CLOSED,
message: 'Bundle is already closed, no more calls to "generate" or "write" are allowed.'
};
}
function logAmbiguousExternalNamespaces(binding, reexportingModule, usedModule, sources) {
return {
binding,
code: AMBIGUOUS_EXTERNAL_NAMESPACES,
ids: sources,
message: `Ambiguous external namespace resolution: "${relativeId(reexportingModule)}" re-exports "${binding}" from one of the external modules ${printQuotedStringList(sources.map(module => relativeId(module)))}, guessing "${relativeId(usedModule)}".`,
reexporter: reexportingModule
};
}
function logAnonymousPluginCache() {
return {
code: ANONYMOUS_PLUGIN_CACHE,
message: 'A plugin is trying to use the Rollup cache but is not declaring a plugin name or cacheKey.'
};
}
function logAssetNotFinalisedForFileName(name) {
return {
code: ASSET_NOT_FINALISED,
message: `Plugin error - Unable to get file name for asset "${name}". Ensure that the source is set and that generate is called first. If you reference assets via import.meta.ROLLUP_FILE_URL_<referenceId>, you need to either have set their source after "renderStart" or need to provide an explicit "fileName" when emitting them.`
};
}
function logAssetReferenceIdNotFoundForSetSource(assetReferenceId) {
return {
code: ASSET_NOT_FOUND,
message: `Plugin error - Unable to set the source for unknown asset "${assetReferenceId}".`
};
}
function logAssetSourceAlreadySet(name) {
return {
code: ASSET_SOURCE_ALREADY_SET,
message: `Unable to set the source for asset "${name}", source already set.`
};
}
function logNoAssetSourceSet(assetName) {
return {
code: ASSET_SOURCE_MISSING,
message: `Plugin error creating asset "${assetName}" - no asset source set.`
};
}
function logBadLoader(id) {
return {
code: BAD_LOADER,
message: `Error loading "${relativeId(id)}": plugin load hook should return a string, a { code, map } object, or nothing/null.`
};
}
function logCannotCallNamespace(name) {
return {
code: CANNOT_CALL_NAMESPACE,
message: `Cannot call a namespace ("${name}").`
};
}
function logCannotEmitFromOptionsHook() {
return {
code: CANNOT_EMIT_FROM_OPTIONS_HOOK,
message: `Cannot emit files or set asset sources in the "outputOptions" hook, use the "renderStart" hook instead.`
};
}
function logChunkNotGeneratedForFileName(name) {
return {
code: CHUNK_NOT_GENERATED,
message: `Plugin error - Unable to get file name for emitted chunk "${name}". You can only get file names once chunks have been generated after the "renderStart" hook.`
};
}
function logChunkInvalid({ fileName, code }, { pos, message }) {
const errorProperties = {
code: CHUNK_INVALID,
message: `Chunk "${fileName}" is not valid JavaScript: ${message}.`
};
augmentCodeLocation(errorProperties, pos, code, fileName);
return errorProperties;
}
function logCircularDependency(cyclePath) {
return {
code: CIRCULAR_DEPENDENCY,
ids: cyclePath,
message: `Circular dependency: ${cyclePath.map(relativeId).join(' -> ')}`
};
}
function logCircularChunk(cyclePath, isManualChunkConflict) {
return {
code: CIRCULAR_CHUNK,
ids: cyclePath,
message: `Circular chunk: ${cyclePath.join(' -> ')}. ${isManualChunkConflict
? `Please adjust the manual chunk logic for these chunks.`
: `Please consider disabling the "output.onlyExplicitManualChunks" option, as enabling it causes modules located between the modules included in the manual chunk "${cyclePath.at(-2)}" to be extracted into the separate chunk "${cyclePath.at(-1)}".`}`
};
}
function logCircularReexport(exportName, exporter) {
return {
code: CIRCULAR_REEXPORT,
exporter,
message: `"${exportName}" cannot be exported from "${relativeId(exporter)}" as it is a reexport that references itself.`
};
}
function logCyclicCrossChunkReexport(exportName, exporter, reexporter, importer, preserveModules) {
return {
code: CYCLIC_CROSS_CHUNK_REEXPORT,
exporter,
id: importer,
message: `Export "${exportName}" of module "${relativeId(exporter)}" was reexported through module "${relativeId(reexporter)}" while both modules are dependencies of each other and will end up in different chunks by current Rollup settings. This scenario is not well supported at the moment as it will produce a circular dependency between chunks and will likely lead to broken execution order.\nEither change the import in "${relativeId(importer)}" to point directly to the exporting module or ${preserveModules ? 'do not use "output.preserveModules"' : 'reconfigure "output.manualChunks"'} to ensure these modules end up in the same chunk.`,
reexporter
};
}
function logDeprecation(deprecation, urlSnippet, plugin) {
return {
code: DEPRECATED_FEATURE,
message: deprecation,
url: getRollupUrl(urlSnippet),
...({})
};
}
function logConstVariableReassignError() {
return {
code: CONST_REASSIGN,
message: 'Cannot reassign a variable declared with `const`'
};
}
function logDuplicateArgumentNameError(name) {
return {
code: DUPLICATE_ARGUMENT_NAME,
message: `Duplicate argument name "${name}"`
};
}
function logDuplicateExportError(name) {
return { code: DUPLICATE_EXPORT, message: `Duplicate export "${name}"` };
}
function logDuplicatePluginName(plugin) {
return {
code: DUPLICATE_PLUGIN_NAME,
message: `The plugin name ${plugin} is being used twice in the same build. Plugin names must be distinct or provide a cacheKey (please post an issue to the plugin if you are a plugin user).`
};
}
function logEmptyChunk(chunkName) {
return {
code: EMPTY_BUNDLE,
message: `Generated an empty chunk: "${chunkName}".`,
names: [chunkName]
};
}
function logEval(id) {
return {
code: EVAL,
id,
message: `Use of eval in "${relativeId(id)}" is strongly discouraged as it poses security risks and may cause issues with minification.`,
url: getRollupUrl(URL_AVOIDING_EVAL)
};
}
function logExternalSyntheticExports(id, importer) {
return {
code: EXTERNAL_SYNTHETIC_EXPORTS,
exporter: id,
message: `External "${id}" cannot have "syntheticNamedExports" enabled (imported by "${relativeId(importer)}").`
};
}
function logFileNameConflict(fileName) {
return {
code: FILE_NAME_CONFLICT,
message: `The emitted file "${fileName}" overwrites a previously emitted file of the same name.`
};
}
function logFileNameOutsideOutputDirectory(fileName) {
return {
code: FILE_NAME_OUTSIDE_OUTPUT_DIRECTORY,
message: `The output file name "${fileName}" is not contained in the output directory. Make sure all file names are relative paths without ".." segments.`
};
}
function logFileReferenceIdNotFoundForFilename(assetReferenceId) {
return {
code: FILE_NOT_FOUND,
message: `Plugin error - Unable to get file name for unknown file "${assetReferenceId}".`
};
}
function logFirstSideEffect(source, id, { line, column }) {
return {
code: FIRST_SIDE_EFFECT,
message: `First side effect in ${relativeId(id)} is at (${line}:${column})\n${getCodeFrame(source, line, column)}`
};
}
function logIllegalIdentifierAsName(name) {
return {
code: ILLEGAL_IDENTIFIER_AS_NAME,
message: `Given name "${name}" is not a legal JS identifier. If you need this, you can try "output.extend: true".`,
url: getRollupUrl(URL_OUTPUT_EXTEND)
};
}
function logIllegalImportReassignment(name, importingId) {
return {
code: ILLEGAL_REASSIGNMENT,
message: `Illegal reassignment of import "${name}" in "${relativeId(importingId)}".`
};
}
function logInconsistentImportAttributes(existingAttributes, newAttributes, source, importer) {
return {
code: INCONSISTENT_IMPORT_ATTRIBUTES,
message: `Module "${relativeId(importer)}" tried to import "${relativeId(source)}" with ${formatAttributes(newAttributes)} attributes, but it was already imported elsewhere with ${formatAttributes(existingAttributes)} attributes. Please ensure that import attributes for the same module are always consistent.`
};
}
const formatAttributes = (attributes) => {
const entries = Object.entries(attributes);
if (entries.length === 0)
return 'no';
return entries.map(([key, value]) => `"${key}": "${value}"`).join(', ');
};
function logInvalidAnnotation(comment, id, type) {
return {
code: INVALID_ANNOTATION,
id,
message: `A comment\n\n"${comment}"\n\nin "${relativeId(id)}" contains an annotation that Rollup cannot interpret due to the position of the comment. The comment will be removed to avoid issues.`,
url: getRollupUrl(type === 'noSideEffects' ? URL_TREESHAKE_NOSIDEEFFECTS : URL_TREESHAKE_PURE)
};
}
function logInputHookInOutputPlugin(pluginName, hookName) {
return {
code: INPUT_HOOK_IN_OUTPUT_PLUGIN,
message: `The "${hookName}" hook used by the output plugin ${pluginName} is a build time hook and will not be run for that plugin. Either this plugin cannot be used as an output plugin, or it should have an option to configure it as an output plugin.`
};
}
function logCannotAssignModuleToChunk(moduleId, assignToAlias, currentAlias) {
return {
code: INVALID_CHUNK,
message: `Cannot assign "${relativeId(moduleId)}" to the "${assignToAlias}" chunk as it is already in the "${currentAlias}" chunk.`
};
}
function tweakStackMessage(error, oldMessage) {
if (!error.stack) {
return error;
}
error.stack = error.stack.replace(oldMessage, error.message);
return error;
}
function logInvalidExportOptionValue(optionValue) {
return {
code: INVALID_EXPORT_OPTION,
message: `"output.exports" must be "default", "named", "none", "auto", or left unspecified (defaults to "auto"), received "${optionValue}".`,
url: getRollupUrl(URL_OUTPUT_EXPORTS)
};
}
function logIncompatibleExportOptionValue(optionValue, keys, entryModule) {
return {
code: INVALID_EXPORT_OPTION,
message: `"${optionValue}" was specified for "output.exports", but entry module "${relativeId(entryModule)}" has the following exports: ${printQuotedStringList(keys)}`,
url: getRollupUrl(URL_OUTPUT_EXPORTS)
};
}
function logInternalIdCannotBeExternal(source, importer) {
return {
code: INVALID_EXTERNAL_ID,
message: `"${source}" is imported as an external by "${relativeId(importer)}", but is already an existing non-external module id.`
};
}
function logImportOptionsAreInvalid(importer) {
return {
code: INVALID_IMPORT_ATTRIBUTE,
message: `Rollup could not statically analyze the options argument of a dynamic import in "${relativeId(importer)}". Dynamic import options need to be an object with a nested attributes object.`
};
}
function logImportAttributeIsInvalid(importer) {
return {
code: INVALID_IMPORT_ATTRIBUTE,
message: `Rollup could not statically analyze an import attribute of a dynamic import in "${relativeId(importer)}". Import attributes need to have string keys and values.`
};
}
function logInvalidLogPosition(plugin) {
return {
code: INVALID_LOG_POSITION,
message: `Plugin "${plugin}" tried to add a file position to a log or warning. This is only supported in the "transform" hook at the moment and will be ignored.`
};
}
function logInvalidOption(option, urlSnippet, explanation, value) {
return {
code: INVALID_OPTION,
message: `Invalid value ${value === undefined ? '' : `${JSON.stringify(value)} `}for option "${option}" - ${explanation}.`,
url: getRollupUrl(urlSnippet)
};
}
function logInvalidAddonPluginHook(hook, plugin) {
return {
code: INVALID_PLUGIN_HOOK,
hook,
message: `Error running plugin hook "${hook}" for plugin "${plugin}", expected a string, a function hook or an object with a "handler" string or function.`,
plugin
};
}
function logInvalidFunctionPluginHook(hook, plugin) {
return {
code: INVALID_PLUGIN_HOOK,
hook,
message: `Error running plugin hook "${hook}" for plugin "${plugin}", expected a function hook or an object with a "handler" function.`,
plugin
};
}
function logInvalidRollupPhaseForChunkEmission() {
return {
code: INVALID_ROLLUP_PHASE,
message: `Cannot emit chunks after module loading has finished.`
};
}
function logInvalidSetAssetSourceCall() {
return {
code: INVALID_SETASSETSOURCE,
message: `setAssetSource cannot be called in transform for caching reasons. Use emitFile with a source, or call setAssetSource in another hook.`
};
}
function logInvalidFormatForTopLevelAwait(id, format) {
return {
code: INVALID_TLA_FORMAT,
id,
message: `Module format "${format}" does not support top-level await. Use the "es" or "system" output formats rather.`
};
}
function logMissingEntryExport(binding, exporter) {
return {
binding,
code: MISSING_EXPORT,
exporter,
message: `Exported variable "${binding}" is not defined in "${relativeId(exporter)}".`,
url: getRollupUrl(URL_NAME_IS_NOT_EXPORTED)
};
}
function logMissingExport(binding, importingModule, exporter, missingButExportExists) {
const baseLog = {
binding,
code: MISSING_EXPORT,
exporter,
id: importingModule,
url: getRollupUrl(URL_NAME_IS_NOT_EXPORTED)
};
if (missingButExportExists) {
return {
...baseLog,
message: `Exported variable "${binding}" is not defined in "${relativeId(exporter)}", but it is imported by "${relativeId(importingModule)}".`
};
}
const isJson = extname(exporter) === '.json';
return {
...baseLog,
message: `"${binding}" is not exported by "${relativeId(exporter)}", imported by "${relativeId(importingModule)}".${isJson ? ' (Note that you need @rollup/plugin-json to import JSON files)' : ''}`
};
}
function logMissingGlobalName(externalId, guess) {
return {
code: MISSING_GLOBAL_NAME,
id: externalId,
message: `No name was provided for external module "${externalId}" in "output.globals" guessing "${guess}".`,
names: [guess],
url: getRollupUrl(URL_OUTPUT_GLOBALS)
};
}
function logImplicitDependantCannotBeExternal(unresolvedId, implicitlyLoadedBefore) {
return {
code: MISSING_IMPLICIT_DEPENDANT,
message: `Module "${relativeId(unresolvedId)}" that should be implicitly loaded before "${relativeId(implicitlyLoadedBefore)}" cannot be external.`
};
}
function logUnresolvedImplicitDependant(unresolvedId, implicitlyLoadedBefore) {
return {
code: MISSING_IMPLICIT_DEPENDANT,
message: `Module "${relativeId(unresolvedId)}" that should be implicitly loaded before "${relativeId(implicitlyLoadedBefore)}" could not be resolved.`
};
}
function logImplicitDependantIsNotIncluded(module) {
const implicitDependencies = [...module.implicitlyLoadedBefore]
.map(dependency => relativeId(dependency.id))
.sort();
return {
code: MISSING_IMPLICIT_DEPENDANT,
message: `Module "${relativeId(module.id)}" that should be implicitly loaded before ${printQuotedStringList(implicitDependencies)} is not included in the module graph. Either it was not imported by an included module or only via a tree-shaken dynamic import, or no imported bindings were used and it had otherwise no side-effects.`
};
}
function logMissingJsxExport(name, exporter, importer) {
return {
code: MISSING_JSX_EXPORT,
exporter,
id: importer,
message: `Export "${name}" is not defined in module "${relativeId(exporter)}" even though it is needed in "${relativeId(importer)}" to provide JSX syntax. Please check your "jsx" option.`,
names: [name],
url: getRollupUrl(URL_JSX)
};
}
function logMissingNameOptionForIifeExport() {
return {
code: MISSING_NAME_OPTION_FOR_IIFE_EXPORT,
message: `If you do not supply "output.name", you may not be able to access the exports of an IIFE bundle.`,
url: getRollupUrl(URL_OUTPUT_NAME)
};
}
function logMissingNameOptionForUmdExport() {
return {
code: MISSING_NAME_OPTION_FOR_IIFE_EXPORT,
message: 'You must supply "output.name" for UMD bundles that have exports so that the exports are accessible in environments without a module loader.',
url: getRollupUrl(URL_OUTPUT_NAME)
};
}
function logMissingNodeBuiltins(externalBuiltins) {
return {
code: MISSING_NODE_BUILTINS,
ids: externalBuiltins,
message: `Creating a browser bundle that depends on Node.js built-in modules (${printQuotedStringList(externalBuiltins)}). You might need to include https://github.com/FredKSchott/rollup-plugin-polyfill-node`
};
}
function logMissingFileOrDirOption() {
return {
code: MISSING_OPTION,
message: 'You must specify "output.file" or "output.dir" for the build.',
url: getRollupUrl(URL_OUTPUT_DIR)
};
}
function logMixedExport(facadeModuleId, name) {
return {
code: MIXED_EXPORTS,
id: facadeModuleId,
message: `Entry module "${relativeId(facadeModuleId)}" is using named and default exports together. Consumers of your bundle will have to use \`${name || 'chunk'}.default\` to access the default export, which may not be what you want. Use \`output.exports: "named"\` to disable this warning.`,
url: getRollupUrl(URL_OUTPUT_EXPORTS)
};
}
function logModuleLevelDirective(directive, id) {
return {
code: MODULE_LEVEL_DIRECTIVE,
id,
message: `Module level directives cause errors when bundled, "${directive}" in "${relativeId(id)}" was ignored.`
};
}
function logNamespaceConflict(binding, reexportingModuleId, sources) {
return {
binding,
code: NAMESPACE_CONFLICT,
ids: sources,
message: `Conflicting namespaces: "${relativeId(reexportingModuleId)}" re-exports "${binding}" from one of the modules ${printQuotedStringList(sources.map(moduleId => relativeId(moduleId)))} (will be ignored).`,
reexporter: reexportingModuleId
};
}
function logNonExternalSourcePhaseImport(source, importer) {
return {
code: NON_EXTERNAL_SOURCE_PHASE_IMPORT,
message: `Source phase import "${source}" in "${relativeId(importer)}" must be external. Source phase imports are only supported for external modules. Use the "external" option to mark this module as external.`,
url: getRollupUrl(URL_SOURCE_PHASE_IMPORTS)
};
}
function logNoTransformMapOrAstWithoutCode(pluginName) {
return {
code: NO_TRANSFORM_MAP_OR_AST_WITHOUT_CODE,
message: `The plugin "${pluginName}" returned a "map" or "ast" without returning ` +
'a "code". This will be ignored.'
};
}
function logOptimizeChunkStatus(chunks, smallChunks, pointInTime) {
return {
code: OPTIMIZE_CHUNK_STATUS,
message: `${pointInTime}, there are\n` +
`${chunks} chunks, of which\n` +
`${smallChunks} are below minChunkSize.`
};
}
function logParseError(message, pos) {
return { code: PARSE_ERROR, message, pos };
}
function logRedeclarationError(name) {
return {
code: REDECLARATION_ERROR,
message: `Identifier "${name}" has already been declared`
};
}
function logReservedNamespace(namespace) {
return {
code: RESERVED_NAMESPACE,
message: `You have overridden reserved namespace "${namespace}"`
};
}
function logModuleParseError(error, moduleId) {
let message = error.message.replace(/ \(\d+:\d+\)$/, '');
if (moduleId.endsWith('.json')) {
message += ' (Note that you need @rollup/plugin-json to import JSON files)';
}
else if (!moduleId.endsWith('.js')) {
message += ' (Note that you need plugins to import files that are not JavaScript)';
}
return tweakStackMessage({
cause: error,
code: PARSE_ERROR,
id: moduleId,
message,
stack: error.stack
}, error.message);
}
function logPluginError(error, plugin, { hook, id } = {}) {
const code = error.code;
if (!error.pluginCode &&
code != null &&
(typeof code !== 'string' || !code.startsWith('PLUGIN_'))) {
error.pluginCode = code;
}
error.code = PLUGIN_ERROR;
error.plugin = plugin;
if (hook) {
error.hook = hook;
}
if (id) {
error.id = id;
}
return error;
}
function logShimmedExport(id, binding) {
return {
binding,
code: SHIMMED_EXPORT,
exporter: id,
message: `Missing export "${binding}" has been shimmed in module "${relativeId(id)}".`
};
}
function logSourcePhaseFormatUnsupported(outputFormat, chunkId, dependencyId) {
return {
code: SOURCE_PHASE_FORMAT_UNSUPPORTED,
message: `Source phase imports are not supported for the "${outputFormat}" output format, importing "${dependencyId}" in "${chunkId}". Use the "es" output format to support source phase imports.`,
url: getRollupUrl(URL_SOURCE_PHASE_IMPORTS)
};
}
function logSourcemapBroken(plugin) {
return {
code: SOURCEMAP_BROKEN,
message: `Sourcemap is likely to be incorrect: a plugin (${plugin}) was used to transform files, but didn't generate a sourcemap for the transformation. Consult the plugin documentation for help`,
plugin,
url: getRollupUrl(URL_SOURCEMAP_IS_LIKELY_TO_BE_INCORRECT)
};
}
function logConflictingSourcemapSources(filename) {
return {
code: SOURCEMAP_BROKEN,
message: `Multiple conflicting contents for sourcemap source ${filename}`
};
}
function logInvalidSourcemapForError(error, id, column, line, pos) {
return {
cause: error,
code: SOURCEMAP_ERROR,
id,
loc: {
column,
file: id,
line
},
message: `Error when using sourcemap for reporting an error: ${error.message}`,
pos
};
}
function logSyntheticNamedExportsNeedNamespaceExport(id, syntheticNamedExportsOption) {
return {
code: SYNTHETIC_NAMED_EXPORTS_NEED_NAMESPACE_EXPORT,
exporter: id,
message: `Module "${relativeId(id)}" that is marked with \`syntheticNamedExports: ${JSON.stringify(syntheticNamedExportsOption)}\` needs ${typeof syntheticNamedExportsOption === 'string' && syntheticNamedExportsOption !== 'default'
? `an explicit export named "${syntheticNamedExportsOption}"`
: 'a default export'} that does not reexport an unresolved named export of the same module.`
};
}
function logThisIsUndefined() {
return {
code: THIS_IS_UNDEFINED,
message: `The 'this' keyword is equivalent to 'undefined' at the top level of an ES module, and has been rewritten`,
url: getRollupUrl(URL_THIS_IS_UNDEFINED)
};
}
function logUnexpectedNamedImport(id, imported, isReexport) {
const importType = isReexport ? 'reexport' : 'import';
return {
code: UNEXPECTED_NAMED_IMPORT,
exporter: id,
message: `The named export "${imported}" was ${importType}ed from the external module "${relativeId(id)}" even though its interop type is "defaultOnly". Either remove or change this ${importType} or change the value of the "output.interop" option.`,
url: getRollupUrl(URL_OUTPUT_INTEROP)
};
}
function logUnexpectedNamespaceReexport(id) {
return {
code: UNEXPECTED_NAMED_IMPORT,
exporter: id,
message: `There was a namespace "*" reexport from the external module "${relativeId(id)}" even though its interop type is "defaultOnly". This will be ignored as namespace reexports only reexport named exports. If this is not intended, either remove or change this reexport or change the value of the "output.interop" option.`,
url: getRollupUrl(URL_OUTPUT_INTEROP)
};
}
function logUnknownOption(optionType, unknownOptions, validOptions) {
return {
code: UNKNOWN_OPTION,
message: `Unknown ${optionType}: ${unknownOptions.join(', ')}. Allowed options: ${validOptions.join(', ')}`
};
}
function logEntryCannotBeExternal(unresolvedId) {
return {
code: UNRESOLVED_ENTRY,
message: `Entry module "${relativeId(unresolvedId)}" cannot be external.`
};
}
function logExternalModulesCannotBeIncludedInManualChunks(source) {
return {
code: EXTERNAL_MODULES_CANNOT_BE_INCLUDED_IN_MANUAL_CHUNKS,
message: `"${source}" cannot be included in manualChunks because it is resolved as an external module by the "external" option or plugins.`
};
}
function logExternalModulesCannotBeTransformedToModules(source) {
return {
code: EXTERNAL_MODULES_CANNOT_BE_TRANSFORMED_TO_MODULES,
message: `${source} is resolved as a module now, but it was an external module before. Please check whether there are conflicts in your Rollup options "external" and "manualChunks", manualChunks cannot include external modules.`
};
}
function logUnresolvedEntry(unresolvedId) {
return {
code: UNRESOLVED_ENTRY,
message: `Could not resolve entry module "${relativeId(unresolvedId)}".`
};
}
function logUnresolvedImport(source, importer) {
return {
code: UNRESOLVED_IMPORT,
exporter: source,
id: importer,
message: `Could not resolve "${source}" from "${relativeId(importer)}"`
};
}
function logUnresolvedImportTreatedAsExternal(source, importer) {
return {
code: UNRESOLVED_IMPORT,
exporter: source,
id: importer,
message: `"${source}" is imported by "${relativeId(importer)}", but could not be resolved treating it as an external dependency.`,
url: getRollupUrl(URL_TREATING_MODULE_AS_EXTERNAL_DEPENDENCY)
};
}
function logUnusedExternalImports(externalId, names, importers) {
return {
code: UNUSED_EXTERNAL_IMPORT,
exporter: externalId,
ids: importers,
message: `${printQuotedStringList(names, [
'is',
'are'
])} imported from external module "${externalId}" but never used in ${printQuotedStringList(importers.map(importer => relativeId(importer)))}.`,
names
};
}
function logFailedValidation(message) {
return {
code: VALIDATION_ERROR,
message
};
}
function warnDeprecation(deprecation, urlSnippet, activeDeprecation, options, plugin) {
warnDeprecationWithOptions(deprecation, urlSnippet, activeDeprecation, options.onLog, options.strictDeprecations);
}
function warnDeprecationWithOptions(deprecation, urlSnippet, activeDeprecation, log, strictDeprecations, plugin) {
if (activeDeprecation || strictDeprecations) {
const warning = logDeprecation(deprecation, urlSnippet);
if (strictDeprecations) {
return error(warning);
}
log(LOGLEVEL_WARN, warning);
}
}
// This file is generated by scripts/generate-string-constants.js.
// Do not edit this file directly.
const FIXED_STRINGS = [
'var',
'let',
'const',
'init',
'get',
'set',
'constructor',
'method',
'-',
'+',
'!',
'~',
'typeof',
'void',
'delete',
'++',
'--',
'==',
'!=',
'===',
'!==',
'<',
'<=',
'>',
'>=',
'<<',
'>>',
'>>>',
'+',
'-',
'*',
'/',
'%',
'|',
'^',
'&',
'||',
'&&',
'in',
'instanceof',
'**',
'??',
'=',
'+=',
'-=',
'*=',
'/=',
'%=',
'<<=',
'>>=',
'>>>=',
'|=',
'^=',
'&=',
'**=',
'&&=',
'||=',
'??=',
'pure',
'noSideEffects',
'sourcemap',
'using',
'await using',
'source',
'defer'
];
const ANNOTATION_KEY = '_rollupAnnotations';
const INVALID_ANNOTATION_KEY = '_rollupRemoved';
const convertAnnotations = (position, buffer) => {
if (position === 0)
return EMPTY_ARRAY;
const length = buffer[position++];
const list = new Array(length);
for (let index = 0; index < length; index++) {
list[index] = convertAnnotation(buffer[position++], buffer);
}
return list;
};
const convertAnnotation = (position, buffer) => {
const start = buffer[position++];
const end = buffer[position++];
const type = FIXED_STRINGS[buffer[position]];
return { end, start, type };
};
// This file is generated by scripts/generate-buffer-to-ast.js.
// Do not edit this file directly.
function convertProgram(buffer) {
const node = convertNode(0, buffer);
switch (node.type) {
case PanicError: {
return error(getRollupError(logParseError(node.message)));
}
case ParseError: {
return error(getRollupError(logParseError(node.message, node.start)));
}
default: {
return node;
}
}
}
/* eslint-disable sort-keys */
const nodeConverters = [
function panicError(position, buffer) {
return {
type: 'PanicError',
start: buffer[position],
end: buffer[position + 1],
message: buffer.convertString(buffer[position + 2])
};
},
function parseError(position, buffer) {
return {
type: 'ParseError',
start: buffer[position],
end: buffer[position + 1],
message: buffer.convertString(buffer[position + 2])
};
},
function arrayExpression(position, buffer) {
return {
type: 'ArrayExpression',
start: buffer[position],
end: buffer[position + 1],
elements: convertNodeList(buffer[position + 2], buffer)
};
},
function arrayPattern(position, buffer) {
return {
type: 'ArrayPattern',
start: buffer[position],
end: buffer[position + 1],
elements: convertNodeList(buffer[position + 2], buffer)
};
},
function arrowFunctionExpression(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
return {
type: 'ArrowFunctionExpression',
start: buffer[position],
end: buffer[position + 1],
async: (flags & 1) === 1,
expression: (flags & 2) === 2,
generator: (flags & 4) === 4,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
params: convertNodeList(buffer[position + 4], buffer),
body: convertNode(buffer[position + 5], buffer),
id: null
};
},
function assignmentExpression(position, buffer) {
return {
type: 'AssignmentExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer)
};
},
function assignmentPattern(position, buffer) {
return {
type: 'AssignmentPattern',
start: buffer[position],
end: buffer[position + 1],
left: convertNode(buffer[position + 2], buffer),
right: convertNode(buffer[position + 3], buffer)
};
},
function awaitExpression(position, buffer) {
return {
type: 'AwaitExpression',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function binaryExpression(position, buffer) {
return {
type: 'BinaryExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer)
};
},
function blockStatement(position, buffer) {
return {
type: 'BlockStatement',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer)
};
},
function breakStatement(position, buffer) {
const labelPosition = buffer[position + 2];
return {
type: 'BreakStatement',
start: buffer[position],
end: buffer[position + 1],
label: labelPosition === 0 ? null : convertNode(labelPosition, buffer)
};
},
function callExpression(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
return {
type: 'CallExpression',
start: buffer[position],
end: buffer[position + 1],
optional: (flags & 1) === 1,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
callee: convertNode(buffer[position + 4], buffer),
arguments: convertNodeList(buffer[position + 5], buffer)
};
},
function catchClause(position, buffer) {
const parameterPosition = buffer[position + 2];
return {
type: 'CatchClause',
start: buffer[position],
end: buffer[position + 1],
param: parameterPosition === 0 ? null : convertNode(parameterPosition, buffer),
body: convertNode(buffer[position + 3], buffer)
};
},
function chainExpression(position, buffer) {
return {
type: 'ChainExpression',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function classBody(position, buffer) {
return {
type: 'ClassBody',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer)
};
},
function classDeclaration(position, buffer) {
const idPosition = buffer[position + 3];
const superClassPosition = buffer[position + 4];
return {
type: 'ClassDeclaration',
start: buffer[position],
end: buffer[position + 1],
decorators: convertNodeList(buffer[position + 2], buffer),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
superClass: superClassPosition === 0 ? null : convertNode(superClassPosition, buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function classExpression(position, buffer) {
const idPosition = buffer[position + 3];
const superClassPosition = buffer[position + 4];
return {
type: 'ClassExpression',
start: buffer[position],
end: buffer[position + 1],
decorators: convertNodeList(buffer[position + 2], buffer),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
superClass: superClassPosition === 0 ? null : convertNode(superClassPosition, buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function conditionalExpression(position, buffer) {
return {
type: 'ConditionalExpression',
start: buffer[position],
end: buffer[position + 1],
test: convertNode(buffer[position + 2], buffer),
consequent: convertNode(buffer[position + 3], buffer),
alternate: convertNode(buffer[position + 4], buffer)
};
},
function continueStatement(position, buffer) {
const labelPosition = buffer[position + 2];
return {
type: 'ContinueStatement',
start: buffer[position],
end: buffer[position + 1],
label: labelPosition === 0 ? null : convertNode(labelPosition, buffer)
};
},
function debuggerStatement(position, buffer) {
return {
type: 'DebuggerStatement',
start: buffer[position],
end: buffer[position + 1]
};
},
function decorator(position, buffer) {
return {
type: 'Decorator',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function directive(position, buffer) {
return {
type: 'ExpressionStatement',
start: buffer[position],
end: buffer[position + 1],
directive: buffer.convertString(buffer[position + 2]),
expression: convertNode(buffer[position + 3], buffer)
};
},
function doWhileStatement(position, buffer) {
return {
type: 'DoWhileStatement',
start: buffer[position],
end: buffer[position + 1],
body: convertNode(buffer[position + 2], buffer),
test: convertNode(buffer[position + 3], buffer)
};
},
function emptyStatement(position, buffer) {
return {
type: 'EmptyStatement',
start: buffer[position],
end: buffer[position + 1]
};
},
function exportAllDeclaration(position, buffer) {
const exportedPosition = buffer[position + 2];
return {
type: 'ExportAllDeclaration',
start: buffer[position],
end: buffer[position + 1],
exported: exportedPosition === 0 ? null : convertNode(exportedPosition, buffer),
source: convertNode(buffer[position + 3], buffer),
attributes: convertNodeList(buffer[position + 4], buffer)
};
},
function exportDefaultDeclaration(position, buffer) {
return {
type: 'ExportDefaultDeclaration',
start: buffer[position],
end: buffer[position + 1],
declaration: convertNode(buffer[position + 2], buffer)
};
},
function exportNamedDeclaration(position, buffer) {
const sourcePosition = buffer[position + 3];
const declarationPosition = buffer[position + 5];
return {
type: 'ExportNamedDeclaration',
start: buffer[position],
end: buffer[position + 1],
specifiers: convertNodeList(buffer[position + 2], buffer),
source: sourcePosition === 0 ? null : convertNode(sourcePosition, buffer),
attributes: convertNodeList(buffer[position + 4], buffer),
declaration: declarationPosition === 0 ? null : convertNode(declarationPosition, buffer)
};
},
function exportSpecifier(position, buffer) {
const local = convertNode(buffer[position + 2], buffer);
const exportedPosition = buffer[position + 3];
return {
type: 'ExportSpecifier',
start: buffer[position],
end: buffer[position + 1],
local,
exported: exportedPosition === 0 ? { ...local } : convertNode(exportedPosition, buffer)
};
},
function expressionStatement(position, buffer) {
return {
type: 'ExpressionStatement',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function forInStatement(position, buffer) {
return {
type: 'ForInStatement',
start: buffer[position],
end: buffer[position + 1],
left: convertNode(buffer[position + 2], buffer),
right: convertNode(buffer[position + 3], buffer),
body: convertNode(buffer[position + 4], buffer)
};
},
function forOfStatement(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'ForOfStatement',
start: buffer[position],
end: buffer[position + 1],
await: (flags & 1) === 1,
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function forStatement(position, buffer) {
const initPosition = buffer[position + 2];
const testPosition = buffer[position + 3];
const updatePosition = buffer[position + 4];
return {
type: 'ForStatement',
start: buffer[position],
end: buffer[position + 1],
init: initPosition === 0 ? null : convertNode(initPosition, buffer),
test: testPosition === 0 ? null : convertNode(testPosition, buffer),
update: updatePosition === 0 ? null : convertNode(updatePosition, buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function functionDeclaration(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
const idPosition = buffer[position + 4];
return {
type: 'FunctionDeclaration',
start: buffer[position],
end: buffer[position + 1],
async: (flags & 1) === 1,
generator: (flags & 2) === 2,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
params: convertNodeList(buffer[position + 5], buffer),
body: convertNode(buffer[position + 6], buffer),
expression: false
};
},
function functionExpression(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
const idPosition = buffer[position + 4];
return {
type: 'FunctionExpression',
start: buffer[position],
end: buffer[position + 1],
async: (flags & 1) === 1,
generator: (flags & 2) === 2,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
params: convertNodeList(buffer[position + 5], buffer),
body: convertNode(buffer[position + 6], buffer),
expression: false
};
},
function identifier(position, buffer) {
return {
type: 'Identifier',
start: buffer[position],
end: buffer[position + 1],
name: buffer.convertString(buffer[position + 2])
};
},
function ifStatement(position, buffer) {
const alternatePosition = buffer[position + 4];
return {
type: 'IfStatement',
start: buffer[position],
end: buffer[position + 1],
test: convertNode(buffer[position + 2], buffer),
consequent: convertNode(buffer[position + 3], buffer),
alternate: alternatePosition === 0 ? null : convertNode(alternatePosition, buffer)
};
},
function importAttribute(position, buffer) {
return {
type: 'ImportAttribute',
start: buffer[position],
end: buffer[position + 1],
key: convertNode(buffer[position + 2], buffer),
value: convertNode(buffer[position + 3], buffer)
};
},
function importDeclaration(position, buffer) {
const phaseIndex = buffer[position + 5];
return {
type: 'ImportDeclaration',
start: buffer[position],
end: buffer[position + 1],
specifiers: convertNodeList(buffer[position + 2], buffer),
source: convertNode(buffer[position + 3], buffer),
attributes: convertNodeList(buffer[position + 4], buffer),
...(phaseIndex === 0 ? {} : { phase: FIXED_STRINGS[phaseIndex] })
};
},
function importDefaultSpecifier(position, buffer) {
return {
type: 'ImportDefaultSpecifier',
start: buffer[position],
end: buffer[position + 1],
local: convertNode(buffer[position + 2], buffer)
};
},
function importExpression(position, buffer) {
const optionsPosition = buffer[position + 3];
const phaseIndex = buffer[position + 4];
return {
type: 'ImportExpression',
start: buffer[position],
end: buffer[position + 1],
source: convertNode(buffer[position + 2], buffer),
options: optionsPosition === 0 ? null : convertNode(optionsPosition, buffer),
...(phaseIndex === 0 ? {} : { phase: FIXED_STRINGS[phaseIndex] })
};
},
function importNamespaceSpecifier(position, buffer) {
return {
type: 'ImportNamespaceSpecifier',
start: buffer[position],
end: buffer[position + 1],
local: convertNode(buffer[position + 2], buffer)
};
},
function importSpecifier(position, buffer) {
const importedPosition = buffer[position + 2];
const local = convertNode(buffer[position + 3], buffer);
return {
type: 'ImportSpecifier',
start: buffer[position],
end: buffer[position + 1],
imported: importedPosition === 0 ? { ...local } : convertNode(importedPosition, buffer),
local
};
},
function jsxAttribute(position, buffer) {
const valuePosition = buffer[position + 3];
return {
type: 'JSXAttribute',
start: buffer[position],
end: buffer[position + 1],
name: convertNode(buffer[position + 2], buffer),
value: valuePosition === 0 ? null : convertNode(valuePosition, buffer)
};
},
function jsxClosingElement(position, buffer) {
return {
type: 'JSXClosingElement',
start: buffer[position],
end: buffer[position + 1],
name: convertNode(buffer[position + 2], buffer)
};
},
function jsxClosingFragment(position, buffer) {
return {
type: 'JSXClosingFragment',
start: buffer[position],
end: buffer[position + 1]
};
},
function jsxElement(position, buffer) {
const closingElementPosition = buffer[position + 4];
return {
type: 'JSXElement',
start: buffer[position],
end: buffer[position + 1],
openingElement: convertNode(buffer[position + 2], buffer),
children: convertNodeList(buffer[position + 3], buffer),
closingElement: closingElementPosition === 0 ? null : convertNode(closingElementPosition, buffer)
};
},
function jsxEmptyExpression(position, buffer) {
return {
type: 'JSXEmptyExpression',
start: buffer[position],
end: buffer[position + 1]
};
},
function jsxExpressionContainer(position, buffer) {
return {
type: 'JSXExpressionContainer',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function jsxFragment(position, buffer) {
return {
type: 'JSXFragment',
start: buffer[position],
end: buffer[position + 1],
openingFragment: convertNode(buffer[position + 2], buffer),
children: convertNodeList(buffer[position + 3], buffer),
closingFragment: convertNode(buffer[position + 4], buffer)
};
},
function jsxIdentifier(position, buffer) {
return {
type: 'JSXIdentifier',
start: buffer[position],
end: buffer[position + 1],
name: buffer.convertString(buffer[position + 2])
};
},
function jsxMemberExpression(position, buffer) {
return {
type: 'JSXMemberExpression',
start: buffer[position],
end: buffer[position + 1],
object: convertNode(buffer[position + 2], buffer),
property: convertNode(buffer[position + 3], buffer)
};
},
function jsxNamespacedName(position, buffer) {
return {
type: 'JSXNamespacedName',
start: buffer[position],
end: buffer[position + 1],
namespace: convertNode(buffer[position + 2], buffer),
name: convertNode(buffer[position + 3], buffer)
};
},
function jsxOpeningElement(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'JSXOpeningElement',
start: buffer[position],
end: buffer[position + 1],
selfClosing: (flags & 1) === 1,
name: convertNode(buffer[position + 3], buffer),
attributes: convertNodeList(buffer[position + 4], buffer)
};
},
function jsxOpeningFragment(position, buffer) {
return {
type: 'JSXOpeningFragment',
start: buffer[position],
end: buffer[position + 1],
attributes: [],
selfClosing: false
};
},
function jsxSpreadAttribute(position, buffer) {
return {
type: 'JSXSpreadAttribute',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function jsxSpreadChild(position, buffer) {
return {
type: 'JSXSpreadChild',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function jsxText(position, buffer) {
return {
type: 'JSXText',
start: buffer[position],
end: buffer[position + 1],
value: buffer.convertString(buffer[position + 2]),
raw: buffer.convertString(buffer[position + 3])
};
},
function labeledStatement(position, buffer) {
return {
type: 'LabeledStatement',
start: buffer[position],
end: buffer[position + 1],
label: convertNode(buffer[position + 2], buffer),
body: convertNode(buffer[position + 3], buffer)
};
},
function literalBigInt(position, buffer) {
const bigint = buffer.convertString(buffer[position + 2]);
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
bigint,
raw: buffer.convertString(buffer[position + 3]),
value: BigInt(bigint)
};
},
function literalBoolean(position, buffer) {
const flags = buffer[position + 2];
const value = (flags & 1) === 1;
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
value,
raw: value ? 'true' : 'false'
};
},
function literalNull(position, buffer) {
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
raw: 'null',
value: null
};
},
function literalNumber(position, buffer) {
const rawPosition = buffer[position + 2];
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
raw: rawPosition === 0 ? undefined : buffer.convertString(rawPosition),
value: new DataView(buffer.buffer).getFloat64((position + 3) << 2, true)
};
},
function literalRegExp(position, buffer) {
const flags = buffer.convertString(buffer[position + 2]);
const pattern = buffer.convertString(buffer[position + 3]);
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
raw: `/${pattern}/${flags}`,
regex: { flags, pattern },
value: new RegExp(pattern, flags)
};
},
function literalString(position, buffer) {
const rawPosition = buffer[position + 3];
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
value: buffer.convertString(buffer[position + 2]),
raw: rawPosition === 0 ? undefined : buffer.convertString(rawPosition)
};
},
function logicalExpression(position, buffer) {
return {
type: 'LogicalExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer)
};
},
function memberExpression(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'MemberExpression',
start: buffer[position],
end: buffer[position + 1],
computed: (flags & 1) === 1,
optional: (flags & 2) === 2,
object: convertNode(buffer[position + 3], buffer),
property: convertNode(buffer[position + 4], buffer)
};
},
function metaProperty(position, buffer) {
return {
type: 'MetaProperty',
start: buffer[position],
end: buffer[position + 1],
meta: convertNode(buffer[position + 2], buffer),
property: convertNode(buffer[position + 3], buffer)
};
},
function methodDefinition(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'MethodDefinition',
start: buffer[position],
end: buffer[position + 1],
static: (flags & 1) === 1,
computed: (flags & 2) === 2,
decorators: convertNodeList(buffer[position + 3], buffer),
key: convertNode(buffer[position + 4], buffer),
value: convertNode(buffer[position + 5], buffer),
kind: FIXED_STRINGS[buffer[position + 6]]
};
},
function newExpression(position, buffer) {
const annotations = convertAnnotations(buffer[position + 2], buffer);
return {
type: 'NewExpression',
start: buffer[position],
end: buffer[position + 1],
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
callee: convertNode(buffer[position + 3], buffer),
arguments: convertNodeList(buffer[position + 4], buffer)
};
},
function objectExpression(position, buffer) {
return {
type: 'ObjectExpression',
start: buffer[position],
end: buffer[position + 1],
properties: convertNodeList(buffer[position + 2], buffer)
};
},
function objectPattern(position, buffer) {
return {
type: 'ObjectPattern',
start: buffer[position],
end: buffer[position + 1],
properties: convertNodeList(buffer[position + 2], buffer)
};
},
function privateIdentifier(position, buffer) {
return {
type: 'PrivateIdentifier',
start: buffer[position],
end: buffer[position + 1],
name: buffer.convertString(buffer[position + 2])
};
},
function program(position, buffer) {
const invalidAnnotations = convertAnnotations(buffer[position + 3], buffer);
return {
type: 'Program',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer),
...(invalidAnnotations.length > 0 ? { [INVALID_ANNOTATION_KEY]: invalidAnnotations } : {}),
sourceType: 'module'
};
},
function property(position, buffer) {
const flags = buffer[position + 2];
const keyPosition = buffer[position + 3];
const value = convertNode(buffer[position + 4], buffer);
return {
type: 'Property',
start: buffer[position],
end: buffer[position + 1],
method: (flags & 1) === 1,
shorthand: (flags & 2) === 2,
computed: (flags & 4) === 4,
key: keyPosition === 0 ? { ...value } : convertNode(keyPosition, buffer),
value,
kind: FIXED_STRINGS[buffer[position + 5]]
};
},
function propertyDefinition(position, buffer) {
const flags = buffer[position + 2];
const valuePosition = buffer[position + 5];
return {
type: 'PropertyDefinition',
start: buffer[position],
end: buffer[position + 1],
static: (flags & 1) === 1,
computed: (flags & 2) === 2,
decorators: convertNodeList(buffer[position + 3], buffer),
key: convertNode(buffer[position + 4], buffer),
value: valuePosition === 0 ? null : convertNode(valuePosition, buffer)
};
},
function restElement(position, buffer) {
return {
type: 'RestElement',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function returnStatement(position, buffer) {
const argumentPosition = buffer[position + 2];
return {
type: 'ReturnStatement',
start: buffer[position],
end: buffer[position + 1],
argument: argumentPosition === 0 ? null : convertNode(argumentPosition, buffer)
};
},
function sequenceExpression(position, buffer) {
return {
type: 'SequenceExpression',
start: buffer[position],
end: buffer[position + 1],
expressions: convertNodeList(buffer[position + 2], buffer)
};
},
function spreadElement(position, buffer) {
return {
type: 'SpreadElement',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function staticBlock(position, buffer) {
return {
type: 'StaticBlock',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer)
};
},
function superElement(position, buffer) {
return {
type: 'Super',
start: buffer[position],
end: buffer[position + 1]
};
},
function switchCase(position, buffer) {
const testPosition = buffer[position + 2];
return {
type: 'SwitchCase',
start: buffer[position],
end: buffer[position + 1],
test: testPosition === 0 ? null : convertNode(testPosition, buffer),
consequent: convertNodeList(buffer[position + 3], buffer)
};
},
function switchStatement(position, buffer) {
return {
type: 'SwitchStatement',
start: buffer[position],
end: buffer[position + 1],
discriminant: convertNode(buffer[position + 2], buffer),
cases: convertNodeList(buffer[position + 3], buffer)
};
},
function taggedTemplateExpression(position, buffer) {
return {
type: 'TaggedTemplateExpression',
start: buffer[position],
end: buffer[position + 1],
tag: convertNode(buffer[position + 2], buffer),
quasi: convertNode(buffer[position + 3], buffer)
};
},
function templateElement(position, buffer) {
const flags = buffer[position + 2];
const cookedPosition = buffer[position + 3];
const cooked = cookedPosition === 0 ? null : buffer.convertString(cookedPosition);
const raw = buffer.convertString(buffer[position + 4]);
return {
type: 'TemplateElement',
start: buffer[position],
end: buffer[position + 1],
tail: (flags & 1) === 1,
value: { cooked, raw }
};
},
function templateLiteral(position, buffer) {
return {
type: 'TemplateLiteral',
start: buffer[position],
end: buffer[position + 1],
quasis: convertNodeList(buffer[position + 2], buffer),
expressions: convertNodeList(buffer[position + 3], buffer)
};
},
function thisExpression(position, buffer) {
return {
type: 'ThisExpression',
start: buffer[position],
end: buffer[position + 1]
};
},
function throwStatement(position, buffer) {
return {
type: 'ThrowStatement',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function tryStatement(position, buffer) {
const handlerPosition = buffer[position + 3];
const finalizerPosition = buffer[position + 4];
return {
type: 'TryStatement',
start: buffer[position],
end: buffer[position + 1],
block: convertNode(buffer[position + 2], buffer),
handler: handlerPosition === 0 ? null : convertNode(handlerPosition, buffer),
finalizer: finalizerPosition === 0 ? null : convertNode(finalizerPosition, buffer)
};
},
function unaryExpression(position, buffer) {
return {
type: 'UnaryExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
argument: convertNode(buffer[position + 3], buffer),
prefix: true
};
},
function updateExpression(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'UpdateExpression',
start: buffer[position],
end: buffer[position + 1],
prefix: (flags & 1) === 1,
operator: FIXED_STRINGS[buffer[position + 3]],
argument: convertNode(buffer[position + 4], buffer)
};
},
function variableDeclaration(position, buffer) {
return {
type: 'VariableDeclaration',
start: buffer[position],
end: buffer[position + 1],
kind: FIXED_STRINGS[buffer[position + 2]],
declarations: convertNodeList(buffer[position + 3], buffer)
};
},
function variableDeclarator(position, buffer) {
const initPosition = buffer[position + 3];
return {
type: 'VariableDeclarator',
start: buffer[position],
end: buffer[position + 1],
id: convertNode(buffer[position + 2], buffer),
init: initPosition === 0 ? null : convertNode(initPosition, buffer)
};
},
function whileStatement(position, buffer) {
return {
type: 'WhileStatement',
start: buffer[position],
end: buffer[position + 1],
test: convertNode(buffer[position + 2], buffer),
body: convertNode(buffer[position + 3], buffer)
};
},
function yieldExpression(position, buffer) {
const flags = buffer[position + 2];
const argumentPosition = buffer[position + 3];
return {
type: 'YieldExpression',
start: buffer[position],
end: buffer[position + 1],
delegate: (flags & 1) === 1,
argument: argumentPosition === 0 ? null : convertNode(argumentPosition, buffer)
};
}
];
function convertNode(position, buffer) {
const nodeType = buffer[position];
const converter = nodeConverters[nodeType];
/* istanbul ignore if: This should never be executed but is a safeguard against faulty buffers */
if (!converter) {
console.trace();
throw new Error(`Unknown node type: ${nodeType}`);
}
return converter(position + 1, buffer);
}
function convertNodeList(position, buffer) {
if (position === 0)
return EMPTY_ARRAY;
const length = buffer[position++];
const list = new Array(length);
for (let index = 0; index < length; index++) {
const nodePosition = buffer[position++];
list[index] = nodePosition ? convertNode(nodePosition, buffer) : null;
}
return list;
}
function getAstBuffer(astBuffer) {
const array = new Uint32Array(astBuffer.buffer);
let convertString;
if (typeof Buffer !== 'undefined' && astBuffer instanceof Buffer) {
convertString = (position) => {
const length = array[position++];
const bytePosition = position << 2;
return astBuffer.toString('utf8', bytePosition, bytePosition + length);
};
}
else {
const textDecoder = new TextDecoder();
convertString = (position) => {
const length = array[position++];
const bytePosition = position << 2;
return textDecoder.decode(astBuffer.subarray(bytePosition, bytePosition + length));
};
}
return Object.assign(array, { convertString });
}
const parseAst = (input, { allowReturnOutsideFunction = false, jsx = false } = {}) => convertProgram(getAstBuffer(parse(input, allowReturnOutsideFunction, jsx)));
const parseAstAsync = async (input, { allowReturnOutsideFunction = false, jsx = false, signal } = {}) => convertProgram(getAstBuffer(await parseAsync(input, allowReturnOutsideFunction, jsx, signal)));
export { ANNOTATION_KEY, ArrowFunctionExpression, AwaitExpression, BLANK, BlockStatement, CallExpression, CatchClause, EMPTY_ARRAY, EMPTY_OBJECT, EMPTY_SET, ExportDefaultDeclaration, ExpressionStatement, FIXED_STRINGS, FunctionExpression, INVALID_ANNOTATION_KEY, Identifier, LOGLEVEL_DEBUG, LOGLEVEL_ERROR, LOGLEVEL_INFO, LOGLEVEL_WARN, Literal, MemberExpression, ObjectExpression, Program, Property, RestElement, ReturnStatement, StaticBlock, TemplateLiteral, URL_GENERATEBUNDLE, URL_JSX, URL_LOAD, URL_OUTPUT_AMD_BASEPATH, URL_OUTPUT_AMD_ID, URL_OUTPUT_DIR, URL_OUTPUT_EXTERNALIMPORTATTRIBUTES, URL_OUTPUT_FORMAT, URL_OUTPUT_GENERATEDCODE, URL_OUTPUT_INLINEDYNAMICIMPORTS, URL_OUTPUT_INTEROP, URL_OUTPUT_MANUALCHUNKS, URL_OUTPUT_SOURCEMAPBASEURL, URL_OUTPUT_SOURCEMAPFILE, URL_PRESERVEENTRYSIGNATURES, URL_TRANSFORM, URL_TREESHAKE, URL_TREESHAKE_MODULESIDEEFFECTS, URL_WATCH, VariableDeclarator, addTrailingSlashIfMissed, augmentCodeLocation, augmentLogMessage, convertAnnotations, convertNode, error, getAliasName, getAstBuffer, getImportPath, getRollupError, isAbsolute, isPathFragment, isRelative, isValidUrl, locate, logAddonNotGenerated, logAlreadyClosed, logAmbiguousExternalNamespaces, logAnonymousPluginCache, logAssetNotFinalisedForFileName, logAssetReferenceIdNotFoundForSetSource, logAssetSourceAlreadySet, logBadLoader, logCannotAssignModuleToChunk, logCannotCallNamespace, logCannotEmitFromOptionsHook, logChunkInvalid, logChunkNotGeneratedForFileName, logCircularChunk, logCircularDependency, logCircularReexport, logConflictingSourcemapSources, logConstVariableReassignError, logCyclicCrossChunkReexport, logDuplicateArgumentNameError, logDuplicateExportError, logDuplicatePluginName, logEmptyChunk, logEntryCannotBeExternal, logEval, logExternalModulesCannotBeIncludedInManualChunks, logExternalModulesCannotBeTransformedToModules, logExternalSyntheticExports, logFailedValidation, logFileNameConflict, logFileNameOutsideOutputDirectory, logFileReferenceIdNotFoundForFilename, logFirstSideEffect, logIllegalIdentifierAsName, logIllegalImportReassignment, logImplicitDependantCannotBeExternal, logImplicitDependantIsNotIncluded, logImportAttributeIsInvalid, logImportOptionsAreInvalid, logIncompatibleExportOptionValue, logInconsistentImportAttributes, logInputHookInOutputPlugin, logInternalIdCannotBeExternal, logInvalidAddonPluginHook, logInvalidAnnotation, logInvalidExportOptionValue, logInvalidFormatForTopLevelAwait, logInvalidFunctionPluginHook, logInvalidLogPosition, logInvalidOption, logInvalidRollupPhaseForChunkEmission, logInvalidSetAssetSourceCall, logInvalidSourcemapForError, logLevelPriority, logMissingEntryExport, logMissingExport, logMissingFileOrDirOption, logMissingGlobalName, logMissingJsxExport, logMissingNameOptionForIifeExport, logMissingNameOptionForUmdExport, logMissingNodeBuiltins, logMixedExport, logModuleLevelDirective, logModuleParseError, logNamespaceConflict, logNoAssetSourceSet, logNoTransformMapOrAstWithoutCode, logNonExternalSourcePhaseImport, logOptimizeChunkStatus, logParseError, logPluginError, logRedeclarationError, logReservedNamespace, logShimmedExport, logSourcePhaseFormatUnsupported, logSourcemapBroken, logSyntheticNamedExportsNeedNamespaceExport, logThisIsUndefined, logUnexpectedNamedImport, logUnexpectedNamespaceReexport, logUnknownOption, logUnresolvedEntry, logUnresolvedImplicitDependant, logUnresolvedImport, logUnresolvedImportTreatedAsExternal, logUnusedExternalImports, normalize, parseAst, parseAstAsync, printQuotedStringList, relative, relativeId, warnDeprecation };
+9909
View File
@@ -0,0 +1,9909 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
import { getAugmentedNamespace, fseventsImporter, getDefaultExportFromCjs, createFilter, rollupInternal } from './node-entry.js';
import path from 'node:path';
import process$1 from 'node:process';
import require$$0$1 from 'path';
import require$$0$2 from 'fs';
import require$$2 from 'util';
import require$$1 from 'stream';
import require$$2$1 from 'os';
import require$$0$3 from 'events';
import { platform } from 'node:os';
import './parseAst.js';
import '../../native.js';
import 'node:perf_hooks';
import 'node:fs/promises';
var chokidar$1 = {};
var utils$2 = {};
var constants$3;
var hasRequiredConstants$3;
function requireConstants$3 () {
if (hasRequiredConstants$3) return constants$3;
hasRequiredConstants$3 = 1;
const path = require$$0$1;
const WIN_SLASH = '\\\\/';
const WIN_NO_SLASH = `[^${WIN_SLASH}]`;
const DEFAULT_MAX_EXTGLOB_RECURSION = 0;
/**
* Posix glob regex
*/
const DOT_LITERAL = '\\.';
const PLUS_LITERAL = '\\+';
const QMARK_LITERAL = '\\?';
const SLASH_LITERAL = '\\/';
const ONE_CHAR = '(?=.)';
const QMARK = '[^/]';
const END_ANCHOR = `(?:${SLASH_LITERAL}|$)`;
const START_ANCHOR = `(?:^|${SLASH_LITERAL})`;
const DOTS_SLASH = `${DOT_LITERAL}{1,2}${END_ANCHOR}`;
const NO_DOT = `(?!${DOT_LITERAL})`;
const NO_DOTS = `(?!${START_ANCHOR}${DOTS_SLASH})`;
const NO_DOT_SLASH = `(?!${DOT_LITERAL}{0,1}${END_ANCHOR})`;
const NO_DOTS_SLASH = `(?!${DOTS_SLASH})`;
const QMARK_NO_DOT = `[^.${SLASH_LITERAL}]`;
const STAR = `${QMARK}*?`;
const POSIX_CHARS = {
DOT_LITERAL,
PLUS_LITERAL,
QMARK_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
QMARK,
END_ANCHOR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK_NO_DOT,
STAR,
START_ANCHOR
};
/**
* Windows glob regex
*/
const WINDOWS_CHARS = {
...POSIX_CHARS,
SLASH_LITERAL: `[${WIN_SLASH}]`,
QMARK: WIN_NO_SLASH,
STAR: `${WIN_NO_SLASH}*?`,
DOTS_SLASH: `${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$)`,
NO_DOT: `(?!${DOT_LITERAL})`,
NO_DOTS: `(?!(?:^|[${WIN_SLASH}])${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
NO_DOT_SLASH: `(?!${DOT_LITERAL}{0,1}(?:[${WIN_SLASH}]|$))`,
NO_DOTS_SLASH: `(?!${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
QMARK_NO_DOT: `[^.${WIN_SLASH}]`,
START_ANCHOR: `(?:^|[${WIN_SLASH}])`,
END_ANCHOR: `(?:[${WIN_SLASH}]|$)`
};
/**
* POSIX Bracket Regex
*/
const POSIX_REGEX_SOURCE = {
__proto__: null,
alnum: 'a-zA-Z0-9',
alpha: 'a-zA-Z',
ascii: '\\x00-\\x7F',
blank: ' \\t',
cntrl: '\\x00-\\x1F\\x7F',
digit: '0-9',
graph: '\\x21-\\x7E',
lower: 'a-z',
print: '\\x20-\\x7E ',
punct: '\\-!"#$%&\'()\\*+,./:;<=>?@[\\]^_`{|}~',
space: ' \\t\\r\\n\\v\\f',
upper: 'A-Z',
word: 'A-Za-z0-9_',
xdigit: 'A-Fa-f0-9'
};
constants$3 = {
DEFAULT_MAX_EXTGLOB_RECURSION,
MAX_LENGTH: 1024 * 64,
POSIX_REGEX_SOURCE,
// regular expressions
REGEX_BACKSLASH: /\\(?![*+?^${}(|)[\]])/g,
REGEX_NON_SPECIAL_CHARS: /^[^@![\].,$*+?^{}()|\\/]+/,
REGEX_SPECIAL_CHARS: /[-*+?.^${}(|)[\]]/,
REGEX_SPECIAL_CHARS_BACKREF: /(\\?)((\W)(\3*))/g,
REGEX_SPECIAL_CHARS_GLOBAL: /([-*+?.^${}(|)[\]])/g,
REGEX_REMOVE_BACKSLASH: /(?:\[.*?[^\\]\]|\\(?=.))/g,
// Replace globs with equivalent patterns to reduce parsing time.
REPLACEMENTS: {
__proto__: null,
'***': '*',
'**/**': '**',
'**/**/**': '**'
},
// Digits
CHAR_0: 48, /* 0 */
CHAR_9: 57, /* 9 */
// Alphabet chars.
CHAR_UPPERCASE_A: 65, /* A */
CHAR_LOWERCASE_A: 97, /* a */
CHAR_UPPERCASE_Z: 90, /* Z */
CHAR_LOWERCASE_Z: 122, /* z */
CHAR_LEFT_PARENTHESES: 40, /* ( */
CHAR_RIGHT_PARENTHESES: 41, /* ) */
CHAR_ASTERISK: 42, /* * */
// Non-alphabetic chars.
CHAR_AMPERSAND: 38, /* & */
CHAR_AT: 64, /* @ */
CHAR_BACKWARD_SLASH: 92, /* \ */
CHAR_CARRIAGE_RETURN: 13, /* \r */
CHAR_CIRCUMFLEX_ACCENT: 94, /* ^ */
CHAR_COLON: 58, /* : */
CHAR_COMMA: 44, /* , */
CHAR_DOT: 46, /* . */
CHAR_DOUBLE_QUOTE: 34, /* " */
CHAR_EQUAL: 61, /* = */
CHAR_EXCLAMATION_MARK: 33, /* ! */
CHAR_FORM_FEED: 12, /* \f */
CHAR_FORWARD_SLASH: 47, /* / */
CHAR_GRAVE_ACCENT: 96, /* ` */
CHAR_HASH: 35, /* # */
CHAR_HYPHEN_MINUS: 45, /* - */
CHAR_LEFT_ANGLE_BRACKET: 60, /* < */
CHAR_LEFT_CURLY_BRACE: 123, /* { */
CHAR_LEFT_SQUARE_BRACKET: 91, /* [ */
CHAR_LINE_FEED: 10, /* \n */
CHAR_NO_BREAK_SPACE: 160, /* \u00A0 */
CHAR_PERCENT: 37, /* % */
CHAR_PLUS: 43, /* + */
CHAR_QUESTION_MARK: 63, /* ? */
CHAR_RIGHT_ANGLE_BRACKET: 62, /* > */
CHAR_RIGHT_CURLY_BRACE: 125, /* } */
CHAR_RIGHT_SQUARE_BRACKET: 93, /* ] */
CHAR_SEMICOLON: 59, /* ; */
CHAR_SINGLE_QUOTE: 39, /* ' */
CHAR_SPACE: 32, /* */
CHAR_TAB: 9, /* \t */
CHAR_UNDERSCORE: 95, /* _ */
CHAR_VERTICAL_LINE: 124, /* | */
CHAR_ZERO_WIDTH_NOBREAK_SPACE: 65279, /* \uFEFF */
SEP: path.sep,
/**
* Create EXTGLOB_CHARS
*/
extglobChars(chars) {
return {
'!': { type: 'negate', open: '(?:(?!(?:', close: `))${chars.STAR})` },
'?': { type: 'qmark', open: '(?:', close: ')?' },
'+': { type: 'plus', open: '(?:', close: ')+' },
'*': { type: 'star', open: '(?:', close: ')*' },
'@': { type: 'at', open: '(?:', close: ')' }
};
},
/**
* Create GLOB_CHARS
*/
globChars(win32) {
return win32 === true ? WINDOWS_CHARS : POSIX_CHARS;
}
};
return constants$3;
}
var hasRequiredUtils$2;
function requireUtils$2 () {
if (hasRequiredUtils$2) return utils$2;
hasRequiredUtils$2 = 1;
(function (exports) {
const path = require$$0$1;
const win32 = process.platform === 'win32';
const {
REGEX_BACKSLASH,
REGEX_REMOVE_BACKSLASH,
REGEX_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_GLOBAL
} = /*@__PURE__*/ requireConstants$3();
exports.isObject = val => val !== null && typeof val === 'object' && !Array.isArray(val);
exports.hasRegexChars = str => REGEX_SPECIAL_CHARS.test(str);
exports.isRegexChar = str => str.length === 1 && exports.hasRegexChars(str);
exports.escapeRegex = str => str.replace(REGEX_SPECIAL_CHARS_GLOBAL, '\\$1');
exports.toPosixSlashes = str => str.replace(REGEX_BACKSLASH, '/');
exports.removeBackslashes = str => {
return str.replace(REGEX_REMOVE_BACKSLASH, match => {
return match === '\\' ? '' : match;
});
};
exports.supportsLookbehinds = () => {
const segs = process.version.slice(1).split('.').map(Number);
if (segs.length === 3 && segs[0] >= 9 || (segs[0] === 8 && segs[1] >= 10)) {
return true;
}
return false;
};
exports.isWindows = options => {
if (options && typeof options.windows === 'boolean') {
return options.windows;
}
return win32 === true || path.sep === '\\';
};
exports.escapeLast = (input, char, lastIdx) => {
const idx = input.lastIndexOf(char, lastIdx);
if (idx === -1) return input;
if (input[idx - 1] === '\\') return exports.escapeLast(input, char, idx - 1);
return `${input.slice(0, idx)}\\${input.slice(idx)}`;
};
exports.removePrefix = (input, state = {}) => {
let output = input;
if (output.startsWith('./')) {
output = output.slice(2);
state.prefix = './';
}
return output;
};
exports.wrapOutput = (input, state = {}, options = {}) => {
const prepend = options.contains ? '' : '^';
const append = options.contains ? '' : '$';
let output = `${prepend}(?:${input})${append}`;
if (state.negated === true) {
output = `(?:^(?!${output}).*$)`;
}
return output;
};
} (utils$2));
return utils$2;
}
var scan_1$1;
var hasRequiredScan$1;
function requireScan$1 () {
if (hasRequiredScan$1) return scan_1$1;
hasRequiredScan$1 = 1;
const utils = /*@__PURE__*/ requireUtils$2();
const {
CHAR_ASTERISK, /* * */
CHAR_AT, /* @ */
CHAR_BACKWARD_SLASH, /* \ */
CHAR_COMMA, /* , */
CHAR_DOT, /* . */
CHAR_EXCLAMATION_MARK, /* ! */
CHAR_FORWARD_SLASH, /* / */
CHAR_LEFT_CURLY_BRACE, /* { */
CHAR_LEFT_PARENTHESES, /* ( */
CHAR_LEFT_SQUARE_BRACKET, /* [ */
CHAR_PLUS, /* + */
CHAR_QUESTION_MARK, /* ? */
CHAR_RIGHT_CURLY_BRACE, /* } */
CHAR_RIGHT_PARENTHESES, /* ) */
CHAR_RIGHT_SQUARE_BRACKET /* ] */
} = /*@__PURE__*/ requireConstants$3();
const isPathSeparator = code => {
return code === CHAR_FORWARD_SLASH || code === CHAR_BACKWARD_SLASH;
};
const depth = token => {
if (token.isPrefix !== true) {
token.depth = token.isGlobstar ? Infinity : 1;
}
};
/**
* Quickly scans a glob pattern and returns an object with a handful of
* useful properties, like `isGlob`, `path` (the leading non-glob, if it exists),
* `glob` (the actual pattern), `negated` (true if the path starts with `!` but not
* with `!(`) and `negatedExtglob` (true if the path starts with `!(`).
*
* ```js
* const pm = require('picomatch');
* console.log(pm.scan('foo/bar/*.js'));
* { isGlob: true, input: 'foo/bar/*.js', base: 'foo/bar', glob: '*.js' }
* ```
* @param {String} `str`
* @param {Object} `options`
* @return {Object} Returns an object with tokens and regex source string.
* @api public
*/
const scan = (input, options) => {
const opts = options || {};
const length = input.length - 1;
const scanToEnd = opts.parts === true || opts.scanToEnd === true;
const slashes = [];
const tokens = [];
const parts = [];
let str = input;
let index = -1;
let start = 0;
let lastIndex = 0;
let isBrace = false;
let isBracket = false;
let isGlob = false;
let isExtglob = false;
let isGlobstar = false;
let braceEscaped = false;
let backslashes = false;
let negated = false;
let negatedExtglob = false;
let finished = false;
let braces = 0;
let prev;
let code;
let token = { value: '', depth: 0, isGlob: false };
const eos = () => index >= length;
const peek = () => str.charCodeAt(index + 1);
const advance = () => {
prev = code;
return str.charCodeAt(++index);
};
while (index < length) {
code = advance();
let next;
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
if (code === CHAR_LEFT_CURLY_BRACE) {
braceEscaped = true;
}
continue;
}
if (braceEscaped === true || code === CHAR_LEFT_CURLY_BRACE) {
braces++;
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (code === CHAR_LEFT_CURLY_BRACE) {
braces++;
continue;
}
if (braceEscaped !== true && code === CHAR_DOT && (code = advance()) === CHAR_DOT) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (braceEscaped !== true && code === CHAR_COMMA) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_RIGHT_CURLY_BRACE) {
braces--;
if (braces === 0) {
braceEscaped = false;
isBrace = token.isBrace = true;
finished = true;
break;
}
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_FORWARD_SLASH) {
slashes.push(index);
tokens.push(token);
token = { value: '', depth: 0, isGlob: false };
if (finished === true) continue;
if (prev === CHAR_DOT && index === (start + 1)) {
start += 2;
continue;
}
lastIndex = index + 1;
continue;
}
if (opts.noext !== true) {
const isExtglobChar = code === CHAR_PLUS
|| code === CHAR_AT
|| code === CHAR_ASTERISK
|| code === CHAR_QUESTION_MARK
|| code === CHAR_EXCLAMATION_MARK;
if (isExtglobChar === true && peek() === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
isExtglob = token.isExtglob = true;
finished = true;
if (code === CHAR_EXCLAMATION_MARK && index === start) {
negatedExtglob = true;
}
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
isGlob = token.isGlob = true;
finished = true;
break;
}
}
continue;
}
break;
}
}
if (code === CHAR_ASTERISK) {
if (prev === CHAR_ASTERISK) isGlobstar = token.isGlobstar = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_QUESTION_MARK) {
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_LEFT_SQUARE_BRACKET) {
while (eos() !== true && (next = advance())) {
if (next === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (next === CHAR_RIGHT_SQUARE_BRACKET) {
isBracket = token.isBracket = true;
isGlob = token.isGlob = true;
finished = true;
break;
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (opts.nonegate !== true && code === CHAR_EXCLAMATION_MARK && index === start) {
negated = token.negated = true;
start++;
continue;
}
if (opts.noparen !== true && code === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_LEFT_PARENTHESES) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
finished = true;
break;
}
}
continue;
}
break;
}
if (isGlob === true) {
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
}
if (opts.noext === true) {
isExtglob = false;
isGlob = false;
}
let base = str;
let prefix = '';
let glob = '';
if (start > 0) {
prefix = str.slice(0, start);
str = str.slice(start);
lastIndex -= start;
}
if (base && isGlob === true && lastIndex > 0) {
base = str.slice(0, lastIndex);
glob = str.slice(lastIndex);
} else if (isGlob === true) {
base = '';
glob = str;
} else {
base = str;
}
if (base && base !== '' && base !== '/' && base !== str) {
if (isPathSeparator(base.charCodeAt(base.length - 1))) {
base = base.slice(0, -1);
}
}
if (opts.unescape === true) {
if (glob) glob = utils.removeBackslashes(glob);
if (base && backslashes === true) {
base = utils.removeBackslashes(base);
}
}
const state = {
prefix,
input,
start,
base,
glob,
isBrace,
isBracket,
isGlob,
isExtglob,
isGlobstar,
negated,
negatedExtglob
};
if (opts.tokens === true) {
state.maxDepth = 0;
if (!isPathSeparator(code)) {
tokens.push(token);
}
state.tokens = tokens;
}
if (opts.parts === true || opts.tokens === true) {
let prevIndex;
for (let idx = 0; idx < slashes.length; idx++) {
const n = prevIndex ? prevIndex + 1 : start;
const i = slashes[idx];
const value = input.slice(n, i);
if (opts.tokens) {
if (idx === 0 && start !== 0) {
tokens[idx].isPrefix = true;
tokens[idx].value = prefix;
} else {
tokens[idx].value = value;
}
depth(tokens[idx]);
state.maxDepth += tokens[idx].depth;
}
if (idx !== 0 || value !== '') {
parts.push(value);
}
prevIndex = i;
}
if (prevIndex && prevIndex + 1 < input.length) {
const value = input.slice(prevIndex + 1);
parts.push(value);
if (opts.tokens) {
tokens[tokens.length - 1].value = value;
depth(tokens[tokens.length - 1]);
state.maxDepth += tokens[tokens.length - 1].depth;
}
}
state.slashes = slashes;
state.parts = parts;
}
return state;
};
scan_1$1 = scan;
return scan_1$1;
}
var parse_1$2;
var hasRequiredParse$2;
function requireParse$2 () {
if (hasRequiredParse$2) return parse_1$2;
hasRequiredParse$2 = 1;
const constants = /*@__PURE__*/ requireConstants$3();
const utils = /*@__PURE__*/ requireUtils$2();
/**
* Constants
*/
const {
MAX_LENGTH,
POSIX_REGEX_SOURCE,
REGEX_NON_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_BACKREF,
REPLACEMENTS
} = constants;
/**
* Helpers
*/
const expandRange = (args, options) => {
if (typeof options.expandRange === 'function') {
return options.expandRange(...args, options);
}
args.sort();
const value = `[${args.join('-')}]`;
return value;
};
/**
* Create the message for a syntax error
*/
const syntaxError = (type, char) => {
return `Missing ${type}: "${char}" - use "\\\\${char}" to match literal characters`;
};
const splitTopLevel = input => {
const parts = [];
let bracket = 0;
let paren = 0;
let quote = 0;
let value = '';
let escaped = false;
for (const ch of input) {
if (escaped === true) {
value += ch;
escaped = false;
continue;
}
if (ch === '\\') {
value += ch;
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
value += ch;
continue;
}
if (quote === 0) {
if (ch === '[') {
bracket++;
} else if (ch === ']' && bracket > 0) {
bracket--;
} else if (bracket === 0) {
if (ch === '(') {
paren++;
} else if (ch === ')' && paren > 0) {
paren--;
} else if (ch === '|' && paren === 0) {
parts.push(value);
value = '';
continue;
}
}
}
value += ch;
}
parts.push(value);
return parts;
};
const isPlainBranch = branch => {
let escaped = false;
for (const ch of branch) {
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (/[?*+@!()[\]{}]/.test(ch)) {
return false;
}
}
return true;
};
const normalizeSimpleBranch = branch => {
let value = branch.trim();
let changed = true;
while (changed === true) {
changed = false;
if (/^@\([^\\()[\]{}|]+\)$/.test(value)) {
value = value.slice(2, -1);
changed = true;
}
}
if (!isPlainBranch(value)) {
return;
}
return value.replace(/\\(.)/g, '$1');
};
const hasRepeatedCharPrefixOverlap = branches => {
const values = branches.map(normalizeSimpleBranch).filter(Boolean);
for (let i = 0; i < values.length; i++) {
for (let j = i + 1; j < values.length; j++) {
const a = values[i];
const b = values[j];
const char = a[0];
if (!char || a !== char.repeat(a.length) || b !== char.repeat(b.length)) {
continue;
}
if (a === b || a.startsWith(b) || b.startsWith(a)) {
return true;
}
}
}
return false;
};
const parseRepeatedExtglob = (pattern, requireEnd = true) => {
if ((pattern[0] !== '+' && pattern[0] !== '*') || pattern[1] !== '(') {
return;
}
let bracket = 0;
let paren = 0;
let quote = 0;
let escaped = false;
for (let i = 1; i < pattern.length; i++) {
const ch = pattern[i];
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
continue;
}
if (quote === 1) {
continue;
}
if (ch === '[') {
bracket++;
continue;
}
if (ch === ']' && bracket > 0) {
bracket--;
continue;
}
if (bracket > 0) {
continue;
}
if (ch === '(') {
paren++;
continue;
}
if (ch === ')') {
paren--;
if (paren === 0) {
if (requireEnd === true && i !== pattern.length - 1) {
return;
}
return {
type: pattern[0],
body: pattern.slice(2, i),
end: i
};
}
}
}
};
const getStarExtglobSequenceOutput = pattern => {
let index = 0;
const chars = [];
while (index < pattern.length) {
const match = parseRepeatedExtglob(pattern.slice(index), false);
if (!match || match.type !== '*') {
return;
}
const branches = splitTopLevel(match.body).map(branch => branch.trim());
if (branches.length !== 1) {
return;
}
const branch = normalizeSimpleBranch(branches[0]);
if (!branch || branch.length !== 1) {
return;
}
chars.push(branch);
index += match.end + 1;
}
if (chars.length < 1) {
return;
}
const source = chars.length === 1
? utils.escapeRegex(chars[0])
: `[${chars.map(ch => utils.escapeRegex(ch)).join('')}]`;
return `${source}*`;
};
const repeatedExtglobRecursion = pattern => {
let depth = 0;
let value = pattern.trim();
let match = parseRepeatedExtglob(value);
while (match) {
depth++;
value = match.body.trim();
match = parseRepeatedExtglob(value);
}
return depth;
};
const analyzeRepeatedExtglob = (body, options) => {
if (options.maxExtglobRecursion === false) {
return { risky: false };
}
const max =
typeof options.maxExtglobRecursion === 'number'
? options.maxExtglobRecursion
: constants.DEFAULT_MAX_EXTGLOB_RECURSION;
const branches = splitTopLevel(body).map(branch => branch.trim());
if (branches.length > 1) {
if (
branches.some(branch => branch === '') ||
branches.some(branch => /^[*?]+$/.test(branch)) ||
hasRepeatedCharPrefixOverlap(branches)
) {
return { risky: true };
}
}
for (const branch of branches) {
const safeOutput = getStarExtglobSequenceOutput(branch);
if (safeOutput) {
return { risky: true, safeOutput };
}
if (repeatedExtglobRecursion(branch) > max) {
return { risky: true };
}
}
return { risky: false };
};
/**
* Parse the given input string.
* @param {String} input
* @param {Object} options
* @return {Object}
*/
const parse = (input, options) => {
if (typeof input !== 'string') {
throw new TypeError('Expected a string');
}
input = REPLACEMENTS[input] || input;
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
let len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
const bos = { type: 'bos', value: '', output: opts.prepend || '' };
const tokens = [bos];
const capture = opts.capture ? '' : '?:';
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const PLATFORM_CHARS = constants.globChars(win32);
const EXTGLOB_CHARS = constants.extglobChars(PLATFORM_CHARS);
const {
DOT_LITERAL,
PLUS_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK,
QMARK_NO_DOT,
STAR,
START_ANCHOR
} = PLATFORM_CHARS;
const globstar = opts => {
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const nodot = opts.dot ? '' : NO_DOT;
const qmarkNoDot = opts.dot ? QMARK : QMARK_NO_DOT;
let star = opts.bash === true ? globstar(opts) : STAR;
if (opts.capture) {
star = `(${star})`;
}
// minimatch options support
if (typeof opts.noext === 'boolean') {
opts.noextglob = opts.noext;
}
const state = {
input,
index: -1,
start: 0,
dot: opts.dot === true,
consumed: '',
output: '',
prefix: '',
backtrack: false,
negated: false,
brackets: 0,
braces: 0,
parens: 0,
quotes: 0,
globstar: false,
tokens
};
input = utils.removePrefix(input, state);
len = input.length;
const extglobs = [];
const braces = [];
const stack = [];
let prev = bos;
let value;
/**
* Tokenizing helpers
*/
const eos = () => state.index === len - 1;
const peek = state.peek = (n = 1) => input[state.index + n];
const advance = state.advance = () => input[++state.index] || '';
const remaining = () => input.slice(state.index + 1);
const consume = (value = '', num = 0) => {
state.consumed += value;
state.index += num;
};
const append = token => {
state.output += token.output != null ? token.output : token.value;
consume(token.value);
};
const negate = () => {
let count = 1;
while (peek() === '!' && (peek(2) !== '(' || peek(3) === '?')) {
advance();
state.start++;
count++;
}
if (count % 2 === 0) {
return false;
}
state.negated = true;
state.start++;
return true;
};
const increment = type => {
state[type]++;
stack.push(type);
};
const decrement = type => {
state[type]--;
stack.pop();
};
/**
* Push tokens onto the tokens array. This helper speeds up
* tokenizing by 1) helping us avoid backtracking as much as possible,
* and 2) helping us avoid creating extra tokens when consecutive
* characters are plain text. This improves performance and simplifies
* lookbehinds.
*/
const push = tok => {
if (prev.type === 'globstar') {
const isBrace = state.braces > 0 && (tok.type === 'comma' || tok.type === 'brace');
const isExtglob = tok.extglob === true || (extglobs.length && (tok.type === 'pipe' || tok.type === 'paren'));
if (tok.type !== 'slash' && tok.type !== 'paren' && !isBrace && !isExtglob) {
state.output = state.output.slice(0, -prev.output.length);
prev.type = 'star';
prev.value = '*';
prev.output = star;
state.output += prev.output;
}
}
if (extglobs.length && tok.type !== 'paren') {
extglobs[extglobs.length - 1].inner += tok.value;
}
if (tok.value || tok.output) append(tok);
if (prev && prev.type === 'text' && tok.type === 'text') {
prev.value += tok.value;
prev.output = (prev.output || '') + tok.value;
return;
}
tok.prev = prev;
tokens.push(tok);
prev = tok;
};
const extglobOpen = (type, value) => {
const token = { ...EXTGLOB_CHARS[value], conditions: 1, inner: '' };
token.prev = prev;
token.parens = state.parens;
token.output = state.output;
token.startIndex = state.index;
token.tokensIndex = tokens.length;
const output = (opts.capture ? '(' : '') + token.open;
increment('parens');
push({ type, value, output: state.output ? '' : ONE_CHAR });
push({ type: 'paren', extglob: true, value: advance(), output });
extglobs.push(token);
};
const extglobClose = token => {
const literal = input.slice(token.startIndex, state.index + 1);
const body = input.slice(token.startIndex + 2, state.index);
const analysis = analyzeRepeatedExtglob(body, opts);
if ((token.type === 'plus' || token.type === 'star') && analysis.risky) {
const safeOutput = analysis.safeOutput
? (token.output ? '' : ONE_CHAR) + (opts.capture ? `(${analysis.safeOutput})` : analysis.safeOutput)
: undefined;
const open = tokens[token.tokensIndex];
open.type = 'text';
open.value = literal;
open.output = safeOutput || utils.escapeRegex(literal);
for (let i = token.tokensIndex + 1; i < tokens.length; i++) {
tokens[i].value = '';
tokens[i].output = '';
delete tokens[i].suffix;
}
state.output = token.output + open.output;
state.backtrack = true;
push({ type: 'paren', extglob: true, value, output: '' });
decrement('parens');
return;
}
let output = token.close + (opts.capture ? ')' : '');
let rest;
if (token.type === 'negate') {
let extglobStar = star;
if (token.inner && token.inner.length > 1 && token.inner.includes('/')) {
extglobStar = globstar(opts);
}
if (extglobStar !== star || eos() || /^\)+$/.test(remaining())) {
output = token.close = `)$))${extglobStar}`;
}
if (token.inner.includes('*') && (rest = remaining()) && /^\.[^\\/.]+$/.test(rest)) {
// Any non-magical string (`.ts`) or even nested expression (`.{ts,tsx}`) can follow after the closing parenthesis.
// In this case, we need to parse the string and use it in the output of the original pattern.
// Suitable patterns: `/!(*.d).ts`, `/!(*.d).{ts,tsx}`, `**/!(*-dbg).@(js)`.
//
// Disabling the `fastpaths` option due to a problem with parsing strings as `.ts` in the pattern like `**/!(*.d).ts`.
const expression = parse(rest, { ...options, fastpaths: false }).output;
output = token.close = `)${expression})${extglobStar})`;
}
if (token.prev.type === 'bos') {
state.negatedExtglob = true;
}
}
push({ type: 'paren', extglob: true, value, output });
decrement('parens');
};
/**
* Fast paths
*/
if (opts.fastpaths !== false && !/(^[*!]|[/()[\]{}"])/.test(input)) {
let backslashes = false;
let output = input.replace(REGEX_SPECIAL_CHARS_BACKREF, (m, esc, chars, first, rest, index) => {
if (first === '\\') {
backslashes = true;
return m;
}
if (first === '?') {
if (esc) {
return esc + first + (rest ? QMARK.repeat(rest.length) : '');
}
if (index === 0) {
return qmarkNoDot + (rest ? QMARK.repeat(rest.length) : '');
}
return QMARK.repeat(chars.length);
}
if (first === '.') {
return DOT_LITERAL.repeat(chars.length);
}
if (first === '*') {
if (esc) {
return esc + first + (rest ? star : '');
}
return star;
}
return esc ? m : `\\${m}`;
});
if (backslashes === true) {
if (opts.unescape === true) {
output = output.replace(/\\/g, '');
} else {
output = output.replace(/\\+/g, m => {
return m.length % 2 === 0 ? '\\\\' : (m ? '\\' : '');
});
}
}
if (output === input && opts.contains === true) {
state.output = input;
return state;
}
state.output = utils.wrapOutput(output, state, options);
return state;
}
/**
* Tokenize input until we reach end-of-string
*/
while (!eos()) {
value = advance();
if (value === '\u0000') {
continue;
}
/**
* Escaped characters
*/
if (value === '\\') {
const next = peek();
if (next === '/' && opts.bash !== true) {
continue;
}
if (next === '.' || next === ';') {
continue;
}
if (!next) {
value += '\\';
push({ type: 'text', value });
continue;
}
// collapse slashes to reduce potential for exploits
const match = /^\\+/.exec(remaining());
let slashes = 0;
if (match && match[0].length > 2) {
slashes = match[0].length;
state.index += slashes;
if (slashes % 2 !== 0) {
value += '\\';
}
}
if (opts.unescape === true) {
value = advance();
} else {
value += advance();
}
if (state.brackets === 0) {
push({ type: 'text', value });
continue;
}
}
/**
* If we're inside a regex character class, continue
* until we reach the closing bracket.
*/
if (state.brackets > 0 && (value !== ']' || prev.value === '[' || prev.value === '[^')) {
if (opts.posix !== false && value === ':') {
const inner = prev.value.slice(1);
if (inner.includes('[')) {
prev.posix = true;
if (inner.includes(':')) {
const idx = prev.value.lastIndexOf('[');
const pre = prev.value.slice(0, idx);
const rest = prev.value.slice(idx + 2);
const posix = POSIX_REGEX_SOURCE[rest];
if (posix) {
prev.value = pre + posix;
state.backtrack = true;
advance();
if (!bos.output && tokens.indexOf(prev) === 1) {
bos.output = ONE_CHAR;
}
continue;
}
}
}
}
if ((value === '[' && peek() !== ':') || (value === '-' && peek() === ']')) {
value = `\\${value}`;
}
if (value === ']' && (prev.value === '[' || prev.value === '[^')) {
value = `\\${value}`;
}
if (opts.posix === true && value === '!' && prev.value === '[') {
value = '^';
}
prev.value += value;
append({ value });
continue;
}
/**
* If we're inside a quoted string, continue
* until we reach the closing double quote.
*/
if (state.quotes === 1 && value !== '"') {
value = utils.escapeRegex(value);
prev.value += value;
append({ value });
continue;
}
/**
* Double quotes
*/
if (value === '"') {
state.quotes = state.quotes === 1 ? 0 : 1;
if (opts.keepQuotes === true) {
push({ type: 'text', value });
}
continue;
}
/**
* Parentheses
*/
if (value === '(') {
increment('parens');
push({ type: 'paren', value });
continue;
}
if (value === ')') {
if (state.parens === 0 && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '('));
}
const extglob = extglobs[extglobs.length - 1];
if (extglob && state.parens === extglob.parens + 1) {
extglobClose(extglobs.pop());
continue;
}
push({ type: 'paren', value, output: state.parens ? ')' : '\\)' });
decrement('parens');
continue;
}
/**
* Square brackets
*/
if (value === '[') {
if (opts.nobracket === true || !remaining().includes(']')) {
if (opts.nobracket !== true && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('closing', ']'));
}
value = `\\${value}`;
} else {
increment('brackets');
}
push({ type: 'bracket', value });
continue;
}
if (value === ']') {
if (opts.nobracket === true || (prev && prev.type === 'bracket' && prev.value.length === 1)) {
push({ type: 'text', value, output: `\\${value}` });
continue;
}
if (state.brackets === 0) {
if (opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '['));
}
push({ type: 'text', value, output: `\\${value}` });
continue;
}
decrement('brackets');
const prevValue = prev.value.slice(1);
if (prev.posix !== true && prevValue[0] === '^' && !prevValue.includes('/')) {
value = `/${value}`;
}
prev.value += value;
append({ value });
// when literal brackets are explicitly disabled
// assume we should match with a regex character class
if (opts.literalBrackets === false || utils.hasRegexChars(prevValue)) {
continue;
}
const escaped = utils.escapeRegex(prev.value);
state.output = state.output.slice(0, -prev.value.length);
// when literal brackets are explicitly enabled
// assume we should escape the brackets to match literal characters
if (opts.literalBrackets === true) {
state.output += escaped;
prev.value = escaped;
continue;
}
// when the user specifies nothing, try to match both
prev.value = `(${capture}${escaped}|${prev.value})`;
state.output += prev.value;
continue;
}
/**
* Braces
*/
if (value === '{' && opts.nobrace !== true) {
increment('braces');
const open = {
type: 'brace',
value,
output: '(',
outputIndex: state.output.length,
tokensIndex: state.tokens.length
};
braces.push(open);
push(open);
continue;
}
if (value === '}') {
const brace = braces[braces.length - 1];
if (opts.nobrace === true || !brace) {
push({ type: 'text', value, output: value });
continue;
}
let output = ')';
if (brace.dots === true) {
const arr = tokens.slice();
const range = [];
for (let i = arr.length - 1; i >= 0; i--) {
tokens.pop();
if (arr[i].type === 'brace') {
break;
}
if (arr[i].type !== 'dots') {
range.unshift(arr[i].value);
}
}
output = expandRange(range, opts);
state.backtrack = true;
}
if (brace.comma !== true && brace.dots !== true) {
const out = state.output.slice(0, brace.outputIndex);
const toks = state.tokens.slice(brace.tokensIndex);
brace.value = brace.output = '\\{';
value = output = '\\}';
state.output = out;
for (const t of toks) {
state.output += (t.output || t.value);
}
}
push({ type: 'brace', value, output });
decrement('braces');
braces.pop();
continue;
}
/**
* Pipes
*/
if (value === '|') {
if (extglobs.length > 0) {
extglobs[extglobs.length - 1].conditions++;
}
push({ type: 'text', value });
continue;
}
/**
* Commas
*/
if (value === ',') {
let output = value;
const brace = braces[braces.length - 1];
if (brace && stack[stack.length - 1] === 'braces') {
brace.comma = true;
output = '|';
}
push({ type: 'comma', value, output });
continue;
}
/**
* Slashes
*/
if (value === '/') {
// if the beginning of the glob is "./", advance the start
// to the current index, and don't add the "./" characters
// to the state. This greatly simplifies lookbehinds when
// checking for BOS characters like "!" and "." (not "./")
if (prev.type === 'dot' && state.index === state.start + 1) {
state.start = state.index + 1;
state.consumed = '';
state.output = '';
tokens.pop();
prev = bos; // reset "prev" to the first token
continue;
}
push({ type: 'slash', value, output: SLASH_LITERAL });
continue;
}
/**
* Dots
*/
if (value === '.') {
if (state.braces > 0 && prev.type === 'dot') {
if (prev.value === '.') prev.output = DOT_LITERAL;
const brace = braces[braces.length - 1];
prev.type = 'dots';
prev.output += value;
prev.value += value;
brace.dots = true;
continue;
}
if ((state.braces + state.parens) === 0 && prev.type !== 'bos' && prev.type !== 'slash') {
push({ type: 'text', value, output: DOT_LITERAL });
continue;
}
push({ type: 'dot', value, output: DOT_LITERAL });
continue;
}
/**
* Question marks
*/
if (value === '?') {
const isGroup = prev && prev.value === '(';
if (!isGroup && opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('qmark', value);
continue;
}
if (prev && prev.type === 'paren') {
const next = peek();
let output = value;
if (next === '<' && !utils.supportsLookbehinds()) {
throw new Error('Node.js v10 or higher is required for regex lookbehinds');
}
if ((prev.value === '(' && !/[!=<:]/.test(next)) || (next === '<' && !/<([!=]|\w+>)/.test(remaining()))) {
output = `\\${value}`;
}
push({ type: 'text', value, output });
continue;
}
if (opts.dot !== true && (prev.type === 'slash' || prev.type === 'bos')) {
push({ type: 'qmark', value, output: QMARK_NO_DOT });
continue;
}
push({ type: 'qmark', value, output: QMARK });
continue;
}
/**
* Exclamation
*/
if (value === '!') {
if (opts.noextglob !== true && peek() === '(') {
if (peek(2) !== '?' || !/[!=<:]/.test(peek(3))) {
extglobOpen('negate', value);
continue;
}
}
if (opts.nonegate !== true && state.index === 0) {
negate();
continue;
}
}
/**
* Plus
*/
if (value === '+') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('plus', value);
continue;
}
if ((prev && prev.value === '(') || opts.regex === false) {
push({ type: 'plus', value, output: PLUS_LITERAL });
continue;
}
if ((prev && (prev.type === 'bracket' || prev.type === 'paren' || prev.type === 'brace')) || state.parens > 0) {
push({ type: 'plus', value });
continue;
}
push({ type: 'plus', value: PLUS_LITERAL });
continue;
}
/**
* Plain text
*/
if (value === '@') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
push({ type: 'at', extglob: true, value, output: '' });
continue;
}
push({ type: 'text', value });
continue;
}
/**
* Plain text
*/
if (value !== '*') {
if (value === '$' || value === '^') {
value = `\\${value}`;
}
const match = REGEX_NON_SPECIAL_CHARS.exec(remaining());
if (match) {
value += match[0];
state.index += match[0].length;
}
push({ type: 'text', value });
continue;
}
/**
* Stars
*/
if (prev && (prev.type === 'globstar' || prev.star === true)) {
prev.type = 'star';
prev.star = true;
prev.value += value;
prev.output = star;
state.backtrack = true;
state.globstar = true;
consume(value);
continue;
}
let rest = remaining();
if (opts.noextglob !== true && /^\([^?]/.test(rest)) {
extglobOpen('star', value);
continue;
}
if (prev.type === 'star') {
if (opts.noglobstar === true) {
consume(value);
continue;
}
const prior = prev.prev;
const before = prior.prev;
const isStart = prior.type === 'slash' || prior.type === 'bos';
const afterStar = before && (before.type === 'star' || before.type === 'globstar');
if (opts.bash === true && (!isStart || (rest[0] && rest[0] !== '/'))) {
push({ type: 'star', value, output: '' });
continue;
}
const isBrace = state.braces > 0 && (prior.type === 'comma' || prior.type === 'brace');
const isExtglob = extglobs.length && (prior.type === 'pipe' || prior.type === 'paren');
if (!isStart && prior.type !== 'paren' && !isBrace && !isExtglob) {
push({ type: 'star', value, output: '' });
continue;
}
// strip consecutive `/**/`
while (rest.slice(0, 3) === '/**') {
const after = input[state.index + 4];
if (after && after !== '/') {
break;
}
rest = rest.slice(3);
consume('/**', 3);
}
if (prior.type === 'bos' && eos()) {
prev.type = 'globstar';
prev.value += value;
prev.output = globstar(opts);
state.output = prev.output;
state.globstar = true;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && !afterStar && eos()) {
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = globstar(opts) + (opts.strictSlashes ? ')' : '|$)');
prev.value += value;
state.globstar = true;
state.output += prior.output + prev.output;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && rest[0] === '/') {
const end = rest[1] !== void 0 ? '|$' : '';
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = `${globstar(opts)}${SLASH_LITERAL}|${SLASH_LITERAL}${end})`;
prev.value += value;
state.output += prior.output + prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
if (prior.type === 'bos' && rest[0] === '/') {
prev.type = 'globstar';
prev.value += value;
prev.output = `(?:^|${SLASH_LITERAL}|${globstar(opts)}${SLASH_LITERAL})`;
state.output = prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
// remove single star from output
state.output = state.output.slice(0, -prev.output.length);
// reset previous token to globstar
prev.type = 'globstar';
prev.output = globstar(opts);
prev.value += value;
// reset output with globstar
state.output += prev.output;
state.globstar = true;
consume(value);
continue;
}
const token = { type: 'star', value, output: star };
if (opts.bash === true) {
token.output = '.*?';
if (prev.type === 'bos' || prev.type === 'slash') {
token.output = nodot + token.output;
}
push(token);
continue;
}
if (prev && (prev.type === 'bracket' || prev.type === 'paren') && opts.regex === true) {
token.output = value;
push(token);
continue;
}
if (state.index === state.start || prev.type === 'slash' || prev.type === 'dot') {
if (prev.type === 'dot') {
state.output += NO_DOT_SLASH;
prev.output += NO_DOT_SLASH;
} else if (opts.dot === true) {
state.output += NO_DOTS_SLASH;
prev.output += NO_DOTS_SLASH;
} else {
state.output += nodot;
prev.output += nodot;
}
if (peek() !== '*') {
state.output += ONE_CHAR;
prev.output += ONE_CHAR;
}
}
push(token);
}
while (state.brackets > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ']'));
state.output = utils.escapeLast(state.output, '[');
decrement('brackets');
}
while (state.parens > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ')'));
state.output = utils.escapeLast(state.output, '(');
decrement('parens');
}
while (state.braces > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', '}'));
state.output = utils.escapeLast(state.output, '{');
decrement('braces');
}
if (opts.strictSlashes !== true && (prev.type === 'star' || prev.type === 'bracket')) {
push({ type: 'maybe_slash', value: '', output: `${SLASH_LITERAL}?` });
}
// rebuild the output if we had to backtrack at any point
if (state.backtrack === true) {
state.output = '';
for (const token of state.tokens) {
state.output += token.output != null ? token.output : token.value;
if (token.suffix) {
state.output += token.suffix;
}
}
}
return state;
};
/**
* Fast paths for creating regular expressions for common glob patterns.
* This can significantly speed up processing and has very little downside
* impact when none of the fast paths match.
*/
parse.fastpaths = (input, options) => {
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
const len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
input = REPLACEMENTS[input] || input;
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const {
DOT_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOTS_SLASH,
STAR,
START_ANCHOR
} = constants.globChars(win32);
const nodot = opts.dot ? NO_DOTS : NO_DOT;
const slashDot = opts.dot ? NO_DOTS_SLASH : NO_DOT;
const capture = opts.capture ? '' : '?:';
const state = { negated: false, prefix: '' };
let star = opts.bash === true ? '.*?' : STAR;
if (opts.capture) {
star = `(${star})`;
}
const globstar = opts => {
if (opts.noglobstar === true) return star;
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const create = str => {
switch (str) {
case '*':
return `${nodot}${ONE_CHAR}${star}`;
case '.*':
return `${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*.*':
return `${nodot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*/*':
return `${nodot}${star}${SLASH_LITERAL}${ONE_CHAR}${slashDot}${star}`;
case '**':
return nodot + globstar(opts);
case '**/*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${ONE_CHAR}${star}`;
case '**/*.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '**/.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${DOT_LITERAL}${ONE_CHAR}${star}`;
default: {
const match = /^(.*?)\.(\w+)$/.exec(str);
if (!match) return;
const source = create(match[1]);
if (!source) return;
return source + DOT_LITERAL + match[2];
}
}
};
const output = utils.removePrefix(input, state);
let source = create(output);
if (source && opts.strictSlashes !== true) {
source += `${SLASH_LITERAL}?`;
}
return source;
};
parse_1$2 = parse;
return parse_1$2;
}
var picomatch_1$1;
var hasRequiredPicomatch$3;
function requirePicomatch$3 () {
if (hasRequiredPicomatch$3) return picomatch_1$1;
hasRequiredPicomatch$3 = 1;
const path = require$$0$1;
const scan = /*@__PURE__*/ requireScan$1();
const parse = /*@__PURE__*/ requireParse$2();
const utils = /*@__PURE__*/ requireUtils$2();
const constants = /*@__PURE__*/ requireConstants$3();
const isObject = val => val && typeof val === 'object' && !Array.isArray(val);
/**
* Creates a matcher function from one or more glob patterns. The
* returned function takes a string to match as its first argument,
* and returns true if the string is a match. The returned matcher
* function also takes a boolean as the second argument that, when true,
* returns an object with additional information.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch(glob[, options]);
*
* const isMatch = picomatch('*.!(*a)');
* console.log(isMatch('a.a')); //=> false
* console.log(isMatch('a.b')); //=> true
* ```
* @name picomatch
* @param {String|Array} `globs` One or more glob patterns.
* @param {Object=} `options`
* @return {Function=} Returns a matcher function.
* @api public
*/
const picomatch = (glob, options, returnState = false) => {
if (Array.isArray(glob)) {
const fns = glob.map(input => picomatch(input, options, returnState));
const arrayMatcher = str => {
for (const isMatch of fns) {
const state = isMatch(str);
if (state) return state;
}
return false;
};
return arrayMatcher;
}
const isState = isObject(glob) && glob.tokens && glob.input;
if (glob === '' || (typeof glob !== 'string' && !isState)) {
throw new TypeError('Expected pattern to be a non-empty string');
}
const opts = options || {};
const posix = utils.isWindows(options);
const regex = isState
? picomatch.compileRe(glob, options)
: picomatch.makeRe(glob, options, false, true);
const state = regex.state;
delete regex.state;
let isIgnored = () => false;
if (opts.ignore) {
const ignoreOpts = { ...options, ignore: null, onMatch: null, onResult: null };
isIgnored = picomatch(opts.ignore, ignoreOpts, returnState);
}
const matcher = (input, returnObject = false) => {
const { isMatch, match, output } = picomatch.test(input, regex, options, { glob, posix });
const result = { glob, state, regex, posix, input, output, match, isMatch };
if (typeof opts.onResult === 'function') {
opts.onResult(result);
}
if (isMatch === false) {
result.isMatch = false;
return returnObject ? result : false;
}
if (isIgnored(input)) {
if (typeof opts.onIgnore === 'function') {
opts.onIgnore(result);
}
result.isMatch = false;
return returnObject ? result : false;
}
if (typeof opts.onMatch === 'function') {
opts.onMatch(result);
}
return returnObject ? result : true;
};
if (returnState) {
matcher.state = state;
}
return matcher;
};
/**
* Test `input` with the given `regex`. This is used by the main
* `picomatch()` function to test the input string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.test(input, regex[, options]);
*
* console.log(picomatch.test('foo/bar', /^(?:([^/]*?)\/([^/]*?))$/));
* // { isMatch: true, match: [ 'foo/', 'foo', 'bar' ], output: 'foo/bar' }
* ```
* @param {String} `input` String to test.
* @param {RegExp} `regex`
* @return {Object} Returns an object with matching info.
* @api public
*/
picomatch.test = (input, regex, options, { glob, posix } = {}) => {
if (typeof input !== 'string') {
throw new TypeError('Expected input to be a string');
}
if (input === '') {
return { isMatch: false, output: '' };
}
const opts = options || {};
const format = opts.format || (posix ? utils.toPosixSlashes : null);
let match = input === glob;
let output = (match && format) ? format(input) : input;
if (match === false) {
output = format ? format(input) : input;
match = output === glob;
}
if (match === false || opts.capture === true) {
if (opts.matchBase === true || opts.basename === true) {
match = picomatch.matchBase(input, regex, options, posix);
} else {
match = regex.exec(output);
}
}
return { isMatch: Boolean(match), match, output };
};
/**
* Match the basename of a filepath.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.matchBase(input, glob[, options]);
* console.log(picomatch.matchBase('foo/bar.js', '*.js'); // true
* ```
* @param {String} `input` String to test.
* @param {RegExp|String} `glob` Glob pattern or regex created by [.makeRe](#makeRe).
* @return {Boolean}
* @api public
*/
picomatch.matchBase = (input, glob, options, posix = utils.isWindows(options)) => {
const regex = glob instanceof RegExp ? glob : picomatch.makeRe(glob, options);
return regex.test(path.basename(input));
};
/**
* Returns true if **any** of the given glob `patterns` match the specified `string`.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.isMatch(string, patterns[, options]);
*
* console.log(picomatch.isMatch('a.a', ['b.*', '*.a'])); //=> true
* console.log(picomatch.isMatch('a.a', 'b.*')); //=> false
* ```
* @param {String|Array} str The string to test.
* @param {String|Array} patterns One or more glob patterns to use for matching.
* @param {Object} [options] See available [options](#options).
* @return {Boolean} Returns true if any patterns match `str`
* @api public
*/
picomatch.isMatch = (str, patterns, options) => picomatch(patterns, options)(str);
/**
* Parse a glob pattern to create the source string for a regular
* expression.
*
* ```js
* const picomatch = require('picomatch');
* const result = picomatch.parse(pattern[, options]);
* ```
* @param {String} `pattern`
* @param {Object} `options`
* @return {Object} Returns an object with useful properties and output to be used as a regex source string.
* @api public
*/
picomatch.parse = (pattern, options) => {
if (Array.isArray(pattern)) return pattern.map(p => picomatch.parse(p, options));
return parse(pattern, { ...options, fastpaths: false });
};
/**
* Scan a glob pattern to separate the pattern into segments.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.scan(input[, options]);
*
* const result = picomatch.scan('!./foo/*.js');
* console.log(result);
* { prefix: '!./',
* input: '!./foo/*.js',
* start: 3,
* base: 'foo',
* glob: '*.js',
* isBrace: false,
* isBracket: false,
* isGlob: true,
* isExtglob: false,
* isGlobstar: false,
* negated: true }
* ```
* @param {String} `input` Glob pattern to scan.
* @param {Object} `options`
* @return {Object} Returns an object with
* @api public
*/
picomatch.scan = (input, options) => scan(input, options);
/**
* Compile a regular expression from the `state` object returned by the
* [parse()](#parse) method.
*
* @param {Object} `state`
* @param {Object} `options`
* @param {Boolean} `returnOutput` Intended for implementors, this argument allows you to return the raw output from the parser.
* @param {Boolean} `returnState` Adds the state to a `state` property on the returned regex. Useful for implementors and debugging.
* @return {RegExp}
* @api public
*/
picomatch.compileRe = (state, options, returnOutput = false, returnState = false) => {
if (returnOutput === true) {
return state.output;
}
const opts = options || {};
const prepend = opts.contains ? '' : '^';
const append = opts.contains ? '' : '$';
let source = `${prepend}(?:${state.output})${append}`;
if (state && state.negated === true) {
source = `^(?!${source}).*$`;
}
const regex = picomatch.toRegex(source, options);
if (returnState === true) {
regex.state = state;
}
return regex;
};
/**
* Create a regular expression from a parsed glob pattern.
*
* ```js
* const picomatch = require('picomatch');
* const state = picomatch.parse('*.js');
* // picomatch.compileRe(state[, options]);
*
* console.log(picomatch.compileRe(state));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `state` The object returned from the `.parse` method.
* @param {Object} `options`
* @param {Boolean} `returnOutput` Implementors may use this argument to return the compiled output, instead of a regular expression. This is not exposed on the options to prevent end-users from mutating the result.
* @param {Boolean} `returnState` Implementors may use this argument to return the state from the parsed glob with the returned regular expression.
* @return {RegExp} Returns a regex created from the given pattern.
* @api public
*/
picomatch.makeRe = (input, options = {}, returnOutput = false, returnState = false) => {
if (!input || typeof input !== 'string') {
throw new TypeError('Expected a non-empty string');
}
let parsed = { negated: false, fastpaths: true };
if (options.fastpaths !== false && (input[0] === '.' || input[0] === '*')) {
parsed.output = parse.fastpaths(input, options);
}
if (!parsed.output) {
parsed = parse(input, options);
}
return picomatch.compileRe(parsed, options, returnOutput, returnState);
};
/**
* Create a regular expression from the given regex source string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.toRegex(source[, options]);
*
* const { output } = picomatch.parse('*.js');
* console.log(picomatch.toRegex(output));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `source` Regular expression source string.
* @param {Object} `options`
* @return {RegExp}
* @api public
*/
picomatch.toRegex = (source, options) => {
try {
const opts = options || {};
return new RegExp(source, opts.flags || (opts.nocase ? 'i' : ''));
} catch (err) {
if (options && options.debug === true) throw err;
return /$^/;
}
};
/**
* Picomatch constants.
* @return {Object}
*/
picomatch.constants = constants;
/**
* Expose "picomatch"
*/
picomatch_1$1 = picomatch;
return picomatch_1$1;
}
var picomatch$1;
var hasRequiredPicomatch$2;
function requirePicomatch$2 () {
if (hasRequiredPicomatch$2) return picomatch$1;
hasRequiredPicomatch$2 = 1;
picomatch$1 = /*@__PURE__*/ requirePicomatch$3();
return picomatch$1;
}
var readdirp_1;
var hasRequiredReaddirp;
function requireReaddirp () {
if (hasRequiredReaddirp) return readdirp_1;
hasRequiredReaddirp = 1;
const fs = require$$0$2;
const { Readable } = require$$1;
const sysPath = require$$0$1;
const { promisify } = require$$2;
const picomatch = /*@__PURE__*/ requirePicomatch$2();
const readdir = promisify(fs.readdir);
const stat = promisify(fs.stat);
const lstat = promisify(fs.lstat);
const realpath = promisify(fs.realpath);
/**
* @typedef {Object} EntryInfo
* @property {String} path
* @property {String} fullPath
* @property {fs.Stats=} stats
* @property {fs.Dirent=} dirent
* @property {String} basename
*/
const BANG = '!';
const RECURSIVE_ERROR_CODE = 'READDIRP_RECURSIVE_ERROR';
const NORMAL_FLOW_ERRORS = new Set(['ENOENT', 'EPERM', 'EACCES', 'ELOOP', RECURSIVE_ERROR_CODE]);
const FILE_TYPE = 'files';
const DIR_TYPE = 'directories';
const FILE_DIR_TYPE = 'files_directories';
const EVERYTHING_TYPE = 'all';
const ALL_TYPES = [FILE_TYPE, DIR_TYPE, FILE_DIR_TYPE, EVERYTHING_TYPE];
const isNormalFlowError = error => NORMAL_FLOW_ERRORS.has(error.code);
const [maj, min] = process.versions.node.split('.').slice(0, 2).map(n => Number.parseInt(n, 10));
const wantBigintFsStats = process.platform === 'win32' && (maj > 10 || (maj === 10 && min >= 5));
const normalizeFilter = filter => {
if (filter === undefined) return;
if (typeof filter === 'function') return filter;
if (typeof filter === 'string') {
const glob = picomatch(filter.trim());
return entry => glob(entry.basename);
}
if (Array.isArray(filter)) {
const positive = [];
const negative = [];
for (const item of filter) {
const trimmed = item.trim();
if (trimmed.charAt(0) === BANG) {
negative.push(picomatch(trimmed.slice(1)));
} else {
positive.push(picomatch(trimmed));
}
}
if (negative.length > 0) {
if (positive.length > 0) {
return entry =>
positive.some(f => f(entry.basename)) && !negative.some(f => f(entry.basename));
}
return entry => !negative.some(f => f(entry.basename));
}
return entry => positive.some(f => f(entry.basename));
}
};
class ReaddirpStream extends Readable {
static get defaultOptions() {
return {
root: '.',
/* eslint-disable no-unused-vars */
fileFilter: (path) => true,
directoryFilter: (path) => true,
/* eslint-enable no-unused-vars */
type: FILE_TYPE,
lstat: false,
depth: 2147483648,
alwaysStat: false
};
}
constructor(options = {}) {
super({
objectMode: true,
autoDestroy: true,
highWaterMark: options.highWaterMark || 4096
});
const opts = { ...ReaddirpStream.defaultOptions, ...options };
const { root, type } = opts;
this._fileFilter = normalizeFilter(opts.fileFilter);
this._directoryFilter = normalizeFilter(opts.directoryFilter);
const statMethod = opts.lstat ? lstat : stat;
// Use bigint stats if it's windows and stat() supports options (node 10+).
if (wantBigintFsStats) {
this._stat = path => statMethod(path, { bigint: true });
} else {
this._stat = statMethod;
}
this._maxDepth = opts.depth;
this._wantsDir = [DIR_TYPE, FILE_DIR_TYPE, EVERYTHING_TYPE].includes(type);
this._wantsFile = [FILE_TYPE, FILE_DIR_TYPE, EVERYTHING_TYPE].includes(type);
this._wantsEverything = type === EVERYTHING_TYPE;
this._root = sysPath.resolve(root);
this._isDirent = ('Dirent' in fs) && !opts.alwaysStat;
this._statsProp = this._isDirent ? 'dirent' : 'stats';
this._rdOptions = { encoding: 'utf8', withFileTypes: this._isDirent };
// Launch stream with one parent, the root dir.
this.parents = [this._exploreDir(root, 1)];
this.reading = false;
this.parent = undefined;
}
async _read(batch) {
if (this.reading) return;
this.reading = true;
try {
while (!this.destroyed && batch > 0) {
const { path, depth, files = [] } = this.parent || {};
if (files.length > 0) {
const slice = files.splice(0, batch).map(dirent => this._formatEntry(dirent, path));
for (const entry of await Promise.all(slice)) {
if (this.destroyed) return;
const entryType = await this._getEntryType(entry);
if (entryType === 'directory' && this._directoryFilter(entry)) {
if (depth <= this._maxDepth) {
this.parents.push(this._exploreDir(entry.fullPath, depth + 1));
}
if (this._wantsDir) {
this.push(entry);
batch--;
}
} else if ((entryType === 'file' || this._includeAsFile(entry)) && this._fileFilter(entry)) {
if (this._wantsFile) {
this.push(entry);
batch--;
}
}
}
} else {
const parent = this.parents.pop();
if (!parent) {
this.push(null);
break;
}
this.parent = await parent;
if (this.destroyed) return;
}
}
} catch (error) {
this.destroy(error);
} finally {
this.reading = false;
}
}
async _exploreDir(path, depth) {
let files;
try {
files = await readdir(path, this._rdOptions);
} catch (error) {
this._onError(error);
}
return { files, depth, path };
}
async _formatEntry(dirent, path) {
let entry;
try {
const basename = this._isDirent ? dirent.name : dirent;
const fullPath = sysPath.resolve(sysPath.join(path, basename));
entry = { path: sysPath.relative(this._root, fullPath), fullPath, basename };
entry[this._statsProp] = this._isDirent ? dirent : await this._stat(fullPath);
} catch (err) {
this._onError(err);
}
return entry;
}
_onError(err) {
if (isNormalFlowError(err) && !this.destroyed) {
this.emit('warn', err);
} else {
this.destroy(err);
}
}
async _getEntryType(entry) {
// entry may be undefined, because a warning or an error were emitted
// and the statsProp is undefined
const stats = entry && entry[this._statsProp];
if (!stats) {
return;
}
if (stats.isFile()) {
return 'file';
}
if (stats.isDirectory()) {
return 'directory';
}
if (stats && stats.isSymbolicLink()) {
const full = entry.fullPath;
try {
const entryRealPath = await realpath(full);
const entryRealPathStats = await lstat(entryRealPath);
if (entryRealPathStats.isFile()) {
return 'file';
}
if (entryRealPathStats.isDirectory()) {
const len = entryRealPath.length;
if (full.startsWith(entryRealPath) && full.substr(len, 1) === sysPath.sep) {
const recursiveError = new Error(
`Circular symlink detected: "${full}" points to "${entryRealPath}"`
);
recursiveError.code = RECURSIVE_ERROR_CODE;
return this._onError(recursiveError);
}
return 'directory';
}
} catch (error) {
this._onError(error);
}
}
}
_includeAsFile(entry) {
const stats = entry && entry[this._statsProp];
return stats && this._wantsEverything && !stats.isDirectory();
}
}
/**
* @typedef {Object} ReaddirpArguments
* @property {Function=} fileFilter
* @property {Function=} directoryFilter
* @property {String=} type
* @property {Number=} depth
* @property {String=} root
* @property {Boolean=} lstat
* @property {Boolean=} bigint
*/
/**
* Main function which ends up calling readdirRec and reads all files and directories in given root recursively.
* @param {String} root Root directory
* @param {ReaddirpArguments=} options Options to specify root (start directory), filters and recursion depth
*/
const readdirp = (root, options = {}) => {
let type = options.entryType || options.type;
if (type === 'both') type = FILE_DIR_TYPE; // backwards-compatibility
if (type) options.type = type;
if (!root) {
throw new Error('readdirp: root argument is required. Usage: readdirp(root, options)');
} else if (typeof root !== 'string') {
throw new TypeError('readdirp: root argument must be a string. Usage: readdirp(root, options)');
} else if (type && !ALL_TYPES.includes(type)) {
throw new Error(`readdirp: Invalid type passed. Use one of ${ALL_TYPES.join(', ')}`);
}
options.root = root;
return new ReaddirpStream(options);
};
const readdirpPromise = (root, options = {}) => {
return new Promise((resolve, reject) => {
const files = [];
readdirp(root, options)
.on('data', entry => files.push(entry))
.on('end', () => resolve(files))
.on('error', error => reject(error));
});
};
readdirp.promise = readdirpPromise;
readdirp.ReaddirpStream = ReaddirpStream;
readdirp.default = readdirp;
readdirp_1 = readdirp;
return readdirp_1;
}
var anymatch = {exports: {}};
var utils$1 = {};
var constants$2;
var hasRequiredConstants$2;
function requireConstants$2 () {
if (hasRequiredConstants$2) return constants$2;
hasRequiredConstants$2 = 1;
const path = require$$0$1;
const WIN_SLASH = '\\\\/';
const WIN_NO_SLASH = `[^${WIN_SLASH}]`;
const DEFAULT_MAX_EXTGLOB_RECURSION = 0;
/**
* Posix glob regex
*/
const DOT_LITERAL = '\\.';
const PLUS_LITERAL = '\\+';
const QMARK_LITERAL = '\\?';
const SLASH_LITERAL = '\\/';
const ONE_CHAR = '(?=.)';
const QMARK = '[^/]';
const END_ANCHOR = `(?:${SLASH_LITERAL}|$)`;
const START_ANCHOR = `(?:^|${SLASH_LITERAL})`;
const DOTS_SLASH = `${DOT_LITERAL}{1,2}${END_ANCHOR}`;
const NO_DOT = `(?!${DOT_LITERAL})`;
const NO_DOTS = `(?!${START_ANCHOR}${DOTS_SLASH})`;
const NO_DOT_SLASH = `(?!${DOT_LITERAL}{0,1}${END_ANCHOR})`;
const NO_DOTS_SLASH = `(?!${DOTS_SLASH})`;
const QMARK_NO_DOT = `[^.${SLASH_LITERAL}]`;
const STAR = `${QMARK}*?`;
const POSIX_CHARS = {
DOT_LITERAL,
PLUS_LITERAL,
QMARK_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
QMARK,
END_ANCHOR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK_NO_DOT,
STAR,
START_ANCHOR
};
/**
* Windows glob regex
*/
const WINDOWS_CHARS = {
...POSIX_CHARS,
SLASH_LITERAL: `[${WIN_SLASH}]`,
QMARK: WIN_NO_SLASH,
STAR: `${WIN_NO_SLASH}*?`,
DOTS_SLASH: `${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$)`,
NO_DOT: `(?!${DOT_LITERAL})`,
NO_DOTS: `(?!(?:^|[${WIN_SLASH}])${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
NO_DOT_SLASH: `(?!${DOT_LITERAL}{0,1}(?:[${WIN_SLASH}]|$))`,
NO_DOTS_SLASH: `(?!${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
QMARK_NO_DOT: `[^.${WIN_SLASH}]`,
START_ANCHOR: `(?:^|[${WIN_SLASH}])`,
END_ANCHOR: `(?:[${WIN_SLASH}]|$)`
};
/**
* POSIX Bracket Regex
*/
const POSIX_REGEX_SOURCE = {
__proto__: null,
alnum: 'a-zA-Z0-9',
alpha: 'a-zA-Z',
ascii: '\\x00-\\x7F',
blank: ' \\t',
cntrl: '\\x00-\\x1F\\x7F',
digit: '0-9',
graph: '\\x21-\\x7E',
lower: 'a-z',
print: '\\x20-\\x7E ',
punct: '\\-!"#$%&\'()\\*+,./:;<=>?@[\\]^_`{|}~',
space: ' \\t\\r\\n\\v\\f',
upper: 'A-Z',
word: 'A-Za-z0-9_',
xdigit: 'A-Fa-f0-9'
};
constants$2 = {
DEFAULT_MAX_EXTGLOB_RECURSION,
MAX_LENGTH: 1024 * 64,
POSIX_REGEX_SOURCE,
// regular expressions
REGEX_BACKSLASH: /\\(?![*+?^${}(|)[\]])/g,
REGEX_NON_SPECIAL_CHARS: /^[^@![\].,$*+?^{}()|\\/]+/,
REGEX_SPECIAL_CHARS: /[-*+?.^${}(|)[\]]/,
REGEX_SPECIAL_CHARS_BACKREF: /(\\?)((\W)(\3*))/g,
REGEX_SPECIAL_CHARS_GLOBAL: /([-*+?.^${}(|)[\]])/g,
REGEX_REMOVE_BACKSLASH: /(?:\[.*?[^\\]\]|\\(?=.))/g,
// Replace globs with equivalent patterns to reduce parsing time.
REPLACEMENTS: {
__proto__: null,
'***': '*',
'**/**': '**',
'**/**/**': '**'
},
// Digits
CHAR_0: 48, /* 0 */
CHAR_9: 57, /* 9 */
// Alphabet chars.
CHAR_UPPERCASE_A: 65, /* A */
CHAR_LOWERCASE_A: 97, /* a */
CHAR_UPPERCASE_Z: 90, /* Z */
CHAR_LOWERCASE_Z: 122, /* z */
CHAR_LEFT_PARENTHESES: 40, /* ( */
CHAR_RIGHT_PARENTHESES: 41, /* ) */
CHAR_ASTERISK: 42, /* * */
// Non-alphabetic chars.
CHAR_AMPERSAND: 38, /* & */
CHAR_AT: 64, /* @ */
CHAR_BACKWARD_SLASH: 92, /* \ */
CHAR_CARRIAGE_RETURN: 13, /* \r */
CHAR_CIRCUMFLEX_ACCENT: 94, /* ^ */
CHAR_COLON: 58, /* : */
CHAR_COMMA: 44, /* , */
CHAR_DOT: 46, /* . */
CHAR_DOUBLE_QUOTE: 34, /* " */
CHAR_EQUAL: 61, /* = */
CHAR_EXCLAMATION_MARK: 33, /* ! */
CHAR_FORM_FEED: 12, /* \f */
CHAR_FORWARD_SLASH: 47, /* / */
CHAR_GRAVE_ACCENT: 96, /* ` */
CHAR_HASH: 35, /* # */
CHAR_HYPHEN_MINUS: 45, /* - */
CHAR_LEFT_ANGLE_BRACKET: 60, /* < */
CHAR_LEFT_CURLY_BRACE: 123, /* { */
CHAR_LEFT_SQUARE_BRACKET: 91, /* [ */
CHAR_LINE_FEED: 10, /* \n */
CHAR_NO_BREAK_SPACE: 160, /* \u00A0 */
CHAR_PERCENT: 37, /* % */
CHAR_PLUS: 43, /* + */
CHAR_QUESTION_MARK: 63, /* ? */
CHAR_RIGHT_ANGLE_BRACKET: 62, /* > */
CHAR_RIGHT_CURLY_BRACE: 125, /* } */
CHAR_RIGHT_SQUARE_BRACKET: 93, /* ] */
CHAR_SEMICOLON: 59, /* ; */
CHAR_SINGLE_QUOTE: 39, /* ' */
CHAR_SPACE: 32, /* */
CHAR_TAB: 9, /* \t */
CHAR_UNDERSCORE: 95, /* _ */
CHAR_VERTICAL_LINE: 124, /* | */
CHAR_ZERO_WIDTH_NOBREAK_SPACE: 65279, /* \uFEFF */
SEP: path.sep,
/**
* Create EXTGLOB_CHARS
*/
extglobChars(chars) {
return {
'!': { type: 'negate', open: '(?:(?!(?:', close: `))${chars.STAR})` },
'?': { type: 'qmark', open: '(?:', close: ')?' },
'+': { type: 'plus', open: '(?:', close: ')+' },
'*': { type: 'star', open: '(?:', close: ')*' },
'@': { type: 'at', open: '(?:', close: ')' }
};
},
/**
* Create GLOB_CHARS
*/
globChars(win32) {
return win32 === true ? WINDOWS_CHARS : POSIX_CHARS;
}
};
return constants$2;
}
var hasRequiredUtils$1;
function requireUtils$1 () {
if (hasRequiredUtils$1) return utils$1;
hasRequiredUtils$1 = 1;
(function (exports) {
const path = require$$0$1;
const win32 = process.platform === 'win32';
const {
REGEX_BACKSLASH,
REGEX_REMOVE_BACKSLASH,
REGEX_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_GLOBAL
} = /*@__PURE__*/ requireConstants$2();
exports.isObject = val => val !== null && typeof val === 'object' && !Array.isArray(val);
exports.hasRegexChars = str => REGEX_SPECIAL_CHARS.test(str);
exports.isRegexChar = str => str.length === 1 && exports.hasRegexChars(str);
exports.escapeRegex = str => str.replace(REGEX_SPECIAL_CHARS_GLOBAL, '\\$1');
exports.toPosixSlashes = str => str.replace(REGEX_BACKSLASH, '/');
exports.removeBackslashes = str => {
return str.replace(REGEX_REMOVE_BACKSLASH, match => {
return match === '\\' ? '' : match;
});
};
exports.supportsLookbehinds = () => {
const segs = process.version.slice(1).split('.').map(Number);
if (segs.length === 3 && segs[0] >= 9 || (segs[0] === 8 && segs[1] >= 10)) {
return true;
}
return false;
};
exports.isWindows = options => {
if (options && typeof options.windows === 'boolean') {
return options.windows;
}
return win32 === true || path.sep === '\\';
};
exports.escapeLast = (input, char, lastIdx) => {
const idx = input.lastIndexOf(char, lastIdx);
if (idx === -1) return input;
if (input[idx - 1] === '\\') return exports.escapeLast(input, char, idx - 1);
return `${input.slice(0, idx)}\\${input.slice(idx)}`;
};
exports.removePrefix = (input, state = {}) => {
let output = input;
if (output.startsWith('./')) {
output = output.slice(2);
state.prefix = './';
}
return output;
};
exports.wrapOutput = (input, state = {}, options = {}) => {
const prepend = options.contains ? '' : '^';
const append = options.contains ? '' : '$';
let output = `${prepend}(?:${input})${append}`;
if (state.negated === true) {
output = `(?:^(?!${output}).*$)`;
}
return output;
};
} (utils$1));
return utils$1;
}
var scan_1;
var hasRequiredScan;
function requireScan () {
if (hasRequiredScan) return scan_1;
hasRequiredScan = 1;
const utils = /*@__PURE__*/ requireUtils$1();
const {
CHAR_ASTERISK, /* * */
CHAR_AT, /* @ */
CHAR_BACKWARD_SLASH, /* \ */
CHAR_COMMA, /* , */
CHAR_DOT, /* . */
CHAR_EXCLAMATION_MARK, /* ! */
CHAR_FORWARD_SLASH, /* / */
CHAR_LEFT_CURLY_BRACE, /* { */
CHAR_LEFT_PARENTHESES, /* ( */
CHAR_LEFT_SQUARE_BRACKET, /* [ */
CHAR_PLUS, /* + */
CHAR_QUESTION_MARK, /* ? */
CHAR_RIGHT_CURLY_BRACE, /* } */
CHAR_RIGHT_PARENTHESES, /* ) */
CHAR_RIGHT_SQUARE_BRACKET /* ] */
} = /*@__PURE__*/ requireConstants$2();
const isPathSeparator = code => {
return code === CHAR_FORWARD_SLASH || code === CHAR_BACKWARD_SLASH;
};
const depth = token => {
if (token.isPrefix !== true) {
token.depth = token.isGlobstar ? Infinity : 1;
}
};
/**
* Quickly scans a glob pattern and returns an object with a handful of
* useful properties, like `isGlob`, `path` (the leading non-glob, if it exists),
* `glob` (the actual pattern), `negated` (true if the path starts with `!` but not
* with `!(`) and `negatedExtglob` (true if the path starts with `!(`).
*
* ```js
* const pm = require('picomatch');
* console.log(pm.scan('foo/bar/*.js'));
* { isGlob: true, input: 'foo/bar/*.js', base: 'foo/bar', glob: '*.js' }
* ```
* @param {String} `str`
* @param {Object} `options`
* @return {Object} Returns an object with tokens and regex source string.
* @api public
*/
const scan = (input, options) => {
const opts = options || {};
const length = input.length - 1;
const scanToEnd = opts.parts === true || opts.scanToEnd === true;
const slashes = [];
const tokens = [];
const parts = [];
let str = input;
let index = -1;
let start = 0;
let lastIndex = 0;
let isBrace = false;
let isBracket = false;
let isGlob = false;
let isExtglob = false;
let isGlobstar = false;
let braceEscaped = false;
let backslashes = false;
let negated = false;
let negatedExtglob = false;
let finished = false;
let braces = 0;
let prev;
let code;
let token = { value: '', depth: 0, isGlob: false };
const eos = () => index >= length;
const peek = () => str.charCodeAt(index + 1);
const advance = () => {
prev = code;
return str.charCodeAt(++index);
};
while (index < length) {
code = advance();
let next;
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
if (code === CHAR_LEFT_CURLY_BRACE) {
braceEscaped = true;
}
continue;
}
if (braceEscaped === true || code === CHAR_LEFT_CURLY_BRACE) {
braces++;
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (code === CHAR_LEFT_CURLY_BRACE) {
braces++;
continue;
}
if (braceEscaped !== true && code === CHAR_DOT && (code = advance()) === CHAR_DOT) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (braceEscaped !== true && code === CHAR_COMMA) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_RIGHT_CURLY_BRACE) {
braces--;
if (braces === 0) {
braceEscaped = false;
isBrace = token.isBrace = true;
finished = true;
break;
}
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_FORWARD_SLASH) {
slashes.push(index);
tokens.push(token);
token = { value: '', depth: 0, isGlob: false };
if (finished === true) continue;
if (prev === CHAR_DOT && index === (start + 1)) {
start += 2;
continue;
}
lastIndex = index + 1;
continue;
}
if (opts.noext !== true) {
const isExtglobChar = code === CHAR_PLUS
|| code === CHAR_AT
|| code === CHAR_ASTERISK
|| code === CHAR_QUESTION_MARK
|| code === CHAR_EXCLAMATION_MARK;
if (isExtglobChar === true && peek() === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
isExtglob = token.isExtglob = true;
finished = true;
if (code === CHAR_EXCLAMATION_MARK && index === start) {
negatedExtglob = true;
}
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
isGlob = token.isGlob = true;
finished = true;
break;
}
}
continue;
}
break;
}
}
if (code === CHAR_ASTERISK) {
if (prev === CHAR_ASTERISK) isGlobstar = token.isGlobstar = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_QUESTION_MARK) {
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_LEFT_SQUARE_BRACKET) {
while (eos() !== true && (next = advance())) {
if (next === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (next === CHAR_RIGHT_SQUARE_BRACKET) {
isBracket = token.isBracket = true;
isGlob = token.isGlob = true;
finished = true;
break;
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (opts.nonegate !== true && code === CHAR_EXCLAMATION_MARK && index === start) {
negated = token.negated = true;
start++;
continue;
}
if (opts.noparen !== true && code === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_LEFT_PARENTHESES) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
finished = true;
break;
}
}
continue;
}
break;
}
if (isGlob === true) {
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
}
if (opts.noext === true) {
isExtglob = false;
isGlob = false;
}
let base = str;
let prefix = '';
let glob = '';
if (start > 0) {
prefix = str.slice(0, start);
str = str.slice(start);
lastIndex -= start;
}
if (base && isGlob === true && lastIndex > 0) {
base = str.slice(0, lastIndex);
glob = str.slice(lastIndex);
} else if (isGlob === true) {
base = '';
glob = str;
} else {
base = str;
}
if (base && base !== '' && base !== '/' && base !== str) {
if (isPathSeparator(base.charCodeAt(base.length - 1))) {
base = base.slice(0, -1);
}
}
if (opts.unescape === true) {
if (glob) glob = utils.removeBackslashes(glob);
if (base && backslashes === true) {
base = utils.removeBackslashes(base);
}
}
const state = {
prefix,
input,
start,
base,
glob,
isBrace,
isBracket,
isGlob,
isExtglob,
isGlobstar,
negated,
negatedExtglob
};
if (opts.tokens === true) {
state.maxDepth = 0;
if (!isPathSeparator(code)) {
tokens.push(token);
}
state.tokens = tokens;
}
if (opts.parts === true || opts.tokens === true) {
let prevIndex;
for (let idx = 0; idx < slashes.length; idx++) {
const n = prevIndex ? prevIndex + 1 : start;
const i = slashes[idx];
const value = input.slice(n, i);
if (opts.tokens) {
if (idx === 0 && start !== 0) {
tokens[idx].isPrefix = true;
tokens[idx].value = prefix;
} else {
tokens[idx].value = value;
}
depth(tokens[idx]);
state.maxDepth += tokens[idx].depth;
}
if (idx !== 0 || value !== '') {
parts.push(value);
}
prevIndex = i;
}
if (prevIndex && prevIndex + 1 < input.length) {
const value = input.slice(prevIndex + 1);
parts.push(value);
if (opts.tokens) {
tokens[tokens.length - 1].value = value;
depth(tokens[tokens.length - 1]);
state.maxDepth += tokens[tokens.length - 1].depth;
}
}
state.slashes = slashes;
state.parts = parts;
}
return state;
};
scan_1 = scan;
return scan_1;
}
var parse_1$1;
var hasRequiredParse$1;
function requireParse$1 () {
if (hasRequiredParse$1) return parse_1$1;
hasRequiredParse$1 = 1;
const constants = /*@__PURE__*/ requireConstants$2();
const utils = /*@__PURE__*/ requireUtils$1();
/**
* Constants
*/
const {
MAX_LENGTH,
POSIX_REGEX_SOURCE,
REGEX_NON_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_BACKREF,
REPLACEMENTS
} = constants;
/**
* Helpers
*/
const expandRange = (args, options) => {
if (typeof options.expandRange === 'function') {
return options.expandRange(...args, options);
}
args.sort();
const value = `[${args.join('-')}]`;
return value;
};
/**
* Create the message for a syntax error
*/
const syntaxError = (type, char) => {
return `Missing ${type}: "${char}" - use "\\\\${char}" to match literal characters`;
};
const splitTopLevel = input => {
const parts = [];
let bracket = 0;
let paren = 0;
let quote = 0;
let value = '';
let escaped = false;
for (const ch of input) {
if (escaped === true) {
value += ch;
escaped = false;
continue;
}
if (ch === '\\') {
value += ch;
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
value += ch;
continue;
}
if (quote === 0) {
if (ch === '[') {
bracket++;
} else if (ch === ']' && bracket > 0) {
bracket--;
} else if (bracket === 0) {
if (ch === '(') {
paren++;
} else if (ch === ')' && paren > 0) {
paren--;
} else if (ch === '|' && paren === 0) {
parts.push(value);
value = '';
continue;
}
}
}
value += ch;
}
parts.push(value);
return parts;
};
const isPlainBranch = branch => {
let escaped = false;
for (const ch of branch) {
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (/[?*+@!()[\]{}]/.test(ch)) {
return false;
}
}
return true;
};
const normalizeSimpleBranch = branch => {
let value = branch.trim();
let changed = true;
while (changed === true) {
changed = false;
if (/^@\([^\\()[\]{}|]+\)$/.test(value)) {
value = value.slice(2, -1);
changed = true;
}
}
if (!isPlainBranch(value)) {
return;
}
return value.replace(/\\(.)/g, '$1');
};
const hasRepeatedCharPrefixOverlap = branches => {
const values = branches.map(normalizeSimpleBranch).filter(Boolean);
for (let i = 0; i < values.length; i++) {
for (let j = i + 1; j < values.length; j++) {
const a = values[i];
const b = values[j];
const char = a[0];
if (!char || a !== char.repeat(a.length) || b !== char.repeat(b.length)) {
continue;
}
if (a === b || a.startsWith(b) || b.startsWith(a)) {
return true;
}
}
}
return false;
};
const parseRepeatedExtglob = (pattern, requireEnd = true) => {
if ((pattern[0] !== '+' && pattern[0] !== '*') || pattern[1] !== '(') {
return;
}
let bracket = 0;
let paren = 0;
let quote = 0;
let escaped = false;
for (let i = 1; i < pattern.length; i++) {
const ch = pattern[i];
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
continue;
}
if (quote === 1) {
continue;
}
if (ch === '[') {
bracket++;
continue;
}
if (ch === ']' && bracket > 0) {
bracket--;
continue;
}
if (bracket > 0) {
continue;
}
if (ch === '(') {
paren++;
continue;
}
if (ch === ')') {
paren--;
if (paren === 0) {
if (requireEnd === true && i !== pattern.length - 1) {
return;
}
return {
type: pattern[0],
body: pattern.slice(2, i),
end: i
};
}
}
}
};
const getStarExtglobSequenceOutput = pattern => {
let index = 0;
const chars = [];
while (index < pattern.length) {
const match = parseRepeatedExtglob(pattern.slice(index), false);
if (!match || match.type !== '*') {
return;
}
const branches = splitTopLevel(match.body).map(branch => branch.trim());
if (branches.length !== 1) {
return;
}
const branch = normalizeSimpleBranch(branches[0]);
if (!branch || branch.length !== 1) {
return;
}
chars.push(branch);
index += match.end + 1;
}
if (chars.length < 1) {
return;
}
const source = chars.length === 1
? utils.escapeRegex(chars[0])
: `[${chars.map(ch => utils.escapeRegex(ch)).join('')}]`;
return `${source}*`;
};
const repeatedExtglobRecursion = pattern => {
let depth = 0;
let value = pattern.trim();
let match = parseRepeatedExtglob(value);
while (match) {
depth++;
value = match.body.trim();
match = parseRepeatedExtglob(value);
}
return depth;
};
const analyzeRepeatedExtglob = (body, options) => {
if (options.maxExtglobRecursion === false) {
return { risky: false };
}
const max =
typeof options.maxExtglobRecursion === 'number'
? options.maxExtglobRecursion
: constants.DEFAULT_MAX_EXTGLOB_RECURSION;
const branches = splitTopLevel(body).map(branch => branch.trim());
if (branches.length > 1) {
if (
branches.some(branch => branch === '') ||
branches.some(branch => /^[*?]+$/.test(branch)) ||
hasRepeatedCharPrefixOverlap(branches)
) {
return { risky: true };
}
}
for (const branch of branches) {
const safeOutput = getStarExtglobSequenceOutput(branch);
if (safeOutput) {
return { risky: true, safeOutput };
}
if (repeatedExtglobRecursion(branch) > max) {
return { risky: true };
}
}
return { risky: false };
};
/**
* Parse the given input string.
* @param {String} input
* @param {Object} options
* @return {Object}
*/
const parse = (input, options) => {
if (typeof input !== 'string') {
throw new TypeError('Expected a string');
}
input = REPLACEMENTS[input] || input;
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
let len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
const bos = { type: 'bos', value: '', output: opts.prepend || '' };
const tokens = [bos];
const capture = opts.capture ? '' : '?:';
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const PLATFORM_CHARS = constants.globChars(win32);
const EXTGLOB_CHARS = constants.extglobChars(PLATFORM_CHARS);
const {
DOT_LITERAL,
PLUS_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK,
QMARK_NO_DOT,
STAR,
START_ANCHOR
} = PLATFORM_CHARS;
const globstar = opts => {
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const nodot = opts.dot ? '' : NO_DOT;
const qmarkNoDot = opts.dot ? QMARK : QMARK_NO_DOT;
let star = opts.bash === true ? globstar(opts) : STAR;
if (opts.capture) {
star = `(${star})`;
}
// minimatch options support
if (typeof opts.noext === 'boolean') {
opts.noextglob = opts.noext;
}
const state = {
input,
index: -1,
start: 0,
dot: opts.dot === true,
consumed: '',
output: '',
prefix: '',
backtrack: false,
negated: false,
brackets: 0,
braces: 0,
parens: 0,
quotes: 0,
globstar: false,
tokens
};
input = utils.removePrefix(input, state);
len = input.length;
const extglobs = [];
const braces = [];
const stack = [];
let prev = bos;
let value;
/**
* Tokenizing helpers
*/
const eos = () => state.index === len - 1;
const peek = state.peek = (n = 1) => input[state.index + n];
const advance = state.advance = () => input[++state.index] || '';
const remaining = () => input.slice(state.index + 1);
const consume = (value = '', num = 0) => {
state.consumed += value;
state.index += num;
};
const append = token => {
state.output += token.output != null ? token.output : token.value;
consume(token.value);
};
const negate = () => {
let count = 1;
while (peek() === '!' && (peek(2) !== '(' || peek(3) === '?')) {
advance();
state.start++;
count++;
}
if (count % 2 === 0) {
return false;
}
state.negated = true;
state.start++;
return true;
};
const increment = type => {
state[type]++;
stack.push(type);
};
const decrement = type => {
state[type]--;
stack.pop();
};
/**
* Push tokens onto the tokens array. This helper speeds up
* tokenizing by 1) helping us avoid backtracking as much as possible,
* and 2) helping us avoid creating extra tokens when consecutive
* characters are plain text. This improves performance and simplifies
* lookbehinds.
*/
const push = tok => {
if (prev.type === 'globstar') {
const isBrace = state.braces > 0 && (tok.type === 'comma' || tok.type === 'brace');
const isExtglob = tok.extglob === true || (extglobs.length && (tok.type === 'pipe' || tok.type === 'paren'));
if (tok.type !== 'slash' && tok.type !== 'paren' && !isBrace && !isExtglob) {
state.output = state.output.slice(0, -prev.output.length);
prev.type = 'star';
prev.value = '*';
prev.output = star;
state.output += prev.output;
}
}
if (extglobs.length && tok.type !== 'paren') {
extglobs[extglobs.length - 1].inner += tok.value;
}
if (tok.value || tok.output) append(tok);
if (prev && prev.type === 'text' && tok.type === 'text') {
prev.value += tok.value;
prev.output = (prev.output || '') + tok.value;
return;
}
tok.prev = prev;
tokens.push(tok);
prev = tok;
};
const extglobOpen = (type, value) => {
const token = { ...EXTGLOB_CHARS[value], conditions: 1, inner: '' };
token.prev = prev;
token.parens = state.parens;
token.output = state.output;
token.startIndex = state.index;
token.tokensIndex = tokens.length;
const output = (opts.capture ? '(' : '') + token.open;
increment('parens');
push({ type, value, output: state.output ? '' : ONE_CHAR });
push({ type: 'paren', extglob: true, value: advance(), output });
extglobs.push(token);
};
const extglobClose = token => {
const literal = input.slice(token.startIndex, state.index + 1);
const body = input.slice(token.startIndex + 2, state.index);
const analysis = analyzeRepeatedExtglob(body, opts);
if ((token.type === 'plus' || token.type === 'star') && analysis.risky) {
const safeOutput = analysis.safeOutput
? (token.output ? '' : ONE_CHAR) + (opts.capture ? `(${analysis.safeOutput})` : analysis.safeOutput)
: undefined;
const open = tokens[token.tokensIndex];
open.type = 'text';
open.value = literal;
open.output = safeOutput || utils.escapeRegex(literal);
for (let i = token.tokensIndex + 1; i < tokens.length; i++) {
tokens[i].value = '';
tokens[i].output = '';
delete tokens[i].suffix;
}
state.output = token.output + open.output;
state.backtrack = true;
push({ type: 'paren', extglob: true, value, output: '' });
decrement('parens');
return;
}
let output = token.close + (opts.capture ? ')' : '');
let rest;
if (token.type === 'negate') {
let extglobStar = star;
if (token.inner && token.inner.length > 1 && token.inner.includes('/')) {
extglobStar = globstar(opts);
}
if (extglobStar !== star || eos() || /^\)+$/.test(remaining())) {
output = token.close = `)$))${extglobStar}`;
}
if (token.inner.includes('*') && (rest = remaining()) && /^\.[^\\/.]+$/.test(rest)) {
// Any non-magical string (`.ts`) or even nested expression (`.{ts,tsx}`) can follow after the closing parenthesis.
// In this case, we need to parse the string and use it in the output of the original pattern.
// Suitable patterns: `/!(*.d).ts`, `/!(*.d).{ts,tsx}`, `**/!(*-dbg).@(js)`.
//
// Disabling the `fastpaths` option due to a problem with parsing strings as `.ts` in the pattern like `**/!(*.d).ts`.
const expression = parse(rest, { ...options, fastpaths: false }).output;
output = token.close = `)${expression})${extglobStar})`;
}
if (token.prev.type === 'bos') {
state.negatedExtglob = true;
}
}
push({ type: 'paren', extglob: true, value, output });
decrement('parens');
};
/**
* Fast paths
*/
if (opts.fastpaths !== false && !/(^[*!]|[/()[\]{}"])/.test(input)) {
let backslashes = false;
let output = input.replace(REGEX_SPECIAL_CHARS_BACKREF, (m, esc, chars, first, rest, index) => {
if (first === '\\') {
backslashes = true;
return m;
}
if (first === '?') {
if (esc) {
return esc + first + (rest ? QMARK.repeat(rest.length) : '');
}
if (index === 0) {
return qmarkNoDot + (rest ? QMARK.repeat(rest.length) : '');
}
return QMARK.repeat(chars.length);
}
if (first === '.') {
return DOT_LITERAL.repeat(chars.length);
}
if (first === '*') {
if (esc) {
return esc + first + (rest ? star : '');
}
return star;
}
return esc ? m : `\\${m}`;
});
if (backslashes === true) {
if (opts.unescape === true) {
output = output.replace(/\\/g, '');
} else {
output = output.replace(/\\+/g, m => {
return m.length % 2 === 0 ? '\\\\' : (m ? '\\' : '');
});
}
}
if (output === input && opts.contains === true) {
state.output = input;
return state;
}
state.output = utils.wrapOutput(output, state, options);
return state;
}
/**
* Tokenize input until we reach end-of-string
*/
while (!eos()) {
value = advance();
if (value === '\u0000') {
continue;
}
/**
* Escaped characters
*/
if (value === '\\') {
const next = peek();
if (next === '/' && opts.bash !== true) {
continue;
}
if (next === '.' || next === ';') {
continue;
}
if (!next) {
value += '\\';
push({ type: 'text', value });
continue;
}
// collapse slashes to reduce potential for exploits
const match = /^\\+/.exec(remaining());
let slashes = 0;
if (match && match[0].length > 2) {
slashes = match[0].length;
state.index += slashes;
if (slashes % 2 !== 0) {
value += '\\';
}
}
if (opts.unescape === true) {
value = advance();
} else {
value += advance();
}
if (state.brackets === 0) {
push({ type: 'text', value });
continue;
}
}
/**
* If we're inside a regex character class, continue
* until we reach the closing bracket.
*/
if (state.brackets > 0 && (value !== ']' || prev.value === '[' || prev.value === '[^')) {
if (opts.posix !== false && value === ':') {
const inner = prev.value.slice(1);
if (inner.includes('[')) {
prev.posix = true;
if (inner.includes(':')) {
const idx = prev.value.lastIndexOf('[');
const pre = prev.value.slice(0, idx);
const rest = prev.value.slice(idx + 2);
const posix = POSIX_REGEX_SOURCE[rest];
if (posix) {
prev.value = pre + posix;
state.backtrack = true;
advance();
if (!bos.output && tokens.indexOf(prev) === 1) {
bos.output = ONE_CHAR;
}
continue;
}
}
}
}
if ((value === '[' && peek() !== ':') || (value === '-' && peek() === ']')) {
value = `\\${value}`;
}
if (value === ']' && (prev.value === '[' || prev.value === '[^')) {
value = `\\${value}`;
}
if (opts.posix === true && value === '!' && prev.value === '[') {
value = '^';
}
prev.value += value;
append({ value });
continue;
}
/**
* If we're inside a quoted string, continue
* until we reach the closing double quote.
*/
if (state.quotes === 1 && value !== '"') {
value = utils.escapeRegex(value);
prev.value += value;
append({ value });
continue;
}
/**
* Double quotes
*/
if (value === '"') {
state.quotes = state.quotes === 1 ? 0 : 1;
if (opts.keepQuotes === true) {
push({ type: 'text', value });
}
continue;
}
/**
* Parentheses
*/
if (value === '(') {
increment('parens');
push({ type: 'paren', value });
continue;
}
if (value === ')') {
if (state.parens === 0 && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '('));
}
const extglob = extglobs[extglobs.length - 1];
if (extglob && state.parens === extglob.parens + 1) {
extglobClose(extglobs.pop());
continue;
}
push({ type: 'paren', value, output: state.parens ? ')' : '\\)' });
decrement('parens');
continue;
}
/**
* Square brackets
*/
if (value === '[') {
if (opts.nobracket === true || !remaining().includes(']')) {
if (opts.nobracket !== true && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('closing', ']'));
}
value = `\\${value}`;
} else {
increment('brackets');
}
push({ type: 'bracket', value });
continue;
}
if (value === ']') {
if (opts.nobracket === true || (prev && prev.type === 'bracket' && prev.value.length === 1)) {
push({ type: 'text', value, output: `\\${value}` });
continue;
}
if (state.brackets === 0) {
if (opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '['));
}
push({ type: 'text', value, output: `\\${value}` });
continue;
}
decrement('brackets');
const prevValue = prev.value.slice(1);
if (prev.posix !== true && prevValue[0] === '^' && !prevValue.includes('/')) {
value = `/${value}`;
}
prev.value += value;
append({ value });
// when literal brackets are explicitly disabled
// assume we should match with a regex character class
if (opts.literalBrackets === false || utils.hasRegexChars(prevValue)) {
continue;
}
const escaped = utils.escapeRegex(prev.value);
state.output = state.output.slice(0, -prev.value.length);
// when literal brackets are explicitly enabled
// assume we should escape the brackets to match literal characters
if (opts.literalBrackets === true) {
state.output += escaped;
prev.value = escaped;
continue;
}
// when the user specifies nothing, try to match both
prev.value = `(${capture}${escaped}|${prev.value})`;
state.output += prev.value;
continue;
}
/**
* Braces
*/
if (value === '{' && opts.nobrace !== true) {
increment('braces');
const open = {
type: 'brace',
value,
output: '(',
outputIndex: state.output.length,
tokensIndex: state.tokens.length
};
braces.push(open);
push(open);
continue;
}
if (value === '}') {
const brace = braces[braces.length - 1];
if (opts.nobrace === true || !brace) {
push({ type: 'text', value, output: value });
continue;
}
let output = ')';
if (brace.dots === true) {
const arr = tokens.slice();
const range = [];
for (let i = arr.length - 1; i >= 0; i--) {
tokens.pop();
if (arr[i].type === 'brace') {
break;
}
if (arr[i].type !== 'dots') {
range.unshift(arr[i].value);
}
}
output = expandRange(range, opts);
state.backtrack = true;
}
if (brace.comma !== true && brace.dots !== true) {
const out = state.output.slice(0, brace.outputIndex);
const toks = state.tokens.slice(brace.tokensIndex);
brace.value = brace.output = '\\{';
value = output = '\\}';
state.output = out;
for (const t of toks) {
state.output += (t.output || t.value);
}
}
push({ type: 'brace', value, output });
decrement('braces');
braces.pop();
continue;
}
/**
* Pipes
*/
if (value === '|') {
if (extglobs.length > 0) {
extglobs[extglobs.length - 1].conditions++;
}
push({ type: 'text', value });
continue;
}
/**
* Commas
*/
if (value === ',') {
let output = value;
const brace = braces[braces.length - 1];
if (brace && stack[stack.length - 1] === 'braces') {
brace.comma = true;
output = '|';
}
push({ type: 'comma', value, output });
continue;
}
/**
* Slashes
*/
if (value === '/') {
// if the beginning of the glob is "./", advance the start
// to the current index, and don't add the "./" characters
// to the state. This greatly simplifies lookbehinds when
// checking for BOS characters like "!" and "." (not "./")
if (prev.type === 'dot' && state.index === state.start + 1) {
state.start = state.index + 1;
state.consumed = '';
state.output = '';
tokens.pop();
prev = bos; // reset "prev" to the first token
continue;
}
push({ type: 'slash', value, output: SLASH_LITERAL });
continue;
}
/**
* Dots
*/
if (value === '.') {
if (state.braces > 0 && prev.type === 'dot') {
if (prev.value === '.') prev.output = DOT_LITERAL;
const brace = braces[braces.length - 1];
prev.type = 'dots';
prev.output += value;
prev.value += value;
brace.dots = true;
continue;
}
if ((state.braces + state.parens) === 0 && prev.type !== 'bos' && prev.type !== 'slash') {
push({ type: 'text', value, output: DOT_LITERAL });
continue;
}
push({ type: 'dot', value, output: DOT_LITERAL });
continue;
}
/**
* Question marks
*/
if (value === '?') {
const isGroup = prev && prev.value === '(';
if (!isGroup && opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('qmark', value);
continue;
}
if (prev && prev.type === 'paren') {
const next = peek();
let output = value;
if (next === '<' && !utils.supportsLookbehinds()) {
throw new Error('Node.js v10 or higher is required for regex lookbehinds');
}
if ((prev.value === '(' && !/[!=<:]/.test(next)) || (next === '<' && !/<([!=]|\w+>)/.test(remaining()))) {
output = `\\${value}`;
}
push({ type: 'text', value, output });
continue;
}
if (opts.dot !== true && (prev.type === 'slash' || prev.type === 'bos')) {
push({ type: 'qmark', value, output: QMARK_NO_DOT });
continue;
}
push({ type: 'qmark', value, output: QMARK });
continue;
}
/**
* Exclamation
*/
if (value === '!') {
if (opts.noextglob !== true && peek() === '(') {
if (peek(2) !== '?' || !/[!=<:]/.test(peek(3))) {
extglobOpen('negate', value);
continue;
}
}
if (opts.nonegate !== true && state.index === 0) {
negate();
continue;
}
}
/**
* Plus
*/
if (value === '+') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('plus', value);
continue;
}
if ((prev && prev.value === '(') || opts.regex === false) {
push({ type: 'plus', value, output: PLUS_LITERAL });
continue;
}
if ((prev && (prev.type === 'bracket' || prev.type === 'paren' || prev.type === 'brace')) || state.parens > 0) {
push({ type: 'plus', value });
continue;
}
push({ type: 'plus', value: PLUS_LITERAL });
continue;
}
/**
* Plain text
*/
if (value === '@') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
push({ type: 'at', extglob: true, value, output: '' });
continue;
}
push({ type: 'text', value });
continue;
}
/**
* Plain text
*/
if (value !== '*') {
if (value === '$' || value === '^') {
value = `\\${value}`;
}
const match = REGEX_NON_SPECIAL_CHARS.exec(remaining());
if (match) {
value += match[0];
state.index += match[0].length;
}
push({ type: 'text', value });
continue;
}
/**
* Stars
*/
if (prev && (prev.type === 'globstar' || prev.star === true)) {
prev.type = 'star';
prev.star = true;
prev.value += value;
prev.output = star;
state.backtrack = true;
state.globstar = true;
consume(value);
continue;
}
let rest = remaining();
if (opts.noextglob !== true && /^\([^?]/.test(rest)) {
extglobOpen('star', value);
continue;
}
if (prev.type === 'star') {
if (opts.noglobstar === true) {
consume(value);
continue;
}
const prior = prev.prev;
const before = prior.prev;
const isStart = prior.type === 'slash' || prior.type === 'bos';
const afterStar = before && (before.type === 'star' || before.type === 'globstar');
if (opts.bash === true && (!isStart || (rest[0] && rest[0] !== '/'))) {
push({ type: 'star', value, output: '' });
continue;
}
const isBrace = state.braces > 0 && (prior.type === 'comma' || prior.type === 'brace');
const isExtglob = extglobs.length && (prior.type === 'pipe' || prior.type === 'paren');
if (!isStart && prior.type !== 'paren' && !isBrace && !isExtglob) {
push({ type: 'star', value, output: '' });
continue;
}
// strip consecutive `/**/`
while (rest.slice(0, 3) === '/**') {
const after = input[state.index + 4];
if (after && after !== '/') {
break;
}
rest = rest.slice(3);
consume('/**', 3);
}
if (prior.type === 'bos' && eos()) {
prev.type = 'globstar';
prev.value += value;
prev.output = globstar(opts);
state.output = prev.output;
state.globstar = true;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && !afterStar && eos()) {
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = globstar(opts) + (opts.strictSlashes ? ')' : '|$)');
prev.value += value;
state.globstar = true;
state.output += prior.output + prev.output;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && rest[0] === '/') {
const end = rest[1] !== void 0 ? '|$' : '';
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = `${globstar(opts)}${SLASH_LITERAL}|${SLASH_LITERAL}${end})`;
prev.value += value;
state.output += prior.output + prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
if (prior.type === 'bos' && rest[0] === '/') {
prev.type = 'globstar';
prev.value += value;
prev.output = `(?:^|${SLASH_LITERAL}|${globstar(opts)}${SLASH_LITERAL})`;
state.output = prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
// remove single star from output
state.output = state.output.slice(0, -prev.output.length);
// reset previous token to globstar
prev.type = 'globstar';
prev.output = globstar(opts);
prev.value += value;
// reset output with globstar
state.output += prev.output;
state.globstar = true;
consume(value);
continue;
}
const token = { type: 'star', value, output: star };
if (opts.bash === true) {
token.output = '.*?';
if (prev.type === 'bos' || prev.type === 'slash') {
token.output = nodot + token.output;
}
push(token);
continue;
}
if (prev && (prev.type === 'bracket' || prev.type === 'paren') && opts.regex === true) {
token.output = value;
push(token);
continue;
}
if (state.index === state.start || prev.type === 'slash' || prev.type === 'dot') {
if (prev.type === 'dot') {
state.output += NO_DOT_SLASH;
prev.output += NO_DOT_SLASH;
} else if (opts.dot === true) {
state.output += NO_DOTS_SLASH;
prev.output += NO_DOTS_SLASH;
} else {
state.output += nodot;
prev.output += nodot;
}
if (peek() !== '*') {
state.output += ONE_CHAR;
prev.output += ONE_CHAR;
}
}
push(token);
}
while (state.brackets > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ']'));
state.output = utils.escapeLast(state.output, '[');
decrement('brackets');
}
while (state.parens > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ')'));
state.output = utils.escapeLast(state.output, '(');
decrement('parens');
}
while (state.braces > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', '}'));
state.output = utils.escapeLast(state.output, '{');
decrement('braces');
}
if (opts.strictSlashes !== true && (prev.type === 'star' || prev.type === 'bracket')) {
push({ type: 'maybe_slash', value: '', output: `${SLASH_LITERAL}?` });
}
// rebuild the output if we had to backtrack at any point
if (state.backtrack === true) {
state.output = '';
for (const token of state.tokens) {
state.output += token.output != null ? token.output : token.value;
if (token.suffix) {
state.output += token.suffix;
}
}
}
return state;
};
/**
* Fast paths for creating regular expressions for common glob patterns.
* This can significantly speed up processing and has very little downside
* impact when none of the fast paths match.
*/
parse.fastpaths = (input, options) => {
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
const len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
input = REPLACEMENTS[input] || input;
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const {
DOT_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOTS_SLASH,
STAR,
START_ANCHOR
} = constants.globChars(win32);
const nodot = opts.dot ? NO_DOTS : NO_DOT;
const slashDot = opts.dot ? NO_DOTS_SLASH : NO_DOT;
const capture = opts.capture ? '' : '?:';
const state = { negated: false, prefix: '' };
let star = opts.bash === true ? '.*?' : STAR;
if (opts.capture) {
star = `(${star})`;
}
const globstar = opts => {
if (opts.noglobstar === true) return star;
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const create = str => {
switch (str) {
case '*':
return `${nodot}${ONE_CHAR}${star}`;
case '.*':
return `${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*.*':
return `${nodot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*/*':
return `${nodot}${star}${SLASH_LITERAL}${ONE_CHAR}${slashDot}${star}`;
case '**':
return nodot + globstar(opts);
case '**/*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${ONE_CHAR}${star}`;
case '**/*.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '**/.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${DOT_LITERAL}${ONE_CHAR}${star}`;
default: {
const match = /^(.*?)\.(\w+)$/.exec(str);
if (!match) return;
const source = create(match[1]);
if (!source) return;
return source + DOT_LITERAL + match[2];
}
}
};
const output = utils.removePrefix(input, state);
let source = create(output);
if (source && opts.strictSlashes !== true) {
source += `${SLASH_LITERAL}?`;
}
return source;
};
parse_1$1 = parse;
return parse_1$1;
}
var picomatch_1;
var hasRequiredPicomatch$1;
function requirePicomatch$1 () {
if (hasRequiredPicomatch$1) return picomatch_1;
hasRequiredPicomatch$1 = 1;
const path = require$$0$1;
const scan = /*@__PURE__*/ requireScan();
const parse = /*@__PURE__*/ requireParse$1();
const utils = /*@__PURE__*/ requireUtils$1();
const constants = /*@__PURE__*/ requireConstants$2();
const isObject = val => val && typeof val === 'object' && !Array.isArray(val);
/**
* Creates a matcher function from one or more glob patterns. The
* returned function takes a string to match as its first argument,
* and returns true if the string is a match. The returned matcher
* function also takes a boolean as the second argument that, when true,
* returns an object with additional information.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch(glob[, options]);
*
* const isMatch = picomatch('*.!(*a)');
* console.log(isMatch('a.a')); //=> false
* console.log(isMatch('a.b')); //=> true
* ```
* @name picomatch
* @param {String|Array} `globs` One or more glob patterns.
* @param {Object=} `options`
* @return {Function=} Returns a matcher function.
* @api public
*/
const picomatch = (glob, options, returnState = false) => {
if (Array.isArray(glob)) {
const fns = glob.map(input => picomatch(input, options, returnState));
const arrayMatcher = str => {
for (const isMatch of fns) {
const state = isMatch(str);
if (state) return state;
}
return false;
};
return arrayMatcher;
}
const isState = isObject(glob) && glob.tokens && glob.input;
if (glob === '' || (typeof glob !== 'string' && !isState)) {
throw new TypeError('Expected pattern to be a non-empty string');
}
const opts = options || {};
const posix = utils.isWindows(options);
const regex = isState
? picomatch.compileRe(glob, options)
: picomatch.makeRe(glob, options, false, true);
const state = regex.state;
delete regex.state;
let isIgnored = () => false;
if (opts.ignore) {
const ignoreOpts = { ...options, ignore: null, onMatch: null, onResult: null };
isIgnored = picomatch(opts.ignore, ignoreOpts, returnState);
}
const matcher = (input, returnObject = false) => {
const { isMatch, match, output } = picomatch.test(input, regex, options, { glob, posix });
const result = { glob, state, regex, posix, input, output, match, isMatch };
if (typeof opts.onResult === 'function') {
opts.onResult(result);
}
if (isMatch === false) {
result.isMatch = false;
return returnObject ? result : false;
}
if (isIgnored(input)) {
if (typeof opts.onIgnore === 'function') {
opts.onIgnore(result);
}
result.isMatch = false;
return returnObject ? result : false;
}
if (typeof opts.onMatch === 'function') {
opts.onMatch(result);
}
return returnObject ? result : true;
};
if (returnState) {
matcher.state = state;
}
return matcher;
};
/**
* Test `input` with the given `regex`. This is used by the main
* `picomatch()` function to test the input string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.test(input, regex[, options]);
*
* console.log(picomatch.test('foo/bar', /^(?:([^/]*?)\/([^/]*?))$/));
* // { isMatch: true, match: [ 'foo/', 'foo', 'bar' ], output: 'foo/bar' }
* ```
* @param {String} `input` String to test.
* @param {RegExp} `regex`
* @return {Object} Returns an object with matching info.
* @api public
*/
picomatch.test = (input, regex, options, { glob, posix } = {}) => {
if (typeof input !== 'string') {
throw new TypeError('Expected input to be a string');
}
if (input === '') {
return { isMatch: false, output: '' };
}
const opts = options || {};
const format = opts.format || (posix ? utils.toPosixSlashes : null);
let match = input === glob;
let output = (match && format) ? format(input) : input;
if (match === false) {
output = format ? format(input) : input;
match = output === glob;
}
if (match === false || opts.capture === true) {
if (opts.matchBase === true || opts.basename === true) {
match = picomatch.matchBase(input, regex, options, posix);
} else {
match = regex.exec(output);
}
}
return { isMatch: Boolean(match), match, output };
};
/**
* Match the basename of a filepath.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.matchBase(input, glob[, options]);
* console.log(picomatch.matchBase('foo/bar.js', '*.js'); // true
* ```
* @param {String} `input` String to test.
* @param {RegExp|String} `glob` Glob pattern or regex created by [.makeRe](#makeRe).
* @return {Boolean}
* @api public
*/
picomatch.matchBase = (input, glob, options, posix = utils.isWindows(options)) => {
const regex = glob instanceof RegExp ? glob : picomatch.makeRe(glob, options);
return regex.test(path.basename(input));
};
/**
* Returns true if **any** of the given glob `patterns` match the specified `string`.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.isMatch(string, patterns[, options]);
*
* console.log(picomatch.isMatch('a.a', ['b.*', '*.a'])); //=> true
* console.log(picomatch.isMatch('a.a', 'b.*')); //=> false
* ```
* @param {String|Array} str The string to test.
* @param {String|Array} patterns One or more glob patterns to use for matching.
* @param {Object} [options] See available [options](#options).
* @return {Boolean} Returns true if any patterns match `str`
* @api public
*/
picomatch.isMatch = (str, patterns, options) => picomatch(patterns, options)(str);
/**
* Parse a glob pattern to create the source string for a regular
* expression.
*
* ```js
* const picomatch = require('picomatch');
* const result = picomatch.parse(pattern[, options]);
* ```
* @param {String} `pattern`
* @param {Object} `options`
* @return {Object} Returns an object with useful properties and output to be used as a regex source string.
* @api public
*/
picomatch.parse = (pattern, options) => {
if (Array.isArray(pattern)) return pattern.map(p => picomatch.parse(p, options));
return parse(pattern, { ...options, fastpaths: false });
};
/**
* Scan a glob pattern to separate the pattern into segments.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.scan(input[, options]);
*
* const result = picomatch.scan('!./foo/*.js');
* console.log(result);
* { prefix: '!./',
* input: '!./foo/*.js',
* start: 3,
* base: 'foo',
* glob: '*.js',
* isBrace: false,
* isBracket: false,
* isGlob: true,
* isExtglob: false,
* isGlobstar: false,
* negated: true }
* ```
* @param {String} `input` Glob pattern to scan.
* @param {Object} `options`
* @return {Object} Returns an object with
* @api public
*/
picomatch.scan = (input, options) => scan(input, options);
/**
* Compile a regular expression from the `state` object returned by the
* [parse()](#parse) method.
*
* @param {Object} `state`
* @param {Object} `options`
* @param {Boolean} `returnOutput` Intended for implementors, this argument allows you to return the raw output from the parser.
* @param {Boolean} `returnState` Adds the state to a `state` property on the returned regex. Useful for implementors and debugging.
* @return {RegExp}
* @api public
*/
picomatch.compileRe = (state, options, returnOutput = false, returnState = false) => {
if (returnOutput === true) {
return state.output;
}
const opts = options || {};
const prepend = opts.contains ? '' : '^';
const append = opts.contains ? '' : '$';
let source = `${prepend}(?:${state.output})${append}`;
if (state && state.negated === true) {
source = `^(?!${source}).*$`;
}
const regex = picomatch.toRegex(source, options);
if (returnState === true) {
regex.state = state;
}
return regex;
};
/**
* Create a regular expression from a parsed glob pattern.
*
* ```js
* const picomatch = require('picomatch');
* const state = picomatch.parse('*.js');
* // picomatch.compileRe(state[, options]);
*
* console.log(picomatch.compileRe(state));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `state` The object returned from the `.parse` method.
* @param {Object} `options`
* @param {Boolean} `returnOutput` Implementors may use this argument to return the compiled output, instead of a regular expression. This is not exposed on the options to prevent end-users from mutating the result.
* @param {Boolean} `returnState` Implementors may use this argument to return the state from the parsed glob with the returned regular expression.
* @return {RegExp} Returns a regex created from the given pattern.
* @api public
*/
picomatch.makeRe = (input, options = {}, returnOutput = false, returnState = false) => {
if (!input || typeof input !== 'string') {
throw new TypeError('Expected a non-empty string');
}
let parsed = { negated: false, fastpaths: true };
if (options.fastpaths !== false && (input[0] === '.' || input[0] === '*')) {
parsed.output = parse.fastpaths(input, options);
}
if (!parsed.output) {
parsed = parse(input, options);
}
return picomatch.compileRe(parsed, options, returnOutput, returnState);
};
/**
* Create a regular expression from the given regex source string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.toRegex(source[, options]);
*
* const { output } = picomatch.parse('*.js');
* console.log(picomatch.toRegex(output));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `source` Regular expression source string.
* @param {Object} `options`
* @return {RegExp}
* @api public
*/
picomatch.toRegex = (source, options) => {
try {
const opts = options || {};
return new RegExp(source, opts.flags || (opts.nocase ? 'i' : ''));
} catch (err) {
if (options && options.debug === true) throw err;
return /$^/;
}
};
/**
* Picomatch constants.
* @return {Object}
*/
picomatch.constants = constants;
/**
* Expose "picomatch"
*/
picomatch_1 = picomatch;
return picomatch_1;
}
var picomatch;
var hasRequiredPicomatch;
function requirePicomatch () {
if (hasRequiredPicomatch) return picomatch;
hasRequiredPicomatch = 1;
picomatch = /*@__PURE__*/ requirePicomatch$1();
return picomatch;
}
/*!
* normalize-path <https://github.com/jonschlinkert/normalize-path>
*
* Copyright (c) 2014-2018, Jon Schlinkert.
* Released under the MIT License.
*/
var normalizePath;
var hasRequiredNormalizePath;
function requireNormalizePath () {
if (hasRequiredNormalizePath) return normalizePath;
hasRequiredNormalizePath = 1;
normalizePath = function(path, stripTrailing) {
if (typeof path !== 'string') {
throw new TypeError('expected path to be a string');
}
if (path === '\\' || path === '/') return '/';
var len = path.length;
if (len <= 1) return path;
// ensure that win32 namespaces has two leading slashes, so that the path is
// handled properly by the win32 version of path.parse() after being normalized
// https://msdn.microsoft.com/library/windows/desktop/aa365247(v=vs.85).aspx#namespaces
var prefix = '';
if (len > 4 && path[3] === '\\') {
var ch = path[2];
if ((ch === '?' || ch === '.') && path.slice(0, 2) === '\\\\') {
path = path.slice(2);
prefix = '//';
}
}
var segs = path.split(/[/\\]+/);
if (stripTrailing !== false && segs[segs.length - 1] === '') {
segs.pop();
}
return prefix + segs.join('/');
};
return normalizePath;
}
var anymatch_1 = anymatch.exports;
var hasRequiredAnymatch;
function requireAnymatch () {
if (hasRequiredAnymatch) return anymatch.exports;
hasRequiredAnymatch = 1;
Object.defineProperty(anymatch_1, "__esModule", { value: true });
const picomatch = /*@__PURE__*/ requirePicomatch();
const normalizePath = /*@__PURE__*/ requireNormalizePath();
/**
* @typedef {(testString: string) => boolean} AnymatchFn
* @typedef {string|RegExp|AnymatchFn} AnymatchPattern
* @typedef {AnymatchPattern|AnymatchPattern[]} AnymatchMatcher
*/
const BANG = '!';
const DEFAULT_OPTIONS = {returnIndex: false};
const arrify = (item) => Array.isArray(item) ? item : [item];
/**
* @param {AnymatchPattern} matcher
* @param {object} options
* @returns {AnymatchFn}
*/
const createPattern = (matcher, options) => {
if (typeof matcher === 'function') {
return matcher;
}
if (typeof matcher === 'string') {
const glob = picomatch(matcher, options);
return (string) => matcher === string || glob(string);
}
if (matcher instanceof RegExp) {
return (string) => matcher.test(string);
}
return (string) => false;
};
/**
* @param {Array<Function>} patterns
* @param {Array<Function>} negPatterns
* @param {String|Array} args
* @param {Boolean} returnIndex
* @returns {boolean|number}
*/
const matchPatterns = (patterns, negPatterns, args, returnIndex) => {
const isList = Array.isArray(args);
const _path = isList ? args[0] : args;
if (!isList && typeof _path !== 'string') {
throw new TypeError('anymatch: second argument must be a string: got ' +
Object.prototype.toString.call(_path))
}
const path = normalizePath(_path, false);
for (let index = 0; index < negPatterns.length; index++) {
const nglob = negPatterns[index];
if (nglob(path)) {
return returnIndex ? -1 : false;
}
}
const applied = isList && [path].concat(args.slice(1));
for (let index = 0; index < patterns.length; index++) {
const pattern = patterns[index];
if (isList ? pattern(...applied) : pattern(path)) {
return returnIndex ? index : true;
}
}
return returnIndex ? -1 : false;
};
/**
* @param {AnymatchMatcher} matchers
* @param {Array|string} testString
* @param {object} options
* @returns {boolean|number|Function}
*/
const anymatch$1 = (matchers, testString, options = DEFAULT_OPTIONS) => {
if (matchers == null) {
throw new TypeError('anymatch: specify first argument');
}
const opts = typeof options === 'boolean' ? {returnIndex: options} : options;
const returnIndex = opts.returnIndex || false;
// Early cache for matchers.
const mtchers = arrify(matchers);
const negatedGlobs = mtchers
.filter(item => typeof item === 'string' && item.charAt(0) === BANG)
.map(item => item.slice(1))
.map(item => picomatch(item, opts));
const patterns = mtchers
.filter(item => typeof item !== 'string' || (typeof item === 'string' && item.charAt(0) !== BANG))
.map(matcher => createPattern(matcher, opts));
if (testString == null) {
return (testString, ri = false) => {
const returnIndex = typeof ri === 'boolean' ? ri : false;
return matchPatterns(patterns, negatedGlobs, testString, returnIndex);
}
}
return matchPatterns(patterns, negatedGlobs, testString, returnIndex);
};
anymatch$1.default = anymatch$1;
anymatch.exports = anymatch$1;
return anymatch.exports;
}
/*!
* is-extglob <https://github.com/jonschlinkert/is-extglob>
*
* Copyright (c) 2014-2016, Jon Schlinkert.
* Licensed under the MIT License.
*/
var isExtglob;
var hasRequiredIsExtglob;
function requireIsExtglob () {
if (hasRequiredIsExtglob) return isExtglob;
hasRequiredIsExtglob = 1;
isExtglob = function isExtglob(str) {
if (typeof str !== 'string' || str === '') {
return false;
}
var match;
while ((match = /(\\).|([@?!+*]\(.*\))/g.exec(str))) {
if (match[2]) return true;
str = str.slice(match.index + match[0].length);
}
return false;
};
return isExtglob;
}
/*!
* is-glob <https://github.com/jonschlinkert/is-glob>
*
* Copyright (c) 2014-2017, Jon Schlinkert.
* Released under the MIT License.
*/
var isGlob;
var hasRequiredIsGlob;
function requireIsGlob () {
if (hasRequiredIsGlob) return isGlob;
hasRequiredIsGlob = 1;
var isExtglob = /*@__PURE__*/ requireIsExtglob();
var chars = { '{': '}', '(': ')', '[': ']'};
var strictCheck = function(str) {
if (str[0] === '!') {
return true;
}
var index = 0;
var pipeIndex = -2;
var closeSquareIndex = -2;
var closeCurlyIndex = -2;
var closeParenIndex = -2;
var backSlashIndex = -2;
while (index < str.length) {
if (str[index] === '*') {
return true;
}
if (str[index + 1] === '?' && /[\].+)]/.test(str[index])) {
return true;
}
if (closeSquareIndex !== -1 && str[index] === '[' && str[index + 1] !== ']') {
if (closeSquareIndex < index) {
closeSquareIndex = str.indexOf(']', index);
}
if (closeSquareIndex > index) {
if (backSlashIndex === -1 || backSlashIndex > closeSquareIndex) {
return true;
}
backSlashIndex = str.indexOf('\\', index);
if (backSlashIndex === -1 || backSlashIndex > closeSquareIndex) {
return true;
}
}
}
if (closeCurlyIndex !== -1 && str[index] === '{' && str[index + 1] !== '}') {
closeCurlyIndex = str.indexOf('}', index);
if (closeCurlyIndex > index) {
backSlashIndex = str.indexOf('\\', index);
if (backSlashIndex === -1 || backSlashIndex > closeCurlyIndex) {
return true;
}
}
}
if (closeParenIndex !== -1 && str[index] === '(' && str[index + 1] === '?' && /[:!=]/.test(str[index + 2]) && str[index + 3] !== ')') {
closeParenIndex = str.indexOf(')', index);
if (closeParenIndex > index) {
backSlashIndex = str.indexOf('\\', index);
if (backSlashIndex === -1 || backSlashIndex > closeParenIndex) {
return true;
}
}
}
if (pipeIndex !== -1 && str[index] === '(' && str[index + 1] !== '|') {
if (pipeIndex < index) {
pipeIndex = str.indexOf('|', index);
}
if (pipeIndex !== -1 && str[pipeIndex + 1] !== ')') {
closeParenIndex = str.indexOf(')', pipeIndex);
if (closeParenIndex > pipeIndex) {
backSlashIndex = str.indexOf('\\', pipeIndex);
if (backSlashIndex === -1 || backSlashIndex > closeParenIndex) {
return true;
}
}
}
}
if (str[index] === '\\') {
var open = str[index + 1];
index += 2;
var close = chars[open];
if (close) {
var n = str.indexOf(close, index);
if (n !== -1) {
index = n + 1;
}
}
if (str[index] === '!') {
return true;
}
} else {
index++;
}
}
return false;
};
var relaxedCheck = function(str) {
if (str[0] === '!') {
return true;
}
var index = 0;
while (index < str.length) {
if (/[*?{}()[\]]/.test(str[index])) {
return true;
}
if (str[index] === '\\') {
var open = str[index + 1];
index += 2;
var close = chars[open];
if (close) {
var n = str.indexOf(close, index);
if (n !== -1) {
index = n + 1;
}
}
if (str[index] === '!') {
return true;
}
} else {
index++;
}
}
return false;
};
isGlob = function isGlob(str, options) {
if (typeof str !== 'string' || str === '') {
return false;
}
if (isExtglob(str)) {
return true;
}
var check = strictCheck;
// optionally relax check
if (options && options.strict === false) {
check = relaxedCheck;
}
return check(str);
};
return isGlob;
}
var globParent;
var hasRequiredGlobParent;
function requireGlobParent () {
if (hasRequiredGlobParent) return globParent;
hasRequiredGlobParent = 1;
var isGlob = /*@__PURE__*/ requireIsGlob();
var pathPosixDirname = require$$0$1.posix.dirname;
var isWin32 = require$$2$1.platform() === 'win32';
var slash = '/';
var backslash = /\\/g;
var enclosure = /[\{\[].*[\}\]]$/;
var globby = /(^|[^\\])([\{\[]|\([^\)]+$)/;
var escaped = /\\([\!\*\?\|\[\]\(\)\{\}])/g;
/**
* @param {string} str
* @param {Object} opts
* @param {boolean} [opts.flipBackslashes=true]
* @returns {string}
*/
globParent = function globParent(str, opts) {
var options = Object.assign({ flipBackslashes: true }, opts);
// flip windows path separators
if (options.flipBackslashes && isWin32 && str.indexOf(slash) < 0) {
str = str.replace(backslash, slash);
}
// special case for strings ending in enclosure containing path separator
if (enclosure.test(str)) {
str += slash;
}
// preserves full path in case of trailing path separator
str += 'a';
// remove path parts that are globby
do {
str = pathPosixDirname(str);
} while (isGlob(str) || globby.test(str));
// remove escape chars and return result
return str.replace(escaped, '$1');
};
return globParent;
}
var utils = {};
var hasRequiredUtils;
function requireUtils () {
if (hasRequiredUtils) return utils;
hasRequiredUtils = 1;
(function (exports) {
exports.isInteger = num => {
if (typeof num === 'number') {
return Number.isInteger(num);
}
if (typeof num === 'string' && num.trim() !== '') {
return Number.isInteger(Number(num));
}
return false;
};
/**
* Find a node of the given type
*/
exports.find = (node, type) => node.nodes.find(node => node.type === type);
/**
* Find a node of the given type
*/
exports.exceedsLimit = (min, max, step = 1, limit) => {
if (limit === false) return false;
if (!exports.isInteger(min) || !exports.isInteger(max)) return false;
return ((Number(max) - Number(min)) / Number(step)) >= limit;
};
/**
* Escape the given node with '\\' before node.value
*/
exports.escapeNode = (block, n = 0, type) => {
const node = block.nodes[n];
if (!node) return;
if ((type && node.type === type) || node.type === 'open' || node.type === 'close') {
if (node.escaped !== true) {
node.value = '\\' + node.value;
node.escaped = true;
}
}
};
/**
* Returns true if the given brace node should be enclosed in literal braces
*/
exports.encloseBrace = node => {
if (node.type !== 'brace') return false;
if ((node.commas >> 0 + node.ranges >> 0) === 0) {
node.invalid = true;
return true;
}
return false;
};
/**
* Returns true if a brace node is invalid.
*/
exports.isInvalidBrace = block => {
if (block.type !== 'brace') return false;
if (block.invalid === true || block.dollar) return true;
if ((block.commas >> 0 + block.ranges >> 0) === 0) {
block.invalid = true;
return true;
}
if (block.open !== true || block.close !== true) {
block.invalid = true;
return true;
}
return false;
};
/**
* Returns true if a node is an open or close node
*/
exports.isOpenOrClose = node => {
if (node.type === 'open' || node.type === 'close') {
return true;
}
return node.open === true || node.close === true;
};
/**
* Reduce an array of text nodes.
*/
exports.reduce = nodes => nodes.reduce((acc, node) => {
if (node.type === 'text') acc.push(node.value);
if (node.type === 'range') node.type = 'text';
return acc;
}, []);
/**
* Flatten an array
*/
exports.flatten = (...args) => {
const result = [];
const flat = arr => {
for (let i = 0; i < arr.length; i++) {
const ele = arr[i];
if (Array.isArray(ele)) {
flat(ele);
continue;
}
if (ele !== undefined) {
result.push(ele);
}
}
return result;
};
flat(args);
return result;
};
} (utils));
return utils;
}
var stringify;
var hasRequiredStringify;
function requireStringify () {
if (hasRequiredStringify) return stringify;
hasRequiredStringify = 1;
const utils = /*@__PURE__*/ requireUtils();
stringify = (ast, options = {}) => {
const stringify = (node, parent = {}) => {
const invalidBlock = options.escapeInvalid && utils.isInvalidBrace(parent);
const invalidNode = node.invalid === true && options.escapeInvalid === true;
let output = '';
if (node.value) {
if ((invalidBlock || invalidNode) && utils.isOpenOrClose(node)) {
return '\\' + node.value;
}
return node.value;
}
if (node.value) {
return node.value;
}
if (node.nodes) {
for (const child of node.nodes) {
output += stringify(child);
}
}
return output;
};
return stringify(ast);
};
return stringify;
}
/*!
* is-number <https://github.com/jonschlinkert/is-number>
*
* Copyright (c) 2014-present, Jon Schlinkert.
* Released under the MIT License.
*/
var isNumber;
var hasRequiredIsNumber;
function requireIsNumber () {
if (hasRequiredIsNumber) return isNumber;
hasRequiredIsNumber = 1;
isNumber = function(num) {
if (typeof num === 'number') {
return num - num === 0;
}
if (typeof num === 'string' && num.trim() !== '') {
return Number.isFinite ? Number.isFinite(+num) : isFinite(+num);
}
return false;
};
return isNumber;
}
/*!
* to-regex-range <https://github.com/micromatch/to-regex-range>
*
* Copyright (c) 2015-present, Jon Schlinkert.
* Released under the MIT License.
*/
var toRegexRange_1;
var hasRequiredToRegexRange;
function requireToRegexRange () {
if (hasRequiredToRegexRange) return toRegexRange_1;
hasRequiredToRegexRange = 1;
const isNumber = /*@__PURE__*/ requireIsNumber();
const toRegexRange = (min, max, options) => {
if (isNumber(min) === false) {
throw new TypeError('toRegexRange: expected the first argument to be a number');
}
if (max === void 0 || min === max) {
return String(min);
}
if (isNumber(max) === false) {
throw new TypeError('toRegexRange: expected the second argument to be a number.');
}
let opts = { relaxZeros: true, ...options };
if (typeof opts.strictZeros === 'boolean') {
opts.relaxZeros = opts.strictZeros === false;
}
let relax = String(opts.relaxZeros);
let shorthand = String(opts.shorthand);
let capture = String(opts.capture);
let wrap = String(opts.wrap);
let cacheKey = min + ':' + max + '=' + relax + shorthand + capture + wrap;
if (toRegexRange.cache.hasOwnProperty(cacheKey)) {
return toRegexRange.cache[cacheKey].result;
}
let a = Math.min(min, max);
let b = Math.max(min, max);
if (Math.abs(a - b) === 1) {
let result = min + '|' + max;
if (opts.capture) {
return `(${result})`;
}
if (opts.wrap === false) {
return result;
}
return `(?:${result})`;
}
let isPadded = hasPadding(min) || hasPadding(max);
let state = { min, max, a, b };
let positives = [];
let negatives = [];
if (isPadded) {
state.isPadded = isPadded;
state.maxLen = String(state.max).length;
}
if (a < 0) {
let newMin = b < 0 ? Math.abs(b) : 1;
negatives = splitToPatterns(newMin, Math.abs(a), state, opts);
a = state.a = 0;
}
if (b >= 0) {
positives = splitToPatterns(a, b, state, opts);
}
state.negatives = negatives;
state.positives = positives;
state.result = collatePatterns(negatives, positives);
if (opts.capture === true) {
state.result = `(${state.result})`;
} else if (opts.wrap !== false && (positives.length + negatives.length) > 1) {
state.result = `(?:${state.result})`;
}
toRegexRange.cache[cacheKey] = state;
return state.result;
};
function collatePatterns(neg, pos, options) {
let onlyNegative = filterPatterns(neg, pos, '-', false) || [];
let onlyPositive = filterPatterns(pos, neg, '', false) || [];
let intersected = filterPatterns(neg, pos, '-?', true) || [];
let subpatterns = onlyNegative.concat(intersected).concat(onlyPositive);
return subpatterns.join('|');
}
function splitToRanges(min, max) {
let nines = 1;
let zeros = 1;
let stop = countNines(min, nines);
let stops = new Set([max]);
while (min <= stop && stop <= max) {
stops.add(stop);
nines += 1;
stop = countNines(min, nines);
}
stop = countZeros(max + 1, zeros) - 1;
while (min < stop && stop <= max) {
stops.add(stop);
zeros += 1;
stop = countZeros(max + 1, zeros) - 1;
}
stops = [...stops];
stops.sort(compare);
return stops;
}
/**
* Convert a range to a regex pattern
* @param {Number} `start`
* @param {Number} `stop`
* @return {String}
*/
function rangeToPattern(start, stop, options) {
if (start === stop) {
return { pattern: start, count: [], digits: 0 };
}
let zipped = zip(start, stop);
let digits = zipped.length;
let pattern = '';
let count = 0;
for (let i = 0; i < digits; i++) {
let [startDigit, stopDigit] = zipped[i];
if (startDigit === stopDigit) {
pattern += startDigit;
} else if (startDigit !== '0' || stopDigit !== '9') {
pattern += toCharacterClass(startDigit, stopDigit);
} else {
count++;
}
}
if (count) {
pattern += options.shorthand === true ? '\\d' : '[0-9]';
}
return { pattern, count: [count], digits };
}
function splitToPatterns(min, max, tok, options) {
let ranges = splitToRanges(min, max);
let tokens = [];
let start = min;
let prev;
for (let i = 0; i < ranges.length; i++) {
let max = ranges[i];
let obj = rangeToPattern(String(start), String(max), options);
let zeros = '';
if (!tok.isPadded && prev && prev.pattern === obj.pattern) {
if (prev.count.length > 1) {
prev.count.pop();
}
prev.count.push(obj.count[0]);
prev.string = prev.pattern + toQuantifier(prev.count);
start = max + 1;
continue;
}
if (tok.isPadded) {
zeros = padZeros(max, tok, options);
}
obj.string = zeros + obj.pattern + toQuantifier(obj.count);
tokens.push(obj);
start = max + 1;
prev = obj;
}
return tokens;
}
function filterPatterns(arr, comparison, prefix, intersection, options) {
let result = [];
for (let ele of arr) {
let { string } = ele;
// only push if _both_ are negative...
if (!intersection && !contains(comparison, 'string', string)) {
result.push(prefix + string);
}
// or _both_ are positive
if (intersection && contains(comparison, 'string', string)) {
result.push(prefix + string);
}
}
return result;
}
/**
* Zip strings
*/
function zip(a, b) {
let arr = [];
for (let i = 0; i < a.length; i++) arr.push([a[i], b[i]]);
return arr;
}
function compare(a, b) {
return a > b ? 1 : b > a ? -1 : 0;
}
function contains(arr, key, val) {
return arr.some(ele => ele[key] === val);
}
function countNines(min, len) {
return Number(String(min).slice(0, -len) + '9'.repeat(len));
}
function countZeros(integer, zeros) {
return integer - (integer % Math.pow(10, zeros));
}
function toQuantifier(digits) {
let [start = 0, stop = ''] = digits;
if (stop || start > 1) {
return `{${start + (stop ? ',' + stop : '')}}`;
}
return '';
}
function toCharacterClass(a, b, options) {
return `[${a}${(b - a === 1) ? '' : '-'}${b}]`;
}
function hasPadding(str) {
return /^-?(0+)\d/.test(str);
}
function padZeros(value, tok, options) {
if (!tok.isPadded) {
return value;
}
let diff = Math.abs(tok.maxLen - String(value).length);
let relax = options.relaxZeros !== false;
switch (diff) {
case 0:
return '';
case 1:
return relax ? '0?' : '0';
case 2:
return relax ? '0{0,2}' : '00';
default: {
return relax ? `0{0,${diff}}` : `0{${diff}}`;
}
}
}
/**
* Cache
*/
toRegexRange.cache = {};
toRegexRange.clearCache = () => (toRegexRange.cache = {});
/**
* Expose `toRegexRange`
*/
toRegexRange_1 = toRegexRange;
return toRegexRange_1;
}
/*!
* fill-range <https://github.com/jonschlinkert/fill-range>
*
* Copyright (c) 2014-present, Jon Schlinkert.
* Licensed under the MIT License.
*/
var fillRange;
var hasRequiredFillRange;
function requireFillRange () {
if (hasRequiredFillRange) return fillRange;
hasRequiredFillRange = 1;
const util = require$$2;
const toRegexRange = /*@__PURE__*/ requireToRegexRange();
const isObject = val => val !== null && typeof val === 'object' && !Array.isArray(val);
const transform = toNumber => {
return value => toNumber === true ? Number(value) : String(value);
};
const isValidValue = value => {
return typeof value === 'number' || (typeof value === 'string' && value !== '');
};
const isNumber = num => Number.isInteger(+num);
const zeros = input => {
let value = `${input}`;
let index = -1;
if (value[0] === '-') value = value.slice(1);
if (value === '0') return false;
while (value[++index] === '0');
return index > 0;
};
const stringify = (start, end, options) => {
if (typeof start === 'string' || typeof end === 'string') {
return true;
}
return options.stringify === true;
};
const pad = (input, maxLength, toNumber) => {
if (maxLength > 0) {
let dash = input[0] === '-' ? '-' : '';
if (dash) input = input.slice(1);
input = (dash + input.padStart(dash ? maxLength - 1 : maxLength, '0'));
}
if (toNumber === false) {
return String(input);
}
return input;
};
const toMaxLen = (input, maxLength) => {
let negative = input[0] === '-' ? '-' : '';
if (negative) {
input = input.slice(1);
maxLength--;
}
while (input.length < maxLength) input = '0' + input;
return negative ? ('-' + input) : input;
};
const toSequence = (parts, options, maxLen) => {
parts.negatives.sort((a, b) => a < b ? -1 : a > b ? 1 : 0);
parts.positives.sort((a, b) => a < b ? -1 : a > b ? 1 : 0);
let prefix = options.capture ? '' : '?:';
let positives = '';
let negatives = '';
let result;
if (parts.positives.length) {
positives = parts.positives.map(v => toMaxLen(String(v), maxLen)).join('|');
}
if (parts.negatives.length) {
negatives = `-(${prefix}${parts.negatives.map(v => toMaxLen(String(v), maxLen)).join('|')})`;
}
if (positives && negatives) {
result = `${positives}|${negatives}`;
} else {
result = positives || negatives;
}
if (options.wrap) {
return `(${prefix}${result})`;
}
return result;
};
const toRange = (a, b, isNumbers, options) => {
if (isNumbers) {
return toRegexRange(a, b, { wrap: false, ...options });
}
let start = String.fromCharCode(a);
if (a === b) return start;
let stop = String.fromCharCode(b);
return `[${start}-${stop}]`;
};
const toRegex = (start, end, options) => {
if (Array.isArray(start)) {
let wrap = options.wrap === true;
let prefix = options.capture ? '' : '?:';
return wrap ? `(${prefix}${start.join('|')})` : start.join('|');
}
return toRegexRange(start, end, options);
};
const rangeError = (...args) => {
return new RangeError('Invalid range arguments: ' + util.inspect(...args));
};
const invalidRange = (start, end, options) => {
if (options.strictRanges === true) throw rangeError([start, end]);
return [];
};
const invalidStep = (step, options) => {
if (options.strictRanges === true) {
throw new TypeError(`Expected step "${step}" to be a number`);
}
return [];
};
const fillNumbers = (start, end, step = 1, options = {}) => {
let a = Number(start);
let b = Number(end);
if (!Number.isInteger(a) || !Number.isInteger(b)) {
if (options.strictRanges === true) throw rangeError([start, end]);
return [];
}
// fix negative zero
if (a === 0) a = 0;
if (b === 0) b = 0;
let descending = a > b;
let startString = String(start);
let endString = String(end);
let stepString = String(step);
step = Math.max(Math.abs(step), 1);
let padded = zeros(startString) || zeros(endString) || zeros(stepString);
let maxLen = padded ? Math.max(startString.length, endString.length, stepString.length) : 0;
let toNumber = padded === false && stringify(start, end, options) === false;
let format = options.transform || transform(toNumber);
if (options.toRegex && step === 1) {
return toRange(toMaxLen(start, maxLen), toMaxLen(end, maxLen), true, options);
}
let parts = { negatives: [], positives: [] };
let push = num => parts[num < 0 ? 'negatives' : 'positives'].push(Math.abs(num));
let range = [];
let index = 0;
while (descending ? a >= b : a <= b) {
if (options.toRegex === true && step > 1) {
push(a);
} else {
range.push(pad(format(a, index), maxLen, toNumber));
}
a = descending ? a - step : a + step;
index++;
}
if (options.toRegex === true) {
return step > 1
? toSequence(parts, options, maxLen)
: toRegex(range, null, { wrap: false, ...options });
}
return range;
};
const fillLetters = (start, end, step = 1, options = {}) => {
if ((!isNumber(start) && start.length > 1) || (!isNumber(end) && end.length > 1)) {
return invalidRange(start, end, options);
}
let format = options.transform || (val => String.fromCharCode(val));
let a = `${start}`.charCodeAt(0);
let b = `${end}`.charCodeAt(0);
let descending = a > b;
let min = Math.min(a, b);
let max = Math.max(a, b);
if (options.toRegex && step === 1) {
return toRange(min, max, false, options);
}
let range = [];
let index = 0;
while (descending ? a >= b : a <= b) {
range.push(format(a, index));
a = descending ? a - step : a + step;
index++;
}
if (options.toRegex === true) {
return toRegex(range, null, { wrap: false, options });
}
return range;
};
const fill = (start, end, step, options = {}) => {
if (end == null && isValidValue(start)) {
return [start];
}
if (!isValidValue(start) || !isValidValue(end)) {
return invalidRange(start, end, options);
}
if (typeof step === 'function') {
return fill(start, end, 1, { transform: step });
}
if (isObject(step)) {
return fill(start, end, 0, step);
}
let opts = { ...options };
if (opts.capture === true) opts.wrap = true;
step = step || opts.step || 1;
if (!isNumber(step)) {
if (step != null && !isObject(step)) return invalidStep(step, opts);
return fill(start, end, 1, step);
}
if (isNumber(start) && isNumber(end)) {
return fillNumbers(start, end, step, opts);
}
return fillLetters(start, end, Math.max(Math.abs(step), 1), opts);
};
fillRange = fill;
return fillRange;
}
var compile_1;
var hasRequiredCompile;
function requireCompile () {
if (hasRequiredCompile) return compile_1;
hasRequiredCompile = 1;
const fill = /*@__PURE__*/ requireFillRange();
const utils = /*@__PURE__*/ requireUtils();
const compile = (ast, options = {}) => {
const walk = (node, parent = {}) => {
const invalidBlock = utils.isInvalidBrace(parent);
const invalidNode = node.invalid === true && options.escapeInvalid === true;
const invalid = invalidBlock === true || invalidNode === true;
const prefix = options.escapeInvalid === true ? '\\' : '';
let output = '';
if (node.isOpen === true) {
return prefix + node.value;
}
if (node.isClose === true) {
console.log('node.isClose', prefix, node.value);
return prefix + node.value;
}
if (node.type === 'open') {
return invalid ? prefix + node.value : '(';
}
if (node.type === 'close') {
return invalid ? prefix + node.value : ')';
}
if (node.type === 'comma') {
return node.prev.type === 'comma' ? '' : invalid ? node.value : '|';
}
if (node.value) {
return node.value;
}
if (node.nodes && node.ranges > 0) {
const args = utils.reduce(node.nodes);
const range = fill(...args, { ...options, wrap: false, toRegex: true, strictZeros: true });
if (range.length !== 0) {
return args.length > 1 && range.length > 1 ? `(${range})` : range;
}
}
if (node.nodes) {
for (const child of node.nodes) {
output += walk(child, node);
}
}
return output;
};
return walk(ast);
};
compile_1 = compile;
return compile_1;
}
var expand_1;
var hasRequiredExpand;
function requireExpand () {
if (hasRequiredExpand) return expand_1;
hasRequiredExpand = 1;
const fill = /*@__PURE__*/ requireFillRange();
const stringify = /*@__PURE__*/ requireStringify();
const utils = /*@__PURE__*/ requireUtils();
const append = (queue = '', stash = '', enclose = false) => {
const result = [];
queue = [].concat(queue);
stash = [].concat(stash);
if (!stash.length) return queue;
if (!queue.length) {
return enclose ? utils.flatten(stash).map(ele => `{${ele}}`) : stash;
}
for (const item of queue) {
if (Array.isArray(item)) {
for (const value of item) {
result.push(append(value, stash, enclose));
}
} else {
for (let ele of stash) {
if (enclose === true && typeof ele === 'string') ele = `{${ele}}`;
result.push(Array.isArray(ele) ? append(item, ele, enclose) : item + ele);
}
}
}
return utils.flatten(result);
};
const expand = (ast, options = {}) => {
const rangeLimit = options.rangeLimit === undefined ? 1000 : options.rangeLimit;
const walk = (node, parent = {}) => {
node.queue = [];
let p = parent;
let q = parent.queue;
while (p.type !== 'brace' && p.type !== 'root' && p.parent) {
p = p.parent;
q = p.queue;
}
if (node.invalid || node.dollar) {
q.push(append(q.pop(), stringify(node, options)));
return;
}
if (node.type === 'brace' && node.invalid !== true && node.nodes.length === 2) {
q.push(append(q.pop(), ['{}']));
return;
}
if (node.nodes && node.ranges > 0) {
const args = utils.reduce(node.nodes);
if (utils.exceedsLimit(...args, options.step, rangeLimit)) {
throw new RangeError('expanded array length exceeds range limit. Use options.rangeLimit to increase or disable the limit.');
}
let range = fill(...args, options);
if (range.length === 0) {
range = stringify(node, options);
}
q.push(append(q.pop(), range));
node.nodes = [];
return;
}
const enclose = utils.encloseBrace(node);
let queue = node.queue;
let block = node;
while (block.type !== 'brace' && block.type !== 'root' && block.parent) {
block = block.parent;
queue = block.queue;
}
for (let i = 0; i < node.nodes.length; i++) {
const child = node.nodes[i];
if (child.type === 'comma' && node.type === 'brace') {
if (i === 1) queue.push('');
queue.push('');
continue;
}
if (child.type === 'close') {
q.push(append(q.pop(), queue, enclose));
continue;
}
if (child.value && child.type !== 'open') {
queue.push(append(queue.pop(), child.value));
continue;
}
if (child.nodes) {
walk(child, node);
}
}
return queue;
};
return utils.flatten(walk(ast));
};
expand_1 = expand;
return expand_1;
}
var constants$1;
var hasRequiredConstants$1;
function requireConstants$1 () {
if (hasRequiredConstants$1) return constants$1;
hasRequiredConstants$1 = 1;
constants$1 = {
MAX_LENGTH: 10000,
// Digits
CHAR_0: '0', /* 0 */
CHAR_9: '9', /* 9 */
// Alphabet chars.
CHAR_UPPERCASE_A: 'A', /* A */
CHAR_LOWERCASE_A: 'a', /* a */
CHAR_UPPERCASE_Z: 'Z', /* Z */
CHAR_LOWERCASE_Z: 'z', /* z */
CHAR_LEFT_PARENTHESES: '(', /* ( */
CHAR_RIGHT_PARENTHESES: ')', /* ) */
CHAR_ASTERISK: '*', /* * */
// Non-alphabetic chars.
CHAR_AMPERSAND: '&', /* & */
CHAR_AT: '@', /* @ */
CHAR_BACKSLASH: '\\', /* \ */
CHAR_BACKTICK: '`', /* ` */
CHAR_CARRIAGE_RETURN: '\r', /* \r */
CHAR_CIRCUMFLEX_ACCENT: '^', /* ^ */
CHAR_COLON: ':', /* : */
CHAR_COMMA: ',', /* , */
CHAR_DOLLAR: '$', /* . */
CHAR_DOT: '.', /* . */
CHAR_DOUBLE_QUOTE: '"', /* " */
CHAR_EQUAL: '=', /* = */
CHAR_EXCLAMATION_MARK: '!', /* ! */
CHAR_FORM_FEED: '\f', /* \f */
CHAR_FORWARD_SLASH: '/', /* / */
CHAR_HASH: '#', /* # */
CHAR_HYPHEN_MINUS: '-', /* - */
CHAR_LEFT_ANGLE_BRACKET: '<', /* < */
CHAR_LEFT_CURLY_BRACE: '{', /* { */
CHAR_LEFT_SQUARE_BRACKET: '[', /* [ */
CHAR_LINE_FEED: '\n', /* \n */
CHAR_NO_BREAK_SPACE: '\u00A0', /* \u00A0 */
CHAR_PERCENT: '%', /* % */
CHAR_PLUS: '+', /* + */
CHAR_QUESTION_MARK: '?', /* ? */
CHAR_RIGHT_ANGLE_BRACKET: '>', /* > */
CHAR_RIGHT_CURLY_BRACE: '}', /* } */
CHAR_RIGHT_SQUARE_BRACKET: ']', /* ] */
CHAR_SEMICOLON: ';', /* ; */
CHAR_SINGLE_QUOTE: '\'', /* ' */
CHAR_SPACE: ' ', /* */
CHAR_TAB: '\t', /* \t */
CHAR_UNDERSCORE: '_', /* _ */
CHAR_VERTICAL_LINE: '|', /* | */
CHAR_ZERO_WIDTH_NOBREAK_SPACE: '\uFEFF' /* \uFEFF */
};
return constants$1;
}
var parse_1;
var hasRequiredParse;
function requireParse () {
if (hasRequiredParse) return parse_1;
hasRequiredParse = 1;
const stringify = /*@__PURE__*/ requireStringify();
/**
* Constants
*/
const {
MAX_LENGTH,
CHAR_BACKSLASH, /* \ */
CHAR_BACKTICK, /* ` */
CHAR_COMMA, /* , */
CHAR_DOT, /* . */
CHAR_LEFT_PARENTHESES, /* ( */
CHAR_RIGHT_PARENTHESES, /* ) */
CHAR_LEFT_CURLY_BRACE, /* { */
CHAR_RIGHT_CURLY_BRACE, /* } */
CHAR_LEFT_SQUARE_BRACKET, /* [ */
CHAR_RIGHT_SQUARE_BRACKET, /* ] */
CHAR_DOUBLE_QUOTE, /* " */
CHAR_SINGLE_QUOTE, /* ' */
CHAR_NO_BREAK_SPACE,
CHAR_ZERO_WIDTH_NOBREAK_SPACE
} = /*@__PURE__*/ requireConstants$1();
/**
* parse
*/
const parse = (input, options = {}) => {
if (typeof input !== 'string') {
throw new TypeError('Expected a string');
}
const opts = options || {};
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
if (input.length > max) {
throw new SyntaxError(`Input length (${input.length}), exceeds max characters (${max})`);
}
const ast = { type: 'root', input, nodes: [] };
const stack = [ast];
let block = ast;
let prev = ast;
let brackets = 0;
const length = input.length;
let index = 0;
let depth = 0;
let value;
/**
* Helpers
*/
const advance = () => input[index++];
const push = node => {
if (node.type === 'text' && prev.type === 'dot') {
prev.type = 'text';
}
if (prev && prev.type === 'text' && node.type === 'text') {
prev.value += node.value;
return;
}
block.nodes.push(node);
node.parent = block;
node.prev = prev;
prev = node;
return node;
};
push({ type: 'bos' });
while (index < length) {
block = stack[stack.length - 1];
value = advance();
/**
* Invalid chars
*/
if (value === CHAR_ZERO_WIDTH_NOBREAK_SPACE || value === CHAR_NO_BREAK_SPACE) {
continue;
}
/**
* Escaped chars
*/
if (value === CHAR_BACKSLASH) {
push({ type: 'text', value: (options.keepEscaping ? value : '') + advance() });
continue;
}
/**
* Right square bracket (literal): ']'
*/
if (value === CHAR_RIGHT_SQUARE_BRACKET) {
push({ type: 'text', value: '\\' + value });
continue;
}
/**
* Left square bracket: '['
*/
if (value === CHAR_LEFT_SQUARE_BRACKET) {
brackets++;
let next;
while (index < length && (next = advance())) {
value += next;
if (next === CHAR_LEFT_SQUARE_BRACKET) {
brackets++;
continue;
}
if (next === CHAR_BACKSLASH) {
value += advance();
continue;
}
if (next === CHAR_RIGHT_SQUARE_BRACKET) {
brackets--;
if (brackets === 0) {
break;
}
}
}
push({ type: 'text', value });
continue;
}
/**
* Parentheses
*/
if (value === CHAR_LEFT_PARENTHESES) {
block = push({ type: 'paren', nodes: [] });
stack.push(block);
push({ type: 'text', value });
continue;
}
if (value === CHAR_RIGHT_PARENTHESES) {
if (block.type !== 'paren') {
push({ type: 'text', value });
continue;
}
block = stack.pop();
push({ type: 'text', value });
block = stack[stack.length - 1];
continue;
}
/**
* Quotes: '|"|`
*/
if (value === CHAR_DOUBLE_QUOTE || value === CHAR_SINGLE_QUOTE || value === CHAR_BACKTICK) {
const open = value;
let next;
if (options.keepQuotes !== true) {
value = '';
}
while (index < length && (next = advance())) {
if (next === CHAR_BACKSLASH) {
value += next + advance();
continue;
}
if (next === open) {
if (options.keepQuotes === true) value += next;
break;
}
value += next;
}
push({ type: 'text', value });
continue;
}
/**
* Left curly brace: '{'
*/
if (value === CHAR_LEFT_CURLY_BRACE) {
depth++;
const dollar = prev.value && prev.value.slice(-1) === '$' || block.dollar === true;
const brace = {
type: 'brace',
open: true,
close: false,
dollar,
depth,
commas: 0,
ranges: 0,
nodes: []
};
block = push(brace);
stack.push(block);
push({ type: 'open', value });
continue;
}
/**
* Right curly brace: '}'
*/
if (value === CHAR_RIGHT_CURLY_BRACE) {
if (block.type !== 'brace') {
push({ type: 'text', value });
continue;
}
const type = 'close';
block = stack.pop();
block.close = true;
push({ type, value });
depth--;
block = stack[stack.length - 1];
continue;
}
/**
* Comma: ','
*/
if (value === CHAR_COMMA && depth > 0) {
if (block.ranges > 0) {
block.ranges = 0;
const open = block.nodes.shift();
block.nodes = [open, { type: 'text', value: stringify(block) }];
}
push({ type: 'comma', value });
block.commas++;
continue;
}
/**
* Dot: '.'
*/
if (value === CHAR_DOT && depth > 0 && block.commas === 0) {
const siblings = block.nodes;
if (depth === 0 || siblings.length === 0) {
push({ type: 'text', value });
continue;
}
if (prev.type === 'dot') {
block.range = [];
prev.value += value;
prev.type = 'range';
if (block.nodes.length !== 3 && block.nodes.length !== 5) {
block.invalid = true;
block.ranges = 0;
prev.type = 'text';
continue;
}
block.ranges++;
block.args = [];
continue;
}
if (prev.type === 'range') {
siblings.pop();
const before = siblings[siblings.length - 1];
before.value += prev.value + value;
prev = before;
block.ranges--;
continue;
}
push({ type: 'dot', value });
continue;
}
/**
* Text
*/
push({ type: 'text', value });
}
// Mark imbalanced braces and brackets as invalid
do {
block = stack.pop();
if (block.type !== 'root') {
block.nodes.forEach(node => {
if (!node.nodes) {
if (node.type === 'open') node.isOpen = true;
if (node.type === 'close') node.isClose = true;
if (!node.nodes) node.type = 'text';
node.invalid = true;
}
});
// get the location of the block on parent.nodes (block's siblings)
const parent = stack[stack.length - 1];
const index = parent.nodes.indexOf(block);
// replace the (invalid) block with it's nodes
parent.nodes.splice(index, 1, ...block.nodes);
}
} while (stack.length > 0);
push({ type: 'eos' });
return ast;
};
parse_1 = parse;
return parse_1;
}
var braces_1;
var hasRequiredBraces;
function requireBraces () {
if (hasRequiredBraces) return braces_1;
hasRequiredBraces = 1;
const stringify = /*@__PURE__*/ requireStringify();
const compile = /*@__PURE__*/ requireCompile();
const expand = /*@__PURE__*/ requireExpand();
const parse = /*@__PURE__*/ requireParse();
/**
* Expand the given pattern or create a regex-compatible string.
*
* ```js
* const braces = require('braces');
* console.log(braces('{a,b,c}', { compile: true })); //=> ['(a|b|c)']
* console.log(braces('{a,b,c}')); //=> ['a', 'b', 'c']
* ```
* @param {String} `str`
* @param {Object} `options`
* @return {String}
* @api public
*/
const braces = (input, options = {}) => {
let output = [];
if (Array.isArray(input)) {
for (const pattern of input) {
const result = braces.create(pattern, options);
if (Array.isArray(result)) {
output.push(...result);
} else {
output.push(result);
}
}
} else {
output = [].concat(braces.create(input, options));
}
if (options && options.expand === true && options.nodupes === true) {
output = [...new Set(output)];
}
return output;
};
/**
* Parse the given `str` with the given `options`.
*
* ```js
* // braces.parse(pattern, [, options]);
* const ast = braces.parse('a/{b,c}/d');
* console.log(ast);
* ```
* @param {String} pattern Brace pattern to parse
* @param {Object} options
* @return {Object} Returns an AST
* @api public
*/
braces.parse = (input, options = {}) => parse(input, options);
/**
* Creates a braces string from an AST, or an AST node.
*
* ```js
* const braces = require('braces');
* let ast = braces.parse('foo/{a,b}/bar');
* console.log(stringify(ast.nodes[2])); //=> '{a,b}'
* ```
* @param {String} `input` Brace pattern or AST.
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.stringify = (input, options = {}) => {
if (typeof input === 'string') {
return stringify(braces.parse(input, options), options);
}
return stringify(input, options);
};
/**
* Compiles a brace pattern into a regex-compatible, optimized string.
* This method is called by the main [braces](#braces) function by default.
*
* ```js
* const braces = require('braces');
* console.log(braces.compile('a/{b,c}/d'));
* //=> ['a/(b|c)/d']
* ```
* @param {String} `input` Brace pattern or AST.
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.compile = (input, options = {}) => {
if (typeof input === 'string') {
input = braces.parse(input, options);
}
return compile(input, options);
};
/**
* Expands a brace pattern into an array. This method is called by the
* main [braces](#braces) function when `options.expand` is true. Before
* using this method it's recommended that you read the [performance notes](#performance))
* and advantages of using [.compile](#compile) instead.
*
* ```js
* const braces = require('braces');
* console.log(braces.expand('a/{b,c}/d'));
* //=> ['a/b/d', 'a/c/d'];
* ```
* @param {String} `pattern` Brace pattern
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.expand = (input, options = {}) => {
if (typeof input === 'string') {
input = braces.parse(input, options);
}
let result = expand(input, options);
// filter out empty strings if specified
if (options.noempty === true) {
result = result.filter(Boolean);
}
// filter out duplicates if specified
if (options.nodupes === true) {
result = [...new Set(result)];
}
return result;
};
/**
* Processes a brace pattern and returns either an expanded array
* (if `options.expand` is true), a highly optimized regex-compatible string.
* This method is called by the main [braces](#braces) function.
*
* ```js
* const braces = require('braces');
* console.log(braces.create('user-{200..300}/project-{a,b,c}-{1..10}'))
* //=> 'user-(20[0-9]|2[1-9][0-9]|300)/project-(a|b|c)-([1-9]|10)'
* ```
* @param {String} `pattern` Brace pattern
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.create = (input, options = {}) => {
if (input === '' || input.length < 3) {
return [input];
}
return options.expand !== true
? braces.compile(input, options)
: braces.expand(input, options);
};
/**
* Expose "braces"
*/
braces_1 = braces;
return braces_1;
}
const require$$0 = [
"3dm",
"3ds",
"3g2",
"3gp",
"7z",
"a",
"aac",
"adp",
"afdesign",
"afphoto",
"afpub",
"ai",
"aif",
"aiff",
"alz",
"ape",
"apk",
"appimage",
"ar",
"arj",
"asf",
"au",
"avi",
"bak",
"baml",
"bh",
"bin",
"bk",
"bmp",
"btif",
"bz2",
"bzip2",
"cab",
"caf",
"cgm",
"class",
"cmx",
"cpio",
"cr2",
"cur",
"dat",
"dcm",
"deb",
"dex",
"djvu",
"dll",
"dmg",
"dng",
"doc",
"docm",
"docx",
"dot",
"dotm",
"dra",
"DS_Store",
"dsk",
"dts",
"dtshd",
"dvb",
"dwg",
"dxf",
"ecelp4800",
"ecelp7470",
"ecelp9600",
"egg",
"eol",
"eot",
"epub",
"exe",
"f4v",
"fbs",
"fh",
"fla",
"flac",
"flatpak",
"fli",
"flv",
"fpx",
"fst",
"fvt",
"g3",
"gh",
"gif",
"graffle",
"gz",
"gzip",
"h261",
"h263",
"h264",
"icns",
"ico",
"ief",
"img",
"ipa",
"iso",
"jar",
"jpeg",
"jpg",
"jpgv",
"jpm",
"jxr",
"key",
"ktx",
"lha",
"lib",
"lvp",
"lz",
"lzh",
"lzma",
"lzo",
"m3u",
"m4a",
"m4v",
"mar",
"mdi",
"mht",
"mid",
"midi",
"mj2",
"mka",
"mkv",
"mmr",
"mng",
"mobi",
"mov",
"movie",
"mp3",
"mp4",
"mp4a",
"mpeg",
"mpg",
"mpga",
"mxu",
"nef",
"npx",
"numbers",
"nupkg",
"o",
"odp",
"ods",
"odt",
"oga",
"ogg",
"ogv",
"otf",
"ott",
"pages",
"pbm",
"pcx",
"pdb",
"pdf",
"pea",
"pgm",
"pic",
"png",
"pnm",
"pot",
"potm",
"potx",
"ppa",
"ppam",
"ppm",
"pps",
"ppsm",
"ppsx",
"ppt",
"pptm",
"pptx",
"psd",
"pya",
"pyc",
"pyo",
"pyv",
"qt",
"rar",
"ras",
"raw",
"resources",
"rgb",
"rip",
"rlc",
"rmf",
"rmvb",
"rpm",
"rtf",
"rz",
"s3m",
"s7z",
"scpt",
"sgi",
"shar",
"snap",
"sil",
"sketch",
"slk",
"smv",
"snk",
"so",
"stl",
"suo",
"sub",
"swf",
"tar",
"tbz",
"tbz2",
"tga",
"tgz",
"thmx",
"tif",
"tiff",
"tlz",
"ttc",
"ttf",
"txz",
"udf",
"uvh",
"uvi",
"uvm",
"uvp",
"uvs",
"uvu",
"viv",
"vob",
"war",
"wav",
"wax",
"wbmp",
"wdp",
"weba",
"webm",
"webp",
"whl",
"wim",
"wm",
"wma",
"wmv",
"wmx",
"woff",
"woff2",
"wrm",
"wvx",
"xbm",
"xif",
"xla",
"xlam",
"xls",
"xlsb",
"xlsm",
"xlsx",
"xlt",
"xltm",
"xltx",
"xm",
"xmind",
"xpi",
"xpm",
"xwd",
"xz",
"z",
"zip",
"zipx"
];
var binaryExtensions;
var hasRequiredBinaryExtensions;
function requireBinaryExtensions () {
if (hasRequiredBinaryExtensions) return binaryExtensions;
hasRequiredBinaryExtensions = 1;
binaryExtensions = require$$0;
return binaryExtensions;
}
var isBinaryPath;
var hasRequiredIsBinaryPath;
function requireIsBinaryPath () {
if (hasRequiredIsBinaryPath) return isBinaryPath;
hasRequiredIsBinaryPath = 1;
const path = require$$0$1;
const binaryExtensions = /*@__PURE__*/ requireBinaryExtensions();
const extensions = new Set(binaryExtensions);
isBinaryPath = filePath => extensions.has(path.extname(filePath).slice(1).toLowerCase());
return isBinaryPath;
}
var constants = {};
var hasRequiredConstants;
function requireConstants () {
if (hasRequiredConstants) return constants;
hasRequiredConstants = 1;
(function (exports) {
const {sep} = require$$0$1;
const {platform} = process;
const os = require$$2$1;
exports.EV_ALL = 'all';
exports.EV_READY = 'ready';
exports.EV_ADD = 'add';
exports.EV_CHANGE = 'change';
exports.EV_ADD_DIR = 'addDir';
exports.EV_UNLINK = 'unlink';
exports.EV_UNLINK_DIR = 'unlinkDir';
exports.EV_RAW = 'raw';
exports.EV_ERROR = 'error';
exports.STR_DATA = 'data';
exports.STR_END = 'end';
exports.STR_CLOSE = 'close';
exports.FSEVENT_CREATED = 'created';
exports.FSEVENT_MODIFIED = 'modified';
exports.FSEVENT_DELETED = 'deleted';
exports.FSEVENT_MOVED = 'moved';
exports.FSEVENT_CLONED = 'cloned';
exports.FSEVENT_UNKNOWN = 'unknown';
exports.FSEVENT_FLAG_MUST_SCAN_SUBDIRS = 1;
exports.FSEVENT_TYPE_FILE = 'file';
exports.FSEVENT_TYPE_DIRECTORY = 'directory';
exports.FSEVENT_TYPE_SYMLINK = 'symlink';
exports.KEY_LISTENERS = 'listeners';
exports.KEY_ERR = 'errHandlers';
exports.KEY_RAW = 'rawEmitters';
exports.HANDLER_KEYS = [exports.KEY_LISTENERS, exports.KEY_ERR, exports.KEY_RAW];
exports.DOT_SLASH = `.${sep}`;
exports.BACK_SLASH_RE = /\\/g;
exports.DOUBLE_SLASH_RE = /\/\//;
exports.SLASH_OR_BACK_SLASH_RE = /[/\\]/;
exports.DOT_RE = /\..*\.(sw[px])$|~$|\.subl.*\.tmp/;
exports.REPLACER_RE = /^\.[/\\]/;
exports.SLASH = '/';
exports.SLASH_SLASH = '//';
exports.BRACE_START = '{';
exports.BANG = '!';
exports.ONE_DOT = '.';
exports.TWO_DOTS = '..';
exports.STAR = '*';
exports.GLOBSTAR = '**';
exports.ROOT_GLOBSTAR = '/**/*';
exports.SLASH_GLOBSTAR = '/**';
exports.DIR_SUFFIX = 'Dir';
exports.ANYMATCH_OPTS = {dot: true};
exports.STRING_TYPE = 'string';
exports.FUNCTION_TYPE = 'function';
exports.EMPTY_STR = '';
exports.EMPTY_FN = () => {};
exports.IDENTITY_FN = val => val;
exports.isWindows = platform === 'win32';
exports.isMacos = platform === 'darwin';
exports.isLinux = platform === 'linux';
exports.isIBMi = os.type() === 'OS400';
} (constants));
return constants;
}
var nodefsHandler;
var hasRequiredNodefsHandler;
function requireNodefsHandler () {
if (hasRequiredNodefsHandler) return nodefsHandler;
hasRequiredNodefsHandler = 1;
const fs = require$$0$2;
const sysPath = require$$0$1;
const { promisify } = require$$2;
const isBinaryPath = /*@__PURE__*/ requireIsBinaryPath();
const {
isWindows,
isLinux,
EMPTY_FN,
EMPTY_STR,
KEY_LISTENERS,
KEY_ERR,
KEY_RAW,
HANDLER_KEYS,
EV_CHANGE,
EV_ADD,
EV_ADD_DIR,
EV_ERROR,
STR_DATA,
STR_END,
BRACE_START,
STAR
} = /*@__PURE__*/ requireConstants();
const THROTTLE_MODE_WATCH = 'watch';
const open = promisify(fs.open);
const stat = promisify(fs.stat);
const lstat = promisify(fs.lstat);
const close = promisify(fs.close);
const fsrealpath = promisify(fs.realpath);
const statMethods = { lstat, stat };
// TODO: emit errors properly. Example: EMFILE on Macos.
const foreach = (val, fn) => {
if (val instanceof Set) {
val.forEach(fn);
} else {
fn(val);
}
};
const addAndConvert = (main, prop, item) => {
let container = main[prop];
if (!(container instanceof Set)) {
main[prop] = container = new Set([container]);
}
container.add(item);
};
const clearItem = cont => key => {
const set = cont[key];
if (set instanceof Set) {
set.clear();
} else {
delete cont[key];
}
};
const delFromSet = (main, prop, item) => {
const container = main[prop];
if (container instanceof Set) {
container.delete(item);
} else if (container === item) {
delete main[prop];
}
};
const isEmptySet = (val) => val instanceof Set ? val.size === 0 : !val;
/**
* @typedef {String} Path
*/
// fs_watch helpers
// object to hold per-process fs_watch instances
// (may be shared across chokidar FSWatcher instances)
/**
* @typedef {Object} FsWatchContainer
* @property {Set} listeners
* @property {Set} errHandlers
* @property {Set} rawEmitters
* @property {fs.FSWatcher=} watcher
* @property {Boolean=} watcherUnusable
*/
/**
* @type {Map<String,FsWatchContainer>}
*/
const FsWatchInstances = new Map();
/**
* Instantiates the fs_watch interface
* @param {String} path to be watched
* @param {Object} options to be passed to fs_watch
* @param {Function} listener main event handler
* @param {Function} errHandler emits info about errors
* @param {Function} emitRaw emits raw event data
* @returns {fs.FSWatcher} new fsevents instance
*/
function createFsWatchInstance(path, options, listener, errHandler, emitRaw) {
const handleEvent = (rawEvent, evPath) => {
listener(path);
emitRaw(rawEvent, evPath, {watchedPath: path});
// emit based on events occurring for files from a directory's watcher in
// case the file's watcher misses it (and rely on throttling to de-dupe)
if (evPath && path !== evPath) {
fsWatchBroadcast(
sysPath.resolve(path, evPath), KEY_LISTENERS, sysPath.join(path, evPath)
);
}
};
try {
return fs.watch(path, options, handleEvent);
} catch (error) {
errHandler(error);
}
}
/**
* Helper for passing fs_watch event data to a collection of listeners
* @param {Path} fullPath absolute path bound to fs_watch instance
* @param {String} type listener type
* @param {*=} val1 arguments to be passed to listeners
* @param {*=} val2
* @param {*=} val3
*/
const fsWatchBroadcast = (fullPath, type, val1, val2, val3) => {
const cont = FsWatchInstances.get(fullPath);
if (!cont) return;
foreach(cont[type], (listener) => {
listener(val1, val2, val3);
});
};
/**
* Instantiates the fs_watch interface or binds listeners
* to an existing one covering the same file system entry
* @param {String} path
* @param {String} fullPath absolute path
* @param {Object} options to be passed to fs_watch
* @param {Object} handlers container for event listener functions
*/
const setFsWatchListener = (path, fullPath, options, handlers) => {
const {listener, errHandler, rawEmitter} = handlers;
let cont = FsWatchInstances.get(fullPath);
/** @type {fs.FSWatcher=} */
let watcher;
if (!options.persistent) {
watcher = createFsWatchInstance(
path, options, listener, errHandler, rawEmitter
);
return watcher.close.bind(watcher);
}
if (cont) {
addAndConvert(cont, KEY_LISTENERS, listener);
addAndConvert(cont, KEY_ERR, errHandler);
addAndConvert(cont, KEY_RAW, rawEmitter);
} else {
watcher = createFsWatchInstance(
path,
options,
fsWatchBroadcast.bind(null, fullPath, KEY_LISTENERS),
errHandler, // no need to use broadcast here
fsWatchBroadcast.bind(null, fullPath, KEY_RAW)
);
if (!watcher) return;
watcher.on(EV_ERROR, async (error) => {
const broadcastErr = fsWatchBroadcast.bind(null, fullPath, KEY_ERR);
cont.watcherUnusable = true; // documented since Node 10.4.1
// Workaround for https://github.com/joyent/node/issues/4337
if (isWindows && error.code === 'EPERM') {
try {
const fd = await open(path, 'r');
await close(fd);
broadcastErr(error);
} catch (err) {}
} else {
broadcastErr(error);
}
});
cont = {
listeners: listener,
errHandlers: errHandler,
rawEmitters: rawEmitter,
watcher
};
FsWatchInstances.set(fullPath, cont);
}
// const index = cont.listeners.indexOf(listener);
// removes this instance's listeners and closes the underlying fs_watch
// instance if there are no more listeners left
return () => {
delFromSet(cont, KEY_LISTENERS, listener);
delFromSet(cont, KEY_ERR, errHandler);
delFromSet(cont, KEY_RAW, rawEmitter);
if (isEmptySet(cont.listeners)) {
// Check to protect against issue gh-730.
// if (cont.watcherUnusable) {
cont.watcher.close();
// }
FsWatchInstances.delete(fullPath);
HANDLER_KEYS.forEach(clearItem(cont));
cont.watcher = undefined;
Object.freeze(cont);
}
};
};
// fs_watchFile helpers
// object to hold per-process fs_watchFile instances
// (may be shared across chokidar FSWatcher instances)
const FsWatchFileInstances = new Map();
/**
* Instantiates the fs_watchFile interface or binds listeners
* to an existing one covering the same file system entry
* @param {String} path to be watched
* @param {String} fullPath absolute path
* @param {Object} options options to be passed to fs_watchFile
* @param {Object} handlers container for event listener functions
* @returns {Function} closer
*/
const setFsWatchFileListener = (path, fullPath, options, handlers) => {
const {listener, rawEmitter} = handlers;
let cont = FsWatchFileInstances.get(fullPath);
const copts = cont && cont.options;
if (copts && (copts.persistent < options.persistent || copts.interval > options.interval)) {
fs.unwatchFile(fullPath);
cont = undefined;
}
/* eslint-enable no-unused-vars, prefer-destructuring */
if (cont) {
addAndConvert(cont, KEY_LISTENERS, listener);
addAndConvert(cont, KEY_RAW, rawEmitter);
} else {
// TODO
// listeners.add(listener);
// rawEmitters.add(rawEmitter);
cont = {
listeners: listener,
rawEmitters: rawEmitter,
options,
watcher: fs.watchFile(fullPath, options, (curr, prev) => {
foreach(cont.rawEmitters, (rawEmitter) => {
rawEmitter(EV_CHANGE, fullPath, {curr, prev});
});
const currmtime = curr.mtimeMs;
if (curr.size !== prev.size || currmtime > prev.mtimeMs || currmtime === 0) {
foreach(cont.listeners, (listener) => listener(path, curr));
}
})
};
FsWatchFileInstances.set(fullPath, cont);
}
// const index = cont.listeners.indexOf(listener);
// Removes this instance's listeners and closes the underlying fs_watchFile
// instance if there are no more listeners left.
return () => {
delFromSet(cont, KEY_LISTENERS, listener);
delFromSet(cont, KEY_RAW, rawEmitter);
if (isEmptySet(cont.listeners)) {
FsWatchFileInstances.delete(fullPath);
fs.unwatchFile(fullPath);
cont.options = cont.watcher = undefined;
Object.freeze(cont);
}
};
};
/**
* @mixin
*/
class NodeFsHandler {
/**
* @param {import("../index").FSWatcher} fsW
*/
constructor(fsW) {
this.fsw = fsW;
this._boundHandleError = (error) => fsW._handleError(error);
}
/**
* Watch file for changes with fs_watchFile or fs_watch.
* @param {String} path to file or dir
* @param {Function} listener on fs change
* @returns {Function} closer for the watcher instance
*/
_watchWithNodeFs(path, listener) {
const opts = this.fsw.options;
const directory = sysPath.dirname(path);
const basename = sysPath.basename(path);
const parent = this.fsw._getWatchedDir(directory);
parent.add(basename);
const absolutePath = sysPath.resolve(path);
const options = {persistent: opts.persistent};
if (!listener) listener = EMPTY_FN;
let closer;
if (opts.usePolling) {
options.interval = opts.enableBinaryInterval && isBinaryPath(basename) ?
opts.binaryInterval : opts.interval;
closer = setFsWatchFileListener(path, absolutePath, options, {
listener,
rawEmitter: this.fsw._emitRaw
});
} else {
closer = setFsWatchListener(path, absolutePath, options, {
listener,
errHandler: this._boundHandleError,
rawEmitter: this.fsw._emitRaw
});
}
return closer;
}
/**
* Watch a file and emit add event if warranted.
* @param {Path} file Path
* @param {fs.Stats} stats result of fs_stat
* @param {Boolean} initialAdd was the file added at watch instantiation?
* @returns {Function} closer for the watcher instance
*/
_handleFile(file, stats, initialAdd) {
if (this.fsw.closed) {
return;
}
const dirname = sysPath.dirname(file);
const basename = sysPath.basename(file);
const parent = this.fsw._getWatchedDir(dirname);
// stats is always present
let prevStats = stats;
// if the file is already being watched, do nothing
if (parent.has(basename)) return;
const listener = async (path, newStats) => {
if (!this.fsw._throttle(THROTTLE_MODE_WATCH, file, 5)) return;
if (!newStats || newStats.mtimeMs === 0) {
try {
const newStats = await stat(file);
if (this.fsw.closed) return;
// Check that change event was not fired because of changed only accessTime.
const at = newStats.atimeMs;
const mt = newStats.mtimeMs;
if (!at || at <= mt || mt !== prevStats.mtimeMs) {
this.fsw._emit(EV_CHANGE, file, newStats);
}
if (isLinux && prevStats.ino !== newStats.ino) {
this.fsw._closeFile(path);
prevStats = newStats;
this.fsw._addPathCloser(path, this._watchWithNodeFs(file, listener));
} else {
prevStats = newStats;
}
} catch (error) {
// Fix issues where mtime is null but file is still present
this.fsw._remove(dirname, basename);
}
// add is about to be emitted if file not already tracked in parent
} else if (parent.has(basename)) {
// Check that change event was not fired because of changed only accessTime.
const at = newStats.atimeMs;
const mt = newStats.mtimeMs;
if (!at || at <= mt || mt !== prevStats.mtimeMs) {
this.fsw._emit(EV_CHANGE, file, newStats);
}
prevStats = newStats;
}
};
// kick off the watcher
const closer = this._watchWithNodeFs(file, listener);
// emit an add event if we're supposed to
if (!(initialAdd && this.fsw.options.ignoreInitial) && this.fsw._isntIgnored(file)) {
if (!this.fsw._throttle(EV_ADD, file, 0)) return;
this.fsw._emit(EV_ADD, file, stats);
}
return closer;
}
/**
* Handle symlinks encountered while reading a dir.
* @param {Object} entry returned by readdirp
* @param {String} directory path of dir being read
* @param {String} path of this item
* @param {String} item basename of this item
* @returns {Promise<Boolean>} true if no more processing is needed for this entry.
*/
async _handleSymlink(entry, directory, path, item) {
if (this.fsw.closed) {
return;
}
const full = entry.fullPath;
const dir = this.fsw._getWatchedDir(directory);
if (!this.fsw.options.followSymlinks) {
// watch symlink directly (don't follow) and detect changes
this.fsw._incrReadyCount();
let linkPath;
try {
linkPath = await fsrealpath(path);
} catch (e) {
this.fsw._emitReady();
return true;
}
if (this.fsw.closed) return;
if (dir.has(item)) {
if (this.fsw._symlinkPaths.get(full) !== linkPath) {
this.fsw._symlinkPaths.set(full, linkPath);
this.fsw._emit(EV_CHANGE, path, entry.stats);
}
} else {
dir.add(item);
this.fsw._symlinkPaths.set(full, linkPath);
this.fsw._emit(EV_ADD, path, entry.stats);
}
this.fsw._emitReady();
return true;
}
// don't follow the same symlink more than once
if (this.fsw._symlinkPaths.has(full)) {
return true;
}
this.fsw._symlinkPaths.set(full, true);
}
_handleRead(directory, initialAdd, wh, target, dir, depth, throttler) {
// Normalize the directory name on Windows
directory = sysPath.join(directory, EMPTY_STR);
if (!wh.hasGlob) {
throttler = this.fsw._throttle('readdir', directory, 1000);
if (!throttler) return;
}
const previous = this.fsw._getWatchedDir(wh.path);
const current = new Set();
let stream = this.fsw._readdirp(directory, {
fileFilter: entry => wh.filterPath(entry),
directoryFilter: entry => wh.filterDir(entry),
depth: 0
}).on(STR_DATA, async (entry) => {
if (this.fsw.closed) {
stream = undefined;
return;
}
const item = entry.path;
let path = sysPath.join(directory, item);
current.add(item);
if (entry.stats.isSymbolicLink() && await this._handleSymlink(entry, directory, path, item)) {
return;
}
if (this.fsw.closed) {
stream = undefined;
return;
}
// Files that present in current directory snapshot
// but absent in previous are added to watch list and
// emit `add` event.
if (item === target || !target && !previous.has(item)) {
this.fsw._incrReadyCount();
// ensure relativeness of path is preserved in case of watcher reuse
path = sysPath.join(dir, sysPath.relative(dir, path));
this._addToNodeFs(path, initialAdd, wh, depth + 1);
}
}).on(EV_ERROR, this._boundHandleError);
return new Promise(resolve =>
stream.once(STR_END, () => {
if (this.fsw.closed) {
stream = undefined;
return;
}
const wasThrottled = throttler ? throttler.clear() : false;
resolve();
// Files that absent in current directory snapshot
// but present in previous emit `remove` event
// and are removed from @watched[directory].
previous.getChildren().filter((item) => {
return item !== directory &&
!current.has(item) &&
// in case of intersecting globs;
// a path may have been filtered out of this readdir, but
// shouldn't be removed because it matches a different glob
(!wh.hasGlob || wh.filterPath({
fullPath: sysPath.resolve(directory, item)
}));
}).forEach((item) => {
this.fsw._remove(directory, item);
});
stream = undefined;
// one more time for any missed in case changes came in extremely quickly
if (wasThrottled) this._handleRead(directory, false, wh, target, dir, depth, throttler);
})
);
}
/**
* Read directory to add / remove files from `@watched` list and re-read it on change.
* @param {String} dir fs path
* @param {fs.Stats} stats
* @param {Boolean} initialAdd
* @param {Number} depth relative to user-supplied path
* @param {String} target child path targeted for watch
* @param {Object} wh Common watch helpers for this path
* @param {String} realpath
* @returns {Promise<Function>} closer for the watcher instance.
*/
async _handleDir(dir, stats, initialAdd, depth, target, wh, realpath) {
const parentDir = this.fsw._getWatchedDir(sysPath.dirname(dir));
const tracked = parentDir.has(sysPath.basename(dir));
if (!(initialAdd && this.fsw.options.ignoreInitial) && !target && !tracked) {
if (!wh.hasGlob || wh.globFilter(dir)) this.fsw._emit(EV_ADD_DIR, dir, stats);
}
// ensure dir is tracked (harmless if redundant)
parentDir.add(sysPath.basename(dir));
this.fsw._getWatchedDir(dir);
let throttler;
let closer;
const oDepth = this.fsw.options.depth;
if ((oDepth == null || depth <= oDepth) && !this.fsw._symlinkPaths.has(realpath)) {
if (!target) {
await this._handleRead(dir, initialAdd, wh, target, dir, depth, throttler);
if (this.fsw.closed) return;
}
closer = this._watchWithNodeFs(dir, (dirPath, stats) => {
// if current directory is removed, do nothing
if (stats && stats.mtimeMs === 0) return;
this._handleRead(dirPath, false, wh, target, dir, depth, throttler);
});
}
return closer;
}
/**
* Handle added file, directory, or glob pattern.
* Delegates call to _handleFile / _handleDir after checks.
* @param {String} path to file or ir
* @param {Boolean} initialAdd was the file added at watch instantiation?
* @param {Object} priorWh depth relative to user-supplied path
* @param {Number} depth Child path actually targeted for watch
* @param {String=} target Child path actually targeted for watch
* @returns {Promise}
*/
async _addToNodeFs(path, initialAdd, priorWh, depth, target) {
const ready = this.fsw._emitReady;
if (this.fsw._isIgnored(path) || this.fsw.closed) {
ready();
return false;
}
const wh = this.fsw._getWatchHelpers(path, depth);
if (!wh.hasGlob && priorWh) {
wh.hasGlob = priorWh.hasGlob;
wh.globFilter = priorWh.globFilter;
wh.filterPath = entry => priorWh.filterPath(entry);
wh.filterDir = entry => priorWh.filterDir(entry);
}
// evaluate what is at the path we're being asked to watch
try {
const stats = await statMethods[wh.statMethod](wh.watchPath);
if (this.fsw.closed) return;
if (this.fsw._isIgnored(wh.watchPath, stats)) {
ready();
return false;
}
const follow = this.fsw.options.followSymlinks && !path.includes(STAR) && !path.includes(BRACE_START);
let closer;
if (stats.isDirectory()) {
const absPath = sysPath.resolve(path);
const targetPath = follow ? await fsrealpath(path) : path;
if (this.fsw.closed) return;
closer = await this._handleDir(wh.watchPath, stats, initialAdd, depth, target, wh, targetPath);
if (this.fsw.closed) return;
// preserve this symlink's target path
if (absPath !== targetPath && targetPath !== undefined) {
this.fsw._symlinkPaths.set(absPath, targetPath);
}
} else if (stats.isSymbolicLink()) {
const targetPath = follow ? await fsrealpath(path) : path;
if (this.fsw.closed) return;
const parent = sysPath.dirname(wh.watchPath);
this.fsw._getWatchedDir(parent).add(wh.watchPath);
this.fsw._emit(EV_ADD, wh.watchPath, stats);
closer = await this._handleDir(parent, stats, initialAdd, depth, path, wh, targetPath);
if (this.fsw.closed) return;
// preserve this symlink's target path
if (targetPath !== undefined) {
this.fsw._symlinkPaths.set(sysPath.resolve(path), targetPath);
}
} else {
closer = this._handleFile(wh.watchPath, stats, initialAdd);
}
ready();
this.fsw._addPathCloser(path, closer);
return false;
} catch (error) {
if (this.fsw._handleError(error)) {
ready();
return path;
}
}
}
}
nodefsHandler = NodeFsHandler;
return nodefsHandler;
}
var fseventsHandler = {exports: {}};
const require$$3 = /*@__PURE__*/getAugmentedNamespace(fseventsImporter);
var hasRequiredFseventsHandler;
function requireFseventsHandler () {
if (hasRequiredFseventsHandler) return fseventsHandler.exports;
hasRequiredFseventsHandler = 1;
const fs = require$$0$2;
const sysPath = require$$0$1;
const { promisify } = require$$2;
let fsevents;
try {
fsevents = require$$3.getFsEvents();
} catch (error) {
if (process.env.CHOKIDAR_PRINT_FSEVENTS_REQUIRE_ERROR) console.error(error);
}
if (fsevents) {
// TODO: real check
const mtch = process.version.match(/v(\d+)\.(\d+)/);
if (mtch && mtch[1] && mtch[2]) {
const maj = Number.parseInt(mtch[1], 10);
const min = Number.parseInt(mtch[2], 10);
if (maj === 8 && min < 16) {
fsevents = undefined;
}
}
}
const {
EV_ADD,
EV_CHANGE,
EV_ADD_DIR,
EV_UNLINK,
EV_ERROR,
STR_DATA,
STR_END,
FSEVENT_CREATED,
FSEVENT_MODIFIED,
FSEVENT_DELETED,
FSEVENT_MOVED,
// FSEVENT_CLONED,
FSEVENT_UNKNOWN,
FSEVENT_FLAG_MUST_SCAN_SUBDIRS,
FSEVENT_TYPE_FILE,
FSEVENT_TYPE_DIRECTORY,
FSEVENT_TYPE_SYMLINK,
ROOT_GLOBSTAR,
DIR_SUFFIX,
DOT_SLASH,
FUNCTION_TYPE,
EMPTY_FN,
IDENTITY_FN
} = /*@__PURE__*/ requireConstants();
const Depth = (value) => isNaN(value) ? {} : {depth: value};
const stat = promisify(fs.stat);
const lstat = promisify(fs.lstat);
const realpath = promisify(fs.realpath);
const statMethods = { stat, lstat };
/**
* @typedef {String} Path
*/
/**
* @typedef {Object} FsEventsWatchContainer
* @property {Set<Function>} listeners
* @property {Function} rawEmitter
* @property {{stop: Function}} watcher
*/
// fsevents instance helper functions
/**
* Object to hold per-process fsevents instances (may be shared across chokidar FSWatcher instances)
* @type {Map<Path,FsEventsWatchContainer>}
*/
const FSEventsWatchers = new Map();
// Threshold of duplicate path prefixes at which to start
// consolidating going forward
const consolidateThreshhold = 10;
const wrongEventFlags = new Set([
69888, 70400, 71424, 72704, 73472, 131328, 131840, 262912
]);
/**
* Instantiates the fsevents interface
* @param {Path} path path to be watched
* @param {Function} callback called when fsevents is bound and ready
* @returns {{stop: Function}} new fsevents instance
*/
const createFSEventsInstance = (path, callback) => {
const stop = fsevents.watch(path, callback);
return {stop};
};
/**
* Instantiates the fsevents interface or binds listeners to an existing one covering
* the same file tree.
* @param {Path} path - to be watched
* @param {Path} realPath - real path for symlinks
* @param {Function} listener - called when fsevents emits events
* @param {Function} rawEmitter - passes data to listeners of the 'raw' event
* @returns {Function} closer
*/
function setFSEventsListener(path, realPath, listener, rawEmitter) {
let watchPath = sysPath.extname(realPath) ? sysPath.dirname(realPath) : realPath;
const parentPath = sysPath.dirname(watchPath);
let cont = FSEventsWatchers.get(watchPath);
// If we've accumulated a substantial number of paths that
// could have been consolidated by watching one directory
// above the current one, create a watcher on the parent
// path instead, so that we do consolidate going forward.
if (couldConsolidate(parentPath)) {
watchPath = parentPath;
}
const resolvedPath = sysPath.resolve(path);
const hasSymlink = resolvedPath !== realPath;
const filteredListener = (fullPath, flags, info) => {
if (hasSymlink) fullPath = fullPath.replace(realPath, resolvedPath);
if (
fullPath === resolvedPath ||
!fullPath.indexOf(resolvedPath + sysPath.sep)
) listener(fullPath, flags, info);
};
// check if there is already a watcher on a parent path
// modifies `watchPath` to the parent path when it finds a match
let watchedParent = false;
for (const watchedPath of FSEventsWatchers.keys()) {
if (realPath.indexOf(sysPath.resolve(watchedPath) + sysPath.sep) === 0) {
watchPath = watchedPath;
cont = FSEventsWatchers.get(watchPath);
watchedParent = true;
break;
}
}
if (cont || watchedParent) {
cont.listeners.add(filteredListener);
} else {
cont = {
listeners: new Set([filteredListener]),
rawEmitter,
watcher: createFSEventsInstance(watchPath, (fullPath, flags) => {
if (!cont.listeners.size) return;
if (flags & FSEVENT_FLAG_MUST_SCAN_SUBDIRS) return;
const info = fsevents.getInfo(fullPath, flags);
cont.listeners.forEach(list => {
list(fullPath, flags, info);
});
cont.rawEmitter(info.event, fullPath, info);
})
};
FSEventsWatchers.set(watchPath, cont);
}
// removes this instance's listeners and closes the underlying fsevents
// instance if there are no more listeners left
return () => {
const lst = cont.listeners;
lst.delete(filteredListener);
if (!lst.size) {
FSEventsWatchers.delete(watchPath);
if (cont.watcher) return cont.watcher.stop().then(() => {
cont.rawEmitter = cont.watcher = undefined;
Object.freeze(cont);
});
}
};
}
// Decide whether or not we should start a new higher-level
// parent watcher
const couldConsolidate = (path) => {
let count = 0;
for (const watchPath of FSEventsWatchers.keys()) {
if (watchPath.indexOf(path) === 0) {
count++;
if (count >= consolidateThreshhold) {
return true;
}
}
}
return false;
};
// returns boolean indicating whether fsevents can be used
const canUse = () => fsevents && FSEventsWatchers.size < 128;
// determines subdirectory traversal levels from root to path
const calcDepth = (path, root) => {
let i = 0;
while (!path.indexOf(root) && (path = sysPath.dirname(path)) !== root) i++;
return i;
};
// returns boolean indicating whether the fsevents' event info has the same type
// as the one returned by fs.stat
const sameTypes = (info, stats) => (
info.type === FSEVENT_TYPE_DIRECTORY && stats.isDirectory() ||
info.type === FSEVENT_TYPE_SYMLINK && stats.isSymbolicLink() ||
info.type === FSEVENT_TYPE_FILE && stats.isFile()
);
/**
* @mixin
*/
class FsEventsHandler {
/**
* @param {import('../index').FSWatcher} fsw
*/
constructor(fsw) {
this.fsw = fsw;
}
checkIgnored(path, stats) {
const ipaths = this.fsw._ignoredPaths;
if (this.fsw._isIgnored(path, stats)) {
ipaths.add(path);
if (stats && stats.isDirectory()) {
ipaths.add(path + ROOT_GLOBSTAR);
}
return true;
}
ipaths.delete(path);
ipaths.delete(path + ROOT_GLOBSTAR);
}
addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts) {
const event = watchedDir.has(item) ? EV_CHANGE : EV_ADD;
this.handleEvent(event, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
async checkExists(path, fullPath, realPath, parent, watchedDir, item, info, opts) {
try {
const stats = await stat(path);
if (this.fsw.closed) return;
if (sameTypes(info, stats)) {
this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
} else {
this.handleEvent(EV_UNLINK, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
} catch (error) {
if (error.code === 'EACCES') {
this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
} else {
this.handleEvent(EV_UNLINK, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
}
}
handleEvent(event, path, fullPath, realPath, parent, watchedDir, item, info, opts) {
if (this.fsw.closed || this.checkIgnored(path)) return;
if (event === EV_UNLINK) {
const isDirectory = info.type === FSEVENT_TYPE_DIRECTORY;
// suppress unlink events on never before seen files
if (isDirectory || watchedDir.has(item)) {
this.fsw._remove(parent, item, isDirectory);
}
} else {
if (event === EV_ADD) {
// track new directories
if (info.type === FSEVENT_TYPE_DIRECTORY) this.fsw._getWatchedDir(path);
if (info.type === FSEVENT_TYPE_SYMLINK && opts.followSymlinks) {
// push symlinks back to the top of the stack to get handled
const curDepth = opts.depth === undefined ?
undefined : calcDepth(fullPath, realPath) + 1;
return this._addToFsEvents(path, false, true, curDepth);
}
// track new paths
// (other than symlinks being followed, which will be tracked soon)
this.fsw._getWatchedDir(parent).add(item);
}
/**
* @type {'add'|'addDir'|'unlink'|'unlinkDir'}
*/
const eventName = info.type === FSEVENT_TYPE_DIRECTORY ? event + DIR_SUFFIX : event;
this.fsw._emit(eventName, path);
if (eventName === EV_ADD_DIR) this._addToFsEvents(path, false, true);
}
}
/**
* Handle symlinks encountered during directory scan
* @param {String} watchPath - file/dir path to be watched with fsevents
* @param {String} realPath - real path (in case of symlinks)
* @param {Function} transform - path transformer
* @param {Function} globFilter - path filter in case a glob pattern was provided
* @returns {Function} closer for the watcher instance
*/
_watchWithFsEvents(watchPath, realPath, transform, globFilter) {
if (this.fsw.closed || this.fsw._isIgnored(watchPath)) return;
const opts = this.fsw.options;
const watchCallback = async (fullPath, flags, info) => {
if (this.fsw.closed) return;
if (
opts.depth !== undefined &&
calcDepth(fullPath, realPath) > opts.depth
) return;
const path = transform(sysPath.join(
watchPath, sysPath.relative(watchPath, fullPath)
));
if (globFilter && !globFilter(path)) return;
// ensure directories are tracked
const parent = sysPath.dirname(path);
const item = sysPath.basename(path);
const watchedDir = this.fsw._getWatchedDir(
info.type === FSEVENT_TYPE_DIRECTORY ? path : parent
);
// correct for wrong events emitted
if (wrongEventFlags.has(flags) || info.event === FSEVENT_UNKNOWN) {
if (typeof opts.ignored === FUNCTION_TYPE) {
let stats;
try {
stats = await stat(path);
} catch (error) {}
if (this.fsw.closed) return;
if (this.checkIgnored(path, stats)) return;
if (sameTypes(info, stats)) {
this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
} else {
this.handleEvent(EV_UNLINK, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
} else {
this.checkExists(path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
} else {
switch (info.event) {
case FSEVENT_CREATED:
case FSEVENT_MODIFIED:
return this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
case FSEVENT_DELETED:
case FSEVENT_MOVED:
return this.checkExists(path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
}
};
const closer = setFSEventsListener(
watchPath,
realPath,
watchCallback,
this.fsw._emitRaw
);
this.fsw._emitReady();
return closer;
}
/**
* Handle symlinks encountered during directory scan
* @param {String} linkPath path to symlink
* @param {String} fullPath absolute path to the symlink
* @param {Function} transform pre-existing path transformer
* @param {Number} curDepth level of subdirectories traversed to where symlink is
* @returns {Promise<void>}
*/
async _handleFsEventsSymlink(linkPath, fullPath, transform, curDepth) {
// don't follow the same symlink more than once
if (this.fsw.closed || this.fsw._symlinkPaths.has(fullPath)) return;
this.fsw._symlinkPaths.set(fullPath, true);
this.fsw._incrReadyCount();
try {
const linkTarget = await realpath(linkPath);
if (this.fsw.closed) return;
if (this.fsw._isIgnored(linkTarget)) {
return this.fsw._emitReady();
}
this.fsw._incrReadyCount();
// add the linkTarget for watching with a wrapper for transform
// that causes emitted paths to incorporate the link's path
this._addToFsEvents(linkTarget || linkPath, (path) => {
let aliasedPath = linkPath;
if (linkTarget && linkTarget !== DOT_SLASH) {
aliasedPath = path.replace(linkTarget, linkPath);
} else if (path !== DOT_SLASH) {
aliasedPath = sysPath.join(linkPath, path);
}
return transform(aliasedPath);
}, false, curDepth);
} catch(error) {
if (this.fsw._handleError(error)) {
return this.fsw._emitReady();
}
}
}
/**
*
* @param {Path} newPath
* @param {fs.Stats} stats
*/
emitAdd(newPath, stats, processPath, opts, forceAdd) {
const pp = processPath(newPath);
const isDir = stats.isDirectory();
const dirObj = this.fsw._getWatchedDir(sysPath.dirname(pp));
const base = sysPath.basename(pp);
// ensure empty dirs get tracked
if (isDir) this.fsw._getWatchedDir(pp);
if (dirObj.has(base)) return;
dirObj.add(base);
if (!opts.ignoreInitial || forceAdd === true) {
this.fsw._emit(isDir ? EV_ADD_DIR : EV_ADD, pp, stats);
}
}
initWatch(realPath, path, wh, processPath) {
if (this.fsw.closed) return;
const closer = this._watchWithFsEvents(
wh.watchPath,
sysPath.resolve(realPath || wh.watchPath),
processPath,
wh.globFilter
);
this.fsw._addPathCloser(path, closer);
}
/**
* Handle added path with fsevents
* @param {String} path file/dir path or glob pattern
* @param {Function|Boolean=} transform converts working path to what the user expects
* @param {Boolean=} forceAdd ensure add is emitted
* @param {Number=} priorDepth Level of subdirectories already traversed.
* @returns {Promise<void>}
*/
async _addToFsEvents(path, transform, forceAdd, priorDepth) {
if (this.fsw.closed) {
return;
}
const opts = this.fsw.options;
const processPath = typeof transform === FUNCTION_TYPE ? transform : IDENTITY_FN;
const wh = this.fsw._getWatchHelpers(path);
// evaluate what is at the path we're being asked to watch
try {
const stats = await statMethods[wh.statMethod](wh.watchPath);
if (this.fsw.closed) return;
if (this.fsw._isIgnored(wh.watchPath, stats)) {
throw null;
}
if (stats.isDirectory()) {
// emit addDir unless this is a glob parent
if (!wh.globFilter) this.emitAdd(processPath(path), stats, processPath, opts, forceAdd);
// don't recurse further if it would exceed depth setting
if (priorDepth && priorDepth > opts.depth) return;
// scan the contents of the dir
this.fsw._readdirp(wh.watchPath, {
fileFilter: entry => wh.filterPath(entry),
directoryFilter: entry => wh.filterDir(entry),
...Depth(opts.depth - (priorDepth || 0))
}).on(STR_DATA, (entry) => {
// need to check filterPath on dirs b/c filterDir is less restrictive
if (this.fsw.closed) {
return;
}
if (entry.stats.isDirectory() && !wh.filterPath(entry)) return;
const joinedPath = sysPath.join(wh.watchPath, entry.path);
const {fullPath} = entry;
if (wh.followSymlinks && entry.stats.isSymbolicLink()) {
// preserve the current depth here since it can't be derived from
// real paths past the symlink
const curDepth = opts.depth === undefined ?
undefined : calcDepth(joinedPath, sysPath.resolve(wh.watchPath)) + 1;
this._handleFsEventsSymlink(joinedPath, fullPath, processPath, curDepth);
} else {
this.emitAdd(joinedPath, entry.stats, processPath, opts, forceAdd);
}
}).on(EV_ERROR, EMPTY_FN).on(STR_END, () => {
this.fsw._emitReady();
});
} else {
this.emitAdd(wh.watchPath, stats, processPath, opts, forceAdd);
this.fsw._emitReady();
}
} catch (error) {
if (!error || this.fsw._handleError(error)) {
// TODO: Strange thing: "should not choke on an ignored watch path" will be failed without 2 ready calls -__-
this.fsw._emitReady();
this.fsw._emitReady();
}
}
if (opts.persistent && forceAdd !== true) {
if (typeof transform === FUNCTION_TYPE) {
// realpath has already been resolved
this.initWatch(undefined, path, wh, processPath);
} else {
let realPath;
try {
realPath = await realpath(wh.watchPath);
} catch (e) {}
this.initWatch(realPath, path, wh, processPath);
}
}
}
}
fseventsHandler.exports = FsEventsHandler;
fseventsHandler.exports.canUse = canUse;
return fseventsHandler.exports;
}
var hasRequiredChokidar;
function requireChokidar () {
if (hasRequiredChokidar) return chokidar$1;
hasRequiredChokidar = 1;
const { EventEmitter } = require$$0$3;
const fs = require$$0$2;
const sysPath = require$$0$1;
const { promisify } = require$$2;
const readdirp = /*@__PURE__*/ requireReaddirp();
const anymatch = /*@__PURE__*/ requireAnymatch().default;
const globParent = /*@__PURE__*/ requireGlobParent();
const isGlob = /*@__PURE__*/ requireIsGlob();
const braces = /*@__PURE__*/ requireBraces();
const normalizePath = /*@__PURE__*/ requireNormalizePath();
const NodeFsHandler = /*@__PURE__*/ requireNodefsHandler();
const FsEventsHandler = /*@__PURE__*/ requireFseventsHandler();
const {
EV_ALL,
EV_READY,
EV_ADD,
EV_CHANGE,
EV_UNLINK,
EV_ADD_DIR,
EV_UNLINK_DIR,
EV_RAW,
EV_ERROR,
STR_CLOSE,
STR_END,
BACK_SLASH_RE,
DOUBLE_SLASH_RE,
SLASH_OR_BACK_SLASH_RE,
DOT_RE,
REPLACER_RE,
SLASH,
SLASH_SLASH,
BRACE_START,
BANG,
ONE_DOT,
TWO_DOTS,
GLOBSTAR,
SLASH_GLOBSTAR,
ANYMATCH_OPTS,
STRING_TYPE,
FUNCTION_TYPE,
EMPTY_STR,
EMPTY_FN,
isWindows,
isMacos,
isIBMi
} = /*@__PURE__*/ requireConstants();
const stat = promisify(fs.stat);
const readdir = promisify(fs.readdir);
/**
* @typedef {String} Path
* @typedef {'all'|'add'|'addDir'|'change'|'unlink'|'unlinkDir'|'raw'|'error'|'ready'} EventName
* @typedef {'readdir'|'watch'|'add'|'remove'|'change'} ThrottleType
*/
/**
*
* @typedef {Object} WatchHelpers
* @property {Boolean} followSymlinks
* @property {'stat'|'lstat'} statMethod
* @property {Path} path
* @property {Path} watchPath
* @property {Function} entryPath
* @property {Boolean} hasGlob
* @property {Object} globFilter
* @property {Function} filterPath
* @property {Function} filterDir
*/
const arrify = (value = []) => Array.isArray(value) ? value : [value];
const flatten = (list, result = []) => {
list.forEach(item => {
if (Array.isArray(item)) {
flatten(item, result);
} else {
result.push(item);
}
});
return result;
};
const unifyPaths = (paths_) => {
/**
* @type {Array<String>}
*/
const paths = flatten(arrify(paths_));
if (!paths.every(p => typeof p === STRING_TYPE)) {
throw new TypeError(`Non-string provided as watch path: ${paths}`);
}
return paths.map(normalizePathToUnix);
};
// If SLASH_SLASH occurs at the beginning of path, it is not replaced
// because "//StoragePC/DrivePool/Movies" is a valid network path
const toUnix = (string) => {
let str = string.replace(BACK_SLASH_RE, SLASH);
let prepend = false;
if (str.startsWith(SLASH_SLASH)) {
prepend = true;
}
while (str.match(DOUBLE_SLASH_RE)) {
str = str.replace(DOUBLE_SLASH_RE, SLASH);
}
if (prepend) {
str = SLASH + str;
}
return str;
};
// Our version of upath.normalize
// TODO: this is not equal to path-normalize module - investigate why
const normalizePathToUnix = (path) => toUnix(sysPath.normalize(toUnix(path)));
const normalizeIgnored = (cwd = EMPTY_STR) => (path) => {
if (typeof path !== STRING_TYPE) return path;
return normalizePathToUnix(sysPath.isAbsolute(path) ? path : sysPath.join(cwd, path));
};
const getAbsolutePath = (path, cwd) => {
if (sysPath.isAbsolute(path)) {
return path;
}
if (path.startsWith(BANG)) {
return BANG + sysPath.join(cwd, path.slice(1));
}
return sysPath.join(cwd, path);
};
const undef = (opts, key) => opts[key] === undefined;
/**
* Directory entry.
* @property {Path} path
* @property {Set<Path>} items
*/
class DirEntry {
/**
* @param {Path} dir
* @param {Function} removeWatcher
*/
constructor(dir, removeWatcher) {
this.path = dir;
this._removeWatcher = removeWatcher;
/** @type {Set<Path>} */
this.items = new Set();
}
add(item) {
const {items} = this;
if (!items) return;
if (item !== ONE_DOT && item !== TWO_DOTS) items.add(item);
}
async remove(item) {
const {items} = this;
if (!items) return;
items.delete(item);
if (items.size > 0) return;
const dir = this.path;
try {
await readdir(dir);
} catch (err) {
if (this._removeWatcher) {
this._removeWatcher(sysPath.dirname(dir), sysPath.basename(dir));
}
}
}
has(item) {
const {items} = this;
if (!items) return;
return items.has(item);
}
/**
* @returns {Array<String>}
*/
getChildren() {
const {items} = this;
if (!items) return;
return [...items.values()];
}
dispose() {
this.items.clear();
delete this.path;
delete this._removeWatcher;
delete this.items;
Object.freeze(this);
}
}
const STAT_METHOD_F = 'stat';
const STAT_METHOD_L = 'lstat';
class WatchHelper {
constructor(path, watchPath, follow, fsw) {
this.fsw = fsw;
this.path = path = path.replace(REPLACER_RE, EMPTY_STR);
this.watchPath = watchPath;
this.fullWatchPath = sysPath.resolve(watchPath);
this.hasGlob = watchPath !== path;
/** @type {object|boolean} */
if (path === EMPTY_STR) this.hasGlob = false;
this.globSymlink = this.hasGlob && follow ? undefined : false;
this.globFilter = this.hasGlob ? anymatch(path, undefined, ANYMATCH_OPTS) : false;
this.dirParts = this.getDirParts(path);
this.dirParts.forEach((parts) => {
if (parts.length > 1) parts.pop();
});
this.followSymlinks = follow;
this.statMethod = follow ? STAT_METHOD_F : STAT_METHOD_L;
}
checkGlobSymlink(entry) {
// only need to resolve once
// first entry should always have entry.parentDir === EMPTY_STR
if (this.globSymlink === undefined) {
this.globSymlink = entry.fullParentDir === this.fullWatchPath ?
false : {realPath: entry.fullParentDir, linkPath: this.fullWatchPath};
}
if (this.globSymlink) {
return entry.fullPath.replace(this.globSymlink.realPath, this.globSymlink.linkPath);
}
return entry.fullPath;
}
entryPath(entry) {
return sysPath.join(this.watchPath,
sysPath.relative(this.watchPath, this.checkGlobSymlink(entry))
);
}
filterPath(entry) {
const {stats} = entry;
if (stats && stats.isSymbolicLink()) return this.filterDir(entry);
const resolvedPath = this.entryPath(entry);
const matchesGlob = this.hasGlob && typeof this.globFilter === FUNCTION_TYPE ?
this.globFilter(resolvedPath) : true;
return matchesGlob &&
this.fsw._isntIgnored(resolvedPath, stats) &&
this.fsw._hasReadPermissions(stats);
}
getDirParts(path) {
if (!this.hasGlob) return [];
const parts = [];
const expandedPath = path.includes(BRACE_START) ? braces.expand(path) : [path];
expandedPath.forEach((path) => {
parts.push(sysPath.relative(this.watchPath, path).split(SLASH_OR_BACK_SLASH_RE));
});
return parts;
}
filterDir(entry) {
if (this.hasGlob) {
const entryParts = this.getDirParts(this.checkGlobSymlink(entry));
let globstar = false;
this.unmatchedGlob = !this.dirParts.some((parts) => {
return parts.every((part, i) => {
if (part === GLOBSTAR) globstar = true;
return globstar || !entryParts[0][i] || anymatch(part, entryParts[0][i], ANYMATCH_OPTS);
});
});
}
return !this.unmatchedGlob && this.fsw._isntIgnored(this.entryPath(entry), entry.stats);
}
}
/**
* Watches files & directories for changes. Emitted events:
* `add`, `addDir`, `change`, `unlink`, `unlinkDir`, `all`, `error`
*
* new FSWatcher()
* .add(directories)
* .on('add', path => log('File', path, 'was added'))
*/
class FSWatcher extends EventEmitter {
// Not indenting methods for history sake; for now.
constructor(_opts) {
super();
const opts = {};
if (_opts) Object.assign(opts, _opts); // for frozen objects
/** @type {Map<String, DirEntry>} */
this._watched = new Map();
/** @type {Map<String, Array>} */
this._closers = new Map();
/** @type {Set<String>} */
this._ignoredPaths = new Set();
/** @type {Map<ThrottleType, Map>} */
this._throttled = new Map();
/** @type {Map<Path, String|Boolean>} */
this._symlinkPaths = new Map();
this._streams = new Set();
this.closed = false;
// Set up default options.
if (undef(opts, 'persistent')) opts.persistent = true;
if (undef(opts, 'ignoreInitial')) opts.ignoreInitial = false;
if (undef(opts, 'ignorePermissionErrors')) opts.ignorePermissionErrors = false;
if (undef(opts, 'interval')) opts.interval = 100;
if (undef(opts, 'binaryInterval')) opts.binaryInterval = 300;
if (undef(opts, 'disableGlobbing')) opts.disableGlobbing = false;
opts.enableBinaryInterval = opts.binaryInterval !== opts.interval;
// Enable fsevents on OS X when polling isn't explicitly enabled.
if (undef(opts, 'useFsEvents')) opts.useFsEvents = !opts.usePolling;
// If we can't use fsevents, ensure the options reflect it's disabled.
const canUseFsEvents = FsEventsHandler.canUse();
if (!canUseFsEvents) opts.useFsEvents = false;
// Use polling on Mac if not using fsevents.
// Other platforms use non-polling fs_watch.
if (undef(opts, 'usePolling') && !opts.useFsEvents) {
opts.usePolling = isMacos;
}
// Always default to polling on IBM i because fs.watch() is not available on IBM i.
if(isIBMi) {
opts.usePolling = true;
}
// Global override (useful for end-developers that need to force polling for all
// instances of chokidar, regardless of usage/dependency depth)
const envPoll = process.env.CHOKIDAR_USEPOLLING;
if (envPoll !== undefined) {
const envLower = envPoll.toLowerCase();
if (envLower === 'false' || envLower === '0') {
opts.usePolling = false;
} else if (envLower === 'true' || envLower === '1') {
opts.usePolling = true;
} else {
opts.usePolling = !!envLower;
}
}
const envInterval = process.env.CHOKIDAR_INTERVAL;
if (envInterval) {
opts.interval = Number.parseInt(envInterval, 10);
}
// Editor atomic write normalization enabled by default with fs.watch
if (undef(opts, 'atomic')) opts.atomic = !opts.usePolling && !opts.useFsEvents;
if (opts.atomic) this._pendingUnlinks = new Map();
if (undef(opts, 'followSymlinks')) opts.followSymlinks = true;
if (undef(opts, 'awaitWriteFinish')) opts.awaitWriteFinish = false;
if (opts.awaitWriteFinish === true) opts.awaitWriteFinish = {};
const awf = opts.awaitWriteFinish;
if (awf) {
if (!awf.stabilityThreshold) awf.stabilityThreshold = 2000;
if (!awf.pollInterval) awf.pollInterval = 100;
this._pendingWrites = new Map();
}
if (opts.ignored) opts.ignored = arrify(opts.ignored);
let readyCalls = 0;
this._emitReady = () => {
readyCalls++;
if (readyCalls >= this._readyCount) {
this._emitReady = EMPTY_FN;
this._readyEmitted = true;
// use process.nextTick to allow time for listener to be bound
process.nextTick(() => this.emit(EV_READY));
}
};
this._emitRaw = (...args) => this.emit(EV_RAW, ...args);
this._readyEmitted = false;
this.options = opts;
// Initialize with proper watcher.
if (opts.useFsEvents) {
this._fsEventsHandler = new FsEventsHandler(this);
} else {
this._nodeFsHandler = new NodeFsHandler(this);
}
// Youre frozen when your hearts not open.
Object.freeze(opts);
}
// Public methods
/**
* Adds paths to be watched on an existing FSWatcher instance
* @param {Path|Array<Path>} paths_
* @param {String=} _origAdd private; for handling non-existent paths to be watched
* @param {Boolean=} _internal private; indicates a non-user add
* @returns {FSWatcher} for chaining
*/
add(paths_, _origAdd, _internal) {
const {cwd, disableGlobbing} = this.options;
this.closed = false;
let paths = unifyPaths(paths_);
if (cwd) {
paths = paths.map((path) => {
const absPath = getAbsolutePath(path, cwd);
// Check `path` instead of `absPath` because the cwd portion can't be a glob
if (disableGlobbing || !isGlob(path)) {
return absPath;
}
return normalizePath(absPath);
});
}
// set aside negated glob strings
paths = paths.filter((path) => {
if (path.startsWith(BANG)) {
this._ignoredPaths.add(path.slice(1));
return false;
}
// if a path is being added that was previously ignored, stop ignoring it
this._ignoredPaths.delete(path);
this._ignoredPaths.delete(path + SLASH_GLOBSTAR);
// reset the cached userIgnored anymatch fn
// to make ignoredPaths changes effective
this._userIgnored = undefined;
return true;
});
if (this.options.useFsEvents && this._fsEventsHandler) {
if (!this._readyCount) this._readyCount = paths.length;
if (this.options.persistent) this._readyCount += paths.length;
paths.forEach((path) => this._fsEventsHandler._addToFsEvents(path));
} else {
if (!this._readyCount) this._readyCount = 0;
this._readyCount += paths.length;
Promise.all(
paths.map(async path => {
const res = await this._nodeFsHandler._addToNodeFs(path, !_internal, 0, 0, _origAdd);
if (res) this._emitReady();
return res;
})
).then(results => {
if (this.closed) return;
results.filter(item => item).forEach(item => {
this.add(sysPath.dirname(item), sysPath.basename(_origAdd || item));
});
});
}
return this;
}
/**
* Close watchers or start ignoring events from specified paths.
* @param {Path|Array<Path>} paths_ - string or array of strings, file/directory paths and/or globs
* @returns {FSWatcher} for chaining
*/
unwatch(paths_) {
if (this.closed) return this;
const paths = unifyPaths(paths_);
const {cwd} = this.options;
paths.forEach((path) => {
// convert to absolute path unless relative path already matches
if (!sysPath.isAbsolute(path) && !this._closers.has(path)) {
if (cwd) path = sysPath.join(cwd, path);
path = sysPath.resolve(path);
}
this._closePath(path);
this._ignoredPaths.add(path);
if (this._watched.has(path)) {
this._ignoredPaths.add(path + SLASH_GLOBSTAR);
}
// reset the cached userIgnored anymatch fn
// to make ignoredPaths changes effective
this._userIgnored = undefined;
});
return this;
}
/**
* Close watchers and remove all listeners from watched paths.
* @returns {Promise<void>}.
*/
close() {
if (this.closed) return this._closePromise;
this.closed = true;
// Memory management.
this.removeAllListeners();
const closers = [];
this._closers.forEach(closerList => closerList.forEach(closer => {
const promise = closer();
if (promise instanceof Promise) closers.push(promise);
}));
this._streams.forEach(stream => stream.destroy());
this._userIgnored = undefined;
this._readyCount = 0;
this._readyEmitted = false;
this._watched.forEach(dirent => dirent.dispose());
['closers', 'watched', 'streams', 'symlinkPaths', 'throttled'].forEach(key => {
this[`_${key}`].clear();
});
this._closePromise = closers.length ? Promise.all(closers).then(() => undefined) : Promise.resolve();
return this._closePromise;
}
/**
* Expose list of watched paths
* @returns {Object} for chaining
*/
getWatched() {
const watchList = {};
this._watched.forEach((entry, dir) => {
const key = this.options.cwd ? sysPath.relative(this.options.cwd, dir) : dir;
watchList[key || ONE_DOT] = entry.getChildren().sort();
});
return watchList;
}
emitWithAll(event, args) {
this.emit(...args);
if (event !== EV_ERROR) this.emit(EV_ALL, ...args);
}
// Common helpers
// --------------
/**
* Normalize and emit events.
* Calling _emit DOES NOT MEAN emit() would be called!
* @param {EventName} event Type of event
* @param {Path} path File or directory path
* @param {*=} val1 arguments to be passed with event
* @param {*=} val2
* @param {*=} val3
* @returns the error if defined, otherwise the value of the FSWatcher instance's `closed` flag
*/
async _emit(event, path, val1, val2, val3) {
if (this.closed) return;
const opts = this.options;
if (isWindows) path = sysPath.normalize(path);
if (opts.cwd) path = sysPath.relative(opts.cwd, path);
/** @type Array<any> */
const args = [event, path];
if (val3 !== undefined) args.push(val1, val2, val3);
else if (val2 !== undefined) args.push(val1, val2);
else if (val1 !== undefined) args.push(val1);
const awf = opts.awaitWriteFinish;
let pw;
if (awf && (pw = this._pendingWrites.get(path))) {
pw.lastChange = new Date();
return this;
}
if (opts.atomic) {
if (event === EV_UNLINK) {
this._pendingUnlinks.set(path, args);
setTimeout(() => {
this._pendingUnlinks.forEach((entry, path) => {
this.emit(...entry);
this.emit(EV_ALL, ...entry);
this._pendingUnlinks.delete(path);
});
}, typeof opts.atomic === 'number' ? opts.atomic : 100);
return this;
}
if (event === EV_ADD && this._pendingUnlinks.has(path)) {
event = args[0] = EV_CHANGE;
this._pendingUnlinks.delete(path);
}
}
if (awf && (event === EV_ADD || event === EV_CHANGE) && this._readyEmitted) {
const awfEmit = (err, stats) => {
if (err) {
event = args[0] = EV_ERROR;
args[1] = err;
this.emitWithAll(event, args);
} else if (stats) {
// if stats doesn't exist the file must have been deleted
if (args.length > 2) {
args[2] = stats;
} else {
args.push(stats);
}
this.emitWithAll(event, args);
}
};
this._awaitWriteFinish(path, awf.stabilityThreshold, event, awfEmit);
return this;
}
if (event === EV_CHANGE) {
const isThrottled = !this._throttle(EV_CHANGE, path, 50);
if (isThrottled) return this;
}
if (opts.alwaysStat && val1 === undefined &&
(event === EV_ADD || event === EV_ADD_DIR || event === EV_CHANGE)
) {
const fullPath = opts.cwd ? sysPath.join(opts.cwd, path) : path;
let stats;
try {
stats = await stat(fullPath);
} catch (err) {}
// Suppress event when fs_stat fails, to avoid sending undefined 'stat'
if (!stats || this.closed) return;
args.push(stats);
}
this.emitWithAll(event, args);
return this;
}
/**
* Common handler for errors
* @param {Error} error
* @returns {Error|Boolean} The error if defined, otherwise the value of the FSWatcher instance's `closed` flag
*/
_handleError(error) {
const code = error && error.code;
if (error && code !== 'ENOENT' && code !== 'ENOTDIR' &&
(!this.options.ignorePermissionErrors || (code !== 'EPERM' && code !== 'EACCES'))
) {
this.emit(EV_ERROR, error);
}
return error || this.closed;
}
/**
* Helper utility for throttling
* @param {ThrottleType} actionType type being throttled
* @param {Path} path being acted upon
* @param {Number} timeout duration of time to suppress duplicate actions
* @returns {Object|false} tracking object or false if action should be suppressed
*/
_throttle(actionType, path, timeout) {
if (!this._throttled.has(actionType)) {
this._throttled.set(actionType, new Map());
}
/** @type {Map<Path, Object>} */
const action = this._throttled.get(actionType);
/** @type {Object} */
const actionPath = action.get(path);
if (actionPath) {
actionPath.count++;
return false;
}
let timeoutObject;
const clear = () => {
const item = action.get(path);
const count = item ? item.count : 0;
action.delete(path);
clearTimeout(timeoutObject);
if (item) clearTimeout(item.timeoutObject);
return count;
};
timeoutObject = setTimeout(clear, timeout);
const thr = {timeoutObject, clear, count: 0};
action.set(path, thr);
return thr;
}
_incrReadyCount() {
return this._readyCount++;
}
/**
* Awaits write operation to finish.
* Polls a newly created file for size variations. When files size does not change for 'threshold' milliseconds calls callback.
* @param {Path} path being acted upon
* @param {Number} threshold Time in milliseconds a file size must be fixed before acknowledging write OP is finished
* @param {EventName} event
* @param {Function} awfEmit Callback to be called when ready for event to be emitted.
*/
_awaitWriteFinish(path, threshold, event, awfEmit) {
let timeoutHandler;
let fullPath = path;
if (this.options.cwd && !sysPath.isAbsolute(path)) {
fullPath = sysPath.join(this.options.cwd, path);
}
const now = new Date();
const awaitWriteFinish = (prevStat) => {
fs.stat(fullPath, (err, curStat) => {
if (err || !this._pendingWrites.has(path)) {
if (err && err.code !== 'ENOENT') awfEmit(err);
return;
}
const now = Number(new Date());
if (prevStat && curStat.size !== prevStat.size) {
this._pendingWrites.get(path).lastChange = now;
}
const pw = this._pendingWrites.get(path);
const df = now - pw.lastChange;
if (df >= threshold) {
this._pendingWrites.delete(path);
awfEmit(undefined, curStat);
} else {
timeoutHandler = setTimeout(
awaitWriteFinish,
this.options.awaitWriteFinish.pollInterval,
curStat
);
}
});
};
if (!this._pendingWrites.has(path)) {
this._pendingWrites.set(path, {
lastChange: now,
cancelWait: () => {
this._pendingWrites.delete(path);
clearTimeout(timeoutHandler);
return event;
}
});
timeoutHandler = setTimeout(
awaitWriteFinish,
this.options.awaitWriteFinish.pollInterval
);
}
}
_getGlobIgnored() {
return [...this._ignoredPaths.values()];
}
/**
* Determines whether user has asked to ignore this path.
* @param {Path} path filepath or dir
* @param {fs.Stats=} stats result of fs.stat
* @returns {Boolean}
*/
_isIgnored(path, stats) {
if (this.options.atomic && DOT_RE.test(path)) return true;
if (!this._userIgnored) {
const {cwd} = this.options;
const ign = this.options.ignored;
const ignored = ign && ign.map(normalizeIgnored(cwd));
const paths = arrify(ignored)
.filter((path) => typeof path === STRING_TYPE && !isGlob(path))
.map((path) => path + SLASH_GLOBSTAR);
const list = this._getGlobIgnored().map(normalizeIgnored(cwd)).concat(ignored, paths);
this._userIgnored = anymatch(list, undefined, ANYMATCH_OPTS);
}
return this._userIgnored([path, stats]);
}
_isntIgnored(path, stat) {
return !this._isIgnored(path, stat);
}
/**
* Provides a set of common helpers and properties relating to symlink and glob handling.
* @param {Path} path file, directory, or glob pattern being watched
* @param {Number=} depth at any depth > 0, this isn't a glob
* @returns {WatchHelper} object containing helpers for this path
*/
_getWatchHelpers(path, depth) {
const watchPath = depth || this.options.disableGlobbing || !isGlob(path) ? path : globParent(path);
const follow = this.options.followSymlinks;
return new WatchHelper(path, watchPath, follow, this);
}
// Directory helpers
// -----------------
/**
* Provides directory tracking objects
* @param {String} directory path of the directory
* @returns {DirEntry} the directory's tracking object
*/
_getWatchedDir(directory) {
if (!this._boundRemove) this._boundRemove = this._remove.bind(this);
const dir = sysPath.resolve(directory);
if (!this._watched.has(dir)) this._watched.set(dir, new DirEntry(dir, this._boundRemove));
return this._watched.get(dir);
}
// File helpers
// ------------
/**
* Check for read permissions.
* Based on this answer on SO: https://stackoverflow.com/a/11781404/1358405
* @param {fs.Stats} stats - object, result of fs_stat
* @returns {Boolean} indicates whether the file can be read
*/
_hasReadPermissions(stats) {
if (this.options.ignorePermissionErrors) return true;
// stats.mode may be bigint
const md = stats && Number.parseInt(stats.mode, 10);
const st = md & 0o777;
const it = Number.parseInt(st.toString(8)[0], 10);
return Boolean(4 & it);
}
/**
* Handles emitting unlink events for
* files and directories, and via recursion, for
* files and directories within directories that are unlinked
* @param {String} directory within which the following item is located
* @param {String} item base path of item/directory
* @returns {void}
*/
_remove(directory, item, isDirectory) {
// if what is being deleted is a directory, get that directory's paths
// for recursive deleting and cleaning of watched object
// if it is not a directory, nestedDirectoryChildren will be empty array
const path = sysPath.join(directory, item);
const fullPath = sysPath.resolve(path);
isDirectory = isDirectory != null
? isDirectory
: this._watched.has(path) || this._watched.has(fullPath);
// prevent duplicate handling in case of arriving here nearly simultaneously
// via multiple paths (such as _handleFile and _handleDir)
if (!this._throttle('remove', path, 100)) return;
// if the only watched file is removed, watch for its return
if (!isDirectory && !this.options.useFsEvents && this._watched.size === 1) {
this.add(directory, item, true);
}
// This will create a new entry in the watched object in either case
// so we got to do the directory check beforehand
const wp = this._getWatchedDir(path);
const nestedDirectoryChildren = wp.getChildren();
// Recursively remove children directories / files.
nestedDirectoryChildren.forEach(nested => this._remove(path, nested));
// Check if item was on the watched list and remove it
const parent = this._getWatchedDir(directory);
const wasTracked = parent.has(item);
parent.remove(item);
// Fixes issue #1042 -> Relative paths were detected and added as symlinks
// (https://github.com/paulmillr/chokidar/blob/e1753ddbc9571bdc33b4a4af172d52cb6e611c10/lib/nodefs-handler.js#L612),
// but never removed from the map in case the path was deleted.
// This leads to an incorrect state if the path was recreated:
// https://github.com/paulmillr/chokidar/blob/e1753ddbc9571bdc33b4a4af172d52cb6e611c10/lib/nodefs-handler.js#L553
if (this._symlinkPaths.has(fullPath)) {
this._symlinkPaths.delete(fullPath);
}
// If we wait for this file to be fully written, cancel the wait.
let relPath = path;
if (this.options.cwd) relPath = sysPath.relative(this.options.cwd, path);
if (this.options.awaitWriteFinish && this._pendingWrites.has(relPath)) {
const event = this._pendingWrites.get(relPath).cancelWait();
if (event === EV_ADD) return;
}
// The Entry will either be a directory that just got removed
// or a bogus entry to a file, in either case we have to remove it
this._watched.delete(path);
this._watched.delete(fullPath);
const eventName = isDirectory ? EV_UNLINK_DIR : EV_UNLINK;
if (wasTracked && !this._isIgnored(path)) this._emit(eventName, path);
// Avoid conflicts if we later create another file with the same name
if (!this.options.useFsEvents) {
this._closePath(path);
}
}
/**
* Closes all watchers for a path
* @param {Path} path
*/
_closePath(path) {
this._closeFile(path);
const dir = sysPath.dirname(path);
this._getWatchedDir(dir).remove(sysPath.basename(path));
}
/**
* Closes only file-specific watchers
* @param {Path} path
*/
_closeFile(path) {
const closers = this._closers.get(path);
if (!closers) return;
closers.forEach(closer => closer());
this._closers.delete(path);
}
/**
*
* @param {Path} path
* @param {Function} closer
*/
_addPathCloser(path, closer) {
if (!closer) return;
let list = this._closers.get(path);
if (!list) {
list = [];
this._closers.set(path, list);
}
list.push(closer);
}
_readdirp(root, opts) {
if (this.closed) return;
const options = {type: EV_ALL, alwaysStat: true, lstat: true, ...opts};
let stream = readdirp(root, options);
this._streams.add(stream);
stream.once(STR_CLOSE, () => {
stream = undefined;
});
stream.once(STR_END, () => {
if (stream) {
this._streams.delete(stream);
stream = undefined;
}
});
return stream;
}
}
// Export FSWatcher class
chokidar$1.FSWatcher = FSWatcher;
/**
* Instantiates watcher with paths to be tracked.
* @param {String|Array<String>} paths file/directory paths and/or globs
* @param {Object=} options chokidar opts
* @returns an instance of FSWatcher for chaining.
*/
const watch = (paths, options) => {
const watcher = new FSWatcher(options);
watcher.add(paths);
return watcher;
};
chokidar$1.watch = watch;
return chokidar$1;
}
var chokidarExports = /*@__PURE__*/ requireChokidar();
const chokidar = /*@__PURE__*/getDefaultExportFromCjs(chokidarExports);
class FileWatcher {
constructor(task, chokidarOptions) {
this.transformWatchers = new Map();
this.chokidarOptions = chokidarOptions;
this.task = task;
this.watcher = this.createWatcher(null);
}
close() {
this.watcher.close();
for (const watcher of this.transformWatchers.values()) {
watcher.close();
}
}
unwatch(id) {
this.watcher.unwatch(id);
const transformWatcher = this.transformWatchers.get(id);
if (transformWatcher) {
this.transformWatchers.delete(id);
transformWatcher.close();
}
}
watch(id, isTransformDependency) {
if (isTransformDependency) {
const watcher = this.transformWatchers.get(id) ?? this.createWatcher(id);
watcher.add(id);
this.transformWatchers.set(id, watcher);
}
else {
this.watcher.add(id);
}
}
createWatcher(transformWatcherId) {
const task = this.task;
const isLinux = platform() === 'linux';
const isFreeBSD = platform() === 'freebsd';
const isTransformDependency = transformWatcherId !== null;
const handleChange = (id, event) => {
const changedId = transformWatcherId || id;
if (isLinux || isFreeBSD) {
// unwatching and watching fixes an issue with chokidar where on certain systems,
// a file that was unlinked and immediately recreated would create a change event
// but then no longer any further events
watcher.unwatch(changedId);
watcher.add(changedId);
}
task.invalidate(changedId, { event, isTransformDependency });
};
const watcher = chokidar
.watch([], this.chokidarOptions)
.on('add', id => handleChange(id, 'create'))
.on('change', id => handleChange(id, 'update'))
.on('unlink', id => handleChange(id, 'delete'));
return watcher;
}
}
const eventsRewrites = {
create: {
create: 'buggy',
delete: null, //delete file from map
update: 'create'
},
delete: {
create: 'update',
delete: 'buggy',
update: 'buggy'
},
update: {
create: 'buggy',
delete: 'delete',
update: 'update'
}
};
class Watcher {
constructor(optionsList, emitter) {
this.buildDelay = 0;
this.buildTimeout = null;
this.closed = false;
this.invalidatedIds = new Map();
this.rerun = false;
this.running = true;
this.emitter = emitter;
emitter.close = this.close.bind(this);
this.tasks = optionsList.map(options => new Task(this, options));
for (const { watch } of optionsList) {
if (watch && typeof watch.buildDelay === 'number') {
this.buildDelay = Math.max(this.buildDelay, watch.buildDelay);
}
}
process$1.nextTick(() => this.run());
}
async close() {
if (this.closed)
return;
this.closed = true;
if (this.buildTimeout)
clearTimeout(this.buildTimeout);
for (const task of this.tasks) {
task.close();
}
await this.emitter.emit('close');
this.emitter.removeAllListeners();
}
invalidate(file) {
if (file) {
const previousEvent = this.invalidatedIds.get(file.id);
const event = previousEvent ? eventsRewrites[previousEvent][file.event] : file.event;
if (event === 'buggy') {
//TODO: throws or warn? Currently just ignore, uses new event
this.invalidatedIds.set(file.id, file.event);
}
else if (event === null) {
this.invalidatedIds.delete(file.id);
}
else {
this.invalidatedIds.set(file.id, event);
}
}
if (this.running) {
this.rerun = true;
return;
}
if (this.buildTimeout)
clearTimeout(this.buildTimeout);
this.buildTimeout = setTimeout(async () => {
this.buildTimeout = null;
try {
await Promise.all([...this.invalidatedIds].map(([id, event]) => this.emitter.emit('change', id, { event })));
this.invalidatedIds.clear();
await this.emitter.emit('restart');
this.emitter.removeListenersForCurrentRun();
this.run();
}
catch (error) {
this.invalidatedIds.clear();
await this.emitter.emit('event', {
code: 'ERROR',
error,
result: null
});
await this.emitter.emit('event', {
code: 'END'
});
}
}, this.buildDelay);
}
async run() {
this.running = true;
await this.emitter.emit('event', {
code: 'START'
});
for (const task of this.tasks) {
await task.run();
}
this.running = false;
await this.emitter.emit('event', {
code: 'END'
});
if (this.rerun) {
this.rerun = false;
this.invalidate();
}
}
}
class Task {
constructor(watcher, options) {
this.cache = { modules: [] };
this.watchFiles = [];
this.closed = false;
this.invalidated = true;
this.watched = new Set();
this.watcher = watcher;
this.options = options;
this.skipWrite = Boolean(options.watch && options.watch.skipWrite);
this.outputs = this.options.output;
this.outputFiles = this.outputs.map(output => {
if (output.file || output.dir)
return path.resolve(output.file || output.dir);
return undefined;
});
this.watchOptions = this.options.watch || {};
this.filter = createFilter(this.watchOptions.include, this.watchOptions.exclude);
this.fileWatcher = new FileWatcher(this, {
...this.watchOptions.chokidar,
disableGlobbing: true,
ignoreInitial: true
});
}
close() {
this.closed = true;
this.fileWatcher.close();
}
invalidate(id, details) {
this.invalidated = true;
if (details.isTransformDependency) {
for (const module of this.cache.modules) {
if (!module.transformDependencies.includes(id))
continue;
// effective invalidation
module.originalCode = null;
}
}
this.watcher.invalidate({ event: details.event, id });
this.watchOptions.onInvalidate?.(id);
}
async run() {
if (!this.invalidated)
return;
this.invalidated = false;
const options = {
...this.options,
cache: this.cache
};
const start = Date.now();
await this.watcher.emitter.emit('event', {
code: 'BUNDLE_START',
input: this.options.input,
output: this.outputFiles
});
let result = null;
try {
result = await rollupInternal(options, this.watcher.emitter);
if (this.closed) {
return;
}
this.updateWatchedFiles(result);
if (!this.skipWrite) {
await Promise.all(this.outputs.map(output => result.write(output)));
if (this.closed) {
return;
}
this.updateWatchedFiles(result);
}
await this.watcher.emitter.emit('event', {
code: 'BUNDLE_END',
duration: Date.now() - start,
input: this.options.input,
output: this.outputFiles,
result
});
}
catch (error) {
if (!this.closed) {
if (Array.isArray(error.watchFiles)) {
for (const id of error.watchFiles) {
this.watchFile(id);
}
}
if (error.id) {
this.cache.modules = this.cache.modules.filter(module => module.id !== error.id);
}
}
await this.watcher.emitter.emit('event', {
code: 'ERROR',
error,
result
});
}
}
updateWatchedFiles(result) {
const previouslyWatched = this.watched;
this.watched = new Set();
this.watchFiles = result.watchFiles;
this.cache = result.cache;
for (const id of this.watchFiles) {
this.watchFile(id);
}
for (const module of this.cache.modules) {
for (const depId of module.transformDependencies) {
this.watchFile(depId, true);
}
}
for (const id of previouslyWatched) {
if (!this.watched.has(id)) {
this.fileWatcher.unwatch(id);
}
}
}
watchFile(id, isTransformDependency = false) {
if (!this.filter(id))
return;
this.watched.add(id);
if (this.outputFiles.includes(id)) {
throw new Error('Cannot import the generated bundle');
}
// this is necessary to ensure that any 'renamed' files
// continue to be watched following an error
this.fileWatcher.watch(id, isTransformDependency);
}
}
export { Task, Watcher };
+5
View File
@@ -0,0 +1,5 @@
import type { RollupLog } from './rollup';
export type GetLogFilter = typeof getLogFilter;
export function getLogFilter(filters: string[]): (log: RollupLog) => boolean;
+70
View File
@@ -0,0 +1,70 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
const getLogFilter = filters => {
if (filters.length === 0)
return () => true;
const normalizedFilters = filters.map(filter => filter.split('&').map(subFilter => {
const inverted = subFilter[0] === '!';
if (inverted)
subFilter = subFilter.slice(1);
const [key, ...value] = subFilter.split(':');
return { inverted, key: key.split('.'), parts: value.join(':').split('*') };
}));
return (log) => {
nextIntersectedFilter: for (const intersectedFilters of normalizedFilters) {
for (const { inverted, key, parts } of intersectedFilters) {
const isFilterSatisfied = testFilter(log, key, parts);
if (inverted ? isFilterSatisfied : !isFilterSatisfied) {
continue nextIntersectedFilter;
}
}
return true;
}
return false;
};
};
const testFilter = (log, key, parts) => {
let rawValue = log;
for (let index = 0; index < key.length; index++) {
if (!rawValue) {
return false;
}
const part = key[index];
if (!(part in rawValue)) {
return false;
}
rawValue = rawValue[part];
}
let value = typeof rawValue === 'object' ? JSON.stringify(rawValue) : String(rawValue);
if (parts.length === 1) {
return value === parts[0];
}
if (!value.startsWith(parts[0])) {
return false;
}
value = value.slice(parts[0].length);
const lastPartIndex = parts.length - 1;
for (let index = 1; index < lastPartIndex; index++) {
const part = parts[index];
const position = value.indexOf(part);
if (position === -1) {
return false;
}
value = value.slice(position + part.length);
}
return value.endsWith(parts[lastPartIndex]);
};
exports.getLogFilter = getLogFilter;
//# sourceMappingURL=getLogFilter.js.map
+20
View File
@@ -0,0 +1,20 @@
import type { LogHandler, MergedRollupOptions, RollupLog } from './rollup';
export interface BatchWarnings {
add: (warning: RollupLog) => void;
readonly count: number;
flush: () => void;
log: LogHandler;
readonly warningOccurred: boolean;
}
export type LoadConfigFile = typeof loadConfigFile;
export function loadConfigFile(
fileName: string,
commandOptions: any,
watchMode?: boolean
): Promise<{
options: MergedRollupOptions[];
warnings: BatchWarnings;
}>;
+29
View File
@@ -0,0 +1,29 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
require('node:fs/promises');
require('node:path');
require('node:process');
require('node:url');
require('./shared/rollup.js');
require('./shared/parseAst.js');
const loadConfigFile_js = require('./shared/loadConfigFile.js');
require('path');
require('./native.js');
require('node:perf_hooks');
require('./getLogFilter.js');
exports.loadConfigFile = loadConfigFile_js.loadConfigFile;
//# sourceMappingURL=loadConfigFile.js.map
+167
View File
@@ -0,0 +1,167 @@
const { existsSync } = require('node:fs');
const path = require('node:path');
const { platform, arch, report } = require('node:process');
const { spawnSync } = require('node:child_process');
const getReportHeader = () => {
try {
if (platform !== 'win32') {
// Avoid blocking reverse DNS (PTR) lookups on open TCP socket handles.
// See: https://github.com/nodejs/node/issues/55576
const previousExcludeNetwork = report.excludeNetwork;
report.excludeNetwork = true;
const header = report.getReport().header;
report.excludeNetwork = previousExcludeNetwork;
return header;
}
// This is needed because report.getReport() crashes the process on Windows sometimes.
const script =
"const r=require('node:process').report;r.excludeNetwork=true;console.log(JSON.stringify(r.getReport().header));";
const child = spawnSync(process.execPath, ['-p', script], {
encoding: 'utf8',
timeout: 3000,
windowsHide: true
});
if (child.status !== 0) {
return null;
}
// The output from node -p might include a trailing 'undefined' and newline
const stdout = child.stdout?.replace(/undefined\r?\n?$/, '').trim();
if (!stdout) {
return null;
}
return JSON.parse(stdout);
} catch {
return null;
}
};
let reportHeader;
const isMingw32 = () => {
reportHeader ??= getReportHeader();
return reportHeader?.osName?.startsWith('MINGW32_NT') ?? false;
};
const isMusl = () => {
reportHeader ??= getReportHeader();
return reportHeader ? !reportHeader.glibcVersionRuntime : false;
};
const bindingsByPlatformAndArch = {
android: {
arm: { base: 'android-arm-eabi' },
arm64: { base: 'android-arm64' }
},
darwin: {
arm64: { base: 'darwin-arm64' },
x64: { base: 'darwin-x64' }
},
freebsd: {
arm64: { base: 'freebsd-arm64' },
x64: { base: 'freebsd-x64' }
},
linux: {
arm: { base: 'linux-arm-gnueabihf', musl: 'linux-arm-musleabihf' },
arm64: { base: 'linux-arm64-gnu', musl: 'linux-arm64-musl' },
loong64: { base: 'linux-loong64-gnu', musl: 'linux-loong64-musl' },
ppc64: { base: 'linux-ppc64-gnu', musl: 'linux-ppc64-musl' },
riscv64: { base: 'linux-riscv64-gnu', musl: 'linux-riscv64-musl' },
s390x: { base: 'linux-s390x-gnu', musl: null },
x64: { base: 'linux-x64-gnu', musl: 'linux-x64-musl' }
},
openbsd: {
x64: { base: 'openbsd-x64' }
},
openharmony: {
arm64: { base: 'openharmony-arm64' }
},
win32: {
arm64: { base: 'win32-arm64-msvc' },
ia32: { base: 'win32-ia32-msvc' },
x64: {
base: isMingw32() ? 'win32-x64-gnu' : 'win32-x64-msvc'
}
}
};
const msvcLinkFilenameByArch = {
arm64: 'vc_redist.arm64.exe',
ia32: 'vc_redist.x86.exe',
x64: 'vc_redist.x64.exe'
};
const packageBase = getPackageBase();
const localName = `./rollup.${packageBase}.node`;
const requireWithFriendlyError = id => {
try {
return require(id);
} catch (error) {
if (
platform === 'win32' &&
error instanceof Error &&
error.code === 'ERR_DLOPEN_FAILED' &&
error.message.includes('The specified module could not be found')
) {
const msvcDownloadLink = `https://aka.ms/vs/17/release/${msvcLinkFilenameByArch[arch]}`;
throw new Error(
`Failed to load module ${id}. ` +
'Required DLL was not found. ' +
'This error usually happens when Microsoft Visual C++ Redistributable is not installed. ' +
`You can download it from ${msvcDownloadLink}`,
{ cause: error }
);
}
throw new Error(
`Cannot find module ${id}. ` +
`npm has a bug related to optional dependencies (https://github.com/npm/cli/issues/4828). ` +
'Please try `npm i` again after removing both package-lock.json and node_modules directory.',
{ cause: error }
);
}
};
const { parse, parseAsync, xxhashBase64Url, xxhashBase36, xxhashBase16 } = requireWithFriendlyError(
existsSync(path.join(__dirname, localName)) ? localName : `@rollup/rollup-${packageBase}`
);
function getPackageBase() {
const imported = bindingsByPlatformAndArch[platform]?.[arch];
if (!imported) {
throwUnsupportedError(false);
}
if ('musl' in imported && isMusl()) {
return imported.musl || throwUnsupportedError(true);
}
return imported.base;
}
function throwUnsupportedError(isMusl) {
throw new Error(
`Your current platform "${platform}${isMusl ? ' (musl)' : ''}" and architecture "${arch}" combination is not yet supported by the native Rollup build. Please use the WASM build "@rollup/wasm-node" instead.
The following platform-architecture combinations are supported:
${Object.entries(bindingsByPlatformAndArch)
.flatMap(([platformName, architectures]) =>
Object.entries(architectures).flatMap(([architectureName, { musl }]) => {
const name = `${platformName}-${architectureName}`;
return musl ? [name, `${name} (musl)`] : [name];
})
)
.join('\n')}
If this is important to you, please consider supporting Rollup to make a native build for your platform and architecture available.`
);
}
module.exports.parse = parse;
module.exports.parseAsync = parseAsync;
module.exports.xxhashBase64Url = xxhashBase64Url;
module.exports.xxhashBase36 = xxhashBase36;
module.exports.xxhashBase16 = xxhashBase16;
+4
View File
@@ -0,0 +1,4 @@
import type { ParseAst, ParseAstAsync } from './rollup';
export const parseAst: ParseAst;
export const parseAstAsync: ParseAstAsync;
+22
View File
@@ -0,0 +1,22 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
require('./native.js');
const parseAst_js = require('./shared/parseAst.js');
require('node:path');
exports.parseAst = parseAst_js.parseAst;
exports.parseAstAsync = parseAst_js.parseAstAsync;
//# sourceMappingURL=parseAst.js.map
+1225
View File
@@ -0,0 +1,1225 @@
import type * as estree from 'estree';
declare module 'estree' {
export interface Decorator extends estree.BaseNode {
type: 'Decorator';
expression: estree.Expression;
}
interface PropertyDefinition {
decorators: estree.Decorator[];
}
interface MethodDefinition {
decorators: estree.Decorator[];
}
interface BaseClass {
decorators: estree.Decorator[];
}
}
export const VERSION: string;
// utils
type NullValue = null | undefined | void;
type MaybeArray<T> = T | T[];
type MaybePromise<T> = T | Promise<T>;
type PartialNull<T> = {
[P in keyof T]: T[P] | null;
};
export interface RollupError extends RollupLog {
name?: string | undefined;
stack?: string | undefined;
watchFiles?: string[] | undefined;
}
export interface RollupLog {
binding?: string | undefined;
cause?: unknown | undefined;
code?: string | undefined;
exporter?: string | undefined;
frame?: string | undefined;
hook?: string | undefined;
id?: string | undefined;
ids?: string[] | undefined;
loc?: {
column: number;
file?: string | undefined;
line: number;
};
message: string;
meta?: any | undefined;
names?: string[] | undefined;
plugin?: string | undefined;
pluginCode?: unknown | undefined;
pos?: number | undefined;
reexporter?: string | undefined;
stack?: string | undefined;
url?: string | undefined;
}
export type LogLevel = 'warn' | 'info' | 'debug';
export type LogLevelOption = LogLevel | 'silent';
export type SourceMapSegment =
| [number]
| [number, number, number, number]
| [number, number, number, number, number];
export interface ExistingDecodedSourceMap {
file?: string | undefined;
readonly mappings: SourceMapSegment[][];
names: string[];
sourceRoot?: string | undefined;
sources: string[];
sourcesContent?: string[] | undefined;
version: number;
x_google_ignoreList?: number[] | undefined;
}
export interface ExistingRawSourceMap {
file?: string | undefined;
mappings: string;
names: string[];
sourceRoot?: string | undefined;
sources: string[];
sourcesContent?: string[] | undefined;
version: number;
x_google_ignoreList?: number[] | undefined;
}
export type DecodedSourceMapOrMissing =
| {
missing: true;
plugin: string;
}
| (ExistingDecodedSourceMap & { missing?: false | undefined });
export interface SourceMap {
file: string;
mappings: string;
names: string[];
sources: string[];
sourcesContent?: string[] | undefined;
version: number;
debugId?: string | undefined;
toString(): string;
toUrl(): string;
}
export type SourceMapInput = ExistingRawSourceMap | string | null | { mappings: '' };
interface ModuleOptions {
attributes: Record<string, string>;
meta: CustomPluginOptions;
moduleSideEffects: boolean | 'no-treeshake';
syntheticNamedExports: boolean | string;
}
export interface SourceDescription extends Partial<PartialNull<ModuleOptions>> {
ast?: ProgramNode | undefined;
code: string;
map?: SourceMapInput | undefined;
}
export interface TransformModuleJSON {
ast?: ProgramNode | undefined;
code: string;
safeVariableNames: Record<string, string> | null;
// note if plugins use new this.cache to opt-out auto transform cache
customTransformCache: boolean;
originalCode: string;
originalSourcemap: ExistingDecodedSourceMap | null;
sourcemapChain: DecodedSourceMapOrMissing[];
transformDependencies: string[];
}
export interface ModuleJSON extends TransformModuleJSON, ModuleOptions {
safeVariableNames: Record<string, string> | null;
ast: ProgramNode;
dependencies: string[];
id: string;
resolvedIds: ResolvedIdMap;
transformFiles: EmittedFile[] | undefined;
}
export interface PluginCache {
delete(id: string): boolean;
get<T = any>(id: string): T;
has(id: string): boolean;
set<T = any>(id: string, value: T): void;
}
export type LoggingFunction = (log: RollupLog | string | (() => RollupLog | string)) => void;
export interface MinimalPluginContext {
debug: LoggingFunction;
error: (error: RollupError | string) => never;
info: LoggingFunction;
meta: PluginContextMeta;
warn: LoggingFunction;
}
export interface EmittedAsset {
fileName?: string | undefined;
name?: string | undefined;
needsCodeReference?: boolean | undefined;
originalFileName?: string | null | undefined;
source?: string | Uint8Array | undefined;
type: 'asset';
}
export interface EmittedChunk {
fileName?: string | undefined;
id: string;
implicitlyLoadedAfterOneOf?: string[] | undefined;
importer?: string | undefined;
name?: string | undefined;
preserveSignature?: PreserveEntrySignaturesOption | undefined;
type: 'chunk';
}
export interface EmittedPrebuiltChunk {
code: string;
exports?: string[] | undefined;
fileName: string;
map?: SourceMap | undefined;
sourcemapFileName?: string | undefined;
type: 'prebuilt-chunk';
}
export type EmittedFile = EmittedAsset | EmittedChunk | EmittedPrebuiltChunk;
export type EmitFile = (emittedFile: EmittedFile) => string;
export interface ModuleInfo extends ModuleOptions {
ast: ProgramNode | null;
code: string | null;
dynamicImporters: readonly string[];
dynamicallyImportedIdResolutions: readonly ResolvedId[];
dynamicallyImportedIds: readonly string[];
exportedBindings: Record<string, string[]> | null;
exports: string[] | null;
safeVariableNames: Record<string, string> | null;
hasDefaultExport: boolean | null;
id: string;
implicitlyLoadedAfterOneOf: readonly string[];
implicitlyLoadedBefore: readonly string[];
importedIdResolutions: readonly ResolvedId[];
importedIds: readonly string[];
importers: readonly string[];
isEntry: boolean;
isExternal: boolean;
isIncluded: boolean | null;
}
export type GetModuleInfo = (moduleId: string) => ModuleInfo | null;
// eslint-disable-next-line @typescript-eslint/consistent-indexed-object-style -- this is an interface so that it can be extended by plugins
export interface CustomPluginOptions {
[plugin: string]: any;
}
type LoggingFunctionWithPosition = (
log: RollupLog | string | (() => RollupLog | string),
pos?: number | { column: number; line: number }
) => void;
export type ParseAst = (
input: string,
options?: { allowReturnOutsideFunction?: boolean; jsx?: boolean }
) => ProgramNode;
// declare AbortSignal here for environments without DOM lib or @types/node
declare global {
// eslint-disable-next-line @typescript-eslint/no-empty-object-type
interface AbortSignal {}
}
export type ParseAstAsync = (
input: string,
options?: { allowReturnOutsideFunction?: boolean; jsx?: boolean; signal?: AbortSignal }
) => Promise<ProgramNode>;
export interface PluginContext extends MinimalPluginContext {
addWatchFile: (id: string) => void;
cache: PluginCache;
debug: LoggingFunction;
emitFile: EmitFile;
error: (error: RollupError | string) => never;
fs: RollupFsModule;
getFileName: (fileReferenceId: string) => string;
getModuleIds: () => IterableIterator<string>;
getModuleInfo: GetModuleInfo;
getWatchFiles: () => string[];
info: LoggingFunction;
load: (
options: { id: string; resolveDependencies?: boolean } & Partial<PartialNull<ModuleOptions>>
) => Promise<ModuleInfo>;
parse: ParseAst;
resolve: (
source: string,
importer?: string,
options?: {
importerAttributes?: Record<string, string>;
attributes?: Record<string, string>;
custom?: CustomPluginOptions;
isEntry?: boolean;
skipSelf?: boolean;
}
) => Promise<ResolvedId | null>;
setAssetSource: (assetReferenceId: string, source: string | Uint8Array) => void;
warn: LoggingFunction;
}
export interface PluginContextMeta {
rollupVersion: string;
watchMode: boolean;
}
export type StringOrRegExp = string | RegExp;
export type StringFilter<Value = StringOrRegExp> =
| MaybeArray<Value>
| {
include?: MaybeArray<Value> | undefined;
exclude?: MaybeArray<Value> | undefined;
};
export interface HookFilter {
id?: StringFilter | undefined;
code?: StringFilter | undefined;
}
export interface ResolvedId extends ModuleOptions {
external: boolean | 'absolute';
id: string;
resolvedBy: string;
}
export type ResolvedIdMap = Record<string, ResolvedId>;
export interface PartialResolvedId extends Partial<PartialNull<ModuleOptions>> {
external?: boolean | 'absolute' | 'relative' | undefined;
id: string;
resolvedBy?: string | undefined;
}
export type ResolveIdResult = string | NullValue | false | PartialResolvedId;
export type ResolveIdResultWithoutNullValue = string | false | PartialResolvedId;
export type ResolveIdHook = (
this: PluginContext,
source: string,
importer: string | undefined,
options: {
attributes: Record<string, string>;
custom?: CustomPluginOptions;
importerAttributes?: Record<string, string> | undefined;
isEntry: boolean;
}
) => ResolveIdResult;
export type ShouldTransformCachedModuleHook = (
this: PluginContext,
options: {
ast: ProgramNode;
attributes: Record<string, string>;
code: string;
id: string;
meta: CustomPluginOptions;
moduleSideEffects: boolean | 'no-treeshake';
resolvedSources: ResolvedIdMap;
syntheticNamedExports: boolean | string;
}
) => boolean | NullValue;
export type IsExternal = (
source: string,
importer: string | undefined,
isResolved: boolean
) => boolean;
export type HasModuleSideEffects = (id: string, external: boolean) => boolean;
export type LoadResult = SourceDescription | string | NullValue;
export type LoadHook = (
this: PluginContext,
id: string,
// temporarily marked as optional for better Vite type-compatibility
options?:
| {
// unused, temporarily added for better Vite type-compatibility
ssr?: boolean | undefined;
// temporarily marked as optional for better Vite type-compatibility
attributes?: Record<string, string>;
}
| undefined
) => LoadResult;
export interface TransformPluginContext extends PluginContext {
debug: LoggingFunctionWithPosition;
error: (error: RollupError | string, pos?: number | { column: number; line: number }) => never;
getCombinedSourcemap: () => SourceMap;
info: LoggingFunctionWithPosition;
warn: LoggingFunctionWithPosition;
}
export type TransformResult = string | NullValue | Partial<SourceDescription>;
export type TransformHook = (
this: TransformPluginContext,
code: string,
id: string,
// temporarily marked as optional for better Vite type-compatibility
options?:
| {
// unused, temporarily added for better Vite type-compatibility
ssr?: boolean | undefined;
// temporarily marked as optional for better Vite type-compatibility
attributes?: Record<string, string>;
}
| undefined
) => TransformResult;
export type ModuleParsedHook = (this: PluginContext, info: ModuleInfo) => void;
export type RenderChunkHook = (
this: PluginContext,
code: string,
chunk: RenderedChunk,
options: NormalizedOutputOptions,
meta: { chunks: Record<string, RenderedChunk> }
) => { code: string; map?: SourceMapInput } | string | NullValue;
export type ResolveDynamicImportHook = (
this: PluginContext,
specifier: string | AstNode,
importer: string,
options: { attributes: Record<string, string>; importerAttributes: Record<string, string> }
) => ResolveIdResult;
export type ResolveImportMetaHook = (
this: PluginContext,
property: string | null,
options: {
attributes: Record<string, string>;
chunkId: string;
format: InternalModuleFormat;
moduleId: string;
}
) => string | NullValue;
export type ResolveFileUrlHook = (
this: PluginContext,
options: {
attributes: Record<string, string>;
chunkId: string;
fileName: string;
format: InternalModuleFormat;
moduleId: string;
referenceId: string;
relativePath: string;
}
) => string | NullValue;
export type AddonHookFunction = (
this: PluginContext,
chunk: RenderedChunk
) => string | Promise<string>;
export type AddonHook = string | AddonHookFunction;
export type ChangeEvent = 'create' | 'update' | 'delete';
export type WatchChangeHook = (
this: PluginContext,
id: string,
change: { event: ChangeEvent }
) => void;
/**
* use this type for plugin annotation
* @example
* ```ts
* interface Options {
* ...
* }
* const myPlugin: PluginImpl<Options> = (options = {}) => { ... }
* ```
*/
export type PluginImpl<O extends object = object, A = any> = (options?: O) => Plugin<A>;
export type OutputBundle = Record<string, OutputAsset | OutputChunk>;
export type PreRenderedChunkWithFileName = PreRenderedChunk & { fileName: string };
export interface ImportedInternalChunk {
type: 'internal';
fileName: string;
resolvedImportPath: string;
chunk: PreRenderedChunk;
}
export interface ImportedExternalChunk {
type: 'external';
fileName: string;
resolvedImportPath: string;
}
export type DynamicImportTargetChunk = ImportedInternalChunk | ImportedExternalChunk;
export interface FunctionPluginHooks {
augmentChunkHash: (this: PluginContext, chunk: RenderedChunk) => string | void;
buildEnd: (this: PluginContext, error?: Error) => void;
buildStart: (this: PluginContext, options: NormalizedInputOptions) => void;
closeBundle: (this: PluginContext, error?: Error) => void;
closeWatcher: (this: PluginContext) => void;
generateBundle: (
this: PluginContext,
options: NormalizedOutputOptions,
bundle: OutputBundle,
isWrite: boolean
) => void;
load: LoadHook;
moduleParsed: ModuleParsedHook;
onLog: (this: MinimalPluginContext, level: LogLevel, log: RollupLog) => boolean | NullValue;
options: (this: MinimalPluginContext, options: InputOptions) => InputOptions | NullValue;
outputOptions: (this: PluginContext, options: OutputOptions) => OutputOptions | NullValue;
renderChunk: RenderChunkHook;
renderDynamicImport: (
this: PluginContext,
options: {
customResolution: string | null;
format: InternalModuleFormat;
moduleId: string;
targetModuleId: string | null;
chunk: PreRenderedChunkWithFileName;
targetChunk: PreRenderedChunkWithFileName | null;
getTargetChunkImports: () => DynamicImportTargetChunk[] | null;
targetModuleAttributes: Record<string, string>;
}
) => { left: string; right: string } | NullValue;
renderError: (this: PluginContext, error?: Error) => void;
renderStart: (
this: PluginContext,
outputOptions: NormalizedOutputOptions,
inputOptions: NormalizedInputOptions
) => void;
resolveDynamicImport: ResolveDynamicImportHook;
resolveFileUrl: ResolveFileUrlHook;
resolveId: ResolveIdHook;
resolveImportMeta: ResolveImportMetaHook;
shouldTransformCachedModule: ShouldTransformCachedModuleHook;
transform: TransformHook;
watchChange: WatchChangeHook;
writeBundle: (
this: PluginContext,
options: NormalizedOutputOptions,
bundle: OutputBundle
) => void;
}
export type OutputPluginHooks =
| 'augmentChunkHash'
| 'generateBundle'
| 'outputOptions'
| 'renderChunk'
| 'renderDynamicImport'
| 'renderError'
| 'renderStart'
| 'resolveFileUrl'
| 'resolveImportMeta'
| 'writeBundle';
export type InputPluginHooks = Exclude<keyof FunctionPluginHooks, OutputPluginHooks>;
export type SyncPluginHooks =
| 'augmentChunkHash'
| 'onLog'
| 'outputOptions'
| 'renderDynamicImport'
| 'resolveFileUrl'
| 'resolveImportMeta';
export type AsyncPluginHooks = Exclude<keyof FunctionPluginHooks, SyncPluginHooks>;
export type FirstPluginHooks =
| 'load'
| 'renderDynamicImport'
| 'resolveDynamicImport'
| 'resolveFileUrl'
| 'resolveId'
| 'resolveImportMeta'
| 'shouldTransformCachedModule';
export type SequentialPluginHooks =
| 'augmentChunkHash'
| 'generateBundle'
| 'onLog'
| 'options'
| 'outputOptions'
| 'renderChunk'
| 'transform';
export type ParallelPluginHooks = Exclude<
keyof FunctionPluginHooks | AddonHooks,
FirstPluginHooks | SequentialPluginHooks
>;
export type AddonHooks = 'banner' | 'footer' | 'intro' | 'outro';
type MakeAsync<Function_> = Function_ extends (
this: infer This,
...parameters: infer Arguments
) => infer Return
? (this: This, ...parameters: Arguments) => Return | Promise<Return>
: never;
// eslint-disable-next-line @typescript-eslint/no-empty-object-type
export type ObjectHook<T, O = {}> = T | ({ handler: T; order?: 'pre' | 'post' | null } & O);
export type HookFilterExtension<K extends keyof FunctionPluginHooks> = K extends 'transform'
? { filter?: HookFilter | undefined }
: K extends 'load'
? { filter?: Pick<HookFilter, 'id'> | undefined }
: K extends 'resolveId'
? { filter?: { id?: StringFilter<RegExp> | undefined } } | undefined
: // eslint-disable-next-line @typescript-eslint/no-empty-object-type
{};
export type PluginHooks = {
[K in keyof FunctionPluginHooks]: ObjectHook<
K extends AsyncPluginHooks ? MakeAsync<FunctionPluginHooks[K]> : FunctionPluginHooks[K],
// eslint-disable-next-line @typescript-eslint/no-empty-object-type
HookFilterExtension<K> & (K extends ParallelPluginHooks ? { sequential?: boolean } : {})
>;
};
export interface OutputPlugin
extends
Partial<{ [K in OutputPluginHooks]: PluginHooks[K] }>,
Partial<Record<AddonHooks, ObjectHook<AddonHook>>> {
cacheKey?: string | undefined;
name: string;
version?: string | undefined;
}
export interface Plugin<A = any> extends OutputPlugin, Partial<PluginHooks> {
// for inter-plugin communication
api?: A | undefined;
}
export type JsxPreset = 'react' | 'react-jsx' | 'preserve' | 'preserve-react';
export type NormalizedJsxOptions =
| NormalizedJsxPreserveOptions
| NormalizedJsxClassicOptions
| NormalizedJsxAutomaticOptions;
interface NormalizedJsxPreserveOptions {
factory: string | null;
fragment: string | null;
importSource: string | null;
mode: 'preserve';
}
interface NormalizedJsxClassicOptions {
factory: string;
fragment: string;
importSource: string | null;
mode: 'classic';
}
interface NormalizedJsxAutomaticOptions {
factory: string;
importSource: string | null;
jsxImportSource: string;
mode: 'automatic';
}
export type JsxOptions = Partial<NormalizedJsxOptions> & {
preset?: JsxPreset | undefined;
};
export type TreeshakingPreset = 'smallest' | 'safest' | 'recommended';
export interface NormalizedTreeshakingOptions {
annotations: boolean;
correctVarValueBeforeDeclaration: boolean;
manualPureFunctions: readonly string[];
moduleSideEffects: HasModuleSideEffects;
propertyReadSideEffects: boolean | 'always';
tryCatchDeoptimization: boolean;
unknownGlobalSideEffects: boolean;
}
export interface TreeshakingOptions extends Partial<
Omit<NormalizedTreeshakingOptions, 'moduleSideEffects'>
> {
moduleSideEffects?: ModuleSideEffectsOption | undefined;
preset?: TreeshakingPreset | undefined;
}
interface ManualChunkMeta {
getModuleIds: () => IterableIterator<string>;
getModuleInfo: GetModuleInfo;
}
export type GetManualChunk = (id: string, meta: ManualChunkMeta) => string | NullValue;
export type ExternalOption =
| (string | RegExp)[]
| string
| RegExp
| ((source: string, importer: string | undefined, isResolved: boolean) => boolean | NullValue);
export type GlobalsOption = Record<string, string> | ((name: string) => string);
export type InputOption = string | string[] | Record<string, string>;
export type ManualChunksOption = Record<string, string[]> | GetManualChunk;
export type LogHandlerWithDefault = (
level: LogLevel,
log: RollupLog,
defaultHandler: LogOrStringHandler
) => void;
export type LogOrStringHandler = (level: LogLevel | 'error', log: RollupLog | string) => void;
export type LogHandler = (level: LogLevel, log: RollupLog) => void;
export type ModuleSideEffectsOption = boolean | 'no-external' | string[] | HasModuleSideEffects;
export type PreserveEntrySignaturesOption = false | 'strict' | 'allow-extension' | 'exports-only';
export type SourcemapPathTransformOption = (
relativeSourcePath: string,
sourcemapPath: string
) => string;
export type SourcemapIgnoreListOption = (
relativeSourcePath: string,
sourcemapPath: string
) => boolean;
export type InputPluginOption = MaybePromise<Plugin | NullValue | false | InputPluginOption[]>;
export interface InputOptions {
cache?: boolean | RollupCache | undefined;
context?: string | undefined;
experimentalCacheExpiry?: number | undefined;
experimentalLogSideEffects?: boolean | undefined;
external?: ExternalOption | undefined;
fs?: RollupFsModule | undefined;
input?: InputOption | undefined;
jsx?: false | JsxPreset | JsxOptions | undefined;
logLevel?: LogLevelOption | undefined;
makeAbsoluteExternalsRelative?: boolean | 'ifRelativeSource' | undefined;
maxParallelFileOps?: number | undefined;
moduleContext?: ((id: string) => string | NullValue) | Record<string, string> | undefined;
onLog?: LogHandlerWithDefault | undefined;
onwarn?: WarningHandlerWithDefault | undefined;
perf?: boolean | undefined;
plugins?: InputPluginOption | undefined;
preserveEntrySignatures?: PreserveEntrySignaturesOption | undefined;
preserveSymlinks?: boolean | undefined;
shimMissingExports?: boolean | undefined;
strictDeprecations?: boolean | undefined;
treeshake?: boolean | TreeshakingPreset | TreeshakingOptions | undefined;
watch?: WatcherOptions | false | undefined;
}
export interface InputOptionsWithPlugins extends InputOptions {
plugins: Plugin[];
}
export interface NormalizedInputOptions {
cache: false | undefined | RollupCache;
context: string;
experimentalCacheExpiry: number;
experimentalLogSideEffects: boolean;
external: IsExternal;
fs: RollupFsModule;
input: string[] | Record<string, string>;
jsx: false | NormalizedJsxOptions;
logLevel: LogLevelOption;
makeAbsoluteExternalsRelative: boolean | 'ifRelativeSource';
maxParallelFileOps: number;
moduleContext: (id: string) => string;
onLog: LogHandler;
perf: boolean;
plugins: Plugin[];
preserveEntrySignatures: PreserveEntrySignaturesOption;
preserveSymlinks: boolean;
shimMissingExports: boolean;
strictDeprecations: boolean;
treeshake: false | NormalizedTreeshakingOptions;
}
export type InternalModuleFormat = 'amd' | 'cjs' | 'es' | 'iife' | 'system' | 'umd';
export type ImportAttributesKey = 'with' | 'assert';
export type ModuleFormat = InternalModuleFormat | 'commonjs' | 'esm' | 'module' | 'systemjs';
type GeneratedCodePreset = 'es5' | 'es2015';
interface NormalizedGeneratedCodeOptions {
arrowFunctions: boolean;
constBindings: boolean;
objectShorthand: boolean;
reservedNamesAsProps: boolean;
symbols: boolean;
}
interface GeneratedCodeOptions extends Partial<NormalizedGeneratedCodeOptions> {
preset?: GeneratedCodePreset | undefined;
}
export type OptionsPaths = Record<string, string> | ((id: string) => string);
export type InteropType = 'compat' | 'auto' | 'esModule' | 'default' | 'defaultOnly';
export type GetInterop = (id: string | null) => InteropType;
export type AmdOptions = (
| {
autoId?: false | undefined;
id: string;
}
| {
autoId: true;
basePath?: string | undefined;
id?: undefined | undefined;
}
| {
autoId?: false | undefined;
id?: undefined | undefined;
}
) & {
define?: string | undefined;
forceJsExtensionForImports?: boolean | undefined;
};
export type NormalizedAmdOptions = (
| {
autoId: false;
id?: string | undefined;
}
| {
autoId: true;
basePath: string;
}
) & {
define: string;
forceJsExtensionForImports: boolean;
};
type AddonFunction = (chunk: RenderedChunk) => string | Promise<string>;
type OutputPluginOption = MaybePromise<OutputPlugin | NullValue | false | OutputPluginOption[]>;
type HashCharacters = 'base64' | 'base36' | 'hex';
export interface OutputOptions {
amd?: AmdOptions | undefined;
assetFileNames?: string | ((chunkInfo: PreRenderedAsset) => string) | undefined;
banner?: string | AddonFunction | undefined;
chunkFileNames?: string | ((chunkInfo: PreRenderedChunk) => string) | undefined;
compact?: boolean | undefined;
// only required for bundle.write
dir?: string | undefined;
dynamicImportInCjs?: boolean | undefined;
entryFileNames?: string | ((chunkInfo: PreRenderedChunk) => string) | undefined;
esModule?: boolean | 'if-default-prop' | undefined;
experimentalMinChunkSize?: number | undefined;
exports?: 'default' | 'named' | 'none' | 'auto' | undefined;
extend?: boolean | undefined;
/** @deprecated Use "externalImportAttributes" instead. */
externalImportAssertions?: boolean | undefined;
externalImportAttributes?: boolean | undefined;
externalLiveBindings?: boolean | undefined;
// only required for bundle.write
file?: string | undefined;
footer?: string | AddonFunction | undefined;
format?: ModuleFormat | undefined;
freeze?: boolean | undefined;
generatedCode?: GeneratedCodePreset | GeneratedCodeOptions | undefined;
globals?: GlobalsOption | undefined;
hashCharacters?: HashCharacters | undefined;
hoistTransitiveImports?: boolean | undefined;
importAttributesKey?: ImportAttributesKey | undefined;
indent?: string | boolean | undefined;
inlineDynamicImports?: boolean | undefined;
interop?: InteropType | GetInterop | undefined;
intro?: string | AddonFunction | undefined;
manualChunks?: ManualChunksOption | undefined;
minifyInternalExports?: boolean | undefined;
name?: string | undefined;
noConflict?: boolean | undefined;
/** @deprecated This will be the new default in Rollup 5. */
onlyExplicitManualChunks?: boolean | undefined;
outro?: string | AddonFunction | undefined;
paths?: OptionsPaths | undefined;
plugins?: OutputPluginOption | undefined;
preserveModules?: boolean | undefined;
preserveModulesRoot?: string | undefined;
reexportProtoFromExternal?: boolean | undefined;
sanitizeFileName?: boolean | ((fileName: string) => string) | undefined;
sourcemap?: boolean | 'inline' | 'hidden' | undefined;
sourcemapBaseUrl?: string | undefined;
sourcemapExcludeSources?: boolean | undefined;
sourcemapFile?: string | undefined;
sourcemapFileNames?: string | ((chunkInfo: PreRenderedChunk) => string) | undefined;
sourcemapIgnoreList?: boolean | SourcemapIgnoreListOption | undefined;
sourcemapPathTransform?: SourcemapPathTransformOption | undefined;
sourcemapDebugIds?: boolean | undefined;
strict?: boolean | undefined;
systemNullSetters?: boolean | undefined;
validate?: boolean | undefined;
virtualDirname?: string | undefined;
}
export interface NormalizedOutputOptions {
amd: NormalizedAmdOptions;
assetFileNames: string | ((chunkInfo: PreRenderedAsset) => string);
banner: AddonFunction;
chunkFileNames: string | ((chunkInfo: PreRenderedChunk) => string);
compact: boolean;
dir: string | undefined;
dynamicImportInCjs: boolean;
entryFileNames: string | ((chunkInfo: PreRenderedChunk) => string);
esModule: boolean | 'if-default-prop';
experimentalMinChunkSize: number;
exports: 'default' | 'named' | 'none' | 'auto';
extend: boolean;
/** @deprecated Use "externalImportAttributes" instead. */
externalImportAssertions: boolean;
externalImportAttributes: boolean;
externalLiveBindings: boolean;
file: string | undefined;
footer: AddonFunction;
format: InternalModuleFormat;
freeze: boolean;
generatedCode: NormalizedGeneratedCodeOptions;
globals: GlobalsOption;
hashCharacters: HashCharacters;
hoistTransitiveImports: boolean;
importAttributesKey: ImportAttributesKey;
indent: true | string;
inlineDynamicImports: boolean;
interop: GetInterop;
intro: AddonFunction;
manualChunks: ManualChunksOption;
minifyInternalExports: boolean;
name: string | undefined;
noConflict: boolean;
onlyExplicitManualChunks: boolean;
outro: AddonFunction;
paths: OptionsPaths;
plugins: OutputPlugin[];
preserveModules: boolean;
preserveModulesRoot: string | undefined;
reexportProtoFromExternal: boolean;
sanitizeFileName: (fileName: string) => string;
sourcemap: boolean | 'inline' | 'hidden';
sourcemapBaseUrl: string | undefined;
sourcemapExcludeSources: boolean;
sourcemapFile: string | undefined;
sourcemapFileNames: string | ((chunkInfo: PreRenderedChunk) => string) | undefined;
sourcemapIgnoreList: SourcemapIgnoreListOption;
sourcemapPathTransform: SourcemapPathTransformOption | undefined;
sourcemapDebugIds: boolean;
strict: boolean;
systemNullSetters: boolean;
validate: boolean;
virtualDirname: string;
}
export type WarningHandlerWithDefault = (
warning: RollupLog,
defaultHandler: LoggingFunction
) => void;
export type SerializedTimings = Record<string, [number, number, number]>;
export interface PreRenderedAsset {
/** @deprecated Use "names" instead. */
name: string | undefined;
names: string[];
/** @deprecated Use "originalFileNames" instead. */
originalFileName: string | null;
originalFileNames: string[];
source: string | Uint8Array;
type: 'asset';
}
export interface OutputAsset extends PreRenderedAsset {
fileName: string;
needsCodeReference: boolean;
}
export interface RenderedModule {
readonly code: string | null;
originalLength: number;
removedExports: string[];
renderedExports: string[];
renderedLength: number;
}
export interface PreRenderedChunk {
exports: string[];
facadeModuleId: string | null;
isDynamicEntry: boolean;
isEntry: boolean;
isImplicitEntry: boolean;
moduleIds: string[];
name: string;
type: 'chunk';
}
export interface RenderedChunk extends PreRenderedChunk {
dynamicImports: string[];
fileName: string;
implicitlyLoadedBefore: string[];
importedBindings: Record<string, string[]>;
imports: string[];
modules: Record<string, RenderedModule>;
referencedFiles: string[];
}
export interface OutputChunk extends RenderedChunk {
code: string;
map: SourceMap | null;
sourcemapFileName: string | null;
preliminaryFileName: string;
}
export type SerializablePluginCache = Record<string, [number, any]>;
export interface RollupCache {
modules: ModuleJSON[];
plugins?: Record<string, SerializablePluginCache>;
}
export interface RollupOutput {
output: [OutputChunk, ...(OutputChunk | OutputAsset)[]];
}
export interface RollupBuild {
cache: RollupCache | undefined;
close: () => Promise<void>;
closed: boolean;
[Symbol.asyncDispose](): Promise<void>;
generate: (outputOptions: OutputOptions) => Promise<RollupOutput>;
getTimings?: (() => SerializedTimings) | undefined;
watchFiles: string[];
write: (options: OutputOptions) => Promise<RollupOutput>;
}
export interface RollupOptions extends InputOptions {
// This is included for compatibility with config files but ignored by rollup.rollup
output?: OutputOptions | OutputOptions[] | undefined;
}
export interface MergedRollupOptions extends InputOptionsWithPlugins {
output: OutputOptions[];
}
export function rollup(options: RollupOptions): Promise<RollupBuild>;
export interface ChokidarOptions {
alwaysStat?: boolean | undefined;
atomic?: boolean | number | undefined;
awaitWriteFinish?:
| {
pollInterval?: number | undefined;
stabilityThreshold?: number | undefined;
}
| boolean
| undefined;
binaryInterval?: number | undefined;
cwd?: string | undefined;
depth?: number | undefined;
disableGlobbing?: boolean | undefined;
followSymlinks?: boolean | undefined;
ignoreInitial?: boolean | undefined;
ignorePermissionErrors?: boolean | undefined;
ignored?: any | undefined;
interval?: number | undefined;
persistent?: boolean | undefined;
useFsEvents?: boolean | undefined;
usePolling?: boolean | undefined;
}
export type RollupWatchHooks = 'onError' | 'onStart' | 'onBundleStart' | 'onBundleEnd' | 'onEnd';
export interface WatcherOptions {
allowInputInsideOutputPath?: boolean | undefined;
buildDelay?: number | undefined;
chokidar?: ChokidarOptions | undefined;
clearScreen?: boolean | undefined;
exclude?: string | RegExp | (string | RegExp)[] | undefined;
include?: string | RegExp | (string | RegExp)[] | undefined;
skipWrite?: boolean | undefined;
onInvalidate?: ((id: string) => void) | undefined;
}
export interface RollupWatchOptions extends InputOptions {
output?: OutputOptions | OutputOptions[] | undefined;
watch?: WatcherOptions | false | undefined;
}
export type AwaitedEventListener<
T extends Record<string, (...parameters: any) => any>,
K extends keyof T
> = (...parameters: Parameters<T[K]>) => void | Promise<void>;
export interface AwaitingEventEmitter<T extends Record<string, (...parameters: any) => any>> {
close(): Promise<void>;
emit<K extends keyof T>(event: K, ...parameters: Parameters<T[K]>): Promise<unknown>;
/**
* Removes an event listener.
*/
off<K extends keyof T>(event: K, listener: AwaitedEventListener<T, K>): this;
/**
* Registers an event listener that will be awaited before Rollup continues.
* All listeners will be awaited in parallel while rejections are tracked via
* Promise.all.
*/
on<K extends keyof T>(event: K, listener: AwaitedEventListener<T, K>): this;
/**
* Registers an event listener that will be awaited before Rollup continues.
* All listeners will be awaited in parallel while rejections are tracked via
* Promise.all.
* Listeners are removed automatically when removeListenersForCurrentRun is
* called, which happens automatically after each run.
*/
onCurrentRun<K extends keyof T>(
event: K,
listener: (...parameters: Parameters<T[K]>) => Promise<ReturnType<T[K]>>
): this;
removeAllListeners(): this;
removeListenersForCurrentRun(): this;
}
export type RollupWatcherEvent =
| { code: 'START' }
| { code: 'BUNDLE_START'; input?: InputOption | undefined; output: readonly string[] }
| {
code: 'BUNDLE_END';
duration: number;
input?: InputOption | undefined;
output: readonly string[];
result: RollupBuild;
}
| { code: 'END' }
| { code: 'ERROR'; error: RollupError; result: RollupBuild | null };
export type RollupWatcher = AwaitingEventEmitter<{
change: (id: string, change: { event: ChangeEvent }) => void;
close: () => void;
event: (event: RollupWatcherEvent) => void;
restart: () => void;
}>;
export function watch(config: RollupWatchOptions | RollupWatchOptions[]): RollupWatcher;
interface AstNodeLocation {
end: number;
start: number;
}
type OmittedEstreeKeys =
| 'loc'
| 'range'
| 'leadingComments'
| 'trailingComments'
| 'innerComments'
| 'comments';
type RollupAstNode<T> = Omit<T, OmittedEstreeKeys> & AstNodeLocation;
type ProgramNode = RollupAstNode<estree.Program>;
export type AstNode = RollupAstNode<estree.Node>;
export function defineConfig(options: RollupOptions): RollupOptions;
export function defineConfig(options: RollupOptions[]): RollupOptions[];
export function defineConfig(optionsFunction: RollupOptionsFunction): RollupOptionsFunction;
export type RollupOptionsFunction = (
commandLineArguments: Record<string, any>
) => MaybePromise<RollupOptions | RollupOptions[]>;
export interface RollupFsModule {
appendFile(
path: string,
data: string | Uint8Array,
options?: { encoding?: BufferEncoding | null; mode?: string | number; flag?: string | number }
): Promise<void>;
copyFile(source: string, destination: string, mode?: string | number): Promise<void>;
mkdir(path: string, options?: { recursive?: boolean; mode?: string | number }): Promise<void>;
mkdtemp(prefix: string): Promise<string>;
readdir(path: string, options?: { withFileTypes?: false }): Promise<string[]>;
readdir(path: string, options?: { withFileTypes: true }): Promise<RollupDirectoryEntry[]>;
readFile(
path: string,
options?: { encoding?: null; flag?: string | number; signal?: AbortSignal }
): Promise<Uint8Array>;
readFile(
path: string,
options?: { encoding: BufferEncoding; flag?: string | number; signal?: AbortSignal }
): Promise<string>;
realpath(path: string): Promise<string>;
rename(oldPath: string, newPath: string): Promise<void>;
rmdir(path: string, options?: { recursive?: boolean }): Promise<void>;
stat(path: string): Promise<RollupFileStats>;
lstat(path: string): Promise<RollupFileStats>;
unlink(path: string): Promise<void>;
writeFile(
path: string,
data: string | Uint8Array,
options?: { encoding?: BufferEncoding | null; mode?: string | number; flag?: string | number }
): Promise<void>;
}
export type BufferEncoding =
| 'ascii'
| 'utf8'
| 'utf16le'
| 'ucs2'
| 'base64'
| 'base64url'
| 'latin1'
| 'binary'
| 'hex';
export interface RollupDirectoryEntry {
isFile(): boolean;
isDirectory(): boolean;
isSymbolicLink(): boolean;
name: string;
}
export interface RollupFileStats {
isFile(): boolean;
isDirectory(): boolean;
isSymbolicLink(): boolean;
size: number;
mtime: Date;
ctime: Date;
atime: Date;
birthtime: Date;
}
+129
View File
@@ -0,0 +1,129 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
const rollup = require('./shared/rollup.js');
const parseAst_js = require('./shared/parseAst.js');
const fseventsImporter = require('./shared/fsevents-importer.js');
require('node:process');
require('node:path');
require('path');
require('./native.js');
require('node:perf_hooks');
require('node:fs/promises');
class WatchEmitter {
constructor() {
this.currentHandlers = Object.create(null);
this.persistentHandlers = Object.create(null);
}
// Will be overwritten by Rollup
async close() { }
emit(event, ...parameters) {
return Promise.all([...this.getCurrentHandlers(event), ...this.getPersistentHandlers(event)].map(handler => handler(...parameters)));
}
off(event, listener) {
const listeners = this.persistentHandlers[event];
if (listeners) {
// A hack stolen from "mitt": ">>> 0" does not change numbers >= 0, but -1
// (which would remove the last array element if used unchanged) is turned
// into max_int, which is outside the array and does not change anything.
listeners.splice(listeners.indexOf(listener) >>> 0, 1);
}
return this;
}
on(event, listener) {
this.getPersistentHandlers(event).push(listener);
return this;
}
onCurrentRun(event, listener) {
this.getCurrentHandlers(event).push(listener);
return this;
}
once(event, listener) {
const selfRemovingListener = (...parameters) => {
this.off(event, selfRemovingListener);
return listener(...parameters);
};
this.on(event, selfRemovingListener);
return this;
}
removeAllListeners() {
this.removeListenersForCurrentRun();
this.persistentHandlers = Object.create(null);
return this;
}
removeListenersForCurrentRun() {
this.currentHandlers = Object.create(null);
return this;
}
getCurrentHandlers(event) {
return this.currentHandlers[event] || (this.currentHandlers[event] = []);
}
getPersistentHandlers(event) {
return this.persistentHandlers[event] || (this.persistentHandlers[event] = []);
}
}
function watch(configs) {
const emitter = new WatchEmitter();
watchInternal(configs, emitter).catch(error => {
rollup.handleError(error);
});
return emitter;
}
function ensureTrailingSlash(path) {
if (path[path.length - 1] !== '/') {
return `${path}/`;
}
return path;
}
function checkWatchConfig(config) {
for (const item of config) {
if (typeof item.watch !== 'boolean' && item.watch?.allowInputInsideOutputPath) {
break;
}
if (item.input && item.output) {
const input = typeof item.input === 'string' ? rollup.ensureArray(item.input) : item.input;
const outputs = rollup.ensureArray(item.output);
for (const index in input) {
const inputPath = input[index];
if (typeof inputPath !== 'string') {
continue;
}
const outputWithInputAsSubPath = outputs.find(({ dir }) => dir && ensureTrailingSlash(inputPath).startsWith(ensureTrailingSlash(dir)));
if (outputWithInputAsSubPath) {
parseAst_js.error(parseAst_js.logInvalidOption('watch', parseAst_js.URL_WATCH, `the input "${inputPath}" is a subpath of the output "${outputWithInputAsSubPath.dir}"`));
}
}
}
}
}
async function watchInternal(configs, emitter) {
const optionsList = await Promise.all(rollup.ensureArray(configs).map(config => rollup.mergeOptions(config, true)));
const watchOptionsList = optionsList.filter(config => config.watch !== false);
if (watchOptionsList.length === 0) {
return parseAst_js.error(parseAst_js.logInvalidOption('watch', parseAst_js.URL_WATCH, 'there must be at least one config where "watch" is not set to "false"'));
}
checkWatchConfig(watchOptionsList);
await fseventsImporter.loadFsEvents();
const { Watcher } = await Promise.resolve().then(() => require('./shared/watch.js'));
new Watcher(watchOptionsList, emitter);
}
const VERSION = rollup.package_.version;
exports.defineConfig = rollup.defineConfig;
exports.rollup = rollup.rollup;
exports.VERSION = VERSION;
exports.watch = watch;
//# sourceMappingURL=rollup.js.map
+37
View File
@@ -0,0 +1,37 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
let fsEvents;
let fsEventsImportError;
async function loadFsEvents() {
try {
({ default: fsEvents } = await import('fsevents'));
}
catch (error) {
fsEventsImportError = error;
}
}
// A call to this function will be injected into the chokidar code
function getFsEvents() {
if (fsEventsImportError)
throw fsEventsImportError;
return fsEvents;
}
const fseventsImporter = /*#__PURE__*/Object.defineProperty({
__proto__: null,
getFsEvents,
loadFsEvents
}, Symbol.toStringTag, { value: 'Module' });
exports.fseventsImporter = fseventsImporter;
exports.loadFsEvents = loadFsEvents;
//# sourceMappingURL=fsevents-importer.js.map
+9615
View File
@@ -0,0 +1,9615 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
const rollup = require('./rollup.js');
const require$$0$1 = require('path');
const require$$0$2 = require('fs');
const require$$2 = require('util');
const require$$1 = require('stream');
const require$$2$1 = require('os');
const fseventsImporter = require('./fsevents-importer.js');
const require$$0$3 = require('events');
var chokidar$1 = {};
var utils$2 = {};
var constants$3;
var hasRequiredConstants$3;
function requireConstants$3 () {
if (hasRequiredConstants$3) return constants$3;
hasRequiredConstants$3 = 1;
const path = require$$0$1;
const WIN_SLASH = '\\\\/';
const WIN_NO_SLASH = `[^${WIN_SLASH}]`;
const DEFAULT_MAX_EXTGLOB_RECURSION = 0;
/**
* Posix glob regex
*/
const DOT_LITERAL = '\\.';
const PLUS_LITERAL = '\\+';
const QMARK_LITERAL = '\\?';
const SLASH_LITERAL = '\\/';
const ONE_CHAR = '(?=.)';
const QMARK = '[^/]';
const END_ANCHOR = `(?:${SLASH_LITERAL}|$)`;
const START_ANCHOR = `(?:^|${SLASH_LITERAL})`;
const DOTS_SLASH = `${DOT_LITERAL}{1,2}${END_ANCHOR}`;
const NO_DOT = `(?!${DOT_LITERAL})`;
const NO_DOTS = `(?!${START_ANCHOR}${DOTS_SLASH})`;
const NO_DOT_SLASH = `(?!${DOT_LITERAL}{0,1}${END_ANCHOR})`;
const NO_DOTS_SLASH = `(?!${DOTS_SLASH})`;
const QMARK_NO_DOT = `[^.${SLASH_LITERAL}]`;
const STAR = `${QMARK}*?`;
const POSIX_CHARS = {
DOT_LITERAL,
PLUS_LITERAL,
QMARK_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
QMARK,
END_ANCHOR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK_NO_DOT,
STAR,
START_ANCHOR
};
/**
* Windows glob regex
*/
const WINDOWS_CHARS = {
...POSIX_CHARS,
SLASH_LITERAL: `[${WIN_SLASH}]`,
QMARK: WIN_NO_SLASH,
STAR: `${WIN_NO_SLASH}*?`,
DOTS_SLASH: `${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$)`,
NO_DOT: `(?!${DOT_LITERAL})`,
NO_DOTS: `(?!(?:^|[${WIN_SLASH}])${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
NO_DOT_SLASH: `(?!${DOT_LITERAL}{0,1}(?:[${WIN_SLASH}]|$))`,
NO_DOTS_SLASH: `(?!${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
QMARK_NO_DOT: `[^.${WIN_SLASH}]`,
START_ANCHOR: `(?:^|[${WIN_SLASH}])`,
END_ANCHOR: `(?:[${WIN_SLASH}]|$)`
};
/**
* POSIX Bracket Regex
*/
const POSIX_REGEX_SOURCE = {
__proto__: null,
alnum: 'a-zA-Z0-9',
alpha: 'a-zA-Z',
ascii: '\\x00-\\x7F',
blank: ' \\t',
cntrl: '\\x00-\\x1F\\x7F',
digit: '0-9',
graph: '\\x21-\\x7E',
lower: 'a-z',
print: '\\x20-\\x7E ',
punct: '\\-!"#$%&\'()\\*+,./:;<=>?@[\\]^_`{|}~',
space: ' \\t\\r\\n\\v\\f',
upper: 'A-Z',
word: 'A-Za-z0-9_',
xdigit: 'A-Fa-f0-9'
};
constants$3 = {
DEFAULT_MAX_EXTGLOB_RECURSION,
MAX_LENGTH: 1024 * 64,
POSIX_REGEX_SOURCE,
// regular expressions
REGEX_BACKSLASH: /\\(?![*+?^${}(|)[\]])/g,
REGEX_NON_SPECIAL_CHARS: /^[^@![\].,$*+?^{}()|\\/]+/,
REGEX_SPECIAL_CHARS: /[-*+?.^${}(|)[\]]/,
REGEX_SPECIAL_CHARS_BACKREF: /(\\?)((\W)(\3*))/g,
REGEX_SPECIAL_CHARS_GLOBAL: /([-*+?.^${}(|)[\]])/g,
REGEX_REMOVE_BACKSLASH: /(?:\[.*?[^\\]\]|\\(?=.))/g,
// Replace globs with equivalent patterns to reduce parsing time.
REPLACEMENTS: {
__proto__: null,
'***': '*',
'**/**': '**',
'**/**/**': '**'
},
// Digits
CHAR_0: 48, /* 0 */
CHAR_9: 57, /* 9 */
// Alphabet chars.
CHAR_UPPERCASE_A: 65, /* A */
CHAR_LOWERCASE_A: 97, /* a */
CHAR_UPPERCASE_Z: 90, /* Z */
CHAR_LOWERCASE_Z: 122, /* z */
CHAR_LEFT_PARENTHESES: 40, /* ( */
CHAR_RIGHT_PARENTHESES: 41, /* ) */
CHAR_ASTERISK: 42, /* * */
// Non-alphabetic chars.
CHAR_AMPERSAND: 38, /* & */
CHAR_AT: 64, /* @ */
CHAR_BACKWARD_SLASH: 92, /* \ */
CHAR_CARRIAGE_RETURN: 13, /* \r */
CHAR_CIRCUMFLEX_ACCENT: 94, /* ^ */
CHAR_COLON: 58, /* : */
CHAR_COMMA: 44, /* , */
CHAR_DOT: 46, /* . */
CHAR_DOUBLE_QUOTE: 34, /* " */
CHAR_EQUAL: 61, /* = */
CHAR_EXCLAMATION_MARK: 33, /* ! */
CHAR_FORM_FEED: 12, /* \f */
CHAR_FORWARD_SLASH: 47, /* / */
CHAR_GRAVE_ACCENT: 96, /* ` */
CHAR_HASH: 35, /* # */
CHAR_HYPHEN_MINUS: 45, /* - */
CHAR_LEFT_ANGLE_BRACKET: 60, /* < */
CHAR_LEFT_CURLY_BRACE: 123, /* { */
CHAR_LEFT_SQUARE_BRACKET: 91, /* [ */
CHAR_LINE_FEED: 10, /* \n */
CHAR_NO_BREAK_SPACE: 160, /* \u00A0 */
CHAR_PERCENT: 37, /* % */
CHAR_PLUS: 43, /* + */
CHAR_QUESTION_MARK: 63, /* ? */
CHAR_RIGHT_ANGLE_BRACKET: 62, /* > */
CHAR_RIGHT_CURLY_BRACE: 125, /* } */
CHAR_RIGHT_SQUARE_BRACKET: 93, /* ] */
CHAR_SEMICOLON: 59, /* ; */
CHAR_SINGLE_QUOTE: 39, /* ' */
CHAR_SPACE: 32, /* */
CHAR_TAB: 9, /* \t */
CHAR_UNDERSCORE: 95, /* _ */
CHAR_VERTICAL_LINE: 124, /* | */
CHAR_ZERO_WIDTH_NOBREAK_SPACE: 65279, /* \uFEFF */
SEP: path.sep,
/**
* Create EXTGLOB_CHARS
*/
extglobChars(chars) {
return {
'!': { type: 'negate', open: '(?:(?!(?:', close: `))${chars.STAR})` },
'?': { type: 'qmark', open: '(?:', close: ')?' },
'+': { type: 'plus', open: '(?:', close: ')+' },
'*': { type: 'star', open: '(?:', close: ')*' },
'@': { type: 'at', open: '(?:', close: ')' }
};
},
/**
* Create GLOB_CHARS
*/
globChars(win32) {
return win32 === true ? WINDOWS_CHARS : POSIX_CHARS;
}
};
return constants$3;
}
var hasRequiredUtils$2;
function requireUtils$2 () {
if (hasRequiredUtils$2) return utils$2;
hasRequiredUtils$2 = 1;
(function (exports) {
const path = require$$0$1;
const win32 = process.platform === 'win32';
const {
REGEX_BACKSLASH,
REGEX_REMOVE_BACKSLASH,
REGEX_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_GLOBAL
} = /*@__PURE__*/ requireConstants$3();
exports.isObject = val => val !== null && typeof val === 'object' && !Array.isArray(val);
exports.hasRegexChars = str => REGEX_SPECIAL_CHARS.test(str);
exports.isRegexChar = str => str.length === 1 && exports.hasRegexChars(str);
exports.escapeRegex = str => str.replace(REGEX_SPECIAL_CHARS_GLOBAL, '\\$1');
exports.toPosixSlashes = str => str.replace(REGEX_BACKSLASH, '/');
exports.removeBackslashes = str => {
return str.replace(REGEX_REMOVE_BACKSLASH, match => {
return match === '\\' ? '' : match;
});
};
exports.supportsLookbehinds = () => {
const segs = process.version.slice(1).split('.').map(Number);
if (segs.length === 3 && segs[0] >= 9 || (segs[0] === 8 && segs[1] >= 10)) {
return true;
}
return false;
};
exports.isWindows = options => {
if (options && typeof options.windows === 'boolean') {
return options.windows;
}
return win32 === true || path.sep === '\\';
};
exports.escapeLast = (input, char, lastIdx) => {
const idx = input.lastIndexOf(char, lastIdx);
if (idx === -1) return input;
if (input[idx - 1] === '\\') return exports.escapeLast(input, char, idx - 1);
return `${input.slice(0, idx)}\\${input.slice(idx)}`;
};
exports.removePrefix = (input, state = {}) => {
let output = input;
if (output.startsWith('./')) {
output = output.slice(2);
state.prefix = './';
}
return output;
};
exports.wrapOutput = (input, state = {}, options = {}) => {
const prepend = options.contains ? '' : '^';
const append = options.contains ? '' : '$';
let output = `${prepend}(?:${input})${append}`;
if (state.negated === true) {
output = `(?:^(?!${output}).*$)`;
}
return output;
};
} (utils$2));
return utils$2;
}
var scan_1$1;
var hasRequiredScan$1;
function requireScan$1 () {
if (hasRequiredScan$1) return scan_1$1;
hasRequiredScan$1 = 1;
const utils = /*@__PURE__*/ requireUtils$2();
const {
CHAR_ASTERISK, /* * */
CHAR_AT, /* @ */
CHAR_BACKWARD_SLASH, /* \ */
CHAR_COMMA, /* , */
CHAR_DOT, /* . */
CHAR_EXCLAMATION_MARK, /* ! */
CHAR_FORWARD_SLASH, /* / */
CHAR_LEFT_CURLY_BRACE, /* { */
CHAR_LEFT_PARENTHESES, /* ( */
CHAR_LEFT_SQUARE_BRACKET, /* [ */
CHAR_PLUS, /* + */
CHAR_QUESTION_MARK, /* ? */
CHAR_RIGHT_CURLY_BRACE, /* } */
CHAR_RIGHT_PARENTHESES, /* ) */
CHAR_RIGHT_SQUARE_BRACKET /* ] */
} = /*@__PURE__*/ requireConstants$3();
const isPathSeparator = code => {
return code === CHAR_FORWARD_SLASH || code === CHAR_BACKWARD_SLASH;
};
const depth = token => {
if (token.isPrefix !== true) {
token.depth = token.isGlobstar ? Infinity : 1;
}
};
/**
* Quickly scans a glob pattern and returns an object with a handful of
* useful properties, like `isGlob`, `path` (the leading non-glob, if it exists),
* `glob` (the actual pattern), `negated` (true if the path starts with `!` but not
* with `!(`) and `negatedExtglob` (true if the path starts with `!(`).
*
* ```js
* const pm = require('picomatch');
* console.log(pm.scan('foo/bar/*.js'));
* { isGlob: true, input: 'foo/bar/*.js', base: 'foo/bar', glob: '*.js' }
* ```
* @param {String} `str`
* @param {Object} `options`
* @return {Object} Returns an object with tokens and regex source string.
* @api public
*/
const scan = (input, options) => {
const opts = options || {};
const length = input.length - 1;
const scanToEnd = opts.parts === true || opts.scanToEnd === true;
const slashes = [];
const tokens = [];
const parts = [];
let str = input;
let index = -1;
let start = 0;
let lastIndex = 0;
let isBrace = false;
let isBracket = false;
let isGlob = false;
let isExtglob = false;
let isGlobstar = false;
let braceEscaped = false;
let backslashes = false;
let negated = false;
let negatedExtglob = false;
let finished = false;
let braces = 0;
let prev;
let code;
let token = { value: '', depth: 0, isGlob: false };
const eos = () => index >= length;
const peek = () => str.charCodeAt(index + 1);
const advance = () => {
prev = code;
return str.charCodeAt(++index);
};
while (index < length) {
code = advance();
let next;
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
if (code === CHAR_LEFT_CURLY_BRACE) {
braceEscaped = true;
}
continue;
}
if (braceEscaped === true || code === CHAR_LEFT_CURLY_BRACE) {
braces++;
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (code === CHAR_LEFT_CURLY_BRACE) {
braces++;
continue;
}
if (braceEscaped !== true && code === CHAR_DOT && (code = advance()) === CHAR_DOT) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (braceEscaped !== true && code === CHAR_COMMA) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_RIGHT_CURLY_BRACE) {
braces--;
if (braces === 0) {
braceEscaped = false;
isBrace = token.isBrace = true;
finished = true;
break;
}
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_FORWARD_SLASH) {
slashes.push(index);
tokens.push(token);
token = { value: '', depth: 0, isGlob: false };
if (finished === true) continue;
if (prev === CHAR_DOT && index === (start + 1)) {
start += 2;
continue;
}
lastIndex = index + 1;
continue;
}
if (opts.noext !== true) {
const isExtglobChar = code === CHAR_PLUS
|| code === CHAR_AT
|| code === CHAR_ASTERISK
|| code === CHAR_QUESTION_MARK
|| code === CHAR_EXCLAMATION_MARK;
if (isExtglobChar === true && peek() === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
isExtglob = token.isExtglob = true;
finished = true;
if (code === CHAR_EXCLAMATION_MARK && index === start) {
negatedExtglob = true;
}
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
isGlob = token.isGlob = true;
finished = true;
break;
}
}
continue;
}
break;
}
}
if (code === CHAR_ASTERISK) {
if (prev === CHAR_ASTERISK) isGlobstar = token.isGlobstar = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_QUESTION_MARK) {
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_LEFT_SQUARE_BRACKET) {
while (eos() !== true && (next = advance())) {
if (next === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (next === CHAR_RIGHT_SQUARE_BRACKET) {
isBracket = token.isBracket = true;
isGlob = token.isGlob = true;
finished = true;
break;
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (opts.nonegate !== true && code === CHAR_EXCLAMATION_MARK && index === start) {
negated = token.negated = true;
start++;
continue;
}
if (opts.noparen !== true && code === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_LEFT_PARENTHESES) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
finished = true;
break;
}
}
continue;
}
break;
}
if (isGlob === true) {
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
}
if (opts.noext === true) {
isExtglob = false;
isGlob = false;
}
let base = str;
let prefix = '';
let glob = '';
if (start > 0) {
prefix = str.slice(0, start);
str = str.slice(start);
lastIndex -= start;
}
if (base && isGlob === true && lastIndex > 0) {
base = str.slice(0, lastIndex);
glob = str.slice(lastIndex);
} else if (isGlob === true) {
base = '';
glob = str;
} else {
base = str;
}
if (base && base !== '' && base !== '/' && base !== str) {
if (isPathSeparator(base.charCodeAt(base.length - 1))) {
base = base.slice(0, -1);
}
}
if (opts.unescape === true) {
if (glob) glob = utils.removeBackslashes(glob);
if (base && backslashes === true) {
base = utils.removeBackslashes(base);
}
}
const state = {
prefix,
input,
start,
base,
glob,
isBrace,
isBracket,
isGlob,
isExtglob,
isGlobstar,
negated,
negatedExtglob
};
if (opts.tokens === true) {
state.maxDepth = 0;
if (!isPathSeparator(code)) {
tokens.push(token);
}
state.tokens = tokens;
}
if (opts.parts === true || opts.tokens === true) {
let prevIndex;
for (let idx = 0; idx < slashes.length; idx++) {
const n = prevIndex ? prevIndex + 1 : start;
const i = slashes[idx];
const value = input.slice(n, i);
if (opts.tokens) {
if (idx === 0 && start !== 0) {
tokens[idx].isPrefix = true;
tokens[idx].value = prefix;
} else {
tokens[idx].value = value;
}
depth(tokens[idx]);
state.maxDepth += tokens[idx].depth;
}
if (idx !== 0 || value !== '') {
parts.push(value);
}
prevIndex = i;
}
if (prevIndex && prevIndex + 1 < input.length) {
const value = input.slice(prevIndex + 1);
parts.push(value);
if (opts.tokens) {
tokens[tokens.length - 1].value = value;
depth(tokens[tokens.length - 1]);
state.maxDepth += tokens[tokens.length - 1].depth;
}
}
state.slashes = slashes;
state.parts = parts;
}
return state;
};
scan_1$1 = scan;
return scan_1$1;
}
var parse_1$2;
var hasRequiredParse$2;
function requireParse$2 () {
if (hasRequiredParse$2) return parse_1$2;
hasRequiredParse$2 = 1;
const constants = /*@__PURE__*/ requireConstants$3();
const utils = /*@__PURE__*/ requireUtils$2();
/**
* Constants
*/
const {
MAX_LENGTH,
POSIX_REGEX_SOURCE,
REGEX_NON_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_BACKREF,
REPLACEMENTS
} = constants;
/**
* Helpers
*/
const expandRange = (args, options) => {
if (typeof options.expandRange === 'function') {
return options.expandRange(...args, options);
}
args.sort();
const value = `[${args.join('-')}]`;
return value;
};
/**
* Create the message for a syntax error
*/
const syntaxError = (type, char) => {
return `Missing ${type}: "${char}" - use "\\\\${char}" to match literal characters`;
};
const splitTopLevel = input => {
const parts = [];
let bracket = 0;
let paren = 0;
let quote = 0;
let value = '';
let escaped = false;
for (const ch of input) {
if (escaped === true) {
value += ch;
escaped = false;
continue;
}
if (ch === '\\') {
value += ch;
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
value += ch;
continue;
}
if (quote === 0) {
if (ch === '[') {
bracket++;
} else if (ch === ']' && bracket > 0) {
bracket--;
} else if (bracket === 0) {
if (ch === '(') {
paren++;
} else if (ch === ')' && paren > 0) {
paren--;
} else if (ch === '|' && paren === 0) {
parts.push(value);
value = '';
continue;
}
}
}
value += ch;
}
parts.push(value);
return parts;
};
const isPlainBranch = branch => {
let escaped = false;
for (const ch of branch) {
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (/[?*+@!()[\]{}]/.test(ch)) {
return false;
}
}
return true;
};
const normalizeSimpleBranch = branch => {
let value = branch.trim();
let changed = true;
while (changed === true) {
changed = false;
if (/^@\([^\\()[\]{}|]+\)$/.test(value)) {
value = value.slice(2, -1);
changed = true;
}
}
if (!isPlainBranch(value)) {
return;
}
return value.replace(/\\(.)/g, '$1');
};
const hasRepeatedCharPrefixOverlap = branches => {
const values = branches.map(normalizeSimpleBranch).filter(Boolean);
for (let i = 0; i < values.length; i++) {
for (let j = i + 1; j < values.length; j++) {
const a = values[i];
const b = values[j];
const char = a[0];
if (!char || a !== char.repeat(a.length) || b !== char.repeat(b.length)) {
continue;
}
if (a === b || a.startsWith(b) || b.startsWith(a)) {
return true;
}
}
}
return false;
};
const parseRepeatedExtglob = (pattern, requireEnd = true) => {
if ((pattern[0] !== '+' && pattern[0] !== '*') || pattern[1] !== '(') {
return;
}
let bracket = 0;
let paren = 0;
let quote = 0;
let escaped = false;
for (let i = 1; i < pattern.length; i++) {
const ch = pattern[i];
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
continue;
}
if (quote === 1) {
continue;
}
if (ch === '[') {
bracket++;
continue;
}
if (ch === ']' && bracket > 0) {
bracket--;
continue;
}
if (bracket > 0) {
continue;
}
if (ch === '(') {
paren++;
continue;
}
if (ch === ')') {
paren--;
if (paren === 0) {
if (requireEnd === true && i !== pattern.length - 1) {
return;
}
return {
type: pattern[0],
body: pattern.slice(2, i),
end: i
};
}
}
}
};
const getStarExtglobSequenceOutput = pattern => {
let index = 0;
const chars = [];
while (index < pattern.length) {
const match = parseRepeatedExtglob(pattern.slice(index), false);
if (!match || match.type !== '*') {
return;
}
const branches = splitTopLevel(match.body).map(branch => branch.trim());
if (branches.length !== 1) {
return;
}
const branch = normalizeSimpleBranch(branches[0]);
if (!branch || branch.length !== 1) {
return;
}
chars.push(branch);
index += match.end + 1;
}
if (chars.length < 1) {
return;
}
const source = chars.length === 1
? utils.escapeRegex(chars[0])
: `[${chars.map(ch => utils.escapeRegex(ch)).join('')}]`;
return `${source}*`;
};
const repeatedExtglobRecursion = pattern => {
let depth = 0;
let value = pattern.trim();
let match = parseRepeatedExtglob(value);
while (match) {
depth++;
value = match.body.trim();
match = parseRepeatedExtglob(value);
}
return depth;
};
const analyzeRepeatedExtglob = (body, options) => {
if (options.maxExtglobRecursion === false) {
return { risky: false };
}
const max =
typeof options.maxExtglobRecursion === 'number'
? options.maxExtglobRecursion
: constants.DEFAULT_MAX_EXTGLOB_RECURSION;
const branches = splitTopLevel(body).map(branch => branch.trim());
if (branches.length > 1) {
if (
branches.some(branch => branch === '') ||
branches.some(branch => /^[*?]+$/.test(branch)) ||
hasRepeatedCharPrefixOverlap(branches)
) {
return { risky: true };
}
}
for (const branch of branches) {
const safeOutput = getStarExtglobSequenceOutput(branch);
if (safeOutput) {
return { risky: true, safeOutput };
}
if (repeatedExtglobRecursion(branch) > max) {
return { risky: true };
}
}
return { risky: false };
};
/**
* Parse the given input string.
* @param {String} input
* @param {Object} options
* @return {Object}
*/
const parse = (input, options) => {
if (typeof input !== 'string') {
throw new TypeError('Expected a string');
}
input = REPLACEMENTS[input] || input;
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
let len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
const bos = { type: 'bos', value: '', output: opts.prepend || '' };
const tokens = [bos];
const capture = opts.capture ? '' : '?:';
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const PLATFORM_CHARS = constants.globChars(win32);
const EXTGLOB_CHARS = constants.extglobChars(PLATFORM_CHARS);
const {
DOT_LITERAL,
PLUS_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK,
QMARK_NO_DOT,
STAR,
START_ANCHOR
} = PLATFORM_CHARS;
const globstar = opts => {
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const nodot = opts.dot ? '' : NO_DOT;
const qmarkNoDot = opts.dot ? QMARK : QMARK_NO_DOT;
let star = opts.bash === true ? globstar(opts) : STAR;
if (opts.capture) {
star = `(${star})`;
}
// minimatch options support
if (typeof opts.noext === 'boolean') {
opts.noextglob = opts.noext;
}
const state = {
input,
index: -1,
start: 0,
dot: opts.dot === true,
consumed: '',
output: '',
prefix: '',
backtrack: false,
negated: false,
brackets: 0,
braces: 0,
parens: 0,
quotes: 0,
globstar: false,
tokens
};
input = utils.removePrefix(input, state);
len = input.length;
const extglobs = [];
const braces = [];
const stack = [];
let prev = bos;
let value;
/**
* Tokenizing helpers
*/
const eos = () => state.index === len - 1;
const peek = state.peek = (n = 1) => input[state.index + n];
const advance = state.advance = () => input[++state.index] || '';
const remaining = () => input.slice(state.index + 1);
const consume = (value = '', num = 0) => {
state.consumed += value;
state.index += num;
};
const append = token => {
state.output += token.output != null ? token.output : token.value;
consume(token.value);
};
const negate = () => {
let count = 1;
while (peek() === '!' && (peek(2) !== '(' || peek(3) === '?')) {
advance();
state.start++;
count++;
}
if (count % 2 === 0) {
return false;
}
state.negated = true;
state.start++;
return true;
};
const increment = type => {
state[type]++;
stack.push(type);
};
const decrement = type => {
state[type]--;
stack.pop();
};
/**
* Push tokens onto the tokens array. This helper speeds up
* tokenizing by 1) helping us avoid backtracking as much as possible,
* and 2) helping us avoid creating extra tokens when consecutive
* characters are plain text. This improves performance and simplifies
* lookbehinds.
*/
const push = tok => {
if (prev.type === 'globstar') {
const isBrace = state.braces > 0 && (tok.type === 'comma' || tok.type === 'brace');
const isExtglob = tok.extglob === true || (extglobs.length && (tok.type === 'pipe' || tok.type === 'paren'));
if (tok.type !== 'slash' && tok.type !== 'paren' && !isBrace && !isExtglob) {
state.output = state.output.slice(0, -prev.output.length);
prev.type = 'star';
prev.value = '*';
prev.output = star;
state.output += prev.output;
}
}
if (extglobs.length && tok.type !== 'paren') {
extglobs[extglobs.length - 1].inner += tok.value;
}
if (tok.value || tok.output) append(tok);
if (prev && prev.type === 'text' && tok.type === 'text') {
prev.value += tok.value;
prev.output = (prev.output || '') + tok.value;
return;
}
tok.prev = prev;
tokens.push(tok);
prev = tok;
};
const extglobOpen = (type, value) => {
const token = { ...EXTGLOB_CHARS[value], conditions: 1, inner: '' };
token.prev = prev;
token.parens = state.parens;
token.output = state.output;
token.startIndex = state.index;
token.tokensIndex = tokens.length;
const output = (opts.capture ? '(' : '') + token.open;
increment('parens');
push({ type, value, output: state.output ? '' : ONE_CHAR });
push({ type: 'paren', extglob: true, value: advance(), output });
extglobs.push(token);
};
const extglobClose = token => {
const literal = input.slice(token.startIndex, state.index + 1);
const body = input.slice(token.startIndex + 2, state.index);
const analysis = analyzeRepeatedExtglob(body, opts);
if ((token.type === 'plus' || token.type === 'star') && analysis.risky) {
const safeOutput = analysis.safeOutput
? (token.output ? '' : ONE_CHAR) + (opts.capture ? `(${analysis.safeOutput})` : analysis.safeOutput)
: undefined;
const open = tokens[token.tokensIndex];
open.type = 'text';
open.value = literal;
open.output = safeOutput || utils.escapeRegex(literal);
for (let i = token.tokensIndex + 1; i < tokens.length; i++) {
tokens[i].value = '';
tokens[i].output = '';
delete tokens[i].suffix;
}
state.output = token.output + open.output;
state.backtrack = true;
push({ type: 'paren', extglob: true, value, output: '' });
decrement('parens');
return;
}
let output = token.close + (opts.capture ? ')' : '');
let rest;
if (token.type === 'negate') {
let extglobStar = star;
if (token.inner && token.inner.length > 1 && token.inner.includes('/')) {
extglobStar = globstar(opts);
}
if (extglobStar !== star || eos() || /^\)+$/.test(remaining())) {
output = token.close = `)$))${extglobStar}`;
}
if (token.inner.includes('*') && (rest = remaining()) && /^\.[^\\/.]+$/.test(rest)) {
// Any non-magical string (`.ts`) or even nested expression (`.{ts,tsx}`) can follow after the closing parenthesis.
// In this case, we need to parse the string and use it in the output of the original pattern.
// Suitable patterns: `/!(*.d).ts`, `/!(*.d).{ts,tsx}`, `**/!(*-dbg).@(js)`.
//
// Disabling the `fastpaths` option due to a problem with parsing strings as `.ts` in the pattern like `**/!(*.d).ts`.
const expression = parse(rest, { ...options, fastpaths: false }).output;
output = token.close = `)${expression})${extglobStar})`;
}
if (token.prev.type === 'bos') {
state.negatedExtglob = true;
}
}
push({ type: 'paren', extglob: true, value, output });
decrement('parens');
};
/**
* Fast paths
*/
if (opts.fastpaths !== false && !/(^[*!]|[/()[\]{}"])/.test(input)) {
let backslashes = false;
let output = input.replace(REGEX_SPECIAL_CHARS_BACKREF, (m, esc, chars, first, rest, index) => {
if (first === '\\') {
backslashes = true;
return m;
}
if (first === '?') {
if (esc) {
return esc + first + (rest ? QMARK.repeat(rest.length) : '');
}
if (index === 0) {
return qmarkNoDot + (rest ? QMARK.repeat(rest.length) : '');
}
return QMARK.repeat(chars.length);
}
if (first === '.') {
return DOT_LITERAL.repeat(chars.length);
}
if (first === '*') {
if (esc) {
return esc + first + (rest ? star : '');
}
return star;
}
return esc ? m : `\\${m}`;
});
if (backslashes === true) {
if (opts.unescape === true) {
output = output.replace(/\\/g, '');
} else {
output = output.replace(/\\+/g, m => {
return m.length % 2 === 0 ? '\\\\' : (m ? '\\' : '');
});
}
}
if (output === input && opts.contains === true) {
state.output = input;
return state;
}
state.output = utils.wrapOutput(output, state, options);
return state;
}
/**
* Tokenize input until we reach end-of-string
*/
while (!eos()) {
value = advance();
if (value === '\u0000') {
continue;
}
/**
* Escaped characters
*/
if (value === '\\') {
const next = peek();
if (next === '/' && opts.bash !== true) {
continue;
}
if (next === '.' || next === ';') {
continue;
}
if (!next) {
value += '\\';
push({ type: 'text', value });
continue;
}
// collapse slashes to reduce potential for exploits
const match = /^\\+/.exec(remaining());
let slashes = 0;
if (match && match[0].length > 2) {
slashes = match[0].length;
state.index += slashes;
if (slashes % 2 !== 0) {
value += '\\';
}
}
if (opts.unescape === true) {
value = advance();
} else {
value += advance();
}
if (state.brackets === 0) {
push({ type: 'text', value });
continue;
}
}
/**
* If we're inside a regex character class, continue
* until we reach the closing bracket.
*/
if (state.brackets > 0 && (value !== ']' || prev.value === '[' || prev.value === '[^')) {
if (opts.posix !== false && value === ':') {
const inner = prev.value.slice(1);
if (inner.includes('[')) {
prev.posix = true;
if (inner.includes(':')) {
const idx = prev.value.lastIndexOf('[');
const pre = prev.value.slice(0, idx);
const rest = prev.value.slice(idx + 2);
const posix = POSIX_REGEX_SOURCE[rest];
if (posix) {
prev.value = pre + posix;
state.backtrack = true;
advance();
if (!bos.output && tokens.indexOf(prev) === 1) {
bos.output = ONE_CHAR;
}
continue;
}
}
}
}
if ((value === '[' && peek() !== ':') || (value === '-' && peek() === ']')) {
value = `\\${value}`;
}
if (value === ']' && (prev.value === '[' || prev.value === '[^')) {
value = `\\${value}`;
}
if (opts.posix === true && value === '!' && prev.value === '[') {
value = '^';
}
prev.value += value;
append({ value });
continue;
}
/**
* If we're inside a quoted string, continue
* until we reach the closing double quote.
*/
if (state.quotes === 1 && value !== '"') {
value = utils.escapeRegex(value);
prev.value += value;
append({ value });
continue;
}
/**
* Double quotes
*/
if (value === '"') {
state.quotes = state.quotes === 1 ? 0 : 1;
if (opts.keepQuotes === true) {
push({ type: 'text', value });
}
continue;
}
/**
* Parentheses
*/
if (value === '(') {
increment('parens');
push({ type: 'paren', value });
continue;
}
if (value === ')') {
if (state.parens === 0 && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '('));
}
const extglob = extglobs[extglobs.length - 1];
if (extglob && state.parens === extglob.parens + 1) {
extglobClose(extglobs.pop());
continue;
}
push({ type: 'paren', value, output: state.parens ? ')' : '\\)' });
decrement('parens');
continue;
}
/**
* Square brackets
*/
if (value === '[') {
if (opts.nobracket === true || !remaining().includes(']')) {
if (opts.nobracket !== true && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('closing', ']'));
}
value = `\\${value}`;
} else {
increment('brackets');
}
push({ type: 'bracket', value });
continue;
}
if (value === ']') {
if (opts.nobracket === true || (prev && prev.type === 'bracket' && prev.value.length === 1)) {
push({ type: 'text', value, output: `\\${value}` });
continue;
}
if (state.brackets === 0) {
if (opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '['));
}
push({ type: 'text', value, output: `\\${value}` });
continue;
}
decrement('brackets');
const prevValue = prev.value.slice(1);
if (prev.posix !== true && prevValue[0] === '^' && !prevValue.includes('/')) {
value = `/${value}`;
}
prev.value += value;
append({ value });
// when literal brackets are explicitly disabled
// assume we should match with a regex character class
if (opts.literalBrackets === false || utils.hasRegexChars(prevValue)) {
continue;
}
const escaped = utils.escapeRegex(prev.value);
state.output = state.output.slice(0, -prev.value.length);
// when literal brackets are explicitly enabled
// assume we should escape the brackets to match literal characters
if (opts.literalBrackets === true) {
state.output += escaped;
prev.value = escaped;
continue;
}
// when the user specifies nothing, try to match both
prev.value = `(${capture}${escaped}|${prev.value})`;
state.output += prev.value;
continue;
}
/**
* Braces
*/
if (value === '{' && opts.nobrace !== true) {
increment('braces');
const open = {
type: 'brace',
value,
output: '(',
outputIndex: state.output.length,
tokensIndex: state.tokens.length
};
braces.push(open);
push(open);
continue;
}
if (value === '}') {
const brace = braces[braces.length - 1];
if (opts.nobrace === true || !brace) {
push({ type: 'text', value, output: value });
continue;
}
let output = ')';
if (brace.dots === true) {
const arr = tokens.slice();
const range = [];
for (let i = arr.length - 1; i >= 0; i--) {
tokens.pop();
if (arr[i].type === 'brace') {
break;
}
if (arr[i].type !== 'dots') {
range.unshift(arr[i].value);
}
}
output = expandRange(range, opts);
state.backtrack = true;
}
if (brace.comma !== true && brace.dots !== true) {
const out = state.output.slice(0, brace.outputIndex);
const toks = state.tokens.slice(brace.tokensIndex);
brace.value = brace.output = '\\{';
value = output = '\\}';
state.output = out;
for (const t of toks) {
state.output += (t.output || t.value);
}
}
push({ type: 'brace', value, output });
decrement('braces');
braces.pop();
continue;
}
/**
* Pipes
*/
if (value === '|') {
if (extglobs.length > 0) {
extglobs[extglobs.length - 1].conditions++;
}
push({ type: 'text', value });
continue;
}
/**
* Commas
*/
if (value === ',') {
let output = value;
const brace = braces[braces.length - 1];
if (brace && stack[stack.length - 1] === 'braces') {
brace.comma = true;
output = '|';
}
push({ type: 'comma', value, output });
continue;
}
/**
* Slashes
*/
if (value === '/') {
// if the beginning of the glob is "./", advance the start
// to the current index, and don't add the "./" characters
// to the state. This greatly simplifies lookbehinds when
// checking for BOS characters like "!" and "." (not "./")
if (prev.type === 'dot' && state.index === state.start + 1) {
state.start = state.index + 1;
state.consumed = '';
state.output = '';
tokens.pop();
prev = bos; // reset "prev" to the first token
continue;
}
push({ type: 'slash', value, output: SLASH_LITERAL });
continue;
}
/**
* Dots
*/
if (value === '.') {
if (state.braces > 0 && prev.type === 'dot') {
if (prev.value === '.') prev.output = DOT_LITERAL;
const brace = braces[braces.length - 1];
prev.type = 'dots';
prev.output += value;
prev.value += value;
brace.dots = true;
continue;
}
if ((state.braces + state.parens) === 0 && prev.type !== 'bos' && prev.type !== 'slash') {
push({ type: 'text', value, output: DOT_LITERAL });
continue;
}
push({ type: 'dot', value, output: DOT_LITERAL });
continue;
}
/**
* Question marks
*/
if (value === '?') {
const isGroup = prev && prev.value === '(';
if (!isGroup && opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('qmark', value);
continue;
}
if (prev && prev.type === 'paren') {
const next = peek();
let output = value;
if (next === '<' && !utils.supportsLookbehinds()) {
throw new Error('Node.js v10 or higher is required for regex lookbehinds');
}
if ((prev.value === '(' && !/[!=<:]/.test(next)) || (next === '<' && !/<([!=]|\w+>)/.test(remaining()))) {
output = `\\${value}`;
}
push({ type: 'text', value, output });
continue;
}
if (opts.dot !== true && (prev.type === 'slash' || prev.type === 'bos')) {
push({ type: 'qmark', value, output: QMARK_NO_DOT });
continue;
}
push({ type: 'qmark', value, output: QMARK });
continue;
}
/**
* Exclamation
*/
if (value === '!') {
if (opts.noextglob !== true && peek() === '(') {
if (peek(2) !== '?' || !/[!=<:]/.test(peek(3))) {
extglobOpen('negate', value);
continue;
}
}
if (opts.nonegate !== true && state.index === 0) {
negate();
continue;
}
}
/**
* Plus
*/
if (value === '+') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('plus', value);
continue;
}
if ((prev && prev.value === '(') || opts.regex === false) {
push({ type: 'plus', value, output: PLUS_LITERAL });
continue;
}
if ((prev && (prev.type === 'bracket' || prev.type === 'paren' || prev.type === 'brace')) || state.parens > 0) {
push({ type: 'plus', value });
continue;
}
push({ type: 'plus', value: PLUS_LITERAL });
continue;
}
/**
* Plain text
*/
if (value === '@') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
push({ type: 'at', extglob: true, value, output: '' });
continue;
}
push({ type: 'text', value });
continue;
}
/**
* Plain text
*/
if (value !== '*') {
if (value === '$' || value === '^') {
value = `\\${value}`;
}
const match = REGEX_NON_SPECIAL_CHARS.exec(remaining());
if (match) {
value += match[0];
state.index += match[0].length;
}
push({ type: 'text', value });
continue;
}
/**
* Stars
*/
if (prev && (prev.type === 'globstar' || prev.star === true)) {
prev.type = 'star';
prev.star = true;
prev.value += value;
prev.output = star;
state.backtrack = true;
state.globstar = true;
consume(value);
continue;
}
let rest = remaining();
if (opts.noextglob !== true && /^\([^?]/.test(rest)) {
extglobOpen('star', value);
continue;
}
if (prev.type === 'star') {
if (opts.noglobstar === true) {
consume(value);
continue;
}
const prior = prev.prev;
const before = prior.prev;
const isStart = prior.type === 'slash' || prior.type === 'bos';
const afterStar = before && (before.type === 'star' || before.type === 'globstar');
if (opts.bash === true && (!isStart || (rest[0] && rest[0] !== '/'))) {
push({ type: 'star', value, output: '' });
continue;
}
const isBrace = state.braces > 0 && (prior.type === 'comma' || prior.type === 'brace');
const isExtglob = extglobs.length && (prior.type === 'pipe' || prior.type === 'paren');
if (!isStart && prior.type !== 'paren' && !isBrace && !isExtglob) {
push({ type: 'star', value, output: '' });
continue;
}
// strip consecutive `/**/`
while (rest.slice(0, 3) === '/**') {
const after = input[state.index + 4];
if (after && after !== '/') {
break;
}
rest = rest.slice(3);
consume('/**', 3);
}
if (prior.type === 'bos' && eos()) {
prev.type = 'globstar';
prev.value += value;
prev.output = globstar(opts);
state.output = prev.output;
state.globstar = true;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && !afterStar && eos()) {
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = globstar(opts) + (opts.strictSlashes ? ')' : '|$)');
prev.value += value;
state.globstar = true;
state.output += prior.output + prev.output;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && rest[0] === '/') {
const end = rest[1] !== void 0 ? '|$' : '';
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = `${globstar(opts)}${SLASH_LITERAL}|${SLASH_LITERAL}${end})`;
prev.value += value;
state.output += prior.output + prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
if (prior.type === 'bos' && rest[0] === '/') {
prev.type = 'globstar';
prev.value += value;
prev.output = `(?:^|${SLASH_LITERAL}|${globstar(opts)}${SLASH_LITERAL})`;
state.output = prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
// remove single star from output
state.output = state.output.slice(0, -prev.output.length);
// reset previous token to globstar
prev.type = 'globstar';
prev.output = globstar(opts);
prev.value += value;
// reset output with globstar
state.output += prev.output;
state.globstar = true;
consume(value);
continue;
}
const token = { type: 'star', value, output: star };
if (opts.bash === true) {
token.output = '.*?';
if (prev.type === 'bos' || prev.type === 'slash') {
token.output = nodot + token.output;
}
push(token);
continue;
}
if (prev && (prev.type === 'bracket' || prev.type === 'paren') && opts.regex === true) {
token.output = value;
push(token);
continue;
}
if (state.index === state.start || prev.type === 'slash' || prev.type === 'dot') {
if (prev.type === 'dot') {
state.output += NO_DOT_SLASH;
prev.output += NO_DOT_SLASH;
} else if (opts.dot === true) {
state.output += NO_DOTS_SLASH;
prev.output += NO_DOTS_SLASH;
} else {
state.output += nodot;
prev.output += nodot;
}
if (peek() !== '*') {
state.output += ONE_CHAR;
prev.output += ONE_CHAR;
}
}
push(token);
}
while (state.brackets > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ']'));
state.output = utils.escapeLast(state.output, '[');
decrement('brackets');
}
while (state.parens > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ')'));
state.output = utils.escapeLast(state.output, '(');
decrement('parens');
}
while (state.braces > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', '}'));
state.output = utils.escapeLast(state.output, '{');
decrement('braces');
}
if (opts.strictSlashes !== true && (prev.type === 'star' || prev.type === 'bracket')) {
push({ type: 'maybe_slash', value: '', output: `${SLASH_LITERAL}?` });
}
// rebuild the output if we had to backtrack at any point
if (state.backtrack === true) {
state.output = '';
for (const token of state.tokens) {
state.output += token.output != null ? token.output : token.value;
if (token.suffix) {
state.output += token.suffix;
}
}
}
return state;
};
/**
* Fast paths for creating regular expressions for common glob patterns.
* This can significantly speed up processing and has very little downside
* impact when none of the fast paths match.
*/
parse.fastpaths = (input, options) => {
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
const len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
input = REPLACEMENTS[input] || input;
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const {
DOT_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOTS_SLASH,
STAR,
START_ANCHOR
} = constants.globChars(win32);
const nodot = opts.dot ? NO_DOTS : NO_DOT;
const slashDot = opts.dot ? NO_DOTS_SLASH : NO_DOT;
const capture = opts.capture ? '' : '?:';
const state = { negated: false, prefix: '' };
let star = opts.bash === true ? '.*?' : STAR;
if (opts.capture) {
star = `(${star})`;
}
const globstar = opts => {
if (opts.noglobstar === true) return star;
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const create = str => {
switch (str) {
case '*':
return `${nodot}${ONE_CHAR}${star}`;
case '.*':
return `${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*.*':
return `${nodot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*/*':
return `${nodot}${star}${SLASH_LITERAL}${ONE_CHAR}${slashDot}${star}`;
case '**':
return nodot + globstar(opts);
case '**/*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${ONE_CHAR}${star}`;
case '**/*.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '**/.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${DOT_LITERAL}${ONE_CHAR}${star}`;
default: {
const match = /^(.*?)\.(\w+)$/.exec(str);
if (!match) return;
const source = create(match[1]);
if (!source) return;
return source + DOT_LITERAL + match[2];
}
}
};
const output = utils.removePrefix(input, state);
let source = create(output);
if (source && opts.strictSlashes !== true) {
source += `${SLASH_LITERAL}?`;
}
return source;
};
parse_1$2 = parse;
return parse_1$2;
}
var picomatch_1$1;
var hasRequiredPicomatch$3;
function requirePicomatch$3 () {
if (hasRequiredPicomatch$3) return picomatch_1$1;
hasRequiredPicomatch$3 = 1;
const path = require$$0$1;
const scan = /*@__PURE__*/ requireScan$1();
const parse = /*@__PURE__*/ requireParse$2();
const utils = /*@__PURE__*/ requireUtils$2();
const constants = /*@__PURE__*/ requireConstants$3();
const isObject = val => val && typeof val === 'object' && !Array.isArray(val);
/**
* Creates a matcher function from one or more glob patterns. The
* returned function takes a string to match as its first argument,
* and returns true if the string is a match. The returned matcher
* function also takes a boolean as the second argument that, when true,
* returns an object with additional information.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch(glob[, options]);
*
* const isMatch = picomatch('*.!(*a)');
* console.log(isMatch('a.a')); //=> false
* console.log(isMatch('a.b')); //=> true
* ```
* @name picomatch
* @param {String|Array} `globs` One or more glob patterns.
* @param {Object=} `options`
* @return {Function=} Returns a matcher function.
* @api public
*/
const picomatch = (glob, options, returnState = false) => {
if (Array.isArray(glob)) {
const fns = glob.map(input => picomatch(input, options, returnState));
const arrayMatcher = str => {
for (const isMatch of fns) {
const state = isMatch(str);
if (state) return state;
}
return false;
};
return arrayMatcher;
}
const isState = isObject(glob) && glob.tokens && glob.input;
if (glob === '' || (typeof glob !== 'string' && !isState)) {
throw new TypeError('Expected pattern to be a non-empty string');
}
const opts = options || {};
const posix = utils.isWindows(options);
const regex = isState
? picomatch.compileRe(glob, options)
: picomatch.makeRe(glob, options, false, true);
const state = regex.state;
delete regex.state;
let isIgnored = () => false;
if (opts.ignore) {
const ignoreOpts = { ...options, ignore: null, onMatch: null, onResult: null };
isIgnored = picomatch(opts.ignore, ignoreOpts, returnState);
}
const matcher = (input, returnObject = false) => {
const { isMatch, match, output } = picomatch.test(input, regex, options, { glob, posix });
const result = { glob, state, regex, posix, input, output, match, isMatch };
if (typeof opts.onResult === 'function') {
opts.onResult(result);
}
if (isMatch === false) {
result.isMatch = false;
return returnObject ? result : false;
}
if (isIgnored(input)) {
if (typeof opts.onIgnore === 'function') {
opts.onIgnore(result);
}
result.isMatch = false;
return returnObject ? result : false;
}
if (typeof opts.onMatch === 'function') {
opts.onMatch(result);
}
return returnObject ? result : true;
};
if (returnState) {
matcher.state = state;
}
return matcher;
};
/**
* Test `input` with the given `regex`. This is used by the main
* `picomatch()` function to test the input string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.test(input, regex[, options]);
*
* console.log(picomatch.test('foo/bar', /^(?:([^/]*?)\/([^/]*?))$/));
* // { isMatch: true, match: [ 'foo/', 'foo', 'bar' ], output: 'foo/bar' }
* ```
* @param {String} `input` String to test.
* @param {RegExp} `regex`
* @return {Object} Returns an object with matching info.
* @api public
*/
picomatch.test = (input, regex, options, { glob, posix } = {}) => {
if (typeof input !== 'string') {
throw new TypeError('Expected input to be a string');
}
if (input === '') {
return { isMatch: false, output: '' };
}
const opts = options || {};
const format = opts.format || (posix ? utils.toPosixSlashes : null);
let match = input === glob;
let output = (match && format) ? format(input) : input;
if (match === false) {
output = format ? format(input) : input;
match = output === glob;
}
if (match === false || opts.capture === true) {
if (opts.matchBase === true || opts.basename === true) {
match = picomatch.matchBase(input, regex, options, posix);
} else {
match = regex.exec(output);
}
}
return { isMatch: Boolean(match), match, output };
};
/**
* Match the basename of a filepath.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.matchBase(input, glob[, options]);
* console.log(picomatch.matchBase('foo/bar.js', '*.js'); // true
* ```
* @param {String} `input` String to test.
* @param {RegExp|String} `glob` Glob pattern or regex created by [.makeRe](#makeRe).
* @return {Boolean}
* @api public
*/
picomatch.matchBase = (input, glob, options, posix = utils.isWindows(options)) => {
const regex = glob instanceof RegExp ? glob : picomatch.makeRe(glob, options);
return regex.test(path.basename(input));
};
/**
* Returns true if **any** of the given glob `patterns` match the specified `string`.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.isMatch(string, patterns[, options]);
*
* console.log(picomatch.isMatch('a.a', ['b.*', '*.a'])); //=> true
* console.log(picomatch.isMatch('a.a', 'b.*')); //=> false
* ```
* @param {String|Array} str The string to test.
* @param {String|Array} patterns One or more glob patterns to use for matching.
* @param {Object} [options] See available [options](#options).
* @return {Boolean} Returns true if any patterns match `str`
* @api public
*/
picomatch.isMatch = (str, patterns, options) => picomatch(patterns, options)(str);
/**
* Parse a glob pattern to create the source string for a regular
* expression.
*
* ```js
* const picomatch = require('picomatch');
* const result = picomatch.parse(pattern[, options]);
* ```
* @param {String} `pattern`
* @param {Object} `options`
* @return {Object} Returns an object with useful properties and output to be used as a regex source string.
* @api public
*/
picomatch.parse = (pattern, options) => {
if (Array.isArray(pattern)) return pattern.map(p => picomatch.parse(p, options));
return parse(pattern, { ...options, fastpaths: false });
};
/**
* Scan a glob pattern to separate the pattern into segments.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.scan(input[, options]);
*
* const result = picomatch.scan('!./foo/*.js');
* console.log(result);
* { prefix: '!./',
* input: '!./foo/*.js',
* start: 3,
* base: 'foo',
* glob: '*.js',
* isBrace: false,
* isBracket: false,
* isGlob: true,
* isExtglob: false,
* isGlobstar: false,
* negated: true }
* ```
* @param {String} `input` Glob pattern to scan.
* @param {Object} `options`
* @return {Object} Returns an object with
* @api public
*/
picomatch.scan = (input, options) => scan(input, options);
/**
* Compile a regular expression from the `state` object returned by the
* [parse()](#parse) method.
*
* @param {Object} `state`
* @param {Object} `options`
* @param {Boolean} `returnOutput` Intended for implementors, this argument allows you to return the raw output from the parser.
* @param {Boolean} `returnState` Adds the state to a `state` property on the returned regex. Useful for implementors and debugging.
* @return {RegExp}
* @api public
*/
picomatch.compileRe = (state, options, returnOutput = false, returnState = false) => {
if (returnOutput === true) {
return state.output;
}
const opts = options || {};
const prepend = opts.contains ? '' : '^';
const append = opts.contains ? '' : '$';
let source = `${prepend}(?:${state.output})${append}`;
if (state && state.negated === true) {
source = `^(?!${source}).*$`;
}
const regex = picomatch.toRegex(source, options);
if (returnState === true) {
regex.state = state;
}
return regex;
};
/**
* Create a regular expression from a parsed glob pattern.
*
* ```js
* const picomatch = require('picomatch');
* const state = picomatch.parse('*.js');
* // picomatch.compileRe(state[, options]);
*
* console.log(picomatch.compileRe(state));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `state` The object returned from the `.parse` method.
* @param {Object} `options`
* @param {Boolean} `returnOutput` Implementors may use this argument to return the compiled output, instead of a regular expression. This is not exposed on the options to prevent end-users from mutating the result.
* @param {Boolean} `returnState` Implementors may use this argument to return the state from the parsed glob with the returned regular expression.
* @return {RegExp} Returns a regex created from the given pattern.
* @api public
*/
picomatch.makeRe = (input, options = {}, returnOutput = false, returnState = false) => {
if (!input || typeof input !== 'string') {
throw new TypeError('Expected a non-empty string');
}
let parsed = { negated: false, fastpaths: true };
if (options.fastpaths !== false && (input[0] === '.' || input[0] === '*')) {
parsed.output = parse.fastpaths(input, options);
}
if (!parsed.output) {
parsed = parse(input, options);
}
return picomatch.compileRe(parsed, options, returnOutput, returnState);
};
/**
* Create a regular expression from the given regex source string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.toRegex(source[, options]);
*
* const { output } = picomatch.parse('*.js');
* console.log(picomatch.toRegex(output));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `source` Regular expression source string.
* @param {Object} `options`
* @return {RegExp}
* @api public
*/
picomatch.toRegex = (source, options) => {
try {
const opts = options || {};
return new RegExp(source, opts.flags || (opts.nocase ? 'i' : ''));
} catch (err) {
if (options && options.debug === true) throw err;
return /$^/;
}
};
/**
* Picomatch constants.
* @return {Object}
*/
picomatch.constants = constants;
/**
* Expose "picomatch"
*/
picomatch_1$1 = picomatch;
return picomatch_1$1;
}
var picomatch$1;
var hasRequiredPicomatch$2;
function requirePicomatch$2 () {
if (hasRequiredPicomatch$2) return picomatch$1;
hasRequiredPicomatch$2 = 1;
picomatch$1 = /*@__PURE__*/ requirePicomatch$3();
return picomatch$1;
}
var readdirp_1;
var hasRequiredReaddirp;
function requireReaddirp () {
if (hasRequiredReaddirp) return readdirp_1;
hasRequiredReaddirp = 1;
const fs = require$$0$2;
const { Readable } = require$$1;
const sysPath = require$$0$1;
const { promisify } = require$$2;
const picomatch = /*@__PURE__*/ requirePicomatch$2();
const readdir = promisify(fs.readdir);
const stat = promisify(fs.stat);
const lstat = promisify(fs.lstat);
const realpath = promisify(fs.realpath);
/**
* @typedef {Object} EntryInfo
* @property {String} path
* @property {String} fullPath
* @property {fs.Stats=} stats
* @property {fs.Dirent=} dirent
* @property {String} basename
*/
const BANG = '!';
const RECURSIVE_ERROR_CODE = 'READDIRP_RECURSIVE_ERROR';
const NORMAL_FLOW_ERRORS = new Set(['ENOENT', 'EPERM', 'EACCES', 'ELOOP', RECURSIVE_ERROR_CODE]);
const FILE_TYPE = 'files';
const DIR_TYPE = 'directories';
const FILE_DIR_TYPE = 'files_directories';
const EVERYTHING_TYPE = 'all';
const ALL_TYPES = [FILE_TYPE, DIR_TYPE, FILE_DIR_TYPE, EVERYTHING_TYPE];
const isNormalFlowError = error => NORMAL_FLOW_ERRORS.has(error.code);
const [maj, min] = process.versions.node.split('.').slice(0, 2).map(n => Number.parseInt(n, 10));
const wantBigintFsStats = process.platform === 'win32' && (maj > 10 || (maj === 10 && min >= 5));
const normalizeFilter = filter => {
if (filter === undefined) return;
if (typeof filter === 'function') return filter;
if (typeof filter === 'string') {
const glob = picomatch(filter.trim());
return entry => glob(entry.basename);
}
if (Array.isArray(filter)) {
const positive = [];
const negative = [];
for (const item of filter) {
const trimmed = item.trim();
if (trimmed.charAt(0) === BANG) {
negative.push(picomatch(trimmed.slice(1)));
} else {
positive.push(picomatch(trimmed));
}
}
if (negative.length > 0) {
if (positive.length > 0) {
return entry =>
positive.some(f => f(entry.basename)) && !negative.some(f => f(entry.basename));
}
return entry => !negative.some(f => f(entry.basename));
}
return entry => positive.some(f => f(entry.basename));
}
};
class ReaddirpStream extends Readable {
static get defaultOptions() {
return {
root: '.',
/* eslint-disable no-unused-vars */
fileFilter: (path) => true,
directoryFilter: (path) => true,
/* eslint-enable no-unused-vars */
type: FILE_TYPE,
lstat: false,
depth: 2147483648,
alwaysStat: false
};
}
constructor(options = {}) {
super({
objectMode: true,
autoDestroy: true,
highWaterMark: options.highWaterMark || 4096
});
const opts = { ...ReaddirpStream.defaultOptions, ...options };
const { root, type } = opts;
this._fileFilter = normalizeFilter(opts.fileFilter);
this._directoryFilter = normalizeFilter(opts.directoryFilter);
const statMethod = opts.lstat ? lstat : stat;
// Use bigint stats if it's windows and stat() supports options (node 10+).
if (wantBigintFsStats) {
this._stat = path => statMethod(path, { bigint: true });
} else {
this._stat = statMethod;
}
this._maxDepth = opts.depth;
this._wantsDir = [DIR_TYPE, FILE_DIR_TYPE, EVERYTHING_TYPE].includes(type);
this._wantsFile = [FILE_TYPE, FILE_DIR_TYPE, EVERYTHING_TYPE].includes(type);
this._wantsEverything = type === EVERYTHING_TYPE;
this._root = sysPath.resolve(root);
this._isDirent = ('Dirent' in fs) && !opts.alwaysStat;
this._statsProp = this._isDirent ? 'dirent' : 'stats';
this._rdOptions = { encoding: 'utf8', withFileTypes: this._isDirent };
// Launch stream with one parent, the root dir.
this.parents = [this._exploreDir(root, 1)];
this.reading = false;
this.parent = undefined;
}
async _read(batch) {
if (this.reading) return;
this.reading = true;
try {
while (!this.destroyed && batch > 0) {
const { path, depth, files = [] } = this.parent || {};
if (files.length > 0) {
const slice = files.splice(0, batch).map(dirent => this._formatEntry(dirent, path));
for (const entry of await Promise.all(slice)) {
if (this.destroyed) return;
const entryType = await this._getEntryType(entry);
if (entryType === 'directory' && this._directoryFilter(entry)) {
if (depth <= this._maxDepth) {
this.parents.push(this._exploreDir(entry.fullPath, depth + 1));
}
if (this._wantsDir) {
this.push(entry);
batch--;
}
} else if ((entryType === 'file' || this._includeAsFile(entry)) && this._fileFilter(entry)) {
if (this._wantsFile) {
this.push(entry);
batch--;
}
}
}
} else {
const parent = this.parents.pop();
if (!parent) {
this.push(null);
break;
}
this.parent = await parent;
if (this.destroyed) return;
}
}
} catch (error) {
this.destroy(error);
} finally {
this.reading = false;
}
}
async _exploreDir(path, depth) {
let files;
try {
files = await readdir(path, this._rdOptions);
} catch (error) {
this._onError(error);
}
return { files, depth, path };
}
async _formatEntry(dirent, path) {
let entry;
try {
const basename = this._isDirent ? dirent.name : dirent;
const fullPath = sysPath.resolve(sysPath.join(path, basename));
entry = { path: sysPath.relative(this._root, fullPath), fullPath, basename };
entry[this._statsProp] = this._isDirent ? dirent : await this._stat(fullPath);
} catch (err) {
this._onError(err);
}
return entry;
}
_onError(err) {
if (isNormalFlowError(err) && !this.destroyed) {
this.emit('warn', err);
} else {
this.destroy(err);
}
}
async _getEntryType(entry) {
// entry may be undefined, because a warning or an error were emitted
// and the statsProp is undefined
const stats = entry && entry[this._statsProp];
if (!stats) {
return;
}
if (stats.isFile()) {
return 'file';
}
if (stats.isDirectory()) {
return 'directory';
}
if (stats && stats.isSymbolicLink()) {
const full = entry.fullPath;
try {
const entryRealPath = await realpath(full);
const entryRealPathStats = await lstat(entryRealPath);
if (entryRealPathStats.isFile()) {
return 'file';
}
if (entryRealPathStats.isDirectory()) {
const len = entryRealPath.length;
if (full.startsWith(entryRealPath) && full.substr(len, 1) === sysPath.sep) {
const recursiveError = new Error(
`Circular symlink detected: "${full}" points to "${entryRealPath}"`
);
recursiveError.code = RECURSIVE_ERROR_CODE;
return this._onError(recursiveError);
}
return 'directory';
}
} catch (error) {
this._onError(error);
}
}
}
_includeAsFile(entry) {
const stats = entry && entry[this._statsProp];
return stats && this._wantsEverything && !stats.isDirectory();
}
}
/**
* @typedef {Object} ReaddirpArguments
* @property {Function=} fileFilter
* @property {Function=} directoryFilter
* @property {String=} type
* @property {Number=} depth
* @property {String=} root
* @property {Boolean=} lstat
* @property {Boolean=} bigint
*/
/**
* Main function which ends up calling readdirRec and reads all files and directories in given root recursively.
* @param {String} root Root directory
* @param {ReaddirpArguments=} options Options to specify root (start directory), filters and recursion depth
*/
const readdirp = (root, options = {}) => {
let type = options.entryType || options.type;
if (type === 'both') type = FILE_DIR_TYPE; // backwards-compatibility
if (type) options.type = type;
if (!root) {
throw new Error('readdirp: root argument is required. Usage: readdirp(root, options)');
} else if (typeof root !== 'string') {
throw new TypeError('readdirp: root argument must be a string. Usage: readdirp(root, options)');
} else if (type && !ALL_TYPES.includes(type)) {
throw new Error(`readdirp: Invalid type passed. Use one of ${ALL_TYPES.join(', ')}`);
}
options.root = root;
return new ReaddirpStream(options);
};
const readdirpPromise = (root, options = {}) => {
return new Promise((resolve, reject) => {
const files = [];
readdirp(root, options)
.on('data', entry => files.push(entry))
.on('end', () => resolve(files))
.on('error', error => reject(error));
});
};
readdirp.promise = readdirpPromise;
readdirp.ReaddirpStream = ReaddirpStream;
readdirp.default = readdirp;
readdirp_1 = readdirp;
return readdirp_1;
}
var anymatch = {exports: {}};
var utils$1 = {};
var constants$2;
var hasRequiredConstants$2;
function requireConstants$2 () {
if (hasRequiredConstants$2) return constants$2;
hasRequiredConstants$2 = 1;
const path = require$$0$1;
const WIN_SLASH = '\\\\/';
const WIN_NO_SLASH = `[^${WIN_SLASH}]`;
const DEFAULT_MAX_EXTGLOB_RECURSION = 0;
/**
* Posix glob regex
*/
const DOT_LITERAL = '\\.';
const PLUS_LITERAL = '\\+';
const QMARK_LITERAL = '\\?';
const SLASH_LITERAL = '\\/';
const ONE_CHAR = '(?=.)';
const QMARK = '[^/]';
const END_ANCHOR = `(?:${SLASH_LITERAL}|$)`;
const START_ANCHOR = `(?:^|${SLASH_LITERAL})`;
const DOTS_SLASH = `${DOT_LITERAL}{1,2}${END_ANCHOR}`;
const NO_DOT = `(?!${DOT_LITERAL})`;
const NO_DOTS = `(?!${START_ANCHOR}${DOTS_SLASH})`;
const NO_DOT_SLASH = `(?!${DOT_LITERAL}{0,1}${END_ANCHOR})`;
const NO_DOTS_SLASH = `(?!${DOTS_SLASH})`;
const QMARK_NO_DOT = `[^.${SLASH_LITERAL}]`;
const STAR = `${QMARK}*?`;
const POSIX_CHARS = {
DOT_LITERAL,
PLUS_LITERAL,
QMARK_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
QMARK,
END_ANCHOR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK_NO_DOT,
STAR,
START_ANCHOR
};
/**
* Windows glob regex
*/
const WINDOWS_CHARS = {
...POSIX_CHARS,
SLASH_LITERAL: `[${WIN_SLASH}]`,
QMARK: WIN_NO_SLASH,
STAR: `${WIN_NO_SLASH}*?`,
DOTS_SLASH: `${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$)`,
NO_DOT: `(?!${DOT_LITERAL})`,
NO_DOTS: `(?!(?:^|[${WIN_SLASH}])${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
NO_DOT_SLASH: `(?!${DOT_LITERAL}{0,1}(?:[${WIN_SLASH}]|$))`,
NO_DOTS_SLASH: `(?!${DOT_LITERAL}{1,2}(?:[${WIN_SLASH}]|$))`,
QMARK_NO_DOT: `[^.${WIN_SLASH}]`,
START_ANCHOR: `(?:^|[${WIN_SLASH}])`,
END_ANCHOR: `(?:[${WIN_SLASH}]|$)`
};
/**
* POSIX Bracket Regex
*/
const POSIX_REGEX_SOURCE = {
__proto__: null,
alnum: 'a-zA-Z0-9',
alpha: 'a-zA-Z',
ascii: '\\x00-\\x7F',
blank: ' \\t',
cntrl: '\\x00-\\x1F\\x7F',
digit: '0-9',
graph: '\\x21-\\x7E',
lower: 'a-z',
print: '\\x20-\\x7E ',
punct: '\\-!"#$%&\'()\\*+,./:;<=>?@[\\]^_`{|}~',
space: ' \\t\\r\\n\\v\\f',
upper: 'A-Z',
word: 'A-Za-z0-9_',
xdigit: 'A-Fa-f0-9'
};
constants$2 = {
DEFAULT_MAX_EXTGLOB_RECURSION,
MAX_LENGTH: 1024 * 64,
POSIX_REGEX_SOURCE,
// regular expressions
REGEX_BACKSLASH: /\\(?![*+?^${}(|)[\]])/g,
REGEX_NON_SPECIAL_CHARS: /^[^@![\].,$*+?^{}()|\\/]+/,
REGEX_SPECIAL_CHARS: /[-*+?.^${}(|)[\]]/,
REGEX_SPECIAL_CHARS_BACKREF: /(\\?)((\W)(\3*))/g,
REGEX_SPECIAL_CHARS_GLOBAL: /([-*+?.^${}(|)[\]])/g,
REGEX_REMOVE_BACKSLASH: /(?:\[.*?[^\\]\]|\\(?=.))/g,
// Replace globs with equivalent patterns to reduce parsing time.
REPLACEMENTS: {
__proto__: null,
'***': '*',
'**/**': '**',
'**/**/**': '**'
},
// Digits
CHAR_0: 48, /* 0 */
CHAR_9: 57, /* 9 */
// Alphabet chars.
CHAR_UPPERCASE_A: 65, /* A */
CHAR_LOWERCASE_A: 97, /* a */
CHAR_UPPERCASE_Z: 90, /* Z */
CHAR_LOWERCASE_Z: 122, /* z */
CHAR_LEFT_PARENTHESES: 40, /* ( */
CHAR_RIGHT_PARENTHESES: 41, /* ) */
CHAR_ASTERISK: 42, /* * */
// Non-alphabetic chars.
CHAR_AMPERSAND: 38, /* & */
CHAR_AT: 64, /* @ */
CHAR_BACKWARD_SLASH: 92, /* \ */
CHAR_CARRIAGE_RETURN: 13, /* \r */
CHAR_CIRCUMFLEX_ACCENT: 94, /* ^ */
CHAR_COLON: 58, /* : */
CHAR_COMMA: 44, /* , */
CHAR_DOT: 46, /* . */
CHAR_DOUBLE_QUOTE: 34, /* " */
CHAR_EQUAL: 61, /* = */
CHAR_EXCLAMATION_MARK: 33, /* ! */
CHAR_FORM_FEED: 12, /* \f */
CHAR_FORWARD_SLASH: 47, /* / */
CHAR_GRAVE_ACCENT: 96, /* ` */
CHAR_HASH: 35, /* # */
CHAR_HYPHEN_MINUS: 45, /* - */
CHAR_LEFT_ANGLE_BRACKET: 60, /* < */
CHAR_LEFT_CURLY_BRACE: 123, /* { */
CHAR_LEFT_SQUARE_BRACKET: 91, /* [ */
CHAR_LINE_FEED: 10, /* \n */
CHAR_NO_BREAK_SPACE: 160, /* \u00A0 */
CHAR_PERCENT: 37, /* % */
CHAR_PLUS: 43, /* + */
CHAR_QUESTION_MARK: 63, /* ? */
CHAR_RIGHT_ANGLE_BRACKET: 62, /* > */
CHAR_RIGHT_CURLY_BRACE: 125, /* } */
CHAR_RIGHT_SQUARE_BRACKET: 93, /* ] */
CHAR_SEMICOLON: 59, /* ; */
CHAR_SINGLE_QUOTE: 39, /* ' */
CHAR_SPACE: 32, /* */
CHAR_TAB: 9, /* \t */
CHAR_UNDERSCORE: 95, /* _ */
CHAR_VERTICAL_LINE: 124, /* | */
CHAR_ZERO_WIDTH_NOBREAK_SPACE: 65279, /* \uFEFF */
SEP: path.sep,
/**
* Create EXTGLOB_CHARS
*/
extglobChars(chars) {
return {
'!': { type: 'negate', open: '(?:(?!(?:', close: `))${chars.STAR})` },
'?': { type: 'qmark', open: '(?:', close: ')?' },
'+': { type: 'plus', open: '(?:', close: ')+' },
'*': { type: 'star', open: '(?:', close: ')*' },
'@': { type: 'at', open: '(?:', close: ')' }
};
},
/**
* Create GLOB_CHARS
*/
globChars(win32) {
return win32 === true ? WINDOWS_CHARS : POSIX_CHARS;
}
};
return constants$2;
}
var hasRequiredUtils$1;
function requireUtils$1 () {
if (hasRequiredUtils$1) return utils$1;
hasRequiredUtils$1 = 1;
(function (exports) {
const path = require$$0$1;
const win32 = process.platform === 'win32';
const {
REGEX_BACKSLASH,
REGEX_REMOVE_BACKSLASH,
REGEX_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_GLOBAL
} = /*@__PURE__*/ requireConstants$2();
exports.isObject = val => val !== null && typeof val === 'object' && !Array.isArray(val);
exports.hasRegexChars = str => REGEX_SPECIAL_CHARS.test(str);
exports.isRegexChar = str => str.length === 1 && exports.hasRegexChars(str);
exports.escapeRegex = str => str.replace(REGEX_SPECIAL_CHARS_GLOBAL, '\\$1');
exports.toPosixSlashes = str => str.replace(REGEX_BACKSLASH, '/');
exports.removeBackslashes = str => {
return str.replace(REGEX_REMOVE_BACKSLASH, match => {
return match === '\\' ? '' : match;
});
};
exports.supportsLookbehinds = () => {
const segs = process.version.slice(1).split('.').map(Number);
if (segs.length === 3 && segs[0] >= 9 || (segs[0] === 8 && segs[1] >= 10)) {
return true;
}
return false;
};
exports.isWindows = options => {
if (options && typeof options.windows === 'boolean') {
return options.windows;
}
return win32 === true || path.sep === '\\';
};
exports.escapeLast = (input, char, lastIdx) => {
const idx = input.lastIndexOf(char, lastIdx);
if (idx === -1) return input;
if (input[idx - 1] === '\\') return exports.escapeLast(input, char, idx - 1);
return `${input.slice(0, idx)}\\${input.slice(idx)}`;
};
exports.removePrefix = (input, state = {}) => {
let output = input;
if (output.startsWith('./')) {
output = output.slice(2);
state.prefix = './';
}
return output;
};
exports.wrapOutput = (input, state = {}, options = {}) => {
const prepend = options.contains ? '' : '^';
const append = options.contains ? '' : '$';
let output = `${prepend}(?:${input})${append}`;
if (state.negated === true) {
output = `(?:^(?!${output}).*$)`;
}
return output;
};
} (utils$1));
return utils$1;
}
var scan_1;
var hasRequiredScan;
function requireScan () {
if (hasRequiredScan) return scan_1;
hasRequiredScan = 1;
const utils = /*@__PURE__*/ requireUtils$1();
const {
CHAR_ASTERISK, /* * */
CHAR_AT, /* @ */
CHAR_BACKWARD_SLASH, /* \ */
CHAR_COMMA, /* , */
CHAR_DOT, /* . */
CHAR_EXCLAMATION_MARK, /* ! */
CHAR_FORWARD_SLASH, /* / */
CHAR_LEFT_CURLY_BRACE, /* { */
CHAR_LEFT_PARENTHESES, /* ( */
CHAR_LEFT_SQUARE_BRACKET, /* [ */
CHAR_PLUS, /* + */
CHAR_QUESTION_MARK, /* ? */
CHAR_RIGHT_CURLY_BRACE, /* } */
CHAR_RIGHT_PARENTHESES, /* ) */
CHAR_RIGHT_SQUARE_BRACKET /* ] */
} = /*@__PURE__*/ requireConstants$2();
const isPathSeparator = code => {
return code === CHAR_FORWARD_SLASH || code === CHAR_BACKWARD_SLASH;
};
const depth = token => {
if (token.isPrefix !== true) {
token.depth = token.isGlobstar ? Infinity : 1;
}
};
/**
* Quickly scans a glob pattern and returns an object with a handful of
* useful properties, like `isGlob`, `path` (the leading non-glob, if it exists),
* `glob` (the actual pattern), `negated` (true if the path starts with `!` but not
* with `!(`) and `negatedExtglob` (true if the path starts with `!(`).
*
* ```js
* const pm = require('picomatch');
* console.log(pm.scan('foo/bar/*.js'));
* { isGlob: true, input: 'foo/bar/*.js', base: 'foo/bar', glob: '*.js' }
* ```
* @param {String} `str`
* @param {Object} `options`
* @return {Object} Returns an object with tokens and regex source string.
* @api public
*/
const scan = (input, options) => {
const opts = options || {};
const length = input.length - 1;
const scanToEnd = opts.parts === true || opts.scanToEnd === true;
const slashes = [];
const tokens = [];
const parts = [];
let str = input;
let index = -1;
let start = 0;
let lastIndex = 0;
let isBrace = false;
let isBracket = false;
let isGlob = false;
let isExtglob = false;
let isGlobstar = false;
let braceEscaped = false;
let backslashes = false;
let negated = false;
let negatedExtglob = false;
let finished = false;
let braces = 0;
let prev;
let code;
let token = { value: '', depth: 0, isGlob: false };
const eos = () => index >= length;
const peek = () => str.charCodeAt(index + 1);
const advance = () => {
prev = code;
return str.charCodeAt(++index);
};
while (index < length) {
code = advance();
let next;
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
if (code === CHAR_LEFT_CURLY_BRACE) {
braceEscaped = true;
}
continue;
}
if (braceEscaped === true || code === CHAR_LEFT_CURLY_BRACE) {
braces++;
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (code === CHAR_LEFT_CURLY_BRACE) {
braces++;
continue;
}
if (braceEscaped !== true && code === CHAR_DOT && (code = advance()) === CHAR_DOT) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (braceEscaped !== true && code === CHAR_COMMA) {
isBrace = token.isBrace = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_RIGHT_CURLY_BRACE) {
braces--;
if (braces === 0) {
braceEscaped = false;
isBrace = token.isBrace = true;
finished = true;
break;
}
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_FORWARD_SLASH) {
slashes.push(index);
tokens.push(token);
token = { value: '', depth: 0, isGlob: false };
if (finished === true) continue;
if (prev === CHAR_DOT && index === (start + 1)) {
start += 2;
continue;
}
lastIndex = index + 1;
continue;
}
if (opts.noext !== true) {
const isExtglobChar = code === CHAR_PLUS
|| code === CHAR_AT
|| code === CHAR_ASTERISK
|| code === CHAR_QUESTION_MARK
|| code === CHAR_EXCLAMATION_MARK;
if (isExtglobChar === true && peek() === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
isExtglob = token.isExtglob = true;
finished = true;
if (code === CHAR_EXCLAMATION_MARK && index === start) {
negatedExtglob = true;
}
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
isGlob = token.isGlob = true;
finished = true;
break;
}
}
continue;
}
break;
}
}
if (code === CHAR_ASTERISK) {
if (prev === CHAR_ASTERISK) isGlobstar = token.isGlobstar = true;
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_QUESTION_MARK) {
isGlob = token.isGlob = true;
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
if (code === CHAR_LEFT_SQUARE_BRACKET) {
while (eos() !== true && (next = advance())) {
if (next === CHAR_BACKWARD_SLASH) {
backslashes = token.backslashes = true;
advance();
continue;
}
if (next === CHAR_RIGHT_SQUARE_BRACKET) {
isBracket = token.isBracket = true;
isGlob = token.isGlob = true;
finished = true;
break;
}
}
if (scanToEnd === true) {
continue;
}
break;
}
if (opts.nonegate !== true && code === CHAR_EXCLAMATION_MARK && index === start) {
negated = token.negated = true;
start++;
continue;
}
if (opts.noparen !== true && code === CHAR_LEFT_PARENTHESES) {
isGlob = token.isGlob = true;
if (scanToEnd === true) {
while (eos() !== true && (code = advance())) {
if (code === CHAR_LEFT_PARENTHESES) {
backslashes = token.backslashes = true;
code = advance();
continue;
}
if (code === CHAR_RIGHT_PARENTHESES) {
finished = true;
break;
}
}
continue;
}
break;
}
if (isGlob === true) {
finished = true;
if (scanToEnd === true) {
continue;
}
break;
}
}
if (opts.noext === true) {
isExtglob = false;
isGlob = false;
}
let base = str;
let prefix = '';
let glob = '';
if (start > 0) {
prefix = str.slice(0, start);
str = str.slice(start);
lastIndex -= start;
}
if (base && isGlob === true && lastIndex > 0) {
base = str.slice(0, lastIndex);
glob = str.slice(lastIndex);
} else if (isGlob === true) {
base = '';
glob = str;
} else {
base = str;
}
if (base && base !== '' && base !== '/' && base !== str) {
if (isPathSeparator(base.charCodeAt(base.length - 1))) {
base = base.slice(0, -1);
}
}
if (opts.unescape === true) {
if (glob) glob = utils.removeBackslashes(glob);
if (base && backslashes === true) {
base = utils.removeBackslashes(base);
}
}
const state = {
prefix,
input,
start,
base,
glob,
isBrace,
isBracket,
isGlob,
isExtglob,
isGlobstar,
negated,
negatedExtglob
};
if (opts.tokens === true) {
state.maxDepth = 0;
if (!isPathSeparator(code)) {
tokens.push(token);
}
state.tokens = tokens;
}
if (opts.parts === true || opts.tokens === true) {
let prevIndex;
for (let idx = 0; idx < slashes.length; idx++) {
const n = prevIndex ? prevIndex + 1 : start;
const i = slashes[idx];
const value = input.slice(n, i);
if (opts.tokens) {
if (idx === 0 && start !== 0) {
tokens[idx].isPrefix = true;
tokens[idx].value = prefix;
} else {
tokens[idx].value = value;
}
depth(tokens[idx]);
state.maxDepth += tokens[idx].depth;
}
if (idx !== 0 || value !== '') {
parts.push(value);
}
prevIndex = i;
}
if (prevIndex && prevIndex + 1 < input.length) {
const value = input.slice(prevIndex + 1);
parts.push(value);
if (opts.tokens) {
tokens[tokens.length - 1].value = value;
depth(tokens[tokens.length - 1]);
state.maxDepth += tokens[tokens.length - 1].depth;
}
}
state.slashes = slashes;
state.parts = parts;
}
return state;
};
scan_1 = scan;
return scan_1;
}
var parse_1$1;
var hasRequiredParse$1;
function requireParse$1 () {
if (hasRequiredParse$1) return parse_1$1;
hasRequiredParse$1 = 1;
const constants = /*@__PURE__*/ requireConstants$2();
const utils = /*@__PURE__*/ requireUtils$1();
/**
* Constants
*/
const {
MAX_LENGTH,
POSIX_REGEX_SOURCE,
REGEX_NON_SPECIAL_CHARS,
REGEX_SPECIAL_CHARS_BACKREF,
REPLACEMENTS
} = constants;
/**
* Helpers
*/
const expandRange = (args, options) => {
if (typeof options.expandRange === 'function') {
return options.expandRange(...args, options);
}
args.sort();
const value = `[${args.join('-')}]`;
return value;
};
/**
* Create the message for a syntax error
*/
const syntaxError = (type, char) => {
return `Missing ${type}: "${char}" - use "\\\\${char}" to match literal characters`;
};
const splitTopLevel = input => {
const parts = [];
let bracket = 0;
let paren = 0;
let quote = 0;
let value = '';
let escaped = false;
for (const ch of input) {
if (escaped === true) {
value += ch;
escaped = false;
continue;
}
if (ch === '\\') {
value += ch;
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
value += ch;
continue;
}
if (quote === 0) {
if (ch === '[') {
bracket++;
} else if (ch === ']' && bracket > 0) {
bracket--;
} else if (bracket === 0) {
if (ch === '(') {
paren++;
} else if (ch === ')' && paren > 0) {
paren--;
} else if (ch === '|' && paren === 0) {
parts.push(value);
value = '';
continue;
}
}
}
value += ch;
}
parts.push(value);
return parts;
};
const isPlainBranch = branch => {
let escaped = false;
for (const ch of branch) {
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (/[?*+@!()[\]{}]/.test(ch)) {
return false;
}
}
return true;
};
const normalizeSimpleBranch = branch => {
let value = branch.trim();
let changed = true;
while (changed === true) {
changed = false;
if (/^@\([^\\()[\]{}|]+\)$/.test(value)) {
value = value.slice(2, -1);
changed = true;
}
}
if (!isPlainBranch(value)) {
return;
}
return value.replace(/\\(.)/g, '$1');
};
const hasRepeatedCharPrefixOverlap = branches => {
const values = branches.map(normalizeSimpleBranch).filter(Boolean);
for (let i = 0; i < values.length; i++) {
for (let j = i + 1; j < values.length; j++) {
const a = values[i];
const b = values[j];
const char = a[0];
if (!char || a !== char.repeat(a.length) || b !== char.repeat(b.length)) {
continue;
}
if (a === b || a.startsWith(b) || b.startsWith(a)) {
return true;
}
}
}
return false;
};
const parseRepeatedExtglob = (pattern, requireEnd = true) => {
if ((pattern[0] !== '+' && pattern[0] !== '*') || pattern[1] !== '(') {
return;
}
let bracket = 0;
let paren = 0;
let quote = 0;
let escaped = false;
for (let i = 1; i < pattern.length; i++) {
const ch = pattern[i];
if (escaped === true) {
escaped = false;
continue;
}
if (ch === '\\') {
escaped = true;
continue;
}
if (ch === '"') {
quote = quote === 1 ? 0 : 1;
continue;
}
if (quote === 1) {
continue;
}
if (ch === '[') {
bracket++;
continue;
}
if (ch === ']' && bracket > 0) {
bracket--;
continue;
}
if (bracket > 0) {
continue;
}
if (ch === '(') {
paren++;
continue;
}
if (ch === ')') {
paren--;
if (paren === 0) {
if (requireEnd === true && i !== pattern.length - 1) {
return;
}
return {
type: pattern[0],
body: pattern.slice(2, i),
end: i
};
}
}
}
};
const getStarExtglobSequenceOutput = pattern => {
let index = 0;
const chars = [];
while (index < pattern.length) {
const match = parseRepeatedExtglob(pattern.slice(index), false);
if (!match || match.type !== '*') {
return;
}
const branches = splitTopLevel(match.body).map(branch => branch.trim());
if (branches.length !== 1) {
return;
}
const branch = normalizeSimpleBranch(branches[0]);
if (!branch || branch.length !== 1) {
return;
}
chars.push(branch);
index += match.end + 1;
}
if (chars.length < 1) {
return;
}
const source = chars.length === 1
? utils.escapeRegex(chars[0])
: `[${chars.map(ch => utils.escapeRegex(ch)).join('')}]`;
return `${source}*`;
};
const repeatedExtglobRecursion = pattern => {
let depth = 0;
let value = pattern.trim();
let match = parseRepeatedExtglob(value);
while (match) {
depth++;
value = match.body.trim();
match = parseRepeatedExtglob(value);
}
return depth;
};
const analyzeRepeatedExtglob = (body, options) => {
if (options.maxExtglobRecursion === false) {
return { risky: false };
}
const max =
typeof options.maxExtglobRecursion === 'number'
? options.maxExtglobRecursion
: constants.DEFAULT_MAX_EXTGLOB_RECURSION;
const branches = splitTopLevel(body).map(branch => branch.trim());
if (branches.length > 1) {
if (
branches.some(branch => branch === '') ||
branches.some(branch => /^[*?]+$/.test(branch)) ||
hasRepeatedCharPrefixOverlap(branches)
) {
return { risky: true };
}
}
for (const branch of branches) {
const safeOutput = getStarExtglobSequenceOutput(branch);
if (safeOutput) {
return { risky: true, safeOutput };
}
if (repeatedExtglobRecursion(branch) > max) {
return { risky: true };
}
}
return { risky: false };
};
/**
* Parse the given input string.
* @param {String} input
* @param {Object} options
* @return {Object}
*/
const parse = (input, options) => {
if (typeof input !== 'string') {
throw new TypeError('Expected a string');
}
input = REPLACEMENTS[input] || input;
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
let len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
const bos = { type: 'bos', value: '', output: opts.prepend || '' };
const tokens = [bos];
const capture = opts.capture ? '' : '?:';
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const PLATFORM_CHARS = constants.globChars(win32);
const EXTGLOB_CHARS = constants.extglobChars(PLATFORM_CHARS);
const {
DOT_LITERAL,
PLUS_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOT_SLASH,
NO_DOTS_SLASH,
QMARK,
QMARK_NO_DOT,
STAR,
START_ANCHOR
} = PLATFORM_CHARS;
const globstar = opts => {
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const nodot = opts.dot ? '' : NO_DOT;
const qmarkNoDot = opts.dot ? QMARK : QMARK_NO_DOT;
let star = opts.bash === true ? globstar(opts) : STAR;
if (opts.capture) {
star = `(${star})`;
}
// minimatch options support
if (typeof opts.noext === 'boolean') {
opts.noextglob = opts.noext;
}
const state = {
input,
index: -1,
start: 0,
dot: opts.dot === true,
consumed: '',
output: '',
prefix: '',
backtrack: false,
negated: false,
brackets: 0,
braces: 0,
parens: 0,
quotes: 0,
globstar: false,
tokens
};
input = utils.removePrefix(input, state);
len = input.length;
const extglobs = [];
const braces = [];
const stack = [];
let prev = bos;
let value;
/**
* Tokenizing helpers
*/
const eos = () => state.index === len - 1;
const peek = state.peek = (n = 1) => input[state.index + n];
const advance = state.advance = () => input[++state.index] || '';
const remaining = () => input.slice(state.index + 1);
const consume = (value = '', num = 0) => {
state.consumed += value;
state.index += num;
};
const append = token => {
state.output += token.output != null ? token.output : token.value;
consume(token.value);
};
const negate = () => {
let count = 1;
while (peek() === '!' && (peek(2) !== '(' || peek(3) === '?')) {
advance();
state.start++;
count++;
}
if (count % 2 === 0) {
return false;
}
state.negated = true;
state.start++;
return true;
};
const increment = type => {
state[type]++;
stack.push(type);
};
const decrement = type => {
state[type]--;
stack.pop();
};
/**
* Push tokens onto the tokens array. This helper speeds up
* tokenizing by 1) helping us avoid backtracking as much as possible,
* and 2) helping us avoid creating extra tokens when consecutive
* characters are plain text. This improves performance and simplifies
* lookbehinds.
*/
const push = tok => {
if (prev.type === 'globstar') {
const isBrace = state.braces > 0 && (tok.type === 'comma' || tok.type === 'brace');
const isExtglob = tok.extglob === true || (extglobs.length && (tok.type === 'pipe' || tok.type === 'paren'));
if (tok.type !== 'slash' && tok.type !== 'paren' && !isBrace && !isExtglob) {
state.output = state.output.slice(0, -prev.output.length);
prev.type = 'star';
prev.value = '*';
prev.output = star;
state.output += prev.output;
}
}
if (extglobs.length && tok.type !== 'paren') {
extglobs[extglobs.length - 1].inner += tok.value;
}
if (tok.value || tok.output) append(tok);
if (prev && prev.type === 'text' && tok.type === 'text') {
prev.value += tok.value;
prev.output = (prev.output || '') + tok.value;
return;
}
tok.prev = prev;
tokens.push(tok);
prev = tok;
};
const extglobOpen = (type, value) => {
const token = { ...EXTGLOB_CHARS[value], conditions: 1, inner: '' };
token.prev = prev;
token.parens = state.parens;
token.output = state.output;
token.startIndex = state.index;
token.tokensIndex = tokens.length;
const output = (opts.capture ? '(' : '') + token.open;
increment('parens');
push({ type, value, output: state.output ? '' : ONE_CHAR });
push({ type: 'paren', extglob: true, value: advance(), output });
extglobs.push(token);
};
const extglobClose = token => {
const literal = input.slice(token.startIndex, state.index + 1);
const body = input.slice(token.startIndex + 2, state.index);
const analysis = analyzeRepeatedExtglob(body, opts);
if ((token.type === 'plus' || token.type === 'star') && analysis.risky) {
const safeOutput = analysis.safeOutput
? (token.output ? '' : ONE_CHAR) + (opts.capture ? `(${analysis.safeOutput})` : analysis.safeOutput)
: undefined;
const open = tokens[token.tokensIndex];
open.type = 'text';
open.value = literal;
open.output = safeOutput || utils.escapeRegex(literal);
for (let i = token.tokensIndex + 1; i < tokens.length; i++) {
tokens[i].value = '';
tokens[i].output = '';
delete tokens[i].suffix;
}
state.output = token.output + open.output;
state.backtrack = true;
push({ type: 'paren', extglob: true, value, output: '' });
decrement('parens');
return;
}
let output = token.close + (opts.capture ? ')' : '');
let rest;
if (token.type === 'negate') {
let extglobStar = star;
if (token.inner && token.inner.length > 1 && token.inner.includes('/')) {
extglobStar = globstar(opts);
}
if (extglobStar !== star || eos() || /^\)+$/.test(remaining())) {
output = token.close = `)$))${extglobStar}`;
}
if (token.inner.includes('*') && (rest = remaining()) && /^\.[^\\/.]+$/.test(rest)) {
// Any non-magical string (`.ts`) or even nested expression (`.{ts,tsx}`) can follow after the closing parenthesis.
// In this case, we need to parse the string and use it in the output of the original pattern.
// Suitable patterns: `/!(*.d).ts`, `/!(*.d).{ts,tsx}`, `**/!(*-dbg).@(js)`.
//
// Disabling the `fastpaths` option due to a problem with parsing strings as `.ts` in the pattern like `**/!(*.d).ts`.
const expression = parse(rest, { ...options, fastpaths: false }).output;
output = token.close = `)${expression})${extglobStar})`;
}
if (token.prev.type === 'bos') {
state.negatedExtglob = true;
}
}
push({ type: 'paren', extglob: true, value, output });
decrement('parens');
};
/**
* Fast paths
*/
if (opts.fastpaths !== false && !/(^[*!]|[/()[\]{}"])/.test(input)) {
let backslashes = false;
let output = input.replace(REGEX_SPECIAL_CHARS_BACKREF, (m, esc, chars, first, rest, index) => {
if (first === '\\') {
backslashes = true;
return m;
}
if (first === '?') {
if (esc) {
return esc + first + (rest ? QMARK.repeat(rest.length) : '');
}
if (index === 0) {
return qmarkNoDot + (rest ? QMARK.repeat(rest.length) : '');
}
return QMARK.repeat(chars.length);
}
if (first === '.') {
return DOT_LITERAL.repeat(chars.length);
}
if (first === '*') {
if (esc) {
return esc + first + (rest ? star : '');
}
return star;
}
return esc ? m : `\\${m}`;
});
if (backslashes === true) {
if (opts.unescape === true) {
output = output.replace(/\\/g, '');
} else {
output = output.replace(/\\+/g, m => {
return m.length % 2 === 0 ? '\\\\' : (m ? '\\' : '');
});
}
}
if (output === input && opts.contains === true) {
state.output = input;
return state;
}
state.output = utils.wrapOutput(output, state, options);
return state;
}
/**
* Tokenize input until we reach end-of-string
*/
while (!eos()) {
value = advance();
if (value === '\u0000') {
continue;
}
/**
* Escaped characters
*/
if (value === '\\') {
const next = peek();
if (next === '/' && opts.bash !== true) {
continue;
}
if (next === '.' || next === ';') {
continue;
}
if (!next) {
value += '\\';
push({ type: 'text', value });
continue;
}
// collapse slashes to reduce potential for exploits
const match = /^\\+/.exec(remaining());
let slashes = 0;
if (match && match[0].length > 2) {
slashes = match[0].length;
state.index += slashes;
if (slashes % 2 !== 0) {
value += '\\';
}
}
if (opts.unescape === true) {
value = advance();
} else {
value += advance();
}
if (state.brackets === 0) {
push({ type: 'text', value });
continue;
}
}
/**
* If we're inside a regex character class, continue
* until we reach the closing bracket.
*/
if (state.brackets > 0 && (value !== ']' || prev.value === '[' || prev.value === '[^')) {
if (opts.posix !== false && value === ':') {
const inner = prev.value.slice(1);
if (inner.includes('[')) {
prev.posix = true;
if (inner.includes(':')) {
const idx = prev.value.lastIndexOf('[');
const pre = prev.value.slice(0, idx);
const rest = prev.value.slice(idx + 2);
const posix = POSIX_REGEX_SOURCE[rest];
if (posix) {
prev.value = pre + posix;
state.backtrack = true;
advance();
if (!bos.output && tokens.indexOf(prev) === 1) {
bos.output = ONE_CHAR;
}
continue;
}
}
}
}
if ((value === '[' && peek() !== ':') || (value === '-' && peek() === ']')) {
value = `\\${value}`;
}
if (value === ']' && (prev.value === '[' || prev.value === '[^')) {
value = `\\${value}`;
}
if (opts.posix === true && value === '!' && prev.value === '[') {
value = '^';
}
prev.value += value;
append({ value });
continue;
}
/**
* If we're inside a quoted string, continue
* until we reach the closing double quote.
*/
if (state.quotes === 1 && value !== '"') {
value = utils.escapeRegex(value);
prev.value += value;
append({ value });
continue;
}
/**
* Double quotes
*/
if (value === '"') {
state.quotes = state.quotes === 1 ? 0 : 1;
if (opts.keepQuotes === true) {
push({ type: 'text', value });
}
continue;
}
/**
* Parentheses
*/
if (value === '(') {
increment('parens');
push({ type: 'paren', value });
continue;
}
if (value === ')') {
if (state.parens === 0 && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '('));
}
const extglob = extglobs[extglobs.length - 1];
if (extglob && state.parens === extglob.parens + 1) {
extglobClose(extglobs.pop());
continue;
}
push({ type: 'paren', value, output: state.parens ? ')' : '\\)' });
decrement('parens');
continue;
}
/**
* Square brackets
*/
if (value === '[') {
if (opts.nobracket === true || !remaining().includes(']')) {
if (opts.nobracket !== true && opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('closing', ']'));
}
value = `\\${value}`;
} else {
increment('brackets');
}
push({ type: 'bracket', value });
continue;
}
if (value === ']') {
if (opts.nobracket === true || (prev && prev.type === 'bracket' && prev.value.length === 1)) {
push({ type: 'text', value, output: `\\${value}` });
continue;
}
if (state.brackets === 0) {
if (opts.strictBrackets === true) {
throw new SyntaxError(syntaxError('opening', '['));
}
push({ type: 'text', value, output: `\\${value}` });
continue;
}
decrement('brackets');
const prevValue = prev.value.slice(1);
if (prev.posix !== true && prevValue[0] === '^' && !prevValue.includes('/')) {
value = `/${value}`;
}
prev.value += value;
append({ value });
// when literal brackets are explicitly disabled
// assume we should match with a regex character class
if (opts.literalBrackets === false || utils.hasRegexChars(prevValue)) {
continue;
}
const escaped = utils.escapeRegex(prev.value);
state.output = state.output.slice(0, -prev.value.length);
// when literal brackets are explicitly enabled
// assume we should escape the brackets to match literal characters
if (opts.literalBrackets === true) {
state.output += escaped;
prev.value = escaped;
continue;
}
// when the user specifies nothing, try to match both
prev.value = `(${capture}${escaped}|${prev.value})`;
state.output += prev.value;
continue;
}
/**
* Braces
*/
if (value === '{' && opts.nobrace !== true) {
increment('braces');
const open = {
type: 'brace',
value,
output: '(',
outputIndex: state.output.length,
tokensIndex: state.tokens.length
};
braces.push(open);
push(open);
continue;
}
if (value === '}') {
const brace = braces[braces.length - 1];
if (opts.nobrace === true || !brace) {
push({ type: 'text', value, output: value });
continue;
}
let output = ')';
if (brace.dots === true) {
const arr = tokens.slice();
const range = [];
for (let i = arr.length - 1; i >= 0; i--) {
tokens.pop();
if (arr[i].type === 'brace') {
break;
}
if (arr[i].type !== 'dots') {
range.unshift(arr[i].value);
}
}
output = expandRange(range, opts);
state.backtrack = true;
}
if (brace.comma !== true && brace.dots !== true) {
const out = state.output.slice(0, brace.outputIndex);
const toks = state.tokens.slice(brace.tokensIndex);
brace.value = brace.output = '\\{';
value = output = '\\}';
state.output = out;
for (const t of toks) {
state.output += (t.output || t.value);
}
}
push({ type: 'brace', value, output });
decrement('braces');
braces.pop();
continue;
}
/**
* Pipes
*/
if (value === '|') {
if (extglobs.length > 0) {
extglobs[extglobs.length - 1].conditions++;
}
push({ type: 'text', value });
continue;
}
/**
* Commas
*/
if (value === ',') {
let output = value;
const brace = braces[braces.length - 1];
if (brace && stack[stack.length - 1] === 'braces') {
brace.comma = true;
output = '|';
}
push({ type: 'comma', value, output });
continue;
}
/**
* Slashes
*/
if (value === '/') {
// if the beginning of the glob is "./", advance the start
// to the current index, and don't add the "./" characters
// to the state. This greatly simplifies lookbehinds when
// checking for BOS characters like "!" and "." (not "./")
if (prev.type === 'dot' && state.index === state.start + 1) {
state.start = state.index + 1;
state.consumed = '';
state.output = '';
tokens.pop();
prev = bos; // reset "prev" to the first token
continue;
}
push({ type: 'slash', value, output: SLASH_LITERAL });
continue;
}
/**
* Dots
*/
if (value === '.') {
if (state.braces > 0 && prev.type === 'dot') {
if (prev.value === '.') prev.output = DOT_LITERAL;
const brace = braces[braces.length - 1];
prev.type = 'dots';
prev.output += value;
prev.value += value;
brace.dots = true;
continue;
}
if ((state.braces + state.parens) === 0 && prev.type !== 'bos' && prev.type !== 'slash') {
push({ type: 'text', value, output: DOT_LITERAL });
continue;
}
push({ type: 'dot', value, output: DOT_LITERAL });
continue;
}
/**
* Question marks
*/
if (value === '?') {
const isGroup = prev && prev.value === '(';
if (!isGroup && opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('qmark', value);
continue;
}
if (prev && prev.type === 'paren') {
const next = peek();
let output = value;
if (next === '<' && !utils.supportsLookbehinds()) {
throw new Error('Node.js v10 or higher is required for regex lookbehinds');
}
if ((prev.value === '(' && !/[!=<:]/.test(next)) || (next === '<' && !/<([!=]|\w+>)/.test(remaining()))) {
output = `\\${value}`;
}
push({ type: 'text', value, output });
continue;
}
if (opts.dot !== true && (prev.type === 'slash' || prev.type === 'bos')) {
push({ type: 'qmark', value, output: QMARK_NO_DOT });
continue;
}
push({ type: 'qmark', value, output: QMARK });
continue;
}
/**
* Exclamation
*/
if (value === '!') {
if (opts.noextglob !== true && peek() === '(') {
if (peek(2) !== '?' || !/[!=<:]/.test(peek(3))) {
extglobOpen('negate', value);
continue;
}
}
if (opts.nonegate !== true && state.index === 0) {
negate();
continue;
}
}
/**
* Plus
*/
if (value === '+') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
extglobOpen('plus', value);
continue;
}
if ((prev && prev.value === '(') || opts.regex === false) {
push({ type: 'plus', value, output: PLUS_LITERAL });
continue;
}
if ((prev && (prev.type === 'bracket' || prev.type === 'paren' || prev.type === 'brace')) || state.parens > 0) {
push({ type: 'plus', value });
continue;
}
push({ type: 'plus', value: PLUS_LITERAL });
continue;
}
/**
* Plain text
*/
if (value === '@') {
if (opts.noextglob !== true && peek() === '(' && peek(2) !== '?') {
push({ type: 'at', extglob: true, value, output: '' });
continue;
}
push({ type: 'text', value });
continue;
}
/**
* Plain text
*/
if (value !== '*') {
if (value === '$' || value === '^') {
value = `\\${value}`;
}
const match = REGEX_NON_SPECIAL_CHARS.exec(remaining());
if (match) {
value += match[0];
state.index += match[0].length;
}
push({ type: 'text', value });
continue;
}
/**
* Stars
*/
if (prev && (prev.type === 'globstar' || prev.star === true)) {
prev.type = 'star';
prev.star = true;
prev.value += value;
prev.output = star;
state.backtrack = true;
state.globstar = true;
consume(value);
continue;
}
let rest = remaining();
if (opts.noextglob !== true && /^\([^?]/.test(rest)) {
extglobOpen('star', value);
continue;
}
if (prev.type === 'star') {
if (opts.noglobstar === true) {
consume(value);
continue;
}
const prior = prev.prev;
const before = prior.prev;
const isStart = prior.type === 'slash' || prior.type === 'bos';
const afterStar = before && (before.type === 'star' || before.type === 'globstar');
if (opts.bash === true && (!isStart || (rest[0] && rest[0] !== '/'))) {
push({ type: 'star', value, output: '' });
continue;
}
const isBrace = state.braces > 0 && (prior.type === 'comma' || prior.type === 'brace');
const isExtglob = extglobs.length && (prior.type === 'pipe' || prior.type === 'paren');
if (!isStart && prior.type !== 'paren' && !isBrace && !isExtglob) {
push({ type: 'star', value, output: '' });
continue;
}
// strip consecutive `/**/`
while (rest.slice(0, 3) === '/**') {
const after = input[state.index + 4];
if (after && after !== '/') {
break;
}
rest = rest.slice(3);
consume('/**', 3);
}
if (prior.type === 'bos' && eos()) {
prev.type = 'globstar';
prev.value += value;
prev.output = globstar(opts);
state.output = prev.output;
state.globstar = true;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && !afterStar && eos()) {
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = globstar(opts) + (opts.strictSlashes ? ')' : '|$)');
prev.value += value;
state.globstar = true;
state.output += prior.output + prev.output;
consume(value);
continue;
}
if (prior.type === 'slash' && prior.prev.type !== 'bos' && rest[0] === '/') {
const end = rest[1] !== void 0 ? '|$' : '';
state.output = state.output.slice(0, -(prior.output + prev.output).length);
prior.output = `(?:${prior.output}`;
prev.type = 'globstar';
prev.output = `${globstar(opts)}${SLASH_LITERAL}|${SLASH_LITERAL}${end})`;
prev.value += value;
state.output += prior.output + prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
if (prior.type === 'bos' && rest[0] === '/') {
prev.type = 'globstar';
prev.value += value;
prev.output = `(?:^|${SLASH_LITERAL}|${globstar(opts)}${SLASH_LITERAL})`;
state.output = prev.output;
state.globstar = true;
consume(value + advance());
push({ type: 'slash', value: '/', output: '' });
continue;
}
// remove single star from output
state.output = state.output.slice(0, -prev.output.length);
// reset previous token to globstar
prev.type = 'globstar';
prev.output = globstar(opts);
prev.value += value;
// reset output with globstar
state.output += prev.output;
state.globstar = true;
consume(value);
continue;
}
const token = { type: 'star', value, output: star };
if (opts.bash === true) {
token.output = '.*?';
if (prev.type === 'bos' || prev.type === 'slash') {
token.output = nodot + token.output;
}
push(token);
continue;
}
if (prev && (prev.type === 'bracket' || prev.type === 'paren') && opts.regex === true) {
token.output = value;
push(token);
continue;
}
if (state.index === state.start || prev.type === 'slash' || prev.type === 'dot') {
if (prev.type === 'dot') {
state.output += NO_DOT_SLASH;
prev.output += NO_DOT_SLASH;
} else if (opts.dot === true) {
state.output += NO_DOTS_SLASH;
prev.output += NO_DOTS_SLASH;
} else {
state.output += nodot;
prev.output += nodot;
}
if (peek() !== '*') {
state.output += ONE_CHAR;
prev.output += ONE_CHAR;
}
}
push(token);
}
while (state.brackets > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ']'));
state.output = utils.escapeLast(state.output, '[');
decrement('brackets');
}
while (state.parens > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', ')'));
state.output = utils.escapeLast(state.output, '(');
decrement('parens');
}
while (state.braces > 0) {
if (opts.strictBrackets === true) throw new SyntaxError(syntaxError('closing', '}'));
state.output = utils.escapeLast(state.output, '{');
decrement('braces');
}
if (opts.strictSlashes !== true && (prev.type === 'star' || prev.type === 'bracket')) {
push({ type: 'maybe_slash', value: '', output: `${SLASH_LITERAL}?` });
}
// rebuild the output if we had to backtrack at any point
if (state.backtrack === true) {
state.output = '';
for (const token of state.tokens) {
state.output += token.output != null ? token.output : token.value;
if (token.suffix) {
state.output += token.suffix;
}
}
}
return state;
};
/**
* Fast paths for creating regular expressions for common glob patterns.
* This can significantly speed up processing and has very little downside
* impact when none of the fast paths match.
*/
parse.fastpaths = (input, options) => {
const opts = { ...options };
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
const len = input.length;
if (len > max) {
throw new SyntaxError(`Input length: ${len}, exceeds maximum allowed length: ${max}`);
}
input = REPLACEMENTS[input] || input;
const win32 = utils.isWindows(options);
// create constants based on platform, for windows or posix
const {
DOT_LITERAL,
SLASH_LITERAL,
ONE_CHAR,
DOTS_SLASH,
NO_DOT,
NO_DOTS,
NO_DOTS_SLASH,
STAR,
START_ANCHOR
} = constants.globChars(win32);
const nodot = opts.dot ? NO_DOTS : NO_DOT;
const slashDot = opts.dot ? NO_DOTS_SLASH : NO_DOT;
const capture = opts.capture ? '' : '?:';
const state = { negated: false, prefix: '' };
let star = opts.bash === true ? '.*?' : STAR;
if (opts.capture) {
star = `(${star})`;
}
const globstar = opts => {
if (opts.noglobstar === true) return star;
return `(${capture}(?:(?!${START_ANCHOR}${opts.dot ? DOTS_SLASH : DOT_LITERAL}).)*?)`;
};
const create = str => {
switch (str) {
case '*':
return `${nodot}${ONE_CHAR}${star}`;
case '.*':
return `${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*.*':
return `${nodot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '*/*':
return `${nodot}${star}${SLASH_LITERAL}${ONE_CHAR}${slashDot}${star}`;
case '**':
return nodot + globstar(opts);
case '**/*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${ONE_CHAR}${star}`;
case '**/*.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${slashDot}${star}${DOT_LITERAL}${ONE_CHAR}${star}`;
case '**/.*':
return `(?:${nodot}${globstar(opts)}${SLASH_LITERAL})?${DOT_LITERAL}${ONE_CHAR}${star}`;
default: {
const match = /^(.*?)\.(\w+)$/.exec(str);
if (!match) return;
const source = create(match[1]);
if (!source) return;
return source + DOT_LITERAL + match[2];
}
}
};
const output = utils.removePrefix(input, state);
let source = create(output);
if (source && opts.strictSlashes !== true) {
source += `${SLASH_LITERAL}?`;
}
return source;
};
parse_1$1 = parse;
return parse_1$1;
}
var picomatch_1;
var hasRequiredPicomatch$1;
function requirePicomatch$1 () {
if (hasRequiredPicomatch$1) return picomatch_1;
hasRequiredPicomatch$1 = 1;
const path = require$$0$1;
const scan = /*@__PURE__*/ requireScan();
const parse = /*@__PURE__*/ requireParse$1();
const utils = /*@__PURE__*/ requireUtils$1();
const constants = /*@__PURE__*/ requireConstants$2();
const isObject = val => val && typeof val === 'object' && !Array.isArray(val);
/**
* Creates a matcher function from one or more glob patterns. The
* returned function takes a string to match as its first argument,
* and returns true if the string is a match. The returned matcher
* function also takes a boolean as the second argument that, when true,
* returns an object with additional information.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch(glob[, options]);
*
* const isMatch = picomatch('*.!(*a)');
* console.log(isMatch('a.a')); //=> false
* console.log(isMatch('a.b')); //=> true
* ```
* @name picomatch
* @param {String|Array} `globs` One or more glob patterns.
* @param {Object=} `options`
* @return {Function=} Returns a matcher function.
* @api public
*/
const picomatch = (glob, options, returnState = false) => {
if (Array.isArray(glob)) {
const fns = glob.map(input => picomatch(input, options, returnState));
const arrayMatcher = str => {
for (const isMatch of fns) {
const state = isMatch(str);
if (state) return state;
}
return false;
};
return arrayMatcher;
}
const isState = isObject(glob) && glob.tokens && glob.input;
if (glob === '' || (typeof glob !== 'string' && !isState)) {
throw new TypeError('Expected pattern to be a non-empty string');
}
const opts = options || {};
const posix = utils.isWindows(options);
const regex = isState
? picomatch.compileRe(glob, options)
: picomatch.makeRe(glob, options, false, true);
const state = regex.state;
delete regex.state;
let isIgnored = () => false;
if (opts.ignore) {
const ignoreOpts = { ...options, ignore: null, onMatch: null, onResult: null };
isIgnored = picomatch(opts.ignore, ignoreOpts, returnState);
}
const matcher = (input, returnObject = false) => {
const { isMatch, match, output } = picomatch.test(input, regex, options, { glob, posix });
const result = { glob, state, regex, posix, input, output, match, isMatch };
if (typeof opts.onResult === 'function') {
opts.onResult(result);
}
if (isMatch === false) {
result.isMatch = false;
return returnObject ? result : false;
}
if (isIgnored(input)) {
if (typeof opts.onIgnore === 'function') {
opts.onIgnore(result);
}
result.isMatch = false;
return returnObject ? result : false;
}
if (typeof opts.onMatch === 'function') {
opts.onMatch(result);
}
return returnObject ? result : true;
};
if (returnState) {
matcher.state = state;
}
return matcher;
};
/**
* Test `input` with the given `regex`. This is used by the main
* `picomatch()` function to test the input string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.test(input, regex[, options]);
*
* console.log(picomatch.test('foo/bar', /^(?:([^/]*?)\/([^/]*?))$/));
* // { isMatch: true, match: [ 'foo/', 'foo', 'bar' ], output: 'foo/bar' }
* ```
* @param {String} `input` String to test.
* @param {RegExp} `regex`
* @return {Object} Returns an object with matching info.
* @api public
*/
picomatch.test = (input, regex, options, { glob, posix } = {}) => {
if (typeof input !== 'string') {
throw new TypeError('Expected input to be a string');
}
if (input === '') {
return { isMatch: false, output: '' };
}
const opts = options || {};
const format = opts.format || (posix ? utils.toPosixSlashes : null);
let match = input === glob;
let output = (match && format) ? format(input) : input;
if (match === false) {
output = format ? format(input) : input;
match = output === glob;
}
if (match === false || opts.capture === true) {
if (opts.matchBase === true || opts.basename === true) {
match = picomatch.matchBase(input, regex, options, posix);
} else {
match = regex.exec(output);
}
}
return { isMatch: Boolean(match), match, output };
};
/**
* Match the basename of a filepath.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.matchBase(input, glob[, options]);
* console.log(picomatch.matchBase('foo/bar.js', '*.js'); // true
* ```
* @param {String} `input` String to test.
* @param {RegExp|String} `glob` Glob pattern or regex created by [.makeRe](#makeRe).
* @return {Boolean}
* @api public
*/
picomatch.matchBase = (input, glob, options, posix = utils.isWindows(options)) => {
const regex = glob instanceof RegExp ? glob : picomatch.makeRe(glob, options);
return regex.test(path.basename(input));
};
/**
* Returns true if **any** of the given glob `patterns` match the specified `string`.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.isMatch(string, patterns[, options]);
*
* console.log(picomatch.isMatch('a.a', ['b.*', '*.a'])); //=> true
* console.log(picomatch.isMatch('a.a', 'b.*')); //=> false
* ```
* @param {String|Array} str The string to test.
* @param {String|Array} patterns One or more glob patterns to use for matching.
* @param {Object} [options] See available [options](#options).
* @return {Boolean} Returns true if any patterns match `str`
* @api public
*/
picomatch.isMatch = (str, patterns, options) => picomatch(patterns, options)(str);
/**
* Parse a glob pattern to create the source string for a regular
* expression.
*
* ```js
* const picomatch = require('picomatch');
* const result = picomatch.parse(pattern[, options]);
* ```
* @param {String} `pattern`
* @param {Object} `options`
* @return {Object} Returns an object with useful properties and output to be used as a regex source string.
* @api public
*/
picomatch.parse = (pattern, options) => {
if (Array.isArray(pattern)) return pattern.map(p => picomatch.parse(p, options));
return parse(pattern, { ...options, fastpaths: false });
};
/**
* Scan a glob pattern to separate the pattern into segments.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.scan(input[, options]);
*
* const result = picomatch.scan('!./foo/*.js');
* console.log(result);
* { prefix: '!./',
* input: '!./foo/*.js',
* start: 3,
* base: 'foo',
* glob: '*.js',
* isBrace: false,
* isBracket: false,
* isGlob: true,
* isExtglob: false,
* isGlobstar: false,
* negated: true }
* ```
* @param {String} `input` Glob pattern to scan.
* @param {Object} `options`
* @return {Object} Returns an object with
* @api public
*/
picomatch.scan = (input, options) => scan(input, options);
/**
* Compile a regular expression from the `state` object returned by the
* [parse()](#parse) method.
*
* @param {Object} `state`
* @param {Object} `options`
* @param {Boolean} `returnOutput` Intended for implementors, this argument allows you to return the raw output from the parser.
* @param {Boolean} `returnState` Adds the state to a `state` property on the returned regex. Useful for implementors and debugging.
* @return {RegExp}
* @api public
*/
picomatch.compileRe = (state, options, returnOutput = false, returnState = false) => {
if (returnOutput === true) {
return state.output;
}
const opts = options || {};
const prepend = opts.contains ? '' : '^';
const append = opts.contains ? '' : '$';
let source = `${prepend}(?:${state.output})${append}`;
if (state && state.negated === true) {
source = `^(?!${source}).*$`;
}
const regex = picomatch.toRegex(source, options);
if (returnState === true) {
regex.state = state;
}
return regex;
};
/**
* Create a regular expression from a parsed glob pattern.
*
* ```js
* const picomatch = require('picomatch');
* const state = picomatch.parse('*.js');
* // picomatch.compileRe(state[, options]);
*
* console.log(picomatch.compileRe(state));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `state` The object returned from the `.parse` method.
* @param {Object} `options`
* @param {Boolean} `returnOutput` Implementors may use this argument to return the compiled output, instead of a regular expression. This is not exposed on the options to prevent end-users from mutating the result.
* @param {Boolean} `returnState` Implementors may use this argument to return the state from the parsed glob with the returned regular expression.
* @return {RegExp} Returns a regex created from the given pattern.
* @api public
*/
picomatch.makeRe = (input, options = {}, returnOutput = false, returnState = false) => {
if (!input || typeof input !== 'string') {
throw new TypeError('Expected a non-empty string');
}
let parsed = { negated: false, fastpaths: true };
if (options.fastpaths !== false && (input[0] === '.' || input[0] === '*')) {
parsed.output = parse.fastpaths(input, options);
}
if (!parsed.output) {
parsed = parse(input, options);
}
return picomatch.compileRe(parsed, options, returnOutput, returnState);
};
/**
* Create a regular expression from the given regex source string.
*
* ```js
* const picomatch = require('picomatch');
* // picomatch.toRegex(source[, options]);
*
* const { output } = picomatch.parse('*.js');
* console.log(picomatch.toRegex(output));
* //=> /^(?:(?!\.)(?=.)[^/]*?\.js)$/
* ```
* @param {String} `source` Regular expression source string.
* @param {Object} `options`
* @return {RegExp}
* @api public
*/
picomatch.toRegex = (source, options) => {
try {
const opts = options || {};
return new RegExp(source, opts.flags || (opts.nocase ? 'i' : ''));
} catch (err) {
if (options && options.debug === true) throw err;
return /$^/;
}
};
/**
* Picomatch constants.
* @return {Object}
*/
picomatch.constants = constants;
/**
* Expose "picomatch"
*/
picomatch_1 = picomatch;
return picomatch_1;
}
var picomatch;
var hasRequiredPicomatch;
function requirePicomatch () {
if (hasRequiredPicomatch) return picomatch;
hasRequiredPicomatch = 1;
picomatch = /*@__PURE__*/ requirePicomatch$1();
return picomatch;
}
/*!
* normalize-path <https://github.com/jonschlinkert/normalize-path>
*
* Copyright (c) 2014-2018, Jon Schlinkert.
* Released under the MIT License.
*/
var normalizePath;
var hasRequiredNormalizePath;
function requireNormalizePath () {
if (hasRequiredNormalizePath) return normalizePath;
hasRequiredNormalizePath = 1;
normalizePath = function(path, stripTrailing) {
if (typeof path !== 'string') {
throw new TypeError('expected path to be a string');
}
if (path === '\\' || path === '/') return '/';
var len = path.length;
if (len <= 1) return path;
// ensure that win32 namespaces has two leading slashes, so that the path is
// handled properly by the win32 version of path.parse() after being normalized
// https://msdn.microsoft.com/library/windows/desktop/aa365247(v=vs.85).aspx#namespaces
var prefix = '';
if (len > 4 && path[3] === '\\') {
var ch = path[2];
if ((ch === '?' || ch === '.') && path.slice(0, 2) === '\\\\') {
path = path.slice(2);
prefix = '//';
}
}
var segs = path.split(/[/\\]+/);
if (stripTrailing !== false && segs[segs.length - 1] === '') {
segs.pop();
}
return prefix + segs.join('/');
};
return normalizePath;
}
var anymatch_1 = anymatch.exports;
var hasRequiredAnymatch;
function requireAnymatch () {
if (hasRequiredAnymatch) return anymatch.exports;
hasRequiredAnymatch = 1;
Object.defineProperty(anymatch_1, "__esModule", { value: true });
const picomatch = /*@__PURE__*/ requirePicomatch();
const normalizePath = /*@__PURE__*/ requireNormalizePath();
/**
* @typedef {(testString: string) => boolean} AnymatchFn
* @typedef {string|RegExp|AnymatchFn} AnymatchPattern
* @typedef {AnymatchPattern|AnymatchPattern[]} AnymatchMatcher
*/
const BANG = '!';
const DEFAULT_OPTIONS = {returnIndex: false};
const arrify = (item) => Array.isArray(item) ? item : [item];
/**
* @param {AnymatchPattern} matcher
* @param {object} options
* @returns {AnymatchFn}
*/
const createPattern = (matcher, options) => {
if (typeof matcher === 'function') {
return matcher;
}
if (typeof matcher === 'string') {
const glob = picomatch(matcher, options);
return (string) => matcher === string || glob(string);
}
if (matcher instanceof RegExp) {
return (string) => matcher.test(string);
}
return (string) => false;
};
/**
* @param {Array<Function>} patterns
* @param {Array<Function>} negPatterns
* @param {String|Array} args
* @param {Boolean} returnIndex
* @returns {boolean|number}
*/
const matchPatterns = (patterns, negPatterns, args, returnIndex) => {
const isList = Array.isArray(args);
const _path = isList ? args[0] : args;
if (!isList && typeof _path !== 'string') {
throw new TypeError('anymatch: second argument must be a string: got ' +
Object.prototype.toString.call(_path))
}
const path = normalizePath(_path, false);
for (let index = 0; index < negPatterns.length; index++) {
const nglob = negPatterns[index];
if (nglob(path)) {
return returnIndex ? -1 : false;
}
}
const applied = isList && [path].concat(args.slice(1));
for (let index = 0; index < patterns.length; index++) {
const pattern = patterns[index];
if (isList ? pattern(...applied) : pattern(path)) {
return returnIndex ? index : true;
}
}
return returnIndex ? -1 : false;
};
/**
* @param {AnymatchMatcher} matchers
* @param {Array|string} testString
* @param {object} options
* @returns {boolean|number|Function}
*/
const anymatch$1 = (matchers, testString, options = DEFAULT_OPTIONS) => {
if (matchers == null) {
throw new TypeError('anymatch: specify first argument');
}
const opts = typeof options === 'boolean' ? {returnIndex: options} : options;
const returnIndex = opts.returnIndex || false;
// Early cache for matchers.
const mtchers = arrify(matchers);
const negatedGlobs = mtchers
.filter(item => typeof item === 'string' && item.charAt(0) === BANG)
.map(item => item.slice(1))
.map(item => picomatch(item, opts));
const patterns = mtchers
.filter(item => typeof item !== 'string' || (typeof item === 'string' && item.charAt(0) !== BANG))
.map(matcher => createPattern(matcher, opts));
if (testString == null) {
return (testString, ri = false) => {
const returnIndex = typeof ri === 'boolean' ? ri : false;
return matchPatterns(patterns, negatedGlobs, testString, returnIndex);
}
}
return matchPatterns(patterns, negatedGlobs, testString, returnIndex);
};
anymatch$1.default = anymatch$1;
anymatch.exports = anymatch$1;
return anymatch.exports;
}
/*!
* is-extglob <https://github.com/jonschlinkert/is-extglob>
*
* Copyright (c) 2014-2016, Jon Schlinkert.
* Licensed under the MIT License.
*/
var isExtglob;
var hasRequiredIsExtglob;
function requireIsExtglob () {
if (hasRequiredIsExtglob) return isExtglob;
hasRequiredIsExtglob = 1;
isExtglob = function isExtglob(str) {
if (typeof str !== 'string' || str === '') {
return false;
}
var match;
while ((match = /(\\).|([@?!+*]\(.*\))/g.exec(str))) {
if (match[2]) return true;
str = str.slice(match.index + match[0].length);
}
return false;
};
return isExtglob;
}
/*!
* is-glob <https://github.com/jonschlinkert/is-glob>
*
* Copyright (c) 2014-2017, Jon Schlinkert.
* Released under the MIT License.
*/
var isGlob;
var hasRequiredIsGlob;
function requireIsGlob () {
if (hasRequiredIsGlob) return isGlob;
hasRequiredIsGlob = 1;
var isExtglob = /*@__PURE__*/ requireIsExtglob();
var chars = { '{': '}', '(': ')', '[': ']'};
var strictCheck = function(str) {
if (str[0] === '!') {
return true;
}
var index = 0;
var pipeIndex = -2;
var closeSquareIndex = -2;
var closeCurlyIndex = -2;
var closeParenIndex = -2;
var backSlashIndex = -2;
while (index < str.length) {
if (str[index] === '*') {
return true;
}
if (str[index + 1] === '?' && /[\].+)]/.test(str[index])) {
return true;
}
if (closeSquareIndex !== -1 && str[index] === '[' && str[index + 1] !== ']') {
if (closeSquareIndex < index) {
closeSquareIndex = str.indexOf(']', index);
}
if (closeSquareIndex > index) {
if (backSlashIndex === -1 || backSlashIndex > closeSquareIndex) {
return true;
}
backSlashIndex = str.indexOf('\\', index);
if (backSlashIndex === -1 || backSlashIndex > closeSquareIndex) {
return true;
}
}
}
if (closeCurlyIndex !== -1 && str[index] === '{' && str[index + 1] !== '}') {
closeCurlyIndex = str.indexOf('}', index);
if (closeCurlyIndex > index) {
backSlashIndex = str.indexOf('\\', index);
if (backSlashIndex === -1 || backSlashIndex > closeCurlyIndex) {
return true;
}
}
}
if (closeParenIndex !== -1 && str[index] === '(' && str[index + 1] === '?' && /[:!=]/.test(str[index + 2]) && str[index + 3] !== ')') {
closeParenIndex = str.indexOf(')', index);
if (closeParenIndex > index) {
backSlashIndex = str.indexOf('\\', index);
if (backSlashIndex === -1 || backSlashIndex > closeParenIndex) {
return true;
}
}
}
if (pipeIndex !== -1 && str[index] === '(' && str[index + 1] !== '|') {
if (pipeIndex < index) {
pipeIndex = str.indexOf('|', index);
}
if (pipeIndex !== -1 && str[pipeIndex + 1] !== ')') {
closeParenIndex = str.indexOf(')', pipeIndex);
if (closeParenIndex > pipeIndex) {
backSlashIndex = str.indexOf('\\', pipeIndex);
if (backSlashIndex === -1 || backSlashIndex > closeParenIndex) {
return true;
}
}
}
}
if (str[index] === '\\') {
var open = str[index + 1];
index += 2;
var close = chars[open];
if (close) {
var n = str.indexOf(close, index);
if (n !== -1) {
index = n + 1;
}
}
if (str[index] === '!') {
return true;
}
} else {
index++;
}
}
return false;
};
var relaxedCheck = function(str) {
if (str[0] === '!') {
return true;
}
var index = 0;
while (index < str.length) {
if (/[*?{}()[\]]/.test(str[index])) {
return true;
}
if (str[index] === '\\') {
var open = str[index + 1];
index += 2;
var close = chars[open];
if (close) {
var n = str.indexOf(close, index);
if (n !== -1) {
index = n + 1;
}
}
if (str[index] === '!') {
return true;
}
} else {
index++;
}
}
return false;
};
isGlob = function isGlob(str, options) {
if (typeof str !== 'string' || str === '') {
return false;
}
if (isExtglob(str)) {
return true;
}
var check = strictCheck;
// optionally relax check
if (options && options.strict === false) {
check = relaxedCheck;
}
return check(str);
};
return isGlob;
}
var globParent;
var hasRequiredGlobParent;
function requireGlobParent () {
if (hasRequiredGlobParent) return globParent;
hasRequiredGlobParent = 1;
var isGlob = /*@__PURE__*/ requireIsGlob();
var pathPosixDirname = require$$0$1.posix.dirname;
var isWin32 = require$$2$1.platform() === 'win32';
var slash = '/';
var backslash = /\\/g;
var enclosure = /[\{\[].*[\}\]]$/;
var globby = /(^|[^\\])([\{\[]|\([^\)]+$)/;
var escaped = /\\([\!\*\?\|\[\]\(\)\{\}])/g;
/**
* @param {string} str
* @param {Object} opts
* @param {boolean} [opts.flipBackslashes=true]
* @returns {string}
*/
globParent = function globParent(str, opts) {
var options = Object.assign({ flipBackslashes: true }, opts);
// flip windows path separators
if (options.flipBackslashes && isWin32 && str.indexOf(slash) < 0) {
str = str.replace(backslash, slash);
}
// special case for strings ending in enclosure containing path separator
if (enclosure.test(str)) {
str += slash;
}
// preserves full path in case of trailing path separator
str += 'a';
// remove path parts that are globby
do {
str = pathPosixDirname(str);
} while (isGlob(str) || globby.test(str));
// remove escape chars and return result
return str.replace(escaped, '$1');
};
return globParent;
}
var utils = {};
var hasRequiredUtils;
function requireUtils () {
if (hasRequiredUtils) return utils;
hasRequiredUtils = 1;
(function (exports) {
exports.isInteger = num => {
if (typeof num === 'number') {
return Number.isInteger(num);
}
if (typeof num === 'string' && num.trim() !== '') {
return Number.isInteger(Number(num));
}
return false;
};
/**
* Find a node of the given type
*/
exports.find = (node, type) => node.nodes.find(node => node.type === type);
/**
* Find a node of the given type
*/
exports.exceedsLimit = (min, max, step = 1, limit) => {
if (limit === false) return false;
if (!exports.isInteger(min) || !exports.isInteger(max)) return false;
return ((Number(max) - Number(min)) / Number(step)) >= limit;
};
/**
* Escape the given node with '\\' before node.value
*/
exports.escapeNode = (block, n = 0, type) => {
const node = block.nodes[n];
if (!node) return;
if ((type && node.type === type) || node.type === 'open' || node.type === 'close') {
if (node.escaped !== true) {
node.value = '\\' + node.value;
node.escaped = true;
}
}
};
/**
* Returns true if the given brace node should be enclosed in literal braces
*/
exports.encloseBrace = node => {
if (node.type !== 'brace') return false;
if ((node.commas >> 0 + node.ranges >> 0) === 0) {
node.invalid = true;
return true;
}
return false;
};
/**
* Returns true if a brace node is invalid.
*/
exports.isInvalidBrace = block => {
if (block.type !== 'brace') return false;
if (block.invalid === true || block.dollar) return true;
if ((block.commas >> 0 + block.ranges >> 0) === 0) {
block.invalid = true;
return true;
}
if (block.open !== true || block.close !== true) {
block.invalid = true;
return true;
}
return false;
};
/**
* Returns true if a node is an open or close node
*/
exports.isOpenOrClose = node => {
if (node.type === 'open' || node.type === 'close') {
return true;
}
return node.open === true || node.close === true;
};
/**
* Reduce an array of text nodes.
*/
exports.reduce = nodes => nodes.reduce((acc, node) => {
if (node.type === 'text') acc.push(node.value);
if (node.type === 'range') node.type = 'text';
return acc;
}, []);
/**
* Flatten an array
*/
exports.flatten = (...args) => {
const result = [];
const flat = arr => {
for (let i = 0; i < arr.length; i++) {
const ele = arr[i];
if (Array.isArray(ele)) {
flat(ele);
continue;
}
if (ele !== undefined) {
result.push(ele);
}
}
return result;
};
flat(args);
return result;
};
} (utils));
return utils;
}
var stringify;
var hasRequiredStringify;
function requireStringify () {
if (hasRequiredStringify) return stringify;
hasRequiredStringify = 1;
const utils = /*@__PURE__*/ requireUtils();
stringify = (ast, options = {}) => {
const stringify = (node, parent = {}) => {
const invalidBlock = options.escapeInvalid && utils.isInvalidBrace(parent);
const invalidNode = node.invalid === true && options.escapeInvalid === true;
let output = '';
if (node.value) {
if ((invalidBlock || invalidNode) && utils.isOpenOrClose(node)) {
return '\\' + node.value;
}
return node.value;
}
if (node.value) {
return node.value;
}
if (node.nodes) {
for (const child of node.nodes) {
output += stringify(child);
}
}
return output;
};
return stringify(ast);
};
return stringify;
}
/*!
* is-number <https://github.com/jonschlinkert/is-number>
*
* Copyright (c) 2014-present, Jon Schlinkert.
* Released under the MIT License.
*/
var isNumber;
var hasRequiredIsNumber;
function requireIsNumber () {
if (hasRequiredIsNumber) return isNumber;
hasRequiredIsNumber = 1;
isNumber = function(num) {
if (typeof num === 'number') {
return num - num === 0;
}
if (typeof num === 'string' && num.trim() !== '') {
return Number.isFinite ? Number.isFinite(+num) : isFinite(+num);
}
return false;
};
return isNumber;
}
/*!
* to-regex-range <https://github.com/micromatch/to-regex-range>
*
* Copyright (c) 2015-present, Jon Schlinkert.
* Released under the MIT License.
*/
var toRegexRange_1;
var hasRequiredToRegexRange;
function requireToRegexRange () {
if (hasRequiredToRegexRange) return toRegexRange_1;
hasRequiredToRegexRange = 1;
const isNumber = /*@__PURE__*/ requireIsNumber();
const toRegexRange = (min, max, options) => {
if (isNumber(min) === false) {
throw new TypeError('toRegexRange: expected the first argument to be a number');
}
if (max === void 0 || min === max) {
return String(min);
}
if (isNumber(max) === false) {
throw new TypeError('toRegexRange: expected the second argument to be a number.');
}
let opts = { relaxZeros: true, ...options };
if (typeof opts.strictZeros === 'boolean') {
opts.relaxZeros = opts.strictZeros === false;
}
let relax = String(opts.relaxZeros);
let shorthand = String(opts.shorthand);
let capture = String(opts.capture);
let wrap = String(opts.wrap);
let cacheKey = min + ':' + max + '=' + relax + shorthand + capture + wrap;
if (toRegexRange.cache.hasOwnProperty(cacheKey)) {
return toRegexRange.cache[cacheKey].result;
}
let a = Math.min(min, max);
let b = Math.max(min, max);
if (Math.abs(a - b) === 1) {
let result = min + '|' + max;
if (opts.capture) {
return `(${result})`;
}
if (opts.wrap === false) {
return result;
}
return `(?:${result})`;
}
let isPadded = hasPadding(min) || hasPadding(max);
let state = { min, max, a, b };
let positives = [];
let negatives = [];
if (isPadded) {
state.isPadded = isPadded;
state.maxLen = String(state.max).length;
}
if (a < 0) {
let newMin = b < 0 ? Math.abs(b) : 1;
negatives = splitToPatterns(newMin, Math.abs(a), state, opts);
a = state.a = 0;
}
if (b >= 0) {
positives = splitToPatterns(a, b, state, opts);
}
state.negatives = negatives;
state.positives = positives;
state.result = collatePatterns(negatives, positives);
if (opts.capture === true) {
state.result = `(${state.result})`;
} else if (opts.wrap !== false && (positives.length + negatives.length) > 1) {
state.result = `(?:${state.result})`;
}
toRegexRange.cache[cacheKey] = state;
return state.result;
};
function collatePatterns(neg, pos, options) {
let onlyNegative = filterPatterns(neg, pos, '-', false) || [];
let onlyPositive = filterPatterns(pos, neg, '', false) || [];
let intersected = filterPatterns(neg, pos, '-?', true) || [];
let subpatterns = onlyNegative.concat(intersected).concat(onlyPositive);
return subpatterns.join('|');
}
function splitToRanges(min, max) {
let nines = 1;
let zeros = 1;
let stop = countNines(min, nines);
let stops = new Set([max]);
while (min <= stop && stop <= max) {
stops.add(stop);
nines += 1;
stop = countNines(min, nines);
}
stop = countZeros(max + 1, zeros) - 1;
while (min < stop && stop <= max) {
stops.add(stop);
zeros += 1;
stop = countZeros(max + 1, zeros) - 1;
}
stops = [...stops];
stops.sort(compare);
return stops;
}
/**
* Convert a range to a regex pattern
* @param {Number} `start`
* @param {Number} `stop`
* @return {String}
*/
function rangeToPattern(start, stop, options) {
if (start === stop) {
return { pattern: start, count: [], digits: 0 };
}
let zipped = zip(start, stop);
let digits = zipped.length;
let pattern = '';
let count = 0;
for (let i = 0; i < digits; i++) {
let [startDigit, stopDigit] = zipped[i];
if (startDigit === stopDigit) {
pattern += startDigit;
} else if (startDigit !== '0' || stopDigit !== '9') {
pattern += toCharacterClass(startDigit, stopDigit);
} else {
count++;
}
}
if (count) {
pattern += options.shorthand === true ? '\\d' : '[0-9]';
}
return { pattern, count: [count], digits };
}
function splitToPatterns(min, max, tok, options) {
let ranges = splitToRanges(min, max);
let tokens = [];
let start = min;
let prev;
for (let i = 0; i < ranges.length; i++) {
let max = ranges[i];
let obj = rangeToPattern(String(start), String(max), options);
let zeros = '';
if (!tok.isPadded && prev && prev.pattern === obj.pattern) {
if (prev.count.length > 1) {
prev.count.pop();
}
prev.count.push(obj.count[0]);
prev.string = prev.pattern + toQuantifier(prev.count);
start = max + 1;
continue;
}
if (tok.isPadded) {
zeros = padZeros(max, tok, options);
}
obj.string = zeros + obj.pattern + toQuantifier(obj.count);
tokens.push(obj);
start = max + 1;
prev = obj;
}
return tokens;
}
function filterPatterns(arr, comparison, prefix, intersection, options) {
let result = [];
for (let ele of arr) {
let { string } = ele;
// only push if _both_ are negative...
if (!intersection && !contains(comparison, 'string', string)) {
result.push(prefix + string);
}
// or _both_ are positive
if (intersection && contains(comparison, 'string', string)) {
result.push(prefix + string);
}
}
return result;
}
/**
* Zip strings
*/
function zip(a, b) {
let arr = [];
for (let i = 0; i < a.length; i++) arr.push([a[i], b[i]]);
return arr;
}
function compare(a, b) {
return a > b ? 1 : b > a ? -1 : 0;
}
function contains(arr, key, val) {
return arr.some(ele => ele[key] === val);
}
function countNines(min, len) {
return Number(String(min).slice(0, -len) + '9'.repeat(len));
}
function countZeros(integer, zeros) {
return integer - (integer % Math.pow(10, zeros));
}
function toQuantifier(digits) {
let [start = 0, stop = ''] = digits;
if (stop || start > 1) {
return `{${start + (stop ? ',' + stop : '')}}`;
}
return '';
}
function toCharacterClass(a, b, options) {
return `[${a}${(b - a === 1) ? '' : '-'}${b}]`;
}
function hasPadding(str) {
return /^-?(0+)\d/.test(str);
}
function padZeros(value, tok, options) {
if (!tok.isPadded) {
return value;
}
let diff = Math.abs(tok.maxLen - String(value).length);
let relax = options.relaxZeros !== false;
switch (diff) {
case 0:
return '';
case 1:
return relax ? '0?' : '0';
case 2:
return relax ? '0{0,2}' : '00';
default: {
return relax ? `0{0,${diff}}` : `0{${diff}}`;
}
}
}
/**
* Cache
*/
toRegexRange.cache = {};
toRegexRange.clearCache = () => (toRegexRange.cache = {});
/**
* Expose `toRegexRange`
*/
toRegexRange_1 = toRegexRange;
return toRegexRange_1;
}
/*!
* fill-range <https://github.com/jonschlinkert/fill-range>
*
* Copyright (c) 2014-present, Jon Schlinkert.
* Licensed under the MIT License.
*/
var fillRange;
var hasRequiredFillRange;
function requireFillRange () {
if (hasRequiredFillRange) return fillRange;
hasRequiredFillRange = 1;
const util = require$$2;
const toRegexRange = /*@__PURE__*/ requireToRegexRange();
const isObject = val => val !== null && typeof val === 'object' && !Array.isArray(val);
const transform = toNumber => {
return value => toNumber === true ? Number(value) : String(value);
};
const isValidValue = value => {
return typeof value === 'number' || (typeof value === 'string' && value !== '');
};
const isNumber = num => Number.isInteger(+num);
const zeros = input => {
let value = `${input}`;
let index = -1;
if (value[0] === '-') value = value.slice(1);
if (value === '0') return false;
while (value[++index] === '0');
return index > 0;
};
const stringify = (start, end, options) => {
if (typeof start === 'string' || typeof end === 'string') {
return true;
}
return options.stringify === true;
};
const pad = (input, maxLength, toNumber) => {
if (maxLength > 0) {
let dash = input[0] === '-' ? '-' : '';
if (dash) input = input.slice(1);
input = (dash + input.padStart(dash ? maxLength - 1 : maxLength, '0'));
}
if (toNumber === false) {
return String(input);
}
return input;
};
const toMaxLen = (input, maxLength) => {
let negative = input[0] === '-' ? '-' : '';
if (negative) {
input = input.slice(1);
maxLength--;
}
while (input.length < maxLength) input = '0' + input;
return negative ? ('-' + input) : input;
};
const toSequence = (parts, options, maxLen) => {
parts.negatives.sort((a, b) => a < b ? -1 : a > b ? 1 : 0);
parts.positives.sort((a, b) => a < b ? -1 : a > b ? 1 : 0);
let prefix = options.capture ? '' : '?:';
let positives = '';
let negatives = '';
let result;
if (parts.positives.length) {
positives = parts.positives.map(v => toMaxLen(String(v), maxLen)).join('|');
}
if (parts.negatives.length) {
negatives = `-(${prefix}${parts.negatives.map(v => toMaxLen(String(v), maxLen)).join('|')})`;
}
if (positives && negatives) {
result = `${positives}|${negatives}`;
} else {
result = positives || negatives;
}
if (options.wrap) {
return `(${prefix}${result})`;
}
return result;
};
const toRange = (a, b, isNumbers, options) => {
if (isNumbers) {
return toRegexRange(a, b, { wrap: false, ...options });
}
let start = String.fromCharCode(a);
if (a === b) return start;
let stop = String.fromCharCode(b);
return `[${start}-${stop}]`;
};
const toRegex = (start, end, options) => {
if (Array.isArray(start)) {
let wrap = options.wrap === true;
let prefix = options.capture ? '' : '?:';
return wrap ? `(${prefix}${start.join('|')})` : start.join('|');
}
return toRegexRange(start, end, options);
};
const rangeError = (...args) => {
return new RangeError('Invalid range arguments: ' + util.inspect(...args));
};
const invalidRange = (start, end, options) => {
if (options.strictRanges === true) throw rangeError([start, end]);
return [];
};
const invalidStep = (step, options) => {
if (options.strictRanges === true) {
throw new TypeError(`Expected step "${step}" to be a number`);
}
return [];
};
const fillNumbers = (start, end, step = 1, options = {}) => {
let a = Number(start);
let b = Number(end);
if (!Number.isInteger(a) || !Number.isInteger(b)) {
if (options.strictRanges === true) throw rangeError([start, end]);
return [];
}
// fix negative zero
if (a === 0) a = 0;
if (b === 0) b = 0;
let descending = a > b;
let startString = String(start);
let endString = String(end);
let stepString = String(step);
step = Math.max(Math.abs(step), 1);
let padded = zeros(startString) || zeros(endString) || zeros(stepString);
let maxLen = padded ? Math.max(startString.length, endString.length, stepString.length) : 0;
let toNumber = padded === false && stringify(start, end, options) === false;
let format = options.transform || transform(toNumber);
if (options.toRegex && step === 1) {
return toRange(toMaxLen(start, maxLen), toMaxLen(end, maxLen), true, options);
}
let parts = { negatives: [], positives: [] };
let push = num => parts[num < 0 ? 'negatives' : 'positives'].push(Math.abs(num));
let range = [];
let index = 0;
while (descending ? a >= b : a <= b) {
if (options.toRegex === true && step > 1) {
push(a);
} else {
range.push(pad(format(a, index), maxLen, toNumber));
}
a = descending ? a - step : a + step;
index++;
}
if (options.toRegex === true) {
return step > 1
? toSequence(parts, options, maxLen)
: toRegex(range, null, { wrap: false, ...options });
}
return range;
};
const fillLetters = (start, end, step = 1, options = {}) => {
if ((!isNumber(start) && start.length > 1) || (!isNumber(end) && end.length > 1)) {
return invalidRange(start, end, options);
}
let format = options.transform || (val => String.fromCharCode(val));
let a = `${start}`.charCodeAt(0);
let b = `${end}`.charCodeAt(0);
let descending = a > b;
let min = Math.min(a, b);
let max = Math.max(a, b);
if (options.toRegex && step === 1) {
return toRange(min, max, false, options);
}
let range = [];
let index = 0;
while (descending ? a >= b : a <= b) {
range.push(format(a, index));
a = descending ? a - step : a + step;
index++;
}
if (options.toRegex === true) {
return toRegex(range, null, { wrap: false, options });
}
return range;
};
const fill = (start, end, step, options = {}) => {
if (end == null && isValidValue(start)) {
return [start];
}
if (!isValidValue(start) || !isValidValue(end)) {
return invalidRange(start, end, options);
}
if (typeof step === 'function') {
return fill(start, end, 1, { transform: step });
}
if (isObject(step)) {
return fill(start, end, 0, step);
}
let opts = { ...options };
if (opts.capture === true) opts.wrap = true;
step = step || opts.step || 1;
if (!isNumber(step)) {
if (step != null && !isObject(step)) return invalidStep(step, opts);
return fill(start, end, 1, step);
}
if (isNumber(start) && isNumber(end)) {
return fillNumbers(start, end, step, opts);
}
return fillLetters(start, end, Math.max(Math.abs(step), 1), opts);
};
fillRange = fill;
return fillRange;
}
var compile_1;
var hasRequiredCompile;
function requireCompile () {
if (hasRequiredCompile) return compile_1;
hasRequiredCompile = 1;
const fill = /*@__PURE__*/ requireFillRange();
const utils = /*@__PURE__*/ requireUtils();
const compile = (ast, options = {}) => {
const walk = (node, parent = {}) => {
const invalidBlock = utils.isInvalidBrace(parent);
const invalidNode = node.invalid === true && options.escapeInvalid === true;
const invalid = invalidBlock === true || invalidNode === true;
const prefix = options.escapeInvalid === true ? '\\' : '';
let output = '';
if (node.isOpen === true) {
return prefix + node.value;
}
if (node.isClose === true) {
console.log('node.isClose', prefix, node.value);
return prefix + node.value;
}
if (node.type === 'open') {
return invalid ? prefix + node.value : '(';
}
if (node.type === 'close') {
return invalid ? prefix + node.value : ')';
}
if (node.type === 'comma') {
return node.prev.type === 'comma' ? '' : invalid ? node.value : '|';
}
if (node.value) {
return node.value;
}
if (node.nodes && node.ranges > 0) {
const args = utils.reduce(node.nodes);
const range = fill(...args, { ...options, wrap: false, toRegex: true, strictZeros: true });
if (range.length !== 0) {
return args.length > 1 && range.length > 1 ? `(${range})` : range;
}
}
if (node.nodes) {
for (const child of node.nodes) {
output += walk(child, node);
}
}
return output;
};
return walk(ast);
};
compile_1 = compile;
return compile_1;
}
var expand_1;
var hasRequiredExpand;
function requireExpand () {
if (hasRequiredExpand) return expand_1;
hasRequiredExpand = 1;
const fill = /*@__PURE__*/ requireFillRange();
const stringify = /*@__PURE__*/ requireStringify();
const utils = /*@__PURE__*/ requireUtils();
const append = (queue = '', stash = '', enclose = false) => {
const result = [];
queue = [].concat(queue);
stash = [].concat(stash);
if (!stash.length) return queue;
if (!queue.length) {
return enclose ? utils.flatten(stash).map(ele => `{${ele}}`) : stash;
}
for (const item of queue) {
if (Array.isArray(item)) {
for (const value of item) {
result.push(append(value, stash, enclose));
}
} else {
for (let ele of stash) {
if (enclose === true && typeof ele === 'string') ele = `{${ele}}`;
result.push(Array.isArray(ele) ? append(item, ele, enclose) : item + ele);
}
}
}
return utils.flatten(result);
};
const expand = (ast, options = {}) => {
const rangeLimit = options.rangeLimit === undefined ? 1000 : options.rangeLimit;
const walk = (node, parent = {}) => {
node.queue = [];
let p = parent;
let q = parent.queue;
while (p.type !== 'brace' && p.type !== 'root' && p.parent) {
p = p.parent;
q = p.queue;
}
if (node.invalid || node.dollar) {
q.push(append(q.pop(), stringify(node, options)));
return;
}
if (node.type === 'brace' && node.invalid !== true && node.nodes.length === 2) {
q.push(append(q.pop(), ['{}']));
return;
}
if (node.nodes && node.ranges > 0) {
const args = utils.reduce(node.nodes);
if (utils.exceedsLimit(...args, options.step, rangeLimit)) {
throw new RangeError('expanded array length exceeds range limit. Use options.rangeLimit to increase or disable the limit.');
}
let range = fill(...args, options);
if (range.length === 0) {
range = stringify(node, options);
}
q.push(append(q.pop(), range));
node.nodes = [];
return;
}
const enclose = utils.encloseBrace(node);
let queue = node.queue;
let block = node;
while (block.type !== 'brace' && block.type !== 'root' && block.parent) {
block = block.parent;
queue = block.queue;
}
for (let i = 0; i < node.nodes.length; i++) {
const child = node.nodes[i];
if (child.type === 'comma' && node.type === 'brace') {
if (i === 1) queue.push('');
queue.push('');
continue;
}
if (child.type === 'close') {
q.push(append(q.pop(), queue, enclose));
continue;
}
if (child.value && child.type !== 'open') {
queue.push(append(queue.pop(), child.value));
continue;
}
if (child.nodes) {
walk(child, node);
}
}
return queue;
};
return utils.flatten(walk(ast));
};
expand_1 = expand;
return expand_1;
}
var constants$1;
var hasRequiredConstants$1;
function requireConstants$1 () {
if (hasRequiredConstants$1) return constants$1;
hasRequiredConstants$1 = 1;
constants$1 = {
MAX_LENGTH: 10000,
// Digits
CHAR_0: '0', /* 0 */
CHAR_9: '9', /* 9 */
// Alphabet chars.
CHAR_UPPERCASE_A: 'A', /* A */
CHAR_LOWERCASE_A: 'a', /* a */
CHAR_UPPERCASE_Z: 'Z', /* Z */
CHAR_LOWERCASE_Z: 'z', /* z */
CHAR_LEFT_PARENTHESES: '(', /* ( */
CHAR_RIGHT_PARENTHESES: ')', /* ) */
CHAR_ASTERISK: '*', /* * */
// Non-alphabetic chars.
CHAR_AMPERSAND: '&', /* & */
CHAR_AT: '@', /* @ */
CHAR_BACKSLASH: '\\', /* \ */
CHAR_BACKTICK: '`', /* ` */
CHAR_CARRIAGE_RETURN: '\r', /* \r */
CHAR_CIRCUMFLEX_ACCENT: '^', /* ^ */
CHAR_COLON: ':', /* : */
CHAR_COMMA: ',', /* , */
CHAR_DOLLAR: '$', /* . */
CHAR_DOT: '.', /* . */
CHAR_DOUBLE_QUOTE: '"', /* " */
CHAR_EQUAL: '=', /* = */
CHAR_EXCLAMATION_MARK: '!', /* ! */
CHAR_FORM_FEED: '\f', /* \f */
CHAR_FORWARD_SLASH: '/', /* / */
CHAR_HASH: '#', /* # */
CHAR_HYPHEN_MINUS: '-', /* - */
CHAR_LEFT_ANGLE_BRACKET: '<', /* < */
CHAR_LEFT_CURLY_BRACE: '{', /* { */
CHAR_LEFT_SQUARE_BRACKET: '[', /* [ */
CHAR_LINE_FEED: '\n', /* \n */
CHAR_NO_BREAK_SPACE: '\u00A0', /* \u00A0 */
CHAR_PERCENT: '%', /* % */
CHAR_PLUS: '+', /* + */
CHAR_QUESTION_MARK: '?', /* ? */
CHAR_RIGHT_ANGLE_BRACKET: '>', /* > */
CHAR_RIGHT_CURLY_BRACE: '}', /* } */
CHAR_RIGHT_SQUARE_BRACKET: ']', /* ] */
CHAR_SEMICOLON: ';', /* ; */
CHAR_SINGLE_QUOTE: '\'', /* ' */
CHAR_SPACE: ' ', /* */
CHAR_TAB: '\t', /* \t */
CHAR_UNDERSCORE: '_', /* _ */
CHAR_VERTICAL_LINE: '|', /* | */
CHAR_ZERO_WIDTH_NOBREAK_SPACE: '\uFEFF' /* \uFEFF */
};
return constants$1;
}
var parse_1;
var hasRequiredParse;
function requireParse () {
if (hasRequiredParse) return parse_1;
hasRequiredParse = 1;
const stringify = /*@__PURE__*/ requireStringify();
/**
* Constants
*/
const {
MAX_LENGTH,
CHAR_BACKSLASH, /* \ */
CHAR_BACKTICK, /* ` */
CHAR_COMMA, /* , */
CHAR_DOT, /* . */
CHAR_LEFT_PARENTHESES, /* ( */
CHAR_RIGHT_PARENTHESES, /* ) */
CHAR_LEFT_CURLY_BRACE, /* { */
CHAR_RIGHT_CURLY_BRACE, /* } */
CHAR_LEFT_SQUARE_BRACKET, /* [ */
CHAR_RIGHT_SQUARE_BRACKET, /* ] */
CHAR_DOUBLE_QUOTE, /* " */
CHAR_SINGLE_QUOTE, /* ' */
CHAR_NO_BREAK_SPACE,
CHAR_ZERO_WIDTH_NOBREAK_SPACE
} = /*@__PURE__*/ requireConstants$1();
/**
* parse
*/
const parse = (input, options = {}) => {
if (typeof input !== 'string') {
throw new TypeError('Expected a string');
}
const opts = options || {};
const max = typeof opts.maxLength === 'number' ? Math.min(MAX_LENGTH, opts.maxLength) : MAX_LENGTH;
if (input.length > max) {
throw new SyntaxError(`Input length (${input.length}), exceeds max characters (${max})`);
}
const ast = { type: 'root', input, nodes: [] };
const stack = [ast];
let block = ast;
let prev = ast;
let brackets = 0;
const length = input.length;
let index = 0;
let depth = 0;
let value;
/**
* Helpers
*/
const advance = () => input[index++];
const push = node => {
if (node.type === 'text' && prev.type === 'dot') {
prev.type = 'text';
}
if (prev && prev.type === 'text' && node.type === 'text') {
prev.value += node.value;
return;
}
block.nodes.push(node);
node.parent = block;
node.prev = prev;
prev = node;
return node;
};
push({ type: 'bos' });
while (index < length) {
block = stack[stack.length - 1];
value = advance();
/**
* Invalid chars
*/
if (value === CHAR_ZERO_WIDTH_NOBREAK_SPACE || value === CHAR_NO_BREAK_SPACE) {
continue;
}
/**
* Escaped chars
*/
if (value === CHAR_BACKSLASH) {
push({ type: 'text', value: (options.keepEscaping ? value : '') + advance() });
continue;
}
/**
* Right square bracket (literal): ']'
*/
if (value === CHAR_RIGHT_SQUARE_BRACKET) {
push({ type: 'text', value: '\\' + value });
continue;
}
/**
* Left square bracket: '['
*/
if (value === CHAR_LEFT_SQUARE_BRACKET) {
brackets++;
let next;
while (index < length && (next = advance())) {
value += next;
if (next === CHAR_LEFT_SQUARE_BRACKET) {
brackets++;
continue;
}
if (next === CHAR_BACKSLASH) {
value += advance();
continue;
}
if (next === CHAR_RIGHT_SQUARE_BRACKET) {
brackets--;
if (brackets === 0) {
break;
}
}
}
push({ type: 'text', value });
continue;
}
/**
* Parentheses
*/
if (value === CHAR_LEFT_PARENTHESES) {
block = push({ type: 'paren', nodes: [] });
stack.push(block);
push({ type: 'text', value });
continue;
}
if (value === CHAR_RIGHT_PARENTHESES) {
if (block.type !== 'paren') {
push({ type: 'text', value });
continue;
}
block = stack.pop();
push({ type: 'text', value });
block = stack[stack.length - 1];
continue;
}
/**
* Quotes: '|"|`
*/
if (value === CHAR_DOUBLE_QUOTE || value === CHAR_SINGLE_QUOTE || value === CHAR_BACKTICK) {
const open = value;
let next;
if (options.keepQuotes !== true) {
value = '';
}
while (index < length && (next = advance())) {
if (next === CHAR_BACKSLASH) {
value += next + advance();
continue;
}
if (next === open) {
if (options.keepQuotes === true) value += next;
break;
}
value += next;
}
push({ type: 'text', value });
continue;
}
/**
* Left curly brace: '{'
*/
if (value === CHAR_LEFT_CURLY_BRACE) {
depth++;
const dollar = prev.value && prev.value.slice(-1) === '$' || block.dollar === true;
const brace = {
type: 'brace',
open: true,
close: false,
dollar,
depth,
commas: 0,
ranges: 0,
nodes: []
};
block = push(brace);
stack.push(block);
push({ type: 'open', value });
continue;
}
/**
* Right curly brace: '}'
*/
if (value === CHAR_RIGHT_CURLY_BRACE) {
if (block.type !== 'brace') {
push({ type: 'text', value });
continue;
}
const type = 'close';
block = stack.pop();
block.close = true;
push({ type, value });
depth--;
block = stack[stack.length - 1];
continue;
}
/**
* Comma: ','
*/
if (value === CHAR_COMMA && depth > 0) {
if (block.ranges > 0) {
block.ranges = 0;
const open = block.nodes.shift();
block.nodes = [open, { type: 'text', value: stringify(block) }];
}
push({ type: 'comma', value });
block.commas++;
continue;
}
/**
* Dot: '.'
*/
if (value === CHAR_DOT && depth > 0 && block.commas === 0) {
const siblings = block.nodes;
if (depth === 0 || siblings.length === 0) {
push({ type: 'text', value });
continue;
}
if (prev.type === 'dot') {
block.range = [];
prev.value += value;
prev.type = 'range';
if (block.nodes.length !== 3 && block.nodes.length !== 5) {
block.invalid = true;
block.ranges = 0;
prev.type = 'text';
continue;
}
block.ranges++;
block.args = [];
continue;
}
if (prev.type === 'range') {
siblings.pop();
const before = siblings[siblings.length - 1];
before.value += prev.value + value;
prev = before;
block.ranges--;
continue;
}
push({ type: 'dot', value });
continue;
}
/**
* Text
*/
push({ type: 'text', value });
}
// Mark imbalanced braces and brackets as invalid
do {
block = stack.pop();
if (block.type !== 'root') {
block.nodes.forEach(node => {
if (!node.nodes) {
if (node.type === 'open') node.isOpen = true;
if (node.type === 'close') node.isClose = true;
if (!node.nodes) node.type = 'text';
node.invalid = true;
}
});
// get the location of the block on parent.nodes (block's siblings)
const parent = stack[stack.length - 1];
const index = parent.nodes.indexOf(block);
// replace the (invalid) block with it's nodes
parent.nodes.splice(index, 1, ...block.nodes);
}
} while (stack.length > 0);
push({ type: 'eos' });
return ast;
};
parse_1 = parse;
return parse_1;
}
var braces_1;
var hasRequiredBraces;
function requireBraces () {
if (hasRequiredBraces) return braces_1;
hasRequiredBraces = 1;
const stringify = /*@__PURE__*/ requireStringify();
const compile = /*@__PURE__*/ requireCompile();
const expand = /*@__PURE__*/ requireExpand();
const parse = /*@__PURE__*/ requireParse();
/**
* Expand the given pattern or create a regex-compatible string.
*
* ```js
* const braces = require('braces');
* console.log(braces('{a,b,c}', { compile: true })); //=> ['(a|b|c)']
* console.log(braces('{a,b,c}')); //=> ['a', 'b', 'c']
* ```
* @param {String} `str`
* @param {Object} `options`
* @return {String}
* @api public
*/
const braces = (input, options = {}) => {
let output = [];
if (Array.isArray(input)) {
for (const pattern of input) {
const result = braces.create(pattern, options);
if (Array.isArray(result)) {
output.push(...result);
} else {
output.push(result);
}
}
} else {
output = [].concat(braces.create(input, options));
}
if (options && options.expand === true && options.nodupes === true) {
output = [...new Set(output)];
}
return output;
};
/**
* Parse the given `str` with the given `options`.
*
* ```js
* // braces.parse(pattern, [, options]);
* const ast = braces.parse('a/{b,c}/d');
* console.log(ast);
* ```
* @param {String} pattern Brace pattern to parse
* @param {Object} options
* @return {Object} Returns an AST
* @api public
*/
braces.parse = (input, options = {}) => parse(input, options);
/**
* Creates a braces string from an AST, or an AST node.
*
* ```js
* const braces = require('braces');
* let ast = braces.parse('foo/{a,b}/bar');
* console.log(stringify(ast.nodes[2])); //=> '{a,b}'
* ```
* @param {String} `input` Brace pattern or AST.
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.stringify = (input, options = {}) => {
if (typeof input === 'string') {
return stringify(braces.parse(input, options), options);
}
return stringify(input, options);
};
/**
* Compiles a brace pattern into a regex-compatible, optimized string.
* This method is called by the main [braces](#braces) function by default.
*
* ```js
* const braces = require('braces');
* console.log(braces.compile('a/{b,c}/d'));
* //=> ['a/(b|c)/d']
* ```
* @param {String} `input` Brace pattern or AST.
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.compile = (input, options = {}) => {
if (typeof input === 'string') {
input = braces.parse(input, options);
}
return compile(input, options);
};
/**
* Expands a brace pattern into an array. This method is called by the
* main [braces](#braces) function when `options.expand` is true. Before
* using this method it's recommended that you read the [performance notes](#performance))
* and advantages of using [.compile](#compile) instead.
*
* ```js
* const braces = require('braces');
* console.log(braces.expand('a/{b,c}/d'));
* //=> ['a/b/d', 'a/c/d'];
* ```
* @param {String} `pattern` Brace pattern
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.expand = (input, options = {}) => {
if (typeof input === 'string') {
input = braces.parse(input, options);
}
let result = expand(input, options);
// filter out empty strings if specified
if (options.noempty === true) {
result = result.filter(Boolean);
}
// filter out duplicates if specified
if (options.nodupes === true) {
result = [...new Set(result)];
}
return result;
};
/**
* Processes a brace pattern and returns either an expanded array
* (if `options.expand` is true), a highly optimized regex-compatible string.
* This method is called by the main [braces](#braces) function.
*
* ```js
* const braces = require('braces');
* console.log(braces.create('user-{200..300}/project-{a,b,c}-{1..10}'))
* //=> 'user-(20[0-9]|2[1-9][0-9]|300)/project-(a|b|c)-([1-9]|10)'
* ```
* @param {String} `pattern` Brace pattern
* @param {Object} `options`
* @return {Array} Returns an array of expanded values.
* @api public
*/
braces.create = (input, options = {}) => {
if (input === '' || input.length < 3) {
return [input];
}
return options.expand !== true
? braces.compile(input, options)
: braces.expand(input, options);
};
/**
* Expose "braces"
*/
braces_1 = braces;
return braces_1;
}
const require$$0 = [
"3dm",
"3ds",
"3g2",
"3gp",
"7z",
"a",
"aac",
"adp",
"afdesign",
"afphoto",
"afpub",
"ai",
"aif",
"aiff",
"alz",
"ape",
"apk",
"appimage",
"ar",
"arj",
"asf",
"au",
"avi",
"bak",
"baml",
"bh",
"bin",
"bk",
"bmp",
"btif",
"bz2",
"bzip2",
"cab",
"caf",
"cgm",
"class",
"cmx",
"cpio",
"cr2",
"cur",
"dat",
"dcm",
"deb",
"dex",
"djvu",
"dll",
"dmg",
"dng",
"doc",
"docm",
"docx",
"dot",
"dotm",
"dra",
"DS_Store",
"dsk",
"dts",
"dtshd",
"dvb",
"dwg",
"dxf",
"ecelp4800",
"ecelp7470",
"ecelp9600",
"egg",
"eol",
"eot",
"epub",
"exe",
"f4v",
"fbs",
"fh",
"fla",
"flac",
"flatpak",
"fli",
"flv",
"fpx",
"fst",
"fvt",
"g3",
"gh",
"gif",
"graffle",
"gz",
"gzip",
"h261",
"h263",
"h264",
"icns",
"ico",
"ief",
"img",
"ipa",
"iso",
"jar",
"jpeg",
"jpg",
"jpgv",
"jpm",
"jxr",
"key",
"ktx",
"lha",
"lib",
"lvp",
"lz",
"lzh",
"lzma",
"lzo",
"m3u",
"m4a",
"m4v",
"mar",
"mdi",
"mht",
"mid",
"midi",
"mj2",
"mka",
"mkv",
"mmr",
"mng",
"mobi",
"mov",
"movie",
"mp3",
"mp4",
"mp4a",
"mpeg",
"mpg",
"mpga",
"mxu",
"nef",
"npx",
"numbers",
"nupkg",
"o",
"odp",
"ods",
"odt",
"oga",
"ogg",
"ogv",
"otf",
"ott",
"pages",
"pbm",
"pcx",
"pdb",
"pdf",
"pea",
"pgm",
"pic",
"png",
"pnm",
"pot",
"potm",
"potx",
"ppa",
"ppam",
"ppm",
"pps",
"ppsm",
"ppsx",
"ppt",
"pptm",
"pptx",
"psd",
"pya",
"pyc",
"pyo",
"pyv",
"qt",
"rar",
"ras",
"raw",
"resources",
"rgb",
"rip",
"rlc",
"rmf",
"rmvb",
"rpm",
"rtf",
"rz",
"s3m",
"s7z",
"scpt",
"sgi",
"shar",
"snap",
"sil",
"sketch",
"slk",
"smv",
"snk",
"so",
"stl",
"suo",
"sub",
"swf",
"tar",
"tbz",
"tbz2",
"tga",
"tgz",
"thmx",
"tif",
"tiff",
"tlz",
"ttc",
"ttf",
"txz",
"udf",
"uvh",
"uvi",
"uvm",
"uvp",
"uvs",
"uvu",
"viv",
"vob",
"war",
"wav",
"wax",
"wbmp",
"wdp",
"weba",
"webm",
"webp",
"whl",
"wim",
"wm",
"wma",
"wmv",
"wmx",
"woff",
"woff2",
"wrm",
"wvx",
"xbm",
"xif",
"xla",
"xlam",
"xls",
"xlsb",
"xlsm",
"xlsx",
"xlt",
"xltm",
"xltx",
"xm",
"xmind",
"xpi",
"xpm",
"xwd",
"xz",
"z",
"zip",
"zipx"
];
var binaryExtensions;
var hasRequiredBinaryExtensions;
function requireBinaryExtensions () {
if (hasRequiredBinaryExtensions) return binaryExtensions;
hasRequiredBinaryExtensions = 1;
binaryExtensions = require$$0;
return binaryExtensions;
}
var isBinaryPath;
var hasRequiredIsBinaryPath;
function requireIsBinaryPath () {
if (hasRequiredIsBinaryPath) return isBinaryPath;
hasRequiredIsBinaryPath = 1;
const path = require$$0$1;
const binaryExtensions = /*@__PURE__*/ requireBinaryExtensions();
const extensions = new Set(binaryExtensions);
isBinaryPath = filePath => extensions.has(path.extname(filePath).slice(1).toLowerCase());
return isBinaryPath;
}
var constants = {};
var hasRequiredConstants;
function requireConstants () {
if (hasRequiredConstants) return constants;
hasRequiredConstants = 1;
(function (exports) {
const {sep} = require$$0$1;
const {platform} = process;
const os = require$$2$1;
exports.EV_ALL = 'all';
exports.EV_READY = 'ready';
exports.EV_ADD = 'add';
exports.EV_CHANGE = 'change';
exports.EV_ADD_DIR = 'addDir';
exports.EV_UNLINK = 'unlink';
exports.EV_UNLINK_DIR = 'unlinkDir';
exports.EV_RAW = 'raw';
exports.EV_ERROR = 'error';
exports.STR_DATA = 'data';
exports.STR_END = 'end';
exports.STR_CLOSE = 'close';
exports.FSEVENT_CREATED = 'created';
exports.FSEVENT_MODIFIED = 'modified';
exports.FSEVENT_DELETED = 'deleted';
exports.FSEVENT_MOVED = 'moved';
exports.FSEVENT_CLONED = 'cloned';
exports.FSEVENT_UNKNOWN = 'unknown';
exports.FSEVENT_FLAG_MUST_SCAN_SUBDIRS = 1;
exports.FSEVENT_TYPE_FILE = 'file';
exports.FSEVENT_TYPE_DIRECTORY = 'directory';
exports.FSEVENT_TYPE_SYMLINK = 'symlink';
exports.KEY_LISTENERS = 'listeners';
exports.KEY_ERR = 'errHandlers';
exports.KEY_RAW = 'rawEmitters';
exports.HANDLER_KEYS = [exports.KEY_LISTENERS, exports.KEY_ERR, exports.KEY_RAW];
exports.DOT_SLASH = `.${sep}`;
exports.BACK_SLASH_RE = /\\/g;
exports.DOUBLE_SLASH_RE = /\/\//;
exports.SLASH_OR_BACK_SLASH_RE = /[/\\]/;
exports.DOT_RE = /\..*\.(sw[px])$|~$|\.subl.*\.tmp/;
exports.REPLACER_RE = /^\.[/\\]/;
exports.SLASH = '/';
exports.SLASH_SLASH = '//';
exports.BRACE_START = '{';
exports.BANG = '!';
exports.ONE_DOT = '.';
exports.TWO_DOTS = '..';
exports.STAR = '*';
exports.GLOBSTAR = '**';
exports.ROOT_GLOBSTAR = '/**/*';
exports.SLASH_GLOBSTAR = '/**';
exports.DIR_SUFFIX = 'Dir';
exports.ANYMATCH_OPTS = {dot: true};
exports.STRING_TYPE = 'string';
exports.FUNCTION_TYPE = 'function';
exports.EMPTY_STR = '';
exports.EMPTY_FN = () => {};
exports.IDENTITY_FN = val => val;
exports.isWindows = platform === 'win32';
exports.isMacos = platform === 'darwin';
exports.isLinux = platform === 'linux';
exports.isIBMi = os.type() === 'OS400';
} (constants));
return constants;
}
var nodefsHandler;
var hasRequiredNodefsHandler;
function requireNodefsHandler () {
if (hasRequiredNodefsHandler) return nodefsHandler;
hasRequiredNodefsHandler = 1;
const fs = require$$0$2;
const sysPath = require$$0$1;
const { promisify } = require$$2;
const isBinaryPath = /*@__PURE__*/ requireIsBinaryPath();
const {
isWindows,
isLinux,
EMPTY_FN,
EMPTY_STR,
KEY_LISTENERS,
KEY_ERR,
KEY_RAW,
HANDLER_KEYS,
EV_CHANGE,
EV_ADD,
EV_ADD_DIR,
EV_ERROR,
STR_DATA,
STR_END,
BRACE_START,
STAR
} = /*@__PURE__*/ requireConstants();
const THROTTLE_MODE_WATCH = 'watch';
const open = promisify(fs.open);
const stat = promisify(fs.stat);
const lstat = promisify(fs.lstat);
const close = promisify(fs.close);
const fsrealpath = promisify(fs.realpath);
const statMethods = { lstat, stat };
// TODO: emit errors properly. Example: EMFILE on Macos.
const foreach = (val, fn) => {
if (val instanceof Set) {
val.forEach(fn);
} else {
fn(val);
}
};
const addAndConvert = (main, prop, item) => {
let container = main[prop];
if (!(container instanceof Set)) {
main[prop] = container = new Set([container]);
}
container.add(item);
};
const clearItem = cont => key => {
const set = cont[key];
if (set instanceof Set) {
set.clear();
} else {
delete cont[key];
}
};
const delFromSet = (main, prop, item) => {
const container = main[prop];
if (container instanceof Set) {
container.delete(item);
} else if (container === item) {
delete main[prop];
}
};
const isEmptySet = (val) => val instanceof Set ? val.size === 0 : !val;
/**
* @typedef {String} Path
*/
// fs_watch helpers
// object to hold per-process fs_watch instances
// (may be shared across chokidar FSWatcher instances)
/**
* @typedef {Object} FsWatchContainer
* @property {Set} listeners
* @property {Set} errHandlers
* @property {Set} rawEmitters
* @property {fs.FSWatcher=} watcher
* @property {Boolean=} watcherUnusable
*/
/**
* @type {Map<String,FsWatchContainer>}
*/
const FsWatchInstances = new Map();
/**
* Instantiates the fs_watch interface
* @param {String} path to be watched
* @param {Object} options to be passed to fs_watch
* @param {Function} listener main event handler
* @param {Function} errHandler emits info about errors
* @param {Function} emitRaw emits raw event data
* @returns {fs.FSWatcher} new fsevents instance
*/
function createFsWatchInstance(path, options, listener, errHandler, emitRaw) {
const handleEvent = (rawEvent, evPath) => {
listener(path);
emitRaw(rawEvent, evPath, {watchedPath: path});
// emit based on events occurring for files from a directory's watcher in
// case the file's watcher misses it (and rely on throttling to de-dupe)
if (evPath && path !== evPath) {
fsWatchBroadcast(
sysPath.resolve(path, evPath), KEY_LISTENERS, sysPath.join(path, evPath)
);
}
};
try {
return fs.watch(path, options, handleEvent);
} catch (error) {
errHandler(error);
}
}
/**
* Helper for passing fs_watch event data to a collection of listeners
* @param {Path} fullPath absolute path bound to fs_watch instance
* @param {String} type listener type
* @param {*=} val1 arguments to be passed to listeners
* @param {*=} val2
* @param {*=} val3
*/
const fsWatchBroadcast = (fullPath, type, val1, val2, val3) => {
const cont = FsWatchInstances.get(fullPath);
if (!cont) return;
foreach(cont[type], (listener) => {
listener(val1, val2, val3);
});
};
/**
* Instantiates the fs_watch interface or binds listeners
* to an existing one covering the same file system entry
* @param {String} path
* @param {String} fullPath absolute path
* @param {Object} options to be passed to fs_watch
* @param {Object} handlers container for event listener functions
*/
const setFsWatchListener = (path, fullPath, options, handlers) => {
const {listener, errHandler, rawEmitter} = handlers;
let cont = FsWatchInstances.get(fullPath);
/** @type {fs.FSWatcher=} */
let watcher;
if (!options.persistent) {
watcher = createFsWatchInstance(
path, options, listener, errHandler, rawEmitter
);
return watcher.close.bind(watcher);
}
if (cont) {
addAndConvert(cont, KEY_LISTENERS, listener);
addAndConvert(cont, KEY_ERR, errHandler);
addAndConvert(cont, KEY_RAW, rawEmitter);
} else {
watcher = createFsWatchInstance(
path,
options,
fsWatchBroadcast.bind(null, fullPath, KEY_LISTENERS),
errHandler, // no need to use broadcast here
fsWatchBroadcast.bind(null, fullPath, KEY_RAW)
);
if (!watcher) return;
watcher.on(EV_ERROR, async (error) => {
const broadcastErr = fsWatchBroadcast.bind(null, fullPath, KEY_ERR);
cont.watcherUnusable = true; // documented since Node 10.4.1
// Workaround for https://github.com/joyent/node/issues/4337
if (isWindows && error.code === 'EPERM') {
try {
const fd = await open(path, 'r');
await close(fd);
broadcastErr(error);
} catch (err) {}
} else {
broadcastErr(error);
}
});
cont = {
listeners: listener,
errHandlers: errHandler,
rawEmitters: rawEmitter,
watcher
};
FsWatchInstances.set(fullPath, cont);
}
// const index = cont.listeners.indexOf(listener);
// removes this instance's listeners and closes the underlying fs_watch
// instance if there are no more listeners left
return () => {
delFromSet(cont, KEY_LISTENERS, listener);
delFromSet(cont, KEY_ERR, errHandler);
delFromSet(cont, KEY_RAW, rawEmitter);
if (isEmptySet(cont.listeners)) {
// Check to protect against issue gh-730.
// if (cont.watcherUnusable) {
cont.watcher.close();
// }
FsWatchInstances.delete(fullPath);
HANDLER_KEYS.forEach(clearItem(cont));
cont.watcher = undefined;
Object.freeze(cont);
}
};
};
// fs_watchFile helpers
// object to hold per-process fs_watchFile instances
// (may be shared across chokidar FSWatcher instances)
const FsWatchFileInstances = new Map();
/**
* Instantiates the fs_watchFile interface or binds listeners
* to an existing one covering the same file system entry
* @param {String} path to be watched
* @param {String} fullPath absolute path
* @param {Object} options options to be passed to fs_watchFile
* @param {Object} handlers container for event listener functions
* @returns {Function} closer
*/
const setFsWatchFileListener = (path, fullPath, options, handlers) => {
const {listener, rawEmitter} = handlers;
let cont = FsWatchFileInstances.get(fullPath);
const copts = cont && cont.options;
if (copts && (copts.persistent < options.persistent || copts.interval > options.interval)) {
fs.unwatchFile(fullPath);
cont = undefined;
}
/* eslint-enable no-unused-vars, prefer-destructuring */
if (cont) {
addAndConvert(cont, KEY_LISTENERS, listener);
addAndConvert(cont, KEY_RAW, rawEmitter);
} else {
// TODO
// listeners.add(listener);
// rawEmitters.add(rawEmitter);
cont = {
listeners: listener,
rawEmitters: rawEmitter,
options,
watcher: fs.watchFile(fullPath, options, (curr, prev) => {
foreach(cont.rawEmitters, (rawEmitter) => {
rawEmitter(EV_CHANGE, fullPath, {curr, prev});
});
const currmtime = curr.mtimeMs;
if (curr.size !== prev.size || currmtime > prev.mtimeMs || currmtime === 0) {
foreach(cont.listeners, (listener) => listener(path, curr));
}
})
};
FsWatchFileInstances.set(fullPath, cont);
}
// const index = cont.listeners.indexOf(listener);
// Removes this instance's listeners and closes the underlying fs_watchFile
// instance if there are no more listeners left.
return () => {
delFromSet(cont, KEY_LISTENERS, listener);
delFromSet(cont, KEY_RAW, rawEmitter);
if (isEmptySet(cont.listeners)) {
FsWatchFileInstances.delete(fullPath);
fs.unwatchFile(fullPath);
cont.options = cont.watcher = undefined;
Object.freeze(cont);
}
};
};
/**
* @mixin
*/
class NodeFsHandler {
/**
* @param {import("../index").FSWatcher} fsW
*/
constructor(fsW) {
this.fsw = fsW;
this._boundHandleError = (error) => fsW._handleError(error);
}
/**
* Watch file for changes with fs_watchFile or fs_watch.
* @param {String} path to file or dir
* @param {Function} listener on fs change
* @returns {Function} closer for the watcher instance
*/
_watchWithNodeFs(path, listener) {
const opts = this.fsw.options;
const directory = sysPath.dirname(path);
const basename = sysPath.basename(path);
const parent = this.fsw._getWatchedDir(directory);
parent.add(basename);
const absolutePath = sysPath.resolve(path);
const options = {persistent: opts.persistent};
if (!listener) listener = EMPTY_FN;
let closer;
if (opts.usePolling) {
options.interval = opts.enableBinaryInterval && isBinaryPath(basename) ?
opts.binaryInterval : opts.interval;
closer = setFsWatchFileListener(path, absolutePath, options, {
listener,
rawEmitter: this.fsw._emitRaw
});
} else {
closer = setFsWatchListener(path, absolutePath, options, {
listener,
errHandler: this._boundHandleError,
rawEmitter: this.fsw._emitRaw
});
}
return closer;
}
/**
* Watch a file and emit add event if warranted.
* @param {Path} file Path
* @param {fs.Stats} stats result of fs_stat
* @param {Boolean} initialAdd was the file added at watch instantiation?
* @returns {Function} closer for the watcher instance
*/
_handleFile(file, stats, initialAdd) {
if (this.fsw.closed) {
return;
}
const dirname = sysPath.dirname(file);
const basename = sysPath.basename(file);
const parent = this.fsw._getWatchedDir(dirname);
// stats is always present
let prevStats = stats;
// if the file is already being watched, do nothing
if (parent.has(basename)) return;
const listener = async (path, newStats) => {
if (!this.fsw._throttle(THROTTLE_MODE_WATCH, file, 5)) return;
if (!newStats || newStats.mtimeMs === 0) {
try {
const newStats = await stat(file);
if (this.fsw.closed) return;
// Check that change event was not fired because of changed only accessTime.
const at = newStats.atimeMs;
const mt = newStats.mtimeMs;
if (!at || at <= mt || mt !== prevStats.mtimeMs) {
this.fsw._emit(EV_CHANGE, file, newStats);
}
if (isLinux && prevStats.ino !== newStats.ino) {
this.fsw._closeFile(path);
prevStats = newStats;
this.fsw._addPathCloser(path, this._watchWithNodeFs(file, listener));
} else {
prevStats = newStats;
}
} catch (error) {
// Fix issues where mtime is null but file is still present
this.fsw._remove(dirname, basename);
}
// add is about to be emitted if file not already tracked in parent
} else if (parent.has(basename)) {
// Check that change event was not fired because of changed only accessTime.
const at = newStats.atimeMs;
const mt = newStats.mtimeMs;
if (!at || at <= mt || mt !== prevStats.mtimeMs) {
this.fsw._emit(EV_CHANGE, file, newStats);
}
prevStats = newStats;
}
};
// kick off the watcher
const closer = this._watchWithNodeFs(file, listener);
// emit an add event if we're supposed to
if (!(initialAdd && this.fsw.options.ignoreInitial) && this.fsw._isntIgnored(file)) {
if (!this.fsw._throttle(EV_ADD, file, 0)) return;
this.fsw._emit(EV_ADD, file, stats);
}
return closer;
}
/**
* Handle symlinks encountered while reading a dir.
* @param {Object} entry returned by readdirp
* @param {String} directory path of dir being read
* @param {String} path of this item
* @param {String} item basename of this item
* @returns {Promise<Boolean>} true if no more processing is needed for this entry.
*/
async _handleSymlink(entry, directory, path, item) {
if (this.fsw.closed) {
return;
}
const full = entry.fullPath;
const dir = this.fsw._getWatchedDir(directory);
if (!this.fsw.options.followSymlinks) {
// watch symlink directly (don't follow) and detect changes
this.fsw._incrReadyCount();
let linkPath;
try {
linkPath = await fsrealpath(path);
} catch (e) {
this.fsw._emitReady();
return true;
}
if (this.fsw.closed) return;
if (dir.has(item)) {
if (this.fsw._symlinkPaths.get(full) !== linkPath) {
this.fsw._symlinkPaths.set(full, linkPath);
this.fsw._emit(EV_CHANGE, path, entry.stats);
}
} else {
dir.add(item);
this.fsw._symlinkPaths.set(full, linkPath);
this.fsw._emit(EV_ADD, path, entry.stats);
}
this.fsw._emitReady();
return true;
}
// don't follow the same symlink more than once
if (this.fsw._symlinkPaths.has(full)) {
return true;
}
this.fsw._symlinkPaths.set(full, true);
}
_handleRead(directory, initialAdd, wh, target, dir, depth, throttler) {
// Normalize the directory name on Windows
directory = sysPath.join(directory, EMPTY_STR);
if (!wh.hasGlob) {
throttler = this.fsw._throttle('readdir', directory, 1000);
if (!throttler) return;
}
const previous = this.fsw._getWatchedDir(wh.path);
const current = new Set();
let stream = this.fsw._readdirp(directory, {
fileFilter: entry => wh.filterPath(entry),
directoryFilter: entry => wh.filterDir(entry),
depth: 0
}).on(STR_DATA, async (entry) => {
if (this.fsw.closed) {
stream = undefined;
return;
}
const item = entry.path;
let path = sysPath.join(directory, item);
current.add(item);
if (entry.stats.isSymbolicLink() && await this._handleSymlink(entry, directory, path, item)) {
return;
}
if (this.fsw.closed) {
stream = undefined;
return;
}
// Files that present in current directory snapshot
// but absent in previous are added to watch list and
// emit `add` event.
if (item === target || !target && !previous.has(item)) {
this.fsw._incrReadyCount();
// ensure relativeness of path is preserved in case of watcher reuse
path = sysPath.join(dir, sysPath.relative(dir, path));
this._addToNodeFs(path, initialAdd, wh, depth + 1);
}
}).on(EV_ERROR, this._boundHandleError);
return new Promise(resolve =>
stream.once(STR_END, () => {
if (this.fsw.closed) {
stream = undefined;
return;
}
const wasThrottled = throttler ? throttler.clear() : false;
resolve();
// Files that absent in current directory snapshot
// but present in previous emit `remove` event
// and are removed from @watched[directory].
previous.getChildren().filter((item) => {
return item !== directory &&
!current.has(item) &&
// in case of intersecting globs;
// a path may have been filtered out of this readdir, but
// shouldn't be removed because it matches a different glob
(!wh.hasGlob || wh.filterPath({
fullPath: sysPath.resolve(directory, item)
}));
}).forEach((item) => {
this.fsw._remove(directory, item);
});
stream = undefined;
// one more time for any missed in case changes came in extremely quickly
if (wasThrottled) this._handleRead(directory, false, wh, target, dir, depth, throttler);
})
);
}
/**
* Read directory to add / remove files from `@watched` list and re-read it on change.
* @param {String} dir fs path
* @param {fs.Stats} stats
* @param {Boolean} initialAdd
* @param {Number} depth relative to user-supplied path
* @param {String} target child path targeted for watch
* @param {Object} wh Common watch helpers for this path
* @param {String} realpath
* @returns {Promise<Function>} closer for the watcher instance.
*/
async _handleDir(dir, stats, initialAdd, depth, target, wh, realpath) {
const parentDir = this.fsw._getWatchedDir(sysPath.dirname(dir));
const tracked = parentDir.has(sysPath.basename(dir));
if (!(initialAdd && this.fsw.options.ignoreInitial) && !target && !tracked) {
if (!wh.hasGlob || wh.globFilter(dir)) this.fsw._emit(EV_ADD_DIR, dir, stats);
}
// ensure dir is tracked (harmless if redundant)
parentDir.add(sysPath.basename(dir));
this.fsw._getWatchedDir(dir);
let throttler;
let closer;
const oDepth = this.fsw.options.depth;
if ((oDepth == null || depth <= oDepth) && !this.fsw._symlinkPaths.has(realpath)) {
if (!target) {
await this._handleRead(dir, initialAdd, wh, target, dir, depth, throttler);
if (this.fsw.closed) return;
}
closer = this._watchWithNodeFs(dir, (dirPath, stats) => {
// if current directory is removed, do nothing
if (stats && stats.mtimeMs === 0) return;
this._handleRead(dirPath, false, wh, target, dir, depth, throttler);
});
}
return closer;
}
/**
* Handle added file, directory, or glob pattern.
* Delegates call to _handleFile / _handleDir after checks.
* @param {String} path to file or ir
* @param {Boolean} initialAdd was the file added at watch instantiation?
* @param {Object} priorWh depth relative to user-supplied path
* @param {Number} depth Child path actually targeted for watch
* @param {String=} target Child path actually targeted for watch
* @returns {Promise}
*/
async _addToNodeFs(path, initialAdd, priorWh, depth, target) {
const ready = this.fsw._emitReady;
if (this.fsw._isIgnored(path) || this.fsw.closed) {
ready();
return false;
}
const wh = this.fsw._getWatchHelpers(path, depth);
if (!wh.hasGlob && priorWh) {
wh.hasGlob = priorWh.hasGlob;
wh.globFilter = priorWh.globFilter;
wh.filterPath = entry => priorWh.filterPath(entry);
wh.filterDir = entry => priorWh.filterDir(entry);
}
// evaluate what is at the path we're being asked to watch
try {
const stats = await statMethods[wh.statMethod](wh.watchPath);
if (this.fsw.closed) return;
if (this.fsw._isIgnored(wh.watchPath, stats)) {
ready();
return false;
}
const follow = this.fsw.options.followSymlinks && !path.includes(STAR) && !path.includes(BRACE_START);
let closer;
if (stats.isDirectory()) {
const absPath = sysPath.resolve(path);
const targetPath = follow ? await fsrealpath(path) : path;
if (this.fsw.closed) return;
closer = await this._handleDir(wh.watchPath, stats, initialAdd, depth, target, wh, targetPath);
if (this.fsw.closed) return;
// preserve this symlink's target path
if (absPath !== targetPath && targetPath !== undefined) {
this.fsw._symlinkPaths.set(absPath, targetPath);
}
} else if (stats.isSymbolicLink()) {
const targetPath = follow ? await fsrealpath(path) : path;
if (this.fsw.closed) return;
const parent = sysPath.dirname(wh.watchPath);
this.fsw._getWatchedDir(parent).add(wh.watchPath);
this.fsw._emit(EV_ADD, wh.watchPath, stats);
closer = await this._handleDir(parent, stats, initialAdd, depth, path, wh, targetPath);
if (this.fsw.closed) return;
// preserve this symlink's target path
if (targetPath !== undefined) {
this.fsw._symlinkPaths.set(sysPath.resolve(path), targetPath);
}
} else {
closer = this._handleFile(wh.watchPath, stats, initialAdd);
}
ready();
this.fsw._addPathCloser(path, closer);
return false;
} catch (error) {
if (this.fsw._handleError(error)) {
ready();
return path;
}
}
}
}
nodefsHandler = NodeFsHandler;
return nodefsHandler;
}
var fseventsHandler = {exports: {}};
const require$$3 = /*@__PURE__*/rollup.getAugmentedNamespace(fseventsImporter.fseventsImporter);
var hasRequiredFseventsHandler;
function requireFseventsHandler () {
if (hasRequiredFseventsHandler) return fseventsHandler.exports;
hasRequiredFseventsHandler = 1;
const fs = require$$0$2;
const sysPath = require$$0$1;
const { promisify } = require$$2;
let fsevents;
try {
fsevents = require$$3.getFsEvents();
} catch (error) {
if (process.env.CHOKIDAR_PRINT_FSEVENTS_REQUIRE_ERROR) console.error(error);
}
if (fsevents) {
// TODO: real check
const mtch = process.version.match(/v(\d+)\.(\d+)/);
if (mtch && mtch[1] && mtch[2]) {
const maj = Number.parseInt(mtch[1], 10);
const min = Number.parseInt(mtch[2], 10);
if (maj === 8 && min < 16) {
fsevents = undefined;
}
}
}
const {
EV_ADD,
EV_CHANGE,
EV_ADD_DIR,
EV_UNLINK,
EV_ERROR,
STR_DATA,
STR_END,
FSEVENT_CREATED,
FSEVENT_MODIFIED,
FSEVENT_DELETED,
FSEVENT_MOVED,
// FSEVENT_CLONED,
FSEVENT_UNKNOWN,
FSEVENT_FLAG_MUST_SCAN_SUBDIRS,
FSEVENT_TYPE_FILE,
FSEVENT_TYPE_DIRECTORY,
FSEVENT_TYPE_SYMLINK,
ROOT_GLOBSTAR,
DIR_SUFFIX,
DOT_SLASH,
FUNCTION_TYPE,
EMPTY_FN,
IDENTITY_FN
} = /*@__PURE__*/ requireConstants();
const Depth = (value) => isNaN(value) ? {} : {depth: value};
const stat = promisify(fs.stat);
const lstat = promisify(fs.lstat);
const realpath = promisify(fs.realpath);
const statMethods = { stat, lstat };
/**
* @typedef {String} Path
*/
/**
* @typedef {Object} FsEventsWatchContainer
* @property {Set<Function>} listeners
* @property {Function} rawEmitter
* @property {{stop: Function}} watcher
*/
// fsevents instance helper functions
/**
* Object to hold per-process fsevents instances (may be shared across chokidar FSWatcher instances)
* @type {Map<Path,FsEventsWatchContainer>}
*/
const FSEventsWatchers = new Map();
// Threshold of duplicate path prefixes at which to start
// consolidating going forward
const consolidateThreshhold = 10;
const wrongEventFlags = new Set([
69888, 70400, 71424, 72704, 73472, 131328, 131840, 262912
]);
/**
* Instantiates the fsevents interface
* @param {Path} path path to be watched
* @param {Function} callback called when fsevents is bound and ready
* @returns {{stop: Function}} new fsevents instance
*/
const createFSEventsInstance = (path, callback) => {
const stop = fsevents.watch(path, callback);
return {stop};
};
/**
* Instantiates the fsevents interface or binds listeners to an existing one covering
* the same file tree.
* @param {Path} path - to be watched
* @param {Path} realPath - real path for symlinks
* @param {Function} listener - called when fsevents emits events
* @param {Function} rawEmitter - passes data to listeners of the 'raw' event
* @returns {Function} closer
*/
function setFSEventsListener(path, realPath, listener, rawEmitter) {
let watchPath = sysPath.extname(realPath) ? sysPath.dirname(realPath) : realPath;
const parentPath = sysPath.dirname(watchPath);
let cont = FSEventsWatchers.get(watchPath);
// If we've accumulated a substantial number of paths that
// could have been consolidated by watching one directory
// above the current one, create a watcher on the parent
// path instead, so that we do consolidate going forward.
if (couldConsolidate(parentPath)) {
watchPath = parentPath;
}
const resolvedPath = sysPath.resolve(path);
const hasSymlink = resolvedPath !== realPath;
const filteredListener = (fullPath, flags, info) => {
if (hasSymlink) fullPath = fullPath.replace(realPath, resolvedPath);
if (
fullPath === resolvedPath ||
!fullPath.indexOf(resolvedPath + sysPath.sep)
) listener(fullPath, flags, info);
};
// check if there is already a watcher on a parent path
// modifies `watchPath` to the parent path when it finds a match
let watchedParent = false;
for (const watchedPath of FSEventsWatchers.keys()) {
if (realPath.indexOf(sysPath.resolve(watchedPath) + sysPath.sep) === 0) {
watchPath = watchedPath;
cont = FSEventsWatchers.get(watchPath);
watchedParent = true;
break;
}
}
if (cont || watchedParent) {
cont.listeners.add(filteredListener);
} else {
cont = {
listeners: new Set([filteredListener]),
rawEmitter,
watcher: createFSEventsInstance(watchPath, (fullPath, flags) => {
if (!cont.listeners.size) return;
if (flags & FSEVENT_FLAG_MUST_SCAN_SUBDIRS) return;
const info = fsevents.getInfo(fullPath, flags);
cont.listeners.forEach(list => {
list(fullPath, flags, info);
});
cont.rawEmitter(info.event, fullPath, info);
})
};
FSEventsWatchers.set(watchPath, cont);
}
// removes this instance's listeners and closes the underlying fsevents
// instance if there are no more listeners left
return () => {
const lst = cont.listeners;
lst.delete(filteredListener);
if (!lst.size) {
FSEventsWatchers.delete(watchPath);
if (cont.watcher) return cont.watcher.stop().then(() => {
cont.rawEmitter = cont.watcher = undefined;
Object.freeze(cont);
});
}
};
}
// Decide whether or not we should start a new higher-level
// parent watcher
const couldConsolidate = (path) => {
let count = 0;
for (const watchPath of FSEventsWatchers.keys()) {
if (watchPath.indexOf(path) === 0) {
count++;
if (count >= consolidateThreshhold) {
return true;
}
}
}
return false;
};
// returns boolean indicating whether fsevents can be used
const canUse = () => fsevents && FSEventsWatchers.size < 128;
// determines subdirectory traversal levels from root to path
const calcDepth = (path, root) => {
let i = 0;
while (!path.indexOf(root) && (path = sysPath.dirname(path)) !== root) i++;
return i;
};
// returns boolean indicating whether the fsevents' event info has the same type
// as the one returned by fs.stat
const sameTypes = (info, stats) => (
info.type === FSEVENT_TYPE_DIRECTORY && stats.isDirectory() ||
info.type === FSEVENT_TYPE_SYMLINK && stats.isSymbolicLink() ||
info.type === FSEVENT_TYPE_FILE && stats.isFile()
);
/**
* @mixin
*/
class FsEventsHandler {
/**
* @param {import('../index').FSWatcher} fsw
*/
constructor(fsw) {
this.fsw = fsw;
}
checkIgnored(path, stats) {
const ipaths = this.fsw._ignoredPaths;
if (this.fsw._isIgnored(path, stats)) {
ipaths.add(path);
if (stats && stats.isDirectory()) {
ipaths.add(path + ROOT_GLOBSTAR);
}
return true;
}
ipaths.delete(path);
ipaths.delete(path + ROOT_GLOBSTAR);
}
addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts) {
const event = watchedDir.has(item) ? EV_CHANGE : EV_ADD;
this.handleEvent(event, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
async checkExists(path, fullPath, realPath, parent, watchedDir, item, info, opts) {
try {
const stats = await stat(path);
if (this.fsw.closed) return;
if (sameTypes(info, stats)) {
this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
} else {
this.handleEvent(EV_UNLINK, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
} catch (error) {
if (error.code === 'EACCES') {
this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
} else {
this.handleEvent(EV_UNLINK, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
}
}
handleEvent(event, path, fullPath, realPath, parent, watchedDir, item, info, opts) {
if (this.fsw.closed || this.checkIgnored(path)) return;
if (event === EV_UNLINK) {
const isDirectory = info.type === FSEVENT_TYPE_DIRECTORY;
// suppress unlink events on never before seen files
if (isDirectory || watchedDir.has(item)) {
this.fsw._remove(parent, item, isDirectory);
}
} else {
if (event === EV_ADD) {
// track new directories
if (info.type === FSEVENT_TYPE_DIRECTORY) this.fsw._getWatchedDir(path);
if (info.type === FSEVENT_TYPE_SYMLINK && opts.followSymlinks) {
// push symlinks back to the top of the stack to get handled
const curDepth = opts.depth === undefined ?
undefined : calcDepth(fullPath, realPath) + 1;
return this._addToFsEvents(path, false, true, curDepth);
}
// track new paths
// (other than symlinks being followed, which will be tracked soon)
this.fsw._getWatchedDir(parent).add(item);
}
/**
* @type {'add'|'addDir'|'unlink'|'unlinkDir'}
*/
const eventName = info.type === FSEVENT_TYPE_DIRECTORY ? event + DIR_SUFFIX : event;
this.fsw._emit(eventName, path);
if (eventName === EV_ADD_DIR) this._addToFsEvents(path, false, true);
}
}
/**
* Handle symlinks encountered during directory scan
* @param {String} watchPath - file/dir path to be watched with fsevents
* @param {String} realPath - real path (in case of symlinks)
* @param {Function} transform - path transformer
* @param {Function} globFilter - path filter in case a glob pattern was provided
* @returns {Function} closer for the watcher instance
*/
_watchWithFsEvents(watchPath, realPath, transform, globFilter) {
if (this.fsw.closed || this.fsw._isIgnored(watchPath)) return;
const opts = this.fsw.options;
const watchCallback = async (fullPath, flags, info) => {
if (this.fsw.closed) return;
if (
opts.depth !== undefined &&
calcDepth(fullPath, realPath) > opts.depth
) return;
const path = transform(sysPath.join(
watchPath, sysPath.relative(watchPath, fullPath)
));
if (globFilter && !globFilter(path)) return;
// ensure directories are tracked
const parent = sysPath.dirname(path);
const item = sysPath.basename(path);
const watchedDir = this.fsw._getWatchedDir(
info.type === FSEVENT_TYPE_DIRECTORY ? path : parent
);
// correct for wrong events emitted
if (wrongEventFlags.has(flags) || info.event === FSEVENT_UNKNOWN) {
if (typeof opts.ignored === FUNCTION_TYPE) {
let stats;
try {
stats = await stat(path);
} catch (error) {}
if (this.fsw.closed) return;
if (this.checkIgnored(path, stats)) return;
if (sameTypes(info, stats)) {
this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
} else {
this.handleEvent(EV_UNLINK, path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
} else {
this.checkExists(path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
} else {
switch (info.event) {
case FSEVENT_CREATED:
case FSEVENT_MODIFIED:
return this.addOrChange(path, fullPath, realPath, parent, watchedDir, item, info, opts);
case FSEVENT_DELETED:
case FSEVENT_MOVED:
return this.checkExists(path, fullPath, realPath, parent, watchedDir, item, info, opts);
}
}
};
const closer = setFSEventsListener(
watchPath,
realPath,
watchCallback,
this.fsw._emitRaw
);
this.fsw._emitReady();
return closer;
}
/**
* Handle symlinks encountered during directory scan
* @param {String} linkPath path to symlink
* @param {String} fullPath absolute path to the symlink
* @param {Function} transform pre-existing path transformer
* @param {Number} curDepth level of subdirectories traversed to where symlink is
* @returns {Promise<void>}
*/
async _handleFsEventsSymlink(linkPath, fullPath, transform, curDepth) {
// don't follow the same symlink more than once
if (this.fsw.closed || this.fsw._symlinkPaths.has(fullPath)) return;
this.fsw._symlinkPaths.set(fullPath, true);
this.fsw._incrReadyCount();
try {
const linkTarget = await realpath(linkPath);
if (this.fsw.closed) return;
if (this.fsw._isIgnored(linkTarget)) {
return this.fsw._emitReady();
}
this.fsw._incrReadyCount();
// add the linkTarget for watching with a wrapper for transform
// that causes emitted paths to incorporate the link's path
this._addToFsEvents(linkTarget || linkPath, (path) => {
let aliasedPath = linkPath;
if (linkTarget && linkTarget !== DOT_SLASH) {
aliasedPath = path.replace(linkTarget, linkPath);
} else if (path !== DOT_SLASH) {
aliasedPath = sysPath.join(linkPath, path);
}
return transform(aliasedPath);
}, false, curDepth);
} catch(error) {
if (this.fsw._handleError(error)) {
return this.fsw._emitReady();
}
}
}
/**
*
* @param {Path} newPath
* @param {fs.Stats} stats
*/
emitAdd(newPath, stats, processPath, opts, forceAdd) {
const pp = processPath(newPath);
const isDir = stats.isDirectory();
const dirObj = this.fsw._getWatchedDir(sysPath.dirname(pp));
const base = sysPath.basename(pp);
// ensure empty dirs get tracked
if (isDir) this.fsw._getWatchedDir(pp);
if (dirObj.has(base)) return;
dirObj.add(base);
if (!opts.ignoreInitial || forceAdd === true) {
this.fsw._emit(isDir ? EV_ADD_DIR : EV_ADD, pp, stats);
}
}
initWatch(realPath, path, wh, processPath) {
if (this.fsw.closed) return;
const closer = this._watchWithFsEvents(
wh.watchPath,
sysPath.resolve(realPath || wh.watchPath),
processPath,
wh.globFilter
);
this.fsw._addPathCloser(path, closer);
}
/**
* Handle added path with fsevents
* @param {String} path file/dir path or glob pattern
* @param {Function|Boolean=} transform converts working path to what the user expects
* @param {Boolean=} forceAdd ensure add is emitted
* @param {Number=} priorDepth Level of subdirectories already traversed.
* @returns {Promise<void>}
*/
async _addToFsEvents(path, transform, forceAdd, priorDepth) {
if (this.fsw.closed) {
return;
}
const opts = this.fsw.options;
const processPath = typeof transform === FUNCTION_TYPE ? transform : IDENTITY_FN;
const wh = this.fsw._getWatchHelpers(path);
// evaluate what is at the path we're being asked to watch
try {
const stats = await statMethods[wh.statMethod](wh.watchPath);
if (this.fsw.closed) return;
if (this.fsw._isIgnored(wh.watchPath, stats)) {
throw null;
}
if (stats.isDirectory()) {
// emit addDir unless this is a glob parent
if (!wh.globFilter) this.emitAdd(processPath(path), stats, processPath, opts, forceAdd);
// don't recurse further if it would exceed depth setting
if (priorDepth && priorDepth > opts.depth) return;
// scan the contents of the dir
this.fsw._readdirp(wh.watchPath, {
fileFilter: entry => wh.filterPath(entry),
directoryFilter: entry => wh.filterDir(entry),
...Depth(opts.depth - (priorDepth || 0))
}).on(STR_DATA, (entry) => {
// need to check filterPath on dirs b/c filterDir is less restrictive
if (this.fsw.closed) {
return;
}
if (entry.stats.isDirectory() && !wh.filterPath(entry)) return;
const joinedPath = sysPath.join(wh.watchPath, entry.path);
const {fullPath} = entry;
if (wh.followSymlinks && entry.stats.isSymbolicLink()) {
// preserve the current depth here since it can't be derived from
// real paths past the symlink
const curDepth = opts.depth === undefined ?
undefined : calcDepth(joinedPath, sysPath.resolve(wh.watchPath)) + 1;
this._handleFsEventsSymlink(joinedPath, fullPath, processPath, curDepth);
} else {
this.emitAdd(joinedPath, entry.stats, processPath, opts, forceAdd);
}
}).on(EV_ERROR, EMPTY_FN).on(STR_END, () => {
this.fsw._emitReady();
});
} else {
this.emitAdd(wh.watchPath, stats, processPath, opts, forceAdd);
this.fsw._emitReady();
}
} catch (error) {
if (!error || this.fsw._handleError(error)) {
// TODO: Strange thing: "should not choke on an ignored watch path" will be failed without 2 ready calls -__-
this.fsw._emitReady();
this.fsw._emitReady();
}
}
if (opts.persistent && forceAdd !== true) {
if (typeof transform === FUNCTION_TYPE) {
// realpath has already been resolved
this.initWatch(undefined, path, wh, processPath);
} else {
let realPath;
try {
realPath = await realpath(wh.watchPath);
} catch (e) {}
this.initWatch(realPath, path, wh, processPath);
}
}
}
}
fseventsHandler.exports = FsEventsHandler;
fseventsHandler.exports.canUse = canUse;
return fseventsHandler.exports;
}
var hasRequiredChokidar;
function requireChokidar () {
if (hasRequiredChokidar) return chokidar$1;
hasRequiredChokidar = 1;
const { EventEmitter } = require$$0$3;
const fs = require$$0$2;
const sysPath = require$$0$1;
const { promisify } = require$$2;
const readdirp = /*@__PURE__*/ requireReaddirp();
const anymatch = /*@__PURE__*/ requireAnymatch().default;
const globParent = /*@__PURE__*/ requireGlobParent();
const isGlob = /*@__PURE__*/ requireIsGlob();
const braces = /*@__PURE__*/ requireBraces();
const normalizePath = /*@__PURE__*/ requireNormalizePath();
const NodeFsHandler = /*@__PURE__*/ requireNodefsHandler();
const FsEventsHandler = /*@__PURE__*/ requireFseventsHandler();
const {
EV_ALL,
EV_READY,
EV_ADD,
EV_CHANGE,
EV_UNLINK,
EV_ADD_DIR,
EV_UNLINK_DIR,
EV_RAW,
EV_ERROR,
STR_CLOSE,
STR_END,
BACK_SLASH_RE,
DOUBLE_SLASH_RE,
SLASH_OR_BACK_SLASH_RE,
DOT_RE,
REPLACER_RE,
SLASH,
SLASH_SLASH,
BRACE_START,
BANG,
ONE_DOT,
TWO_DOTS,
GLOBSTAR,
SLASH_GLOBSTAR,
ANYMATCH_OPTS,
STRING_TYPE,
FUNCTION_TYPE,
EMPTY_STR,
EMPTY_FN,
isWindows,
isMacos,
isIBMi
} = /*@__PURE__*/ requireConstants();
const stat = promisify(fs.stat);
const readdir = promisify(fs.readdir);
/**
* @typedef {String} Path
* @typedef {'all'|'add'|'addDir'|'change'|'unlink'|'unlinkDir'|'raw'|'error'|'ready'} EventName
* @typedef {'readdir'|'watch'|'add'|'remove'|'change'} ThrottleType
*/
/**
*
* @typedef {Object} WatchHelpers
* @property {Boolean} followSymlinks
* @property {'stat'|'lstat'} statMethod
* @property {Path} path
* @property {Path} watchPath
* @property {Function} entryPath
* @property {Boolean} hasGlob
* @property {Object} globFilter
* @property {Function} filterPath
* @property {Function} filterDir
*/
const arrify = (value = []) => Array.isArray(value) ? value : [value];
const flatten = (list, result = []) => {
list.forEach(item => {
if (Array.isArray(item)) {
flatten(item, result);
} else {
result.push(item);
}
});
return result;
};
const unifyPaths = (paths_) => {
/**
* @type {Array<String>}
*/
const paths = flatten(arrify(paths_));
if (!paths.every(p => typeof p === STRING_TYPE)) {
throw new TypeError(`Non-string provided as watch path: ${paths}`);
}
return paths.map(normalizePathToUnix);
};
// If SLASH_SLASH occurs at the beginning of path, it is not replaced
// because "//StoragePC/DrivePool/Movies" is a valid network path
const toUnix = (string) => {
let str = string.replace(BACK_SLASH_RE, SLASH);
let prepend = false;
if (str.startsWith(SLASH_SLASH)) {
prepend = true;
}
while (str.match(DOUBLE_SLASH_RE)) {
str = str.replace(DOUBLE_SLASH_RE, SLASH);
}
if (prepend) {
str = SLASH + str;
}
return str;
};
// Our version of upath.normalize
// TODO: this is not equal to path-normalize module - investigate why
const normalizePathToUnix = (path) => toUnix(sysPath.normalize(toUnix(path)));
const normalizeIgnored = (cwd = EMPTY_STR) => (path) => {
if (typeof path !== STRING_TYPE) return path;
return normalizePathToUnix(sysPath.isAbsolute(path) ? path : sysPath.join(cwd, path));
};
const getAbsolutePath = (path, cwd) => {
if (sysPath.isAbsolute(path)) {
return path;
}
if (path.startsWith(BANG)) {
return BANG + sysPath.join(cwd, path.slice(1));
}
return sysPath.join(cwd, path);
};
const undef = (opts, key) => opts[key] === undefined;
/**
* Directory entry.
* @property {Path} path
* @property {Set<Path>} items
*/
class DirEntry {
/**
* @param {Path} dir
* @param {Function} removeWatcher
*/
constructor(dir, removeWatcher) {
this.path = dir;
this._removeWatcher = removeWatcher;
/** @type {Set<Path>} */
this.items = new Set();
}
add(item) {
const {items} = this;
if (!items) return;
if (item !== ONE_DOT && item !== TWO_DOTS) items.add(item);
}
async remove(item) {
const {items} = this;
if (!items) return;
items.delete(item);
if (items.size > 0) return;
const dir = this.path;
try {
await readdir(dir);
} catch (err) {
if (this._removeWatcher) {
this._removeWatcher(sysPath.dirname(dir), sysPath.basename(dir));
}
}
}
has(item) {
const {items} = this;
if (!items) return;
return items.has(item);
}
/**
* @returns {Array<String>}
*/
getChildren() {
const {items} = this;
if (!items) return;
return [...items.values()];
}
dispose() {
this.items.clear();
delete this.path;
delete this._removeWatcher;
delete this.items;
Object.freeze(this);
}
}
const STAT_METHOD_F = 'stat';
const STAT_METHOD_L = 'lstat';
class WatchHelper {
constructor(path, watchPath, follow, fsw) {
this.fsw = fsw;
this.path = path = path.replace(REPLACER_RE, EMPTY_STR);
this.watchPath = watchPath;
this.fullWatchPath = sysPath.resolve(watchPath);
this.hasGlob = watchPath !== path;
/** @type {object|boolean} */
if (path === EMPTY_STR) this.hasGlob = false;
this.globSymlink = this.hasGlob && follow ? undefined : false;
this.globFilter = this.hasGlob ? anymatch(path, undefined, ANYMATCH_OPTS) : false;
this.dirParts = this.getDirParts(path);
this.dirParts.forEach((parts) => {
if (parts.length > 1) parts.pop();
});
this.followSymlinks = follow;
this.statMethod = follow ? STAT_METHOD_F : STAT_METHOD_L;
}
checkGlobSymlink(entry) {
// only need to resolve once
// first entry should always have entry.parentDir === EMPTY_STR
if (this.globSymlink === undefined) {
this.globSymlink = entry.fullParentDir === this.fullWatchPath ?
false : {realPath: entry.fullParentDir, linkPath: this.fullWatchPath};
}
if (this.globSymlink) {
return entry.fullPath.replace(this.globSymlink.realPath, this.globSymlink.linkPath);
}
return entry.fullPath;
}
entryPath(entry) {
return sysPath.join(this.watchPath,
sysPath.relative(this.watchPath, this.checkGlobSymlink(entry))
);
}
filterPath(entry) {
const {stats} = entry;
if (stats && stats.isSymbolicLink()) return this.filterDir(entry);
const resolvedPath = this.entryPath(entry);
const matchesGlob = this.hasGlob && typeof this.globFilter === FUNCTION_TYPE ?
this.globFilter(resolvedPath) : true;
return matchesGlob &&
this.fsw._isntIgnored(resolvedPath, stats) &&
this.fsw._hasReadPermissions(stats);
}
getDirParts(path) {
if (!this.hasGlob) return [];
const parts = [];
const expandedPath = path.includes(BRACE_START) ? braces.expand(path) : [path];
expandedPath.forEach((path) => {
parts.push(sysPath.relative(this.watchPath, path).split(SLASH_OR_BACK_SLASH_RE));
});
return parts;
}
filterDir(entry) {
if (this.hasGlob) {
const entryParts = this.getDirParts(this.checkGlobSymlink(entry));
let globstar = false;
this.unmatchedGlob = !this.dirParts.some((parts) => {
return parts.every((part, i) => {
if (part === GLOBSTAR) globstar = true;
return globstar || !entryParts[0][i] || anymatch(part, entryParts[0][i], ANYMATCH_OPTS);
});
});
}
return !this.unmatchedGlob && this.fsw._isntIgnored(this.entryPath(entry), entry.stats);
}
}
/**
* Watches files & directories for changes. Emitted events:
* `add`, `addDir`, `change`, `unlink`, `unlinkDir`, `all`, `error`
*
* new FSWatcher()
* .add(directories)
* .on('add', path => log('File', path, 'was added'))
*/
class FSWatcher extends EventEmitter {
// Not indenting methods for history sake; for now.
constructor(_opts) {
super();
const opts = {};
if (_opts) Object.assign(opts, _opts); // for frozen objects
/** @type {Map<String, DirEntry>} */
this._watched = new Map();
/** @type {Map<String, Array>} */
this._closers = new Map();
/** @type {Set<String>} */
this._ignoredPaths = new Set();
/** @type {Map<ThrottleType, Map>} */
this._throttled = new Map();
/** @type {Map<Path, String|Boolean>} */
this._symlinkPaths = new Map();
this._streams = new Set();
this.closed = false;
// Set up default options.
if (undef(opts, 'persistent')) opts.persistent = true;
if (undef(opts, 'ignoreInitial')) opts.ignoreInitial = false;
if (undef(opts, 'ignorePermissionErrors')) opts.ignorePermissionErrors = false;
if (undef(opts, 'interval')) opts.interval = 100;
if (undef(opts, 'binaryInterval')) opts.binaryInterval = 300;
if (undef(opts, 'disableGlobbing')) opts.disableGlobbing = false;
opts.enableBinaryInterval = opts.binaryInterval !== opts.interval;
// Enable fsevents on OS X when polling isn't explicitly enabled.
if (undef(opts, 'useFsEvents')) opts.useFsEvents = !opts.usePolling;
// If we can't use fsevents, ensure the options reflect it's disabled.
const canUseFsEvents = FsEventsHandler.canUse();
if (!canUseFsEvents) opts.useFsEvents = false;
// Use polling on Mac if not using fsevents.
// Other platforms use non-polling fs_watch.
if (undef(opts, 'usePolling') && !opts.useFsEvents) {
opts.usePolling = isMacos;
}
// Always default to polling on IBM i because fs.watch() is not available on IBM i.
if(isIBMi) {
opts.usePolling = true;
}
// Global override (useful for end-developers that need to force polling for all
// instances of chokidar, regardless of usage/dependency depth)
const envPoll = process.env.CHOKIDAR_USEPOLLING;
if (envPoll !== undefined) {
const envLower = envPoll.toLowerCase();
if (envLower === 'false' || envLower === '0') {
opts.usePolling = false;
} else if (envLower === 'true' || envLower === '1') {
opts.usePolling = true;
} else {
opts.usePolling = !!envLower;
}
}
const envInterval = process.env.CHOKIDAR_INTERVAL;
if (envInterval) {
opts.interval = Number.parseInt(envInterval, 10);
}
// Editor atomic write normalization enabled by default with fs.watch
if (undef(opts, 'atomic')) opts.atomic = !opts.usePolling && !opts.useFsEvents;
if (opts.atomic) this._pendingUnlinks = new Map();
if (undef(opts, 'followSymlinks')) opts.followSymlinks = true;
if (undef(opts, 'awaitWriteFinish')) opts.awaitWriteFinish = false;
if (opts.awaitWriteFinish === true) opts.awaitWriteFinish = {};
const awf = opts.awaitWriteFinish;
if (awf) {
if (!awf.stabilityThreshold) awf.stabilityThreshold = 2000;
if (!awf.pollInterval) awf.pollInterval = 100;
this._pendingWrites = new Map();
}
if (opts.ignored) opts.ignored = arrify(opts.ignored);
let readyCalls = 0;
this._emitReady = () => {
readyCalls++;
if (readyCalls >= this._readyCount) {
this._emitReady = EMPTY_FN;
this._readyEmitted = true;
// use process.nextTick to allow time for listener to be bound
process.nextTick(() => this.emit(EV_READY));
}
};
this._emitRaw = (...args) => this.emit(EV_RAW, ...args);
this._readyEmitted = false;
this.options = opts;
// Initialize with proper watcher.
if (opts.useFsEvents) {
this._fsEventsHandler = new FsEventsHandler(this);
} else {
this._nodeFsHandler = new NodeFsHandler(this);
}
// Youre frozen when your hearts not open.
Object.freeze(opts);
}
// Public methods
/**
* Adds paths to be watched on an existing FSWatcher instance
* @param {Path|Array<Path>} paths_
* @param {String=} _origAdd private; for handling non-existent paths to be watched
* @param {Boolean=} _internal private; indicates a non-user add
* @returns {FSWatcher} for chaining
*/
add(paths_, _origAdd, _internal) {
const {cwd, disableGlobbing} = this.options;
this.closed = false;
let paths = unifyPaths(paths_);
if (cwd) {
paths = paths.map((path) => {
const absPath = getAbsolutePath(path, cwd);
// Check `path` instead of `absPath` because the cwd portion can't be a glob
if (disableGlobbing || !isGlob(path)) {
return absPath;
}
return normalizePath(absPath);
});
}
// set aside negated glob strings
paths = paths.filter((path) => {
if (path.startsWith(BANG)) {
this._ignoredPaths.add(path.slice(1));
return false;
}
// if a path is being added that was previously ignored, stop ignoring it
this._ignoredPaths.delete(path);
this._ignoredPaths.delete(path + SLASH_GLOBSTAR);
// reset the cached userIgnored anymatch fn
// to make ignoredPaths changes effective
this._userIgnored = undefined;
return true;
});
if (this.options.useFsEvents && this._fsEventsHandler) {
if (!this._readyCount) this._readyCount = paths.length;
if (this.options.persistent) this._readyCount += paths.length;
paths.forEach((path) => this._fsEventsHandler._addToFsEvents(path));
} else {
if (!this._readyCount) this._readyCount = 0;
this._readyCount += paths.length;
Promise.all(
paths.map(async path => {
const res = await this._nodeFsHandler._addToNodeFs(path, !_internal, 0, 0, _origAdd);
if (res) this._emitReady();
return res;
})
).then(results => {
if (this.closed) return;
results.filter(item => item).forEach(item => {
this.add(sysPath.dirname(item), sysPath.basename(_origAdd || item));
});
});
}
return this;
}
/**
* Close watchers or start ignoring events from specified paths.
* @param {Path|Array<Path>} paths_ - string or array of strings, file/directory paths and/or globs
* @returns {FSWatcher} for chaining
*/
unwatch(paths_) {
if (this.closed) return this;
const paths = unifyPaths(paths_);
const {cwd} = this.options;
paths.forEach((path) => {
// convert to absolute path unless relative path already matches
if (!sysPath.isAbsolute(path) && !this._closers.has(path)) {
if (cwd) path = sysPath.join(cwd, path);
path = sysPath.resolve(path);
}
this._closePath(path);
this._ignoredPaths.add(path);
if (this._watched.has(path)) {
this._ignoredPaths.add(path + SLASH_GLOBSTAR);
}
// reset the cached userIgnored anymatch fn
// to make ignoredPaths changes effective
this._userIgnored = undefined;
});
return this;
}
/**
* Close watchers and remove all listeners from watched paths.
* @returns {Promise<void>}.
*/
close() {
if (this.closed) return this._closePromise;
this.closed = true;
// Memory management.
this.removeAllListeners();
const closers = [];
this._closers.forEach(closerList => closerList.forEach(closer => {
const promise = closer();
if (promise instanceof Promise) closers.push(promise);
}));
this._streams.forEach(stream => stream.destroy());
this._userIgnored = undefined;
this._readyCount = 0;
this._readyEmitted = false;
this._watched.forEach(dirent => dirent.dispose());
['closers', 'watched', 'streams', 'symlinkPaths', 'throttled'].forEach(key => {
this[`_${key}`].clear();
});
this._closePromise = closers.length ? Promise.all(closers).then(() => undefined) : Promise.resolve();
return this._closePromise;
}
/**
* Expose list of watched paths
* @returns {Object} for chaining
*/
getWatched() {
const watchList = {};
this._watched.forEach((entry, dir) => {
const key = this.options.cwd ? sysPath.relative(this.options.cwd, dir) : dir;
watchList[key || ONE_DOT] = entry.getChildren().sort();
});
return watchList;
}
emitWithAll(event, args) {
this.emit(...args);
if (event !== EV_ERROR) this.emit(EV_ALL, ...args);
}
// Common helpers
// --------------
/**
* Normalize and emit events.
* Calling _emit DOES NOT MEAN emit() would be called!
* @param {EventName} event Type of event
* @param {Path} path File or directory path
* @param {*=} val1 arguments to be passed with event
* @param {*=} val2
* @param {*=} val3
* @returns the error if defined, otherwise the value of the FSWatcher instance's `closed` flag
*/
async _emit(event, path, val1, val2, val3) {
if (this.closed) return;
const opts = this.options;
if (isWindows) path = sysPath.normalize(path);
if (opts.cwd) path = sysPath.relative(opts.cwd, path);
/** @type Array<any> */
const args = [event, path];
if (val3 !== undefined) args.push(val1, val2, val3);
else if (val2 !== undefined) args.push(val1, val2);
else if (val1 !== undefined) args.push(val1);
const awf = opts.awaitWriteFinish;
let pw;
if (awf && (pw = this._pendingWrites.get(path))) {
pw.lastChange = new Date();
return this;
}
if (opts.atomic) {
if (event === EV_UNLINK) {
this._pendingUnlinks.set(path, args);
setTimeout(() => {
this._pendingUnlinks.forEach((entry, path) => {
this.emit(...entry);
this.emit(EV_ALL, ...entry);
this._pendingUnlinks.delete(path);
});
}, typeof opts.atomic === 'number' ? opts.atomic : 100);
return this;
}
if (event === EV_ADD && this._pendingUnlinks.has(path)) {
event = args[0] = EV_CHANGE;
this._pendingUnlinks.delete(path);
}
}
if (awf && (event === EV_ADD || event === EV_CHANGE) && this._readyEmitted) {
const awfEmit = (err, stats) => {
if (err) {
event = args[0] = EV_ERROR;
args[1] = err;
this.emitWithAll(event, args);
} else if (stats) {
// if stats doesn't exist the file must have been deleted
if (args.length > 2) {
args[2] = stats;
} else {
args.push(stats);
}
this.emitWithAll(event, args);
}
};
this._awaitWriteFinish(path, awf.stabilityThreshold, event, awfEmit);
return this;
}
if (event === EV_CHANGE) {
const isThrottled = !this._throttle(EV_CHANGE, path, 50);
if (isThrottled) return this;
}
if (opts.alwaysStat && val1 === undefined &&
(event === EV_ADD || event === EV_ADD_DIR || event === EV_CHANGE)
) {
const fullPath = opts.cwd ? sysPath.join(opts.cwd, path) : path;
let stats;
try {
stats = await stat(fullPath);
} catch (err) {}
// Suppress event when fs_stat fails, to avoid sending undefined 'stat'
if (!stats || this.closed) return;
args.push(stats);
}
this.emitWithAll(event, args);
return this;
}
/**
* Common handler for errors
* @param {Error} error
* @returns {Error|Boolean} The error if defined, otherwise the value of the FSWatcher instance's `closed` flag
*/
_handleError(error) {
const code = error && error.code;
if (error && code !== 'ENOENT' && code !== 'ENOTDIR' &&
(!this.options.ignorePermissionErrors || (code !== 'EPERM' && code !== 'EACCES'))
) {
this.emit(EV_ERROR, error);
}
return error || this.closed;
}
/**
* Helper utility for throttling
* @param {ThrottleType} actionType type being throttled
* @param {Path} path being acted upon
* @param {Number} timeout duration of time to suppress duplicate actions
* @returns {Object|false} tracking object or false if action should be suppressed
*/
_throttle(actionType, path, timeout) {
if (!this._throttled.has(actionType)) {
this._throttled.set(actionType, new Map());
}
/** @type {Map<Path, Object>} */
const action = this._throttled.get(actionType);
/** @type {Object} */
const actionPath = action.get(path);
if (actionPath) {
actionPath.count++;
return false;
}
let timeoutObject;
const clear = () => {
const item = action.get(path);
const count = item ? item.count : 0;
action.delete(path);
clearTimeout(timeoutObject);
if (item) clearTimeout(item.timeoutObject);
return count;
};
timeoutObject = setTimeout(clear, timeout);
const thr = {timeoutObject, clear, count: 0};
action.set(path, thr);
return thr;
}
_incrReadyCount() {
return this._readyCount++;
}
/**
* Awaits write operation to finish.
* Polls a newly created file for size variations. When files size does not change for 'threshold' milliseconds calls callback.
* @param {Path} path being acted upon
* @param {Number} threshold Time in milliseconds a file size must be fixed before acknowledging write OP is finished
* @param {EventName} event
* @param {Function} awfEmit Callback to be called when ready for event to be emitted.
*/
_awaitWriteFinish(path, threshold, event, awfEmit) {
let timeoutHandler;
let fullPath = path;
if (this.options.cwd && !sysPath.isAbsolute(path)) {
fullPath = sysPath.join(this.options.cwd, path);
}
const now = new Date();
const awaitWriteFinish = (prevStat) => {
fs.stat(fullPath, (err, curStat) => {
if (err || !this._pendingWrites.has(path)) {
if (err && err.code !== 'ENOENT') awfEmit(err);
return;
}
const now = Number(new Date());
if (prevStat && curStat.size !== prevStat.size) {
this._pendingWrites.get(path).lastChange = now;
}
const pw = this._pendingWrites.get(path);
const df = now - pw.lastChange;
if (df >= threshold) {
this._pendingWrites.delete(path);
awfEmit(undefined, curStat);
} else {
timeoutHandler = setTimeout(
awaitWriteFinish,
this.options.awaitWriteFinish.pollInterval,
curStat
);
}
});
};
if (!this._pendingWrites.has(path)) {
this._pendingWrites.set(path, {
lastChange: now,
cancelWait: () => {
this._pendingWrites.delete(path);
clearTimeout(timeoutHandler);
return event;
}
});
timeoutHandler = setTimeout(
awaitWriteFinish,
this.options.awaitWriteFinish.pollInterval
);
}
}
_getGlobIgnored() {
return [...this._ignoredPaths.values()];
}
/**
* Determines whether user has asked to ignore this path.
* @param {Path} path filepath or dir
* @param {fs.Stats=} stats result of fs.stat
* @returns {Boolean}
*/
_isIgnored(path, stats) {
if (this.options.atomic && DOT_RE.test(path)) return true;
if (!this._userIgnored) {
const {cwd} = this.options;
const ign = this.options.ignored;
const ignored = ign && ign.map(normalizeIgnored(cwd));
const paths = arrify(ignored)
.filter((path) => typeof path === STRING_TYPE && !isGlob(path))
.map((path) => path + SLASH_GLOBSTAR);
const list = this._getGlobIgnored().map(normalizeIgnored(cwd)).concat(ignored, paths);
this._userIgnored = anymatch(list, undefined, ANYMATCH_OPTS);
}
return this._userIgnored([path, stats]);
}
_isntIgnored(path, stat) {
return !this._isIgnored(path, stat);
}
/**
* Provides a set of common helpers and properties relating to symlink and glob handling.
* @param {Path} path file, directory, or glob pattern being watched
* @param {Number=} depth at any depth > 0, this isn't a glob
* @returns {WatchHelper} object containing helpers for this path
*/
_getWatchHelpers(path, depth) {
const watchPath = depth || this.options.disableGlobbing || !isGlob(path) ? path : globParent(path);
const follow = this.options.followSymlinks;
return new WatchHelper(path, watchPath, follow, this);
}
// Directory helpers
// -----------------
/**
* Provides directory tracking objects
* @param {String} directory path of the directory
* @returns {DirEntry} the directory's tracking object
*/
_getWatchedDir(directory) {
if (!this._boundRemove) this._boundRemove = this._remove.bind(this);
const dir = sysPath.resolve(directory);
if (!this._watched.has(dir)) this._watched.set(dir, new DirEntry(dir, this._boundRemove));
return this._watched.get(dir);
}
// File helpers
// ------------
/**
* Check for read permissions.
* Based on this answer on SO: https://stackoverflow.com/a/11781404/1358405
* @param {fs.Stats} stats - object, result of fs_stat
* @returns {Boolean} indicates whether the file can be read
*/
_hasReadPermissions(stats) {
if (this.options.ignorePermissionErrors) return true;
// stats.mode may be bigint
const md = stats && Number.parseInt(stats.mode, 10);
const st = md & 0o777;
const it = Number.parseInt(st.toString(8)[0], 10);
return Boolean(4 & it);
}
/**
* Handles emitting unlink events for
* files and directories, and via recursion, for
* files and directories within directories that are unlinked
* @param {String} directory within which the following item is located
* @param {String} item base path of item/directory
* @returns {void}
*/
_remove(directory, item, isDirectory) {
// if what is being deleted is a directory, get that directory's paths
// for recursive deleting and cleaning of watched object
// if it is not a directory, nestedDirectoryChildren will be empty array
const path = sysPath.join(directory, item);
const fullPath = sysPath.resolve(path);
isDirectory = isDirectory != null
? isDirectory
: this._watched.has(path) || this._watched.has(fullPath);
// prevent duplicate handling in case of arriving here nearly simultaneously
// via multiple paths (such as _handleFile and _handleDir)
if (!this._throttle('remove', path, 100)) return;
// if the only watched file is removed, watch for its return
if (!isDirectory && !this.options.useFsEvents && this._watched.size === 1) {
this.add(directory, item, true);
}
// This will create a new entry in the watched object in either case
// so we got to do the directory check beforehand
const wp = this._getWatchedDir(path);
const nestedDirectoryChildren = wp.getChildren();
// Recursively remove children directories / files.
nestedDirectoryChildren.forEach(nested => this._remove(path, nested));
// Check if item was on the watched list and remove it
const parent = this._getWatchedDir(directory);
const wasTracked = parent.has(item);
parent.remove(item);
// Fixes issue #1042 -> Relative paths were detected and added as symlinks
// (https://github.com/paulmillr/chokidar/blob/e1753ddbc9571bdc33b4a4af172d52cb6e611c10/lib/nodefs-handler.js#L612),
// but never removed from the map in case the path was deleted.
// This leads to an incorrect state if the path was recreated:
// https://github.com/paulmillr/chokidar/blob/e1753ddbc9571bdc33b4a4af172d52cb6e611c10/lib/nodefs-handler.js#L553
if (this._symlinkPaths.has(fullPath)) {
this._symlinkPaths.delete(fullPath);
}
// If we wait for this file to be fully written, cancel the wait.
let relPath = path;
if (this.options.cwd) relPath = sysPath.relative(this.options.cwd, path);
if (this.options.awaitWriteFinish && this._pendingWrites.has(relPath)) {
const event = this._pendingWrites.get(relPath).cancelWait();
if (event === EV_ADD) return;
}
// The Entry will either be a directory that just got removed
// or a bogus entry to a file, in either case we have to remove it
this._watched.delete(path);
this._watched.delete(fullPath);
const eventName = isDirectory ? EV_UNLINK_DIR : EV_UNLINK;
if (wasTracked && !this._isIgnored(path)) this._emit(eventName, path);
// Avoid conflicts if we later create another file with the same name
if (!this.options.useFsEvents) {
this._closePath(path);
}
}
/**
* Closes all watchers for a path
* @param {Path} path
*/
_closePath(path) {
this._closeFile(path);
const dir = sysPath.dirname(path);
this._getWatchedDir(dir).remove(sysPath.basename(path));
}
/**
* Closes only file-specific watchers
* @param {Path} path
*/
_closeFile(path) {
const closers = this._closers.get(path);
if (!closers) return;
closers.forEach(closer => closer());
this._closers.delete(path);
}
/**
*
* @param {Path} path
* @param {Function} closer
*/
_addPathCloser(path, closer) {
if (!closer) return;
let list = this._closers.get(path);
if (!list) {
list = [];
this._closers.set(path, list);
}
list.push(closer);
}
_readdirp(root, opts) {
if (this.closed) return;
const options = {type: EV_ALL, alwaysStat: true, lstat: true, ...opts};
let stream = readdirp(root, options);
this._streams.add(stream);
stream.once(STR_CLOSE, () => {
stream = undefined;
});
stream.once(STR_END, () => {
if (stream) {
this._streams.delete(stream);
stream = undefined;
}
});
return stream;
}
}
// Export FSWatcher class
chokidar$1.FSWatcher = FSWatcher;
/**
* Instantiates watcher with paths to be tracked.
* @param {String|Array<String>} paths file/directory paths and/or globs
* @param {Object=} options chokidar opts
* @returns an instance of FSWatcher for chaining.
*/
const watch = (paths, options) => {
const watcher = new FSWatcher(options);
watcher.add(paths);
return watcher;
};
chokidar$1.watch = watch;
return chokidar$1;
}
var chokidarExports = /*@__PURE__*/ requireChokidar();
const chokidar = /*@__PURE__*/rollup.getDefaultExportFromCjs(chokidarExports);
exports.chokidar = chokidar;
//# sourceMappingURL=index.js.map
+572
View File
@@ -0,0 +1,572 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
const promises = require('node:fs/promises');
const path = require('node:path');
const process$1 = require('node:process');
const node_url = require('node:url');
const rollup = require('./rollup.js');
const parseAst_js = require('./parseAst.js');
const getLogFilter_js = require('../getLogFilter.js');
function batchWarnings(command) {
const silent = !!command.silent;
const logFilter = generateLogFilter(command);
let count = 0;
const deferredWarnings = new Map();
let warningOccurred = false;
const add = (warning) => {
count += 1;
warningOccurred = true;
if (silent)
return;
if (warning.code in deferredHandlers) {
rollup.getOrCreate(deferredWarnings, warning.code, rollup.getNewArray).push(warning);
}
else if (warning.code in immediateHandlers) {
immediateHandlers[warning.code](warning);
}
else {
title(warning.message);
defaultBody(warning);
}
};
return {
add,
get count() {
return count;
},
flush() {
if (count === 0 || silent)
return;
const codes = [...deferredWarnings.keys()].sort((a, b) => deferredWarnings.get(b).length - deferredWarnings.get(a).length);
for (const code of codes) {
deferredHandlers[code](deferredWarnings.get(code));
}
deferredWarnings.clear();
count = 0;
},
log(level, log) {
if (!logFilter(log))
return;
switch (level) {
case parseAst_js.LOGLEVEL_WARN: {
return add(log);
}
case parseAst_js.LOGLEVEL_DEBUG: {
if (!silent) {
rollup.stderr(rollup.bold(rollup.pc.blue(log.message)));
defaultBody(log);
}
return;
}
default: {
if (!silent) {
rollup.stderr(rollup.bold(rollup.pc.cyan(log.message)));
defaultBody(log);
}
}
}
},
get warningOccurred() {
return warningOccurred;
}
};
}
const immediateHandlers = {
MISSING_NODE_BUILTINS(warning) {
title(`Missing shims for Node.js built-ins`);
rollup.stderr(`Creating a browser bundle that depends on ${parseAst_js.printQuotedStringList(warning.ids)}. You might need to include https://github.com/FredKSchott/rollup-plugin-polyfill-node`);
},
UNKNOWN_OPTION(warning) {
title(`You have passed an unrecognized option`);
rollup.stderr(warning.message);
}
};
const deferredHandlers = {
CIRCULAR_DEPENDENCY(warnings) {
title(`Circular dependenc${warnings.length > 1 ? 'ies' : 'y'}`);
const displayed = warnings.length > 5 ? warnings.slice(0, 3) : warnings;
for (const warning of displayed) {
rollup.stderr(warning.ids.map(parseAst_js.relativeId).join(' -> '));
}
if (warnings.length > displayed.length) {
rollup.stderr(`...and ${warnings.length - displayed.length} more`);
}
},
EMPTY_BUNDLE(warnings) {
title(`Generated${warnings.length === 1 ? ' an' : ''} empty ${warnings.length > 1 ? 'chunks' : 'chunk'}`);
rollup.stderr(parseAst_js.printQuotedStringList(warnings.map(warning => warning.names[0])));
},
EVAL(warnings) {
title('Use of eval is strongly discouraged');
info(parseAst_js.getRollupUrl(parseAst_js.URL_AVOIDING_EVAL));
showTruncatedWarnings(warnings);
},
MISSING_EXPORT(warnings) {
title('Missing exports');
info(parseAst_js.getRollupUrl(parseAst_js.URL_NAME_IS_NOT_EXPORTED));
for (const warning of warnings) {
rollup.stderr(rollup.bold(parseAst_js.relativeId(warning.id)));
rollup.stderr(`${warning.binding} is not exported by ${parseAst_js.relativeId(warning.exporter)}`);
rollup.stderr(rollup.gray(warning.frame));
}
},
MISSING_GLOBAL_NAME(warnings) {
title(`Missing global variable ${warnings.length > 1 ? 'names' : 'name'}`);
info(parseAst_js.getRollupUrl(parseAst_js.URL_OUTPUT_GLOBALS));
rollup.stderr(`Use "output.globals" to specify browser global variable names corresponding to external modules:`);
for (const warning of warnings) {
rollup.stderr(`${rollup.bold(warning.id)} (guessing "${warning.names[0]}")`);
}
},
MIXED_EXPORTS(warnings) {
title('Mixing named and default exports');
info(parseAst_js.getRollupUrl(parseAst_js.URL_OUTPUT_EXPORTS));
rollup.stderr(rollup.bold('The following entry modules are using named and default exports together:'));
warnings.sort((a, b) => (a.id < b.id ? -1 : 1));
const displayedWarnings = warnings.length > 5 ? warnings.slice(0, 3) : warnings;
for (const warning of displayedWarnings) {
rollup.stderr(parseAst_js.relativeId(warning.id));
}
if (displayedWarnings.length < warnings.length) {
rollup.stderr(`...and ${warnings.length - displayedWarnings.length} other entry modules`);
}
rollup.stderr(`\nConsumers of your bundle will have to use chunk.default to access their default export, which may not be what you want. Use \`output.exports: "named"\` to disable this warning.`);
},
NAMESPACE_CONFLICT(warnings) {
title(`Conflicting re-exports`);
for (const warning of warnings) {
rollup.stderr(`"${rollup.bold(parseAst_js.relativeId(warning.reexporter))}" re-exports "${warning.binding}" from both "${parseAst_js.relativeId(warning.ids[0])}" and "${parseAst_js.relativeId(warning.ids[1])}" (will be ignored).`);
}
},
PLUGIN_WARNING(warnings) {
const nestedByPlugin = nest(warnings, 'plugin');
for (const { items } of nestedByPlugin) {
const nestedByMessage = nest(items, 'message');
let lastUrl = '';
for (const { key: message, items } of nestedByMessage) {
title(message);
for (const warning of items) {
if (warning.url && warning.url !== lastUrl)
info((lastUrl = warning.url));
const loc = formatLocation(warning);
if (loc) {
rollup.stderr(rollup.bold(loc));
}
if (warning.frame)
info(warning.frame);
}
}
}
},
SOURCEMAP_BROKEN(warnings) {
title(`Broken sourcemap`);
info(parseAst_js.getRollupUrl(parseAst_js.URL_SOURCEMAP_IS_LIKELY_TO_BE_INCORRECT));
const plugins = [...new Set(warnings.map(({ plugin }) => plugin).filter(Boolean))];
rollup.stderr(`Plugins that transform code (such as ${parseAst_js.printQuotedStringList(plugins)}) should generate accompanying sourcemaps.`);
},
THIS_IS_UNDEFINED(warnings) {
title('"this" has been rewritten to "undefined"');
info(parseAst_js.getRollupUrl(parseAst_js.URL_THIS_IS_UNDEFINED));
showTruncatedWarnings(warnings);
},
UNRESOLVED_IMPORT(warnings) {
title('Unresolved dependencies');
info(parseAst_js.getRollupUrl(parseAst_js.URL_TREATING_MODULE_AS_EXTERNAL_DEPENDENCY));
const dependencies = new Map();
for (const warning of warnings) {
rollup.getOrCreate(dependencies, parseAst_js.relativeId(warning.exporter), rollup.getNewArray).push(parseAst_js.relativeId(warning.id));
}
for (const [dependency, importers] of dependencies) {
rollup.stderr(`${rollup.bold(dependency)} (imported by ${parseAst_js.printQuotedStringList(importers)})`);
}
},
UNUSED_EXTERNAL_IMPORT(warnings) {
title('Unused external imports');
for (const warning of warnings) {
rollup.stderr(warning.names +
' imported from external module "' +
warning.exporter +
'" but never used in ' +
parseAst_js.printQuotedStringList(warning.ids.map(parseAst_js.relativeId)) +
'.');
}
}
};
function defaultBody(log) {
if (log.url) {
info(log.url);
}
const loc = formatLocation(log);
if (loc) {
rollup.stderr(rollup.bold(loc));
}
if (log.frame)
info(log.frame);
}
function title(string_) {
rollup.stderr(rollup.bold(rollup.yellow(`(!) ${string_}`)));
}
function info(url) {
rollup.stderr(rollup.gray(url));
}
function nest(array, property) {
const nested = [];
const lookup = new Map();
for (const item of array) {
const key = item[property];
rollup.getOrCreate(lookup, key, () => {
const items = {
items: [],
key
};
nested.push(items);
return items;
}).items.push(item);
}
return nested;
}
function showTruncatedWarnings(warnings) {
const nestedByModule = nest(warnings, 'id');
const displayedByModule = nestedByModule.length > 5 ? nestedByModule.slice(0, 3) : nestedByModule;
for (const { key: id, items } of displayedByModule) {
rollup.stderr(rollup.bold(parseAst_js.relativeId(id)));
rollup.stderr(rollup.gray(items[0].frame));
if (items.length > 1) {
rollup.stderr(`...and ${items.length - 1} other ${items.length > 2 ? 'occurrences' : 'occurrence'}`);
}
}
if (nestedByModule.length > displayedByModule.length) {
rollup.stderr(`\n...and ${nestedByModule.length - displayedByModule.length} other files`);
}
}
function generateLogFilter(command) {
const filters = rollup.ensureArray(command.filterLogs).flatMap(filter => String(filter).split(','));
if (process.env.ROLLUP_FILTER_LOGS) {
filters.push(...process.env.ROLLUP_FILTER_LOGS.split(','));
}
return getLogFilter_js.getLogFilter(filters);
}
function formatLocation(log) {
const id = log.loc?.file || log.id;
if (!id)
return null;
return log.loc ? `${id}:${log.loc.line}:${log.loc.column}` : id;
}
const stdinName = '-';
let stdinResult = null;
function stdinPlugin(argument) {
const suffix = typeof argument == 'string' && argument.length > 0 ? '.' + argument : '';
return {
load(id) {
if (id === stdinName || id.startsWith(stdinName + '.')) {
return stdinResult || (stdinResult = readStdin());
}
},
name: 'stdin',
resolveId(id) {
if (id === stdinName) {
return id + suffix;
}
}
};
}
function readStdin() {
return new Promise((resolve, reject) => {
const chunks = [];
process$1.stdin.setEncoding('utf8');
process$1.stdin
.on('data', chunk => chunks.push(chunk))
.on('end', () => {
const result = chunks.join('');
resolve(result);
})
.on('error', error => {
reject(error);
});
});
}
function waitForInputPlugin() {
return {
async buildStart(options) {
const inputSpecifiers = Array.isArray(options.input)
? options.input
: Object.keys(options.input);
let lastAwaitedSpecifier = null;
checkSpecifiers: while (true) {
for (const specifier of inputSpecifiers) {
if ((await this.resolve(specifier)) === null) {
if (lastAwaitedSpecifier !== specifier) {
rollup.stderr(`waiting for input ${rollup.bold(specifier)}...`);
lastAwaitedSpecifier = specifier;
}
await new Promise(resolve => setTimeout(resolve, 500));
continue checkSpecifiers;
}
}
break;
}
},
name: 'wait-for-input'
};
}
async function addCommandPluginsToInputOptions(inputOptions, command) {
if (command.stdin !== false) {
inputOptions.plugins.push(stdinPlugin(command.stdin));
}
if (command.waitForBundleInput === true) {
inputOptions.plugins.push(waitForInputPlugin());
}
await addPluginsFromCommandOption(command.plugin, inputOptions);
}
async function addPluginsFromCommandOption(commandPlugin, inputOptions) {
if (commandPlugin) {
const plugins = await rollup.normalizePluginOption(commandPlugin);
for (const plugin of plugins) {
if (/[={}]/.test(plugin)) {
// -p plugin=value
// -p "{transform(c,i){...}}"
await loadAndRegisterPlugin(inputOptions, plugin);
}
else {
// split out plugins joined by commas
// -p node-resolve,commonjs,buble
for (const p of plugin.split(',')) {
await loadAndRegisterPlugin(inputOptions, p);
}
}
}
}
}
async function loadAndRegisterPlugin(inputOptions, pluginText) {
let plugin = null;
let pluginArgument = undefined;
if (pluginText[0] === '{') {
// -p "{transform(c,i){...}}"
plugin = new Function('return ' + pluginText);
}
else {
const match = pluginText.match(/^([\w./:@\\^{|}-]+)(=(.*))?$/);
if (match) {
// -p plugin
// -p plugin=arg
pluginText = match[1];
pluginArgument = new Function('return ' + match[3])();
}
else {
throw new Error(`Invalid --plugin argument format: ${JSON.stringify(pluginText)}`);
}
if (!/^\.|^rollup-plugin-|[/@\\]/.test(pluginText)) {
// Try using plugin prefix variations first if applicable.
// Prefix order is significant - left has higher precedence.
for (const prefix of ['@rollup/plugin-', 'rollup-plugin-']) {
try {
plugin = await requireOrImport(prefix + pluginText);
break;
}
catch {
// if this does not work, we try requiring the actual name below
}
}
}
if (!plugin) {
try {
if (pluginText[0] == '.')
pluginText = path.resolve(pluginText);
// Windows absolute paths must be specified as file:// protocol URL
// Note that we do not have coverage for Windows-only code paths
else if (/^[A-Za-z]:\\/.test(pluginText)) {
pluginText = node_url.pathToFileURL(path.resolve(pluginText)).href;
}
plugin = await requireOrImport(pluginText);
}
catch (error) {
throw new Error(`Cannot load plugin "${pluginText}": ${error.message}.`, { cause: error });
}
}
}
// some plugins do not use `module.exports` for their entry point,
// in which case we try the named default export and the plugin name
if (typeof plugin === 'object') {
plugin = plugin.default || plugin[getCamelizedPluginBaseName(pluginText)];
}
if (!plugin) {
throw new Error(`Cannot find entry for plugin "${pluginText}". The plugin needs to export a function either as "default" or "${getCamelizedPluginBaseName(pluginText)}" for Rollup to recognize it.`);
}
inputOptions.plugins.push(typeof plugin === 'function' ? plugin.call(plugin, pluginArgument) : plugin);
}
function getCamelizedPluginBaseName(pluginText) {
return (pluginText.match(/(@rollup\/plugin-|rollup-plugin-)(.+)$/)?.[2] || pluginText)
.split(/[/\\]/)
.slice(-1)[0]
.split('.')[0]
.split('-')
.map((part, index) => (index === 0 || !part ? part : part[0].toUpperCase() + part.slice(1)))
.join('');
}
async function requireOrImport(pluginPath) {
try {
// eslint-disable-next-line @typescript-eslint/no-require-imports
return require(pluginPath);
}
catch {
return import(pluginPath);
}
}
const loadConfigFile = async (fileName, commandOptions = {}, watchMode = false) => {
const configs = await getConfigList(getDefaultFromCjs(await getConfigFileExport(fileName, commandOptions, watchMode)), commandOptions);
const warnings = batchWarnings(commandOptions);
try {
const normalizedConfigs = [];
for (const config of configs) {
const options = await rollup.mergeOptions(config, watchMode, commandOptions, warnings.log);
await addCommandPluginsToInputOptions(options, commandOptions);
normalizedConfigs.push(options);
}
return { options: normalizedConfigs, warnings };
}
catch (error_) {
warnings.flush();
throw error_;
}
};
async function getConfigFileExport(fileName, commandOptions, watchMode) {
if (commandOptions.configPlugin || commandOptions.bundleConfigAsCjs) {
try {
return await loadTranspiledConfigFile(fileName, commandOptions);
}
catch (error_) {
if (error_.message.includes('not defined in ES module scope')) {
return parseAst_js.error(parseAst_js.logCannotBundleConfigAsEsm(error_));
}
throw error_;
}
}
let cannotLoadEsm = false;
const handleWarning = (warning) => {
if (warning.message?.includes('To load an ES module') ||
warning.message?.includes('Failed to load the ES module')) {
cannotLoadEsm = true;
}
};
process$1.on('warning', handleWarning);
try {
const fileUrl = node_url.pathToFileURL(fileName);
if (watchMode) {
// We are adding the current date to allow reloads in watch mode
fileUrl.search = `?${Date.now()}`;
}
return (await import(fileUrl.href)).default;
}
catch (error_) {
if (cannotLoadEsm) {
return parseAst_js.error(parseAst_js.logCannotLoadConfigAsCjs(error_));
}
if (error_.message.includes('not defined in ES module scope')) {
return parseAst_js.error(parseAst_js.logCannotLoadConfigAsEsm(error_));
}
throw error_;
}
finally {
process$1.off('warning', handleWarning);
}
}
function getDefaultFromCjs(namespace) {
return namespace.default || namespace;
}
function getConfigImportAttributesKey(input) {
if (input === 'assert' || input === 'with')
return input;
return;
}
async function loadTranspiledConfigFile(fileName, commandOptions) {
const { bundleConfigAsCjs, configPlugin, configImportAttributesKey, silent } = commandOptions;
const warnings = batchWarnings(commandOptions);
const inputOptions = {
// Do *not* specify external callback here - instead, perform the externality check it via fallback-plugin just below this comment.
// This allows config plugin to first decide whether some import is external or not, and only then trigger the check in fallback-plugin.
// Since the check is ultra-simple during this stage of transforming the config file itself, it should be fallback instead of primary check.
// That way, e.g. importing workspace packages will work as expected - the workspace package will be bundled.
input: fileName,
onwarn: warnings.add,
plugins: [],
treeshake: false
};
await addPluginsFromCommandOption(configPlugin, inputOptions);
// Add plugin as *last* item after addPluginsFromCommandOption is complete.
// This plugin will trigger for imports not resolved by config plugin, and mark all non-relative imports as external.
inputOptions.plugins.push({
name: 'external-fallback',
resolveId: source => {
const looksLikeExternal = (source[0] !== '.' && !path.isAbsolute(source)) || source.slice(-5) === '.json';
return looksLikeExternal ? false : null;
}
});
const bundle = await rollup.rollup(inputOptions);
const { output: [{ code }] } = await bundle.generate({
exports: 'named',
format: bundleConfigAsCjs ? 'cjs' : 'es',
importAttributesKey: getConfigImportAttributesKey(configImportAttributesKey),
plugins: [
{
name: 'transpile-import-meta',
resolveImportMeta(property, { moduleId }) {
if (property === 'url') {
return `'${node_url.pathToFileURL(moduleId).href}'`;
}
if (property == 'filename') {
return `'${moduleId}'`;
}
if (property == 'dirname') {
return `'${path.dirname(moduleId)}'`;
}
if (property == null) {
return `{url:'${node_url.pathToFileURL(moduleId).href}', filename: '${moduleId}', dirname: '${path.dirname(moduleId)}'}`;
}
}
}
]
});
if (!silent && warnings.count > 0) {
rollup.stderr(rollup.bold(`loaded ${parseAst_js.relativeId(fileName)} with warnings`));
warnings.flush();
}
return loadConfigFromWrittenFile(path.join(path.dirname(fileName), `rollup.config-${Date.now()}.${bundleConfigAsCjs ? 'cjs' : 'mjs'}`), code);
}
async function loadConfigFromWrittenFile(bundledFileName, bundledCode) {
await promises.writeFile(bundledFileName, bundledCode);
try {
return (await import(node_url.pathToFileURL(bundledFileName).href)).default;
}
finally {
promises.unlink(bundledFileName).catch(error => console.warn(error?.message || error));
}
}
async function getConfigList(configFileExport, commandOptions) {
const config = await (typeof configFileExport === 'function'
? configFileExport(commandOptions)
: configFileExport);
if (Object.keys(config).length === 0) {
return parseAst_js.error(parseAst_js.logMissingConfig());
}
return Array.isArray(config) ? config : [config];
}
exports.addCommandPluginsToInputOptions = addCommandPluginsToInputOptions;
exports.batchWarnings = batchWarnings;
exports.loadConfigFile = loadConfigFile;
exports.stdinName = stdinName;
//# sourceMappingURL=loadConfigFile.js.map
+2361
View File
@@ -0,0 +1,2361 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
const native_js = require('../native.js');
const path = require('node:path');
/** @typedef {import('./types').Location} Location */
/**
* @param {import('./types').Range} range
* @param {number} index
*/
function rangeContains(range, index) {
return range.start <= index && index < range.end;
}
/**
* @param {string} source
* @param {import('./types').Options} [options]
*/
function getLocator(source, options = {}) {
const { offsetLine = 0, offsetColumn = 0 } = options;
let start = 0;
const ranges = source.split('\n').map((line, i) => {
const end = start + line.length + 1;
/** @type {import('./types').Range} */
const range = { start, end, line: i };
start = end;
return range;
});
let i = 0;
/**
* @param {string | number} search
* @param {number} [index]
* @returns {Location | undefined}
*/
function locator(search, index) {
if (typeof search === 'string') {
search = source.indexOf(search, index ?? 0);
}
if (search === -1) return undefined;
let range = ranges[i];
const d = search >= range.end ? 1 : -1;
while (range) {
if (rangeContains(range, search)) {
return {
line: offsetLine + range.line,
column: offsetColumn + search - range.start,
character: search
};
}
i += d;
range = ranges[i];
}
}
return locator;
}
/**
* @param {string} source
* @param {string | number} search
* @param {import('./types').Options} [options]
* @returns {Location | undefined}
*/
function locate(source, search, options) {
return getLocator(source, options)(search, options && options.startIndex);
}
function spaces(index) {
let result = '';
while (index--)
result += ' ';
return result;
}
function tabsToSpaces(value) {
return value.replace(/^\t+/, match => match.split('\t').join(' '));
}
const LINE_TRUNCATE_LENGTH = 120;
const MIN_CHARACTERS_SHOWN_AFTER_LOCATION = 10;
const ELLIPSIS = '...';
function getCodeFrame(source, line, column) {
let lines = source.split('\n');
// Needed if a plugin did not generate correct sourcemaps
if (line > lines.length)
return '';
const maxLineLength = Math.max(tabsToSpaces(lines[line - 1].slice(0, column)).length +
MIN_CHARACTERS_SHOWN_AFTER_LOCATION +
ELLIPSIS.length, LINE_TRUNCATE_LENGTH);
const frameStart = Math.max(0, line - 3);
let frameEnd = Math.min(line + 2, lines.length);
lines = lines.slice(frameStart, frameEnd);
while (!/\S/.test(lines[lines.length - 1])) {
lines.pop();
frameEnd -= 1;
}
const digits = String(frameEnd).length;
return lines
.map((sourceLine, index) => {
const isErrorLine = frameStart + index + 1 === line;
let lineNumber = String(index + frameStart + 1);
while (lineNumber.length < digits)
lineNumber = ` ${lineNumber}`;
let displayedLine = tabsToSpaces(sourceLine);
if (displayedLine.length > maxLineLength) {
displayedLine = `${displayedLine.slice(0, maxLineLength - ELLIPSIS.length)}${ELLIPSIS}`;
}
if (isErrorLine) {
const indicator = spaces(digits + 2 + tabsToSpaces(sourceLine.slice(0, column)).length) + '^';
return `${lineNumber}: ${displayedLine}\n${indicator}`;
}
return `${lineNumber}: ${displayedLine}`;
})
.join('\n');
}
const LOGLEVEL_SILENT = 'silent';
const LOGLEVEL_ERROR = 'error';
const LOGLEVEL_WARN = 'warn';
const LOGLEVEL_INFO = 'info';
const LOGLEVEL_DEBUG = 'debug';
const logLevelPriority = {
[LOGLEVEL_DEBUG]: 0,
[LOGLEVEL_INFO]: 1,
[LOGLEVEL_SILENT]: 3,
[LOGLEVEL_WARN]: 2
};
const ABSOLUTE_PATH_REGEX = /^(?:\/|(?:[A-Za-z]:)?[/\\|])/;
const RELATIVE_PATH_REGEX = /^\.?\.(\/|$)/;
function isAbsolute(path) {
return ABSOLUTE_PATH_REGEX.test(path);
}
function isRelative(path) {
return RELATIVE_PATH_REGEX.test(path);
}
const BACKSLASH_REGEX = /\\/g;
function normalize(path) {
return path.replace(BACKSLASH_REGEX, '/');
}
function printQuotedStringList(list, verbs) {
const isSingleItem = list.length <= 1;
const quotedList = list.map(item => `"${item}"`);
let output = isSingleItem
? quotedList[0]
: `${quotedList.slice(0, -1).join(', ')} and ${quotedList.slice(-1)[0]}`;
if (verbs) {
output += ` ${isSingleItem ? verbs[0] : verbs[1]}`;
}
return output;
}
const ANY_SLASH_REGEX = /[/\\]/;
function relative(from, to) {
const fromParts = from.split(ANY_SLASH_REGEX).filter(Boolean);
const toParts = to.split(ANY_SLASH_REGEX).filter(Boolean);
if (fromParts[0] === '.')
fromParts.shift();
if (toParts[0] === '.')
toParts.shift();
while (fromParts[0] && toParts[0] && fromParts[0] === toParts[0]) {
fromParts.shift();
toParts.shift();
}
while (toParts[0] === '..' && fromParts.length > 0) {
toParts.shift();
fromParts.pop();
}
while (fromParts.pop()) {
toParts.unshift('..');
}
return toParts.join('/');
}
function getAliasName(id) {
const base = path.basename(id);
return base.slice(0, Math.max(0, base.length - path.extname(id).length));
}
function relativeId(id) {
if (!isAbsolute(id))
return id;
return relative(path.resolve(), id);
}
function isPathFragment(name) {
// starting with "/", "./", "../", "C:/"
return (name[0] === '/' || (name[0] === '.' && (name[1] === '/' || name[1] === '.')) || isAbsolute(name));
}
const UPPER_DIR_REGEX = /^(\.\.\/)*\.\.$/;
function getImportPath(importerId, targetPath, stripJsExtension, ensureFileName) {
while (targetPath.startsWith('../')) {
targetPath = targetPath.slice(3);
importerId = '_/' + importerId;
}
let relativePath = normalize(relative(path.dirname(importerId), targetPath));
if (stripJsExtension && relativePath.endsWith('.js')) {
relativePath = relativePath.slice(0, -3);
}
if (ensureFileName) {
if (relativePath === '')
return '../' + path.basename(targetPath);
if (UPPER_DIR_REGEX.test(relativePath)) {
return [...relativePath.split('/'), '..', path.basename(targetPath)].join('/');
}
}
return relativePath ? (relativePath.startsWith('..') ? relativePath : './' + relativePath) : '.';
}
function isValidUrl(url) {
try {
new URL(url);
}
catch {
return false;
}
return true;
}
function getRollupUrl(snippet) {
return `https://rollupjs.org/${snippet}`;
}
function addTrailingSlashIfMissed(url) {
if (!url.endsWith('/')) {
return url + '/';
}
return url;
}
// troubleshooting
const URL_AVOIDING_EVAL = 'troubleshooting/#avoiding-eval';
const URL_NAME_IS_NOT_EXPORTED = 'troubleshooting/#error-name-is-not-exported-by-module';
const URL_THIS_IS_UNDEFINED = 'troubleshooting/#error-this-is-undefined';
const URL_TREATING_MODULE_AS_EXTERNAL_DEPENDENCY = 'troubleshooting/#warning-treating-module-as-external-dependency';
const URL_SOURCEMAP_IS_LIKELY_TO_BE_INCORRECT = 'troubleshooting/#warning-sourcemap-is-likely-to-be-incorrect';
// configuration-options
const URL_JSX = 'configuration-options/#jsx';
const URL_OUTPUT_AMD_ID = 'configuration-options/#output-amd-id';
const URL_OUTPUT_AMD_BASEPATH = 'configuration-options/#output-amd-basepath';
const URL_OUTPUT_DIR = 'configuration-options/#output-dir';
const URL_OUTPUT_EXPORTS = 'configuration-options/#output-exports';
const URL_OUTPUT_EXTEND = 'configuration-options/#output-extend';
const URL_OUTPUT_EXTERNALIMPORTATTRIBUTES = 'configuration-options/#output-externalimportattributes';
const URL_OUTPUT_FORMAT = 'configuration-options/#output-format';
const URL_OUTPUT_GENERATEDCODE = 'configuration-options/#output-generatedcode';
const URL_OUTPUT_GLOBALS = 'configuration-options/#output-globals';
const URL_OUTPUT_INLINEDYNAMICIMPORTS = 'configuration-options/#output-inlinedynamicimports';
const URL_OUTPUT_INTEROP = 'configuration-options/#output-interop';
const URL_OUTPUT_MANUALCHUNKS = 'configuration-options/#output-manualchunks';
const URL_OUTPUT_NAME = 'configuration-options/#output-name';
const URL_OUTPUT_SOURCEMAPBASEURL = 'configuration-options/#output-sourcemapbaseurl';
const URL_OUTPUT_SOURCEMAPFILE = 'configuration-options/#output-sourcemapfile';
const URL_PRESERVEENTRYSIGNATURES = 'configuration-options/#preserveentrysignatures';
const URL_TREESHAKE = 'configuration-options/#treeshake';
const URL_TREESHAKE_PURE = 'configuration-options/#pure';
const URL_TREESHAKE_NOSIDEEFFECTS = 'configuration-options/#no-side-effects';
const URL_TREESHAKE_MODULESIDEEFFECTS = 'configuration-options/#treeshake-modulesideeffects';
const URL_WATCH = 'configuration-options/#watch';
// es-module-syntax
const URL_SOURCE_PHASE_IMPORTS = 'es-module-syntax/#source-phase-import';
// command-line-interface
const URL_BUNDLE_CONFIG_AS_CJS = 'command-line-interface/#bundleconfigascjs';
const URL_CONFIGURATION_FILES = 'command-line-interface/#configuration-files';
const URL_GENERATEBUNDLE = 'plugin-development/#generatebundle';
const URL_LOAD = 'plugin-development/#load';
const URL_TRANSFORM = 'plugin-development/#transform';
function error(base) {
throw base instanceof Error ? base : getRollupError(base);
}
function getRollupError(base) {
augmentLogMessage(base);
const errorInstance = Object.assign(new Error(base.message), base);
Object.defineProperty(errorInstance, 'name', {
value: 'RollupError',
writable: true
});
return errorInstance;
}
function augmentCodeLocation(properties, pos, source, id) {
if (typeof pos === 'object') {
const { line, column } = pos;
properties.loc = { column, file: id, line };
}
else {
properties.pos = pos;
const location = locate(source, pos, { offsetLine: 1 });
if (!location) {
return;
}
const { line, column } = location;
properties.loc = { column, file: id, line };
}
if (properties.frame === undefined) {
const { line, column } = properties.loc;
properties.frame = getCodeFrame(source, line, column);
}
}
const symbolAugmented = Symbol('augmented');
function augmentLogMessage(log) {
// Make sure to only augment the log message once
if (!(log.plugin || log.loc) || log[symbolAugmented]) {
return;
}
log[symbolAugmented] = true;
let prefix = '';
if (log.plugin) {
prefix += `[plugin ${log.plugin}] `;
}
const id = log.id || log.loc?.file;
if (id) {
const position = log.loc ? ` (${log.loc.line}:${log.loc.column})` : '';
prefix += `${relativeId(id)}${position}: `;
}
const oldMessage = log.message;
log.message = prefix + log.message;
tweakStackMessage(log, oldMessage);
}
// Error codes should be sorted alphabetically while errors should be sorted by
// error code below
const ADDON_ERROR = 'ADDON_ERROR', ALREADY_CLOSED = 'ALREADY_CLOSED', AMBIGUOUS_EXTERNAL_NAMESPACES = 'AMBIGUOUS_EXTERNAL_NAMESPACES', ANONYMOUS_PLUGIN_CACHE = 'ANONYMOUS_PLUGIN_CACHE', ASSET_NOT_FINALISED = 'ASSET_NOT_FINALISED', ASSET_NOT_FOUND = 'ASSET_NOT_FOUND', ASSET_SOURCE_ALREADY_SET = 'ASSET_SOURCE_ALREADY_SET', ASSET_SOURCE_MISSING = 'ASSET_SOURCE_MISSING', BAD_LOADER = 'BAD_LOADER', CANNOT_CALL_NAMESPACE = 'CANNOT_CALL_NAMESPACE', CANNOT_EMIT_FROM_OPTIONS_HOOK = 'CANNOT_EMIT_FROM_OPTIONS_HOOK', CHUNK_NOT_GENERATED = 'CHUNK_NOT_GENERATED', CHUNK_INVALID = 'CHUNK_INVALID', CIRCULAR_CHUNK = 'CIRCULAR_CHUNK', CIRCULAR_DEPENDENCY = 'CIRCULAR_DEPENDENCY', CIRCULAR_REEXPORT = 'CIRCULAR_REEXPORT', CONST_REASSIGN = 'CONST_REASSIGN', CYCLIC_CROSS_CHUNK_REEXPORT = 'CYCLIC_CROSS_CHUNK_REEXPORT', DEPRECATED_FEATURE = 'DEPRECATED_FEATURE', DUPLICATE_ARGUMENT_NAME = 'DUPLICATE_ARGUMENT_NAME', DUPLICATE_EXPORT = 'DUPLICATE_EXPORT', DUPLICATE_IMPORT_OPTIONS = 'DUPLICATE_IMPORT_OPTIONS', DUPLICATE_PLUGIN_NAME = 'DUPLICATE_PLUGIN_NAME', EMPTY_BUNDLE = 'EMPTY_BUNDLE', EVAL = 'EVAL', EXTERNAL_MODULES_CANNOT_BE_INCLUDED_IN_MANUAL_CHUNKS = 'EXTERNAL_MODULES_CANNOT_BE_INCLUDED_IN_MANUAL_CHUNKS', EXTERNAL_MODULES_CANNOT_BE_TRANSFORMED_TO_MODULES = 'EXTERNAL_MODULES_CANNOT_BE_TRANSFORMED_TO_MODULES', EXTERNAL_SYNTHETIC_EXPORTS = 'EXTERNAL_SYNTHETIC_EXPORTS', FAIL_AFTER_WARNINGS = 'FAIL_AFTER_WARNINGS', FILE_NAME_CONFLICT = 'FILE_NAME_CONFLICT', FILE_NAME_OUTSIDE_OUTPUT_DIRECTORY = 'FILE_NAME_OUTSIDE_OUTPUT_DIRECTORY', FILE_NOT_FOUND = 'FILE_NOT_FOUND', FIRST_SIDE_EFFECT = 'FIRST_SIDE_EFFECT', ILLEGAL_IDENTIFIER_AS_NAME = 'ILLEGAL_IDENTIFIER_AS_NAME', ILLEGAL_REASSIGNMENT = 'ILLEGAL_REASSIGNMENT', INCONSISTENT_IMPORT_ATTRIBUTES = 'INCONSISTENT_IMPORT_ATTRIBUTES', INVALID_ANNOTATION = 'INVALID_ANNOTATION', INPUT_HOOK_IN_OUTPUT_PLUGIN = 'INPUT_HOOK_IN_OUTPUT_PLUGIN', INVALID_CHUNK = 'INVALID_CHUNK', INVALID_CONFIG_MODULE_FORMAT = 'INVALID_CONFIG_MODULE_FORMAT', INVALID_EXPORT_OPTION = 'INVALID_EXPORT_OPTION', INVALID_EXTERNAL_ID = 'INVALID_EXTERNAL_ID', INVALID_IMPORT_ATTRIBUTE = 'INVALID_IMPORT_ATTRIBUTE', INVALID_LOG_POSITION = 'INVALID_LOG_POSITION', INVALID_OPTION = 'INVALID_OPTION', INVALID_PLUGIN_HOOK = 'INVALID_PLUGIN_HOOK', INVALID_ROLLUP_PHASE = 'INVALID_ROLLUP_PHASE', INVALID_SETASSETSOURCE = 'INVALID_SETASSETSOURCE', INVALID_TLA_FORMAT = 'INVALID_TLA_FORMAT', MISSING_CONFIG = 'MISSING_CONFIG', MISSING_EXPORT = 'MISSING_EXPORT', MISSING_EXTERNAL_CONFIG = 'MISSING_EXTERNAL_CONFIG', MISSING_GLOBAL_NAME = 'MISSING_GLOBAL_NAME', MISSING_IMPLICIT_DEPENDANT = 'MISSING_IMPLICIT_DEPENDANT', MISSING_JSX_EXPORT = 'MISSING_JSX_EXPORT', MISSING_NAME_OPTION_FOR_IIFE_EXPORT = 'MISSING_NAME_OPTION_FOR_IIFE_EXPORT', MISSING_NODE_BUILTINS = 'MISSING_NODE_BUILTINS', MISSING_OPTION = 'MISSING_OPTION', MIXED_EXPORTS = 'MIXED_EXPORTS', MODULE_LEVEL_DIRECTIVE = 'MODULE_LEVEL_DIRECTIVE', NAMESPACE_CONFLICT = 'NAMESPACE_CONFLICT', NON_EXTERNAL_SOURCE_PHASE_IMPORT = 'NON_EXTERNAL_SOURCE_PHASE_IMPORT', NO_TRANSFORM_MAP_OR_AST_WITHOUT_CODE = 'NO_TRANSFORM_MAP_OR_AST_WITHOUT_CODE', ONLY_INLINE_SOURCEMAPS = 'ONLY_INLINE_SOURCEMAPS', OPTIMIZE_CHUNK_STATUS = 'OPTIMIZE_CHUNK_STATUS', PARSE_ERROR = 'PARSE_ERROR', PLUGIN_ERROR = 'PLUGIN_ERROR', REDECLARATION_ERROR = 'REDECLARATION_ERROR', RESERVED_NAMESPACE = 'RESERVED_NAMESPACE', SHIMMED_EXPORT = 'SHIMMED_EXPORT', SOURCE_PHASE_FORMAT_UNSUPPORTED = 'SOURCE_PHASE_FORMAT_UNSUPPORTED', SOURCEMAP_BROKEN = 'SOURCEMAP_BROKEN', SOURCEMAP_ERROR = 'SOURCEMAP_ERROR', SYNTHETIC_NAMED_EXPORTS_NEED_NAMESPACE_EXPORT = 'SYNTHETIC_NAMED_EXPORTS_NEED_NAMESPACE_EXPORT', THIS_IS_UNDEFINED = 'THIS_IS_UNDEFINED', UNEXPECTED_NAMED_IMPORT = 'UNEXPECTED_NAMED_IMPORT', UNKNOWN_OPTION = 'UNKNOWN_OPTION', UNRESOLVED_ENTRY = 'UNRESOLVED_ENTRY', UNRESOLVED_IMPORT = 'UNRESOLVED_IMPORT', UNUSED_EXTERNAL_IMPORT = 'UNUSED_EXTERNAL_IMPORT', VALIDATION_ERROR = 'VALIDATION_ERROR';
function logAddonNotGenerated(message, hook, plugin) {
return {
code: ADDON_ERROR,
message: `Could not retrieve "${hook}". Check configuration of plugin "${plugin}".
\tError Message: ${message}`
};
}
function logAlreadyClosed() {
return {
code: ALREADY_CLOSED,
message: 'Bundle is already closed, no more calls to "generate" or "write" are allowed.'
};
}
function logAmbiguousExternalNamespaces(binding, reexportingModule, usedModule, sources) {
return {
binding,
code: AMBIGUOUS_EXTERNAL_NAMESPACES,
ids: sources,
message: `Ambiguous external namespace resolution: "${relativeId(reexportingModule)}" re-exports "${binding}" from one of the external modules ${printQuotedStringList(sources.map(module => relativeId(module)))}, guessing "${relativeId(usedModule)}".`,
reexporter: reexportingModule
};
}
function logAnonymousPluginCache() {
return {
code: ANONYMOUS_PLUGIN_CACHE,
message: 'A plugin is trying to use the Rollup cache but is not declaring a plugin name or cacheKey.'
};
}
function logAssetNotFinalisedForFileName(name) {
return {
code: ASSET_NOT_FINALISED,
message: `Plugin error - Unable to get file name for asset "${name}". Ensure that the source is set and that generate is called first. If you reference assets via import.meta.ROLLUP_FILE_URL_<referenceId>, you need to either have set their source after "renderStart" or need to provide an explicit "fileName" when emitting them.`
};
}
function logAssetReferenceIdNotFoundForSetSource(assetReferenceId) {
return {
code: ASSET_NOT_FOUND,
message: `Plugin error - Unable to set the source for unknown asset "${assetReferenceId}".`
};
}
function logAssetSourceAlreadySet(name) {
return {
code: ASSET_SOURCE_ALREADY_SET,
message: `Unable to set the source for asset "${name}", source already set.`
};
}
function logNoAssetSourceSet(assetName) {
return {
code: ASSET_SOURCE_MISSING,
message: `Plugin error creating asset "${assetName}" - no asset source set.`
};
}
function logBadLoader(id) {
return {
code: BAD_LOADER,
message: `Error loading "${relativeId(id)}": plugin load hook should return a string, a { code, map } object, or nothing/null.`
};
}
function logCannotCallNamespace(name) {
return {
code: CANNOT_CALL_NAMESPACE,
message: `Cannot call a namespace ("${name}").`
};
}
function logCannotEmitFromOptionsHook() {
return {
code: CANNOT_EMIT_FROM_OPTIONS_HOOK,
message: `Cannot emit files or set asset sources in the "outputOptions" hook, use the "renderStart" hook instead.`
};
}
function logChunkNotGeneratedForFileName(name) {
return {
code: CHUNK_NOT_GENERATED,
message: `Plugin error - Unable to get file name for emitted chunk "${name}". You can only get file names once chunks have been generated after the "renderStart" hook.`
};
}
function logChunkInvalid({ fileName, code }, { pos, message }) {
const errorProperties = {
code: CHUNK_INVALID,
message: `Chunk "${fileName}" is not valid JavaScript: ${message}.`
};
augmentCodeLocation(errorProperties, pos, code, fileName);
return errorProperties;
}
function logCircularDependency(cyclePath) {
return {
code: CIRCULAR_DEPENDENCY,
ids: cyclePath,
message: `Circular dependency: ${cyclePath.map(relativeId).join(' -> ')}`
};
}
function logCircularChunk(cyclePath, isManualChunkConflict) {
return {
code: CIRCULAR_CHUNK,
ids: cyclePath,
message: `Circular chunk: ${cyclePath.join(' -> ')}. ${isManualChunkConflict
? `Please adjust the manual chunk logic for these chunks.`
: `Please consider disabling the "output.onlyExplicitManualChunks" option, as enabling it causes modules located between the modules included in the manual chunk "${cyclePath.at(-2)}" to be extracted into the separate chunk "${cyclePath.at(-1)}".`}`
};
}
function logCircularReexport(exportName, exporter) {
return {
code: CIRCULAR_REEXPORT,
exporter,
message: `"${exportName}" cannot be exported from "${relativeId(exporter)}" as it is a reexport that references itself.`
};
}
function logCyclicCrossChunkReexport(exportName, exporter, reexporter, importer, preserveModules) {
return {
code: CYCLIC_CROSS_CHUNK_REEXPORT,
exporter,
id: importer,
message: `Export "${exportName}" of module "${relativeId(exporter)}" was reexported through module "${relativeId(reexporter)}" while both modules are dependencies of each other and will end up in different chunks by current Rollup settings. This scenario is not well supported at the moment as it will produce a circular dependency between chunks and will likely lead to broken execution order.\nEither change the import in "${relativeId(importer)}" to point directly to the exporting module or ${preserveModules ? 'do not use "output.preserveModules"' : 'reconfigure "output.manualChunks"'} to ensure these modules end up in the same chunk.`,
reexporter
};
}
function logDeprecation(deprecation, urlSnippet, plugin) {
return {
code: DEPRECATED_FEATURE,
message: deprecation,
url: getRollupUrl(urlSnippet),
...({})
};
}
function logConstVariableReassignError() {
return {
code: CONST_REASSIGN,
message: 'Cannot reassign a variable declared with `const`'
};
}
function logDuplicateArgumentNameError(name) {
return {
code: DUPLICATE_ARGUMENT_NAME,
message: `Duplicate argument name "${name}"`
};
}
function logDuplicateExportError(name) {
return { code: DUPLICATE_EXPORT, message: `Duplicate export "${name}"` };
}
function logDuplicateImportOptions() {
return {
code: DUPLICATE_IMPORT_OPTIONS,
message: 'Either use --input, or pass input path as argument'
};
}
function logDuplicatePluginName(plugin) {
return {
code: DUPLICATE_PLUGIN_NAME,
message: `The plugin name ${plugin} is being used twice in the same build. Plugin names must be distinct or provide a cacheKey (please post an issue to the plugin if you are a plugin user).`
};
}
function logEmptyChunk(chunkName) {
return {
code: EMPTY_BUNDLE,
message: `Generated an empty chunk: "${chunkName}".`,
names: [chunkName]
};
}
function logEval(id) {
return {
code: EVAL,
id,
message: `Use of eval in "${relativeId(id)}" is strongly discouraged as it poses security risks and may cause issues with minification.`,
url: getRollupUrl(URL_AVOIDING_EVAL)
};
}
function logExternalSyntheticExports(id, importer) {
return {
code: EXTERNAL_SYNTHETIC_EXPORTS,
exporter: id,
message: `External "${id}" cannot have "syntheticNamedExports" enabled (imported by "${relativeId(importer)}").`
};
}
function logFailAfterWarnings() {
return {
code: FAIL_AFTER_WARNINGS,
message: 'Warnings occurred and --failAfterWarnings flag present.'
};
}
function logFileNameConflict(fileName) {
return {
code: FILE_NAME_CONFLICT,
message: `The emitted file "${fileName}" overwrites a previously emitted file of the same name.`
};
}
function logFileNameOutsideOutputDirectory(fileName) {
return {
code: FILE_NAME_OUTSIDE_OUTPUT_DIRECTORY,
message: `The output file name "${fileName}" is not contained in the output directory. Make sure all file names are relative paths without ".." segments.`
};
}
function logFileReferenceIdNotFoundForFilename(assetReferenceId) {
return {
code: FILE_NOT_FOUND,
message: `Plugin error - Unable to get file name for unknown file "${assetReferenceId}".`
};
}
function logFirstSideEffect(source, id, { line, column }) {
return {
code: FIRST_SIDE_EFFECT,
message: `First side effect in ${relativeId(id)} is at (${line}:${column})\n${getCodeFrame(source, line, column)}`
};
}
function logIllegalIdentifierAsName(name) {
return {
code: ILLEGAL_IDENTIFIER_AS_NAME,
message: `Given name "${name}" is not a legal JS identifier. If you need this, you can try "output.extend: true".`,
url: getRollupUrl(URL_OUTPUT_EXTEND)
};
}
function logIllegalImportReassignment(name, importingId) {
return {
code: ILLEGAL_REASSIGNMENT,
message: `Illegal reassignment of import "${name}" in "${relativeId(importingId)}".`
};
}
function logInconsistentImportAttributes(existingAttributes, newAttributes, source, importer) {
return {
code: INCONSISTENT_IMPORT_ATTRIBUTES,
message: `Module "${relativeId(importer)}" tried to import "${relativeId(source)}" with ${formatAttributes(newAttributes)} attributes, but it was already imported elsewhere with ${formatAttributes(existingAttributes)} attributes. Please ensure that import attributes for the same module are always consistent.`
};
}
const formatAttributes = (attributes) => {
const entries = Object.entries(attributes);
if (entries.length === 0)
return 'no';
return entries.map(([key, value]) => `"${key}": "${value}"`).join(', ');
};
function logInvalidAnnotation(comment, id, type) {
return {
code: INVALID_ANNOTATION,
id,
message: `A comment\n\n"${comment}"\n\nin "${relativeId(id)}" contains an annotation that Rollup cannot interpret due to the position of the comment. The comment will be removed to avoid issues.`,
url: getRollupUrl(type === 'noSideEffects' ? URL_TREESHAKE_NOSIDEEFFECTS : URL_TREESHAKE_PURE)
};
}
function logInputHookInOutputPlugin(pluginName, hookName) {
return {
code: INPUT_HOOK_IN_OUTPUT_PLUGIN,
message: `The "${hookName}" hook used by the output plugin ${pluginName} is a build time hook and will not be run for that plugin. Either this plugin cannot be used as an output plugin, or it should have an option to configure it as an output plugin.`
};
}
function logCannotAssignModuleToChunk(moduleId, assignToAlias, currentAlias) {
return {
code: INVALID_CHUNK,
message: `Cannot assign "${relativeId(moduleId)}" to the "${assignToAlias}" chunk as it is already in the "${currentAlias}" chunk.`
};
}
function tweakStackMessage(error, oldMessage) {
if (!error.stack) {
return error;
}
error.stack = error.stack.replace(oldMessage, error.message);
return error;
}
function logCannotBundleConfigAsEsm(originalError) {
return tweakStackMessage({
cause: originalError,
code: INVALID_CONFIG_MODULE_FORMAT,
message: `Rollup transpiled your configuration to an ES module even though it appears to contain CommonJS elements. To resolve this, you can pass the "--bundleConfigAsCjs" flag to Rollup or change your configuration to only contain valid ESM code.\n\nOriginal error: ${originalError.message}`,
stack: originalError.stack,
url: getRollupUrl(URL_BUNDLE_CONFIG_AS_CJS)
}, originalError.message);
}
function logCannotLoadConfigAsCjs(originalError) {
return tweakStackMessage({
cause: originalError,
code: INVALID_CONFIG_MODULE_FORMAT,
message: `Node tried to load your configuration file as CommonJS even though it is likely an ES module. To resolve this, change the extension of your configuration to ".mjs", set "type": "module" in your package.json file or pass the "--bundleConfigAsCjs" flag.\n\nOriginal error: ${originalError.message}`,
stack: originalError.stack,
url: getRollupUrl(URL_BUNDLE_CONFIG_AS_CJS)
}, originalError.message);
}
function logCannotLoadConfigAsEsm(originalError) {
return tweakStackMessage({
cause: originalError,
code: INVALID_CONFIG_MODULE_FORMAT,
message: `Node tried to load your configuration as an ES module even though it is likely CommonJS. To resolve this, change the extension of your configuration to ".cjs" or pass the "--bundleConfigAsCjs" flag.\n\nOriginal error: ${originalError.message}`,
stack: originalError.stack,
url: getRollupUrl(URL_BUNDLE_CONFIG_AS_CJS)
}, originalError.message);
}
function logInvalidExportOptionValue(optionValue) {
return {
code: INVALID_EXPORT_OPTION,
message: `"output.exports" must be "default", "named", "none", "auto", or left unspecified (defaults to "auto"), received "${optionValue}".`,
url: getRollupUrl(URL_OUTPUT_EXPORTS)
};
}
function logIncompatibleExportOptionValue(optionValue, keys, entryModule) {
return {
code: INVALID_EXPORT_OPTION,
message: `"${optionValue}" was specified for "output.exports", but entry module "${relativeId(entryModule)}" has the following exports: ${printQuotedStringList(keys)}`,
url: getRollupUrl(URL_OUTPUT_EXPORTS)
};
}
function logInternalIdCannotBeExternal(source, importer) {
return {
code: INVALID_EXTERNAL_ID,
message: `"${source}" is imported as an external by "${relativeId(importer)}", but is already an existing non-external module id.`
};
}
function logImportOptionsAreInvalid(importer) {
return {
code: INVALID_IMPORT_ATTRIBUTE,
message: `Rollup could not statically analyze the options argument of a dynamic import in "${relativeId(importer)}". Dynamic import options need to be an object with a nested attributes object.`
};
}
function logImportAttributeIsInvalid(importer) {
return {
code: INVALID_IMPORT_ATTRIBUTE,
message: `Rollup could not statically analyze an import attribute of a dynamic import in "${relativeId(importer)}". Import attributes need to have string keys and values.`
};
}
function logInvalidLogPosition(plugin) {
return {
code: INVALID_LOG_POSITION,
message: `Plugin "${plugin}" tried to add a file position to a log or warning. This is only supported in the "transform" hook at the moment and will be ignored.`
};
}
function logInvalidOption(option, urlSnippet, explanation, value) {
return {
code: INVALID_OPTION,
message: `Invalid value ${value === undefined ? '' : `${JSON.stringify(value)} `}for option "${option}" - ${explanation}.`,
url: getRollupUrl(urlSnippet)
};
}
function logInvalidAddonPluginHook(hook, plugin) {
return {
code: INVALID_PLUGIN_HOOK,
hook,
message: `Error running plugin hook "${hook}" for plugin "${plugin}", expected a string, a function hook or an object with a "handler" string or function.`,
plugin
};
}
function logInvalidFunctionPluginHook(hook, plugin) {
return {
code: INVALID_PLUGIN_HOOK,
hook,
message: `Error running plugin hook "${hook}" for plugin "${plugin}", expected a function hook or an object with a "handler" function.`,
plugin
};
}
function logInvalidRollupPhaseForChunkEmission() {
return {
code: INVALID_ROLLUP_PHASE,
message: `Cannot emit chunks after module loading has finished.`
};
}
function logInvalidSetAssetSourceCall() {
return {
code: INVALID_SETASSETSOURCE,
message: `setAssetSource cannot be called in transform for caching reasons. Use emitFile with a source, or call setAssetSource in another hook.`
};
}
function logInvalidFormatForTopLevelAwait(id, format) {
return {
code: INVALID_TLA_FORMAT,
id,
message: `Module format "${format}" does not support top-level await. Use the "es" or "system" output formats rather.`
};
}
function logMissingConfig() {
return {
code: MISSING_CONFIG,
message: 'Config file must export an options object, or an array of options objects',
url: getRollupUrl(URL_CONFIGURATION_FILES)
};
}
function logMissingEntryExport(binding, exporter) {
return {
binding,
code: MISSING_EXPORT,
exporter,
message: `Exported variable "${binding}" is not defined in "${relativeId(exporter)}".`,
url: getRollupUrl(URL_NAME_IS_NOT_EXPORTED)
};
}
function logMissingExport(binding, importingModule, exporter, missingButExportExists) {
const baseLog = {
binding,
code: MISSING_EXPORT,
exporter,
id: importingModule,
url: getRollupUrl(URL_NAME_IS_NOT_EXPORTED)
};
if (missingButExportExists) {
return {
...baseLog,
message: `Exported variable "${binding}" is not defined in "${relativeId(exporter)}", but it is imported by "${relativeId(importingModule)}".`
};
}
const isJson = path.extname(exporter) === '.json';
return {
...baseLog,
message: `"${binding}" is not exported by "${relativeId(exporter)}", imported by "${relativeId(importingModule)}".${isJson ? ' (Note that you need @rollup/plugin-json to import JSON files)' : ''}`
};
}
function logMissingExternalConfig(file) {
return {
code: MISSING_EXTERNAL_CONFIG,
message: `Could not resolve config file "${file}"`
};
}
function logMissingGlobalName(externalId, guess) {
return {
code: MISSING_GLOBAL_NAME,
id: externalId,
message: `No name was provided for external module "${externalId}" in "output.globals" guessing "${guess}".`,
names: [guess],
url: getRollupUrl(URL_OUTPUT_GLOBALS)
};
}
function logImplicitDependantCannotBeExternal(unresolvedId, implicitlyLoadedBefore) {
return {
code: MISSING_IMPLICIT_DEPENDANT,
message: `Module "${relativeId(unresolvedId)}" that should be implicitly loaded before "${relativeId(implicitlyLoadedBefore)}" cannot be external.`
};
}
function logUnresolvedImplicitDependant(unresolvedId, implicitlyLoadedBefore) {
return {
code: MISSING_IMPLICIT_DEPENDANT,
message: `Module "${relativeId(unresolvedId)}" that should be implicitly loaded before "${relativeId(implicitlyLoadedBefore)}" could not be resolved.`
};
}
function logImplicitDependantIsNotIncluded(module) {
const implicitDependencies = [...module.implicitlyLoadedBefore]
.map(dependency => relativeId(dependency.id))
.sort();
return {
code: MISSING_IMPLICIT_DEPENDANT,
message: `Module "${relativeId(module.id)}" that should be implicitly loaded before ${printQuotedStringList(implicitDependencies)} is not included in the module graph. Either it was not imported by an included module or only via a tree-shaken dynamic import, or no imported bindings were used and it had otherwise no side-effects.`
};
}
function logMissingJsxExport(name, exporter, importer) {
return {
code: MISSING_JSX_EXPORT,
exporter,
id: importer,
message: `Export "${name}" is not defined in module "${relativeId(exporter)}" even though it is needed in "${relativeId(importer)}" to provide JSX syntax. Please check your "jsx" option.`,
names: [name],
url: getRollupUrl(URL_JSX)
};
}
function logMissingNameOptionForIifeExport() {
return {
code: MISSING_NAME_OPTION_FOR_IIFE_EXPORT,
message: `If you do not supply "output.name", you may not be able to access the exports of an IIFE bundle.`,
url: getRollupUrl(URL_OUTPUT_NAME)
};
}
function logMissingNameOptionForUmdExport() {
return {
code: MISSING_NAME_OPTION_FOR_IIFE_EXPORT,
message: 'You must supply "output.name" for UMD bundles that have exports so that the exports are accessible in environments without a module loader.',
url: getRollupUrl(URL_OUTPUT_NAME)
};
}
function logMissingNodeBuiltins(externalBuiltins) {
return {
code: MISSING_NODE_BUILTINS,
ids: externalBuiltins,
message: `Creating a browser bundle that depends on Node.js built-in modules (${printQuotedStringList(externalBuiltins)}). You might need to include https://github.com/FredKSchott/rollup-plugin-polyfill-node`
};
}
function logMissingFileOrDirOption() {
return {
code: MISSING_OPTION,
message: 'You must specify "output.file" or "output.dir" for the build.',
url: getRollupUrl(URL_OUTPUT_DIR)
};
}
function logMixedExport(facadeModuleId, name) {
return {
code: MIXED_EXPORTS,
id: facadeModuleId,
message: `Entry module "${relativeId(facadeModuleId)}" is using named and default exports together. Consumers of your bundle will have to use \`${name || 'chunk'}.default\` to access the default export, which may not be what you want. Use \`output.exports: "named"\` to disable this warning.`,
url: getRollupUrl(URL_OUTPUT_EXPORTS)
};
}
function logModuleLevelDirective(directive, id) {
return {
code: MODULE_LEVEL_DIRECTIVE,
id,
message: `Module level directives cause errors when bundled, "${directive}" in "${relativeId(id)}" was ignored.`
};
}
function logNamespaceConflict(binding, reexportingModuleId, sources) {
return {
binding,
code: NAMESPACE_CONFLICT,
ids: sources,
message: `Conflicting namespaces: "${relativeId(reexportingModuleId)}" re-exports "${binding}" from one of the modules ${printQuotedStringList(sources.map(moduleId => relativeId(moduleId)))} (will be ignored).`,
reexporter: reexportingModuleId
};
}
function logNonExternalSourcePhaseImport(source, importer) {
return {
code: NON_EXTERNAL_SOURCE_PHASE_IMPORT,
message: `Source phase import "${source}" in "${relativeId(importer)}" must be external. Source phase imports are only supported for external modules. Use the "external" option to mark this module as external.`,
url: getRollupUrl(URL_SOURCE_PHASE_IMPORTS)
};
}
function logNoTransformMapOrAstWithoutCode(pluginName) {
return {
code: NO_TRANSFORM_MAP_OR_AST_WITHOUT_CODE,
message: `The plugin "${pluginName}" returned a "map" or "ast" without returning ` +
'a "code". This will be ignored.'
};
}
function logOnlyInlineSourcemapsForStdout() {
return {
code: ONLY_INLINE_SOURCEMAPS,
message: 'Only inline sourcemaps are supported when bundling to stdout.'
};
}
function logOptimizeChunkStatus(chunks, smallChunks, pointInTime) {
return {
code: OPTIMIZE_CHUNK_STATUS,
message: `${pointInTime}, there are\n` +
`${chunks} chunks, of which\n` +
`${smallChunks} are below minChunkSize.`
};
}
function logParseError(message, pos) {
return { code: PARSE_ERROR, message, pos };
}
function logRedeclarationError(name) {
return {
code: REDECLARATION_ERROR,
message: `Identifier "${name}" has already been declared`
};
}
function logReservedNamespace(namespace) {
return {
code: RESERVED_NAMESPACE,
message: `You have overridden reserved namespace "${namespace}"`
};
}
function logModuleParseError(error, moduleId) {
let message = error.message.replace(/ \(\d+:\d+\)$/, '');
if (moduleId.endsWith('.json')) {
message += ' (Note that you need @rollup/plugin-json to import JSON files)';
}
else if (!moduleId.endsWith('.js')) {
message += ' (Note that you need plugins to import files that are not JavaScript)';
}
return tweakStackMessage({
cause: error,
code: PARSE_ERROR,
id: moduleId,
message,
stack: error.stack
}, error.message);
}
function logPluginError(error, plugin, { hook, id } = {}) {
const code = error.code;
if (!error.pluginCode &&
code != null &&
(typeof code !== 'string' || !code.startsWith('PLUGIN_'))) {
error.pluginCode = code;
}
error.code = PLUGIN_ERROR;
error.plugin = plugin;
if (hook) {
error.hook = hook;
}
if (id) {
error.id = id;
}
return error;
}
function logShimmedExport(id, binding) {
return {
binding,
code: SHIMMED_EXPORT,
exporter: id,
message: `Missing export "${binding}" has been shimmed in module "${relativeId(id)}".`
};
}
function logSourcePhaseFormatUnsupported(outputFormat, chunkId, dependencyId) {
return {
code: SOURCE_PHASE_FORMAT_UNSUPPORTED,
message: `Source phase imports are not supported for the "${outputFormat}" output format, importing "${dependencyId}" in "${chunkId}". Use the "es" output format to support source phase imports.`,
url: getRollupUrl(URL_SOURCE_PHASE_IMPORTS)
};
}
function logSourcemapBroken(plugin) {
return {
code: SOURCEMAP_BROKEN,
message: `Sourcemap is likely to be incorrect: a plugin (${plugin}) was used to transform files, but didn't generate a sourcemap for the transformation. Consult the plugin documentation for help`,
plugin,
url: getRollupUrl(URL_SOURCEMAP_IS_LIKELY_TO_BE_INCORRECT)
};
}
function logConflictingSourcemapSources(filename) {
return {
code: SOURCEMAP_BROKEN,
message: `Multiple conflicting contents for sourcemap source ${filename}`
};
}
function logInvalidSourcemapForError(error, id, column, line, pos) {
return {
cause: error,
code: SOURCEMAP_ERROR,
id,
loc: {
column,
file: id,
line
},
message: `Error when using sourcemap for reporting an error: ${error.message}`,
pos
};
}
function logSyntheticNamedExportsNeedNamespaceExport(id, syntheticNamedExportsOption) {
return {
code: SYNTHETIC_NAMED_EXPORTS_NEED_NAMESPACE_EXPORT,
exporter: id,
message: `Module "${relativeId(id)}" that is marked with \`syntheticNamedExports: ${JSON.stringify(syntheticNamedExportsOption)}\` needs ${typeof syntheticNamedExportsOption === 'string' && syntheticNamedExportsOption !== 'default'
? `an explicit export named "${syntheticNamedExportsOption}"`
: 'a default export'} that does not reexport an unresolved named export of the same module.`
};
}
function logThisIsUndefined() {
return {
code: THIS_IS_UNDEFINED,
message: `The 'this' keyword is equivalent to 'undefined' at the top level of an ES module, and has been rewritten`,
url: getRollupUrl(URL_THIS_IS_UNDEFINED)
};
}
function logUnexpectedNamedImport(id, imported, isReexport) {
const importType = isReexport ? 'reexport' : 'import';
return {
code: UNEXPECTED_NAMED_IMPORT,
exporter: id,
message: `The named export "${imported}" was ${importType}ed from the external module "${relativeId(id)}" even though its interop type is "defaultOnly". Either remove or change this ${importType} or change the value of the "output.interop" option.`,
url: getRollupUrl(URL_OUTPUT_INTEROP)
};
}
function logUnexpectedNamespaceReexport(id) {
return {
code: UNEXPECTED_NAMED_IMPORT,
exporter: id,
message: `There was a namespace "*" reexport from the external module "${relativeId(id)}" even though its interop type is "defaultOnly". This will be ignored as namespace reexports only reexport named exports. If this is not intended, either remove or change this reexport or change the value of the "output.interop" option.`,
url: getRollupUrl(URL_OUTPUT_INTEROP)
};
}
function logUnknownOption(optionType, unknownOptions, validOptions) {
return {
code: UNKNOWN_OPTION,
message: `Unknown ${optionType}: ${unknownOptions.join(', ')}. Allowed options: ${validOptions.join(', ')}`
};
}
function logEntryCannotBeExternal(unresolvedId) {
return {
code: UNRESOLVED_ENTRY,
message: `Entry module "${relativeId(unresolvedId)}" cannot be external.`
};
}
function logExternalModulesCannotBeIncludedInManualChunks(source) {
return {
code: EXTERNAL_MODULES_CANNOT_BE_INCLUDED_IN_MANUAL_CHUNKS,
message: `"${source}" cannot be included in manualChunks because it is resolved as an external module by the "external" option or plugins.`
};
}
function logExternalModulesCannotBeTransformedToModules(source) {
return {
code: EXTERNAL_MODULES_CANNOT_BE_TRANSFORMED_TO_MODULES,
message: `${source} is resolved as a module now, but it was an external module before. Please check whether there are conflicts in your Rollup options "external" and "manualChunks", manualChunks cannot include external modules.`
};
}
function logUnresolvedEntry(unresolvedId) {
return {
code: UNRESOLVED_ENTRY,
message: `Could not resolve entry module "${relativeId(unresolvedId)}".`
};
}
function logUnresolvedImport(source, importer) {
return {
code: UNRESOLVED_IMPORT,
exporter: source,
id: importer,
message: `Could not resolve "${source}" from "${relativeId(importer)}"`
};
}
function logUnresolvedImportTreatedAsExternal(source, importer) {
return {
code: UNRESOLVED_IMPORT,
exporter: source,
id: importer,
message: `"${source}" is imported by "${relativeId(importer)}", but could not be resolved treating it as an external dependency.`,
url: getRollupUrl(URL_TREATING_MODULE_AS_EXTERNAL_DEPENDENCY)
};
}
function logUnusedExternalImports(externalId, names, importers) {
return {
code: UNUSED_EXTERNAL_IMPORT,
exporter: externalId,
ids: importers,
message: `${printQuotedStringList(names, [
'is',
'are'
])} imported from external module "${externalId}" but never used in ${printQuotedStringList(importers.map(importer => relativeId(importer)))}.`,
names
};
}
function logFailedValidation(message) {
return {
code: VALIDATION_ERROR,
message
};
}
function warnDeprecation(deprecation, urlSnippet, activeDeprecation, options, plugin) {
warnDeprecationWithOptions(deprecation, urlSnippet, activeDeprecation, options.onLog, options.strictDeprecations);
}
function warnDeprecationWithOptions(deprecation, urlSnippet, activeDeprecation, log, strictDeprecations, plugin) {
if (activeDeprecation || strictDeprecations) {
const warning = logDeprecation(deprecation, urlSnippet);
if (strictDeprecations) {
return error(warning);
}
log(LOGLEVEL_WARN, warning);
}
}
const BLANK = Object.freeze(Object.create(null));
const EMPTY_OBJECT = Object.freeze({});
const EMPTY_ARRAY = Object.freeze([]);
const EMPTY_SET = Object.freeze(new (class extends Set {
add() {
throw new Error('Cannot add to empty set');
}
})());
// This file is generated by scripts/generate-node-types.js.
// Do not edit this file directly.
const ArrowFunctionExpression = 'ArrowFunctionExpression';
const AwaitExpression = 'AwaitExpression';
const BlockStatement = 'BlockStatement';
const CallExpression = 'CallExpression';
const CatchClause = 'CatchClause';
const ExportDefaultDeclaration = 'ExportDefaultDeclaration';
const ExpressionStatement = 'ExpressionStatement';
const FunctionExpression = 'FunctionExpression';
const Identifier = 'Identifier';
const Literal = 'Literal';
const MemberExpression = 'MemberExpression';
const ObjectExpression = 'ObjectExpression';
const PanicError = 'PanicError';
const ParseError = 'ParseError';
const Program = 'Program';
const Property = 'Property';
const RestElement = 'RestElement';
const ReturnStatement = 'ReturnStatement';
const StaticBlock = 'StaticBlock';
const TemplateLiteral = 'TemplateLiteral';
const VariableDeclarator = 'VariableDeclarator';
// This file is generated by scripts/generate-string-constants.js.
// Do not edit this file directly.
const FIXED_STRINGS = [
'var',
'let',
'const',
'init',
'get',
'set',
'constructor',
'method',
'-',
'+',
'!',
'~',
'typeof',
'void',
'delete',
'++',
'--',
'==',
'!=',
'===',
'!==',
'<',
'<=',
'>',
'>=',
'<<',
'>>',
'>>>',
'+',
'-',
'*',
'/',
'%',
'|',
'^',
'&',
'||',
'&&',
'in',
'instanceof',
'**',
'??',
'=',
'+=',
'-=',
'*=',
'/=',
'%=',
'<<=',
'>>=',
'>>>=',
'|=',
'^=',
'&=',
'**=',
'&&=',
'||=',
'??=',
'pure',
'noSideEffects',
'sourcemap',
'using',
'await using',
'source',
'defer'
];
const ANNOTATION_KEY = '_rollupAnnotations';
const INVALID_ANNOTATION_KEY = '_rollupRemoved';
const convertAnnotations = (position, buffer) => {
if (position === 0)
return EMPTY_ARRAY;
const length = buffer[position++];
const list = new Array(length);
for (let index = 0; index < length; index++) {
list[index] = convertAnnotation(buffer[position++], buffer);
}
return list;
};
const convertAnnotation = (position, buffer) => {
const start = buffer[position++];
const end = buffer[position++];
const type = FIXED_STRINGS[buffer[position]];
return { end, start, type };
};
// This file is generated by scripts/generate-buffer-to-ast.js.
// Do not edit this file directly.
function convertProgram(buffer) {
const node = convertNode(0, buffer);
switch (node.type) {
case PanicError: {
return error(getRollupError(logParseError(node.message)));
}
case ParseError: {
return error(getRollupError(logParseError(node.message, node.start)));
}
default: {
return node;
}
}
}
/* eslint-disable sort-keys */
const nodeConverters = [
function panicError(position, buffer) {
return {
type: 'PanicError',
start: buffer[position],
end: buffer[position + 1],
message: buffer.convertString(buffer[position + 2])
};
},
function parseError(position, buffer) {
return {
type: 'ParseError',
start: buffer[position],
end: buffer[position + 1],
message: buffer.convertString(buffer[position + 2])
};
},
function arrayExpression(position, buffer) {
return {
type: 'ArrayExpression',
start: buffer[position],
end: buffer[position + 1],
elements: convertNodeList(buffer[position + 2], buffer)
};
},
function arrayPattern(position, buffer) {
return {
type: 'ArrayPattern',
start: buffer[position],
end: buffer[position + 1],
elements: convertNodeList(buffer[position + 2], buffer)
};
},
function arrowFunctionExpression(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
return {
type: 'ArrowFunctionExpression',
start: buffer[position],
end: buffer[position + 1],
async: (flags & 1) === 1,
expression: (flags & 2) === 2,
generator: (flags & 4) === 4,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
params: convertNodeList(buffer[position + 4], buffer),
body: convertNode(buffer[position + 5], buffer),
id: null
};
},
function assignmentExpression(position, buffer) {
return {
type: 'AssignmentExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer)
};
},
function assignmentPattern(position, buffer) {
return {
type: 'AssignmentPattern',
start: buffer[position],
end: buffer[position + 1],
left: convertNode(buffer[position + 2], buffer),
right: convertNode(buffer[position + 3], buffer)
};
},
function awaitExpression(position, buffer) {
return {
type: 'AwaitExpression',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function binaryExpression(position, buffer) {
return {
type: 'BinaryExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer)
};
},
function blockStatement(position, buffer) {
return {
type: 'BlockStatement',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer)
};
},
function breakStatement(position, buffer) {
const labelPosition = buffer[position + 2];
return {
type: 'BreakStatement',
start: buffer[position],
end: buffer[position + 1],
label: labelPosition === 0 ? null : convertNode(labelPosition, buffer)
};
},
function callExpression(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
return {
type: 'CallExpression',
start: buffer[position],
end: buffer[position + 1],
optional: (flags & 1) === 1,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
callee: convertNode(buffer[position + 4], buffer),
arguments: convertNodeList(buffer[position + 5], buffer)
};
},
function catchClause(position, buffer) {
const parameterPosition = buffer[position + 2];
return {
type: 'CatchClause',
start: buffer[position],
end: buffer[position + 1],
param: parameterPosition === 0 ? null : convertNode(parameterPosition, buffer),
body: convertNode(buffer[position + 3], buffer)
};
},
function chainExpression(position, buffer) {
return {
type: 'ChainExpression',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function classBody(position, buffer) {
return {
type: 'ClassBody',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer)
};
},
function classDeclaration(position, buffer) {
const idPosition = buffer[position + 3];
const superClassPosition = buffer[position + 4];
return {
type: 'ClassDeclaration',
start: buffer[position],
end: buffer[position + 1],
decorators: convertNodeList(buffer[position + 2], buffer),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
superClass: superClassPosition === 0 ? null : convertNode(superClassPosition, buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function classExpression(position, buffer) {
const idPosition = buffer[position + 3];
const superClassPosition = buffer[position + 4];
return {
type: 'ClassExpression',
start: buffer[position],
end: buffer[position + 1],
decorators: convertNodeList(buffer[position + 2], buffer),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
superClass: superClassPosition === 0 ? null : convertNode(superClassPosition, buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function conditionalExpression(position, buffer) {
return {
type: 'ConditionalExpression',
start: buffer[position],
end: buffer[position + 1],
test: convertNode(buffer[position + 2], buffer),
consequent: convertNode(buffer[position + 3], buffer),
alternate: convertNode(buffer[position + 4], buffer)
};
},
function continueStatement(position, buffer) {
const labelPosition = buffer[position + 2];
return {
type: 'ContinueStatement',
start: buffer[position],
end: buffer[position + 1],
label: labelPosition === 0 ? null : convertNode(labelPosition, buffer)
};
},
function debuggerStatement(position, buffer) {
return {
type: 'DebuggerStatement',
start: buffer[position],
end: buffer[position + 1]
};
},
function decorator(position, buffer) {
return {
type: 'Decorator',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function directive(position, buffer) {
return {
type: 'ExpressionStatement',
start: buffer[position],
end: buffer[position + 1],
directive: buffer.convertString(buffer[position + 2]),
expression: convertNode(buffer[position + 3], buffer)
};
},
function doWhileStatement(position, buffer) {
return {
type: 'DoWhileStatement',
start: buffer[position],
end: buffer[position + 1],
body: convertNode(buffer[position + 2], buffer),
test: convertNode(buffer[position + 3], buffer)
};
},
function emptyStatement(position, buffer) {
return {
type: 'EmptyStatement',
start: buffer[position],
end: buffer[position + 1]
};
},
function exportAllDeclaration(position, buffer) {
const exportedPosition = buffer[position + 2];
return {
type: 'ExportAllDeclaration',
start: buffer[position],
end: buffer[position + 1],
exported: exportedPosition === 0 ? null : convertNode(exportedPosition, buffer),
source: convertNode(buffer[position + 3], buffer),
attributes: convertNodeList(buffer[position + 4], buffer)
};
},
function exportDefaultDeclaration(position, buffer) {
return {
type: 'ExportDefaultDeclaration',
start: buffer[position],
end: buffer[position + 1],
declaration: convertNode(buffer[position + 2], buffer)
};
},
function exportNamedDeclaration(position, buffer) {
const sourcePosition = buffer[position + 3];
const declarationPosition = buffer[position + 5];
return {
type: 'ExportNamedDeclaration',
start: buffer[position],
end: buffer[position + 1],
specifiers: convertNodeList(buffer[position + 2], buffer),
source: sourcePosition === 0 ? null : convertNode(sourcePosition, buffer),
attributes: convertNodeList(buffer[position + 4], buffer),
declaration: declarationPosition === 0 ? null : convertNode(declarationPosition, buffer)
};
},
function exportSpecifier(position, buffer) {
const local = convertNode(buffer[position + 2], buffer);
const exportedPosition = buffer[position + 3];
return {
type: 'ExportSpecifier',
start: buffer[position],
end: buffer[position + 1],
local,
exported: exportedPosition === 0 ? { ...local } : convertNode(exportedPosition, buffer)
};
},
function expressionStatement(position, buffer) {
return {
type: 'ExpressionStatement',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function forInStatement(position, buffer) {
return {
type: 'ForInStatement',
start: buffer[position],
end: buffer[position + 1],
left: convertNode(buffer[position + 2], buffer),
right: convertNode(buffer[position + 3], buffer),
body: convertNode(buffer[position + 4], buffer)
};
},
function forOfStatement(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'ForOfStatement',
start: buffer[position],
end: buffer[position + 1],
await: (flags & 1) === 1,
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function forStatement(position, buffer) {
const initPosition = buffer[position + 2];
const testPosition = buffer[position + 3];
const updatePosition = buffer[position + 4];
return {
type: 'ForStatement',
start: buffer[position],
end: buffer[position + 1],
init: initPosition === 0 ? null : convertNode(initPosition, buffer),
test: testPosition === 0 ? null : convertNode(testPosition, buffer),
update: updatePosition === 0 ? null : convertNode(updatePosition, buffer),
body: convertNode(buffer[position + 5], buffer)
};
},
function functionDeclaration(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
const idPosition = buffer[position + 4];
return {
type: 'FunctionDeclaration',
start: buffer[position],
end: buffer[position + 1],
async: (flags & 1) === 1,
generator: (flags & 2) === 2,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
params: convertNodeList(buffer[position + 5], buffer),
body: convertNode(buffer[position + 6], buffer),
expression: false
};
},
function functionExpression(position, buffer) {
const flags = buffer[position + 2];
const annotations = convertAnnotations(buffer[position + 3], buffer);
const idPosition = buffer[position + 4];
return {
type: 'FunctionExpression',
start: buffer[position],
end: buffer[position + 1],
async: (flags & 1) === 1,
generator: (flags & 2) === 2,
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
id: idPosition === 0 ? null : convertNode(idPosition, buffer),
params: convertNodeList(buffer[position + 5], buffer),
body: convertNode(buffer[position + 6], buffer),
expression: false
};
},
function identifier(position, buffer) {
return {
type: 'Identifier',
start: buffer[position],
end: buffer[position + 1],
name: buffer.convertString(buffer[position + 2])
};
},
function ifStatement(position, buffer) {
const alternatePosition = buffer[position + 4];
return {
type: 'IfStatement',
start: buffer[position],
end: buffer[position + 1],
test: convertNode(buffer[position + 2], buffer),
consequent: convertNode(buffer[position + 3], buffer),
alternate: alternatePosition === 0 ? null : convertNode(alternatePosition, buffer)
};
},
function importAttribute(position, buffer) {
return {
type: 'ImportAttribute',
start: buffer[position],
end: buffer[position + 1],
key: convertNode(buffer[position + 2], buffer),
value: convertNode(buffer[position + 3], buffer)
};
},
function importDeclaration(position, buffer) {
const phaseIndex = buffer[position + 5];
return {
type: 'ImportDeclaration',
start: buffer[position],
end: buffer[position + 1],
specifiers: convertNodeList(buffer[position + 2], buffer),
source: convertNode(buffer[position + 3], buffer),
attributes: convertNodeList(buffer[position + 4], buffer),
...(phaseIndex === 0 ? {} : { phase: FIXED_STRINGS[phaseIndex] })
};
},
function importDefaultSpecifier(position, buffer) {
return {
type: 'ImportDefaultSpecifier',
start: buffer[position],
end: buffer[position + 1],
local: convertNode(buffer[position + 2], buffer)
};
},
function importExpression(position, buffer) {
const optionsPosition = buffer[position + 3];
const phaseIndex = buffer[position + 4];
return {
type: 'ImportExpression',
start: buffer[position],
end: buffer[position + 1],
source: convertNode(buffer[position + 2], buffer),
options: optionsPosition === 0 ? null : convertNode(optionsPosition, buffer),
...(phaseIndex === 0 ? {} : { phase: FIXED_STRINGS[phaseIndex] })
};
},
function importNamespaceSpecifier(position, buffer) {
return {
type: 'ImportNamespaceSpecifier',
start: buffer[position],
end: buffer[position + 1],
local: convertNode(buffer[position + 2], buffer)
};
},
function importSpecifier(position, buffer) {
const importedPosition = buffer[position + 2];
const local = convertNode(buffer[position + 3], buffer);
return {
type: 'ImportSpecifier',
start: buffer[position],
end: buffer[position + 1],
imported: importedPosition === 0 ? { ...local } : convertNode(importedPosition, buffer),
local
};
},
function jsxAttribute(position, buffer) {
const valuePosition = buffer[position + 3];
return {
type: 'JSXAttribute',
start: buffer[position],
end: buffer[position + 1],
name: convertNode(buffer[position + 2], buffer),
value: valuePosition === 0 ? null : convertNode(valuePosition, buffer)
};
},
function jsxClosingElement(position, buffer) {
return {
type: 'JSXClosingElement',
start: buffer[position],
end: buffer[position + 1],
name: convertNode(buffer[position + 2], buffer)
};
},
function jsxClosingFragment(position, buffer) {
return {
type: 'JSXClosingFragment',
start: buffer[position],
end: buffer[position + 1]
};
},
function jsxElement(position, buffer) {
const closingElementPosition = buffer[position + 4];
return {
type: 'JSXElement',
start: buffer[position],
end: buffer[position + 1],
openingElement: convertNode(buffer[position + 2], buffer),
children: convertNodeList(buffer[position + 3], buffer),
closingElement: closingElementPosition === 0 ? null : convertNode(closingElementPosition, buffer)
};
},
function jsxEmptyExpression(position, buffer) {
return {
type: 'JSXEmptyExpression',
start: buffer[position],
end: buffer[position + 1]
};
},
function jsxExpressionContainer(position, buffer) {
return {
type: 'JSXExpressionContainer',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function jsxFragment(position, buffer) {
return {
type: 'JSXFragment',
start: buffer[position],
end: buffer[position + 1],
openingFragment: convertNode(buffer[position + 2], buffer),
children: convertNodeList(buffer[position + 3], buffer),
closingFragment: convertNode(buffer[position + 4], buffer)
};
},
function jsxIdentifier(position, buffer) {
return {
type: 'JSXIdentifier',
start: buffer[position],
end: buffer[position + 1],
name: buffer.convertString(buffer[position + 2])
};
},
function jsxMemberExpression(position, buffer) {
return {
type: 'JSXMemberExpression',
start: buffer[position],
end: buffer[position + 1],
object: convertNode(buffer[position + 2], buffer),
property: convertNode(buffer[position + 3], buffer)
};
},
function jsxNamespacedName(position, buffer) {
return {
type: 'JSXNamespacedName',
start: buffer[position],
end: buffer[position + 1],
namespace: convertNode(buffer[position + 2], buffer),
name: convertNode(buffer[position + 3], buffer)
};
},
function jsxOpeningElement(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'JSXOpeningElement',
start: buffer[position],
end: buffer[position + 1],
selfClosing: (flags & 1) === 1,
name: convertNode(buffer[position + 3], buffer),
attributes: convertNodeList(buffer[position + 4], buffer)
};
},
function jsxOpeningFragment(position, buffer) {
return {
type: 'JSXOpeningFragment',
start: buffer[position],
end: buffer[position + 1],
attributes: [],
selfClosing: false
};
},
function jsxSpreadAttribute(position, buffer) {
return {
type: 'JSXSpreadAttribute',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function jsxSpreadChild(position, buffer) {
return {
type: 'JSXSpreadChild',
start: buffer[position],
end: buffer[position + 1],
expression: convertNode(buffer[position + 2], buffer)
};
},
function jsxText(position, buffer) {
return {
type: 'JSXText',
start: buffer[position],
end: buffer[position + 1],
value: buffer.convertString(buffer[position + 2]),
raw: buffer.convertString(buffer[position + 3])
};
},
function labeledStatement(position, buffer) {
return {
type: 'LabeledStatement',
start: buffer[position],
end: buffer[position + 1],
label: convertNode(buffer[position + 2], buffer),
body: convertNode(buffer[position + 3], buffer)
};
},
function literalBigInt(position, buffer) {
const bigint = buffer.convertString(buffer[position + 2]);
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
bigint,
raw: buffer.convertString(buffer[position + 3]),
value: BigInt(bigint)
};
},
function literalBoolean(position, buffer) {
const flags = buffer[position + 2];
const value = (flags & 1) === 1;
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
value,
raw: value ? 'true' : 'false'
};
},
function literalNull(position, buffer) {
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
raw: 'null',
value: null
};
},
function literalNumber(position, buffer) {
const rawPosition = buffer[position + 2];
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
raw: rawPosition === 0 ? undefined : buffer.convertString(rawPosition),
value: new DataView(buffer.buffer).getFloat64((position + 3) << 2, true)
};
},
function literalRegExp(position, buffer) {
const flags = buffer.convertString(buffer[position + 2]);
const pattern = buffer.convertString(buffer[position + 3]);
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
raw: `/${pattern}/${flags}`,
regex: { flags, pattern },
value: new RegExp(pattern, flags)
};
},
function literalString(position, buffer) {
const rawPosition = buffer[position + 3];
return {
type: 'Literal',
start: buffer[position],
end: buffer[position + 1],
value: buffer.convertString(buffer[position + 2]),
raw: rawPosition === 0 ? undefined : buffer.convertString(rawPosition)
};
},
function logicalExpression(position, buffer) {
return {
type: 'LogicalExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
left: convertNode(buffer[position + 3], buffer),
right: convertNode(buffer[position + 4], buffer)
};
},
function memberExpression(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'MemberExpression',
start: buffer[position],
end: buffer[position + 1],
computed: (flags & 1) === 1,
optional: (flags & 2) === 2,
object: convertNode(buffer[position + 3], buffer),
property: convertNode(buffer[position + 4], buffer)
};
},
function metaProperty(position, buffer) {
return {
type: 'MetaProperty',
start: buffer[position],
end: buffer[position + 1],
meta: convertNode(buffer[position + 2], buffer),
property: convertNode(buffer[position + 3], buffer)
};
},
function methodDefinition(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'MethodDefinition',
start: buffer[position],
end: buffer[position + 1],
static: (flags & 1) === 1,
computed: (flags & 2) === 2,
decorators: convertNodeList(buffer[position + 3], buffer),
key: convertNode(buffer[position + 4], buffer),
value: convertNode(buffer[position + 5], buffer),
kind: FIXED_STRINGS[buffer[position + 6]]
};
},
function newExpression(position, buffer) {
const annotations = convertAnnotations(buffer[position + 2], buffer);
return {
type: 'NewExpression',
start: buffer[position],
end: buffer[position + 1],
...(annotations.length > 0 ? { [ANNOTATION_KEY]: annotations } : {}),
callee: convertNode(buffer[position + 3], buffer),
arguments: convertNodeList(buffer[position + 4], buffer)
};
},
function objectExpression(position, buffer) {
return {
type: 'ObjectExpression',
start: buffer[position],
end: buffer[position + 1],
properties: convertNodeList(buffer[position + 2], buffer)
};
},
function objectPattern(position, buffer) {
return {
type: 'ObjectPattern',
start: buffer[position],
end: buffer[position + 1],
properties: convertNodeList(buffer[position + 2], buffer)
};
},
function privateIdentifier(position, buffer) {
return {
type: 'PrivateIdentifier',
start: buffer[position],
end: buffer[position + 1],
name: buffer.convertString(buffer[position + 2])
};
},
function program(position, buffer) {
const invalidAnnotations = convertAnnotations(buffer[position + 3], buffer);
return {
type: 'Program',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer),
...(invalidAnnotations.length > 0 ? { [INVALID_ANNOTATION_KEY]: invalidAnnotations } : {}),
sourceType: 'module'
};
},
function property(position, buffer) {
const flags = buffer[position + 2];
const keyPosition = buffer[position + 3];
const value = convertNode(buffer[position + 4], buffer);
return {
type: 'Property',
start: buffer[position],
end: buffer[position + 1],
method: (flags & 1) === 1,
shorthand: (flags & 2) === 2,
computed: (flags & 4) === 4,
key: keyPosition === 0 ? { ...value } : convertNode(keyPosition, buffer),
value,
kind: FIXED_STRINGS[buffer[position + 5]]
};
},
function propertyDefinition(position, buffer) {
const flags = buffer[position + 2];
const valuePosition = buffer[position + 5];
return {
type: 'PropertyDefinition',
start: buffer[position],
end: buffer[position + 1],
static: (flags & 1) === 1,
computed: (flags & 2) === 2,
decorators: convertNodeList(buffer[position + 3], buffer),
key: convertNode(buffer[position + 4], buffer),
value: valuePosition === 0 ? null : convertNode(valuePosition, buffer)
};
},
function restElement(position, buffer) {
return {
type: 'RestElement',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function returnStatement(position, buffer) {
const argumentPosition = buffer[position + 2];
return {
type: 'ReturnStatement',
start: buffer[position],
end: buffer[position + 1],
argument: argumentPosition === 0 ? null : convertNode(argumentPosition, buffer)
};
},
function sequenceExpression(position, buffer) {
return {
type: 'SequenceExpression',
start: buffer[position],
end: buffer[position + 1],
expressions: convertNodeList(buffer[position + 2], buffer)
};
},
function spreadElement(position, buffer) {
return {
type: 'SpreadElement',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function staticBlock(position, buffer) {
return {
type: 'StaticBlock',
start: buffer[position],
end: buffer[position + 1],
body: convertNodeList(buffer[position + 2], buffer)
};
},
function superElement(position, buffer) {
return {
type: 'Super',
start: buffer[position],
end: buffer[position + 1]
};
},
function switchCase(position, buffer) {
const testPosition = buffer[position + 2];
return {
type: 'SwitchCase',
start: buffer[position],
end: buffer[position + 1],
test: testPosition === 0 ? null : convertNode(testPosition, buffer),
consequent: convertNodeList(buffer[position + 3], buffer)
};
},
function switchStatement(position, buffer) {
return {
type: 'SwitchStatement',
start: buffer[position],
end: buffer[position + 1],
discriminant: convertNode(buffer[position + 2], buffer),
cases: convertNodeList(buffer[position + 3], buffer)
};
},
function taggedTemplateExpression(position, buffer) {
return {
type: 'TaggedTemplateExpression',
start: buffer[position],
end: buffer[position + 1],
tag: convertNode(buffer[position + 2], buffer),
quasi: convertNode(buffer[position + 3], buffer)
};
},
function templateElement(position, buffer) {
const flags = buffer[position + 2];
const cookedPosition = buffer[position + 3];
const cooked = cookedPosition === 0 ? null : buffer.convertString(cookedPosition);
const raw = buffer.convertString(buffer[position + 4]);
return {
type: 'TemplateElement',
start: buffer[position],
end: buffer[position + 1],
tail: (flags & 1) === 1,
value: { cooked, raw }
};
},
function templateLiteral(position, buffer) {
return {
type: 'TemplateLiteral',
start: buffer[position],
end: buffer[position + 1],
quasis: convertNodeList(buffer[position + 2], buffer),
expressions: convertNodeList(buffer[position + 3], buffer)
};
},
function thisExpression(position, buffer) {
return {
type: 'ThisExpression',
start: buffer[position],
end: buffer[position + 1]
};
},
function throwStatement(position, buffer) {
return {
type: 'ThrowStatement',
start: buffer[position],
end: buffer[position + 1],
argument: convertNode(buffer[position + 2], buffer)
};
},
function tryStatement(position, buffer) {
const handlerPosition = buffer[position + 3];
const finalizerPosition = buffer[position + 4];
return {
type: 'TryStatement',
start: buffer[position],
end: buffer[position + 1],
block: convertNode(buffer[position + 2], buffer),
handler: handlerPosition === 0 ? null : convertNode(handlerPosition, buffer),
finalizer: finalizerPosition === 0 ? null : convertNode(finalizerPosition, buffer)
};
},
function unaryExpression(position, buffer) {
return {
type: 'UnaryExpression',
start: buffer[position],
end: buffer[position + 1],
operator: FIXED_STRINGS[buffer[position + 2]],
argument: convertNode(buffer[position + 3], buffer),
prefix: true
};
},
function updateExpression(position, buffer) {
const flags = buffer[position + 2];
return {
type: 'UpdateExpression',
start: buffer[position],
end: buffer[position + 1],
prefix: (flags & 1) === 1,
operator: FIXED_STRINGS[buffer[position + 3]],
argument: convertNode(buffer[position + 4], buffer)
};
},
function variableDeclaration(position, buffer) {
return {
type: 'VariableDeclaration',
start: buffer[position],
end: buffer[position + 1],
kind: FIXED_STRINGS[buffer[position + 2]],
declarations: convertNodeList(buffer[position + 3], buffer)
};
},
function variableDeclarator(position, buffer) {
const initPosition = buffer[position + 3];
return {
type: 'VariableDeclarator',
start: buffer[position],
end: buffer[position + 1],
id: convertNode(buffer[position + 2], buffer),
init: initPosition === 0 ? null : convertNode(initPosition, buffer)
};
},
function whileStatement(position, buffer) {
return {
type: 'WhileStatement',
start: buffer[position],
end: buffer[position + 1],
test: convertNode(buffer[position + 2], buffer),
body: convertNode(buffer[position + 3], buffer)
};
},
function yieldExpression(position, buffer) {
const flags = buffer[position + 2];
const argumentPosition = buffer[position + 3];
return {
type: 'YieldExpression',
start: buffer[position],
end: buffer[position + 1],
delegate: (flags & 1) === 1,
argument: argumentPosition === 0 ? null : convertNode(argumentPosition, buffer)
};
}
];
function convertNode(position, buffer) {
const nodeType = buffer[position];
const converter = nodeConverters[nodeType];
/* istanbul ignore if: This should never be executed but is a safeguard against faulty buffers */
if (!converter) {
console.trace();
throw new Error(`Unknown node type: ${nodeType}`);
}
return converter(position + 1, buffer);
}
function convertNodeList(position, buffer) {
if (position === 0)
return EMPTY_ARRAY;
const length = buffer[position++];
const list = new Array(length);
for (let index = 0; index < length; index++) {
const nodePosition = buffer[position++];
list[index] = nodePosition ? convertNode(nodePosition, buffer) : null;
}
return list;
}
function getAstBuffer(astBuffer) {
const array = new Uint32Array(astBuffer.buffer);
let convertString;
if (typeof Buffer !== 'undefined' && astBuffer instanceof Buffer) {
convertString = (position) => {
const length = array[position++];
const bytePosition = position << 2;
return astBuffer.toString('utf8', bytePosition, bytePosition + length);
};
}
else {
const textDecoder = new TextDecoder();
convertString = (position) => {
const length = array[position++];
const bytePosition = position << 2;
return textDecoder.decode(astBuffer.subarray(bytePosition, bytePosition + length));
};
}
return Object.assign(array, { convertString });
}
const parseAst = (input, { allowReturnOutsideFunction = false, jsx = false } = {}) => convertProgram(getAstBuffer(native_js.parse(input, allowReturnOutsideFunction, jsx)));
const parseAstAsync = async (input, { allowReturnOutsideFunction = false, jsx = false, signal } = {}) => convertProgram(getAstBuffer(await native_js.parseAsync(input, allowReturnOutsideFunction, jsx, signal)));
exports.ANNOTATION_KEY = ANNOTATION_KEY;
exports.ArrowFunctionExpression = ArrowFunctionExpression;
exports.AwaitExpression = AwaitExpression;
exports.BLANK = BLANK;
exports.BlockStatement = BlockStatement;
exports.CallExpression = CallExpression;
exports.CatchClause = CatchClause;
exports.EMPTY_ARRAY = EMPTY_ARRAY;
exports.EMPTY_OBJECT = EMPTY_OBJECT;
exports.EMPTY_SET = EMPTY_SET;
exports.ExportDefaultDeclaration = ExportDefaultDeclaration;
exports.ExpressionStatement = ExpressionStatement;
exports.FIXED_STRINGS = FIXED_STRINGS;
exports.FunctionExpression = FunctionExpression;
exports.INVALID_ANNOTATION_KEY = INVALID_ANNOTATION_KEY;
exports.Identifier = Identifier;
exports.LOGLEVEL_DEBUG = LOGLEVEL_DEBUG;
exports.LOGLEVEL_ERROR = LOGLEVEL_ERROR;
exports.LOGLEVEL_INFO = LOGLEVEL_INFO;
exports.LOGLEVEL_WARN = LOGLEVEL_WARN;
exports.Literal = Literal;
exports.MemberExpression = MemberExpression;
exports.ObjectExpression = ObjectExpression;
exports.Program = Program;
exports.Property = Property;
exports.RestElement = RestElement;
exports.ReturnStatement = ReturnStatement;
exports.StaticBlock = StaticBlock;
exports.TemplateLiteral = TemplateLiteral;
exports.URL_AVOIDING_EVAL = URL_AVOIDING_EVAL;
exports.URL_GENERATEBUNDLE = URL_GENERATEBUNDLE;
exports.URL_JSX = URL_JSX;
exports.URL_LOAD = URL_LOAD;
exports.URL_NAME_IS_NOT_EXPORTED = URL_NAME_IS_NOT_EXPORTED;
exports.URL_OUTPUT_AMD_BASEPATH = URL_OUTPUT_AMD_BASEPATH;
exports.URL_OUTPUT_AMD_ID = URL_OUTPUT_AMD_ID;
exports.URL_OUTPUT_DIR = URL_OUTPUT_DIR;
exports.URL_OUTPUT_EXPORTS = URL_OUTPUT_EXPORTS;
exports.URL_OUTPUT_EXTERNALIMPORTATTRIBUTES = URL_OUTPUT_EXTERNALIMPORTATTRIBUTES;
exports.URL_OUTPUT_FORMAT = URL_OUTPUT_FORMAT;
exports.URL_OUTPUT_GENERATEDCODE = URL_OUTPUT_GENERATEDCODE;
exports.URL_OUTPUT_GLOBALS = URL_OUTPUT_GLOBALS;
exports.URL_OUTPUT_INLINEDYNAMICIMPORTS = URL_OUTPUT_INLINEDYNAMICIMPORTS;
exports.URL_OUTPUT_INTEROP = URL_OUTPUT_INTEROP;
exports.URL_OUTPUT_MANUALCHUNKS = URL_OUTPUT_MANUALCHUNKS;
exports.URL_OUTPUT_SOURCEMAPBASEURL = URL_OUTPUT_SOURCEMAPBASEURL;
exports.URL_OUTPUT_SOURCEMAPFILE = URL_OUTPUT_SOURCEMAPFILE;
exports.URL_PRESERVEENTRYSIGNATURES = URL_PRESERVEENTRYSIGNATURES;
exports.URL_SOURCEMAP_IS_LIKELY_TO_BE_INCORRECT = URL_SOURCEMAP_IS_LIKELY_TO_BE_INCORRECT;
exports.URL_THIS_IS_UNDEFINED = URL_THIS_IS_UNDEFINED;
exports.URL_TRANSFORM = URL_TRANSFORM;
exports.URL_TREATING_MODULE_AS_EXTERNAL_DEPENDENCY = URL_TREATING_MODULE_AS_EXTERNAL_DEPENDENCY;
exports.URL_TREESHAKE = URL_TREESHAKE;
exports.URL_TREESHAKE_MODULESIDEEFFECTS = URL_TREESHAKE_MODULESIDEEFFECTS;
exports.URL_WATCH = URL_WATCH;
exports.VariableDeclarator = VariableDeclarator;
exports.addTrailingSlashIfMissed = addTrailingSlashIfMissed;
exports.augmentCodeLocation = augmentCodeLocation;
exports.augmentLogMessage = augmentLogMessage;
exports.convertAnnotations = convertAnnotations;
exports.convertNode = convertNode;
exports.error = error;
exports.getAliasName = getAliasName;
exports.getAstBuffer = getAstBuffer;
exports.getImportPath = getImportPath;
exports.getRollupError = getRollupError;
exports.getRollupUrl = getRollupUrl;
exports.isAbsolute = isAbsolute;
exports.isPathFragment = isPathFragment;
exports.isRelative = isRelative;
exports.isValidUrl = isValidUrl;
exports.locate = locate;
exports.logAddonNotGenerated = logAddonNotGenerated;
exports.logAlreadyClosed = logAlreadyClosed;
exports.logAmbiguousExternalNamespaces = logAmbiguousExternalNamespaces;
exports.logAnonymousPluginCache = logAnonymousPluginCache;
exports.logAssetNotFinalisedForFileName = logAssetNotFinalisedForFileName;
exports.logAssetReferenceIdNotFoundForSetSource = logAssetReferenceIdNotFoundForSetSource;
exports.logAssetSourceAlreadySet = logAssetSourceAlreadySet;
exports.logBadLoader = logBadLoader;
exports.logCannotAssignModuleToChunk = logCannotAssignModuleToChunk;
exports.logCannotBundleConfigAsEsm = logCannotBundleConfigAsEsm;
exports.logCannotCallNamespace = logCannotCallNamespace;
exports.logCannotEmitFromOptionsHook = logCannotEmitFromOptionsHook;
exports.logCannotLoadConfigAsCjs = logCannotLoadConfigAsCjs;
exports.logCannotLoadConfigAsEsm = logCannotLoadConfigAsEsm;
exports.logChunkInvalid = logChunkInvalid;
exports.logChunkNotGeneratedForFileName = logChunkNotGeneratedForFileName;
exports.logCircularChunk = logCircularChunk;
exports.logCircularDependency = logCircularDependency;
exports.logCircularReexport = logCircularReexport;
exports.logConflictingSourcemapSources = logConflictingSourcemapSources;
exports.logConstVariableReassignError = logConstVariableReassignError;
exports.logCyclicCrossChunkReexport = logCyclicCrossChunkReexport;
exports.logDuplicateArgumentNameError = logDuplicateArgumentNameError;
exports.logDuplicateExportError = logDuplicateExportError;
exports.logDuplicateImportOptions = logDuplicateImportOptions;
exports.logDuplicatePluginName = logDuplicatePluginName;
exports.logEmptyChunk = logEmptyChunk;
exports.logEntryCannotBeExternal = logEntryCannotBeExternal;
exports.logEval = logEval;
exports.logExternalModulesCannotBeIncludedInManualChunks = logExternalModulesCannotBeIncludedInManualChunks;
exports.logExternalModulesCannotBeTransformedToModules = logExternalModulesCannotBeTransformedToModules;
exports.logExternalSyntheticExports = logExternalSyntheticExports;
exports.logFailAfterWarnings = logFailAfterWarnings;
exports.logFailedValidation = logFailedValidation;
exports.logFileNameConflict = logFileNameConflict;
exports.logFileNameOutsideOutputDirectory = logFileNameOutsideOutputDirectory;
exports.logFileReferenceIdNotFoundForFilename = logFileReferenceIdNotFoundForFilename;
exports.logFirstSideEffect = logFirstSideEffect;
exports.logIllegalIdentifierAsName = logIllegalIdentifierAsName;
exports.logIllegalImportReassignment = logIllegalImportReassignment;
exports.logImplicitDependantCannotBeExternal = logImplicitDependantCannotBeExternal;
exports.logImplicitDependantIsNotIncluded = logImplicitDependantIsNotIncluded;
exports.logImportAttributeIsInvalid = logImportAttributeIsInvalid;
exports.logImportOptionsAreInvalid = logImportOptionsAreInvalid;
exports.logIncompatibleExportOptionValue = logIncompatibleExportOptionValue;
exports.logInconsistentImportAttributes = logInconsistentImportAttributes;
exports.logInputHookInOutputPlugin = logInputHookInOutputPlugin;
exports.logInternalIdCannotBeExternal = logInternalIdCannotBeExternal;
exports.logInvalidAddonPluginHook = logInvalidAddonPluginHook;
exports.logInvalidAnnotation = logInvalidAnnotation;
exports.logInvalidExportOptionValue = logInvalidExportOptionValue;
exports.logInvalidFormatForTopLevelAwait = logInvalidFormatForTopLevelAwait;
exports.logInvalidFunctionPluginHook = logInvalidFunctionPluginHook;
exports.logInvalidLogPosition = logInvalidLogPosition;
exports.logInvalidOption = logInvalidOption;
exports.logInvalidRollupPhaseForChunkEmission = logInvalidRollupPhaseForChunkEmission;
exports.logInvalidSetAssetSourceCall = logInvalidSetAssetSourceCall;
exports.logInvalidSourcemapForError = logInvalidSourcemapForError;
exports.logLevelPriority = logLevelPriority;
exports.logMissingConfig = logMissingConfig;
exports.logMissingEntryExport = logMissingEntryExport;
exports.logMissingExport = logMissingExport;
exports.logMissingExternalConfig = logMissingExternalConfig;
exports.logMissingFileOrDirOption = logMissingFileOrDirOption;
exports.logMissingGlobalName = logMissingGlobalName;
exports.logMissingJsxExport = logMissingJsxExport;
exports.logMissingNameOptionForIifeExport = logMissingNameOptionForIifeExport;
exports.logMissingNameOptionForUmdExport = logMissingNameOptionForUmdExport;
exports.logMissingNodeBuiltins = logMissingNodeBuiltins;
exports.logMixedExport = logMixedExport;
exports.logModuleLevelDirective = logModuleLevelDirective;
exports.logModuleParseError = logModuleParseError;
exports.logNamespaceConflict = logNamespaceConflict;
exports.logNoAssetSourceSet = logNoAssetSourceSet;
exports.logNoTransformMapOrAstWithoutCode = logNoTransformMapOrAstWithoutCode;
exports.logNonExternalSourcePhaseImport = logNonExternalSourcePhaseImport;
exports.logOnlyInlineSourcemapsForStdout = logOnlyInlineSourcemapsForStdout;
exports.logOptimizeChunkStatus = logOptimizeChunkStatus;
exports.logParseError = logParseError;
exports.logPluginError = logPluginError;
exports.logRedeclarationError = logRedeclarationError;
exports.logReservedNamespace = logReservedNamespace;
exports.logShimmedExport = logShimmedExport;
exports.logSourcePhaseFormatUnsupported = logSourcePhaseFormatUnsupported;
exports.logSourcemapBroken = logSourcemapBroken;
exports.logSyntheticNamedExportsNeedNamespaceExport = logSyntheticNamedExportsNeedNamespaceExport;
exports.logThisIsUndefined = logThisIsUndefined;
exports.logUnexpectedNamedImport = logUnexpectedNamedImport;
exports.logUnexpectedNamespaceReexport = logUnexpectedNamespaceReexport;
exports.logUnknownOption = logUnknownOption;
exports.logUnresolvedEntry = logUnresolvedEntry;
exports.logUnresolvedImplicitDependant = logUnresolvedImplicitDependant;
exports.logUnresolvedImport = logUnresolvedImport;
exports.logUnresolvedImportTreatedAsExternal = logUnresolvedImportTreatedAsExternal;
exports.logUnusedExternalImports = logUnusedExternalImports;
exports.normalize = normalize;
exports.parseAst = parseAst;
exports.parseAstAsync = parseAstAsync;
exports.printQuotedStringList = printQuotedStringList;
exports.relative = relative;
exports.relativeId = relativeId;
exports.warnDeprecation = warnDeprecation;
//# sourceMappingURL=parseAst.js.map
+24446
View File
File diff suppressed because it is too large Load Diff
+542
View File
@@ -0,0 +1,542 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
const index = require('./index.js');
const promises = require('node:fs/promises');
const process$2 = require('node:process');
const cli = require('../bin/rollup');
const rollup_js = require('../rollup.js');
const rollup = require('./rollup.js');
const parseAst_js = require('./parseAst.js');
const loadConfigFile_js = require('./loadConfigFile.js');
const node_child_process = require('node:child_process');
require('path');
require('fs');
require('util');
require('stream');
require('os');
require('./fsevents-importer.js');
require('events');
require('node:path');
require('../native.js');
require('node:perf_hooks');
require('node:url');
require('../getLogFilter.js');
function timeZone(date = new Date()) {
const offset = date.getTimezoneOffset();
const absOffset = Math.abs(offset);
const hours = Math.floor(absOffset / 60);
const minutes = absOffset % 60;
const minutesOut = minutes > 0 ? ':' + ('0' + minutes).slice(-2) : '';
return (offset < 0 ? '+' : '-') + hours + minutesOut;
}
function dateTime(options = {}) {
let {
date = new Date(),
local = true,
showTimeZone = false,
showMilliseconds = false
} = options;
if (local) {
// Offset the date so it will return the correct value when getting the ISO string.
date = new Date(date.getTime() - (date.getTimezoneOffset() * 60000));
}
let end = '';
if (showTimeZone) {
end = ' UTC' + (local ? timeZone(date) : '');
}
if (showMilliseconds && date.getUTCMilliseconds() > 0) {
end = ` ${date.getUTCMilliseconds()}ms${end}`;
}
return date
.toISOString()
.replace(/T/, ' ')
.replace(/\..+/, end);
}
/**
* This is not the set of all possible signals.
*
* It IS, however, the set of all signals that trigger
* an exit on either Linux or BSD systems. Linux is a
* superset of the signal names supported on BSD, and
* the unknown signals just fail to register, so we can
* catch that easily enough.
*
* Windows signals are a different set, since there are
* signals that terminate Windows processes, but don't
* terminate (or don't even exist) on Posix systems.
*
* Don't bother with SIGKILL. It's uncatchable, which
* means that we can't fire any callbacks anyway.
*
* If a user does happen to register a handler on a non-
* fatal signal like SIGWINCH or something, and then
* exit, it'll end up firing `process.emit('exit')`, so
* the handler will be fired anyway.
*
* SIGBUS, SIGFPE, SIGSEGV and SIGILL, when not raised
* artificially, inherently leave the process in a
* state from which it is not safe to try and enter JS
* listeners.
*/
const signals = [];
signals.push('SIGHUP', 'SIGINT', 'SIGTERM');
if (process.platform !== 'win32') {
signals.push('SIGALRM', 'SIGABRT', 'SIGVTALRM', 'SIGXCPU', 'SIGXFSZ', 'SIGUSR2', 'SIGTRAP', 'SIGSYS', 'SIGQUIT', 'SIGIOT'
// should detect profiler and enable/disable accordingly.
// see #21
// 'SIGPROF'
);
}
if (process.platform === 'linux') {
signals.push('SIGIO', 'SIGPOLL', 'SIGPWR', 'SIGSTKFLT');
}
// Note: since nyc uses this module to output coverage, any lines
// that are in the direct sync flow of nyc's outputCoverage are
// ignored, since we can never get coverage for them.
// grab a reference to node's real process object right away
const processOk = (process) => !!process &&
typeof process === 'object' &&
typeof process.removeListener === 'function' &&
typeof process.emit === 'function' &&
typeof process.reallyExit === 'function' &&
typeof process.listeners === 'function' &&
typeof process.kill === 'function' &&
typeof process.pid === 'number' &&
typeof process.on === 'function';
const kExitEmitter = Symbol.for('signal-exit emitter');
const global = globalThis;
const ObjectDefineProperty = Object.defineProperty.bind(Object);
// teeny special purpose ee
class Emitter {
emitted = {
afterExit: false,
exit: false,
};
listeners = {
afterExit: [],
exit: [],
};
count = 0;
id = Math.random();
constructor() {
if (global[kExitEmitter]) {
return global[kExitEmitter];
}
ObjectDefineProperty(global, kExitEmitter, {
value: this,
writable: false,
enumerable: false,
configurable: false,
});
}
on(ev, fn) {
this.listeners[ev].push(fn);
}
removeListener(ev, fn) {
const list = this.listeners[ev];
const i = list.indexOf(fn);
/* c8 ignore start */
if (i === -1) {
return;
}
/* c8 ignore stop */
if (i === 0 && list.length === 1) {
list.length = 0;
}
else {
list.splice(i, 1);
}
}
emit(ev, code, signal) {
if (this.emitted[ev]) {
return false;
}
this.emitted[ev] = true;
let ret = false;
for (const fn of this.listeners[ev]) {
ret = fn(code, signal) === true || ret;
}
if (ev === 'exit') {
ret = this.emit('afterExit', code, signal) || ret;
}
return ret;
}
}
class SignalExitBase {
}
const signalExitWrap = (handler) => {
return {
onExit(cb, opts) {
return handler.onExit(cb, opts);
},
load() {
return handler.load();
},
unload() {
return handler.unload();
},
};
};
class SignalExitFallback extends SignalExitBase {
onExit() {
return () => { };
}
load() { }
unload() { }
}
class SignalExit extends SignalExitBase {
// "SIGHUP" throws an `ENOSYS` error on Windows,
// so use a supported signal instead
/* c8 ignore start */
#hupSig = process$1.platform === 'win32' ? 'SIGINT' : 'SIGHUP';
/* c8 ignore stop */
#emitter = new Emitter();
#process;
#originalProcessEmit;
#originalProcessReallyExit;
#sigListeners = {};
#loaded = false;
constructor(process) {
super();
this.#process = process;
// { <signal>: <listener fn>, ... }
this.#sigListeners = {};
for (const sig of signals) {
this.#sigListeners[sig] = () => {
// If there are no other listeners, an exit is coming!
// Simplest way: remove us and then re-send the signal.
// We know that this will kill the process, so we can
// safely emit now.
const listeners = this.#process.listeners(sig);
let { count } = this.#emitter;
// This is a workaround for the fact that signal-exit v3 and signal
// exit v4 are not aware of each other, and each will attempt to let
// the other handle it, so neither of them do. To correct this, we
// detect if we're the only handler *except* for previous versions
// of signal-exit, and increment by the count of listeners it has
// created.
/* c8 ignore start */
const p = process;
if (typeof p.__signal_exit_emitter__ === 'object' &&
typeof p.__signal_exit_emitter__.count === 'number') {
count += p.__signal_exit_emitter__.count;
}
/* c8 ignore stop */
if (listeners.length === count) {
this.unload();
const ret = this.#emitter.emit('exit', null, sig);
/* c8 ignore start */
const s = sig === 'SIGHUP' ? this.#hupSig : sig;
if (!ret)
process.kill(process.pid, s);
/* c8 ignore stop */
}
};
}
this.#originalProcessReallyExit = process.reallyExit;
this.#originalProcessEmit = process.emit;
}
onExit(cb, opts) {
/* c8 ignore start */
if (!processOk(this.#process)) {
return () => { };
}
/* c8 ignore stop */
if (this.#loaded === false) {
this.load();
}
const ev = opts?.alwaysLast ? 'afterExit' : 'exit';
this.#emitter.on(ev, cb);
return () => {
this.#emitter.removeListener(ev, cb);
if (this.#emitter.listeners['exit'].length === 0 &&
this.#emitter.listeners['afterExit'].length === 0) {
this.unload();
}
};
}
load() {
if (this.#loaded) {
return;
}
this.#loaded = true;
// This is the number of onSignalExit's that are in play.
// It's important so that we can count the correct number of
// listeners on signals, and don't wait for the other one to
// handle it instead of us.
this.#emitter.count += 1;
for (const sig of signals) {
try {
const fn = this.#sigListeners[sig];
if (fn)
this.#process.on(sig, fn);
}
catch (_) { }
}
this.#process.emit = (ev, ...a) => {
return this.#processEmit(ev, ...a);
};
this.#process.reallyExit = (code) => {
return this.#processReallyExit(code);
};
}
unload() {
if (!this.#loaded) {
return;
}
this.#loaded = false;
signals.forEach(sig => {
const listener = this.#sigListeners[sig];
/* c8 ignore start */
if (!listener) {
throw new Error('Listener not defined for signal: ' + sig);
}
/* c8 ignore stop */
try {
this.#process.removeListener(sig, listener);
/* c8 ignore start */
}
catch (_) { }
/* c8 ignore stop */
});
this.#process.emit = this.#originalProcessEmit;
this.#process.reallyExit = this.#originalProcessReallyExit;
this.#emitter.count -= 1;
}
#processReallyExit(code) {
/* c8 ignore start */
if (!processOk(this.#process)) {
return 0;
}
this.#process.exitCode = code || 0;
/* c8 ignore stop */
this.#emitter.emit('exit', this.#process.exitCode, null);
return this.#originalProcessReallyExit.call(this.#process, this.#process.exitCode);
}
#processEmit(ev, ...args) {
const og = this.#originalProcessEmit;
if (ev === 'exit' && processOk(this.#process)) {
if (typeof args[0] === 'number') {
this.#process.exitCode = args[0];
/* c8 ignore start */
}
/* c8 ignore start */
const ret = og.call(this.#process, ev, ...args);
/* c8 ignore start */
this.#emitter.emit('exit', this.#process.exitCode, null);
/* c8 ignore stop */
return ret;
}
else {
return og.call(this.#process, ev, ...args);
}
}
}
const process$1 = globalThis.process;
// wrap so that we call the method on the actual handler, without
// exporting it directly.
const {
/**
* Called when the process is exiting, whether via signal, explicit
* exit, or running out of stuff to do.
*
* If the global process object is not suitable for instrumentation,
* then this will be a no-op.
*
* Returns a function that may be used to unload signal-exit.
*/
onExit} = signalExitWrap(processOk(process$1) ? new SignalExit(process$1) : new SignalExitFallback());
const CLEAR_SCREEN = '\u001Bc';
function getResetScreen(configs, allowClearScreen) {
let clearScreen = allowClearScreen;
for (const config of configs) {
if (config.watch && config.watch.clearScreen === false) {
clearScreen = false;
}
}
if (clearScreen) {
return (heading) => rollup.stderr(CLEAR_SCREEN + heading);
}
let firstRun = true;
return (heading) => {
if (firstRun) {
rollup.stderr(heading);
firstRun = false;
}
};
}
function extractWatchHooks(command) {
if (!Array.isArray(command.watch))
return {};
return command.watch
.filter(value => typeof value === 'object')
.reduce((accumulator, keyValueOption) => ({ ...accumulator, ...keyValueOption }), {});
}
function createWatchHooks(command) {
const watchHooks = extractWatchHooks(command);
return function (hook) {
if (watchHooks[hook]) {
const cmd = watchHooks[hook];
if (!command.silent) {
rollup.stderr(rollup.cyan(`watch.${hook} ${rollup.bold(`$ ${cmd}`)}`));
}
try {
// !! important - use stderr for all writes from execSync
const stdio = [process.stdin, process.stderr, process.stderr];
node_child_process.execSync(cmd, { stdio: command.silent ? 'ignore' : stdio });
}
catch (error) {
rollup.stderr(error.message);
}
}
};
}
async function watch(command) {
process$2.env.ROLLUP_WATCH = 'true';
const isTTY = process$2.stderr.isTTY;
const silent = command.silent;
let watcher;
let configWatcher;
let resetScreen;
const configFile = command.config ? await cli.getConfigPath(command.config) : null;
const runWatchHook = createWatchHooks(command);
onExit(close);
process$2.on('uncaughtException', closeWithError);
async function loadConfigFromFileAndTrack(configFile) {
let configFileData = null;
let configFileRevision = 0;
configWatcher = index.chokidar.watch(configFile).on('change', reloadConfigFile);
await reloadConfigFile();
async function reloadConfigFile() {
try {
const newConfigFileData = await promises.readFile(configFile, 'utf8');
if (newConfigFileData === configFileData) {
return;
}
configFileRevision++;
const currentConfigFileRevision = configFileRevision;
if (configFileData) {
rollup.stderr(`\nReloading updated config...`);
}
configFileData = newConfigFileData;
const { options, warnings } = await loadConfigFile_js.loadConfigFile(configFile, command, true);
if (currentConfigFileRevision !== configFileRevision) {
return;
}
if (watcher) {
await watcher.close();
}
start(options, warnings);
}
catch (error) {
rollup.handleError(error, true);
}
}
}
if (configFile) {
await loadConfigFromFileAndTrack(configFile);
}
else {
const { options, warnings } = await cli.loadConfigFromCommand(command, true);
await start(options, warnings);
}
async function start(configs, warnings) {
watcher = rollup_js.watch(configs);
watcher.on('event', event => {
switch (event.code) {
case 'ERROR': {
warnings.flush();
rollup.handleError(event.error, true);
runWatchHook('onError');
break;
}
case 'START': {
if (!silent) {
if (!resetScreen) {
resetScreen = getResetScreen(configs, isTTY);
}
resetScreen(rollup.underline(`rollup v${rollup_js.VERSION}`));
}
runWatchHook('onStart');
break;
}
case 'BUNDLE_START': {
if (!silent) {
let input = event.input;
if (typeof input !== 'string') {
input = Array.isArray(input)
? input.join(', ')
: Object.values(input).join(', ');
}
rollup.stderr(rollup.cyan(`bundles ${rollup.bold(input)}${rollup.bold(event.output.map(parseAst_js.relativeId).join(', '))}...`));
}
runWatchHook('onBundleStart');
break;
}
case 'BUNDLE_END': {
warnings.flush();
if (!silent)
rollup.stderr(rollup.green(`created ${rollup.bold(event.output.map(parseAst_js.relativeId).join(', '))} in ${rollup.bold(cli.prettyMilliseconds(event.duration))}`));
runWatchHook('onBundleEnd');
if (event.result && event.result.getTimings) {
cli.printTimings(event.result.getTimings());
}
break;
}
case 'END': {
runWatchHook('onEnd');
if (!silent) {
rollup.stderr(`\n[${dateTime()}] waiting for changes...`);
}
}
}
if ('result' in event && event.result) {
event.result.close().catch(error => rollup.handleError(error, true));
}
});
}
function close(code) {
process$2.removeListener('uncaughtException', closeWithError);
// removing a non-existent listener is a no-op
process$2.stdin.removeListener('end', close);
if (configWatcher)
configWatcher.close();
Promise.resolve(watcher?.close()).finally(() => {
process$2.exit(typeof code === 'number' ? code : 0);
});
// Tell signal-exit that we are handling this gracefully
return true;
}
// return a promise that never resolves to keep the process running
return new Promise(() => { });
}
function closeWithError(error) {
error.name = `Uncaught ${error.name}`;
rollup.handleError(error);
}
exports.watch = watch;
//# sourceMappingURL=watch-cli.js.map
+324
View File
@@ -0,0 +1,324 @@
/*
@license
Rollup.js v4.62.2
Fri, 19 Jun 2026 14:55:11 GMT - commit 8faa18777374582bb813d54ce3623f4acf1f9e0b
https://github.com/rollup/rollup
Released under the MIT License.
*/
'use strict';
Object.defineProperty(exports, Symbol.toStringTag, { value: 'Module' });
const rollup = require('./rollup.js');
const path = require('node:path');
const process = require('node:process');
const index = require('./index.js');
const node_os = require('node:os');
require('./parseAst.js');
require('../native.js');
require('path');
require('node:perf_hooks');
require('node:fs/promises');
require('fs');
require('util');
require('stream');
require('os');
require('./fsevents-importer.js');
require('events');
class FileWatcher {
constructor(task, chokidarOptions) {
this.transformWatchers = new Map();
this.chokidarOptions = chokidarOptions;
this.task = task;
this.watcher = this.createWatcher(null);
}
close() {
this.watcher.close();
for (const watcher of this.transformWatchers.values()) {
watcher.close();
}
}
unwatch(id) {
this.watcher.unwatch(id);
const transformWatcher = this.transformWatchers.get(id);
if (transformWatcher) {
this.transformWatchers.delete(id);
transformWatcher.close();
}
}
watch(id, isTransformDependency) {
if (isTransformDependency) {
const watcher = this.transformWatchers.get(id) ?? this.createWatcher(id);
watcher.add(id);
this.transformWatchers.set(id, watcher);
}
else {
this.watcher.add(id);
}
}
createWatcher(transformWatcherId) {
const task = this.task;
const isLinux = node_os.platform() === 'linux';
const isFreeBSD = node_os.platform() === 'freebsd';
const isTransformDependency = transformWatcherId !== null;
const handleChange = (id, event) => {
const changedId = transformWatcherId || id;
if (isLinux || isFreeBSD) {
// unwatching and watching fixes an issue with chokidar where on certain systems,
// a file that was unlinked and immediately recreated would create a change event
// but then no longer any further events
watcher.unwatch(changedId);
watcher.add(changedId);
}
task.invalidate(changedId, { event, isTransformDependency });
};
const watcher = index.chokidar
.watch([], this.chokidarOptions)
.on('add', id => handleChange(id, 'create'))
.on('change', id => handleChange(id, 'update'))
.on('unlink', id => handleChange(id, 'delete'));
return watcher;
}
}
const eventsRewrites = {
create: {
create: 'buggy',
delete: null, //delete file from map
update: 'create'
},
delete: {
create: 'update',
delete: 'buggy',
update: 'buggy'
},
update: {
create: 'buggy',
delete: 'delete',
update: 'update'
}
};
class Watcher {
constructor(optionsList, emitter) {
this.buildDelay = 0;
this.buildTimeout = null;
this.closed = false;
this.invalidatedIds = new Map();
this.rerun = false;
this.running = true;
this.emitter = emitter;
emitter.close = this.close.bind(this);
this.tasks = optionsList.map(options => new Task(this, options));
for (const { watch } of optionsList) {
if (watch && typeof watch.buildDelay === 'number') {
this.buildDelay = Math.max(this.buildDelay, watch.buildDelay);
}
}
process.nextTick(() => this.run());
}
async close() {
if (this.closed)
return;
this.closed = true;
if (this.buildTimeout)
clearTimeout(this.buildTimeout);
for (const task of this.tasks) {
task.close();
}
await this.emitter.emit('close');
this.emitter.removeAllListeners();
}
invalidate(file) {
if (file) {
const previousEvent = this.invalidatedIds.get(file.id);
const event = previousEvent ? eventsRewrites[previousEvent][file.event] : file.event;
if (event === 'buggy') {
//TODO: throws or warn? Currently just ignore, uses new event
this.invalidatedIds.set(file.id, file.event);
}
else if (event === null) {
this.invalidatedIds.delete(file.id);
}
else {
this.invalidatedIds.set(file.id, event);
}
}
if (this.running) {
this.rerun = true;
return;
}
if (this.buildTimeout)
clearTimeout(this.buildTimeout);
this.buildTimeout = setTimeout(async () => {
this.buildTimeout = null;
try {
await Promise.all([...this.invalidatedIds].map(([id, event]) => this.emitter.emit('change', id, { event })));
this.invalidatedIds.clear();
await this.emitter.emit('restart');
this.emitter.removeListenersForCurrentRun();
this.run();
}
catch (error) {
this.invalidatedIds.clear();
await this.emitter.emit('event', {
code: 'ERROR',
error,
result: null
});
await this.emitter.emit('event', {
code: 'END'
});
}
}, this.buildDelay);
}
async run() {
this.running = true;
await this.emitter.emit('event', {
code: 'START'
});
for (const task of this.tasks) {
await task.run();
}
this.running = false;
await this.emitter.emit('event', {
code: 'END'
});
if (this.rerun) {
this.rerun = false;
this.invalidate();
}
}
}
class Task {
constructor(watcher, options) {
this.cache = { modules: [] };
this.watchFiles = [];
this.closed = false;
this.invalidated = true;
this.watched = new Set();
this.watcher = watcher;
this.options = options;
this.skipWrite = Boolean(options.watch && options.watch.skipWrite);
this.outputs = this.options.output;
this.outputFiles = this.outputs.map(output => {
if (output.file || output.dir)
return path.resolve(output.file || output.dir);
return undefined;
});
this.watchOptions = this.options.watch || {};
this.filter = rollup.createFilter(this.watchOptions.include, this.watchOptions.exclude);
this.fileWatcher = new FileWatcher(this, {
...this.watchOptions.chokidar,
disableGlobbing: true,
ignoreInitial: true
});
}
close() {
this.closed = true;
this.fileWatcher.close();
}
invalidate(id, details) {
this.invalidated = true;
if (details.isTransformDependency) {
for (const module of this.cache.modules) {
if (!module.transformDependencies.includes(id))
continue;
// effective invalidation
module.originalCode = null;
}
}
this.watcher.invalidate({ event: details.event, id });
this.watchOptions.onInvalidate?.(id);
}
async run() {
if (!this.invalidated)
return;
this.invalidated = false;
const options = {
...this.options,
cache: this.cache
};
const start = Date.now();
await this.watcher.emitter.emit('event', {
code: 'BUNDLE_START',
input: this.options.input,
output: this.outputFiles
});
let result = null;
try {
result = await rollup.rollupInternal(options, this.watcher.emitter);
if (this.closed) {
return;
}
this.updateWatchedFiles(result);
if (!this.skipWrite) {
await Promise.all(this.outputs.map(output => result.write(output)));
if (this.closed) {
return;
}
this.updateWatchedFiles(result);
}
await this.watcher.emitter.emit('event', {
code: 'BUNDLE_END',
duration: Date.now() - start,
input: this.options.input,
output: this.outputFiles,
result
});
}
catch (error) {
if (!this.closed) {
if (Array.isArray(error.watchFiles)) {
for (const id of error.watchFiles) {
this.watchFile(id);
}
}
if (error.id) {
this.cache.modules = this.cache.modules.filter(module => module.id !== error.id);
}
}
await this.watcher.emitter.emit('event', {
code: 'ERROR',
error,
result
});
}
}
updateWatchedFiles(result) {
const previouslyWatched = this.watched;
this.watched = new Set();
this.watchFiles = result.watchFiles;
this.cache = result.cache;
for (const id of this.watchFiles) {
this.watchFile(id);
}
for (const module of this.cache.modules) {
for (const depId of module.transformDependencies) {
this.watchFile(depId, true);
}
}
for (const id of previouslyWatched) {
if (!this.watched.has(id)) {
this.fileWatcher.unwatch(id);
}
}
}
watchFile(id, isTransformDependency = false) {
if (!this.filter(id))
return;
this.watched.add(id);
if (this.outputFiles.includes(id)) {
throw new Error('Cannot import the generated bundle');
}
// this is necessary to ensure that any 'renamed' files
// continue to be watched following an error
this.fileWatcher.watch(id, isTransformDependency);
}
}
exports.Task = Task;
exports.Watcher = Watcher;
//# sourceMappingURL=watch.js.map
+296
View File
@@ -0,0 +1,296 @@
{
"name": "rollup",
"version": "4.62.2",
"description": "Next-generation ES module bundler",
"main": "dist/rollup.js",
"module": "dist/es/rollup.js",
"types": "dist/rollup.d.ts",
"bin": {
"rollup": "dist/bin/rollup"
},
"napi": {
"binaryName": "rollup",
"packageName": "@rollup/rollup",
"targets": [
"aarch64-apple-darwin",
"aarch64-linux-android",
"aarch64-pc-windows-msvc",
"aarch64-unknown-freebsd",
"aarch64-unknown-linux-gnu",
"aarch64-unknown-linux-musl",
"armv7-linux-androideabi",
"armv7-unknown-linux-gnueabihf",
"armv7-unknown-linux-musleabihf",
"i686-pc-windows-msvc",
"loongarch64-unknown-linux-gnu",
"loongarch64-unknown-linux-musl",
"riscv64gc-unknown-linux-gnu",
"riscv64gc-unknown-linux-musl",
"powerpc64le-unknown-linux-gnu",
"powerpc64le-unknown-linux-musl",
"s390x-unknown-linux-gnu",
"x86_64-apple-darwin",
"x86_64-pc-windows-gnu",
"x86_64-pc-windows-msvc",
"x86_64-unknown-freebsd",
"x86_64-unknown-linux-gnu",
"x86_64-unknown-linux-musl",
"x86_64-unknown-openbsd",
"aarch64-unknown-linux-ohos"
]
},
"scripts": {
"build": "concurrently -c green,blue \"npm run build:wasm\" \"npm:build:ast-converters\" && concurrently -c green,blue \"npm run build:napi -- --release\" \"npm:build:js\" && npm run build:copy-native",
"build:quick": "concurrently -c green,blue 'npm:build:napi' 'npm:build:cjs' && npm run build:copy-native",
"build:napi": "napi build --cwd rust/bindings_napi --platform --dts ../../native.d.ts --no-js --output-dir ../.. --package-json-path ../../package.json",
"build:wasm": "wasm-pack build rust/bindings_wasm --out-dir ../../wasm --target web --no-pack && shx rm wasm/.gitignore",
"build:wasm:node": "wasm-pack build rust/bindings_wasm --out-dir ../../wasm-node --target nodejs --no-pack && shx rm wasm-node/.gitignore",
"update:napi": "npm run build:napi && npm run build:copy-native",
"build:js": "rollup --config rollup.config.ts --configPlugin typescript --forceExit",
"build:js:node": "rollup --config rollup.config.ts --configPlugin typescript --configIsBuildNode --forceExit",
"build:prepare": "concurrently -c green,blue \"npm run build:napi -- --release\" \"npm:build:js:node\" && npm run build:copy-native",
"update:js": "npm run build:js && npm run build:copy-native",
"build:copy-native": "shx mkdir -p dist && shx cp rollup.*.node dist/",
"dev": "concurrently -kc green,blue 'nodemon --watch rust -e rs --exec \"npm run build:wasm\"' 'vitepress dev docs'",
"build:cjs": "rollup --config rollup.config.ts --configPlugin typescript --configTest --forceExit",
"build:bootstrap": "shx mv dist dist-build && node dist-build/bin/rollup --config rollup.config.ts --configPlugin typescript --forceExit && shx rm -rf dist-build",
"build:bootstrap:cjs": "shx mv dist dist-build && node dist-build/bin/rollup --config rollup.config.ts --configPlugin typescript --configTest --forceExit && shx rm -rf dist-build",
"build:docs": "vitepress build docs",
"build:ast-converters": "node scripts/generate-ast-converters.js",
"preview:docs": "vitepress preview docs",
"ci:artifacts": "napi artifacts",
"ci:lint": "concurrently -c red,yellow,green,blue 'npm:lint:js:nofix' 'npm:lint:native-js' 'npm:lint:markdown:nofix' 'npm:lint:rust:nofix'",
"ci:test:all": "concurrently --kill-others-on-fail -c green,blue,magenta,cyan 'npm:test:only' 'npm:test:typescript' 'npm:test:leak' 'npm:test:browser'",
"ci:coverage": "NODE_OPTIONS=--no-experimental-require-module nyc --reporter lcovonly mocha",
"lint": "concurrently -c red,yellow,green,blue 'npm:lint:js' 'npm:lint:native-js' 'npm:lint:markdown' 'npm:lint:rust'",
"lint:js": "eslint . --fix --cache --concurrency auto",
"lint:js:nofix": "eslint . --cache --concurrency auto",
"lint:native-js": "node scripts/lint-native-js.js",
"lint:markdown": "prettier --write \"**/*.md\"",
"lint:markdown:nofix": "prettier --check \"**/*.md\"",
"lint:rust": "cd rust && cargo fmt && cargo clippy --fix --allow-dirty",
"lint:rust:nofix": "cd rust && cargo fmt --check && cargo clippy",
"perf": "npm run build:bootstrap:cjs && node --expose-gc scripts/perf-report/index.js",
"prepare": "husky && npm run prepare:patch && node scripts/check-release.js || npm run build:prepare",
"prepare:patch": "patch-package",
"prepublishOnly": "node scripts/check-release.js && node scripts/prepublish.js",
"postpublish": "node scripts/postpublish.js",
"prepublish:napi": "napi prepublish --no-gh-release",
"release": "node scripts/prepare-release.js",
"release:docs": "git fetch --update-head-ok origin master:master && git branch --force documentation-published master && git push origin documentation-published",
"check-audit": "check-audit",
"resolve-audit": "resolve-audit",
"test": "npm run build && npm run test:all",
"test:update-snapshots": "node scripts/update-snapshots.js",
"test:cjs": "npm run build:cjs && npm run test:only",
"test:quick": "mocha -b test/test.js",
"test:all": "concurrently --kill-others-on-fail -c green,blue,magenta,cyan,red 'npm:test:only' 'npm:test:browser' 'npm:test:typescript' 'npm:test:package' 'npm:test:options'",
"test:coverage": "npm run build:cjs && shx rm -rf coverage/* && nyc --reporter html mocha test/test.js",
"test:coverage:browser": "npm run build && shx rm -rf coverage/* && nyc mocha test/browser/index.js",
"test:leak": "npm install --no-save weak-napi && node --expose-gc test/leak/index.js",
"test:package": "node scripts/test-package.js",
"test:options": "node scripts/test-options.js",
"test:only": "mocha test/test.js",
"test:typescript": "shx rm -rf test/typescript/dist && shx cp -r dist test/typescript/ && tsc --noEmit -p test/typescript && tsc --noEmit -p . && tsc --noEmit -p scripts && vue-tsc --noEmit -p docs",
"test:browser": "mocha test/browser/index.js",
"watch": "rollup --config rollup.config.ts --configPlugin typescript --watch"
},
"repository": {
"type": "git",
"url": "git+https://github.com/rollup/rollup.git"
},
"keywords": [
"modules",
"bundler",
"bundling",
"es6",
"optimizer"
],
"author": "Rich Harris",
"license": "MIT",
"bugs": {
"url": "https://github.com/rollup/rollup/issues"
},
"homepage": "https://rollupjs.org/",
"optionalDependencies": {
"fsevents": "~2.3.2",
"@rollup/rollup-darwin-arm64": "4.62.2",
"@rollup/rollup-android-arm64": "4.62.2",
"@rollup/rollup-win32-arm64-msvc": "4.62.2",
"@rollup/rollup-freebsd-arm64": "4.62.2",
"@rollup/rollup-linux-arm64-gnu": "4.62.2",
"@rollup/rollup-linux-arm64-musl": "4.62.2",
"@rollup/rollup-android-arm-eabi": "4.62.2",
"@rollup/rollup-linux-arm-gnueabihf": "4.62.2",
"@rollup/rollup-linux-arm-musleabihf": "4.62.2",
"@rollup/rollup-win32-ia32-msvc": "4.62.2",
"@rollup/rollup-linux-loong64-gnu": "4.62.2",
"@rollup/rollup-linux-loong64-musl": "4.62.2",
"@rollup/rollup-linux-riscv64-gnu": "4.62.2",
"@rollup/rollup-linux-riscv64-musl": "4.62.2",
"@rollup/rollup-linux-ppc64-gnu": "4.62.2",
"@rollup/rollup-linux-ppc64-musl": "4.62.2",
"@rollup/rollup-linux-s390x-gnu": "4.62.2",
"@rollup/rollup-darwin-x64": "4.62.2",
"@rollup/rollup-win32-x64-gnu": "4.62.2",
"@rollup/rollup-win32-x64-msvc": "4.62.2",
"@rollup/rollup-freebsd-x64": "4.62.2",
"@rollup/rollup-linux-x64-gnu": "4.62.2",
"@rollup/rollup-linux-x64-musl": "4.62.2",
"@rollup/rollup-openbsd-x64": "4.62.2",
"@rollup/rollup-openharmony-arm64": "4.62.2"
},
"dependencies": {
"@types/estree": "1.0.9"
},
"devDependenciesComments": {
"core-js": "We only update manually as every update requires a snapshot update"
},
"devDependencies": {
"@codemirror/commands": "^6.10.3",
"@codemirror/lang-javascript": "^6.2.5",
"@codemirror/language": "^6.12.3",
"@codemirror/search": "^6.7.0",
"@codemirror/state": "^6.6.0",
"@codemirror/view": "^6.43.1",
"@emnapi/core": "^1.11.1",
"@emnapi/runtime": "^1.11.1",
"@eslint/js": "^10.0.1",
"@inquirer/prompts": "^7.10.1",
"@jridgewell/sourcemap-codec": "^1.5.5",
"@mermaid-js/mermaid-cli": "^11.15.0",
"@napi-rs/cli": "3.4.1",
"@rollup/plugin-alias": "^6.0.0",
"@rollup/plugin-buble": "^1.0.3",
"@rollup/plugin-commonjs": "^29.0.3",
"@rollup/plugin-json": "^6.1.0",
"@rollup/plugin-node-resolve": "^16.0.3",
"@rollup/plugin-replace": "^6.0.3",
"@rollup/plugin-terser": "^0.4.4",
"@rollup/plugin-typescript": "^12.3.0",
"@rollup/pluginutils": "^5.4.0",
"@shikijs/vitepress-twoslash": "^4.2.0",
"@types/mocha": "^10.0.10",
"@types/node": "^20.19.43",
"@types/picomatch": "^4.0.3",
"@types/semver": "^7.7.1",
"@types/yargs-parser": "^21.0.3",
"@vue/language-server": "^3.3.5",
"acorn": "^8.17.0",
"acorn-import-assertions": "^1.9.0",
"acorn-import-phases": "^1.0.4",
"acorn-jsx": "^5.3.2",
"buble": "^0.20.0",
"builtin-modules": "^5.2.0",
"chokidar": "^3.6.0",
"concurrently": "^9.2.1",
"core-js": "3.38.1",
"date-time": "^4.0.0",
"es5-shim": "^4.6.7",
"es6-shim": "^0.35.8",
"eslint": "^10.5.0",
"eslint-config-prettier": "^10.1.8",
"eslint-plugin-prettier": "^5.5.6",
"eslint-plugin-unicorn": "^66.0.0",
"eslint-plugin-vue": "^10.9.2",
"fixturify": "^3.0.0",
"flru": "^1.0.2",
"fs-extra": "^11.3.5",
"github-api": "^3.4.0",
"globals": "^17.6.0",
"husky": "^9.1.7",
"is-reference": "^3.0.3",
"lint-staged": "^17.0.7",
"locate-character": "^3.0.0",
"magic-string": "^0.30.21",
"memfs": "^4.57.7",
"mocha": "11.7.6",
"nodemon": "^3.1.14",
"npm-audit-resolver": "^3.0.0-RC.0",
"nyc": "^18.0.0",
"patch-package": "^8.0.1",
"picocolors": "^1.1.1",
"picomatch": "^4.0.4",
"pinia": "^3.0.4",
"prettier": "^3.8.4",
"prettier-plugin-organize-imports": "^4.3.0",
"pretty-bytes": "^7.1.0",
"pretty-ms": "^9.3.0",
"requirejs": "^2.3.8",
"rollup": "^4.62.0",
"rollup-plugin-license": "^3.7.1",
"semver": "^7.8.4",
"shx": "^0.4.0",
"signal-exit": "^4.1.0",
"source-map": "^0.7.6",
"source-map-support": "^0.5.21",
"systemjs": "^6.15.1",
"terser": "^5.48.0",
"tslib": "^2.8.1",
"typescript": "^5.9.3",
"typescript-eslint": "^8.61.1",
"vite": "^7.3.5",
"vitepress": "^1.6.4",
"vue": "^3.5.38",
"vue-eslint-parser": "^10.4.1",
"vue-tsc": "^3.3.5",
"wasm-pack": "^0.15.0",
"yargs-parser": "^21.1.1"
},
"overrides": {
"axios": "^1.18.0",
"esbuild": ">0.24.2",
"lodash-es": ">4.17.22",
"path-scurry": {
"lru-cache": ">=11.0.0"
},
"readable-stream": "npm:@built-in/readable-stream@1",
"react": "^18.3.1",
"react-dom": "^18.3.1",
"semver": "^7.8.4",
"tar": ">7.5.6",
"vite": "$vite"
},
"comments": {
"vue-tsc": "This is necessary so that prettier-plugin-organize-imports works correctly in Vue templatges",
"@emnapi/core": "If missing this fails npm install for Linux ARM",
"@emnapi/runtime": "If missing this fails npm install for Linux ARM",
"react": "If missing this fails npm install for Linux ARM",
"react-dom": "If missing this fails npm install for Linux ARM"
},
"files": [
"dist/*.node",
"dist/**/*.js",
"dist/*.d.ts",
"dist/bin/rollup",
"dist/es/package.json"
],
"engines": {
"node": ">=18.0.0",
"npm": ">=8.0.0"
},
"exports": {
".": {
"types": "./dist/rollup.d.ts",
"import": "./dist/es/rollup.js",
"require": "./dist/rollup.js"
},
"./loadConfigFile": {
"types": "./dist/loadConfigFile.d.ts",
"require": "./dist/loadConfigFile.js",
"default": "./dist/loadConfigFile.js"
},
"./getLogFilter": {
"types": "./dist/getLogFilter.d.ts",
"import": "./dist/es/getLogFilter.js",
"require": "./dist/getLogFilter.js"
},
"./parseAst": {
"types": "./dist/parseAst.d.ts",
"import": "./dist/es/parseAst.js",
"require": "./dist/parseAst.js"
},
"./dist/*": "./dist/*",
"./package.json": "./package.json"
}
}