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98 Commits

Author SHA1 Message Date
xenia 7652bf32c4 no uchar 2026-07-21 13:54:12 -04:00
xenia eb49898a0a create package.nix 2026-07-21 13:29:39 -04:00
xenia 5c43aaa6ef the dragon girls take over: part 2 2026-07-21 13:26:17 -04:00
xenia 1ea4cadd3c correct UTF-8 surrogate range check 2026-07-21 13:18:40 -04:00
Hugo Heuzard 667c8d0945 Use default flags 2026-07-21 13:17:01 -04:00
Hugo Heuzard 409fc80d40 Document longest match behavior 2026-07-21 13:13:11 -04:00
xenia 1b2ea6e119 update opam file 2026-07-21 13:12:36 -04:00
Hugo Heuzard 7606e062aa Refactoring, new type for dfa_state and dfa 2026-07-21 13:11:47 -04:00
Hugo Heuzard 50488309ed Tests: output automata using dot syntax for easier review 2026-07-21 13:11:24 -04:00
Hugo Heuzard e1467df71b Tests: add codegen tests 2026-07-21 13:10:51 -04:00
Hugo Heuzard 15df9eb34f Tests: add a %sedlex_test ppx to help write tests 2026-07-21 13:09:48 -04:00
xenia 7679a0d740 bump ocamlformat 2026-07-21 13:08:05 -04:00
xenia d0371e2226 the dragon girls take over 2026-07-21 13:04:41 -04:00
Romain Beauxis 589f26b0cc Release v3.7! 2025-10-06 16:25:12 -05:00
Romain Beauxis 7fae55f1ac
Update to Unicode 17.0.0 (#172) 2025-09-11 15:22:41 -05:00
Romain Beauxis e496b44f9b Bump version, tag. 2025-06-05 07:58:10 -05:00
Romain Beauxis 96b31bed46 Add CHANGES.md entry. 2025-06-02 08:23:28 -05:00
hhugo 8b5aaaeca2
Fix 168 (#171) 2025-06-02 08:21:45 -05:00
Romain Beauxis 59843681a2 Bump version, add CHANGES date. 2025-05-29 09:59:00 -05:00
Romain Beauxis 5bc3b4a661 Bump ocamlformat, reformat. 2025-05-29 09:57:11 -05:00
hhugo c7605dab33
Add utf8 support for string literal (#127) 2025-05-28 10:09:15 -05:00
hhugo d0269f89bb
CR (#170) 2025-05-20 13:36:36 -05:00
Romain Beauxis 10869bec67
Implement Corrigendum #1: UTF-8 Shortest Form (#168)
Fixes: #167
2025-05-20 09:03:19 -05:00
Romain Beauxis 62f28231f8 Bump version. 2025-03-28 09:02:44 -05:00
Romain Beauxis e5edcb7949 cut changelog time. 2025-03-28 09:00:32 -05:00
hhugo 51637d261a
make sedlex compatible with ppxlib.0.36 (#166) 2025-03-24 09:16:55 -05:00
Romain Beauxis 10ef6d27ae Try this. 2025-03-06 13:11:57 -06:00
Romain Beauxis 8836cacf1a Clenaup CI 2024-11-01 16:41:34 -05:00
hhugo 023635af9f
Update ci (#164) 2024-11-01 16:27:13 -05:00
hhugo c8156d1eb6
fix formatting (#161)
Thanks!
2024-11-01 16:17:54 -05:00
Romain Beauxis 0979a35e47 Add PR 2024-10-29 08:54:44 -05:00
Romain Beauxis 5cb9ec0996 Release 3.3! 2024-10-29 08:53:39 -05:00
Romain Beauxis da551b953f
Add support for unicode 16.0.0. (#157)
Co-authored-by: hhugo <hugo.heuzard@gmail.com>
2024-10-23 08:44:03 -05:00
hhugo df4a52cc4a
Improve regressions (#159) 2024-09-17 09:55:27 -05:00
hhugo ccd3deaae7
New functions to retrieve position (#155)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-10-16 08:54:03 -05:00
Rudi Grinberg bb425419b8
fix: use correct promotion mode (#154)
`(promote (until-clean))` is ignored when `--ignore-promoted-rules` is
passed in later versions of dune.

See
https://github.com/ocaml/dune/issues/4401
https://github.com/ocaml/dune/pull/5956

Signed-off-by: Rudi Grinberg <me@rgrinberg.com>
2023-08-26 13:29:27 -05:00
Romain Beauxis a1362bd69a Bump to 3.0 for executables_implicit_empty_intf 2023-06-29 15:52:48 -05:00
Romain Beauxis d126b58b3c
Prepare for release. (#151) 2023-06-29 14:41:27 -05:00
hhugo 23060e8004
Restore OCaml 4.08 in the CI (#153)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-28 14:30:40 -05:00
Romain Beauxis 2deb23bb14 Fix branch. 2023-06-28 09:15:05 -05:00
Romain Beauxis 934d457afa Add doc CI action. 2023-06-28 09:12:53 -05:00
hhugo 6beb844c15
Small refactoring to reuse more logic from the stdlib (#150) 2023-06-28 09:11:38 -05:00
hhugo fad335a87c
Better unicode.ml generator (#141)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
Co-authored-by: Romain Beauxis <toots@rastageeks.org>
2023-06-27 19:15:47 -05:00
hhugo 5f65255c06
Update badge for the new CI (#148) 2023-06-27 19:09:25 -05:00
Romain Beauxis d49c5c6bb0
Add bytes API. (#146)
Fixes: #96, #139
2023-06-27 17:49:35 -05:00
hhugo c9ea65b983
Check and fix Sedlex_cset invariant (#144)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-27 14:06:04 -05:00
hhugo d73baa700a
CI improvements (#147)
* Fix expect tests on windows
* more ci jobs
* standard ci
* simplify

---------

Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-27 13:19:17 -05:00
Romain Beauxis 98e915c1f3 Fix comment. 2023-06-27 08:28:42 -05:00
Romain Beauxis 7581a9d8a0
Count lines in all cases. (#130) 2023-06-26 10:51:38 -05:00
hhugo fa49875ad6
Small refactoring (#142)
- Lift constant
- Dedup code between next and __private__next_int

Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-26 08:18:36 -05:00
hhugo 9beabeb9be
Delay MalFormed until really needed. (#140)
* Delay MalFormed until really needed

* Changes

---------

Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-25 18:02:22 -05:00
hhugo 7203fb9237
Small refactoring to improve readability and ease future changes. (#135)
* Small renaming to improve readability

* small refactoring

---------

Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-24 13:47:49 -05:00
hhugo 0959f3d4bf
Format generator with ocamlformat (#136)
* Rename generator

* ocamlformat generator

---------

Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-24 10:08:08 -05:00
hhugo 06fe7a62f0
from_int_array use from_gen (#137)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-24 00:12:28 -05:00
Romain Beauxis 486d88783d
Use from_gen to parse utf* strings. (#131) 2023-06-23 18:13:42 -05:00
hhugo e96e2111d5
Restore compat with OCaml 4.8 (#132)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-06-10 18:11:08 -05:00
Romain Beauxis cea846d905 Remove uchar. 2023-03-02 12:13:44 -06:00
Romain Beauxis 3d1a133ef0 Bump minimal OCaml version. 2023-03-02 11:37:26 -06:00
Romain Beauxis d986f65807 Merge changelog, drop version. 2023-03-02 09:39:44 -06:00
Romain Beauxis 87d35baf39 Add CHANGES.md entry. 2023-02-24 14:39:00 -06:00
hhugo f8be7def4e
Raise Malformed instead of Invalid_arg (#126)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-02-24 14:37:54 -06:00
hhugo bd0684a5ae
Don't use gen to consume channels (#124)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-02-22 10:14:58 -06:00
hhugo e89d147a15
Setup github action (#125)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-02-21 08:34:26 -06:00
Romain Beauxis 99ba04ea27 Add CHANGES entry. 2023-02-18 16:14:22 -06:00
hhugo 260e50e6c4
Preserve location of lexbuf (#118)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
Co-authored-by: Stefan Muenzel <source@s.muenzel.net>
2023-02-18 16:13:23 -06:00
Romain Beauxis efb85bf11c Add CHANGES entry. 2023-02-17 10:35:03 -06:00
hhugo 7468953319
Explicit stdlib in generated code (#122)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-02-17 10:33:43 -06:00
hhugo 7236b71265
bump ocamlformat (#121)
Fixes: #120
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>.
2023-02-17 09:46:21 -06:00
Romain Beauxis 9609264c69 Re-generate opam file. 2023-02-17 09:19:56 -06:00
Stefan Muenzel f30e450c14
Fix directly nested sedlex matches (#117) 2023-02-17 09:19:22 -06:00
hhugo 62f4974f1a
Add a small header to unicode.ml (#116)
Co-authored-by: Hugo Heuzard <hugo.heuzard@nomadic-labs.com>
2023-01-18 12:45:56 -06:00
Romain Beauxis 4232bded6a
Update to unicode 15 (#113) 2022-09-21 09:44:11 -05:00
Romain Beauxis 9b7eb2e413 Fmt 2022-05-19 12:47:37 -05:00
Romain Beauxis 4345df694f Drop Stream API that was removed in `OCaml` `4.14.0` ahead of the `5.0` release. 2022-05-19 12:47:11 -05:00
Romain Beauxis 96cffd28a3 Bump ocaml version 2022-03-29 18:23:02 +02:00
Romain Beauxis d8eb183627 Bump version, format. 2022-03-29 13:07:34 +02:00
Sonja Heinze e35a0265b0
Ppxlib.0.26.0 compatibility (#110) 2022-03-29 06:00:53 -05:00
Romain Beauxis b44bbaf219 Update CI 2022-03-28 14:39:22 +02:00
Romain Beauxis 359b08fd40 Update unicode version to `14.0.0`, prepare release. 2021-12-03 16:04:00 -06:00
Fangyi Zhou 60f476a7d0
Fix exponential time behaviour when constructing Alt (#106)
Fixes #97 by removing a duplicate evaluation

Signed-off-by: Fangyi Zhou <fangyi.zhou15@imperial.ac.uk>
2021-12-03 15:46:23 -06:00
Romain Beauxis 268c553f47 Revert use of private library. 2021-07-31 08:53:24 +02:00
Romain Beauxis cca887f1e5 Update unicode version to 13.0.0 2021-07-30 19:10:59 +02:00
Romain Beauxis 69ddbdc865 Add CHANGES entry. 2021-07-30 18:54:46 +02:00
Romain Beauxis 05e3ab42b2
Enhancements (#101)
* Update `dune` support to `2.8`, add auto-generated `opam` files.
* Add internal APIs to allow shared private APIs between the main module and the ppx rewriter
* Optimize generated code, thanks to @bobzhang 
* Add github actions workflow

Co-authored-by: Hongbo Zhang <bob.hongbo.zhang@foxmail.com>
2021-07-30 11:20:08 -05:00
Romain Beauxis 2ce5034a92 Drop unrelated conflict, moved to the corresponding package. 2021-01-18 12:32:28 -06:00
Romain Beauxis f39c7e4a6e Release 2.3! 2021-01-16 13:23:03 -06:00
Sacha Ayoun 36ef0c46b8
Migrate to ppxlib (#94) 2021-01-16 13:16:00 -06:00
Anton Kochkov 8b72668a2c Travis CI - testing OCaml 4.09-4.11 2020-10-10 16:43:44 -04:00
domq b85719784c
Updates for modern ocaml (#92)
* [fix] OCaml 4.08.1 no longer likes `Pervasives.compare`

* [fix] Update suggested ocamlc commands

Fixes #74

* [doc] Instructions for utop

Co-authored-by: Dominique Quatravaux <dominique.quatravaux@epfl.ch>
2020-06-22 15:40:23 +02:00
Romain Beauxis 25c0dbd82c Merge pull request #89 from mjustus/master
Support for OCaml 4.08
2020-02-08 15:55:37 -06:00
Justus Matthiesen 1971ebcfbc Bump version to 2.2 2020-01-31 16:03:45 +00:00
Justus Matthiesen 799ff51070 Update changelog 2020-01-31 15:45:21 +00:00
Justus Matthiesen 6c15cc420b Use OCaml 4.08 syntax 2020-01-31 15:43:27 +00:00
Justus Matthiesen b06d75dae2 Bump ppx_tools_versioned 2020-01-31 15:38:37 +00:00
Craig Ferguson e4f029b471 opam: remove the 'build' directive on dune dependency
See https://github.com/ocaml/opam-repository/pull/14266
2019-10-13 16:25:09 -04:00
Romain Beauxis 361b4f7026 Backport changes from opam. 2019-07-22 16:24:33 -07:00
Romain Beauxis f55c5cd609 Force dune version to be >= 1.8. `promote-until-clean` was only added
with that version and at least dune 1.6 treats `promote-until-clean` as
a straight `promote`, which is a problem. Same changes need to be pushed
to opam. Fixes: #82
2019-07-22 14:23:18 -07:00
Romain Beauxis 3323b69406 Sync back changes from opam upstream. 2019-07-09 07:56:22 -05:00
61 changed files with 7662 additions and 5331 deletions

1
.envrc Normal file
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@ -0,0 +1 @@
use flake

1
.gitattributes vendored Normal file
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@ -0,0 +1 @@
test/stress_test.ml text diff

3
.github/CODEOWNERS vendored
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@ -1,3 +0,0 @@
# These are the default owners for everything in the repo. They will
# be requested for review when someone opens a pull request.
* @alainfrisch @Drup @pmetzger

2
.gitignore vendored
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@ -18,3 +18,5 @@ src/generator/data/*.txt
examples/complement
examples/tokenizer
examples/subtraction
_opam
.direnv

10
.ocamlformat Normal file
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@ -0,0 +1,10 @@
version=0.29.0
profile = conventional
break-separators = after
space-around-lists = false
doc-comments = before
match-indent = 2
match-indent-nested = always
parens-ite
exp-grouping = preserve
module-item-spacing = compact

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@ -1,18 +0,0 @@
language: c
sudo: required
install: test -e .travis.opam.sh || wget https://raw.githubusercontent.com/ocaml/ocaml-ci-scripts/master/.travis-opam.sh
script: bash -ex .travis-opam.sh
env:
global:
- PACKAGE=sedlex
matrix:
- OCAML_VERSION=4.02
- OCAML_VERSION=4.03
- OCAML_VERSION=4.04
- OCAML_VERSION=4.05
- OCAML_VERSION=4.06
- OCAML_VERSION=4.07
- OCAML_VERSION=4.08
os:
- linux
- osx

68
CHANGES
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@ -1,68 +0,0 @@
2.1
* GPR#78: Auto-generate unicode data
2.0
* GPR#70: Switch to dune, opam v2
* GPR#60: Breaking change: switch from int codepoints to Uchar.t
codepoints
* GPR#59: Track lexing position
-------------------------------------------------------------------------------
1.99.4
* GPR#47: Switch to ocaml-migrate-parsetree (contributed by Adrien Guatto)
* GPR#42: Added 'Rep' (repeat operator) (contributed by jpathy)
1.99.3
* Update to work with 4.03 (4.02 still supported)
1.99.2
* First official release of sedlex
1.99.1
* Support for new Ast_mapper registration API, follow OCaml trunk after
the inclusion of the extension_point branch
1.99
* First version of sedlex. The history below refers to ulex, the ancestor
or sedlex implemented with Camlp4.
-------------------------------------------------------------------------------
1.1
* Generate (more) globally unique identifiers to avoid conflicts when open'ing another module
processed by ulex (issue reported by Gerd Stolpmann)
1.0
* Update to the new Camlp4 and to ocamlbuild (release for OCaml 3.10
only), by Nicolas Pouillard.
0.8
* Really make it work with OCaml 3.09.
* Support for Utf-16.
0.7 released May 24 2005
* Bug fixes
* Update to OCaml 3.09 (currently CVS). Still works with OCaml 3.08.
* MIT-like license (used to LGPL)
0.5 release Jul. 8 2004
* Document how to use a custom implementation for lex buffers
* Update to OCaml 3.08
0.4 released Jan. 10 2004
* Bug fix (accept 1114111 as valid Unicode code point)
* Add the rollback function
0.3 released Oct. 8 2003
* Bug fix
* Add a new predefined class for ISO identifiers
0.2 released Sep. 22 2003
* Changed the names of predefined regexp
* Fix max_code = 0x10ffff
* Lexers that changes encoding on the fly
* Documentation of the interface Ulexing
0.1 released Sep. 20 2003
* Initial release

128
CHANGES.md Normal file
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@ -0,0 +1,128 @@
# 3.7 (2025-10-06)
- Update to unicode 17.0.0
# 3.6 (2025-01-05)
- Fixed one of the ranges implementing
Implement Corrigendum #1: UTF-8 Shortest Form
for 4-bytes long characters (#171)
# 3.5 (2025-05-29)
- Implement Corrigendum #1: UTF-8 Shortest Form
- Add utf8 support for string literal (#127)
# 3.4 (2025-03-28)
- Make the library compatibility with ppxlib.0.36 (#166)
# 3.3 (2024-10-29)
- Add support for unicode `16.0.0` (#157)
- Add API for retrieving start and stop positions separately (#155)
# 3.2 (2023-06-28):
- Restore compatibility with OCaml 4.08
- Use `Sedlexing.{Utf8,Utf16}.from_gen` to initialize UTF8 (resp. UTF16) lexing buffers from
string.
- Delay raising Malformed until actually reading the malformed part of the imput. (#140)
- Count lines in all cases (#130). Previously, certain functions for initiating the
lexical buffer would disable lines counting.
- Check and fix invariants from Cset. The codebase was not respecting
invariants documented in the Cset module which could break code
relying on it. The code generated by sedlex.ppx could be affected.
- Do not rely on comments from unicode UCD files
- Add API to track position in bytes. Should be opt-in and backward compatible. (#146)
# 3.1:
- Fix directly nested sedlex matches (@smuenzel, PR #117, fixes: #12)
- Use explicit stdlib in generated code (@hhugo, PR #122, fixes: #115)
- Preserve location of lexbuf (@hhugo, PR #118, fixes: #19)
- Don't use gen to consume channels (@hhugo, PR #124, fixes: #45)
- New expect_test testsuite (@hhugo, PR #124)
- Properly recognize malformed truncated input (@hhugo, PR #124)
- Raise `Malformed` instead of `Invalid_arg` (@hhugo, PR #126, fixes: #91)
- Updated unicode support to `15.0.0`
# 3.0:
- Dropped `Stream` api which was removed in `4.14.0` ahead of the `5.0`
release.
2.6:
- Adapted to ppxlib `0.26`, thanks to @pitag-ha
2.5:
- Fix exponential compilation time, thanks to @mnxn for reporting in #97
and @fangyi-zhou for fixing in #106
- Update unicode support for `14.0.0`.
# 2.4
- Update `dune` support to `2.8`, add auto-generated `opam` files.
- Optimize generated code, thanks to @bobzhang
- Update unicode version to 13.0.0
# 2.3
- Switch to ppxlib
# 2.2
- Support for OCaml 4.08
# 2.1
- GPR#78: Auto-generate unicode data
# 2.0
- GPR#70: Switch to dune, opam v2
- GPR#60: Breaking change: switch from int codepoints to Uchar.t
codepoints
- GPR#59: Track lexing position
# 1.99.4
- GPR#47: Switch to ocaml-migrate-parsetree (contributed by Adrien Guatto)
- GPR#42: Added 'Rep' (repeat operator) (contributed by jpathy)
# 1.99.3
- Update to work with 4.03 (4.02 still supported)
# 1.99.2
- First official release of sedlex
# 1.99.1
- Support for new Ast_mapper registration API, follow OCaml trunk after
the inclusion of the extension_point branch
# 1.99
- First version of sedlex. The history below refers to ulex, the ancestor
or sedlex implemented with Camlp4.
# 1.1
- Generate (more) globally unique identifiers to avoid conflicts when open'ing another module
processed by ulex (issue reported by Gerd Stolpmann)
# 1.0
- Update to the new Camlp4 and to ocamlbuild (release for OCaml 3.10
only), by Nicolas Pouillard.
# 0.8
- Really make it work with OCaml 3.09.
- Support for Utf-16.
# 0.7 released May 24 2005
- Bug fixes
- Update to OCaml 3.09 (currently CVS). Still works with OCaml 3.08.
- MIT-like license (used to LGPL)
# 0.5 release Jul. 8 2004
- Document how to use a custom implementation for lex buffers
- Update to OCaml 3.08
# 0.4 released Jan. 10 2004
- Bug fix (accept 1114111 as valid Unicode code point)
- Add the rollback function-
# 0.3 released Oct. 8 2003
- Bug fix
- Add a new predefined class for ISO identifiers
# 0.2 released Sep. 22 2003
- Changed the names of predefined regexp
- Fix max_code = 0x10ffff
- Lexers that changes encoding on the fly
- Documentation of the interface Ulexing
# 0.1 released Sep. 20 2003
- Initial release

26
LICENSE
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@ -1,22 +1,6 @@
The MIT License (MIT)
it's proprietary. all rights reserved. if you use this code in a way i don't like i will personally
make your car explode into hammers
Copyright 2005, 2014 by Alain Frisch and LexiFi.
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.
Portions of this code are based on "sedlex", Copyright 2005, 2014 by Alain
Frisch and LexiFi, released under the terms of the MIT license which can be
found in <licenses/LICENSE.sedlex>

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@ -1,27 +0,0 @@
# The package sedlex is released under the terms of an MIT-like license.
# See the attached LICENSE file.
# Copyright 2005, 2013 by Alain Frisch and LexiFi.
INSTALL_ARGS := $(if $(PREFIX),--prefix $(PREFIX),)
.PHONY: build install uninstall clean doc test all
build:
dune build @install
install:
dune install $(INSTALL_ARGS)
uninstall:
dune uninstall $(INSTALL_ARGS)
clean:
dune clean
doc:
dune build @doc
test:
dune build @runtest
all: build test doc

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@ -1,6 +1,6 @@
# sedlex
[![Build Status](https://travis-ci.com/ocaml-community/sedlex.svg?branch=master)](https://travis-ci.com/ocaml-community/sedlex)
[![build](https://github.com/ocaml-community/sedlex/actions/workflows/build.yml/badge.svg)](https://github.com/ocaml-community/sedlex/actions/workflows/build.yml)
Unicode-friendly lexer generator for OCaml.
@ -79,12 +79,25 @@ where:
Unlike ocamllex, lexers work on stream of Unicode codepoints, not
bytes.
Like ocamllex, sedlex uses **longest match** with **first rule priority**:
- The lexer always tries to match the longest possible prefix of the
input. It does so by continuing to read characters as long as some
rule can still match a longer string, while remembering the last
position at which a rule did match.
- When two or more rules match the same longest prefix (a tie), the
rule that appears first in the `match%sedlex` definition wins. For
example, given the rules `| "if" -> ...` and `| Plus ('a'..'z') -> ...`,
the input `"if"` is matched by the first rule because it is listed
first, even though the second rule also accepts `"if"`.
The actions can call functions from the Sedlexing module to extract
(parts of) the matched lexeme, in the desired encoding.
Regular expressions are syntactically OCaml patterns:
- `"...."` (string constant): recognize the specified string
- `"...."` (string constant): recognize the specified string.
- `'....'` (character constant) : recognize the specified character
- `i` (integer constant) : recognize the specified codepoint
- `'...' .. '...'`: character range
@ -103,6 +116,9 @@ Regular expressions are syntactically OCaml patterns:
and recognize the set of items in `R1` but not in `R2` ("subtract")
- `Intersect (R1,R2)` : assume that `R` is a single-character length regexp (see
below) and recognize the set of items which are in both `R1` and `R2`
- `Utf8 R` : string literals inside R are assumed to be utf-8 encoded.
- `Latin1 R` : string literals inside R are assumed to be latin1 encoded.
- `Ascii R` : string literals inside R are assumed to be ascii encoded.
- `lid` (lowercase identifier) : reference a named regexp (see below)
A single-character length regexp is a regexp which does not contain (after
@ -112,8 +128,9 @@ with a length different from one.
Note:
- The OCaml source is assumed to be encoded in Latin1 (for string
and character literals).
- The OCaml source is assumed to be encoded in UTF-8.
- Strings and chars litterals will be interpreted in ASCII unless otherwise
specified by the `Latin1`,`Ascii` and `Utf8` constructors in patterns.
It is possible to define named regular expressions with the following
@ -199,13 +216,13 @@ Installation (after "make"):
Compilation of OCaml files with lexer specifications:
```
ocamlfind ocamlc -c -package sedlex my_file.ml
ocamlfind ocamlc -c -package sedlex.ppx my_file.ml
```
When linking, you must also include the sedlex package:
```
ocamlfind ocamlc -o my_prog -linkpkg -package sedlex my_file.cmo
ocamlfind ocamlc -o my_prog -linkpkg -package sedlex.ppx my_file.cmo
```
@ -221,6 +238,14 @@ source file through -ppx rewriter ppx_sedlex. Moreover, you need to
link the application with the runtime support library for sedlex
(sedlexing.cma / sedlexing.cmxa).
### With utop
Once sedlex is installed as per above, simply type
```
#require "sedlex.ppx";;
```
## Examples
The `examples/` subdirectory contains several samples of sedlex in use.
@ -233,3 +258,6 @@ The `examples/` subdirectory contains several samples of sedlex in use.
- improvements to the build system
- switched parts of ppx_sedlex to using concrete syntax (with ppx_metaquot)
- Steffen Smolka: port to dune
- Romain Beauxis:
- Implementation of the unicode table extractors
- General maintenance

View File

@ -1,2 +1,29 @@
(lang dune 1.0)
(name sedlex)
(lang dune 3.20)
(version "3.7")
(name noslop-sedlex)
(source (uri "https://git.lain.faith/noslop/noslop-sedlex.git"))
(license "LicenseRef-Proprietary")
(authors "xenia <xenia@awoo.systems>")
(maintainers "xenia <xenia@awoo.systems")
(homepage "https://git.lain.faith/noslop/noslop-sedlex.git")
(maintenance_intent "(latest)")
(documentation "https://git.lain.faith/noslop/noslop-sedlex/wiki")
(generate_opam_files true)
(executables_implicit_empty_intf true)
(package
(name noslop-sedlex)
(synopsis "An OCaml lexer generator for Unicode")
(description "sedlex is a lexer generator for OCaml. It is similar to ocamllex, but supports
Unicode. Unlike ocamllex, sedlex allows lexer specifications within regular
OCaml source files. Lexing specific constructs are provided via a ppx syntax
extension.")
(depends
(ocaml (>= 4.08))
dune
(ppxlib (>= 0.26.0))
gen
(ppx_expect :with-test)))

View File

@ -1,13 +1,19 @@
let ucase = [%sedlex.regexp? 'A'..'Z']
let lcase = [%sedlex.regexp? 'a'..'z']
let ucase = [%sedlex.regexp? 'A' .. 'Z']
let lcase = [%sedlex.regexp? 'a' .. 'z']
let rec token buf =
match%sedlex buf with
| lcase -> print_char 'L';token buf
| Compl (ucase | lcase) -> print_char '?'; token buf
| ucase -> print_char 'U';token buf
| eof -> print_endline "."
| _ -> assert false
| lcase ->
print_char 'L';
token buf
| Compl (ucase | lcase) ->
print_char '?';
token buf
| ucase ->
print_char 'U';
token buf
| eof -> print_endline "."
| _ -> assert false
let () =
let lexbuf = Sedlexing.Latin1.from_string "Abc::DefG" in

View File

@ -1,47 +1,46 @@
(executables
(names tokenizer regressions complement subtraction repeat performance)
(libraries sedlex sedlex_ppx)
(libraries noslop-sedlex noslop-sedlex.ppx)
(preprocess
(pps sedlex.ppx))
(flags :standard -w +39))
(pps noslop-sedlex.ppx)))
(alias
(name runtest)
(rule
(alias runtest)
(deps
(:< tokenizer.exe))
(action
(run %{<})))
(alias
(name runtest)
(rule
(alias runtest)
(deps
(:< regressions.exe))
(action
(run %{<})))
(alias
(name runtest)
(rule
(alias runtest)
(deps
(:< complement.exe))
(action
(run %{<})))
(alias
(name runtest)
(rule
(alias runtest)
(deps
(:< subtraction.exe))
(action
(run %{<})))
(alias
(name runtest)
(rule
(alias runtest)
(deps
(:< repeat.exe))
(action
(run %{<})))
(alias
(name runtest)
(rule
(alias runtest)
(deps
(:< performance.exe))
(action

View File

@ -1,16 +1,16 @@
let rec token buf =
match%sedlex buf with
| any -> token buf
| eof -> ()
| _ -> assert false
match%sedlex buf with any -> token buf | eof -> () | _ -> assert false
let time f x =
let rec acc f x = function
| 0 -> f x
| n -> f x|>ignore; acc f x (n-1) in
let t = Sys.time() in
| n ->
f x |> ignore;
acc f x (n - 1)
in
let t = Sys.time () in
let fx = acc f x 10 in
Printf.printf "Execution time: %fs\n" (Sys.time() -. t);
Printf.printf "Execution time: %fs\n" (Sys.time () -. t);
fx
let () =
@ -19,4 +19,5 @@ let () =
let lexbuf = Sedlexing.Latin1.from_string long_str in
(* let () = Sedlexing.set_curr_p lexbuf Lexing.dummy_pos in *)
token lexbuf
in time token_from long_str
in
time token_from long_str

View File

@ -1,64 +1,58 @@
(* This test that unicode_old.ml is a strict sub-set of
* new unicode.ml. *)
(* This test that unicode_old.ml is a strict sub-set of new unicode.ml. *)
let test_versions = ("6.3.0","12.1.0")
module CSet = Sedlex_ppx.Sedlex_cset
module Unicode = Sedlex_ppx.Unicode
let regressions = [
("lo",[(0x13a0,0x13f4);
(0x10d0,0x10fa);
(0x10fd,0x10ff);
(0x1885,0x1886)]);
("mc",[(0x19b0,0x19c0);
(0x19c8,0x19c9);
(0x1baa,0x1baa);
(0x1bac,0x1bad);
(0x1cf2,0x1cf3);
(0xa9bd,0xa9c0)]);
("po",[(0x166d,0x166e)]);
("other_alphabetic", [(0x19b0,0x19c0);
(0x19c8,0x19c9);
(0x1cf2,0x1cf3)])
]
let test_versions = ("16.0.0", "17.0.0")
let interval s e =
Array.to_list
(Array.init (e-s) (fun pos -> s + pos))
let regressions =
[ (* Example *)
(* ("lt", CSet.union (CSet.singleton 0x1c5) (CSet.singleton (0x0001))) *) ]
exception Found
let test_exception name x =
try
let l = List.assoc name regressions in
List.iter (fun (s,e) ->
if s<=x && x<=e then raise Found) l
with Not_found -> ()
let compare name old_l new_l =
let code_points = List.fold_left (fun res (s,e) ->
res@(interval s e)) [] old_l
let compare name (old_ : CSet.t) (new_ : CSet.t) =
let diff = CSet.difference old_ new_ in
let regressions =
match List.assoc name regressions with
| exception Not_found -> CSet.empty
| x -> x
in
let test x =
try
test_exception name x;
List.iter (fun (s,e) ->
if s<=x && x<=e then raise Found) new_l;
false
with Found -> true
in
List.iter (fun x ->
if not (test x) then
Printf.printf "Code point 0x%x missing in %s!\n" x name)
code_points
let regressions_intersect = CSet.intersection regressions old_ in
let regressions = CSet.difference regressions regressions_intersect in
let regressions_useless = CSet.difference regressions new_ in
let diff = CSet.difference diff regressions in
Seq.iter
(fun x ->
Printf.printf
"Invalid regression for 0x%x in %s: already present in old set.\n" x
name)
(CSet.to_seq regressions_intersect);
Seq.iter
(fun x ->
Printf.printf "Invalid regression for 0x%x in %s: absent in new set.\n" x
name)
(CSet.to_seq regressions_useless);
Seq.iter
(fun x -> Printf.printf "Code point 0x%x missing in %s!\n" x name)
(CSet.to_seq diff)
let test new_l (name, old_l) =
(* Cn is for unassigned code points, which are allowed to be
* used in future version. *)
if name <> "cn" then
compare name old_l (List.assoc name new_l)
let old_l = Sedlex_utils.Cset.to_list old_l in
if name <> "cn" then (
let old_l =
List.fold_left
(fun acc (a, b) -> CSet.union acc (CSet.interval a b))
CSet.empty old_l
in
compare name old_l (List.assoc name new_l))
let () =
if (Unicode_old.version,Sedlex_ppx.Unicode.version) <> test_versions then
failwith (Printf.sprintf "Test written for versions: %s => %s\n%!" Unicode_old.version Sedlex_ppx.Unicode.version);
Printf.printf "Testing Unicode regression: %s => %s\n%!" Unicode_old.version Sedlex_ppx.Unicode.version;
List.iter (test Sedlex_ppx.Unicode.Categories.list) Unicode_old.Categories.list;
List.iter (test Sedlex_ppx.Unicode.Properties.list) Unicode_old.Properties.list
if (Unicode_old.version, Unicode.version) <> test_versions then
failwith
(Printf.sprintf "Test written for versions: %s => %s\n%!"
Unicode_old.version Unicode.version);
Printf.printf "Testing Unicode regression: %s => %s\n%!" Unicode_old.version
Unicode.version;
List.iter (test Unicode.Categories.list) Unicode_old.Categories.list;
List.iter (test Unicode.Properties.list) Unicode_old.Properties.list

View File

@ -1,15 +1,26 @@
let rec token buf =
match%sedlex buf with
| white_space -> print_endline "\tWhitespace"; token buf
| 'a', Rep(white_space, 1) -> print_endline "a\n\tWhitespace"; token buf
| Rep("bc", 2) -> print_endline "bcbc"; token buf
| Rep("d", 1 .. 1) -> print_endline "d"; token buf
| Rep("ef", 1 .. 3) -> Printf.printf "%s\n" (Sedlexing.Utf8.lexeme buf); token buf
| white_space ->
print_endline "\tWhitespace";
token buf
| 'a', Rep (white_space, 1) ->
print_endline "a\n\tWhitespace";
token buf
| Rep ("bc", 2) ->
print_endline "bcbc";
token buf
| Rep ("d", 1 .. 1) ->
print_endline "d";
token buf
| Rep ("ef", 1 .. 3) ->
Printf.printf "%s\n" (Sedlexing.Utf8.lexeme buf);
token buf
| eof -> print_endline "\tEnd"
| any -> print_endline "Other"; token buf
| any ->
print_endline "Other";
token buf
| _ -> failwith "Internal failure: Reached impossible place"
let () =
let lexbuf = Sedlexing.Utf8.from_string "a bcbc d ef efef efefef" in
token lexbuf

View File

@ -1,14 +1,23 @@
let rec token buf =
match%sedlex buf with
| white_space -> print_endline "\tWhitespace"; token buf
| Sub (Chars "ab","b") -> print_endline "a"; token buf
| (Chars "ab"|"c") -> print_endline "abc"; token buf
| Intersect ("d", Chars "abd") -> print_endline "d"; token buf
| white_space ->
print_endline "\tWhitespace";
token buf
| Sub (Chars "ab", "b") ->
print_endline "a";
token buf
| Chars "ab" | "c" ->
print_endline "abc";
token buf
| Intersect ("d", Chars "abd") ->
print_endline "d";
token buf
| eof -> print_endline "\tEnd"
| any -> print_endline "Other"; token buf
| any ->
print_endline "Other";
token buf
| _ -> failwith "Internal failure: Reached impossible place"
let () =
let lexbuf = Sedlexing.Utf8.from_string "a b c d e" in
token lexbuf

View File

@ -1,16 +1,22 @@
let digit = [%sedlex.regexp? '0'..'9']
let digit = [%sedlex.regexp? '0' .. '9']
let number = [%sedlex.regexp? Plus digit]
let rec token buf =
let letter = [%sedlex.regexp? 'a'..'z'|'A'..'Z'] in
let letter = [%sedlex.regexp? 'a' .. 'z' | 'A' .. 'Z'] in
match%sedlex buf with
| number -> Printf.printf "Number %s\n" (Sedlexing.Latin1.lexeme buf); token buf
| letter, Star ('A'..'Z' | 'a'..'z' | digit) -> Printf.printf "Ident %s\n" (Sedlexing.Latin1.lexeme buf); token buf
| Plus xml_blank -> token buf
| Plus (Chars "+*-/") -> Printf.printf "Op %s\n" (Sedlexing.Latin1.lexeme buf); token buf
| 128 .. 255 -> print_endline "Non ASCII"
| eof -> print_endline "EOF"
| _ -> failwith "Unexpected character"
| number ->
Printf.printf "Number %s\n" (Sedlexing.Latin1.lexeme buf);
token buf
| letter, Star ('A' .. 'Z' | 'a' .. 'z' | digit) ->
Printf.printf "Ident %s\n" (Sedlexing.Latin1.lexeme buf);
token buf
| Plus xml_blank -> token buf
| Plus (Chars "+*-/") ->
Printf.printf "Op %s\n" (Sedlexing.Latin1.lexeme buf);
token buf
| 128 .. 255 -> print_endline "Non ASCII"
| eof -> print_endline "EOF"
| _ -> failwith "Unexpected character"
let () =
let lexbuf = Sedlexing.Latin1.from_string "foobar A123Bfoo ++123Xbar/foo" in

File diff suppressed because it is too large Load Diff

45
flake.lock Normal file
View File

@ -0,0 +1,45 @@
{
"nodes": {
"dragnpkgs": {
"inputs": {
"nixpkgs": "nixpkgs"
},
"locked": {
"lastModified": 1783018382,
"narHash": "sha256-Pw7GM1fh2AnQNCitswXTHPfsswiDnEjXPN17Ge8egz4=",
"ref": "nixos-26.05",
"rev": "085892ad486428b8e51b549539a5430f0c2da1a8",
"revCount": 247,
"type": "git",
"url": "https://git.lain.faith/haskal/dragnpkgs.git"
},
"original": {
"id": "dragnpkgs",
"type": "indirect"
}
},
"nixpkgs": {
"locked": {
"lastModified": 1782847225,
"narHash": "sha256-JC9PjqKYG9ve5U8aDOLQipp3+KLANBHUvGdLZlxzdKI=",
"owner": "NixOS",
"repo": "nixpkgs",
"rev": "95ca1e203c0750115fd4a6f17d5a245dfe6b1edd",
"type": "github"
},
"original": {
"owner": "NixOS",
"ref": "nixos-26.05",
"repo": "nixpkgs",
"type": "github"
}
},
"root": {
"inputs": {
"dragnpkgs": "dragnpkgs"
}
}
},
"root": "root",
"version": 7
}

23
flake.nix Normal file
View File

@ -0,0 +1,23 @@
{
description = "Flake for noslop-sedlex";
outputs = { self, dragnpkgs } @ inputs: dragnpkgs.lib.mkFlake {
packages.default = { ocamlPackages }: ocamlPackages.callPackage ./package.nix {};
devShells.default = { ocamlPackages, stdenv, mkShell }: mkShell {
packages = with ocamlPackages; [
ocaml
dune_3
utop
odoc
alcotest
ocamlformat
] ++ (self.packages.${stdenv.hostPlatform.system}.default.propagatedBuildInputs)
++ (self.packages.${stdenv.hostPlatform.system}.default.nativeBuildInputs);
shellHook = ''
export OCAMLRUNPARAM=b
'';
};
};
}

22
licenses/LICENSE.sedlex Normal file
View File

@ -0,0 +1,22 @@
The MIT License (MIT)
Copyright 2005, 2014 by Alain Frisch and LexiFi.
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.

38
noslop-sedlex.opam Normal file
View File

@ -0,0 +1,38 @@
# This file is generated by dune, edit dune-project instead
opam-version: "2.0"
version: "3.7"
synopsis: "An OCaml lexer generator for Unicode"
description: """
sedlex is a lexer generator for OCaml. It is similar to ocamllex, but supports
Unicode. Unlike ocamllex, sedlex allows lexer specifications within regular
OCaml source files. Lexing specific constructs are provided via a ppx syntax
extension."""
maintainer: ["xenia <xenia@awoo.systems"]
authors: ["xenia <xenia@awoo.systems>"]
license: "LicenseRef-Proprietary"
homepage: "https://git.lain.faith/noslop/noslop-sedlex.git"
doc: "https://git.lain.faith/noslop/noslop-sedlex/wiki"
depends: [
"ocaml" {>= "4.08"}
"dune" {>= "3.20"}
"ppxlib" {>= "0.26.0"}
"gen"
"ppx_expect" {with-test}
"odoc" {with-doc}
]
build: [
["dune" "subst"] {dev}
[
"dune"
"build"
"-p"
name
"-j"
jobs
"@install"
"@runtest" {with-test}
"@doc" {with-doc}
]
]
dev-repo: "https://git.lain.faith/noslop/noslop-sedlex.git"
x-maintenance-intent: ["(latest)"]

52
package.nix Normal file
View File

@ -0,0 +1,52 @@
{
lib,
fetchurl,
buildDunePackage,
gen,
ppxlib,
ppx_expect,
}: let
unicodeVersion = "17.0.0";
baseUrl = "https://www.unicode.org/Public/${unicodeVersion}";
DerivedCoreProperties = fetchurl {
url = "${baseUrl}/ucd/DerivedCoreProperties.txt";
hash = "sha256-JMf+0RlcSC+q79XB5+uCHF7h+23gfs26pktWqZ2iLAg=";
};
DerivedGeneralCategory = fetchurl {
url = "${baseUrl}/ucd/extracted/DerivedGeneralCategory.txt";
hash = "sha256-1i5bq3DKdPCZND9xIk+gUcsf3WGhq0XASIxEz8C2EC4=";
};
PropList = fetchurl {
url = "${baseUrl}/ucd/PropList.txt";
hash = "sha256-Ew3N3Kra8HEAi9/OHndD4E/fvJEIhvAX2fmskx2MZN0=";
};
in
buildDunePackage (finalAttrs: {
pname = "noslop-sedlex";
version = "3.7+DEV";
minimalOCamlVersion = "5.3";
src = ./.;
propagatedBuildInputs = [
gen
ppxlib
];
preBuild = ''
rm src/generator/data/dune
ln -s ${DerivedCoreProperties} src/generator/data/DerivedCoreProperties.txt
ln -s ${DerivedGeneralCategory} src/generator/data/DerivedGeneralCategory.txt
ln -s ${PropList} src/generator/data/PropList.txt
'';
checkInputs = [
ppx_expect
];
doCheck = true;
dontStrip = true;
})

View File

@ -1,34 +0,0 @@
opam-version: "2.0"
name: "sedlex"
synopsis: "An OCaml lexer generator for Unicode"
description: "
sedlex is a lexer generator for OCaml. It is similar to ocamllex, but supports
Unicode. Unlike ocamllex, sedlex allows lexer specifications within regular
OCaml source files. Lexing specific constructs are provided via a ppx syntax
extension.
"
version: "2.1"
license: "MIT"
doc: "https://ocaml-community.github.io/sedlex/index.html"
maintainer: "Alain Frisch <alain.frisch@lexifi.com>"
authors: [
"Alain Frisch <alain.frisch@lexifi.com>"
"https://github.com/ocaml-community/sedlex/graphs/contributors"
]
homepage: "https://github.com/ocaml-community/sedlex"
dev-repo: "git+https://github.com/ocaml-community/sedlex.git"
bug-reports: "https://github.com/ocaml-community/sedlex/issues"
build: [
["dune" "subst"] {pinned}
["dune" "build" "-p" name "-j" jobs]
["dune" "runtest" "-p" name "-j" jobs] {with-test}
["dune" "build" "@doc" "-p" name "-j" jobs] {with-doc}
]
depends: [
"ocaml" {build & >= "4.02.3"}
"dune" {build & >= "1.0"}
"ppx_tools_versioned"
"ocaml-migrate-parsetree"
"gen"
"uchar"
]

78
src/common/cset.ml Normal file
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@ -0,0 +1,78 @@
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(* Copyright 2026 by xenia <xenia@awoo.systems> *)
(* Character sets are represented as lists of intervals. The
intervals must be non-overlapping and not collapsable, and the list
must be ordered in increasing order. *)
type t = (int * int) list
let rec range_to_seq a b next () =
if a = b then Seq.Cons (a, next) else Seq.Cons (a, range_to_seq (a + 1) b next)
let rec to_seq x () =
match x with [] -> Seq.Nil | (a, b) :: xs -> range_to_seq a b (to_seq xs) ()
let check_invariant l =
let rec loop prev = function
| [] -> ()
| (a, b) :: xs ->
if a < prev then
failwith
(Printf.sprintf
"Sedlex_cset.of_list: not in increasing order or overlapping. \
[_-%d]-[%d-%d]"
prev a b);
if a = prev then
failwith
(Printf.sprintf
"Sedlex_cset.of_list: adjacent range. [_-%d]-[%d-%d]" prev a b);
if a > b then
failwith
(Printf.sprintf "Sedlex_cset.of_list: malformed range. [%d-%d]" a b);
loop b xs
in
loop (-1) l
let of_list l =
check_invariant l;
l
let to_list l = l
let max_code = 0x10ffff (* must be < max_int *)
let min_code = -1
let empty = []
let singleton i = [(i, i)]
let is_empty = function [] -> true | _ -> false
let interval i j = if i <= j then [(i, j)] else [(j, i)]
let eof = singleton (-1)
let any = interval 0 max_code
let rec union c1 c2 =
match (c1, c2) with
| [], _ -> c2
| _, [] -> c1
| ((i1, j1) as s1) :: r1, (i2, j2) :: r2 ->
if i1 <= i2 then
if j1 + 1 < i2 then s1 :: union r1 c2
else if j1 < j2 then union r1 ((i1, j2) :: r2)
else union c1 r2
else union c2 c1
let union_list : t list -> t = function
| [] -> empty
| [x] -> x
| l ->
List.concat l
|> List.sort (fun a b -> compare b a)
|> List.fold_left (fun (acc : t) (x : int * int) -> union [x] acc) empty
let complement c =
let rec aux start = function
| [] -> if start <= max_code then [(start, max_code)] else []
| (i, j) :: l -> (start, i - 1) :: aux (succ j) l
in
match c with (-1, j) :: l -> aux (succ j) l | l -> aux (-1) l
let intersection c1 c2 = complement (union (complement c1) (complement c2))
let difference c1 c2 = complement (union (complement c1) c2)

25
src/common/cset.mli Normal file
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@ -0,0 +1,25 @@
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(* Copyright 2026 by xenia <xenia@awoo.systems> *)
(** Representation of sets of unicode code points. *)
(** Character sets are represented as lists of intervals. The intervals must be
non-overlapping and not collapsable, and the list must be ordered in
increasing order. *)
type t = private (int * int) list
val of_list : (int * int) list -> t
val to_list : t -> (int * int) list
val min_code : int
val max_code : int
val empty : t
val any : t
val union : t -> t -> t
val union_list : t list -> t
val difference : t -> t -> t
val intersection : t -> t -> t
val is_empty : t -> bool
val eof : t
val singleton : int -> t
val interval : int -> int -> t
val to_seq : t -> int Seq.t

3
src/common/dune Normal file
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@ -0,0 +1,3 @@
(library
(name sedlex_utils)
(public_name noslop-sedlex.utils))

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@ -1 +1 @@
https://www.unicode.org/Public/12.1.0
https://www.unicode.org/Public/17.0.0

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@ -1,14 +1,35 @@
(rule
(targets DerivedCoreProperties.txt)
(deps base_url)
(action (run curl -L -s %{read:base_url}/ucd/DerivedCoreProperties.txt -o DerivedCoreProperties.txt)))
(target DerivedCoreProperties.txt)
(deps base_url)
(action
(run
curl
-L
-s
%{read:base_url}/ucd/DerivedCoreProperties.txt
-o
%{target})))
(rule
(targets DerivedGeneralCategory.txt)
(deps base_url)
(action (run curl -L -s %{read:base_url}/ucd/extracted/DerivedGeneralCategory.txt -o DerivedGeneralCategory.txt)))
(target DerivedGeneralCategory.txt)
(deps base_url)
(action
(run
curl
-L
-s
%{read:base_url}/ucd/extracted/DerivedGeneralCategory.txt
-o
%{target})))
(rule
(targets PropList.txt)
(deps base_url)
(action (run curl -L -s %{read:base_url}/ucd/PropList.txt -o PropList.txt)))
(target PropList.txt)
(deps base_url)
(action
(run curl -L -s %{read:base_url}/ucd/PropList.txt -o %{target})))
(rule
(target UnicodeData.txt)
(deps base_url)
(action
(run curl -L -s %{read:base_url}/ucd/UnicodeData.txt -o %{target})))

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@ -1,9 +1,3 @@
(executable
(name gen_unicode)
(libraries str))
(rule
(targets gen_unicode.ml)
(deps gen_unicode.ml.inc)
(action (run cp gen_unicode.ml.inc gen_unicode.ml)))
(libraries str noslop-sedlex.utils))

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@ -0,0 +1,209 @@
(* This file generates unicode data from
* the files exported at https://www.unicode.org/Public/<unicode version>
* and stored at src/generator/data. *)
open Sedlex_utils
module SSet = Set.Make (String)
let target = Sys.argv.(1)
let categories = Hashtbl.create 1024
let labels = Hashtbl.create 1024
(* Drop comments and split semi-column separated fields *)
let parse_line l =
let l =
match String.index_opt l '#' with None -> l | Some i -> String.sub l 0 i
in
String.split_on_char ';' l |> List.map String.trim
let parse_code s =
try int_of_string (Printf.sprintf "0x%s" s)
with _ -> failwith (Printf.sprintf "invalid code %s" s)
let parse_category x = String.lowercase_ascii (String.trim x)
let parse_prop x = String.lowercase_ascii (String.trim x)
let parse_interval s =
match String.split_on_char '.' (String.trim s) with
| [] -> assert false
| [x] ->
let x = parse_code x in
Cset.singleton x
| [x; ""; y] ->
let x = parse_code x and y = parse_code y in
Cset.interval x y
| _ -> failwith (Printf.sprintf "invalid interval %s" s)
let print_elements ch hashtbl cats =
let cats_set = SSet.of_list cats in
let all_keys = SSet.of_seq (Hashtbl.to_seq_keys hashtbl) in
let missing = SSet.diff cats_set all_keys in
let ignoring = SSet.diff all_keys cats_set in
let len = List.length cats in
List.iter
(fun c ->
let entries =
List.map
(fun (b, e) -> Printf.sprintf "0x%x, 0x%x" b e)
(Cset.union_list (Hashtbl.find_all hashtbl c) :> (int * int) list)
in
Printf.fprintf ch " let %s = Sedlex_cset.of_list\n [" c;
List.iteri
(fun i x ->
if i > 0 then
if i mod 5 = 0 then Printf.fprintf ch ";\n "
else Printf.fprintf ch "; ";
Printf.fprintf ch "%s" x)
entries;
Printf.fprintf ch "]\n\n")
cats;
Printf.fprintf ch " let list = [\n";
List.iteri
(fun pos c ->
Printf.fprintf ch " (%S, %s)%s\n" c c
(if pos == len - 1 then "" else ";"))
cats;
Printf.fprintf ch " ]\n\n";
if not (SSet.is_empty ignoring) then (
Printf.fprintf ch "(* ignoring:\n";
SSet.iter (fun s -> Printf.fprintf ch " - %s\n" s) ignoring;
Printf.fprintf ch "*)\n");
if not (SSet.is_empty missing) then (
Printf.fprintf ch "(* missing:\n";
SSet.iter (fun s -> Printf.fprintf ch " - %s\n" s) missing;
Printf.fprintf ch "*)\n")
let files =
[
( "PropList.txt",
fun s ->
match parse_line s with
| [""] -> ()
| [interval; prop] ->
let interval = parse_interval interval in
let prop = parse_prop prop in
Hashtbl.add labels prop interval
| _ -> assert false );
( "DerivedCoreProperties.txt",
fun s ->
match parse_line s with
| [""] -> ()
| [interval; prop] ->
let interval = parse_interval interval in
let prop = parse_prop prop in
Hashtbl.add labels prop interval
| [_interval; "InCB"; ("Extend" | "Consonant" | "Linker")] ->
(* TODO: support non-binary properties? *)
()
| _ -> assert false );
( "DerivedGeneralCategory.txt",
fun s ->
match parse_line s with
| [""] -> ()
| [interval; cat] ->
let interval = parse_interval interval in
let cat = parse_category cat in
Hashtbl.add categories cat interval
| _ -> assert false );
( "UnicodeData.txt",
fun s ->
match parse_line s with
| [""] -> ()
| interval :: _ :: cat :: _ ->
let interval = parse_interval interval in
let cat = parse_category cat in
Hashtbl.add categories cat interval
| _ -> assert false );
]
let read_version fname =
let version_rex =
Str.regexp "^# PropList-\\([0-9]+\\.[0-9]+\\.[0-9]+\\)\\.txt"
in
let ch = open_in_bin fname in
let s = input_line ch in
close_in ch;
ignore (Str.string_match version_rex s 0);
Str.matched_group 1 s
let exported_categories =
[
"cc";
"cf";
"cn";
"co";
"cs";
"ll";
"lm";
"lo";
"lt";
"lu";
"mc";
"me";
"mn";
"nd";
"nl";
"no";
"pc";
"pd";
"pe";
"pf";
"pi";
"po";
"ps";
"sc";
"sk";
"sm";
"so";
"zl";
"zp";
"zs";
]
let exported_properties =
[
"alphabetic";
"ascii_hex_digit";
"hex_digit";
"id_continue";
"id_start";
"lowercase";
"math";
"other_alphabetic";
"other_lowercase";
"other_math";
"other_uppercase";
"uppercase";
"white_space";
"xid_continue";
"xid_start";
]
let () =
let base_dir =
Filename.concat (Filename.dirname Sys.executable_name) "data"
in
let version = read_version (Filename.concat base_dir "PropList.txt") in
List.iter
(fun (fname, fn) ->
let ch = open_in_bin (Filename.concat base_dir fname) in
try
while true do
let ret = input_line ch in
fn ret
done
with End_of_file -> close_in ch)
files;
let ch = open_out_bin target in
Printf.fprintf ch {|[@@@ocamlformat "disable"]|};
Printf.fprintf ch "\n\n";
Printf.fprintf ch
"(* This file was automatically generated, do not edit. *)\n";
Printf.fprintf ch "(* Edit gen_unicode.ml.inc instead. *)\n\n";
Printf.fprintf ch "\n\nlet version = %S\n\n" version;
Printf.fprintf ch "module Categories = struct\n\n";
print_elements ch categories exported_categories;
Printf.fprintf ch "end\n\n";
Printf.fprintf ch "module Properties = struct\n\n";
print_elements ch labels exported_properties;
Printf.fprintf ch "end\n";
close_out ch

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@ -1,145 +0,0 @@
(* This file generates unicode data from
* the files exported at https://www.unicode.org/Public/<unicode version>
* and stored at src/generator/data. *)
let target = Sys.argv.(1)
let categories =
Hashtbl.create 1024
let labels =
Hashtbl.create 1024
(* Categories and Properties that we're keeping. *)
let keepers =
["cc"; "cf"; "cn"; "co"; "cs"; "ll"; "lm"; "lo"; "lt"; "lu"; "mc"; "me";
"mn"; "nd"; "nl"; "no"; "pc"; "pd"; "pe"; "pf"; "pi"; "po"; "ps"; "sc";
"sk"; "sm"; "so"; "zl"; "zp"; "zs"; "alphabetic"; "ascii_hex_digit";
"hex_digit"; "id_continue"; "id_start"; "lowercase"; "math";
"other_alphabetic"; "other_lowercase"; "other_math"; "other_uppercase";
"uppercase"; "white_space"; "xid_continue"; "xid_start"]
let prop_interval_rex =
Str.regexp "^\\([0-9a-fA-F]+\\)\\.\\.\\([0-9a-fA-F]+\\)[ ]*;[ ]+\\([a-zA-Z_]+\\)[ ]+#[ ]+\\([a-zA-Z][a-zA-Z&]\\)"
let prop_single_rex =
Str.regexp "^\\([0-9a-fA-F]+\\)[ ]*;[ ]+\\([a-zA-Z_]+\\)[ ]+#[ ]+\\([a-zA-Z][a-zA-Z&]\\)"
let derived_interval_rex =
Str.regexp "^\\([0-9a-fA-F]+\\)\\.\\.\\([0-9a-fA-F]+\\)[ ]*;[ ]+\\([a-zA-Z_]+\\)"
let derived_single_rex =
Str.regexp "^\\([0-9a-fA-F]+\\)[ ]*;[ ]+\\([a-zA-Z_]+\\)"
let add_entry hashtbl (b,e) name =
let mk s =
int_of_string (Printf.sprintf "0x%s" s)
in
let interval = (mk b, mk e) in
let label = String.lowercase_ascii name in
if List.mem label keepers then
Hashtbl.add hashtbl label interval
let match_interval s =
if (Str.string_match prop_interval_rex s 0) then
let interval = Str.matched_group 1 s, Str.matched_group 2 s in
add_entry labels interval (Str.matched_group 3 s);
add_entry categories interval (Str.matched_group 4 s)
let match_single s =
if (Str.string_match prop_single_rex s 0) then
let interval = Str.matched_group 1 s, Str.matched_group 1 s in
add_entry labels interval (Str.matched_group 2 s);
add_entry categories interval (Str.matched_group 3 s)
let match_derived_interval s =
if (Str.string_match derived_interval_rex s 0) then
let interval = Str.matched_group 1 s, Str.matched_group 2 s in
add_entry categories interval (Str.matched_group 3 s)
let match_derived_single s =
if (Str.string_match derived_single_rex s 0) then
let interval = Str.matched_group 1 s, Str.matched_group 1 s in
add_entry categories interval (Str.matched_group 2 s)
let split list n =
let rec aux acc rem =
match acc, rem with
| [], el::rem ->
aux [[el]] rem
| l::acc, el::rem when List.length l = n ->
aux ([el]::(List.rev l)::acc) rem
| l::acc, el::rem ->
aux ((el::l)::acc) rem
| _, [] -> List.rev acc
in
aux [] list
let print_elements ch hashtbl =
let cats =
List.sort_uniq Pervasives.compare
(Hashtbl.fold (fun cat _ l -> cat::l) hashtbl [])
in
let len = List.length cats in
List.iter (fun c ->
let entries =
List.map (fun (b,e) -> Printf.sprintf "0x%x, 0x%x" b e)
(List.sort_uniq Pervasives.compare
(Hashtbl.find_all hashtbl c))
in
let entries =
List.map (String.concat "; ") (split entries 5)
in
let entries =
String.concat ";\n " entries
in
Printf.fprintf ch " let %s =\n [%s]\n\n" c entries) cats;
Printf.fprintf ch " let list = [\n";
List.iteri (fun pos c ->
Printf.fprintf ch " (%S, %s)%s\n" c c (if pos == len - 1 then "" else ";"))
cats;
Printf.fprintf ch " ]\n\n"
let files = [
("PropList.txt", [match_interval; match_single]);
("DerivedCoreProperties.txt", [match_interval; match_single]);
("DerivedGeneralCategory.txt", [match_derived_interval; match_derived_single])
]
let read_version fname =
let version_rex =
Str.regexp "^# PropList-\\([0-9]+\\.[0-9]+\\.[0-9]+\\)\\.txt"
in
let ch = open_in_bin fname in
let s = input_line ch in
close_in ch;
ignore(Str.string_match version_rex s 0);
Str.matched_group 1 s
let () =
let base_dir =
Filename.concat (Filename.dirname Sys.executable_name) "data"
in
let version =
read_version (Filename.concat base_dir "PropList.txt")
in
List.iter (fun (fname, fns) ->
let ch =
open_in_bin
(Filename.concat base_dir fname)
in
try
while true do
let ret = input_line ch in
List.iter (fun fn -> fn ret) fns
done
with End_of_file -> close_in ch) files;
let ch = open_out_bin target in
Printf.fprintf ch "let version = %S\n\n" version;
Printf.fprintf ch "module Categories = struct\n\n";
print_elements ch categories;
Printf.fprintf ch "end\n\n";
Printf.fprintf ch "module Properties = struct\n\n";
print_elements ch labels;
Printf.fprintf ch "end\n";
close_out ch

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@ -1,6 +1,5 @@
(library
(name sedlex)
(public_name sedlex)
(public_name noslop-sedlex)
(wrapped false)
(libraries gen uchar)
(flags :standard -w +A-4-9 -safe-string))
(libraries gen))

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@ -1,260 +1,300 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(* Copyright 2026 by xenia <xenia@awoo.systems> *)
(** Runtime support for lexers generated by [sedlex]. *)
(** This module is roughly equivalent to the module Lexing from the
OCaml standard library, except that its lexbuffers handle Unicode
code points (OCaml type: {!Uchar.t} in the range [0..0x10ffff])
instead of bytes (OCaml type: [char]).
(** This module is roughly equivalent to the module Lexing from the OCaml
standard library, except that its lexbuffers handle Unicode code points
(OCaml type: {!Uchar.t} in the range [0..0x10ffff]) instead of bytes (OCaml
type: [char]).
It is possible to have sedlex-generated lexers work on a custom
implementation for lex buffers. To do this, define a module [L]
which implements the [start], [next], [mark] and [backtrack]
functions (See the Internal Interface section below for a
specification). They need not work on a type named [lexbuf]: you
can use the type name you want. Then, just do in your
sedlex-processed source, bind this module to the name [Sedlexing]
(for instance, with a local module definition: [let module Sedlexing
= L in ...].
implementation for lex buffers. To do this, define a module [L] which
implements the [start], [next], [mark] and [backtrack] functions (See the
Internal Interface section below for a specification). They need not work on
a type named [lexbuf]: you can use the type name you want. Then, just do in
your sedlex-processed source, bind this module to the name [Sedlexing] (for
instance, with a local module definition: [let module Sedlexing = L in ...].
Of course, you'll probably want to define functions like [lexeme] to
be used in the lexers semantic actions. *)
Of course, you'll probably want to define functions like [lexeme] to be used
in the lexers semantic actions. *)
(** The type of lexer buffers. A lexer buffer is the argument passed to the
scanning functions defined by the generated lexers. The lexer buffer holds
the internal information for the scanners, including the code points of the
token currently scanned, its position from the beginning of the input
stream, and the current position of the lexer. *)
type lexbuf
(** The type of lexer buffers. A lexer buffer is the argument passed
to the scanning functions defined by the generated lexers.
The lexer buffer holds the internal information for the
scanners, including the code points of the token currently scanned,
its position from the beginning of the input stream,
and the current position of the lexer. *)
(** Raised by some functions to signal that some code point is not compatible
with a specified encoding. *)
exception InvalidCodepoint of int
(** Raised by some functions to signal that some code point is not
compatible with a specified encoding. *)
(** Raised by functions in the [Utf8] and [Utf16] modules to report strings
which do not comply to the encoding. *)
exception MalFormed
(** Raised by functions in the [Utf8] and [Utf16] modules to report
strings which do not comply to the encoding. *)
(** {6 Creating generic lexbufs} *)
val create: (Uchar.t array -> int -> int -> int) -> lexbuf
(** Create a generic lexer buffer. When the lexer needs more
characters, it will call the given function, giving it an array of
Uchars [a], a position [pos] and a code point count [n]. The
function should put [n] code points or less in [a], starting at
position [pos], and return the number of characters provided. A
return value of 0 means end of input. *)
(** Create a generic lexer buffer. When the lexer needs more characters, it will
call the given function, giving it an array of Uchars [a], a position [pos]
and a code point count [n]. The function should put [n] code points or less
in [a], starting at position [pos], and return the number of characters
provided. A return value of 0 means end of input. [bytes_per_char] argument
is optional. If unspecified, byte positions are the same as code point
position. *)
val create :
?bytes_per_char:(Uchar.t -> int) ->
(Uchar.t array -> int -> int -> int) ->
lexbuf
val set_position: lexbuf -> Lexing.position -> unit
(** set the initial tracked input position for [lexbuf].
If set to [Lexing.dummy_pos], Sedlexing will not track position
information for you. *)
(** set the initial tracked input position, in code point, for [lexbuf]. If
unspecified, byte postion is set to the same value as code point position.
*)
val set_position :
?bytes_position:Lexing.position -> lexbuf -> Lexing.position -> unit
val set_filename: lexbuf -> string -> unit
(** [set_filename lexbuf file] sets the filename to [file] in
[lexbuf]. It also sets the {!Lexing.pos_fname} field in
returned {!Lexing.position} records. *)
(** [set_filename lexbuf file] sets the filename to [file] in [lexbuf]. It also
sets the {!Lexing.pos_fname} field in returned {!Lexing.position} records.
*)
val set_filename : lexbuf -> string -> unit
val from_gen: Uchar.t Gen.t -> lexbuf
(** Create a lexbuf from a stream of Unicode code points. *)
(** Create a lexbuf from a stream of Unicode code points. [bytes_per_char] is
optional. If unspecified, byte positions are the same as code point
positions. *)
val from_gen : ?bytes_per_char:(Uchar.t -> int) -> Uchar.t Gen.t -> lexbuf
val from_stream: Uchar.t Stream.t -> lexbuf
[@@ocaml.deprecated "Use [Sedlexing.from_gen] instead."]
(** Create a lexbuf from a stream of Unicode code points. *)
(** Create a lexbuf from an array of Unicode code points. [bytes_per_char] is
optional. If unspecified, byte positions are the same as code point
positions. *)
val from_int_array : ?bytes_per_char:(Uchar.t -> int) -> int array -> lexbuf
val from_int_array: int array -> lexbuf
(** Create a lexbuf from an array of Unicode code points. *)
val from_uchar_array: Uchar.t array -> lexbuf
(** Create a lexbuf from an array of Unicode code points. *)
(** Create a lexbuf from an array of Unicode code points. [bytes_per_char] is
optional. If unspecified, byte positions are the same as code point
positions. *)
val from_uchar_array :
?bytes_per_char:(Uchar.t -> int) -> Uchar.t array -> lexbuf
(** {6 Interface for lexers semantic actions} *)
(** The following functions can be called from the semantic actions of
lexer definitions. They give access to the character string matched
by the regular expression associated with the semantic action. *)
(** The following functions can be called from the semantic actions of lexer
definitions. They give access to the character string matched by the regular
expression associated with the semantic action. *)
val lexeme_start: lexbuf -> int
(** [Sedlexing.lexeme_start lexbuf] returns the offset in the
input stream of the first code point of the matched string.
The first code point of the stream has offset 0. *)
(** [Sedlexing.lexeme_start lexbuf] returns the offset in the input stream of
the first code point of the matched string. The first code point of the
stream has offset 0. *)
val lexeme_start : lexbuf -> int
val lexeme_end: lexbuf -> int
(** [Sedlexing.lexeme_end lexbuf] returns the offset in the input
stream of the character following the last code point of the
matched string. The first character of the stream has offset
0. *)
(** [Sedlexing.lexeme_start lexbuf] returns the offset in the input stream of
the first byte of the matched string. The first code point of the stream has
offset 0. *)
val lexeme_bytes_start : lexbuf -> int
val loc: lexbuf -> int * int
(** [Sedlexing.loc lexbuf] returns the pair
[(Sedlexing.lexeme_start lexbuf,Sedlexing.lexeme_end
lexbuf)]. *)
(** [Sedlexing.lexeme_end lexbuf] returns the offset in the input stream of the
character following the last code point of the matched string. The first
character of the stream has offset 0. *)
val lexeme_end : lexbuf -> int
val lexeme_length: lexbuf -> int
(** [Sedlexing.lexeme_length lexbuf] returns the difference
[(Sedlexing.lexeme_end lexbuf) - (Sedlexing.lexeme_start
lexbuf)], that is, the length (in code points) of the matched
string. *)
(** [Sedlexing.lexeme_end lexbuf] returns the offset in the input stream of the
byte following the last code point of the matched string. The first
character of the stream has offset 0. *)
val lexeme_bytes_end : lexbuf -> int
val lexing_positions : lexbuf -> Lexing.position*Lexing.position
(** [Sedlexing.lexing_positions lexbuf] returns the start and end
positions of the current token, using a record of type
[Lexing.position]. This is intended for consumption
by parsers like those generated by [Menhir]. *)
(** [Sedlexing.loc lexbuf] returns the pair
[(Sedlexing.lexeme_start lexbuf,Sedlexing.lexeme_end lexbuf)]. *)
val loc : lexbuf -> int * int
val new_line: lexbuf -> unit
(** [Sedlexing.new_line lexbuf] increments the line count and
sets the beginning of line to the current position, as though
a newline character had been encountered in the input. *)
(** [Sedlexing.bytes_loc lexbuf] returns the pair
[(Sedlexing.lexeme_bytes_start lexbuf,Sedlexing.lexeme_bytes_end lexbuf)].
*)
val bytes_loc : lexbuf -> int * int
val lexeme: lexbuf -> Uchar.t array
(** [Sedlexing.lexeme lexbuf] returns the string matched by the
regular expression as an array of Unicode code point. *)
(** [Sedlexing.lexeme_length lexbuf] returns the difference
[(Sedlexing.lexeme_end lexbuf) - (Sedlexing.lexeme_start lexbuf)], that is,
the length (in code points) of the matched string. *)
val lexeme_length : lexbuf -> int
val lexeme_char: lexbuf -> int -> Uchar.t
(** [Sedlexing.lexeme_char lexbuf pos] returns code point number [pos] in
the matched string. *)
(** [Sedlexing.lexeme_length lexbuf] returns the difference
[(Sedlexing.lexeme_bytes_end lexbuf) - (Sedlexing.lexeme_bytes_start
lexbuf)], that is, the length (in bytes) of the matched string. *)
val lexeme_bytes_length : lexbuf -> int
(** [Sedlexing.lexing_positions lexbuf] returns the start and end positions, in
code points, of the current token, using a record of type [Lexing.position].
This is intended for consumption by parsers like those generated by
[Menhir]. *)
val lexing_positions : lexbuf -> Lexing.position * Lexing.position
(** [Sedlexing.lexing_position_start lexbuf] returns the start position, in code
points, of the current token. *)
val lexing_position_start : lexbuf -> Lexing.position
(** [Sedlexing.lexing_position_curr lexbuf] returns the end position, in code
points, of the current token. *)
val lexing_position_curr : lexbuf -> Lexing.position
(** [Sedlexing.lexing_bytes_positions lexbuf] returns the start and end
positions, in bytes, of the current token, using a record of type
[Lexing.position]. This is intended for consumption by parsers like those
generated by [Menhir]. *)
val lexing_bytes_positions : lexbuf -> Lexing.position * Lexing.position
(** [Sedlexing.lexing_bytes_position_start lexbuf] returns the start position,
in bytes, of the current token. *)
val lexing_bytes_position_start : lexbuf -> Lexing.position
(** [Sedlexing.lexing_bytes_position_curr lexbuf] returns the end position, in
bytes, of the current token. *)
val lexing_bytes_position_curr : lexbuf -> Lexing.position
(** [Sedlexing.new_line lexbuf] increments the line count and sets the beginning
of line to the current position, as though a newline character had been
encountered in the input. *)
val new_line : lexbuf -> unit
(** [Sedlexing.lexeme lexbuf] returns the string matched by the regular
expression as an array of Unicode code point. *)
val lexeme : lexbuf -> Uchar.t array
(** [Sedlexing.lexeme_char lexbuf pos] returns code point number [pos] in the
matched string. *)
val lexeme_char : lexbuf -> int -> Uchar.t
val sub_lexeme: lexbuf -> int -> int -> Uchar.t array
(** [Sedlexing.sub_lexeme lexbuf pos len] returns a substring of the string
matched by the regular expression as an array of Unicode code point. *)
val sub_lexeme : lexbuf -> int -> int -> Uchar.t array
val rollback: lexbuf -> unit
(** [Sedlexing.rollback lexbuf] puts [lexbuf] back in its configuration before
the last lexeme was matched. It is then possible to use another
lexer to parse the same characters again. The other functions
above in this section should not be used in the semantic action
after a call to [Sedlexing.rollback]. *)
the last lexeme was matched. It is then possible to use another lexer to
parse the same characters again. The other functions above in this section
should not be used in the semantic action after a call to
[Sedlexing.rollback]. *)
val rollback : lexbuf -> unit
(** {6 Internal interface} *)
(** These functions are used internally by the lexers. They could be used
to write lexers by hand, or with a lexer generator different from
[sedlex]. The lexer buffers have a unique internal slot that can store
an integer. They also store a "backtrack" position.
*)
(** These functions are used internally by the lexers. They could be used to
write lexers by hand, or with a lexer generator different from [sedlex]. The
lexer buffers have a unique internal slot that can store an integer. They
also store a "backtrack" position. *)
val start: lexbuf -> unit
(** [start t] informs the lexer buffer that any
code points until the current position can be discarded.
The current position become the "start" position as returned
by [Sedlexing.lexeme_start]. Moreover, the internal slot is set to
[-1] and the backtrack position is set to the current position.
*)
(** [start t] informs the lexer buffer that any code points until the current
position can be discarded. The current position become the "start" position
as returned by [Sedlexing.lexeme_start]. Moreover, the internal slot is set
to [-1] and the backtrack position is set to the current position. *)
val start : lexbuf -> unit
val next: lexbuf -> Uchar.t option
(** [next lexbuf] extracts the next code point from the
lexer buffer and increments to current position. If the input stream
is exhausted, the function returns [None].
If a ['\n'] is encountered, the tracked line number is incremented. *)
(** [next lexbuf] extracts the next code point from the lexer buffer and
increments to current position. If the input stream is exhausted, the
function returns [None]. If a ['\n'] is encountered, the tracked line number
is incremented. *)
val next : lexbuf -> Uchar.t option
val mark: lexbuf -> int -> unit
(** [mark lexbuf i] stores the integer [i] in the internal
slot. The backtrack position is set to the current position. *)
(** [__private__next_int lexbuf] extracts the next code point from the lexer
buffer and increments to current position. If the input stream is exhausted,
the function returns -1. If a ['\n'] is encountered, the tracked line number
is incremented.
val backtrack: lexbuf -> int
(** [backtrack lexbuf] returns the value stored in the
internal slot of the buffer, and performs backtracking
(the current position is set to the value of the backtrack position). *)
This is a private API, it should not be used by code using this module's API
and can be removed at any time. *)
val __private__next_int : lexbuf -> int
val with_tokenizer: (lexbuf -> 'token) -> lexbuf -> (unit -> 'token * Lexing.position * Lexing.position)
(** [with_tokenizer tokenizer lexbuf] given a lexer and a lexbuf,
returns a generator of tokens annotated with positions.
This generator can be used with the Menir parser generator's
incremental API. *)
(** [mark lexbuf i] stores the integer [i] in the internal slot. The backtrack
position is set to the current position. *)
val mark : lexbuf -> int -> unit
(** [backtrack lexbuf] returns the value stored in the internal slot of the
buffer, and performs backtracking (the current position is set to the value
of the backtrack position). *)
val backtrack : lexbuf -> int
(** [with_tokenizer tokenizer lexbuf] given a lexer and a lexbuf, returns a
generator of tokens annotated with positions. This generator can be used
with the Menir parser generator's incremental API. *)
val with_tokenizer :
(lexbuf -> 'token) ->
lexbuf ->
unit ->
'token * Lexing.position * Lexing.position
(** {6 Support for common encodings} *)
module Latin1: sig
val from_gen: char Gen.t -> lexbuf
(** Create a lexbuf from a Latin1 encoded stream (ie a stream
of Unicode code points in the range [0..255]) *)
module Latin1 : sig
(** Create a lexbuf from a Latin1 encoded stream (ie a stream of Unicode code
points in the range [0..255]) *)
val from_gen : char Gen.t -> lexbuf
val from_stream: char Stream.t -> lexbuf
[@@ocaml.deprecated "Use [Sedlexing.Latin1.from_gen] instead."]
(** Create a lexbuf from a Latin1 encoded stream (ie a stream
of Unicode code points in the range [0..255]) *)
(** Create a lexbuf from a Latin1 encoded input channel. The client is
responsible for closing the channel. *)
val from_channel : in_channel -> lexbuf
val from_channel: in_channel -> lexbuf
(** Create a lexbuf from a Latin1 encoded input channel.
The client is responsible for closing the channel. *)
(** Create a lexbuf from a Latin1 encoded string. *)
val from_string : string -> lexbuf
val from_string: string -> lexbuf
(** Create a lexbuf from a Latin1 encoded string. *)
(** As [Sedlexing.lexeme] with a result encoded in Latin1. This function
throws an exception [InvalidCodepoint] if it is not possible to encode the
result in Latin1. *)
val lexeme : lexbuf -> string
(** As [Sedlexing.sub_lexeme] with a result encoded in Latin1. This function
throws an exception [InvalidCodepoint] if it is not possible to encode the
result in Latin1. *)
val sub_lexeme : lexbuf -> int -> int -> string
val lexeme: lexbuf -> string
(** As [Sedlexing.lexeme] with a result encoded in Latin1. This
function throws an exception [InvalidCodepoint] if it is not
possible to encode the result in Latin1. *)
val sub_lexeme: lexbuf -> int -> int -> string
(** As [Sedlexing.sub_lexeme] with a result encoded in Latin1.
This function throws an exception [InvalidCodepoint] if it
is not possible to encode the result in Latin1. *)
val lexeme_char: lexbuf -> int -> char
(** As [Sedlexing.lexeme_char] with a result encoded in Latin1.
This function throws an exception [InvalidCodepoint] if it
is not possible to encode the result in Latin1. *)
(** As [Sedlexing.lexeme_char] with a result encoded in Latin1. This function
throws an exception [InvalidCodepoint] if it is not possible to encode the
result in Latin1. *)
val lexeme_char : lexbuf -> int -> char
end
module Utf8 : sig
(** Create a lexbuf from a UTF-8 encoded stream. *)
val from_gen : char Gen.t -> lexbuf
module Utf8: sig
val from_gen: char Gen.t -> lexbuf
(** Create a lexbuf from a UTF-8 encoded stream. *)
(** Create a lexbuf from a UTF-8 encoded input channel. *)
val from_channel : in_channel -> lexbuf
val from_stream: char Stream.t -> lexbuf
[@@ocaml.deprecated "Use [Sedlexing.Utf8.from_gen] instead."]
(** Create a lexbuf from a UTF-8 encoded stream. *)
(** Create a lexbuf from a UTF-8 encoded string. *)
val from_string : string -> lexbuf
val from_channel: in_channel -> lexbuf
(** Create a lexbuf from a UTF-8 encoded input channel. *)
(** As [Sedlexing.lexeme] with a result encoded in UTF-8. *)
val lexeme : lexbuf -> string
val from_string: string -> lexbuf
(** Create a lexbuf from a UTF-8 encoded string. *)
(** As [Sedlexing.sub_lexeme] with a result encoded in UTF-8. *)
val sub_lexeme : lexbuf -> int -> int -> string
val lexeme: lexbuf -> string
(** As [Sedlexing.lexeme] with a result encoded in UTF-8. *)
val sub_lexeme: lexbuf -> int -> int -> string
(** As [Sedlexing.sub_lexeme] with a result encoded in UTF-8. *)
module Helper : sig
val width : char -> int
val check_two : int -> int -> int
val check_three : int -> int -> int -> int
val check_four : int -> int -> int -> int -> int
end
end
module Utf16: sig
module Utf16 : sig
type byte_order = Little_endian | Big_endian
val from_gen: char Gen.t -> byte_order option -> lexbuf
(** [Utf16.from_gen s opt_bo] creates a lexbuf from an UTF-16
encoded stream. If [opt_bo] matches with [None] the function
expects a BOM (Byte Order Mark), and takes the byte order as
[Utf16.Big_endian] if it cannot find one. When [opt_bo]
matches with [Some bo], [bo] is taken as byte order. In this
case a leading BOM is kept in the stream - the lexer has to
ignore it and a `wrong' BOM ([0xfffe]) will raise
Utf16.InvalidCodepoint. *)
(** [Utf16.from_gen s opt_bo] creates a lexbuf from an UTF-16 encoded stream.
If [opt_bo] matches with [None] the function expects a BOM (Byte Order
Mark), and takes the byte order as [Utf16.Big_endian] if it cannot find
one. When [opt_bo] matches with [Some bo], [bo] is taken as byte order. In
this case a leading BOM is kept in the stream - the lexer has to ignore it
and a `wrong' BOM ([0xfffe]) will raise Utf16.InvalidCodepoint. *)
val from_gen : char Gen.t -> byte_order option -> lexbuf
val from_stream: char Stream.t -> byte_order option -> lexbuf
[@@ocaml.deprecated "Use [Sedlexing.Utf16.from_gen] instead."]
(** Works as [Utf16.from_gen] with a [stream]. *)
(** Works as [Utf16.from_gen] with an [in_channel]. *)
val from_channel : in_channel -> byte_order option -> lexbuf
val from_channel: in_channel -> byte_order option-> lexbuf
(** Works as [Utf16.from_gen] with an [in_channel]. *)
(** Works as [Utf16.from_gen] with a [string]. *)
val from_string : string -> byte_order option -> lexbuf
val from_string: string -> byte_order option -> lexbuf
(** Works as [Utf16.from_gen] with a [string]. *)
(** [utf16_lexeme lb bo bom] as [Sedlexing.lexeme] with a result encoded in
UTF-16 in byte_order [bo] and starting with a BOM if [bom = true]. *)
val lexeme : lexbuf -> byte_order -> bool -> string
val lexeme: lexbuf -> byte_order -> bool -> string
(** [utf16_lexeme lb bo bom] as [Sedlexing.lexeme] with a result
encoded in UTF-16 in byte_order [bo] and starting with a BOM
if [bom = true]. *)
val sub_lexeme: lexbuf -> int -> int -> byte_order -> bool -> string
(** [sub_lexeme lb pos len bo bom] as
[Sedlexing.sub_lexeme] with a result encoded in UTF-16 with
byte order [bo] and starting with a BOM if [bom=true] *)
(** [sub_lexeme lb pos len bo bom] as [Sedlexing.sub_lexeme] with a result
encoded in UTF-16 with byte order [bo] and starting with a BOM if
[bom=true] *)
val sub_lexeme : lexbuf -> int -> int -> byte_order -> bool -> string
end

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@ -1,18 +1,17 @@
(library
(name sedlex_ppx)
(public_name sedlex.ppx)
(public_name noslop-sedlex.ppx)
(kind ppx_rewriter)
(libraries ppx_tools_versioned.metaquot_405 ocaml-migrate-parsetree sedlex)
(ppx_runtime_libraries sedlex)
(libraries ppxlib noslop-sedlex noslop-sedlex.utils)
(ppx_runtime_libraries noslop-sedlex)
(preprocess
(pps ppx_tools_versioned.metaquot_405))
(flags (:standard -w -9)))
(pps ppxlib.metaquot)))
(rule
(targets unicode.ml)
(mode promote-until-clean)
(deps (:gen ../generator/gen_unicode.exe)
../generator/data/DerivedCoreProperties.txt
../generator/data/DerivedGeneralCategory.txt
../generator/data/PropList.txt)
(action (run %{gen} %{targets})))
(mode promote)
(deps
(:gen ../generator/gen_unicode.exe)
(glob_files ../generator/data/*.txt))
(action
(run %{gen} %{targets})))

217
src/syntax/iso.ml Normal file
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@ -0,0 +1,217 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
open Sedlex_cset
let tr8876_ident_char =
let l =
[
(* ASCII *)
(0x0041, 0x005a);
(0x0061, 0x007a);
(* Latin *)
(0x00c0, 0x00d6);
(0x00d8, 0x00f6);
(0x00f8, 0x01f5);
(0x01fa, 0x0217);
(0x0250, 0x02a8);
(* Greek *)
(0x0384, 0x0384);
(0x0388, 0x038a);
(0x038c, 0x038c);
(0x038e, 0x03a1);
(0x03a3, 0x03ce);
(0x03d0, 0x03d6);
(0x03da, 0x03da);
(0x03dc, 0x03dc);
(0x03de, 0x03de);
(0x03e0, 0x03e0);
(0x03e2, 0x03f3);
(* Cyrillic *)
(0x0401, 0x040d);
(0x040f, 0x044f);
(0x0451, 0x045c);
(0x045e, 0x0481);
(0x0490, 0x04c4);
(0x04c7, 0x04c4);
(0x04cb, 0x04cc);
(0x04d0, 0x04eb);
(0x04ee, 0x04f5);
(0x04f8, 0x04f9);
(* Armenian *)
(0x0531, 0x0556);
(0x0561, 0x0587);
(0x04d0, 0x04eb);
(* Hebrew *)
(0x05d0, 0x05ea);
(0x05f0, 0x05f4);
(* Arabic *)
(0x0621, 0x063a);
(0x0640, 0x0652);
(0x0670, 0x06b7);
(0x06ba, 0x06be);
(0x06c0, 0x06ce);
(0x06e5, 0x06e7);
(* Devanagari *)
(0x0905, 0x0939);
(0x0958, 0x0962);
(* Bengali *)
(0x0985, 0x098c);
(0x098f, 0x0990);
(0x0993, 0x09a8);
(0x09aa, 0x09b0);
(0x09b2, 0x09b2);
(0x09b6, 0x09b9);
(0x09dc, 0x09dd);
(0x09df, 0x09e1);
(0x09f0, 0x09f1);
(* Gurmukhi *)
(0x0a05, 0x0a0a);
(0x0a0f, 0x0a10);
(0x0a13, 0x0a28);
(0x0a2a, 0x0a30);
(0x0a32, 0x0a33);
(0x0a35, 0x0a36);
(0x0a38, 0x0a39);
(0x0a59, 0x0a5c);
(0x0a5e, 0x0a5e);
(* Gunjarati *)
(0x0a85, 0x0a8b);
(0x0a8d, 0x0a8d);
(0x0a8f, 0x0a91);
(0x0a93, 0x0aa8);
(0x0aaa, 0x0ab0);
(0x0ab2, 0x0ab3);
(0x0ab5, 0x0ab9);
(0x0ae0, 0x0ae0);
(* Oriya *)
(0x0b05, 0x0b0c);
(0x0b0f, 0x0b10);
(0x0b13, 0x0b28);
(0x0b2a, 0x0b30);
(0x0b32, 0x0b33);
(0x0b36, 0x0b39);
(0x0b5c, 0x0b5d);
(0x0b5f, 0x0b61);
(* Tamil *)
(0x0b85, 0x0b8a);
(0x0b8e, 0x0b90);
(0x0b92, 0x0b95);
(0x0b99, 0x0b9a);
(0x0b9c, 0x0b9c);
(0x0b9e, 0x0b9f);
(0x0ba3, 0x0ba4);
(0x0ba8, 0x0baa);
(0x0bae, 0x0bb5);
(0x0bb7, 0x0bb9);
(* Telugu *)
(0x0c05, 0x0c0c);
(0x0c0e, 0x0c10);
(0x0c12, 0x0c28);
(0x0c2a, 0x0c33);
(0x0c35, 0x0c39);
(0x0c60, 0x0c61);
(* Kannada *)
(0x0c85, 0x0c8c);
(0x0c8e, 0x0c90);
(0x0c92, 0x0ca8);
(0x0caa, 0x0cb3);
(0x0cb5, 0x0cb9);
(0x0ce0, 0x0ce1);
(* Malayam *)
(0x0d05, 0x0d0c);
(0x0d0e, 0x0d10);
(0x0d12, 0x0d28);
(0x0d2a, 0x0d39);
(0x0d60, 0x0d61);
(* Thai *)
(0x0e01, 0x0e30);
(0x0e32, 0x0e33);
(0x0e40, 0x0e46);
(0x0e4f, 0x0e5b);
(* Lao *)
(0x0e81, 0x0e82);
(0x0e84, 0x0e84);
(0x0e87, 0x0e88);
(0x0e8a, 0x0e8a);
(0x0e0d, 0x0e0d);
(0x0e94, 0x0e97);
(0x0e99, 0x0e9f);
(0x0ea1, 0x0ea3);
(0x0ea5, 0x0ea5);
(0x0ea7, 0x0ea7);
(0x0eaa, 0x0eab);
(0x0ead, 0x0eb0);
(0x0eb2, 0x0eb3);
(0x0ebd, 0x0ebd);
(0x0ec0, 0x0ec4);
(0x0ec6, 0x0ec6);
(* Georgian *)
(0x10a0, 0x10c5);
(0x10d0, 0x10f6);
(* Hangul Jamo *)
(0x1100, 0x1159);
(0x1161, 0x11a2);
(0x11a8, 0x11f9);
(0x11d0, 0x11f6);
(* Latin extensions *)
(0x1e00, 0x1e9a);
(0x1ea0, 0x1ef9);
(* Greek extended *)
(0x1f00, 0x1f15);
(0x1f18, 0x1f1d);
(0x1f20, 0x1f45);
(0x1f48, 0x1f4d);
(0x1f50, 0x1f57);
(0x1f59, 0x1f59);
(0x1f5b, 0x1f5b);
(0x1f5d, 0x1f5d);
(0x1f5f, 0x1f7d);
(0x1f80, 0x1fb4);
(0x1fb6, 0x1fbc);
(0x1fc2, 0x1fc4);
(0x1fc6, 0x1fcc);
(0x1fd0, 0x1fd3);
(0x1fd6, 0x1fdb);
(0x1fe0, 0x1fec);
(0x1ff2, 0x1ff4);
(0x1ff6, 0x1ffc);
(* Hiragana *)
(0x3041, 0x3094);
(0x309b, 0x309e);
(* Katakana *)
(0x30a1, 0x30fe);
(* Bopmofo *)
(0x3105, 0x312c);
(* CJK Unified Ideographs *)
(0x4e00, 0x9fa5);
(* CJK Compatibility Ideographs *)
(0xf900, 0xfa2d);
(* Arabic Presentation Forms *)
(0xfb1f, 0xfb36);
(0xfb38, 0xfb3c);
(0xfb3e, 0xfb3e);
(0xfb40, 0xfb41);
(0xfb42, 0xfb44);
(0xfb46, 0xfbb1);
(0xfbd3, 0xfd35);
(* Arabic Presentation Forms-A *)
(0xfd50, 0xfd85);
(0xfd92, 0xfbc7);
(0xfdf0, 0xfdfb);
(* Arabic Presentation Forms-B *)
(0xfe70, 0xfe72);
(0xfe74, 0xfe74);
(0xfe76, 0xfefc);
(* Half width and Fullwidth Forms *)
(0xff21, 0xff3a);
(0xff41, 0xff5a);
(0xff66, 0xffbe);
(0xffc2, 0xffc7);
(0xffca, 0xffcf);
(0xffd2, 0xffd7);
(0xffd2, 0xffd7);
(0xffda, 0xffdc);
]
in
union_list (List.map (fun (a, b) -> interval a b) l)

10
src/syntax/iso.mli Normal file
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@ -0,0 +1,10 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
open Sedlex_cset
(** Letters to be used in identifiers, as specified by ISO .... *)
(* Data provided by John M. Skaller *)
val tr8876_ident_char : t

View File

@ -1,36 +1,39 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(* Copyright 2026 by xenia <xenia@awoo.systems> *)
open Longident
open Migrate_parsetree
open Ast_405
open Parsetree
open Asttypes
open Ppxlib
open Ast_builder.Default
open Ast_helper
open Ast_convenience_405
module Ast_mapper_class = Ast_mapper_class_405
let ocaml_version = Versions.ocaml_405
(* let ocaml_version = Versions.ocaml_408 *)
module Cset = Sedlex_cset
(* Decision tree for partitions *)
let default_loc = Location.none
type decision_tree =
| Lte of int * decision_tree * decision_tree
| Table of int * int array
| Return of int
let rec simplify_decision_tree (x : decision_tree) =
match x with
| Table _ | Return _ -> x
| Lte (_, (Return a as l), Return b) when a = b -> l
| Lte (i, l, r) -> (
let l = simplify_decision_tree l in
let r = simplify_decision_tree r in
match (l, r) with
| Return a, Return b when a = b -> l
| _ -> Lte (i, l, r))
let decision l =
let l = List.map (fun (a, b, i) -> (a, b, Return i)) l in
let rec merge2 = function
| (a1, b1, d1) :: (a2, b2, d2) :: rest ->
let x =
if b1 + 1 = a2 then d2
else Lte (a2 - 1, Return (-1), d2)
in
let x = if b1 + 1 = a2 then d2 else Lte (a2 - 1, Return (-1), d2) in
(a1, b2, Lte (b1, d1, x)) :: merge2 rest
| rest -> rest
in
@ -45,67 +48,81 @@ let limit = 8192
let decision_table l =
let rec aux m accu = function
| ((a, b, i) as x)::rem when b < limit && i < 255->
| ((a, b, i) as x) :: rem when b < limit && i < 255 ->
aux (min a m) (x :: accu) rem
| rem -> m, accu, rem
| rem -> (m, accu, rem)
in
let (min, table, rest) = aux max_int [] l in
let min, table, rest = aux max_int [] l in
match table with
| [] -> decision l
| [(min, max, i)] ->
Lte (min - 1, Return (-1), (Lte (max, Return i, decision rest)))
| (_, max, _) :: _ ->
let arr = Array.make (max - min + 1) 0 in
let set (a, b, i) = for j = a to b do arr.(j - min) <- i + 1 done in
List.iter set table;
Lte (min - 1, Return (-1), Lte (max, Table (min, arr), decision rest))
| [] -> decision l
| [(min, max, i)] ->
Lte (min - 1, Return (-1), Lte (max, Return i, decision rest))
| (_, max, _) :: _ ->
let arr = Array.make (max - min + 1) 0 in
let set (a, b, i) =
for j = a to b do
arr.(j - min) <- i + 1
done
in
List.iter set table;
Lte (min - 1, Return (-1), Lte (max, Table (min, arr), decision rest))
let rec simplify min max = function
| Lte (i,yes,no) ->
| Lte (i, yes, no) ->
if i >= max then simplify min max yes
else if i < min then simplify min max no
else Lte (i, simplify min i yes, simplify (i+1) max no)
else Lte (i, simplify min i yes, simplify (i + 1) max no)
| x -> x
let segments_of_partition p =
let seg = ref [] in
Array.iteri
(fun i c -> List.iter (fun (a, b) -> seg := (a, b, i) :: !seg) c)
(fun i c ->
List.iter
(fun (a, b) -> seg := (a, b, i) :: !seg)
(c : Sedlex_cset.t :> (int * int) list))
p;
List.sort (fun (a1,_,_) (a2,_,_) -> compare a1 a2) !seg
List.sort (fun (a1, _, _) (a2, _, _) -> compare a1 a2) !seg
let decision_table p =
simplify (-1) (Cset.max_code) (decision_table (segments_of_partition p))
simplify (-1) Cset.max_code (decision_table (segments_of_partition p))
(* Helpers to build AST *)
let appfun s l = app (evar s) l
let glb_value name def = Str.value Nonrecursive [Vb.mk (pvar name) def]
let appfun s l =
let loc = default_loc in
eapply ~loc (evar ~loc s) l
let glb_value name def =
let loc = default_loc in
pstr_value ~loc Nonrecursive
[value_binding ~loc ~pat:(pvar ~loc name) ~expr:def]
(* Named regexps *)
module StringMap = Map.Make(struct
module StringMap = Map.Make (struct
type t = string
let compare = compare
end)
let builtin_regexps =
List.fold_left (fun acc (n, c) -> StringMap.add n (Sedlex.chars c) acc)
List.fold_left
(fun acc (n, c) -> StringMap.add n (Sedlex.chars c) acc)
StringMap.empty
([
"any", Cset.any;
"eof", Cset.eof;
"xml_letter", Cset.letter;
"xml_digit", Cset.digit;
"xml_extender", Cset.extender;
"xml_base_char", Cset.base_char;
"xml_ideographic", Cset.ideographic;
"xml_combining_char", Cset.combining_char;
"xml_blank", Cset.blank;
"tr8876_ident_char", Cset.tr8876_ident_char] @
Unicode.Categories.list @
Unicode.Properties.list)
("any", Cset.any);
("eof", Cset.eof);
("xml_letter", Xml.letter);
("xml_digit", Xml.digit);
("xml_extender", Xml.extender);
("xml_base_char", Xml.base_char);
("xml_ideographic", Xml.ideographic);
("xml_combining_char", Xml.combining_char);
("xml_blank", Xml.blank);
("tr8876_ident_char", Iso.tr8876_ident_char);
]
@ Unicode.Categories.list @ Unicode.Properties.list)
(* Tables (indexed mapping: codepoint -> next state) *)
@ -124,14 +141,18 @@ let table_name x =
let table (name, v) =
let n = Array.length v in
let s = Bytes.create n in
for i = 0 to n - 1 do Bytes.set s i (Char.chr v.(i)) done;
glb_value name (str (Bytes.to_string s))
for i = 0 to n - 1 do
Bytes.set s i (Char.chr v.(i))
done;
glb_value name (estring ~loc:default_loc (Bytes.to_string s))
(* Partition (function: codepoint -> next state) *)
let partitions = Hashtbl.create 31
let partition_counter = ref 0
let get_partitions () = Hashtbl.fold (fun key x accu -> (x, key) :: accu) partitions []
let get_partitions () =
Hashtbl.fold (fun key x accu -> (x, key) :: accu) partitions []
let partition_name x =
try Hashtbl.find partitions x
@ -144,19 +165,25 @@ let partition_name x =
(* We duplicate the body for the EOF (-1) case rather than creating
an interior utility function. *)
let partition (name, p) =
let loc = default_loc in
let rec gen_tree = function
| Lte (i, yes, no) ->
[%expr if c <= [%e int i] then [%e gen_tree yes] else [%e gen_tree no]]
| Return i -> int i
[%expr
if c <= [%e eint ~loc i] then [%e gen_tree yes] else [%e gen_tree no]]
| Return i -> eint ~loc:default_loc i
| Table (offset, t) ->
let c = if offset = 0 then [%expr c] else [%expr c - [%e int offset]] in
[%expr Char.code (String.get [%e evar (table_name t)] [%e c]) - 1]
let c =
if offset = 0 then [%expr c] else [%expr c - [%e eint ~loc offset]]
in
[%expr
Char.code (String.unsafe_get [%e evar ~loc (table_name t)] [%e c]) - 1]
in
let body = gen_tree (decision_table p) in
glb_value name (func [(pconstr "Some" [pvar "uc"],
[%expr let c = Uchar.to_int uc in [%e body]]);
(pconstr "None" [],
[%expr let c = (-1) in [%e body]])])
let body = gen_tree (simplify_decision_tree (decision_table p)) in
glb_value name
[%expr
fun c ->
let open! Stdlib in
[%e body]]
(* Code generation for the automata *)
@ -170,57 +197,79 @@ let best_final final =
let state_fun state = Printf.sprintf "__sedlex_state_%i" state
let call_state lexbuf auto state =
let (trans, final) = auto.(state) in
if Array.length trans = 0
then match best_final final with
| Some i -> int i
| None -> assert false
else appfun (state_fun state) [evar lexbuf]
let { Sedlex.trans; finals } = auto.(state) in
if Array.length trans = 0 then (
match best_final finals with
| Some i -> eint ~loc:default_loc i
| None -> assert false)
else appfun (state_fun state) [lexbuf]
let gen_state lexbuf auto i (trans, final) =
let gen_state (lexbuf_name, lexbuf) auto i { Sedlex.trans; finals } =
let loc = default_loc in
let partition = Array.map fst trans in
let cases = Array.mapi (fun i (_, j) -> Exp.case(pint i) (call_state lexbuf auto j)) trans in
let cases =
Array.mapi
(fun i (_, j) ->
case ~lhs:(pint ~loc i) ~guard:None ~rhs:(call_state lexbuf auto j))
trans
in
let cases = Array.to_list cases in
let body () =
Exp.match_
(appfun (partition_name partition) [[%expr Sedlexing.next [%e evar lexbuf]]])
(cases @ [Exp.case [%pat? _] [%expr Sedlexing.backtrack [%e evar lexbuf]]])
pexp_match ~loc
(appfun (partition_name partition)
[[%expr Sedlexing.__private__next_int [%e lexbuf]]])
(cases
@ [
case
~lhs:[%pat? _]
~guard:None
~rhs:[%expr Sedlexing.backtrack [%e lexbuf]];
])
in
let ret body = [ Vb.mk (pvar (state_fun i)) (func [pvar lexbuf, body]) ] in
match best_final final with
let ret body =
let lhs = pvar ~loc:lexbuf.pexp_loc lexbuf_name in
[
value_binding ~loc
~pat:(pvar ~loc (state_fun i))
~expr:(Exp.fun_ ~loc Nolabel None lhs body);
]
in
match best_final finals with
| None -> ret (body ())
| Some _ when Array.length trans = 0 -> []
| Some i -> ret [%expr Sedlexing.mark [%e evar lexbuf] [%e int i]; [%e body ()]]
| Some i ->
ret
[%expr
Sedlexing.mark [%e lexbuf] [%e eint ~loc i];
[%e body ()]]
let gen_recflag auto =
(* The generated function is not recursive if the transitions end
in states with no further transitions. *)
try
Array.iter
(fun (trans_i, _) ->
(fun { Sedlex.trans; _ } ->
Array.iter
(fun (_, j) ->
let (trans_j, _) = auto.(j) in
if Array.length trans_j > 0 then raise Exit)
trans_i)
if Array.length auto.(j).Sedlex.trans > 0 then raise Exit)
trans)
auto;
Nonrecursive
with
Exit -> Recursive
with Exit -> Recursive
let gen_definition lexbuf l error =
let brs = Array.of_list l in
let auto = Sedlex.compile (Array.map fst brs) in
let cases = Array.to_list (Array.mapi (fun i (_, e) -> Exp.case (pint i) e) brs) in
let states = Array.mapi (gen_state lexbuf auto) auto in
let gen_definition ((_, lexbuf) as lexbuf_with_name) auto l error =
let loc = default_loc in
let cases =
List.mapi (fun i (_, e) -> case ~lhs:(pint ~loc i) ~guard:None ~rhs:e) l
in
let states = Array.mapi (gen_state lexbuf_with_name auto) auto in
let states = List.flatten (Array.to_list states) in
Exp.let_ (gen_recflag auto) states
(Exp.sequence
[%expr Sedlexing.start [%e evar lexbuf]]
(Exp.match_ (appfun (state_fun 0) [evar lexbuf])
(cases @ [Exp.case (Pat.any ()) error])
)
)
pexp_let ~loc (gen_recflag auto) states
(pexp_sequence ~loc
[%expr Sedlexing.start [%e lexbuf]]
(pexp_match ~loc
(appfun (state_fun 0) [lexbuf])
(cases @ [case ~lhs:(ppat_any ~loc) ~guard:None ~rhs:error])))
(* Lexer specification parser *)
@ -229,18 +278,46 @@ let codepoint i =
failwith (Printf.sprintf "Invalid Unicode code point: %i" i);
i
let regexp_for_char c =
Sedlex.chars (Cset.singleton (Char.code c))
let char c = Cset.singleton (Char.code c)
let uchar c = Cset.singleton (Uchar.to_int c)
let regexp_for_string s =
let rec aux n =
if n = String.length s then Sedlex.eps
else
Sedlex.seq (regexp_for_char s.[n]) (aux (succ n))
in aux 0
let err loc fmt =
Printf.ksprintf
(fun s ->
raise (Location.Error (Location.Error.createf ~loc "Sedlex: %s" s)))
fmt
let err loc s =
raise (Location.Error (Location.error ~loc ("Sedlex: " ^ s)))
type encoding = Utf8 | Latin1 | Ascii
let string_of_encoding = function
| Utf8 -> "UTF-8"
| Latin1 -> "Latin-1"
| Ascii -> "ASCII"
let rev_csets_of_string ~loc ~encoding s =
match encoding with
| Utf8 ->
Utf8.fold
~f:(fun acc _ x ->
match x with
| `Malformed _ ->
err loc "Malformed %s string" (string_of_encoding encoding)
| `Uchar c -> uchar c :: acc)
[] s
| Latin1 ->
let l = ref [] in
for i = 0 to String.length s - 1 do
l := char s.[i] :: !l
done;
!l
| Ascii ->
let l = ref [] in
for i = 0 to String.length s - 1 do
match s.[i] with
| '\x00' .. '\x7F' as c -> l := char c :: !l
| _ -> err loc "Malformed %s string" (string_of_encoding encoding)
done;
!l
let rec repeat r = function
| 0, 0 -> Sedlex.eps
@ -248,178 +325,264 @@ let rec repeat r = function
| n, m -> Sedlex.seq r (repeat r (n - 1, m - 1))
let regexp_of_pattern env =
let rec char_pair_op func name p tuple = (* Construct something like Sub(a,b) *)
match tuple with
| Some {ppat_desc=Ppat_tuple (p0 :: p1 :: [])} ->
begin match func (aux p0) (aux p1) with
| Some r -> r
| None ->
err p.ppat_loc @@
"the "^name^" operator can only applied to single-character length regexps"
end
| _ -> err p.ppat_loc @@ "the "^name^" operator requires two arguments, like "^name^"(a,b)"
and aux p = (* interpret one pattern node *)
match p.ppat_desc with
| Ppat_or (p1, p2) -> Sedlex.alt (aux p1) (aux p2)
| Ppat_tuple (p :: pl) ->
List.fold_left (fun r p -> Sedlex.seq r (aux p))
(aux p)
pl
| Ppat_construct ({txt = Lident "Star"}, Some p) ->
Sedlex.rep (aux p)
| Ppat_construct ({txt = Lident "Plus"}, Some p) ->
Sedlex.plus (aux p)
| Ppat_construct
({txt = Lident "Rep"},
Some {ppat_desc=Ppat_tuple[p0; {ppat_desc=Ppat_constant (i1 as i2)|Ppat_interval(i1, i2)}]}) ->
begin match Constant.of_constant i1, Constant.of_constant i2 with
| Pconst_integer(i1,_), Pconst_integer(i2,_) ->
let i1 = int_of_string i1 in
let i2 = int_of_string i2 in
if 0 <= i1 && i1 <= i2 then repeat (aux p0) (i1, i2)
else err p.ppat_loc "Invalid range for Rep operator"
| _ ->
err p.ppat_loc "Rep must take an integer constant or interval"
end
| Ppat_construct ({txt = Lident "Rep"}, _) ->
err p.ppat_loc "the Rep operator takes 2 arguments"
| Ppat_construct ({txt = Lident "Opt"}, Some p) ->
Sedlex.alt Sedlex.eps (aux p)
| Ppat_construct ({txt = Lident "Compl"}, arg) ->
begin match arg with
| Some p0 ->
begin match Sedlex.compl (aux p0) with
let rec char_pair_op func name ~encoding ~loc tuple =
(* Construct something like Sub(a,b) *)
match tuple with
| Some { ppat_desc = Ppat_tuple [p0; p1]; _ } ->
begin match func (aux ~encoding p0) (aux ~encoding p1) with
| Some r -> r
| None ->
err p.ppat_loc
"the Compl operator can only applied to a single-character length regexp"
end
| _ -> err p.ppat_loc "the Compl operator requires an argument"
end
| Ppat_construct ({ txt = Lident "Sub" }, arg) ->
char_pair_op Sedlex.subtract "Sub" p arg
| Ppat_construct ({ txt = Lident "Intersect" }, arg) ->
char_pair_op Sedlex.intersection "Intersect" p arg
| Ppat_construct ({txt = Lident "Chars"}, arg) ->
let const = match arg with
| Some {ppat_desc=Ppat_constant const} ->
Some (Constant.of_constant const)
| _ -> None
in
begin match const with
| Some (Pconst_string(s,_))->
let c = ref Cset.empty in
for i = 0 to String.length s - 1 do
c := Cset.union !c (Cset.singleton (Char.code s.[i]))
done;
Sedlex.chars !c
| _ -> err p.ppat_loc "the Chars operator requires a string argument"
end
| Ppat_interval (i_start, i_end) ->
begin match Constant.of_constant i_start, Constant.of_constant i_end with
| Pconst_char c1, Pconst_char c2 -> Sedlex.chars (Cset.interval (Char.code c1) (Char.code c2))
| Pconst_integer(i1,_), Pconst_integer(i2,_) ->
Sedlex.chars (Cset.interval (codepoint (int_of_string i1)) (codepoint (int_of_string i2)))
| _ -> err p.ppat_loc "this pattern is not a valid interval regexp"
end
| Ppat_constant (const) ->
begin match Constant.of_constant const with
| Pconst_string (s, _) -> regexp_for_string s
| Pconst_char c -> regexp_for_char c
| Pconst_integer(i,_) -> Sedlex.chars (Cset.singleton (codepoint (int_of_string i)))
| _ -> err p.ppat_loc "this pattern is not a valid regexp"
end
| Ppat_var {txt=x} ->
begin try StringMap.find x env
with Not_found ->
err p.ppat_loc (Printf.sprintf "unbound regexp %s" x)
end
| _ ->
err p.ppat_loc "this pattern is not a valid regexp"
err loc
"the %s operator can only applied to single-character length \
regexps"
name
end
| _ ->
err loc "the %s operator requires two arguments, like %s(a,b)" name
name
and aux ~encoding p =
(* interpret one pattern node *)
match p.ppat_desc with
| Ppat_or (p1, p2) -> Sedlex.alt (aux ~encoding p1) (aux ~encoding p2)
| Ppat_tuple (p :: pl) ->
List.fold_left
(fun r p -> Sedlex.seq r (aux ~encoding p))
(aux ~encoding p) pl
| Ppat_construct ({ txt = Lident "Star"; _ }, Some (_, p)) ->
Sedlex.rep (aux ~encoding p)
| Ppat_construct ({ txt = Lident "Plus"; _ }, Some (_, p)) ->
Sedlex.plus (aux ~encoding p)
| Ppat_construct ({ txt = Lident "Utf8"; _ }, Some (_, p)) ->
aux ~encoding:Utf8 p
| Ppat_construct ({ txt = Lident "Latin1"; _ }, Some (_, p)) ->
aux ~encoding:Latin1 p
| Ppat_construct ({ txt = Lident "Ascii"; _ }, Some (_, p)) ->
aux ~encoding:Ascii p
| Ppat_construct
( { txt = Lident "Rep"; _ },
Some
( _,
{
ppat_desc =
Ppat_tuple
[
p0;
{
ppat_desc =
Ppat_constant (i1 as i2) | Ppat_interval (i1, i2);
_;
};
];
_;
} ) ) ->
begin match (i1, i2) with
| Pconst_integer (i1, _), Pconst_integer (i2, _) ->
let i1 = int_of_string i1 in
let i2 = int_of_string i2 in
if 0 <= i1 && i1 <= i2 then repeat (aux ~encoding p0) (i1, i2)
else err p.ppat_loc "Invalid range for Rep operator"
| _ ->
err p.ppat_loc "Rep must take an integer constant or interval"
end
| Ppat_construct ({ txt = Lident "Rep"; _ }, _) ->
err p.ppat_loc "the Rep operator takes 2 arguments"
| Ppat_construct ({ txt = Lident "Opt"; _ }, Some (_, p)) ->
Sedlex.alt Sedlex.eps (aux ~encoding p)
| Ppat_construct ({ txt = Lident "Compl"; _ }, arg) ->
begin match arg with
| Some (_, p0) ->
begin match Sedlex.compl (aux ~encoding p0) with
| Some r -> r
| None ->
err p.ppat_loc
"the Compl operator can only applied to a \
single-character length regexp"
end
| _ -> err p.ppat_loc "the Compl operator requires an argument"
end
| Ppat_construct ({ txt = Lident "Sub"; _ }, arg) ->
char_pair_op ~encoding Sedlex.subtract "Sub" ~loc:p.ppat_loc
(Option.map (fun (_, arg) -> arg) arg)
| Ppat_construct ({ txt = Lident "Intersect"; _ }, arg) ->
char_pair_op ~encoding Sedlex.intersection "Intersect" ~loc:p.ppat_loc
(Option.map (fun (_, arg) -> arg) arg)
| Ppat_construct ({ txt = Lident "Chars"; _ }, arg) -> (
let const =
match arg with
| Some (_, { ppat_desc = Ppat_constant const; _ }) -> Some const
| _ -> None
in
match const with
| Some (Pconst_string (s, _, _)) ->
let l = rev_csets_of_string ~loc:p.ppat_loc ~encoding s in
let chars = List.fold_left Cset.union Cset.empty l in
Sedlex.chars chars
| _ ->
err p.ppat_loc "the Chars operator requires a string argument")
| Ppat_interval (i_start, i_end) ->
begin match (i_start, i_end) with
| Pconst_char c1, Pconst_char c2 ->
let valid =
match encoding with
(* utf8 char interval can only match ascii because
of the OCaml lexer. *)
| Ascii | Utf8 -> (
function '\x00' .. '\x7f' -> true | _ -> false)
| Latin1 -> ( function _ -> true)
in
if not (valid c1 && valid c2) then
err p.ppat_loc
"this pattern is not a valid %s interval regexp"
(string_of_encoding encoding);
Sedlex.chars (Cset.interval (Char.code c1) (Char.code c2))
| Pconst_integer (i1, _), Pconst_integer (i2, _) ->
Sedlex.chars
(Cset.interval
(codepoint (int_of_string i1))
(codepoint (int_of_string i2)))
| _ -> err p.ppat_loc "this pattern is not a valid interval regexp"
end
| Ppat_constant const ->
begin match const with
| Pconst_string (s, _, _) ->
let rev_l = rev_csets_of_string s ~loc:p.ppat_loc ~encoding in
List.fold_left
(fun acc cset -> Sedlex.seq (Sedlex.chars cset) acc)
Sedlex.eps rev_l
| Pconst_char c -> Sedlex.chars (char c)
| Pconst_integer (i, _) ->
Sedlex.chars (Cset.singleton (codepoint (int_of_string i)))
| _ -> err p.ppat_loc "this pattern is not a valid regexp"
end
| Ppat_var { txt = x; _ } ->
begin try StringMap.find x env
with Not_found -> err p.ppat_loc "unbound regexp %s" x
end
| _ -> err p.ppat_loc "this pattern is not a valid regexp"
in
aux
aux ~encoding:Ascii
let handle_sedlex_match ~env ~map_rhs match_expr =
let lexbuf =
match match_expr with
| { pexp_desc = Pexp_match (lexbuf, _); _ } -> (
match lexbuf with
| { pexp_desc = Pexp_ident { txt = Lident txt; _ }; _ } ->
(txt, lexbuf)
| _ ->
err lexbuf.pexp_loc
"the matched expression must be a single identifier")
| _ ->
err match_expr.pexp_loc
"the %%sedlex extension is only recognized on match expressions"
in
let cases =
match match_expr with
| { pexp_desc = Pexp_match (_, cases); _ } -> cases
| _ -> assert false
in
let cases = List.rev cases in
let error =
match List.hd cases with
| { pc_lhs = [%pat? _]; pc_rhs = e; pc_guard = None } -> map_rhs e
| { pc_lhs = p; _ } ->
err p.ppat_loc "the last branch must be a catch-all error case"
in
let cases = List.rev (List.tl cases) in
let cases =
List.map
(function
| { pc_lhs = p; pc_rhs = e; pc_guard = None } ->
(regexp_of_pattern env p, map_rhs e)
| { pc_guard = Some e; _ } ->
err e.pexp_loc "'when' guards are not supported")
cases
in
let brs = Array.of_list cases in
let auto = Sedlex.compile (Array.map fst brs) in
(gen_definition lexbuf auto cases error, auto)
let mapper cookies =
object(this)
inherit Ast_mapper_class.mapper as super
let previous = ref []
let regexps = ref []
let should_set_cookies = ref false
let mapper =
object (this)
inherit Ast_traverse.map as super
val env = builtin_regexps
method define_regexp name p =
{< env = StringMap.add name (regexp_of_pattern env p) env >}
{<env = StringMap.add name (regexp_of_pattern env p) env>}
method! expr e =
method! expression e =
match e with
| [%expr [%sedlex [%e? {pexp_desc=Pexp_match (lexbuf, cases)}]]] ->
let lexbuf =
match lexbuf with
| {pexp_desc=Pexp_ident{txt=Lident lexbuf}} -> lexbuf
| _ ->
err lexbuf.pexp_loc "the matched expression must be a single identifier"
| [%expr [%sedlex [%e? { pexp_desc = Pexp_match _; _ } as match_expr]]]
->
fst (handle_sedlex_match ~env ~map_rhs:this#expression match_expr)
| [%expr
let [%p? { ppat_desc = Ppat_var { txt = name; _ }; _ }] =
[%sedlex.regexp? [%p? p]]
in
let cases = List.rev cases in
let error =
match List.hd cases with
| {pc_lhs = [%pat? _]; pc_rhs = e; pc_guard = None} -> super # expr e
| {pc_lhs = p} ->
err p.ppat_loc "the last branch must be a catch-all error case"
in
let cases = List.rev (List.tl cases) in
let cases =
List.map
(function
| {pc_lhs = p; pc_rhs = e; pc_guard = None} -> regexp_of_pattern env p, super # expr e
| {pc_guard = Some e} ->
err e.pexp_loc "'when' guards are not supported"
) cases
in
gen_definition lexbuf cases error
| [%expr let [%p? {ppat_desc=Ppat_var{txt=name}}] = [%sedlex.regexp? [%p? p]] in [%e? body]] ->
(this # define_regexp name p) # expr body
| [%expr [%sedlex [%e? _]]] ->
err e.pexp_loc "the %sedlex extension is only recognized on match expressions"
| _ -> super # expr e
[%e? body]] ->
(this#define_regexp name p)#expression body
| [%expr [%sedlex [%e? _]]] ->
err e.pexp_loc
"the %%sedlex extension is only recognized on match expressions"
| _ -> super#expression e
val toplevel = true
method structure_with_regexps l =
let mapper = ref this in
let regexps = ref [] in
let l = List.concat
(List.map
(function
| [%stri let [%p? {ppat_desc=Ppat_var{txt=name}}] = [%sedlex.regexp? [%p? p]]] as i ->
regexps := i :: !regexps;
mapper := !mapper # define_regexp name p;
[]
| i ->
[ !mapper # structure_item i ]
) l) in
let l =
List.concat
(List.map
(function
| [%stri
let [%p? { ppat_desc = Ppat_var { txt = name; _ }; _ }] =
[%sedlex.regexp? [%p? p]]] as i ->
regexps := i :: !regexps;
mapper := !mapper#define_regexp name p;
[]
| i -> [!mapper#structure_item i])
l)
in
(l, List.rev !regexps)
method! structure l =
if toplevel then
let sub = {< toplevel = false >} in
let previous =
match Driver.get_cookie cookies "sedlex.regexps" ocaml_version with
| Some {pexp_desc = Pexp_extension (_, PStr l)} -> l
| Some _ -> assert false
| None -> []
in
let l, regexps = sub # structure_with_regexps (previous @ l) in
if toplevel then (
let sub = {<toplevel = false>} in
let l, regexps' = sub#structure_with_regexps (!previous @ l) in
let parts = List.map partition (get_partitions ()) in
let tables = List.map table (get_tables ()) in
Driver.set_cookie cookies "sedlex.regexps" ocaml_version (Exp.extension (Location.mknoloc "regexps", PStr regexps));
tables @ parts @ l
else
fst (this # structure_with_regexps l)
regexps := regexps';
should_set_cookies := true;
tables @ parts @ l)
else fst (this#structure_with_regexps l)
end
end
let pre_handler cookies =
previous :=
match Driver.Cookies.get cookies "sedlex.regexps" Ast_pattern.__ with
| Some { pexp_desc = Pexp_extension (_, PStr l); _ } -> l
| Some _ -> assert false
| None -> []
let post_handler cookies =
if !should_set_cookies then (
let loc = default_loc in
Driver.Cookies.set cookies "sedlex.regexps"
(pexp_extension ~loc ({ loc; txt = "regexps" }, PStr !regexps)))
let extensions =
[
Extension.declare "sedlex" Extension.Context.expression
Ast_pattern.(single_expr_payload __)
(fun ~loc:_ ~path:_ expr -> mapper#expression expr);
]
let () =
Driver.register
~name:"sedlex"
ocaml_version
(fun _ cookies -> Ast_mapper_class.to_mapper (mapper cookies))
Driver.Cookies.add_handler pre_handler;
Driver.Cookies.add_post_handler post_handler;
Driver.register_transformation "sedlex" ~impl:mapper#structure

View File

@ -1,6 +1,5 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(* Copyright 2026 by xenia <xenia@awoo.systems> *)
module Cset = Sedlex_cset
@ -17,6 +16,7 @@ type node = {
type regexp = node -> node
let cur_id = ref 0
let new_node () =
incr cur_id;
{ id = !cur_id; eps = []; trans = [] }
@ -24,22 +24,22 @@ let new_node () =
let seq r1 r2 succ = r1 (r2 succ)
let is_chars final = function
| {eps = []; trans = [c, f]} when f == final -> Some c
| { eps = []; trans = [(c, f)]; _ } when f == final -> Some c
| _ -> None
let chars c succ =
let n = new_node () in
n.trans <- [c,succ];
n.trans <- [(c, succ)];
n
let alt r1 r2 succ =
let nr1 = r1 succ and nr2 = r2 succ in
match is_chars succ nr1, is_chars succ nr2 with
| Some c1, Some c2 -> chars (Cset.union c1 c2) succ
| _ ->
let n = new_node () in
n.eps <- [r1 succ; r2 succ];
n
match (is_chars succ nr1, is_chars succ nr2) with
| Some c1, Some c2 -> chars (Cset.union c1 c2) succ
| _ ->
let n = new_node () in
n.eps <- [nr1; nr2];
n
let rep r succ =
let n = new_node () in
@ -57,22 +57,18 @@ let eps succ = succ (* eps for epsilon *)
let compl r =
let n = new_node () in
match is_chars n (r n) with
| Some c ->
Some (chars (Cset.difference Cset.any c))
| _ ->
None
| Some c -> Some (chars (Cset.difference Cset.any c))
| _ -> None
let pair_op f r0 r1 = (* Construct subtract or intersection *)
let pair_op f r0 r1 =
(* Construct subtract or intersection *)
let n = new_node () in
let to_chars r = is_chars n (r n) in
match to_chars r0, to_chars r1 with
| Some c0, Some c1 ->
Some (chars (f c0 c1))
| _ ->
None
match (to_chars r0, to_chars r1) with
| Some c0, Some c1 -> Some (chars (f c0 c1))
| _ -> None
let subtract = pair_op Cset.difference
let intersection = pair_op Cset.intersection
let compile_re re =
@ -82,36 +78,35 @@ let compile_re re =
(* Determinization *)
type state = node list
(* A state of the DFA corresponds to a set of nodes in the NFA. *)
(* A state of the DFA corresponds to a set of nodes in the NFA. *)
let rec add_node state node =
if List.memq node state then state else add_nodes (node::state) node.eps
and add_nodes state nodes =
List.fold_left add_node state nodes
if List.memq node state then state else add_nodes (node :: state) node.eps
and add_nodes state nodes = List.fold_left add_node state nodes
let transition (state : state) =
(* Merge transition with the same target *)
let rec norm = function
| (c1, n1)::((c2, n2)::q as l) ->
if n1 == n2 then norm ((Cset.union c1 c2, n1)::q)
else (c1, n1)::(norm l)
| l -> l in
| (c1, n1) :: ((c2, n2) :: q as l) ->
if n1 == n2 then norm ((Cset.union c1 c2, n1) :: q)
else (c1, n1) :: norm l
| l -> l
in
let t = List.concat (List.map (fun n -> n.trans) state) in
let t = norm (List.sort (fun (_, n1) (_, n2) -> n1.id - n2.id) t) in
(* Split char sets so as to make them disjoint *)
let split (all, t) (c0, n0) =
let t =
(Cset.difference c0 all, [n0]) ::
List.map (fun (c, ns) -> (Cset.intersection c c0, n0::ns)) t @
List.map (fun (c, ns) -> (Cset.difference c c0, ns)) t
(Cset.difference c0 all, [n0])
:: List.map (fun (c, ns) -> (Cset.intersection c c0, n0 :: ns)) t
@ List.map (fun (c, ns) -> (Cset.difference c c0, ns)) t
in
Cset.union all c0,
List.filter (fun (c, _) -> not (Cset.is_empty c)) t
(Cset.union all c0, List.filter (fun (c, _) -> not (Cset.is_empty c)) t)
in
let (_,t) = List.fold_left split (Cset.empty,[]) t in
let _, t = List.fold_left split (Cset.empty, []) t in
(* Epsilon closure of targets *)
let t = List.map (fun (c, ns) -> (c, add_nodes [] ns)) t in
@ -121,6 +116,9 @@ let transition (state : state) =
Array.sort (fun (c1, _) (c2, _) -> compare c1 c2) t;
t
type dfa_state = { trans : (Cset.t * int) array; finals : bool array }
type dfa = dfa_state array
let compile rs =
let rs = Array.map compile_re rs in
let counter = ref 0 in
@ -135,11 +133,64 @@ let compile rs =
let trans = transition state in
let trans = Array.map (fun (p, t) -> (p, aux t)) trans in
let finals = Array.map (fun (_, f) -> List.memq f state) rs in
Hashtbl.add states_def i (trans, finals);
Hashtbl.add states_def i { trans; finals };
i
in
let init = ref [] in
Array.iter (fun (i,_) -> init := add_node !init i) rs;
Array.iter (fun (i, _) -> init := add_node !init i) rs;
let i = aux !init in
assert(i = 0);
assert (i = 0);
Array.init !counter (Hashtbl.find states_def)
let cset_to_label cset =
let escape_dot c =
match c with
| '"' -> "\\\""
| '\\' -> "\\\\"
| '<' -> "\\<"
| '>' -> "\\>"
| _ -> String.make 1 c
in
let format_interval (lo, hi) =
if lo = -1 && hi = -1 then "EOF"
else if lo = hi then
if lo >= 32 && lo <= 126 then "'" ^ escape_dot (Char.chr lo) ^ "'"
else Printf.sprintf "U+%04X" lo
else if lo >= 32 && lo <= 126 && hi >= 32 && hi <= 126 then
"'" ^ escape_dot (Char.chr lo) ^ "'-'" ^ escape_dot (Char.chr hi) ^ "'"
else Printf.sprintf "U+%04X-U+%04X" lo hi
in
String.concat ", "
(List.map format_interval (cset : Cset.t :> (int * int) list))
let dfa_to_dot dfa =
let buf = Buffer.create 1024 in
let bprintf = Printf.bprintf in
bprintf buf "digraph {\n";
bprintf buf " rankdir=LR;\n";
bprintf buf " node [shape=circle];\n\n";
bprintf buf " _start [shape=point];\n";
bprintf buf " _start -> state0;\n\n";
Array.iteri
(fun i { trans; finals } ->
let accepted =
let acc = ref [] in
for r = Array.length finals - 1 downto 0 do
if finals.(r) then acc := r :: !acc
done;
!acc
in
(match accepted with
| [] -> bprintf buf " state%d [label=\"%d\"];\n" i i
| rules ->
bprintf buf
" state%d [label=\"%d\\n[rule %s]\", shape=doublecircle];\n" i i
(String.concat "," (List.map string_of_int rules)));
Array.iter
(fun (cset, target) ->
let label = cset_to_label cset in
bprintf buf " state%d -> state%d [label=\"%s\"];\n" i target label)
trans)
dfa;
bprintf buf "}\n";
Buffer.contents buf

View File

@ -1,24 +1,28 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(* Copyright 2026 by xenia <xenia@awoo.systems> *)
type regexp
val chars: Sedlex_cset.t -> regexp
val seq: regexp -> regexp -> regexp
val alt: regexp -> regexp -> regexp
val rep: regexp -> regexp
val plus: regexp -> regexp
val eps: regexp
val chars : Sedlex_cset.t -> regexp
val seq : regexp -> regexp -> regexp
val alt : regexp -> regexp -> regexp
val rep : regexp -> regexp
val plus : regexp -> regexp
val eps : regexp
val compl : regexp -> regexp option
val compl: regexp -> regexp option
(* If the argument is a single [chars] regexp, returns a regexp
which matches the complement set. Otherwise returns [None]. *)
val subtract: regexp -> regexp -> regexp option
(* If each argument is a single [chars] regexp, returns a regexp
which matches the set (arg1 - arg2). Otherwise returns [None]. *)
val intersection: regexp -> regexp -> regexp option
(* If each argument is a single [chars] regexp, returns a regexp
which matches the intersection set. Otherwise returns [None]. *)
(* If the argument is a single [chars] regexp, returns a regexp
which matches the complement set. Otherwise returns [None]. *)
val subtract : regexp -> regexp -> regexp option
val compile: regexp array -> ((Sedlex_cset.t * int) array * bool array) array
(* If each argument is a single [chars] regexp, returns a regexp
which matches the set (arg1 - arg2). Otherwise returns [None]. *)
val intersection : regexp -> regexp -> regexp option
(* If each argument is a single [chars] regexp, returns a regexp
which matches the intersection set. Otherwise returns [None]. *)
type dfa_state = { trans : (Sedlex_cset.t * int) array; finals : bool array }
type dfa = dfa_state array
val compile : regexp array -> dfa
val dfa_to_dot : dfa -> string

View File

@ -1,399 +1,4 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(* Copyright 2026 by xenia <xenia@awoo.systems> *)
(* Character sets are represented as lists of intervals. The
intervals must be non-overlapping and not collapsable, and the list
must be ordered in increasing order. *)
type t = (int * int) list
let max_code = 0x10ffff (* must be < max_int *)
let min_code = -1
let empty = []
let singleton i = [i,i]
let is_empty = function [] -> true | _ -> false
let interval i j = if i <= j then [i,j] else [j,i]
let eof = singleton (-1)
let any = interval 0 max_code
let rec union c1 c2 =
match c1,c2 with
| [], _ -> c2
| _, [] -> c1
| ((i1, j1) as s1)::r1, (i2, j2)::r2 ->
if (i1 <= i2) then
if j1 + 1 < i2 then s1::(union r1 c2)
else if (j1 < j2) then union r1 ((i1, j2)::r2)
else union c1 r2
else union c2 c1
let complement c =
let rec aux start = function
| [] -> if start <= max_code then [start,max_code] else []
| (i, j)::l -> (start, i-1)::(aux (succ j) l)
in
match c with
| (-1,j)::l -> aux (succ j) l
| l -> aux (-1) l
let intersection c1 c2 =
complement (union (complement c1) (complement c2))
let difference c1 c2 =
complement (union (complement c1) c2)
(* Unicode classes from XML *)
let base_char =
[ 0x0041,0x005A; 0x0061,0x007A; 0x00C0,0x00D6; 0x00D8,0x00F6;
0x00F8,0x00FF; 0x0100,0x0131; 0x0134,0x013E; 0x0141,0x0148;
0x014A,0x017E; 0x0180,0x01C3; 0x01CD,0x01F0; 0x01F4,0x01F5;
0x01FA,0x0217; 0x0250,0x02A8; 0x02BB,0x02C1; 0x0386,0x0386;
0x0388,0x038A; 0x038C,0x038C; 0x038E,0x03A1; 0x03A3,0x03CE;
0x03D0,0x03D6; 0x03DA,0x03DA; 0x03DC,0x03DC; 0x03DE,0x03DE;
0x03E0,0x03E0; 0x03E2,0x03F3;
0x0401,0x040C; 0x040E,0x044F; 0x0451,0x045C; 0x045E,0x0481;
0x0490,0x04C4; 0x04C7,0x04C8; 0x04CB,0x04CC; 0x04D0,0x04EB;
0x04EE,0x04F5; 0x04F8,0x04F9; 0x0531,0x0556; 0x0559,0x0559;
0x0561,0x0586; 0x05D0,0x05EA; 0x05F0,0x05F2; 0x0621,0x063A;
0x0641,0x064A; 0x0671,0x06B7; 0x06BA,0x06BE; 0x06C0,0x06CE;
0x06D0,0x06D3; 0x06D5,0x06D5; 0x06E5,0x06E6; 0x0905,0x0939;
0x093D,0x093D;
0x0958,0x0961; 0x0985,0x098C; 0x098F,0x0990; 0x0993,0x09A8;
0x09AA,0x09B0; 0x09B2,0x09B2; 0x09B6,0x09B9; 0x09DC,0x09DD;
0x09DF,0x09E1; 0x09F0,0x09F1; 0x0A05,0x0A0A; 0x0A0F,0x0A10;
0x0A13,0x0A28; 0x0A2A,0x0A30; 0x0A32,0x0A33; 0x0A35,0x0A36;
0x0A38,0x0A39; 0x0A59,0x0A5C; 0x0A5E,0x0A5E; 0x0A72,0x0A74;
0x0A85,0x0A8B; 0x0A8D,0x0A8D; 0x0A8F,0x0A91; 0x0A93,0x0AA8;
0x0AAA,0x0AB0; 0x0AB2,0x0AB3; 0x0AB5,0x0AB9; 0x0ABD,0x0ABD;
0x0AE0,0x0AE0;
0x0B05,0x0B0C; 0x0B0F,0x0B10; 0x0B13,0x0B28; 0x0B2A,0x0B30;
0x0B32,0x0B33; 0x0B36,0x0B39; 0x0B3D,0x0B3D; 0x0B5C,0x0B5D;
0x0B5F,0x0B61; 0x0B85,0x0B8A; 0x0B8E,0x0B90; 0x0B92,0x0B95;
0x0B99,0x0B9A; 0x0B9C,0x0B9C; 0x0B9E,0x0B9F; 0x0BA3,0x0BA4;
0x0BA8,0x0BAA; 0x0BAE,0x0BB5; 0x0BB7,0x0BB9; 0x0C05,0x0C0C;
0x0C0E,0x0C10; 0x0C12,0x0C28; 0x0C2A,0x0C33; 0x0C35,0x0C39;
0x0C60,0x0C61; 0x0C85,0x0C8C; 0x0C8E,0x0C90; 0x0C92,0x0CA8;
0x0CAA,0x0CB3; 0x0CB5,0x0CB9; 0x0CDE,0x0CDE; 0x0CE0,0x0CE1;
0x0D05,0x0D0C; 0x0D0E,0x0D10; 0x0D12,0x0D28; 0x0D2A,0x0D39;
0x0D60,0x0D61; 0x0E01,0x0E2E; 0x0E30,0x0E30; 0x0E32,0x0E33;
0x0E40,0x0E45; 0x0E81,0x0E82; 0x0E84,0x0E84; 0x0E87,0x0E88;
0x0E8A,0x0E8A;
0x0E8D,0x0E8D; 0x0E94,0x0E97; 0x0E99,0x0E9F; 0x0EA1,0x0EA3;
0x0EA5,0x0EA5;
0x0EA7,0x0EA7; 0x0EAA,0x0EAB; 0x0EAD,0x0EAE; 0x0EB0,0x0EB0;
0x0EB2,0x0EB3;
0x0EBD,0x0EBD; 0x0EC0,0x0EC4; 0x0F40,0x0F47; 0x0F49,0x0F69;
0x10A0,0x10C5; 0x10D0,0x10F6; 0x1100,0x1100; 0x1102,0x1103;
0x1105,0x1107; 0x1109,0x1109; 0x110B,0x110C; 0x110E,0x1112;
0x113C,0x113C;
0x113E,0x113E; 0x1140,0x1140; 0x114C,0x114C; 0x114E,0x114E;
0x1150,0x1150; 0x1154,0x1155; 0x1159,0x1159;
0x115F,0x1161; 0x1163,0x1163; 0x1165,0x1165; 0x1167,0x1167;
0x1169,0x1169; 0x116D,0x116E;
0x1172,0x1173; 0x1175,0x1175; 0x119E,0x119E; 0x11A8,0x11A8;
0x11AB,0x11AB; 0x11AE,0x11AF;
0x11B7,0x11B8; 0x11BA,0x11BA; 0x11BC,0x11C2; 0x11EB,0x11EB;
0x11F0,0x11F0; 0x11F9,0x11F9;
0x1E00,0x1E9B; 0x1EA0,0x1EF9; 0x1F00,0x1F15; 0x1F18,0x1F1D;
0x1F20,0x1F45; 0x1F48,0x1F4D; 0x1F50,0x1F57; 0x1F59,0x1F59;
0x1F5B,0x1F5B;
0x1F5D,0x1F5D; 0x1F5F,0x1F7D; 0x1F80,0x1FB4; 0x1FB6,0x1FBC;
0x1FBE,0x1FBE;
0x1FC2,0x1FC4; 0x1FC6,0x1FCC; 0x1FD0,0x1FD3; 0x1FD6,0x1FDB;
0x1FE0,0x1FEC; 0x1FF2,0x1FF4; 0x1FF6,0x1FFC; 0x2126,0x2126;
0x212A,0x212B; 0x212E,0x212E; 0x2180,0x2182; 0x3041,0x3094;
0x30A1,0x30FA; 0x3105,0x312C; 0xAC00,0xD7A3 ]
let ideographic =
[ 0x3007,0x3007; 0x3021,0x3029; 0x4E00,0x9FA5 ]
let combining_char =
[ 0x0300,0x0345; 0x0360,0x0361; 0x0483,0x0486; 0x0591,0x05A1;
0x05A3,0x05B9; 0x05BB,0x05BD; 0x05BF,0x05BF; 0x05C1,0x05C2;
0x05C4,0x05C4; 0x064B,0x0652; 0x0670,0x0670; 0x06D6,0x06DC;
0x06DD,0x06DF; 0x06E0,0x06E4; 0x06E7,0x06E8; 0x06EA,0x06ED;
0x0901,0x0903; 0x093C,0x093C; 0x093E,0x094C; 0x094D,0x094D;
0x0951,0x0954; 0x0962,0x0963; 0x0981,0x0983; 0x09BC,0x09BC;
0x09BE,0x09BE; 0x09BF,0x09BF; 0x09C0,0x09C4; 0x09C7,0x09C8;
0x09CB,0x09CD; 0x09D7,0x09D7; 0x09E2,0x09E3; 0x0A02,0x0A02;
0x0A3C,0x0A3C; 0x0A3E,0x0A3E; 0x0A3F,0x0A3F; 0x0A40,0x0A42;
0x0A47,0x0A48; 0x0A4B,0x0A4D; 0x0A70,0x0A71; 0x0A81,0x0A83;
0x0ABC,0x0ABC; 0x0ABE,0x0AC5; 0x0AC7,0x0AC9; 0x0ACB,0x0ACD;
0x0B01,0x0B03; 0x0B3C,0x0B3C; 0x0B3E,0x0B43; 0x0B47,0x0B48;
0x0B4B,0x0B4D; 0x0B56,0x0B57; 0x0B82,0x0B83; 0x0BBE,0x0BC2;
0x0BC6,0x0BC8; 0x0BCA,0x0BCD; 0x0BD7,0x0BD7; 0x0C01,0x0C03;
0x0C3E,0x0C44; 0x0C46,0x0C48; 0x0C4A,0x0C4D; 0x0C55,0x0C56;
0x0C82,0x0C83; 0x0CBE,0x0CC4; 0x0CC6,0x0CC8; 0x0CCA,0x0CCD;
0x0CD5,0x0CD6; 0x0D02,0x0D03; 0x0D3E,0x0D43; 0x0D46,0x0D48;
0x0D4A,0x0D4D; 0x0D57,0x0D57; 0x0E31,0x0E31; 0x0E34,0x0E3A;
0x0E47,0x0E4E; 0x0EB1,0x0EB1; 0x0EB4,0x0EB9; 0x0EBB,0x0EBC;
0x0EC8,0x0ECD; 0x0F18,0x0F19; 0x0F35,0x0F35; 0x0F37,0x0F37;
0x0F39,0x0F39; 0x0F3E,0x0F3E; 0x0F3F,0x0F3F; 0x0F71,0x0F84;
0x0F86,0x0F8B; 0x0F90,0x0F95; 0x0F97,0x0F97; 0x0F99,0x0FAD;
0x0FB1,0x0FB7; 0x0FB9,0x0FB9; 0x20D0,0x20DC; 0x20E1,0x20E1;
0x302A,0x302F; 0x3099,0x3099; 0x309A,0x309A ]
let digit =
[ 0x0030,0x0039;
0x0660,0x0669; 0x06F0,0x06F9; 0x0966,0x096F; 0x09E6,0x09EF;
0x0A66,0x0A6F; 0x0AE6,0x0AEF; 0x0B66,0x0B6F; 0x0BE7,0x0BEF;
0x0C66,0x0C6F; 0x0CE6,0x0CEF; 0x0D66,0x0D6F; 0x0E50,0x0E59;
0x0ED0,0x0ED9; 0x0F20,0x0F29 ]
let extender =
[ 0x00B7,0x00B7; 0x02D0,0x02D1; 0x0387,0x0387; 0x0640,0x0640;
0x0E46,0x0E46; 0x0EC6,0x0EC6; 0x3005,0x3005; 0x3031,0x3035;
0x309D,0x309E; 0x30FC,0x30FE ]
let blank =
[ 0x0009,0x000A; 0x000D,0x000D; 0x0020,0x0020 ]
let letter = union base_char ideographic
(* Letters to be used in identifiers, as specified
by ISO ....
Data provided by John M. Skaller *)
let tr8876_ident_char = [
(* ASCII *)
(0x0041,0x005a);
(0x0061,0x007a);
(* Latin *)
(0x00c0,0x00d6);
(0x00d8,0x00f6);
(0x00f8,0x01f5);
(0x01fa,0x0217);
(0x0250,0x02a8);
(* Greek *)
(0x0384,0x0384);
(0x0388,0x038a);
(0x038c,0x038c);
(0x038e,0x03a1);
(0x03a3,0x03ce);
(0x03d0,0x03d6);
(0x03da,0x03da);
(0x03dc,0x03dc);
(0x03de,0x03de);
(0x03e0,0x03e0);
(0x03e2,0x03f3);
(* Cyrillic *)
(0x0401,0x040d);
(0x040f,0x044f);
(0x0451,0x045c);
(0x045e,0x0481);
(0x0490,0x04c4);
(0x04c7,0x04c4);
(0x04cb,0x04cc);
(0x04d0,0x04eb);
(0x04ee,0x04f5);
(0x04f8,0x04f9);
(* Armenian *)
(0x0531,0x0556);
(0x0561,0x0587);
(0x04d0,0x04eb);
(* Hebrew *)
(0x05d0,0x05ea);
(0x05f0,0x05f4);
(* Arabic *)
(0x0621,0x063a);
(0x0640,0x0652);
(0x0670,0x06b7);
(0x06ba,0x06be);
(0x06c0,0x06ce);
(0x06e5,0x06e7);
(* Devanagari *)
(0x0905,0x0939);
(0x0958,0x0962);
(* Bengali *)
(0x0985,0x098c);
(0x098f,0x0990);
(0x0993,0x09a8);
(0x09aa,0x09b0);
(0x09b2,0x09b2);
(0x09b6,0x09b9);
(0x09dc,0x09dd);
(0x09df,0x09e1);
(0x09f0,0x09f1);
(* Gurmukhi *)
(0x0a05,0x0a0a);
(0x0a0f,0x0a10);
(0x0a13,0x0a28);
(0x0a2a,0x0a30);
(0x0a32,0x0a33);
(0x0a35,0x0a36);
(0x0a38,0x0a39);
(0x0a59,0x0a5c);
(0x0a5e,0x0a5e);
(* Gunjarati *)
(0x0a85,0x0a8b);
(0x0a8d,0x0a8d);
(0x0a8f,0x0a91);
(0x0a93,0x0aa8);
(0x0aaa,0x0ab0);
(0x0ab2,0x0ab3);
(0x0ab5,0x0ab9);
(0x0ae0,0x0ae0);
(* Oriya *)
(0x0b05,0x0b0c);
(0x0b0f,0x0b10);
(0x0b13,0x0b28);
(0x0b2a,0x0b30);
(0x0b32,0x0b33);
(0x0b36,0x0b39);
(0x0b5c,0x0b5d);
(0x0b5f,0x0b61);
(* Tamil *)
(0x0b85,0x0b8a);
(0x0b8e,0x0b90);
(0x0b92,0x0b95);
(0x0b99,0x0b9a);
(0x0b9c,0x0b9c);
(0x0b9e,0x0b9f);
(0x0ba3,0x0ba4);
(0x0ba8,0x0baa);
(0x0bae,0x0bb5);
(0x0bb7,0x0bb9);
(* Telugu *)
(0x0c05,0x0c0c);
(0x0c0e,0x0c10);
(0x0c12,0x0c28);
(0x0c2a,0x0c33);
(0x0c35,0x0c39);
(0x0c60,0x0c61);
(* Kannada *)
(0x0c85,0x0c8c);
(0x0c8e,0x0c90);
(0x0c92,0x0ca8);
(0x0caa,0x0cb3);
(0x0cb5,0x0cb9);
(0x0ce0,0x0ce1);
(* Malayam *)
(0x0d05,0x0d0c);
(0x0d0e,0x0d10);
(0x0d12,0x0d28);
(0x0d2a,0x0d39);
(0x0d60,0x0d61);
(* Thai *)
(0x0e01,0x0e30);
(0x0e32,0x0e33);
(0x0e40,0x0e46);
(0x0e4f,0x0e5b);
(* Lao *)
(0x0e81,0x0e82);
(0x0e84,0x0e84);
(0x0e87,0x0e88);
(0x0e8a,0x0e8a);
(0x0e0d,0x0e0d);
(0x0e94,0x0e97);
(0x0e99,0x0e9f);
(0x0ea1,0x0ea3);
(0x0ea5,0x0ea5);
(0x0ea7,0x0ea7);
(0x0eaa,0x0eab);
(0x0ead,0x0eb0);
(0x0eb2,0x0eb3);
(0x0ebd,0x0ebd);
(0x0ec0,0x0ec4);
(0x0ec6,0x0ec6);
(* Georgian *)
(0x10a0,0x10c5);
(0x10d0,0x10f6);
(* Hangul Jamo *)
(0x1100,0x1159);
(0x1161,0x11a2);
(0x11a8,0x11f9);
(0x11d0,0x11f6);
(* Latin extensions *)
(0x1e00,0x1e9a);
(0x1ea0,0x1ef9);
(* Greek extended *)
(0x1f00,0x1f15);
(0x1f18,0x1f1d);
(0x1f20,0x1f45);
(0x1f48,0x1f4d);
(0x1f50,0x1f57);
(0x1f59,0x1f59);
(0x1f5b,0x1f5b);
(0x1f5d,0x1f5d);
(0x1f5f,0x1f7d);
(0x1f80,0x1fb4);
(0x1fb6,0x1fbc);
(0x1fc2,0x1fc4);
(0x1fc6,0x1fcc);
(0x1fd0,0x1fd3);
(0x1fd6,0x1fdb);
(0x1fe0,0x1fec);
(0x1ff2,0x1ff4);
(0x1ff6,0x1ffc);
(* Hiragana *)
(0x3041,0x3094);
(0x309b,0x309e);
(* Katakana *)
(0x30a1,0x30fe);
(* Bopmofo *)
(0x3105,0x312c);
(* CJK Unified Ideographs *)
(0x4e00,0x9fa5);
(* CJK Compatibility Ideographs *)
(0xf900,0xfa2d);
(* Arabic Presentation Forms *)
(0xfb1f,0xfb36);
(0xfb38,0xfb3c);
(0xfb3e,0xfb3e);
(0xfb40,0xfb41);
(0xfb42,0xfb44);
(0xfb46,0xfbb1);
(0xfbd3,0xfd35);
(* Arabic Presentation Forms-A *)
(0xfd50,0xfd85);
(0xfd92,0xfbc7);
(0xfdf0,0xfdfb);
(* Arabic Presentation Forms-B *)
(0xfe70,0xfe72);
(0xfe74,0xfe74);
(0xfe76,0xfefc);
(* Half width and Fullwidth Forms *)
(0xff21,0xff3a);
(0xff41,0xff5a);
(0xff66,0xffbe);
(0xffc2,0xffc7);
(0xffca,0xffcf);
(0xffd2,0xffd7);
(0xffd2,0xffd7);
(0xffda,0xffdc)
]
include Sedlex_utils.Cset

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@ -1,30 +0,0 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
(* Copyright 2005, 2013 by Alain Frisch and LexiFi. *)
(** Representation of sets of unicode code points. *)
type t = (int * int) list
val min_code: int
val max_code: int
val empty: t
val any: t
val union: t -> t -> t
val difference: t -> t -> t
val intersection: t -> t -> t
val is_empty: t -> bool
val eof: t
val singleton: int -> t
val interval: int -> int -> t
val letter: t
val digit: t
val extender: t
val base_char: t
val ideographic: t
val combining_char: t
val blank: t
val tr8876_ident_char: t

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@ -3,7 +3,6 @@
val version : string
module Categories : sig
val cc : Sedlex_cset.t
val cf : Sedlex_cset.t
val cn : Sedlex_cset.t
@ -34,27 +33,24 @@ module Categories : sig
val zl : Sedlex_cset.t
val zp : Sedlex_cset.t
val zs : Sedlex_cset.t
val list : (string * Sedlex_cset.t) list
end
module Properties : sig
val alphabetic : Sedlex_cset.t
val ascii_hex_digit : Sedlex_cset.t
val hex_digit : Sedlex_cset.t
val id_continue : Sedlex_cset.t
val id_start : Sedlex_cset.t
val lowercase : Sedlex_cset.t
val math : Sedlex_cset.t
val alphabetic : Sedlex_cset.t
val ascii_hex_digit : Sedlex_cset.t
val hex_digit : Sedlex_cset.t
val id_continue : Sedlex_cset.t
val id_start : Sedlex_cset.t
val lowercase : Sedlex_cset.t
val math : Sedlex_cset.t
val other_alphabetic : Sedlex_cset.t
val other_lowercase : Sedlex_cset.t
val other_math : Sedlex_cset.t
val other_uppercase : Sedlex_cset.t
val uppercase : Sedlex_cset.t
val white_space : Sedlex_cset.t
val xid_continue : Sedlex_cset.t
val xid_start : Sedlex_cset.t
val other_lowercase : Sedlex_cset.t
val other_math : Sedlex_cset.t
val other_uppercase : Sedlex_cset.t
val uppercase : Sedlex_cset.t
val white_space : Sedlex_cset.t
val xid_continue : Sedlex_cset.t
val xid_start : Sedlex_cset.t
val list : (string * Sedlex_cset.t) list
end

49
src/syntax/utf8.ml Normal file
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@ -0,0 +1,49 @@
open Sedlexing
let unsafe_byte s j = Char.code (String.unsafe_get s j)
let malformed s j l = `Malformed (String.sub s j l)
let r_utf_8 s j l =
(* assert (0 <= j && 0 <= l && j + l <= String.length s); *)
let uchar c = `Uchar (Uchar.unsafe_of_int c) in
match l with
| 1 -> uchar (unsafe_byte s j)
| 2 -> (
let b0 = unsafe_byte s j in
let b1 = unsafe_byte s (j + 1) in
match Utf8.Helper.check_two b0 b1 with
| i -> uchar i
| exception MalFormed -> malformed s j l)
| 3 -> (
let b0 = unsafe_byte s j in
let b1 = unsafe_byte s (j + 1) in
let b2 = unsafe_byte s (j + 2) in
match Utf8.Helper.check_three b0 b1 b2 with
| i -> uchar i
| exception MalFormed -> malformed s j l)
| 4 -> (
let b0 = unsafe_byte s j in
let b1 = unsafe_byte s (j + 1) in
let b2 = unsafe_byte s (j + 2) in
let b3 = unsafe_byte s (j + 3) in
match Utf8.Helper.check_four b0 b1 b2 b3 with
| i -> uchar i
| exception MalFormed -> malformed s j l)
| _ -> assert false
let fold ~f acc s =
let rec loop acc f s i last =
if i > last then acc
else (
match Utf8.Helper.width (String.unsafe_get s i) with
| exception MalFormed ->
loop (f acc i (malformed s i 1)) f s (i + 1) last
| need ->
let rem = last - i + 1 in
if rem < need then f acc i (malformed s i rem)
else loop (f acc i (r_utf_8 s i need)) f s (i + need) last)
in
let pos = 0 in
let len = String.length s in
let last = pos + len - 1 in
loop acc f s pos last

5
src/syntax/utf8.mli Normal file
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@ -0,0 +1,5 @@
val fold :
f:('a -> int -> [> `Malformed of string | `Uchar of Uchar.t ] -> 'a) ->
'a ->
string ->
'a

365
src/syntax/xml.ml Normal file
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@ -0,0 +1,365 @@
(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
open Sedlex_cset
(* Unicode classes from XML *)
let base_char =
let l =
[
(0x0041, 0x005A);
(0x0061, 0x007A);
(0x00C0, 0x00D6);
(0x00D8, 0x00F6);
(0x00F8, 0x00FF);
(0x0100, 0x0131);
(0x0134, 0x013E);
(0x0141, 0x0148);
(0x014A, 0x017E);
(0x0180, 0x01C3);
(0x01CD, 0x01F0);
(0x01F4, 0x01F5);
(0x01FA, 0x0217);
(0x0250, 0x02A8);
(0x02BB, 0x02C1);
(0x0386, 0x0386);
(0x0388, 0x038A);
(0x038C, 0x038C);
(0x038E, 0x03A1);
(0x03A3, 0x03CE);
(0x03D0, 0x03D6);
(0x03DA, 0x03DA);
(0x03DC, 0x03DC);
(0x03DE, 0x03DE);
(0x03E0, 0x03E0);
(0x03E2, 0x03F3);
(0x0401, 0x040C);
(0x040E, 0x044F);
(0x0451, 0x045C);
(0x045E, 0x0481);
(0x0490, 0x04C4);
(0x04C7, 0x04C8);
(0x04CB, 0x04CC);
(0x04D0, 0x04EB);
(0x04EE, 0x04F5);
(0x04F8, 0x04F9);
(0x0531, 0x0556);
(0x0559, 0x0559);
(0x0561, 0x0586);
(0x05D0, 0x05EA);
(0x05F0, 0x05F2);
(0x0621, 0x063A);
(0x0641, 0x064A);
(0x0671, 0x06B7);
(0x06BA, 0x06BE);
(0x06C0, 0x06CE);
(0x06D0, 0x06D3);
(0x06D5, 0x06D5);
(0x06E5, 0x06E6);
(0x0905, 0x0939);
(0x093D, 0x093D);
(0x0958, 0x0961);
(0x0985, 0x098C);
(0x098F, 0x0990);
(0x0993, 0x09A8);
(0x09AA, 0x09B0);
(0x09B2, 0x09B2);
(0x09B6, 0x09B9);
(0x09DC, 0x09DD);
(0x09DF, 0x09E1);
(0x09F0, 0x09F1);
(0x0A05, 0x0A0A);
(0x0A0F, 0x0A10);
(0x0A13, 0x0A28);
(0x0A2A, 0x0A30);
(0x0A32, 0x0A33);
(0x0A35, 0x0A36);
(0x0A38, 0x0A39);
(0x0A59, 0x0A5C);
(0x0A5E, 0x0A5E);
(0x0A72, 0x0A74);
(0x0A85, 0x0A8B);
(0x0A8D, 0x0A8D);
(0x0A8F, 0x0A91);
(0x0A93, 0x0AA8);
(0x0AAA, 0x0AB0);
(0x0AB2, 0x0AB3);
(0x0AB5, 0x0AB9);
(0x0ABD, 0x0ABD);
(0x0AE0, 0x0AE0);
(0x0B05, 0x0B0C);
(0x0B0F, 0x0B10);
(0x0B13, 0x0B28);
(0x0B2A, 0x0B30);
(0x0B32, 0x0B33);
(0x0B36, 0x0B39);
(0x0B3D, 0x0B3D);
(0x0B5C, 0x0B5D);
(0x0B5F, 0x0B61);
(0x0B85, 0x0B8A);
(0x0B8E, 0x0B90);
(0x0B92, 0x0B95);
(0x0B99, 0x0B9A);
(0x0B9C, 0x0B9C);
(0x0B9E, 0x0B9F);
(0x0BA3, 0x0BA4);
(0x0BA8, 0x0BAA);
(0x0BAE, 0x0BB5);
(0x0BB7, 0x0BB9);
(0x0C05, 0x0C0C);
(0x0C0E, 0x0C10);
(0x0C12, 0x0C28);
(0x0C2A, 0x0C33);
(0x0C35, 0x0C39);
(0x0C60, 0x0C61);
(0x0C85, 0x0C8C);
(0x0C8E, 0x0C90);
(0x0C92, 0x0CA8);
(0x0CAA, 0x0CB3);
(0x0CB5, 0x0CB9);
(0x0CDE, 0x0CDE);
(0x0CE0, 0x0CE1);
(0x0D05, 0x0D0C);
(0x0D0E, 0x0D10);
(0x0D12, 0x0D28);
(0x0D2A, 0x0D39);
(0x0D60, 0x0D61);
(0x0E01, 0x0E2E);
(0x0E30, 0x0E30);
(0x0E32, 0x0E33);
(0x0E40, 0x0E45);
(0x0E81, 0x0E82);
(0x0E84, 0x0E84);
(0x0E87, 0x0E88);
(0x0E8A, 0x0E8A);
(0x0E8D, 0x0E8D);
(0x0E94, 0x0E97);
(0x0E99, 0x0E9F);
(0x0EA1, 0x0EA3);
(0x0EA5, 0x0EA5);
(0x0EA7, 0x0EA7);
(0x0EAA, 0x0EAB);
(0x0EAD, 0x0EAE);
(0x0EB0, 0x0EB0);
(0x0EB2, 0x0EB3);
(0x0EBD, 0x0EBD);
(0x0EC0, 0x0EC4);
(0x0F40, 0x0F47);
(0x0F49, 0x0F69);
(0x10A0, 0x10C5);
(0x10D0, 0x10F6);
(0x1100, 0x1100);
(0x1102, 0x1103);
(0x1105, 0x1107);
(0x1109, 0x1109);
(0x110B, 0x110C);
(0x110E, 0x1112);
(0x113C, 0x113C);
(0x113E, 0x113E);
(0x1140, 0x1140);
(0x114C, 0x114C);
(0x114E, 0x114E);
(0x1150, 0x1150);
(0x1154, 0x1155);
(0x1159, 0x1159);
(0x115F, 0x1161);
(0x1163, 0x1163);
(0x1165, 0x1165);
(0x1167, 0x1167);
(0x1169, 0x1169);
(0x116D, 0x116E);
(0x1172, 0x1173);
(0x1175, 0x1175);
(0x119E, 0x119E);
(0x11A8, 0x11A8);
(0x11AB, 0x11AB);
(0x11AE, 0x11AF);
(0x11B7, 0x11B8);
(0x11BA, 0x11BA);
(0x11BC, 0x11C2);
(0x11EB, 0x11EB);
(0x11F0, 0x11F0);
(0x11F9, 0x11F9);
(0x1E00, 0x1E9B);
(0x1EA0, 0x1EF9);
(0x1F00, 0x1F15);
(0x1F18, 0x1F1D);
(0x1F20, 0x1F45);
(0x1F48, 0x1F4D);
(0x1F50, 0x1F57);
(0x1F59, 0x1F59);
(0x1F5B, 0x1F5B);
(0x1F5D, 0x1F5D);
(0x1F5F, 0x1F7D);
(0x1F80, 0x1FB4);
(0x1FB6, 0x1FBC);
(0x1FBE, 0x1FBE);
(0x1FC2, 0x1FC4);
(0x1FC6, 0x1FCC);
(0x1FD0, 0x1FD3);
(0x1FD6, 0x1FDB);
(0x1FE0, 0x1FEC);
(0x1FF2, 0x1FF4);
(0x1FF6, 0x1FFC);
(0x2126, 0x2126);
(0x212A, 0x212B);
(0x212E, 0x212E);
(0x2180, 0x2182);
(0x3041, 0x3094);
(0x30A1, 0x30FA);
(0x3105, 0x312C);
(0xAC00, 0xD7A3);
]
in
of_list l
let ideographic =
let l = [(0x3007, 0x3007); (0x3021, 0x3029); (0x4E00, 0x9FA5)] in
of_list l
let combining_char =
let l =
[
(0x0300, 0x0345);
(0x0360, 0x0361);
(0x0483, 0x0486);
(0x0591, 0x05A1);
(0x05A3, 0x05B9);
(0x05BB, 0x05BD);
(0x05BF, 0x05BF);
(0x05C1, 0x05C2);
(0x05C4, 0x05C4);
(0x064B, 0x0652);
(0x0670, 0x0670);
(0x06D6, 0x06DC);
(0x06DD, 0x06DF);
(0x06E0, 0x06E4);
(0x06E7, 0x06E8);
(0x06EA, 0x06ED);
(0x0901, 0x0903);
(0x093C, 0x093C);
(0x093E, 0x094C);
(0x094D, 0x094D);
(0x0951, 0x0954);
(0x0962, 0x0963);
(0x0981, 0x0983);
(0x09BC, 0x09BC);
(0x09BE, 0x09BE);
(0x09BF, 0x09BF);
(0x09C0, 0x09C4);
(0x09C7, 0x09C8);
(0x09CB, 0x09CD);
(0x09D7, 0x09D7);
(0x09E2, 0x09E3);
(0x0A02, 0x0A02);
(0x0A3C, 0x0A3C);
(0x0A3E, 0x0A3E);
(0x0A3F, 0x0A3F);
(0x0A40, 0x0A42);
(0x0A47, 0x0A48);
(0x0A4B, 0x0A4D);
(0x0A70, 0x0A71);
(0x0A81, 0x0A83);
(0x0ABC, 0x0ABC);
(0x0ABE, 0x0AC5);
(0x0AC7, 0x0AC9);
(0x0ACB, 0x0ACD);
(0x0B01, 0x0B03);
(0x0B3C, 0x0B3C);
(0x0B3E, 0x0B43);
(0x0B47, 0x0B48);
(0x0B4B, 0x0B4D);
(0x0B56, 0x0B57);
(0x0B82, 0x0B83);
(0x0BBE, 0x0BC2);
(0x0BC6, 0x0BC8);
(0x0BCA, 0x0BCD);
(0x0BD7, 0x0BD7);
(0x0C01, 0x0C03);
(0x0C3E, 0x0C44);
(0x0C46, 0x0C48);
(0x0C4A, 0x0C4D);
(0x0C55, 0x0C56);
(0x0C82, 0x0C83);
(0x0CBE, 0x0CC4);
(0x0CC6, 0x0CC8);
(0x0CCA, 0x0CCD);
(0x0CD5, 0x0CD6);
(0x0D02, 0x0D03);
(0x0D3E, 0x0D43);
(0x0D46, 0x0D48);
(0x0D4A, 0x0D4D);
(0x0D57, 0x0D57);
(0x0E31, 0x0E31);
(0x0E34, 0x0E3A);
(0x0E47, 0x0E4E);
(0x0EB1, 0x0EB1);
(0x0EB4, 0x0EB9);
(0x0EBB, 0x0EBC);
(0x0EC8, 0x0ECD);
(0x0F18, 0x0F19);
(0x0F35, 0x0F35);
(0x0F37, 0x0F37);
(0x0F39, 0x0F39);
(0x0F3E, 0x0F3E);
(0x0F3F, 0x0F3F);
(0x0F71, 0x0F84);
(0x0F86, 0x0F8B);
(0x0F90, 0x0F95);
(0x0F97, 0x0F97);
(0x0F99, 0x0FAD);
(0x0FB1, 0x0FB7);
(0x0FB9, 0x0FB9);
(0x20D0, 0x20DC);
(0x20E1, 0x20E1);
(0x302A, 0x302F);
(0x3099, 0x3099);
(0x309A, 0x309A);
]
in
of_list l
let digit =
let l =
[
(0x0030, 0x0039);
(0x0660, 0x0669);
(0x06F0, 0x06F9);
(0x0966, 0x096F);
(0x09E6, 0x09EF);
(0x0A66, 0x0A6F);
(0x0AE6, 0x0AEF);
(0x0B66, 0x0B6F);
(0x0BE7, 0x0BEF);
(0x0C66, 0x0C6F);
(0x0CE6, 0x0CEF);
(0x0D66, 0x0D6F);
(0x0E50, 0x0E59);
(0x0ED0, 0x0ED9);
(0x0F20, 0x0F29);
]
in
of_list l
let extender =
let l =
[
(0x00B7, 0x00B7);
(0x02D0, 0x02D1);
(0x0387, 0x0387);
(0x0640, 0x0640);
(0x0E46, 0x0E46);
(0x0EC6, 0x0EC6);
(0x3005, 0x3005);
(0x3031, 0x3035);
(0x309D, 0x309E);
(0x30FC, 0x30FE);
]
in
of_list l
let blank =
let l = [(0x0009, 0x000A); (0x000D, 0x000D); (0x0020, 0x0020)] in
of_list l
let letter = union base_char ideographic

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(* The package sedlex is released under the terms of an MIT-like license. *)
(* See the attached LICENSE file. *)
(** Unicode classes from XML *)
open Sedlex_cset
val letter : t
val digit : t
val extender : t
val base_char : t
val ideographic : t
val combining_char : t
val blank : t

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(library
(name sedlex_gen_test)
(libraries noslop-sedlex)
(inline_tests)
(enabled_if
(>= %{ocaml_version} 4.14))
(preprocess
(pps ppx_sedlex_test ppx_expect)))

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let%expect_test "simple string match" =
(match%sedlex_test buf with "ab" | "de" -> () | _ -> ());
[%expect
{|
DOT:
digraph {
rankdir=LR;
node [shape=circle];
_start [shape=point];
_start -> state0;
state0 [label="0"];
state0 -> state1 [label="'a'"];
state0 -> state3 [label="'d'"];
state1 [label="1"];
state1 -> state2 [label="'b'"];
state2 [label="2\n[rule 0]", shape=doublecircle];
state3 [label="3"];
state3 -> state2 [label="'e'"];
}
CODE:
let rec __sedlex_state_0 buf =
match __sedlex_partition_1 (Sedlexing.__private__next_int buf) with
| 0 -> __sedlex_state_1 buf
| 1 -> __sedlex_state_3 buf
| _ -> Sedlexing.backtrack buf
and __sedlex_state_1 buf =
match __sedlex_partition_2 (Sedlexing.__private__next_int buf) with
| 0 -> 0
| _ -> Sedlexing.backtrack buf
and __sedlex_state_3 buf =
match __sedlex_partition_3 (Sedlexing.__private__next_int buf) with
| 0 -> 0
| _ -> Sedlexing.backtrack buf in
Sedlexing.start buf; (match __sedlex_state_0 buf with | 0 -> () | _ -> ())
|}]
let%expect_test "character class" =
(match%sedlex_test buf with Plus 'a' .. 'z' -> () | _ -> ());
[%expect
{|
DOT:
digraph {
rankdir=LR;
node [shape=circle];
_start [shape=point];
_start -> state0;
state0 [label="0"];
state0 -> state1 [label="'a'-'z'"];
state1 [label="1\n[rule 0]", shape=doublecircle];
state1 -> state1 [label="'a'-'z'"];
}
CODE:
let rec __sedlex_state_0 buf =
match __sedlex_partition_1 (Sedlexing.__private__next_int buf) with
| 0 -> __sedlex_state_1 buf
| _ -> Sedlexing.backtrack buf
and __sedlex_state_1 buf =
Sedlexing.mark buf 0;
(match __sedlex_partition_1 (Sedlexing.__private__next_int buf) with
| 0 -> __sedlex_state_1 buf
| _ -> Sedlexing.backtrack buf) in
Sedlexing.start buf; (match __sedlex_state_0 buf with | 0 -> () | _ -> ())
|}]
let%expect_test "multi-rule" =
(match%sedlex_test buf with
| "ab" -> ()
| "de" -> ()
| Plus '0' .. '9' -> ()
| _ -> ());
[%expect
{|
DOT:
digraph {
rankdir=LR;
node [shape=circle];
_start [shape=point];
_start -> state0;
state0 [label="0"];
state0 -> state1 [label="'0'-'9'"];
state0 -> state2 [label="'a'"];
state0 -> state4 [label="'d'"];
state1 [label="1\n[rule 2]", shape=doublecircle];
state1 -> state1 [label="'0'-'9'"];
state2 [label="2"];
state2 -> state3 [label="'b'"];
state3 [label="3\n[rule 0]", shape=doublecircle];
state4 [label="4"];
state4 -> state5 [label="'e'"];
state5 [label="5\n[rule 1]", shape=doublecircle];
}
CODE:
let rec __sedlex_state_0 buf =
match __sedlex_partition_1 (Sedlexing.__private__next_int buf) with
| 0 -> __sedlex_state_1 buf
| 1 -> __sedlex_state_2 buf
| 2 -> __sedlex_state_4 buf
| _ -> Sedlexing.backtrack buf
and __sedlex_state_1 buf =
Sedlexing.mark buf 2;
(match __sedlex_partition_2 (Sedlexing.__private__next_int buf) with
| 0 -> __sedlex_state_1 buf
| _ -> Sedlexing.backtrack buf)
and __sedlex_state_2 buf =
match __sedlex_partition_3 (Sedlexing.__private__next_int buf) with
| 0 -> 0
| _ -> Sedlexing.backtrack buf
and __sedlex_state_4 buf =
match __sedlex_partition_4 (Sedlexing.__private__next_int buf) with
| 0 -> 1
| _ -> Sedlexing.backtrack buf in
Sedlexing.start buf;
(match __sedlex_state_0 buf with | 0 -> () | 1 -> () | 2 -> () | _ -> ())
|}]

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(library
(name sedlex_test)
(libraries noslop-sedlex)
(inline_tests
(deps UTF-8-test.txt))
(enabled_if
(>= %{ocaml_version} 4.14))
(preprocess
(pps noslop-sedlex.ppx ppx_expect)))

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let%expect_test _ =
let lb = Sedlexing.Utf8.from_string "ab" in
let res =
match%sedlex lb with
| 'a' -> ( match%sedlex lb with 'b' -> "ok" | _ -> "error")
| _ -> "error"
in
print_endline res;
[%expect {| ok |}]

6
test/ppx_test/dune Normal file
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(library
(name ppx_sedlex_test)
(kind ppx_rewriter)
(libraries ppxlib noslop-sedlex.ppx)
(preprocess
(pps ppxlib.metaquot)))

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open Ppxlib
module P = Sedlex_ppx.Ppx_sedlex
module S = Sedlex_ppx.Sedlex
let reset_state () =
P.partition_counter := 0;
P.table_counter := 0;
Hashtbl.clear P.partitions;
Hashtbl.clear P.tables
let clear_tables () =
Hashtbl.clear P.partitions;
Hashtbl.clear P.tables
let expand ~ctxt:_ expr =
reset_state ();
let loc = Location.none in
let code_expr, auto =
P.handle_sedlex_match ~env:P.builtin_regexps ~map_rhs:Fun.id expr
in
let code_str = Pprintast.string_of_expression code_expr in
let dot_str = S.dfa_to_dot auto in
clear_tables ();
[%expr
print_string "DOT:\n";
print_string [%e Ast_builder.Default.estring ~loc dot_str];
print_string "CODE:\n";
print_string [%e Ast_builder.Default.estring ~loc code_str];
print_newline ()]
let ext =
Extension.V3.declare "sedlex_test" Extension.Context.expression
Ast_pattern.(single_expr_payload __)
expand
let () = Driver.register_transformation "sedlex_test" ~extensions:[ext]

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open Printf
let next_tok buf =
let open Sedlexing.Utf8 in
match%sedlex buf with
| "a", Utf8 (Chars "+-×÷") -> sprintf "with Chars: %s" (lexeme buf)
| "b", Utf8 ("+" | "-" | "×" | "÷") ->
sprintf "with or_pattern: %s" (lexeme buf)
| Latin1 "\xc0", Utf8 "À", Ascii (Utf8 (Latin1 (Utf8 (Chars "À")))) ->
sprintf "mixed encoding: %s" (lexeme buf)
| Ascii (Star '\x00' .. '\x7f') -> sprintf "only ascii: %s" (lexeme buf)
| Utf8 (Star '\x00' .. '\x7f') ->
assert false
(* utf8 char interval can only match ascii because of the OCaml lexer. The regexp above should match instead *)
| Latin1 (Star '\x00' .. '\xff') -> sprintf "only latin1: %s" (lexeme buf)
| _ -> failwith (sprintf "Unexpected character: %s" (lexeme buf))
let%expect_test _ =
Sedlexing.Utf8.from_string "a+" |> next_tok |> print_string;
[%expect {| with Chars: a+ |}];
Sedlexing.Utf8.from_string "" |> next_tok |> print_string;
[%expect {| with Chars: a÷ |}];
Sedlexing.Utf8.from_string "b+" |> next_tok |> print_string;
[%expect {| with or_pattern: b+ |}];
Sedlexing.Utf8.from_string "" |> next_tok |> print_string;
[%expect {| with or_pattern: b÷ |}];
Sedlexing.Utf8.from_string "ÀÀÀ" |> next_tok |> print_string;
[%expect {| mixed encoding: ÀÀÀ |}];
Sedlexing.Utf8.from_string "az\x7f"
|> next_tok |> String.escaped |> print_string;
[%expect {| only ascii: az\127 |}];
Sedlexing.Utf8.from_string "az\u{c0}" |> next_tok |> print_string;
[%expect {| only latin1: azÀ |}]