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302 Commits

Author SHA1 Message Date
Alex Orlenko 354c69acc4 Update README 2023-03-30 23:22:01 +01:00
Alex Orlenko 6fa0a78ec0 Prepare v0.9.0-beta.1 2023-03-30 23:18:10 +01:00
Alex Orlenko f66932e8d2 Revert "Rename Owned*::to_ref() to as_ref()"
This reverts commit 5394faca16.
2023-03-30 22:35:43 +01:00
Alex Orlenko da6d5a93c9 Update rustyline dependency 2023-03-30 22:34:41 +01:00
Alex Orlenko 1be927bc5d Don't call error handler for memory errors in coroutines 2023-03-30 17:29:57 +01:00
Alex Orlenko 0848ddcdf7 Clippy 2023-03-28 20:53:22 +01:00
Alex Orlenko e182d474e0 More user-friendly error message about missing value for name attribute in module macro
Update the `[lua_module]` doc
2023-03-28 16:27:16 +01:00
Alex Orlenko 0f937b0a03 Switch to syn 2.0 2023-03-28 13:56:59 +01:00
Alex Orlenko cd9fc1d08f Update Error doc 2023-03-26 20:58:43 +01:00
Alex Orlenko d9aac08b81 Support setting memory limit for Lua 5.1/JIT/Luau
Other versions already support this feature.
Closes #119
2023-03-26 00:06:52 +00:00
Alex Orlenko 9c1669020b Clippy 2023-03-25 23:38:57 +00:00
Alex Orlenko 742307a267 Add &Lua to luau interrupt callback (fixes #197) 2023-03-25 16:30:31 +00:00
Alex Orlenko 781ded573a Seal LuaSerdeExt/TableExt/AnyUserDataExt 2023-03-19 02:38:21 +00:00
Alex Orlenko 6a647f58be Add Error::downcast_ref() method 2023-03-19 00:22:51 +00:00
Alex Orlenko 4bc6501d2e Tests for the ErrorContext trait 2023-03-17 01:31:07 +00:00
Alex Orlenko 8d80321738 Add ErrorContext extension trait to attach additional context to Error 2023-03-17 01:20:57 +00:00
Alex Orlenko a0d37fd182 Rename error to cause in Error::BadArgument 2023-03-16 23:48:54 +00:00
Alex Orlenko 03787668fd Improve error reporting when calling Rust functions from Lua.
In particular new error type `Error::BadArgument` added to help identify bad argument position or name (eg `self` for userdata).
2023-03-14 23:23:46 +00:00
Alex Orlenko 3059f82552 Update README and CHANGELOG 2023-03-12 23:54:19 +00:00
Alex Orlenko 22fbcfd9fb Update edition everywhere 2023-03-12 01:03:31 +00:00
Alex Orlenko 304880bfd1 Fast metatable check for Lua::push_userdata_ref 2023-03-10 10:34:41 +00:00
Alex Orlenko 33c276d0b4 Optimize userdata methods call when __index and fields_getters are nil 2023-03-04 11:58:34 +00:00
Alex Orlenko 87d027e8ac Rename rust_module in tests to test_module
This causes warning during compilation
2023-03-03 18:58:13 +00:00
Alex Orlenko d7db1b7f2e Add Waker lifetime to WakerGuard 2023-03-03 18:29:04 +00:00
Alex Orlenko 22c973af02 Async: Don't clone function when executing it from recycled thread 2023-03-03 18:22:39 +00:00
Alex Orlenko 8c18fa1764 Async: store pointer to Waker in extra data rather than in Lua ref thread 2023-03-03 15:19:54 +00:00
Alex Orlenko 5394faca16 Rename Owned*::to_ref() to as_ref() 2023-03-02 15:36:11 +00:00
Alex Orlenko 4a3f6d60ad Update exports in libs and prelude 2023-03-02 15:34:42 +00:00
Alex Orlenko 68b60e2a0a Add UserDataRef and UserDataRefMut types that implement FromLua
and can be used as accessors to underlying `AnyUserData` type.
2023-02-26 21:52:28 +00:00
Alex Orlenko 888bd77e60 Add AnyUserDataExt to prelude 2023-02-25 23:59:29 +00:00
Alex Orlenko 949906f9f7 Fix potential deadlock when trying to reuse dropped RegistryKey.
If no free registry id found, we call protect_lua! macro while keeping mutex guard to the unref list.
Protected calls can trigger garbage collection and if RegistryKey is placed in userdata being collected, this can lead to deadlock.
The solution is drop mutex guard as soon as possible.
Also this commit includes optimization in creating reference in Lua registry.
2023-02-22 20:15:40 +00:00
Alex Orlenko 94f01e597c Add AnyUserDataExt trait with auxiliary functions for AnyUserData 2023-02-18 23:40:28 +00:00
Alex Orlenko b8e3290f35 Update LuaRef/LuaOwnedRef
Move content of `Lua::make_owned_ref` into `LuaRef::into_owned`
Add crate-visible `Lua::clone` function (not trait)
2023-02-15 09:20:03 +00:00
Alex Orlenko 03ab828342 Return evicted value to Lua::set_app_data if it's already present.
Add "Panics" section to `Lua::*_app_data` docs.
2023-02-12 23:38:09 +00:00
Alex Orlenko b66bff9155 Drop Lua::async_scope as it's unsound 2023-02-12 22:25:10 +00:00
Alex Orlenko f52abf919e Add create_userdata_ref/create_userdata_ref_mut for scope (#206)
New methods would allow creating userdata objects from (mutable) reference
to a UserData of registered type.
2023-02-12 16:37:02 +00:00
Alex Orlenko b790b525c1 Fix clippy warnings 2023-02-07 22:43:48 +00:00
Alex Orlenko f5182e0584 Force protected mode for long enough strings 2023-02-06 23:46:31 +00:00
Alex Orlenko 47c8300ccf Allow registering and creating custom userdata types that don't necessary implement the UserData trait.
This is useful to register 3rd party types that cannot implement `UserData` due to Rust orphan rules.
See #206
2023-02-03 23:46:04 +00:00
Alex Orlenko 8339621f9c Rename to_lua_err -> into_lua_err 2023-01-06 21:35:15 +00:00
Alex Orlenko 16cbb442e5 Fix clippy warnings 2023-01-06 20:50:29 +00:00
Alex Orlenko 88da28a68d Allow deserializing values from serializable UserData using Lua::from_value() method.
Closes #240
2023-01-06 10:41:17 +00:00
Alex Orlenko a62061f453 Update README 2023-01-04 20:58:03 +00:00
Alex Orlenko cb3d58b1c7 Better Debug for String 2023-01-04 15:56:57 +00:00
Alex Orlenko fa46720f5a Add Table::clear() method 2023-01-02 15:50:21 +00:00
Alex Orlenko 72b9209ae9 Rename wrapped_failure/thread cache to pool 2022-12-30 21:48:12 +00:00
Alex Orlenko 0cb7058476 Rename MultiValue cache to pool 2022-12-30 14:50:39 +00:00
Alex Orlenko ac8b3424d1 Update criterion 2022-12-30 13:45:59 +00:00
Alex Orlenko 2cb4b49d0d Don't use unstable features in examples 2022-12-30 13:39:27 +00:00
Alex Orlenko d67332a3ac Refactor userdata::MetaMethod.
Take `impl AsRef<str>` as name of metamethod (instead of `Into<MetaMethod>`) in UserDataMethods/UserDataFields.
Change position of generic args in userdata.
2022-12-24 19:16:58 +00:00
Alex Orlenko 22c6e9a7e7 Enable unstable feature flag in CI 2022-12-22 16:30:14 +00:00
Alex Orlenko 1d4a135e8e Add Function::wrap/Function::wrap_mut/Function::wrap_async to wrap functions into a type that implements IntoLua trait.
This is useful to avoid calling `lua.create_function*` every time when `Function` handle is needed.
2022-12-22 16:24:35 +00:00
Alex Orlenko 9d28b790e7 Fix module tests 2022-12-21 21:05:23 +00:00
Alex Orlenko 61c285746c Remove FromLua impl for UserData+Clone 2022-12-20 23:30:18 +00:00
Alex Orlenko a13c188de3 Rename ToLua/ToLuaMulti -> IntoLua/IntoLuaMulti 2022-12-19 23:00:47 +00:00
Alex Orlenko c60f633a62 Add "unstable" feature flag.
Hide owned types under the new feature flag.
Drop OwnedString/OwnedThread types (unlikely they are useful).
2022-12-19 22:26:44 +00:00
Alex Orlenko 56abc4a700 Refactor AsChunk trait 2022-12-19 21:12:36 +00:00
Alex Orlenko 9b4e3a1598 Refactor LuaInner state
Add static_assertions to check for auto traits impl on compilation stage
Bump MSRV to 1.63 (required for `Ref::filter_map`)
2022-12-19 16:09:05 +00:00
Alex Orlenko 0aa30226df Check for invalid args when parsing #[lua_module(...)] proc macro 2022-12-18 00:35:41 +00:00
Alex Orlenko fdb5724053 Add ?Sized to PartialEq for Lua String 2022-12-18 00:35:41 +00:00
rise0chen b532f86674 feat: Support custom name of lua_module 2022-12-18 00:35:41 +00:00
Alex Orlenko c44463f030 Replace impl AsRef<str> with simple &str 2022-12-18 00:35:41 +00:00
Alex Orlenko de38e299fc Use impl AsRef<str> for userdata methods/fields instead of generic param.
Use `impl AsRef<str>` for module names and named registry values.
2022-12-18 00:35:41 +00:00
Alex Orlenko 7526773a90 Do not clear usevalues when taking value out of userdata.
It has big performance penalty.
Lua GC can collect uservalues when userdata is not referenced anymore.
2022-12-18 00:35:41 +00:00
Alex Orlenko bf79d9e75d Initial implementation of owned Lua types 2022-12-18 00:35:41 +00:00
Joel Natividad 02c08c6350 upgrade bstr from 0.2 to 1.0 2022-12-18 00:35:40 +00:00
Alex Orlenko 05eb20f9c6 Fix subtraction overflow when calculating index for MultiValue::get().
Return `None` instead of panic in debug mode.
Fixes #232
2022-12-15 21:10:31 +00:00
Alex Orlenko 9716918517 Fix lifetime of DebugNames in Debug::names() and DebugSource in Debug::source().
This can cause use-after-free if used wrong.
Now invalid code would not compile.
Reported in #230
2022-12-09 23:55:38 +00:00
Alex Orlenko c88417a3b6 Redefine _VERSION for Luau to include version number.
https://github.com/khvzak/mlua/discussions/228
2022-12-03 21:21:28 +00:00
Alex Orlenko 6e95386f30 Update Luau to 0.555 (luau-src 0.5.0)
This version includes inreased LUAI_MAXCSTACK limit (100000)
2022-12-03 17:55:26 +00:00
Alex Orlenko 6807dfa22e v0.8.6 2022-11-07 01:05:14 +00:00
Alex Orlenko f27c49f931 Fix bug when recycled Registry slot can be set to Nil.
This can result in allocating the same slot twice and rewriting old value.
Lua uses (registry) table length to find next free slot and having Nil in the middle of the table can impact length calculation.
With this fix we ensure that Nil values uses a special LUA_REFNIL slot.
2022-11-07 00:10:57 +00:00
Alex Orlenko 693a808b6e v0.8.5 2022-10-30 12:31:26 +00:00
Alex Orlenko a6ca65aa74 Better checks and tests when trying to modify a Luau readonly table 2022-10-30 11:41:09 +00:00
Alex Orlenko a7278cab78 Fix Table::raw_push for luau when readonly 2022-10-29 23:02:19 +01:00
Alex Orlenko e1bbd00a33 Fix getting caller information from Lua::load 2022-10-28 10:43:05 +01:00
Alex Orlenko e98998d6ac Add push/pop methods to Table 2022-10-23 23:27:17 +01:00
Alex Orlenko cca177df5b Minor serde optimizations 2022-10-23 03:13:24 +01:00
Alex Orlenko 65396a910f Optimize Lua::create_table to use reference thread if possible 2022-10-23 00:24:04 +01:00
Alex Orlenko de69d10d73 Optimize Lua::create_string to use reference thread if possible 2022-10-23 00:14:13 +01:00
Alex Orlenko 959e61b97c Optimize tables:
- Use reference thread directly for simple cases
- Fix issue when calling raw_set on readonly table (Luau)
- Add fasttrack methods for get/set/len when metatable is not set
2022-10-22 23:45:58 +01:00
Alex Orlenko 1040c0a347 Fix typo 2022-10-22 23:44:21 +01:00
Alex Orlenko 9045419586 Strings optimizations: get access to bytes directly from ref thread. 2022-10-22 23:43:08 +01:00
Alex Orlenko fcd162f3eb Replace Lua::ref_thread_exec 2022-10-22 23:39:49 +01:00
Alex Orlenko 0354703dbf Update formatting (Lua registry values) 2022-10-22 23:34:19 +01:00
Alex Orlenko 9831d0e397 Check that allocation does not exceed isize::MAX
See https://github.com/rust-lang/rust/issues/101899
2022-10-22 23:13:02 +01:00
Alex Orlenko 7f14d93c2b v0.8.4 2022-10-09 14:40:15 +01:00
Alex Orlenko 29c6c9cb58 Fix clippy warnings 2022-10-09 14:08:33 +01:00
Alex Orlenko e01af22bac Update push_userdata_ref 2022-10-09 13:56:30 +01:00
Alex Orlenko cfa959e599 Don't allocate extra byte for userdata (luau) 2022-10-09 13:56:06 +01:00
Alex Orlenko e523fb2c86 Update to Luau 0.548 (luau-src >=0.4) 2022-10-08 23:34:47 +01:00
Alex Orlenko 81a9998559 Update CI 2022-09-13 00:09:03 +01:00
Alex Orlenko 050ac4f5ad Add luaL_setfuncs to preserved functions 2022-09-05 23:13:06 +01:00
Alex Orlenko 967cbb53b0 Update compile tests 2022-08-23 23:12:37 +01:00
Alex Orlenko 44a8d86d8a Fix error message in tests (luau) 2022-08-23 23:08:00 +01:00
Alex Orlenko 33278d4a64 Check if chunk is empty in luaL_loadbufferx for Luau (fixes #200) 2022-08-23 11:35:08 +01:00
Trisha 20a16839aa Fix typo in doc comment 2022-08-23 01:47:17 +01:00
Alex Orlenko 83ed442bf9 v0.8.3 2022-08-02 12:43:15 +01:00
Alex Orlenko bf6708ba58 Fallback to Lua internal allocator if unable to create Lua VM with Rust one.
This should fix #194
2022-08-02 10:35:39 +01:00
Alex Orlenko 0cd724f63b Fix Lua assertion when inspecting another thread stack.
The thread can be dead and it's not safe to call __tostring metamethod (if present) on error object.
Fixes #195
2022-08-01 22:07:39 +01:00
Alex Orlenko 5330b900fd Check that Lua state is non-null in init_from_ptr() 2022-08-01 15:21:14 +01:00
Alex Orlenko ee32dc33f3 Check that lua_newstate() returns non-null Lua state 2022-08-01 12:56:36 +01:00
Alex Orlenko ab029b087d Close to-be-closed variables for Lua 5.4 when using call_async functions
Fixes #192
2022-07-31 15:33:02 +01:00
Alex Orlenko 185fee956d v0.8.2 2022-07-25 14:23:25 +01:00
Alex Orlenko 4fc69be5f6 Update rustyline dev dependency 2022-07-25 14:14:01 +01:00
Alex Orlenko 3ec076693a Add FAQ 2022-07-24 11:59:04 +01:00
Alex Orlenko 95adf8df8e Add __iter to destructed metatable (luau) 2022-07-24 11:55:36 +01:00
Alex Orlenko 4a25eab257 Merge pull request #189 from hack3ric/master
`Function::bind`: simply clone the function if args are empty `MultiValue`
2022-07-22 00:28:18 +01:00
Alex Orlenko 40fe937878 Fix a bug in Function::bind when args and binds are empty
This leads to a Lua assertion due to using wrong stack index
2022-07-22 00:24:53 +01:00
Eric Long a6b178328d Merge branch 'master' of https://github.com/hack3ric/mlua 2022-07-21 20:55:28 +08:00
Eric Long f3f173fcb6 Function::bind: simply clone the function if args are empty MultiValue 2022-07-21 20:54:49 +08:00
Alex Orlenko d3b48cf2f3 Use Luau tags to mark userdata objects as destructed 2022-07-18 10:38:22 +01:00
Alex Orlenko f9ff6116db Use MaybeUninit instead of hack in protect_lua_closure 2022-07-17 11:33:51 +01:00
Alex Orlenko f75af6d75f Fix clippy warnings 2022-07-17 11:11:30 +01:00
Alex Orlenko 059e41bafb Optimize WrappedFailure userdata detection.
This is done by comparing a metatable pointer to previously saved one (it never changes).
2022-07-17 11:00:46 +01:00
Alex Orlenko f7ee6dc635 Add lua_xpush to 5.1-5.4 2022-07-17 11:00:46 +01:00
Alex Orlenko 0919ff21c9 Merge pull request #181 from hack3ric/master
Add `MultiValue::get` & add clear error in `Index`
2022-07-01 10:10:16 +01:00
Eric Long 553251761f Add MultiValue::get & add clear error in Index 2022-07-01 01:59:40 +08:00
Alex Orlenko b46b476f80 v0.8.1 2022-06-29 15:41:22 +01:00
Alex Orlenko 70e16b51ae Set source name to full file path in Luau require 2022-06-29 11:25:16 +01:00
Alex Orlenko 9596b97faa Update Lua::create_userdata doc about sharing metatable.
Closes #175
2022-06-29 00:25:26 +01:00
Alex Orlenko 8cbb3d8fae Merge pull request #180 from khvzak/userdata_proxy
Add Lua::create_proxy for easy access to UserData static fields and f…
2022-06-29 00:05:59 +01:00
Alex Orlenko e7f494530f Add Lua::create_proxy for easy access to UserData static fields and functions
Closes #178
2022-06-28 23:03:29 +01:00
Alex Orlenko 3746c3614f Merge pull request #179 from hack3ric/master
Implement utilities for MultiValue
2022-06-28 22:56:28 +01:00
Alex Orlenko 9af1aaf889 Make clippy happy 2022-06-28 21:28:48 +01:00
Eric Long c20eb20a59 Implement utilities for MultiValue 2022-06-29 01:21:32 +08:00
Alex Orlenko 04ba93137c Add Table::to_pointer() and String::to_pointer() functions 2022-06-27 14:58:48 +01:00
Alex Orlenko 113f91ace3 Derive Default for Lua::MemoryInfo 2022-06-27 13:57:15 +01:00
Alex Orlenko ff0d923aae Don't use custom allocator for non-vendored LuaJIT (fixes #176) 2022-06-27 13:04:32 +01:00
Alex Orlenko d9ac7abff2 v0.8.0 2022-06-08 23:57:35 +01:00
Alex Orlenko 48aa97351d Add Sandboxing section to README 2022-06-08 23:56:26 +01:00
Alex Orlenko 4516ca0bb5 Forgotten part of userdata performance optimization for Lua 5.1 2022-06-07 17:59:22 +01:00
Alex Orlenko 9005f32a98 Add ffi::luau::lua_tolightuserdata introduced in Luau 0.528 2022-06-06 22:40:29 +01:00
Alex Orlenko 93d36b9068 More performance optimization (userdata part) 2022-06-06 21:42:55 +01:00
Alex Orlenko f9f32bffce Update bundled luau/jit versions 2022-06-06 15:59:28 +01:00
Alex Orlenko da5010e6de Switch to 2021 edition and bump MSRV to 1.56+ 2022-06-06 15:40:29 +01:00
Alex Orlenko 4afca8f5bb Prepare for v0.8.0 release 2022-06-02 22:44:07 +01:00
Alex Orlenko b065db37c2 Always use Rust allocator for Lua 5.1/u 2022-05-31 02:09:58 +01:00
Alex Orlenko a100ebb3d7 Fix luaL_requiref glb handling for Lua<=5.1 2022-05-30 21:45:25 +01:00
Alex Orlenko a05a58b258 Update integer/number coercion logic 2022-05-30 19:26:12 +01:00
Alex Orlenko 3766cee4dd Experimental optimization to skip oom check 2022-05-30 18:42:34 +01:00
Alex Orlenko 99becdb590 More inline attributes 2022-05-29 20:17:09 +01:00
Alex Orlenko 799b4e9f0d Make Variadic::new and MultiValue::new const 2022-05-28 21:13:49 +01:00
Alex Orlenko 93f0b2a5de Update type of lua_Integer for lua51/52 2022-05-27 12:26:56 +01:00
Alex Orlenko 62db3adde1 Add "send" test 2022-05-26 22:22:23 +01:00
Alex Orlenko afa343ff08 Add [track_caller] attribute when working with app data container 2022-05-26 20:16:09 +01:00
Alex Orlenko 4f06f614a9 v0.8.0-beta.5 2022-05-25 01:47:38 +01:00
Alex Orlenko 30ba616a8a Correctly deserialize newtype struct (#168) 2022-05-24 23:26:17 +01:00
Alex Orlenko 0076aa735a Add Function::coverage for Luau to obtain coverage report 2022-05-24 02:01:46 +01:00
Alex Orlenko bcf2cbea37 Add Value::to_pointer() function.
Closes #165 and #166.
2022-05-18 13:15:08 +01:00
Alex Orlenko 8cd594c609 Fix typo 2022-05-18 12:15:39 +01:00
Alex Orlenko 8d71ea79aa Cache bytecode for internal Lua chunks 2022-05-16 20:29:02 +01:00
Alex Orlenko 2a8c5c7f82 Refactor Function::bind implementation.
Make it possible to bind async function arguments.
Fixes #161
2022-05-15 01:15:31 +01:00
Alex Orlenko 6b2ceb60c4 Fix Send impl 2022-05-12 19:24:12 +01:00
Alex Orlenko 3aac7131ee Add Iter metamethod for Luau (available from 0.526) 2022-05-09 14:34:10 +01:00
Alex Orlenko 1807fa789c Don't require Lua sources for modules in build system 2022-05-07 22:16:54 +01:00
Alex Orlenko 7db7526a08 Update to Luau 0.526 2022-05-07 02:08:50 +01:00
Alex Orlenko bea9b0f8b5 Assert stack for Luau in callback_error_ext when operating on a cached wrapped failure.
Should solve #153.
2022-04-27 00:20:25 +01:00
Alex Orlenko 32a3f478bd v0.8.0-beta.4 2022-04-25 23:18:27 +01:00
Alex Orlenko 294b3b7aae Bump mlua_derive to 0.8.0-beta.1 2022-04-19 23:55:16 +01:00
Alex Orlenko b0dabe9d3c Add parking_lot feature to README 2022-04-19 23:50:11 +01:00
Alex Orlenko 5133a9837a Add Function::info() to get information about functions.
Closes #149 and #7.
2022-04-18 18:28:11 +01:00
Alex Orlenko 790df77965 Fix "unused" warning in tests 2022-04-17 22:39:21 +01:00
Alex Orlenko a62636fde0 More parking_lot ci tests 2022-04-17 17:29:51 +01:00
Alex Orlenko d77c0e3b8d Merge pull request #147 from sondr3/parking_lot
Add parking_lot dependency and feature
2022-04-17 01:38:03 +01:00
Alex Orlenko 3904213ed0 Faster lua_rotate for Lua < 5.3 2022-04-17 01:02:40 +01:00
Sondre Aasemoen a5ce0c1409 Add parking_lot dependency and feature 2022-04-16 19:45:21 +02:00
Alex Orlenko dba76f3994 Merge pull request #145 from zh-jq/patch-v0.7.4
support luajit version 2.0.4
2022-04-15 20:25:32 +01:00
Alex Orlenko 86f506a170 Fix clippy warnings 2022-04-14 21:55:36 +01:00
Alex Orlenko d3975bdf30 Refactor AsChunk trait.
Remove blanket implementation for T: AsRef<[u8]>
Implement for `std::path::Path`
2022-04-14 20:48:00 +01:00
Alex Orlenko 21affdadfd Remove Luau compiler options from Chunk in favour of setting Compiler instance.
Add ability to set global Luau compiler used for load all chunks including via require function.
2022-04-14 00:54:29 +01:00
Alex Orlenko 17473269f8 Update collectgarbage for Luau: support more options 2022-04-13 20:50:50 +01:00
Alex Orlenko 88e3e92009 Define CallbackUpvalue/AsyncCallbackUpvalue as type alises to Upvalue 2022-04-13 18:29:51 +01:00
Alex Orlenko 1ba7a409d5 Update compile tests 2022-04-13 14:30:52 +01:00
Alex Orlenko ef81f40afa Add tests for static Lua instance 2022-04-13 14:30:45 +01:00
Alex Orlenko a018d3b6dc Revert "Remove Lua::into_static/from_static"
This reverts commit f75b7b7879.
2022-04-13 13:44:59 +01:00
Alex Orlenko 0215c31a3a Refactor Lua instance structure.
The idea is to keep same Lua instance across all calls and only change context inside callbacks.
This should solve #104.
2022-04-13 13:44:12 +01:00
Alex Orlenko 5cd82d0f6b Refactor main_state handling 2022-04-13 13:44:11 +01:00
zhangjingqiang 75697e3a3b support luajit version 2.0.4 2022-04-13 13:36:45 +08:00
Alex Orlenko d1c80be033 Don't cast *const to *mut (for pointers comparison) 2022-04-08 22:52:55 +01:00
Alex Orlenko a8fef51e86 (minor) Fix capturing variables in protect_lua closures 2022-04-08 21:15:57 +01:00
Alex Orlenko 28a063c1e5 Implement Hash for Lua String 2022-04-08 20:02:18 +01:00
Alex Orlenko 55fac90a74 Fix Luau documentation in docs.rs
Enable `Lua::gc_inc` for Luau
Mark `debug` module as safe for Luau
2022-04-08 20:02:12 +01:00
Alex Orlenko 70d287cf9f Don't pass Lua handler to interrupt callback (Luau) as it's not safe.
Optimize callback_error_ext to check stack only before allocating a new WrappedFailure.
2022-04-08 10:45:28 +01:00
Alex Orlenko d607039a31 v0.8.0-beta.3 2022-04-03 23:38:41 +01:00
Alex Orlenko 0ea65a2985 Fix doc test 2022-04-03 22:13:54 +01:00
Alex Orlenko 8c333354d3 Update Luau to 0.521 2022-03-31 23:28:37 +01:00
Alex Orlenko f63f147265 Add set_mutable_globals to Luau compiler 2022-03-31 20:35:52 +01:00
Alex Orlenko 595dc3e95f Move some Luau functionality to a new module
Immplement native "vector" function to construct vectors
2022-03-31 19:31:37 +01:00
Alex Orlenko ac28c8d8d2 Add vector_lib/vector_ctor options to Luau Compiler (hidden) 2022-03-31 19:05:19 +01:00
Alex Orlenko d5315da8d1 Fix tests 2022-03-31 12:23:21 +01:00
Alex Orlenko a7cc7f328a Increase minimum lua-src version to 544 2022-03-31 00:09:52 +01:00
Alex Orlenko 516f01ed44 Increase internal caches size 2022-03-31 00:07:05 +01:00
Alex Orlenko 4492a20bbc Make LuaHook as Fn instead of FnMut to remove Mutex and improve performance 2022-03-30 23:55:34 +01:00
Alex Orlenko 595bc3a2b3 Support Luau interrupts (closes #138) 2022-03-30 22:01:06 +01:00
Alex Orlenko 87c10ca93d Sandboxing support 2022-03-28 23:42:35 +01:00
Alex Orlenko f75b7b7879 Remove Lua::into_static/from_static 2022-03-26 00:30:57 +00:00
Alex Orlenko de1cfa070f v0.8.0-beta.2 2022-03-25 00:44:02 +00:00
Alex Orlenko ec1fa04085 Update docs 2022-03-25 00:43:54 +00:00
Alex Orlenko 714dd6249f Enable Thread::reset for Luau 2022-03-23 21:13:48 +00:00
Alex Orlenko 5089dd73c0 Update luau-src to 0.2.1 to fix performance issues related to longjmp 2022-03-23 01:25:34 +00:00
Alex Orlenko 9533f08d3a Use lua_xpush for Luau 2022-03-23 01:24:54 +00:00
Alex Orlenko 0a3b65af88 Support readonly table attribute (luau) 2022-03-22 21:33:29 +00:00
Alex Orlenko 3a9c8c2da2 Add Luau vector datatype support 2022-03-22 21:14:06 +00:00
Alex Orlenko 952dae1de5 v0.8.0-beta.1 2022-03-22 01:01:18 +00:00
Alex Orlenko c88e5f0c4b Update README 2022-03-22 00:49:50 +00:00
Alex Orlenko 55b778c68b Fix clippy warnings 2022-03-22 00:47:31 +00:00
Alex Orlenko c6d3727171 Prepare v0.8.0-beta.1 2022-03-21 01:37:08 +00:00
Alex Orlenko 4e0ba6559e Add require function to Luau 2022-03-21 01:08:48 +00:00
Alex Orlenko 405cff5d49 Move StaticUserData* implementation from lua module to the new userdata_impl 2022-03-21 01:08:48 +00:00
Alex Orlenko 37cddc6b1c Replace compat53_countlevels with lua_stackdepth for Luau 2022-03-21 01:08:48 +00:00
Alex Orlenko 2c069f7033 Update to luau 0.519 2022-03-21 01:08:48 +00:00
Alex Orlenko 1e61d1dadc Return binary chunks support in safe mode.
Lua has many ways to load binary bytecode and this restriction was easy to bypass.
2022-03-21 01:08:47 +00:00
Alex Orlenko 32124b31a0 Move chunks structs to a new module.
Add Luau Compiler interface to compile sources.
2022-03-21 01:08:47 +00:00
Alex Orlenko 3e5f8e7bb8 Enable Lua::inspect_stack for Luau 2022-03-21 01:08:47 +00:00
Alex Orlenko cab92f4ea2 Update luaL_traceback for Luau 2022-03-21 01:08:47 +00:00
Alex Orlenko fa99f62a99 Fix __index and __newindex wrappers for Luau 2022-03-21 01:08:40 +00:00
Alex Orlenko eed7b1f3af More ffi module refactoring 2022-03-20 20:30:20 +00:00
Alex Orlenko c322e028e2 Initial Luau support 2022-03-20 20:30:20 +00:00
Alex Orlenko 6dc127f4eb Refactor ffi module
Initial Luau support work
2022-03-20 20:30:18 +00:00
Tarik02 d4f8dce597 Fix async userdata __index, __newindex metamethods 2022-03-20 20:03:47 +00:00
Alex Orlenko c85616137a v0.7.4 2022-03-01 19:59:49 +00:00
Alex Orlenko f52d106a82 Fix "find_dummy" compile error if no lua feature selected 2022-03-01 19:59:42 +00:00
Alex Orlenko 10826a7e67 Update create_registry_value doc 2022-02-15 19:45:37 +00:00
Alex Orlenko 18c3255c90 Optimize Lua::create_registry_value by reusing previously expired registry keys. 2022-02-14 21:20:57 +00:00
Alex Orlenko 6190427f37 Add Lua::replace_registry_value 2022-02-14 20:51:24 +00:00
Alex Orlenko 9a5a341e44 Recognize LuaJIT TCDATA type to generate correct panic message.
Relates to #127
Should be fixed in a next major release by adding support of TCDATA type.
2022-02-12 18:40:18 +00:00
Alex Orlenko dd91ebfbe5 Grow/check Lua stack in unpack 2022-02-12 17:10:43 +00:00
Alex Orlenko f9fe869b76 Optimize async calls:
Rewrite "unpack" function using C api rather than high level abstraction.
2022-01-29 12:39:30 +00:00
Alex Orlenko 6e4033abba Fix tests for Lua 5.4.4 2022-01-29 12:36:09 +00:00
Alex Orlenko c213a85ef0 v0.7.3 2022-01-19 18:12:45 +00:00
Alex Orlenko 4963cc1b8b Fix cross compilation (bug introduced in 84a174c) 2022-01-19 17:42:32 +00:00
Alex Orlenko 418e8fba32 v0.7.2 2022-01-17 11:12:46 +00:00
Alex Orlenko 08a7e30820 Update README 2022-01-17 11:11:56 +00:00
Alex Orlenko 19676bda40 Update CHANGELOG 2022-01-16 23:50:26 +00:00
Alex Orlenko 5a06778fbc Always restore original Lua state after creating Future in async call.
Fixes #121
2022-01-16 20:57:43 +00:00
Alex Orlenko e33bdddc7a Pass Box wrapped pointer to allocator fn instead of reference 2022-01-08 23:06:01 +00:00
Alex Orlenko cfb5d3fd45 Fix clippy warnings 2021-12-28 12:23:06 +00:00
Alex Orlenko 84a174c94d Allow pkg-config to omit include paths if they equals to standard.
See #114
2021-12-28 12:02:02 +00:00
Alex Orlenko 888b2bbf8d Refactor build/find_normal.rs to include error messages instead of unwrap() 2021-12-28 10:26:12 +00:00
Alex Orlenko 386eb7a2b7 v0.7.1 2021-12-23 19:42:52 +00:00
Alex Orlenko 66c9c633b2 Generate traceback from level 0 (instead of 1)
Fixes #112
2021-12-23 17:53:20 +00:00
Alex Orlenko f1e357ce52 Hide (doc) into_static/from_static methods 2021-12-01 00:28:08 +00:00
Alex Orlenko be09a1fabf Update lifetimes for few functions in Lua 2021-11-30 23:14:08 +00:00
Alex Orlenko 30af045c6f Lift minimum Rust requirement to 1.53+ 2021-11-29 10:46:09 +00:00
Alex Orlenko e809640b7e Update CI (switch to ubuntu-20.04 and add luajit52) 2021-11-27 13:44:30 +00:00
Alex Orlenko cb3ef20ffc Update README (remove ref to benchmarks) 2021-11-27 13:44:09 +00:00
Alex Orlenko 3b6564c02a Update compile tests (messages) 2021-11-27 13:42:22 +00:00
Alex Orlenko 89580dd863 v0.7.0 2021-11-25 18:18:38 +00:00
Alex Orlenko a0554a56d4 Update dependencies 2021-11-25 18:12:29 +00:00
Alex Orlenko 2fee3e7891 Update docs 2021-11-25 18:01:41 +00:00
Alex Orlenko 9f073ad879 Update README & CHANGELOG 2021-11-25 13:32:13 +00:00
Alex Orlenko 1b74c89509 More performance optimizations 2021-11-25 11:16:12 +00:00
Alex Orlenko 440862de38 Update tests 2021-11-23 19:12:27 +00:00
Alex Orlenko 066d28f5e5 Update Lua::unload doc & fix clippy warnings 2021-11-23 19:01:23 +00:00
Alex Orlenko 4528f93345 Merge pull request #103 from polachok/unload
Add `Lua::unload()` to unload modules
2021-11-23 18:11:13 +00:00
Alexander Polakov d49757c7db Add unload() to remove module 2021-11-23 18:36:57 +03:00
Alex Orlenko 170818c469 Add call() function to TableExt to call tables with __call metamethod as functions 2021-11-21 23:47:45 +00:00
Alex Orlenko 55c8af1e6b Add minimum Rust requirements to README 2021-11-21 23:42:49 +00:00
Alex Orlenko e2ebe65306 Add get_named_user_value and set_named_user_value to AnyUserData 2021-11-21 23:42:47 +00:00
Alex Orlenko f0f5a8a0af Update CHANGELOG 2021-11-17 23:41:30 +00:00
Alex Orlenko 0e1be19cbb Move hook_proc under Lua::set_hook to use callback_error_ext 2021-11-16 12:27:56 +00:00
Alex Orlenko 0ef709672d Add set_warning_function/remove_warning_function/warning functions to Lua for 5.4
This utilizes Lua 5.4 warnings system (https://www.lua.org/manual/5.4/manual.html#pdf-warn)
2021-11-16 12:05:34 +00:00
Alex Orlenko 41503b4fb8 Update callback_error_ext (+ fix callback multi states handling) 2021-11-16 11:53:51 +00:00
Alex Orlenko 19bd254e1e Update comments 2021-11-14 23:27:20 +00:00
Alex Orlenko 50f20e0c2c Add thread (coroutine) cache to reset and later reuse to execute async functions.
It works on Lua 5.4 and LuaJIT (vendored) with `lua_resetthread` function.
2021-11-14 23:19:47 +00:00
Alex Orlenko 7efe807199 Include StdLib to prelude 2021-11-14 23:19:47 +00:00
Alex Orlenko 63ea8c7662 Rename wrapped_failures pool to cache 2021-11-14 23:19:47 +00:00
Alex Orlenko 863d36d5a1 Performance optimization: cache and reuse MultiValue containers 2021-11-12 15:32:53 +00:00
Alex Orlenko a8017c10b9 Update callback_error(_ext) 2021-11-12 12:41:03 +00:00
Alex Orlenko 2c7d7117d2 Optimize MultiValue allocations (recycle old container) 2021-11-12 10:55:20 +00:00
Alex Orlenko 6d689c35aa Update hook::Debug struct 2021-11-09 18:20:36 +00:00
Alex Orlenko 8af1304fd0 Add Lua::inspect_stack to get information about the interpreter runtime stack.
This functionality is provided by `lua_getstack`.
2021-11-09 14:18:14 +00:00
Alex Orlenko 153502ec73 Add set_nth_user_value and get_nth_user_value to AnyUserData
with `n` up to 65535 for all Lua versions.
2021-11-08 21:16:31 +00:00
Alex Orlenko 2ea2b1f4fb Refactor Error::CallbackError reporting and include source to
fmt::Display implementation.
This fixes #71.
2021-11-07 22:53:37 +00:00
Alex Orlenko ef8c1556e6 Add optional Send to Lua::app_data 2021-11-07 15:03:17 +00:00
Alex Orlenko b0da2fc439 Switch Table::serialize to FxHashSet 2021-11-07 14:49:19 +00:00
Alex Orlenko 204eedde3c Merge branch 'dev' 2021-11-07 13:07:22 +00:00
Alex Orlenko fbc2973aff Fix recursive tables serialization when using serde::ser::Serialize
implementation for Table.
Fixes #98.
2021-11-06 21:12:00 +00:00
Alex Orlenko d0641d812f Refactor a bit conversion int->number 2021-11-04 13:15:26 +00:00
Alex Orlenko ad70ba54a5 Publish AnyUserData::take 2021-11-04 12:32:19 +00:00
Alex Orlenko 806f0bcef4 Add luajit52 support (LuaJIT with partial compatibility with Lua 5.2) 2021-11-04 12:26:11 +00:00
Alex Orlenko 0741db7565 Make (De)SerializeOptions as const 2021-11-04 01:07:38 +00:00
Alex Orlenko d88a4282c7 Replace macro-based implementation ToLua for arrays to const generics 2021-11-04 00:59:39 +00:00
Alex Orlenko d7d987fa14 Add async meta methods for all Lua except 51 2021-11-04 00:57:49 +00:00
Alex Orlenko 4d3ac6d8c5 Add new "application data" api 2021-10-19 11:45:39 +01:00
Alex Orlenko a9ca99349c Switch to FxHash 2021-10-19 11:45:38 +01:00
Alex Orlenko f71db80a74 Change definition of lua_State to opaque struct 2021-10-19 11:45:38 +01:00
Alex Orlenko 09af3e021a v0.6.6 2021-10-12 12:22:14 +01:00
Alex Orlenko 9e3d495f91 Calculate coverage for Lua 5.4 instead of Lua 5.3 2021-10-12 12:10:04 +01:00
Alex Orlenko cab2e5a48e Fix clippy warnings 2021-10-12 12:02:42 +01:00
Alex Orlenko 25a4879cde Update examples: async_http_client/async_http_server/async_tcp_server
Make them following best practices and remove `unsafe` code.
2021-10-12 11:55:25 +01:00
Alex Orlenko ed48b11e7f Update documentation references
Using rustdoc links (see RFC https://github.com/rust-lang/rfcs/pull/1946)
2021-10-12 00:49:45 +01:00
Alex Orlenko 559f9e6c6b Add target.aarch64-apple-darwin conf to module examples 2021-10-11 18:07:34 +01:00
Alex Orlenko 458b06796c Fixed LUA_REGISTRYINDEX when generating glue.rs on cross-compiling for lua51(jit) 2021-10-08 21:15:22 +01:00
Alex Orlenko 259eb09ae1 v0.6.5 2021-10-05 18:11:32 +01:00
Alex Orlenko a544e41b33 Add (hidden) method UserData::take() to take out value from userdata 2021-10-05 15:46:50 +01:00
Alex Orlenko 235fba821e Update CHANGELOG 2021-10-04 23:28:24 +01:00
Alex Orlenko c8c64a1b5a Add serializing i128/u128 types.
Fixes #81.
2021-10-04 23:20:11 +01:00
Alex Orlenko eff0bbb052 Add Location::caller() information to Lua::load() if chunk's name is None 2021-10-03 23:20:07 +01:00
Alex Orlenko d098c9ccf6 Refactor Waker handling in async code.
Instead of storing `Option<Waker>` in the Lua registry, store it on the reference thread.
It gives approx +10% performance gain when calling async function.
2021-10-03 22:09:19 +01:00
Alex Orlenko c62b17a5c8 Fixed bug when polling async futures (#77)
We expect first value returned via coroutine.yield() to be a special Pending type.
But instead we checked second value.
2021-10-02 07:23:24 +01:00
113 changed files with 14293 additions and 6396 deletions
+5 -5
View File
@@ -10,14 +10,14 @@ jobs:
options: --security-opt seccomp=unconfined
steps:
- name: Checkout repository
uses: actions/checkout@v2
uses: actions/checkout@v3
- name: Generate code coverage
- name: Generate coverage report
run: |
cargo tarpaulin --verbose --features lua53,vendored,async,send,serialize,macros --out xml --exclude-files benches --exclude-files build --exclude-files mlua_derive --exclude-files src/ffi --exclude-files tests
cargo tarpaulin --verbose --features lua54,vendored,async,send,serialize,macros --out xml --exclude-files benches --exclude-files build --exclude-files mlua_derive --exclude-files src/ffi --exclude-files tests
- name: Upload to codecov.io
uses: codecov/codecov-action@v1
- name: Upload report to codecov.io
uses: codecov/codecov-action@v3
with:
token: ${{secrets.CODECOV_TOKEN}}
fail_ci_if_error: false
+140 -149
View File
@@ -7,98 +7,94 @@ jobs:
runs-on: ${{ matrix.os }}
strategy:
matrix:
os: [ubuntu-18.04, macos-latest, windows-latest]
os: [ubuntu-22.04, macos-latest, windows-latest]
rust: [stable]
lua: [lua54, lua53, lua52, lua51, luajit]
lua: [lua54, lua53, lua52, lua51, luajit, luau]
include:
- os: ubuntu-18.04
target: x86_64-unknown-linux-gnu
- os: macos-latest
target: x86_64-apple-darwin
- os: windows-latest
target: x86_64-pc-windows-msvc
- os: ubuntu-22.04
target: x86_64-unknown-linux-gnu
- os: macos-latest
target: x86_64-apple-darwin
- os: windows-latest
target: x86_64-pc-windows-msvc
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
override: true
- uses: Swatinem/rust-cache@v1
- name: Build ${{ matrix.lua }} vendored
run: |
cargo build --features "${{ matrix.lua }},vendored"
cargo build --features "${{ matrix.lua }},vendored,async,send,serialize,macros"
shell: bash
- name: Build ${{ matrix.lua }} pkg-config
if: ${{ matrix.os == 'ubuntu-18.04' && matrix.lua != 'lua54' }}
run: |
sudo apt-get update
sudo apt-get install -y --no-install-recommends liblua5.3-dev liblua5.2-dev liblua5.1-0-dev libluajit-5.1-dev
cargo build --features "${{ matrix.lua }}"
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
- uses: Swatinem/rust-cache@v2
- name: Build ${{ matrix.lua }} vendored
run: |
cargo build --features "${{ matrix.lua }},vendored"
cargo build --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable"
shell: bash
- name: Build ${{ matrix.lua }} pkg-config
if: ${{ matrix.os == 'ubuntu-22.04' }}
run: |
sudo apt-get update
sudo apt-get install -y --no-install-recommends liblua5.4-dev liblua5.3-dev liblua5.2-dev liblua5.1-0-dev libluajit-5.1-dev
cargo build --features "${{ matrix.lua }}"
build_aarch64_cross_macos:
name: Cross-compile to aarch64-apple-darwin
runs-on: macos-11.0
runs-on: macos-latest
needs: build
strategy:
matrix:
lua: [lua54, lua53, lua52, lua51, luajit]
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: stable
target: aarch64-apple-darwin
override: true
- name: Cross-compile
run: cargo build --target aarch64-apple-darwin --features "${{ matrix.lua }},vendored,async,send,serialize,macros"
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: stable
target: aarch64-apple-darwin
- name: Cross-compile
run: cargo build --target aarch64-apple-darwin --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable"
build_aarch64_cross_ubuntu:
name: Cross-compile to aarch64-unknown-linux-gnu
runs-on: ubuntu-18.04
runs-on: ubuntu-22.04
needs: build
strategy:
matrix:
lua: [lua54, lua53, lua52, lua51, luajit]
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: stable
target: aarch64-unknown-linux-gnu
override: true
- name: Install ARM compiler toolchain
run: |
sudo apt-get update
sudo apt-get install -y --no-install-recommends gcc-aarch64-linux-gnu libc6-dev-arm64-cross
shell: bash
- name: Cross-compile
run: cargo build --target aarch64-unknown-linux-gnu --features "${{ matrix.lua }},vendored,async,send,serialize,macros"
shell: bash
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: stable
target: aarch64-unknown-linux-gnu
- name: Install ARM compiler toolchain
run: |
sudo apt-get update
sudo apt-get install -y --no-install-recommends gcc-aarch64-linux-gnu libc6-dev-arm64-cross
shell: bash
- name: Cross-compile
run: cargo build --target aarch64-unknown-linux-gnu --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable"
shell: bash
build_armv7_cross_ubuntu:
name: Cross-compile to armv7-unknown-linux-gnueabihf
runs-on: ubuntu-18.04
runs-on: ubuntu-22.04
needs: build
strategy:
matrix:
lua: [lua54, lua53, lua52, lua51]
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: stable
target: armv7-unknown-linux-gnueabihf
override: true
- name: Install ARM compiler toolchain
run: |
sudo apt-get update
sudo apt-get install -y --no-install-recommends gcc-arm-linux-gnueabihf libc-dev-armhf-cross
shell: bash
- name: Cross-compile
run: cargo build --target armv7-unknown-linux-gnueabihf --features "${{ matrix.lua }},vendored,async,send,serialize,macros"
shell: bash
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: stable
target: armv7-unknown-linux-gnueabihf
- name: Install ARM compiler toolchain
run: |
sudo apt-get update
sudo apt-get install -y --no-install-recommends gcc-arm-linux-gnueabihf libc-dev-armhf-cross
shell: bash
- name: Cross-compile
run: cargo build --target armv7-unknown-linux-gnueabihf --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable"
shell: bash
test:
name: Test
@@ -106,35 +102,34 @@ jobs:
needs: build
strategy:
matrix:
os: [ubuntu-18.04, macos-latest, windows-latest]
os: [ubuntu-22.04, macos-latest, windows-latest]
rust: [stable, nightly]
lua: [lua54, lua53, lua52, lua51, luajit]
lua: [lua54, lua53, lua52, lua51, luajit, luajit52, luau]
include:
- os: ubuntu-18.04
target: x86_64-unknown-linux-gnu
- os: macos-latest
target: x86_64-apple-darwin
- os: windows-latest
target: x86_64-pc-windows-msvc
- os: ubuntu-22.04
target: x86_64-unknown-linux-gnu
- os: macos-latest
target: x86_64-apple-darwin
- os: windows-latest
target: x86_64-pc-windows-msvc
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
override: true
- uses: Swatinem/rust-cache@v1
- name: Run ${{ matrix.lua }} tests
run: |
cargo test --features "${{ matrix.lua }},vendored"
cargo test --features "${{ matrix.lua }},vendored,async,send,serialize,macros"
shell: bash
- name: Run compile tests (macos lua53)
if: ${{ matrix.os == 'macos-latest' && matrix.lua == 'lua53' }}
run: |
TRYBUILD=overwrite cargo test --features "${{ matrix.lua }},vendored" -- --ignored
TRYBUILD=overwrite cargo test --features "${{ matrix.lua }},vendored,async,send,serialize,macros" -- --ignored
shell: bash
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
- uses: Swatinem/rust-cache@v1
- name: Run ${{ matrix.lua }} tests
run: |
cargo test --features "${{ matrix.lua }},vendored"
cargo test --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable"
shell: bash
- name: Run compile tests (macos lua54)
if: ${{ matrix.os == 'macos-latest' && matrix.lua == 'lua54' }}
run: |
TRYBUILD=overwrite cargo test --features "${{ matrix.lua }},vendored" -- --ignored
TRYBUILD=overwrite cargo test --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable" -- --ignored
shell: bash
test_with_sanitizer:
name: Test with address sanitizer
@@ -142,25 +137,24 @@ jobs:
needs: build
strategy:
matrix:
os: [ubuntu-18.04]
os: [ubuntu-22.04]
rust: [nightly]
lua: [lua54, lua53, lua52, lua51, luajit]
lua: [lua54, lua53, lua52, lua51, luajit, luau]
include:
- os: ubuntu-18.04
target: x86_64-unknown-linux-gnu
- os: ubuntu-22.04
target: x86_64-unknown-linux-gnu
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
override: true
- uses: Swatinem/rust-cache@v1
- name: Run ${{ matrix.lua }} tests with address sanitizer
run: |
RUSTFLAGS="-Z sanitizer=address" \
cargo test --tests --features "${{ matrix.lua }},vendored,async,send,serialize,macros" --target x86_64-unknown-linux-gnu -- --skip test_too_many_recursions
shell: bash
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
- uses: Swatinem/rust-cache@v1
- name: Run ${{ matrix.lua }} tests with address sanitizer
run: |
RUSTFLAGS="-Z sanitizer=address" \
cargo test --tests --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable" --target x86_64-unknown-linux-gnu -- --skip test_too_many_recursions
shell: bash
test_modules:
name: Test modules
@@ -168,27 +162,26 @@ jobs:
needs: build
strategy:
matrix:
os: [ubuntu-18.04, macos-latest]
os: [ubuntu-22.04, macos-latest]
rust: [stable]
lua: [lua54, lua53, lua52, lua51, luajit]
include:
- os: ubuntu-18.04
target: x86_64-unknown-linux-gnu
- os: macos-latest
target: x86_64-apple-darwin
- os: ubuntu-22.04
target: x86_64-unknown-linux-gnu
- os: macos-latest
target: x86_64-apple-darwin
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
override: true
- uses: Swatinem/rust-cache@v1
- name: Run ${{ matrix.lua }} module tests
run: |
(cd examples/module && cargo build --release --features "${{ matrix.lua }},vendored")
(cd tests/module && cargo test --release --features "${{ matrix.lua }},vendored")
shell: bash
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: ${{ matrix.rust }}
target: ${{ matrix.target }}
- uses: Swatinem/rust-cache@v1
- name: Run ${{ matrix.lua }} module tests
run: |
(cd tests/module && cargo build --release --features "${{ matrix.lua }}")
(cd tests/module/loader && cargo test --release --features "${{ matrix.lua }},vendored")
shell: bash
test_modules_windows:
name: Test modules on Windows
@@ -201,42 +194,40 @@ jobs:
run:
shell: msys2 {0}
steps:
- uses: msys2/setup-msys2@v2
- uses: actions/checkout@v2
- name: Install Rust & Lua
run: |
pacman -S --noconfirm mingw-w64-x86_64-rust mingw-w64-x86_64-lua mingw-w64-x86_64-luajit mingw-w64-x86_64-pkg-config
- name: Run ${{ matrix.lua }} module tests
run: |
(cd examples/module && cargo build --release --features "${{ matrix.lua }}")
(cd tests/module && cargo test --release --features "${{ matrix.lua }}")
- uses: msys2/setup-msys2@v2
- uses: actions/checkout@v3
- name: Install Rust & Lua
run: |
pacman -S --noconfirm mingw-w64-x86_64-rust mingw-w64-x86_64-lua mingw-w64-x86_64-luajit mingw-w64-x86_64-pkg-config
- name: Run ${{ matrix.lua }} module tests
run: |
(cd tests/module && cargo build --release --features "${{ matrix.lua }}")
(cd tests/module/loader && cargo test --release --features "${{ matrix.lua }}")
rustfmt:
name: Rustfmt
runs-on: ubuntu-18.04
runs-on: ubuntu-22.04
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
with:
toolchain: stable
components: rustfmt
override: true
- run: cargo fmt -- --check
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: stable
components: rustfmt
- run: cargo fmt -- --check
clippy:
name: Clippy check
runs-on: ubuntu-18.04
runs-on: ubuntu-22.04
strategy:
matrix:
lua: [lua54, lua53, lua52, lua51, luajit]
lua: [lua54, lua53, lua52, lua51, luajit, luau]
steps:
- uses: actions/checkout@v2
- uses: actions-rs/toolchain@v1
- uses: actions/checkout@v3
- uses: dtolnay/rust-toolchain@stable
with:
toolchain: nightly
components: clippy
override: true
toolchain: nightly
components: clippy
- uses: actions-rs/clippy-check@v1
with:
token: ${{ secrets.GITHUB_TOKEN }}
args: --features "${{ matrix.lua }},vendored,async,send,serialize,macros"
args: --features "${{ matrix.lua }},vendored,async,send,serialize,macros,parking_lot,unstable"
+187
View File
@@ -1,3 +1,190 @@
## v0.9.0-beta.1
New features:
- Owned Lua types (unstable feature flag)
- New functions `Function::wrap`/`Function::wrap_mut`/`Function::wrap_async`
- `Lua::register_userdata_type()` to register a custom userdata types (without requiring `UserData` trait)
- `Lua::create_any_userdata()`
- Added `create_userdata_ref`/`create_userdata_ref_mut` for scopes
- Added `AnyUserDataExt` trait with auxiliary functions for `AnyUserData`
- Added `UserDataRef` and `UserDataRefMut` type wrapped that implement `FromLua`
- Improved error handling:
* Improved error reporting when calling Rust functions from Lua.
* Added `Error::BadArgument` to help identify bad argument position or name
* Added `ErrorContext` extension trait to attach additional context to `Error`
Breaking changes:
- Refactored `AsChunk` trait
- `ToLua`/`ToLuaMulti` renamed to `IntoLua`/`IntoLuaMulti`
- Renamed `to_lua_err` to `into_lua_err`
- Removed `FromLua` impl for `T: UserData+Clone`
- Removed `Lua::async_scope`
- Added `&Lua` arg to Luau interrupt callback
Other:
- Better Debug for String
- Allow deserializing values from serializable UserData using `Lua::from_value()` method
- Added `Table::clear()` method
- Added `Error::downcast_ref()` method
- Support setting memory limit for Lua 5.1/JIT/Luau
- Support setting module name in `#[lua_module(name = "...")]` macro
- Minor fixes and improvements
## v0.8.8
- Fix potential deadlock when trying to reuse dropped registry keys.
- Optimize userdata methods call when __index and fields_getters are nil
## v0.8.7
- Minimum Luau updated to 0.555 (`LUAI_MAXCSTACK` limit increased to 100000)
- `_VERSION` in Luau now includes version number
- Fixed lifetime of `DebugNames` in `Debug::names()` and `DebugSource` in `Debug::source()`
- Fixed subtraction overflow when calculating index for `MultiValue::get()`
## v0.8.6
- Fixed bug when recycled Registry slot can be set to Nil
## v0.8.5
- Fixed potential unsoundness when using `Layout::from_size_align_unchecked` and Rust 1.65+
- Performance optimizations around string and table creation in standalone mode
- Added fast track path to Table `get`/`set`/`len` methods without metatable
- Added new methods `push`/`pop`/`raw_push`/`raw_pop` to Table
- Fix getting caller information from `Lua::load`
- Better checks and tests when trying to modify a Luau readonly table
## v0.8.4
- Minimal Luau updated to 0.548
## v0.8.3
- Close to-be-closed variables for Lua 5.4 when using call_async functions (#192)
- Fixed Lua assertion when inspecting another thread stack. (#195)
- Use more reliable way to create LuaJIT VM (which can fail if use Rust allocator on non-x86 platforms)
## v0.8.2
- Performance optimizations in handling UserData
- Minimal Luau updated to 0.536
- Fixed bug in `Function::bind` when passing empty binds and no arguments (#189)
## v0.8.1
- Added `Lua::create_proxy` for accessing to UserData static fields and functions without instance
- Added `Table::to_pointer()` and `String::to_pointer()` functions
- Bugfixes and improvements (#176 #179)
## v0.8.0
Changes since 0.7.4
- Roblox Luau support
- Removed C glue
- Added async support to `__index` and `__newindex` metamethods
- Added `Function::info()` to get information about functions (#149).
- Added `parking_lot` dependency under feature flag (for `UserData`)
- `Hash` implementation for Lua String
- Added `Value::to_pointer()` function
- Performance improvements
Breaking changes:
- Refactored `AsChunk` trait (added implementation for `Path` and `PathBuf`).
## v0.8.0-beta.5
- Lua sources no longer needed to build modules
- Added `__iter` metamethod for Luau
- Added `Value::to_pointer()` function
- Added `Function::coverage` for Luau to obtain coverage report
- Bugfixes and improvements (#153 #161 #168)
## v0.8.0-beta.4
- Removed `&Lua` from `Lua::set_interrupt` as it's not safe (introduced in v0.8.0-beta.3)
- Enabled `Lua::gc_inc` for Luau
- Luau `debug` module marked as safe (enabled by default)
- Implemented `Hash` for Lua String
- Support mode options in `collectgarbage` for Luau
- Added ability to set global Luau compiler (used for loading all chunks).
- Refactored `AsChunk` trait (breaking changes).
`AsChunk` now implemented for `Path` and `PathBuf` to load lua files from fs.
- Added `parking_lot` dependency and feature flag (for `UserData`)
- Added `Function::info()` to get information about functions (#149).
- Bugfixes and improvements (#104 #142)
## v0.8.0-beta.3
- Luau vector constructor
- Luau sandboxing support
- Luau interrupts (yieldable)
- More Luau compiler options (mutable globals)
- Other performance improvements
## v0.8.0-beta.2
- Luau vector datatype support
- Luau readonly table attribute
- Other Luau improvements
## v0.8.0-beta.1
- Roblox Luau support
- Refactored ffi module. C glue is no longer required
- Added async support to `__index` and `__newindex` metamethods
## v0.7.4
- Improved `Lua::create_registry_value` to reuse previously expired registry keys.
No need to call `Lua::expire_registry_values` when creating/dropping registry values.
- Added `Lua::replace_registry_value` to change value of an existing Registry Key
- Async calls optimization
## v0.7.3
- Fixed cross-compilation issue (introduced in 84a174c)
## v0.7.2
- Allow `pkg-config` to omit include paths if they equals to standard (#114).
- Various bugfixes (eg. #121)
## v0.7.1
- Fixed traceback generation for errors (#112)
- `Lua::into_static/from_static` methods have been removed from the docs and are discouraged for use
## v0.7.0
- New "application data" api to store arbitrary objects inside Lua
- New feature flag `luajit52` to build/support LuaJIT with partial compatibility with Lua 5.2
- Added async meta methods for all Lua (except 5.1)
- Added `AnyUserData::take()` to take UserData objects from Lua
- Added `set_nth_user_value`/`get_nth_user_value` to `AnyUserData` for all Lua versions
- Added `set_named_user_value`/`get_named_user_value` to `AnyUserData` for all Lua versions
- Added `Lua::inspect_stack()` to get information about the interpreter runtime stack
- Added `set_warning_function`/`remove_warning_function`/`warning` functions to `Lua` for 5.4
- Added `TableExt::call()` to call tables with `__call` metamethod as functions
- Added `Lua::unload()` to unload modules
- `ToLua` implementation for arrays changed to const generics
- Added thread (coroutine) cache for async execution (disabled by default and works for Lua 5.4/JIT)
- LuaOptions and (De)SerializeOptions marked as const
- Fixed recursive tables serialization when using `serde::Serialize` for Lua Tables
- Improved errors reporting. Now source included to `fmt::Display` implementation for `Error::CallbackError`
- Major performance improvements
## v0.6.6
- Fixed calculating `LUA_REGISTRYINDEX` when cross-compiling for lua51/jit (#82)
- Updated documentation & examples
## v0.6.5
- Fixed bug when polling async futures (#77)
- Refactor Waker handling in async code (+10% performance gain when calling async functions)
- Added `Location::caller()` information to `Lua::load()` if chunk's name is None (Rust 1.46+)
- Added serialization of i128/u128 types (serde)
## v0.6.4
- Performance optimizations
+24 -16
View File
@@ -1,30 +1,28 @@
[package]
name = "mlua"
version = "0.6.4" # remember to update html_root_url and mlua_derive
version = "0.9.0-beta.1" # remember to update html_root_url and mlua_derive
authors = ["Aleksandr Orlenko <zxteam@pm.me>", "kyren <catherine@chucklefish.org>"]
edition = "2018"
edition = "2021"
repository = "https://github.com/khvzak/mlua"
documentation = "https://docs.rs/mlua"
readme = "README.md"
keywords = ["lua", "luajit", "async", "futures", "scripting"]
keywords = ["lua", "luajit", "luau", "async", "scripting"]
categories = ["api-bindings", "asynchronous"]
license = "MIT"
links = "lua"
build = "build/main.rs"
description = """
High level bindings to Lua 5.4/5.3/5.2/5.1 (including LuaJIT)
with async/await features and support of writing native lua modules in Rust.
High level bindings to Lua 5.4/5.3/5.2/5.1 (including LuaJIT) and Roblox Luau
with async/await features and support of writing native Lua modules in Rust.
"""
[package.metadata.docs.rs]
features = ["lua53", "async", "send", "serialize", "macros"]
features = ["lua54", "vendored", "async", "send", "serialize", "macros", "parking_lot", "unstable"]
rustdoc-args = ["--cfg", "docsrs"]
[workspace]
members = [
"mlua_derive",
"examples/module",
"tests/module",
]
[features]
@@ -33,41 +31,51 @@ lua53 = []
lua52 = []
lua51 = []
luajit = []
luajit52 = ["luajit"]
luau = ["luau0-src"]
vendored = ["lua-src", "luajit-src"]
module = ["mlua_derive"]
async = ["futures-core", "futures-task", "futures-util"]
send = []
serialize = ["serde", "erased-serde"]
serialize = ["serde", "erased-serde", "serde-value"]
macros = ["mlua_derive/macros"]
unstable = []
[dependencies]
mlua_derive = { version = "=0.6.0", optional = true, path = "mlua_derive" }
bstr = { version = "0.2", features = ["std"], default_features = false }
mlua_derive = { version = "=0.9.0-beta.1", optional = true, path = "mlua_derive" }
bstr = { version = "1.0", features = ["std"], default_features = false }
once_cell = { version = "1.0" }
num-traits = { version = "0.2.14" }
rustc-hash = "1.0"
futures-core = { version = "0.3.5", optional = true }
futures-task = { version = "0.3.5", optional = true }
futures-util = { version = "0.3.5", optional = true }
serde = { version = "1.0", optional = true }
erased-serde = { version = "0.3", optional = true }
serde-value = { version = "0.7", optional = true }
parking_lot = { version = "0.12", optional = true }
[build-dependencies]
cc = { version = "1.0" }
pkg-config = { version = "0.3.17" }
lua-src = { version = ">= 540.0.0, < 550.0.0", optional = true }
luajit-src = { version = ">= 210.1.2, < 220.0.0", optional = true }
lua-src = { version = ">= 544.0.0, < 550.0.0", optional = true }
luajit-src = { version = ">= 210.4.0, < 220.0.0", optional = true }
luau0-src = { version = "0.5.0", optional = true }
[dev-dependencies]
rustyline = "8.0"
criterion = { version = "0.3.4", features = ["html_reports", "async_tokio"] }
rustyline = "11.0"
criterion = { version = "0.4", features = ["html_reports", "async_tokio"] }
trybuild = "1.0"
futures = "0.3.5"
hyper = { version = "0.14", features = ["client", "server"] }
reqwest = { version = "0.11", features = ["json"] }
tokio = { version = "1.0", features = ["full"] }
futures-timer = "3.0"
serde = { version = "1.0", features = ["derive"] }
serde_json = "1.0"
maplit = "1.0"
tempfile = "3"
static_assertions = "1.0"
[[bench]]
name = "benchmark"
@@ -84,7 +92,7 @@ required-features = ["async", "serialize", "macros"]
[[example]]
name = "async_http_server"
required-features = ["async", "send"]
required-features = ["async", "macros"]
[[example]]
name = "async_tcp_server"
+21
View File
@@ -0,0 +1,21 @@
# mlua FAQ
This file is for general questions that don't fit into the README or crate docs.
## Loading a C module fails with error `undefined symbol: lua_xxx`. How to fix?
Add the following rustflags to your [.cargo/config](http://doc.crates.io/config.html) in order to properly export Lua symbols:
```toml
[target.x86_64-unknown-linux-gnu]
rustflags = ["-C", "link-args=-rdynamic"]
[target.x86_64-apple-darwin]
rustflags = ["-C", "link-args=-rdynamic"]
```
## I want to add support for a Lua VM fork to mlua. Do you accept pull requests?
Adding new feature flag to support a Lua VM fork is a major step that requires huge effort to maintain it.
Regular updates, testing, checking compatibility, etc.
That's why I don't plan to support new Lua VM forks or other languages in mlua.
+35 -9
View File
@@ -1,5 +1,5 @@
# mlua
[![Build Status]][github-actions] [![Latest Version]][crates.io] [![API Documentation]][docs.rs] [![Coverage Status]][codecov.io]
[![Build Status]][github-actions] [![Latest Version]][crates.io] [![API Documentation]][docs.rs] [![Coverage Status]][codecov.io] ![MSRV]
[Build Status]: https://github.com/khvzak/mlua/workflows/CI/badge.svg
[github-actions]: https://github.com/khvzak/mlua/actions
@@ -9,17 +9,27 @@
[docs.rs]: https://docs.rs/mlua
[Coverage Status]: https://codecov.io/gh/khvzak/mlua/branch/master/graph/badge.svg?token=99339FS1CG
[codecov.io]: https://codecov.io/gh/khvzak/mlua
[MSRV]: https://img.shields.io/badge/rust-1.63+-brightgreen.svg?&logo=rust
[Guided Tour](examples/guided_tour.rs)
[Guided Tour] | [Benchmarks] | [FAQ]
[Guided Tour]: examples/guided_tour.rs
[Benchmarks]: https://github.com/khvzak/script-bench-rs
[FAQ]: FAQ.md
> **Note**
>
> Please see the [v0.8](https://github.com/khvzak/mlua/tree/v0.8) branch for the stable versions of `mlua` released to crates.io.
`mlua` is bindings to [Lua](https://www.lua.org) programming language for Rust with a goal to provide
_safe_ (as far as it's possible), high level, easy to use, practical and flexible API.
Started as [rlua](https://github.com/amethyst/rlua/tree/0.15.3) fork, `mlua` supports Lua 5.4, 5.3, 5.2 and 5.1 including LuaJIT (2.0.5 and 2.1 beta) and allows to write native Lua modules in Rust as well as use Lua in a standalone mode.
Started as `rlua` fork, `mlua` supports Lua 5.4, 5.3, 5.2, 5.1 (including LuaJIT) and [Roblox Luau] and allows to write native Lua modules in Rust as well as use Lua in a standalone mode.
`mlua` tested on Windows/macOS/Linux including module mode in [GitHub Actions] on `x86_64` platform and cross-compilation to `aarch64` (other targets are also supported).
[GitHub Actions]: https://github.com/khvzak/mlua/actions
[Roblox Luau]: https://luau-lang.org
## Usage
@@ -33,28 +43,36 @@ Below is a list of the available feature flags. By default `mlua` does not enabl
* `lua52`: activate Lua [5.2] support
* `lua51`: activate Lua [5.1] support
* `luajit`: activate [LuaJIT] support
* `luajit52`: activate [LuaJIT] support with partial compatibility with Lua 5.2
* `luau`: activate [Luau] support (auto vendored mode)
* `vendored`: build static Lua(JIT) library from sources during `mlua` compilation using [lua-src] or [luajit-src] crates
* `module`: enable module mode (building loadable `cdylib` library for Lua)
* `async`: enable async/await support (any executor can be used, eg. [tokio] or [async-std])
* `send`: make `mlua::Lua` transferable across thread boundaries (adds [`Send`] requirement to `mlua::Function` and `mlua::UserData`)
* `serialize`: add serialization and deserialization support to `mlua` types using [serde] framework
* `macros`: enable procedural macros (such as `chunk!`)
* `parking_lot`: support UserData types wrapped in [parking_lot]'s primitives (`Arc<Mutex>` and `Arc<RwLock>`)
* `unstable`: enable **unstable** features. The public API of these features may break between releases.
[5.4]: https://www.lua.org/manual/5.4/manual.html
[5.3]: https://www.lua.org/manual/5.3/manual.html
[5.2]: https://www.lua.org/manual/5.2/manual.html
[5.1]: https://www.lua.org/manual/5.1/manual.html
[LuaJIT]: https://luajit.org/
[Luau]: https://github.com/Roblox/luau
[lua-src]: https://github.com/khvzak/lua-src-rs
[luajit-src]: https://github.com/khvzak/luajit-src-rs
[tokio]: https://github.com/tokio-rs/tokio
[async-std]: https://github.com/async-rs/async-std
[`Send`]: https://doc.rust-lang.org/std/marker/trait.Send.html
[serde]: https://github.com/serde-rs/serde
[parking_lot]: https://github.com/Amanieu/parking_lot
### Async/await support
`mlua` supports async/await for all Lua versions. This works using Lua [coroutines](https://www.lua.org/manual/5.3/manual.html#2.6) and require running [Thread](https://docs.rs/mlua/latest/mlua/struct.Thread.html) along with enabling `feature = "async"` in `Cargo.toml`.
`mlua` supports async/await for all Lua versions including Luau.
This works using Lua [coroutines](https://www.lua.org/manual/5.3/manual.html#2.6) and require running [Thread](https://docs.rs/mlua/latest/mlua/struct.Thread.html) along with enabling `feature = "async"` in `Cargo.toml`.
**Examples**:
- [HTTP Client](examples/async_http_client.rs)
@@ -74,7 +92,7 @@ With `serialize` feature flag enabled, `mlua` allows you to serialize/deserializ
### Compiling
You have to enable one of the features `lua54`, `lua53`, `lua52`, `lua51` or `luajit`, according to the chosen Lua version.
You have to enable one of the features: `lua54`, `lua53`, `lua52`, `lua51`, `luajit(52)` or `luau`, according to the chosen Lua version.
By default `mlua` uses `pkg-config` tool to find lua includes and libraries for the chosen Lua version.
In most cases it works as desired, although sometimes could be more preferable to use a custom lua library.
@@ -97,7 +115,7 @@ Add to `Cargo.toml` :
``` toml
[dependencies]
mlua = { version = "0.6", features = ["lua53", "vendored"] }
mlua = { version = "0.8", features = ["lua54", "vendored"] }
```
`main.rs`
@@ -121,7 +139,7 @@ fn main() -> LuaResult<()> {
```
### Module mode
In a module mode `mlua` allows to create a compiled Lua module that can be loaded from Lua code using [`require`](https://www.lua.org/manual/5.3/manual.html#pdf-require). In this case `mlua` uses an external Lua runtime which could lead to potential unsafety due to unpredictability of the Lua environment and usage of libraries such as [`debug`](https://www.lua.org/manual/5.3/manual.html#6.10).
In a module mode `mlua` allows to create a compiled Lua module that can be loaded from Lua code using [`require`](https://www.lua.org/manual/5.4/manual.html#pdf-require). In this case `mlua` uses an external Lua runtime which could lead to potential unsafety due to unpredictability of the Lua environment and usage of libraries such as [`debug`](https://www.lua.org/manual/5.4/manual.html#6.10).
[Example](examples/module)
@@ -132,7 +150,7 @@ Add to `Cargo.toml` :
crate-type = ["cdylib"]
[dependencies]
mlua = { version = "0.6", features = ["lua53", "vendored", "module"] }
mlua = { version = "0.8", features = ["lua54", "vendored", "module"] }
```
`lib.rs` :
@@ -158,7 +176,7 @@ And then (**macOS** example):
``` sh
$ cargo rustc -- -C link-arg=-undefined -C link-arg=dynamic_lookup
$ ln -s ./target/debug/libmy_module.dylib ./my_module.so
$ lua5.3 -e 'require("my_module").hello("world")'
$ lua5.4 -e 'require("my_module").hello("world")'
hello, world!
```
@@ -247,6 +265,14 @@ If you encounter them, a bug report would be very welcome:
+ If you detect that, after catching a panic or during a Drop triggered from a panic, a `Lua` or handle method is triggering other bugs or there is a Lua stack space leak, this is a bug. `mlua` instances are supposed to remain fully usable in the face of user generated panics. This guarantee does not extend to panics marked with "mlua internal error" simply because that is already indicative of a separate bug.
## Sandboxing
Please check the [Luau Sandboxing] page if you are interested in running untrusted Lua scripts in controlled environment.
`mlua` provides `Lua::sandbox` method for enabling sandbox mode (Luau only).
[Luau Sandboxing]: https://luau-lang.org/sandbox
## License
This project is licensed under the [MIT license](LICENSE)
+32 -2
View File
@@ -120,7 +120,8 @@ fn call_sum_callback(c: &mut Criterion) {
}
fn call_async_sum_callback(c: &mut Criterion) {
let lua = Lua::new();
let options = LuaOptions::new().thread_pool_size(1024);
let lua = Lua::new_with(LuaStdLib::ALL_SAFE, options).unwrap();
let callback = lua
.create_async_function(|_, (a, b, c): (i64, i64, i64)| async move {
task::yield_now().await;
@@ -208,6 +209,33 @@ fn create_userdata(c: &mut Criterion) {
});
}
fn call_userdata_index(c: &mut Criterion) {
struct UserData(i64);
impl LuaUserData for UserData {
fn add_methods<'lua, M: LuaUserDataMethods<'lua, Self>>(methods: &mut M) {
methods.add_meta_method(LuaMetaMethod::Index, move |_, _, index: String| Ok(index));
}
}
let lua = Lua::new();
lua.globals().set("userdata", UserData(10)).unwrap();
c.bench_function("call [userdata index] 10", |b| {
b.iter_batched_ref(
|| {
collect_gc_twice(&lua);
lua.load("function() for i = 1,10 do local v = userdata.test end end")
.eval::<LuaFunction>()
.unwrap()
},
|function| {
function.call::<_, ()>(()).unwrap();
},
BatchSize::SmallInput,
);
});
}
fn call_userdata_method(c: &mut Criterion) {
struct UserData(i64);
impl LuaUserData for UserData {
@@ -244,7 +272,8 @@ fn call_async_userdata_method(c: &mut Criterion) {
}
}
let lua = Lua::new();
let options = LuaOptions::new().thread_pool_size(1024);
let lua = Lua::new_with(LuaStdLib::ALL_SAFE, options).unwrap();
lua.globals().set("userdata", UserData(10)).unwrap();
c.bench_function("call async [userdata method] 10", |b| {
@@ -281,6 +310,7 @@ criterion_group! {
call_concat_callback,
create_registry_values,
create_userdata,
call_userdata_index,
call_userdata_method,
call_async_userdata_method,
}
+2 -2
View File
@@ -1,5 +1,5 @@
use std::path::PathBuf;
pub fn probe_lua() -> PathBuf {
unreachable!()
pub fn probe_lua() -> Option<PathBuf> {
None
}
+29 -55
View File
@@ -1,3 +1,5 @@
#![allow(dead_code)]
use std::env;
use std::ops::Bound;
use std::path::PathBuf;
@@ -6,11 +8,11 @@ fn get_env_var(name: &str) -> String {
match env::var(name) {
Ok(val) => val,
Err(env::VarError::NotPresent) => String::new(),
Err(err) => panic!("cannot get {}: {}", name, err),
Err(err) => panic!("cannot get {name}: {err}"),
}
}
pub fn probe_lua() -> PathBuf {
pub fn probe_lua() -> Option<PathBuf> {
let include_dir = get_env_var("LUA_INC");
let lib_dir = get_env_var("LUA_LIB");
let lua_lib = get_env_var("LUA_LIB_NAME");
@@ -35,85 +37,57 @@ pub fn probe_lua() -> PathBuf {
if get_env_var("LUA_LINK") == "static" {
link_lib = "static=";
};
println!("cargo:rustc-link-search=native={}", lib_dir);
println!("cargo:rustc-link-lib={}{}", link_lib, lua_lib);
println!("cargo:rustc-link-search=native={lib_dir}");
println!("cargo:rustc-link-lib={link_lib}{lua_lib}");
}
return PathBuf::from(include_dir);
return Some(PathBuf::from(include_dir));
}
// Find using `pkg-config`
#[cfg(feature = "lua54")]
{
let mut lua = pkg_config::Config::new()
.range_version((Bound::Included("5.4"), Bound::Excluded("5.5")))
.cargo_metadata(need_lua_lib)
.probe("lua");
if lua.is_err() {
lua = pkg_config::Config::new()
.cargo_metadata(need_lua_lib)
.probe("lua5.4");
}
lua.unwrap().include_paths[0].clone()
}
let (incl_bound, excl_bound, alt_probe, ver) = ("5.4", "5.5", "lua5.4", "5.4");
#[cfg(feature = "lua53")]
{
let mut lua = pkg_config::Config::new()
.range_version((Bound::Included("5.3"), Bound::Excluded("5.4")))
.cargo_metadata(need_lua_lib)
.probe("lua");
if lua.is_err() {
lua = pkg_config::Config::new()
.cargo_metadata(need_lua_lib)
.probe("lua5.3");
}
lua.unwrap().include_paths[0].clone()
}
let (incl_bound, excl_bound, alt_probe, ver) = ("5.3", "5.4", "lua5.3", "5.3");
#[cfg(feature = "lua52")]
{
let mut lua = pkg_config::Config::new()
.range_version((Bound::Included("5.2"), Bound::Excluded("5.3")))
.cargo_metadata(need_lua_lib)
.probe("lua");
if lua.is_err() {
lua = pkg_config::Config::new()
.cargo_metadata(need_lua_lib)
.probe("lua5.2");
}
lua.unwrap().include_paths[0].clone()
}
let (incl_bound, excl_bound, alt_probe, ver) = ("5.2", "5.3", "lua5.2", "5.2");
#[cfg(feature = "lua51")]
let (incl_bound, excl_bound, alt_probe, ver) = ("5.1", "5.2", "lua5.1", "5.1");
#[cfg(any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "lua51"
))]
{
let mut lua = pkg_config::Config::new()
.range_version((Bound::Included("5.1"), Bound::Excluded("5.2")))
.range_version((Bound::Included(incl_bound), Bound::Excluded(excl_bound)))
.cargo_metadata(need_lua_lib)
.probe("lua");
if lua.is_err() {
lua = pkg_config::Config::new()
.cargo_metadata(need_lua_lib)
.probe("lua5.1");
.probe(alt_probe);
}
lua.unwrap().include_paths[0].clone()
lua.unwrap_or_else(|_| panic!("cannot find Lua {ver} using `pkg-config`"))
.include_paths
.get(0)
.cloned()
}
#[cfg(feature = "luajit")]
{
let lua = pkg_config::Config::new()
.range_version((Bound::Included("2.0.5"), Bound::Unbounded))
.range_version((Bound::Included("2.0.4"), Bound::Unbounded))
.cargo_metadata(need_lua_lib)
.probe("luajit");
lua.unwrap().include_paths[0].clone()
lua.expect("cannot find LuaJIT using `pkg-config`")
.include_paths
.get(0)
.cloned()
}
}
+13 -4
View File
@@ -1,6 +1,8 @@
#![allow(dead_code)]
use std::path::PathBuf;
pub fn probe_lua() -> PathBuf {
pub fn probe_lua() -> Option<PathBuf> {
#[cfg(feature = "lua54")]
let artifacts = lua_src::Build::new().build(lua_src::Lua54);
#[cfg(feature = "lua53")]
@@ -10,10 +12,17 @@ pub fn probe_lua() -> PathBuf {
#[cfg(feature = "lua51")]
let artifacts = lua_src::Build::new().build(lua_src::Lua51);
#[cfg(feature = "luajit")]
let artifacts = luajit_src::Build::new().build();
let artifacts = {
let mut builder = luajit_src::Build::new();
if cfg!(feature = "luajit52") {
builder.lua52compat(true);
}
builder.build()
};
#[cfg(feature = "luau")]
let artifacts = luau0_src::Build::new().build();
#[cfg(not(feature = "module"))]
artifacts.print_cargo_metadata();
artifacts.include_dir().to_owned()
Some(artifacts.include_dir().to_owned())
}
+53 -181
View File
@@ -1,20 +1,15 @@
#![allow(unreachable_code)]
use std::env;
use std::fs::File;
use std::io::{Error, ErrorKind, Result, Write};
use std::path::{Path, PathBuf};
use std::process::Command;
#[cfg_attr(
all(
feature = "vendored",
any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
any(
feature = "luau",
all(
feature = "vendored",
any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
)
)
),
path = "find_vendored.rs"
@@ -38,168 +33,25 @@ use std::process::Command;
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
feature = "luajit",
feature = "luau"
)),
path = "find_dummy.rs"
)]
mod find;
trait CommandExt {
fn execute(&mut self) -> Result<()>;
}
impl CommandExt for Command {
/// Execute the command and return an error if it exited with a failure status.
fn execute(&mut self) -> Result<()> {
self.status()
.and_then(|status| {
if status.success() {
Ok(())
} else {
Err(Error::new(ErrorKind::Other, "non-zero exit code"))
}
})
.map_err(|_| {
Error::new(
ErrorKind::Other,
format!("The command {:?} did not run successfully.", self),
)
})
}
}
fn build_glue<P: AsRef<Path> + std::fmt::Debug>(include_path: &P) {
let build_dir = PathBuf::from(env::var_os("OUT_DIR").unwrap());
let mut config = cc::Build::new();
config.include(include_path);
// Compile and run glue.c
let glue = build_dir.join("glue");
config
.get_compiler()
.to_command()
.arg("src/ffi/glue/glue.c")
.arg("-o")
.arg(&glue)
.execute()
.unwrap();
Command::new(glue)
.arg(build_dir.join("glue.rs"))
.execute()
.unwrap();
}
// When cross-compiling, we cannot use `build_glue` as we cannot run the generated
// executable. Instead, let's take a stab at synthesizing the likely values.
// If you're cross-compiling and using a non-vendored library then there is a chance
// that the values selected here may be incorrect, but we have no way to determine
// that here.
fn generate_glue() -> Result<()> {
let build_dir = PathBuf::from(env::var_os("OUT_DIR").unwrap());
let mut glue = File::create(build_dir.join("glue.rs"))?;
writeln!(
glue,
"/* This file was generated by build/main.rs; do not modify by hand */"
)?;
writeln!(glue, "use std::os::raw::*;")?;
writeln!(glue, "/* luaconf.h */")?;
let pointer_bit_width: usize = env::var("CARGO_CFG_TARGET_POINTER_WIDTH")
.unwrap()
.parse()
.unwrap();
writeln!(
glue,
"pub const LUA_EXTRASPACE: c_int = {} / 8;",
pointer_bit_width
)?;
// This is generally hardcoded to this size
writeln!(glue, "pub const LUA_IDSIZE: c_int = 60;")?;
// Unless the target is restricted, the defaults are 64 bit
writeln!(glue, "pub type LUA_NUMBER = c_double;")?;
writeln!(glue, "pub type LUA_INTEGER = i64;")?;
writeln!(glue, "pub type LUA_UNSIGNED = u64;")?;
writeln!(glue, "/* lua.h */")?;
let version = if cfg!(any(feature = "luajit", feature = "lua51")) {
(5, 1, 0)
} else if cfg!(feature = "lua52") {
(5, 2, 0)
} else if cfg!(feature = "lua53") {
(5, 3, 0)
} else if cfg!(feature = "lua54") {
(5, 4, 0)
} else {
unreachable!();
};
writeln!(
glue,
"pub const LUA_VERSION_NUM: c_int = {};",
(version.0 * 100) + version.1
)?;
let max_stack = if pointer_bit_width >= 32 {
1_000_000
} else {
15_000
};
writeln!(
glue,
"pub const LUA_REGISTRYINDEX: c_int = -{} - 1000;",
max_stack
)?;
// These two are only defined in lua 5.1
writeln!(glue, "pub const LUA_ENVIRONINDEX: c_int = -10001;")?;
writeln!(glue, "pub const LUA_GLOBALSINDEX: c_int = -10002;")?;
writeln!(glue, "/* lauxlib.h */")?;
// This is only defined in lua 5.3 and up, but we can always generate its value here,
// even if we don't use it.
// This matches the default definition in lauxlib.h
writeln!(glue, "pub const LUAL_NUMSIZES: c_int = std::mem::size_of::<LUA_INTEGER>() as c_int * 16 + std::mem::size_of::<LUA_NUMBER>() as c_int;")?;
writeln!(glue, "/* lualib.h */")?;
write!(
glue,
r#"
#[cfg(feature = "luajit")]
pub const LUA_BITLIBNAME: &str = "bit";
#[cfg(not(feature = "luajit"))]
pub const LUA_BITLIBNAME: &str = "bit32";
pub const LUA_COLIBNAME: &str = "coroutine";
pub const LUA_DBLIBNAME: &str = "debug";
pub const LUA_IOLIBNAME: &str = "io";
pub const LUA_LOADLIBNAME: &str = "package";
pub const LUA_MATHLIBNAME: &str = "math";
pub const LUA_OSLIBNAME: &str = "os";
pub const LUA_STRLIBNAME: &str = "string";
pub const LUA_TABLIBNAME: &str = "table";
pub const LUA_UTF8LIBNAME: &str = "utf8";
pub const LUA_JITLIBNAME: &str = "jit";
pub const LUA_FFILIBNAME: &str = "ffi";
"#
)?;
Ok(())
}
fn main() {
#[cfg(not(any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
feature = "luajit",
feature = "luau"
)))]
compile_error!("You must enable one of the features: lua54, lua53, lua52, lua51, luajit");
compile_error!(
"You must enable one of the features: lua54, lua53, lua52, lua51, luajit, luajit52, luau"
);
#[cfg(all(
feature = "lua54",
@@ -207,22 +59,44 @@ fn main() {
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
feature = "luajit",
feature = "luau"
)
))]
compile_error!("You can enable only one of the features: lua54, lua53, lua52, lua51, luajit");
compile_error!(
"You can enable only one of the features: lua54, lua53, lua52, lua51, luajit, luajit52, luau"
);
#[cfg(all(
feature = "lua53",
any(feature = "lua52", feature = "lua51", feature = "luajit")
any(
feature = "lua52",
feature = "lua51",
feature = "luajit",
feature = "luau"
)
))]
compile_error!("You can enable only one of the features: lua54, lua53, lua52, lua51, luajit");
compile_error!(
"You can enable only one of the features: lua54, lua53, lua52, lua51, luajit, luajit52, luau"
);
#[cfg(all(feature = "lua52", any(feature = "lua51", feature = "luajit")))]
compile_error!("You can enable only one of the features: lua54, lua53, lua52, lua51, luajit");
#[cfg(all(
feature = "lua52",
any(feature = "lua51", feature = "luajit", feature = "luau")
))]
compile_error!(
"You can enable only one of the features: lua54, lua53, lua52, lua51, luajit, luajit52, luau"
);
#[cfg(all(feature = "lua51", feature = "luajit"))]
compile_error!("You can enable only one of the features: lua54, lua53, lua52, lua51, luajit");
#[cfg(all(feature = "lua51", any(feature = "luajit", feature = "luau")))]
compile_error!(
"You can enable only one of the features: lua54, lua53, lua52, lua51, luajit, luajit52, luau"
);
#[cfg(all(feature = "luajit", feature = "luau"))]
compile_error!(
"You can enable only one of the features: lua54, lua53, lua52, lua51, luajit, luajit52, luau"
);
// We don't support "vendored module" mode on windows
#[cfg(all(feature = "vendored", feature = "module", target_os = "windows"))]
@@ -231,13 +105,11 @@ fn main() {
+ "Please, use `pkg-config` or custom mode to link to a Lua dll."
);
let include_dir = find::probe_lua();
if env::var("TARGET").unwrap() != env::var("HOST").unwrap() {
generate_glue().unwrap();
} else {
build_glue(&include_dir);
println!("cargo:rerun-if-changed=src/ffi/glue/glue.c");
}
#[cfg(all(feature = "luau", feature = "module"))]
compile_error!("Luau does not support module mode");
#[cfg(any(not(feature = "module"), target_os = "windows"))]
find::probe_lua();
println!("cargo:rerun-if-changed=build");
}
+11 -20
View File
@@ -1,27 +1,18 @@
use std::collections::HashMap;
use std::sync::Arc;
use hyper::body::{Body as HyperBody, HttpBody as _};
use hyper::Client as HyperClient;
use tokio::sync::Mutex;
use mlua::{chunk, ExternalResult, Lua, Result, UserData, UserDataMethods};
use mlua::{chunk, AnyUserData, ExternalResult, Lua, Result, UserData, UserDataMethods};
#[derive(Clone)]
struct BodyReader(Arc<Mutex<HyperBody>>);
impl BodyReader {
fn new(body: HyperBody) -> Self {
BodyReader(Arc::new(Mutex::new(body)))
}
}
struct BodyReader(HyperBody);
impl UserData for BodyReader {
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
methods.add_async_method("read", |lua, reader, ()| async move {
let mut reader = reader.0.lock().await;
if let Some(bytes) = reader.data().await {
let bytes = bytes.to_lua_err()?;
methods.add_async_function("read", |lua, reader: AnyUserData| async move {
let mut reader = reader.borrow_mut::<Self>()?;
if let Some(bytes) = reader.0.data().await {
let bytes = bytes.into_lua_err()?;
return Some(lua.create_string(&bytes)).transpose();
}
Ok(None)
@@ -35,8 +26,8 @@ async fn main() -> Result<()> {
let fetch_url = lua.create_async_function(|lua, uri: String| async move {
let client = HyperClient::new();
let uri = uri.parse().to_lua_err()?;
let resp = client.get(uri).await.to_lua_err()?;
let uri = uri.parse().into_lua_err()?;
let resp = client.get(uri).await.into_lua_err()?;
let lua_resp = lua.create_table()?;
lua_resp.set("status", resp.status().as_u16())?;
@@ -46,11 +37,11 @@ async fn main() -> Result<()> {
headers
.entry(key.as_str())
.or_insert(Vec::new())
.push(value.to_str().to_lua_err()?);
.push(value.to_str().into_lua_err()?);
}
lua_resp.set("headers", headers)?;
lua_resp.set("body", BodyReader::new(resp.into_body()))?;
lua_resp.set("body", BodyReader(resp.into_body()))?;
Ok(lua_resp)
})?;
@@ -58,7 +49,7 @@ async fn main() -> Result<()> {
let f = lua
.load(chunk! {
local res = $fetch_url(...)
print(res.status)
print("status: "..res.status)
for key, vals in pairs(res.headers) do
for _, val in ipairs(vals) do
print(key..": "..val)
+2 -2
View File
@@ -10,8 +10,8 @@ async fn main() -> Result<()> {
let resp = reqwest::get(&uri)
.await
.and_then(|resp| resp.error_for_status())
.to_lua_err()?;
let json = resp.json::<serde_json::Value>().await.to_lua_err()?;
.into_lua_err()?;
let json = resp.json::<serde_json::Value>().await.into_lua_err()?;
lua.to_value(&json)
})?;
+90 -53
View File
@@ -1,10 +1,16 @@
use std::future::Future;
use std::net::SocketAddr;
use std::pin::Pin;
use std::rc::Rc;
use std::task::{Context, Poll};
use hyper::server::conn::AddrStream;
use hyper::service::{make_service_fn, service_fn};
use hyper::service::Service;
use hyper::{Body, Request, Response, Server};
use mlua::{Error, Function, Lua, Result, Table, UserData, UserDataMethods};
use mlua::{
chunk, Error as LuaError, Function, Lua, String as LuaString, Table, UserData, UserDataMethods,
};
struct LuaRequest(SocketAddr, Request<Body>);
@@ -15,75 +21,106 @@ impl UserData for LuaRequest {
}
}
async fn run_server(handler: Function<'static>) -> Result<()> {
let make_svc = make_service_fn(|socket: &AddrStream| {
let remote_addr = socket.remote_addr();
let handler = handler.clone();
async move {
Ok::<_, Error>(service_fn(move |req: Request<Body>| {
let handler = handler.clone();
async move {
let lua_req = LuaRequest(remote_addr, req);
let lua_resp: Table = handler.call_async(lua_req).await?;
let body = lua_resp
.get::<_, Option<String>>("body")?
.unwrap_or_default();
pub struct Svc(Rc<Lua>, SocketAddr);
let mut resp = Response::builder()
.status(lua_resp.get::<_, Option<u16>>("status")?.unwrap_or(200));
impl Service<Request<Body>> for Svc {
type Response = Response<Body>;
type Error = LuaError;
type Future = Pin<Box<dyn Future<Output = Result<Self::Response, Self::Error>>>>;
fn poll_ready(&mut self, _cx: &mut Context<'_>) -> Poll<Result<(), Self::Error>> {
Poll::Ready(Ok(()))
}
fn call(&mut self, req: Request<Body>) -> Self::Future {
// If handler returns an error then generate 5xx response
let lua = self.0.clone();
let lua_req = LuaRequest(self.1, req);
Box::pin(async move {
let handler: Function = lua.named_registry_value("http_handler")?;
match handler.call_async::<_, Table>(lua_req).await {
Ok(lua_resp) => {
let status = lua_resp.get::<_, Option<u16>>("status")?.unwrap_or(200);
let mut resp = Response::builder().status(status);
// Set headers
if let Some(headers) = lua_resp.get::<_, Option<Table>>("headers")? {
for pair in headers.pairs::<String, String>() {
for pair in headers.pairs::<String, LuaString>() {
let (h, v) = pair?;
resp = resp.header(&h, v);
resp = resp.header(&h, v.as_bytes());
}
}
Ok::<_, Error>(resp.body(Body::from(body)).unwrap())
let body = lua_resp
.get::<_, Option<LuaString>>("body")?
.map(|b| Body::from(b.as_bytes().to_vec()))
.unwrap_or_else(Body::empty);
Ok(resp.body(body).unwrap())
}
}))
}
});
Err(err) => {
eprintln!("{}", err);
Ok(Response::builder()
.status(500)
.body(Body::from("Internal Server Error"))
.unwrap())
}
}
})
}
}
#[tokio::main(flavor = "current_thread")]
async fn main() {
let lua = Rc::new(Lua::new());
// Create Lua handler function
let handler: Function = lua
.load(chunk! {
function(req)
return {
status = 200,
headers = {
["X-Req-Method"] = req:method(),
["X-Remote-Addr"] = req:remote_addr(),
},
body = "Hello from Lua!\n"
}
end
})
.eval()
.expect("cannot create Lua handler");
// Store it in the Registry
lua.set_named_registry_value("http_handler", handler)
.expect("cannot store Lua handler");
let addr = ([127, 0, 0, 1], 3000).into();
let server = Server::bind(&addr).executor(LocalExec).serve(make_svc);
let server = Server::bind(&addr).executor(LocalExec).serve(MakeSvc(lua));
println!("Listening on http://{}", addr);
tokio::task::LocalSet::new()
.run_until(server)
.await
.map_err(Error::external)
// Create `LocalSet` to spawn !Send futures
let local = tokio::task::LocalSet::new();
local.run_until(server).await.expect("cannot run server")
}
#[tokio::main]
async fn main() -> Result<()> {
let lua = Lua::new().into_static();
struct MakeSvc(Rc<Lua>);
let handler: Function = lua
.load(
r#"
function(req)
return {
status = 200,
headers = {
["X-Req-Method"] = req:method(),
["X-Remote-Addr"] = req:remote_addr(),
},
body = "Hello, World!\n"
}
end
"#,
)
.eval()?;
impl Service<&AddrStream> for MakeSvc {
type Response = Svc;
type Error = hyper::Error;
type Future = Pin<Box<dyn Future<Output = Result<Self::Response, Self::Error>>>>;
run_server(handler).await?;
fn poll_ready(&mut self, _: &mut Context) -> Poll<Result<(), Self::Error>> {
Poll::Ready(Ok(()))
}
// Consume the static reference and drop it.
// This is safe as long as we don't hold any other references to Lua
// or alive resources.
unsafe { Lua::from_static(lua) };
Ok(())
fn call(&mut self, stream: &AddrStream) -> Self::Future {
let lua = self.0.clone();
let remote_addr = stream.remote_addr();
Box::pin(async move { Ok(Svc(lua, remote_addr)) })
}
}
#[derive(Clone, Copy, Debug)]
+88 -89
View File
@@ -1,122 +1,121 @@
use std::sync::Arc;
use std::io;
use std::net::SocketAddr;
use std::rc::Rc;
use tokio::io::{AsyncReadExt, AsyncWriteExt};
use tokio::net::{TcpListener, TcpStream};
use tokio::sync::Mutex;
use tokio::task;
use mlua::{chunk, Function, Lua, Result, String as LuaString, UserData, UserDataMethods};
use mlua::{
chunk, AnyUserData, Function, Lua, RegistryKey, String as LuaString, UserData, UserDataMethods,
};
struct LuaTcp;
#[derive(Clone)]
struct LuaTcpListener(Arc<Mutex<TcpListener>>);
#[derive(Clone)]
struct LuaTcpStream(Arc<Mutex<TcpStream>>);
impl UserData for LuaTcp {
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
methods.add_async_function("bind", |_, addr: String| async move {
let listener = TcpListener::bind(addr).await?;
Ok(LuaTcpListener(Arc::new(Mutex::new(listener))))
});
}
}
impl UserData for LuaTcpListener {
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
methods.add_async_method("accept", |_, listener, ()| async move {
let (stream, _) = listener.0.lock().await.accept().await?;
Ok(LuaTcpStream(Arc::new(Mutex::new(stream))))
});
}
}
struct LuaTcpStream(TcpStream);
impl UserData for LuaTcpStream {
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
methods.add_async_method("peer_addr", |_, stream, ()| async move {
Ok(stream.0.lock().await.peer_addr()?.to_string())
methods.add_method("peer_addr", |_, this, ()| {
Ok(this.0.peer_addr()?.to_string())
});
methods.add_async_method("read", |lua, stream, size: usize| async move {
let mut buf = vec![0; size];
let n = stream.0.lock().await.read(&mut buf).await?;
buf.truncate(n);
lua.create_string(&buf)
});
methods.add_async_function(
"read",
|lua, (this, size): (AnyUserData, usize)| async move {
let mut this = this.borrow_mut::<Self>()?;
let mut buf = vec![0; size];
let n = this.0.read(&mut buf).await?;
buf.truncate(n);
lua.create_string(&buf)
},
);
methods.add_async_method("write", |_, stream, data: LuaString| async move {
let n = stream.0.lock().await.write(&data.as_bytes()).await?;
Ok(n)
});
methods.add_async_function(
"write",
|_, (this, data): (AnyUserData, LuaString)| async move {
let mut this = this.borrow_mut::<Self>()?;
let n = this.0.write(&data.as_bytes()).await?;
Ok(n)
},
);
methods.add_async_method("close", |_, stream, ()| async move {
stream.0.lock().await.shutdown().await?;
methods.add_async_function("close", |_, this: AnyUserData| async move {
let mut this = this.borrow_mut::<Self>()?;
this.0.shutdown().await?;
Ok(())
});
}
}
async fn run_server(lua: &'static Lua) -> Result<()> {
let spawn = lua.create_function(move |_, func: Function| {
task::spawn_local(async move { func.call_async::<_, ()>(()).await });
Ok(())
})?;
async fn run_server(lua: Lua, handler: RegistryKey) -> io::Result<()> {
let addr: SocketAddr = ([127, 0, 0, 1], 3000).into();
let listener = TcpListener::bind(addr).await.expect("cannot bind addr");
let tcp = LuaTcp;
println!("Listening on {}", addr);
let server = lua
let lua = Rc::new(lua);
let handler = Rc::new(handler);
loop {
let (stream, _) = match listener.accept().await {
Ok(res) => res,
Err(err) if is_transient_error(&err) => continue,
Err(err) => return Err(err),
};
let lua = lua.clone();
let handler = handler.clone();
task::spawn_local(async move {
let handler: Function = lua
.registry_value(&handler)
.expect("cannot get Lua handler");
let stream = LuaTcpStream(stream);
if let Err(err) = handler.call_async::<_, ()>(stream).await {
eprintln!("{}", err);
}
});
}
}
#[tokio::main(flavor = "current_thread")]
async fn main() {
let lua = Lua::new();
// Create Lua handler function
let handler_fn = lua
.load(chunk! {
local addr = ...
local listener = $tcp.bind(addr)
print("listening on "..addr)
local accept_new = true
while true do
local stream = listener:accept()
function(stream)
local peer_addr = stream:peer_addr()
print("connected from "..peer_addr)
if not accept_new then
return
end
$spawn(function()
while true do
local data = stream:read(100)
data = data:match("^%s*(.-)%s*$") -- trim
print("["..peer_addr.."] "..data)
if data == "bye" then
stream:write("bye bye\n")
stream:close()
return
end
if data == "exit" then
stream:close()
accept_new = false
return
end
stream:write("echo: "..data.."\n")
while true do
local data = stream:read(100)
data = data:match("^%s*(.-)%s*$") // trim
print("["..peer_addr.."] "..data)
if data == "bye" then
stream:write("bye bye\n")
stream:close()
return
end
end)
stream:write("echo: "..data.."\n")
end
end
})
.into_function()?;
.eval::<Function>()
.expect("cannot create Lua handler");
// Store it in the Registry
let handler = lua
.create_registry_value(handler_fn)
.expect("cannot store Lua handler");
task::LocalSet::new()
.run_until(server.call_async::<_, ()>("0.0.0.0:1234"))
.run_until(run_server(lua, handler))
.await
.expect("cannot run server")
}
#[tokio::main]
async fn main() {
let lua = Lua::new().into_static();
run_server(lua).await.unwrap();
// Consume the static reference and drop it.
// This is safe as long as we don't hold any other references to Lua
// or alive resources.
unsafe { Lua::from_static(lua) };
fn is_transient_error(e: &io::Error) -> bool {
e.kind() == io::ErrorKind::ConnectionRefused
|| e.kind() == io::ErrorKind::ConnectionAborted
|| e.kind() == io::ErrorKind::ConnectionReset
}
+14 -2
View File
@@ -1,7 +1,9 @@
use std::f32;
use std::iter::FromIterator;
use mlua::{chunk, Function, Lua, MetaMethod, Result, UserData, UserDataMethods, Variadic};
use mlua::{
chunk, FromLua, Function, Lua, MetaMethod, Result, UserData, UserDataMethods, Value, Variadic,
};
fn main() -> Result<()> {
// You can create a new Lua state with `Lua::new()`. This loads the default Lua std library
@@ -30,7 +32,7 @@ fn main() -> Result<()> {
global = 'foo'..'bar'
"#,
)
.set_name("example code")?
.set_name("example code")
.exec()?;
assert_eq!(globals.get::<_, String>("global")?, "foobar");
@@ -151,6 +153,16 @@ fn main() -> Result<()> {
#[derive(Copy, Clone)]
struct Vec2(f32, f32);
// We can implement `FromLua` trait for our `Vec2` to return a copy
impl<'lua> FromLua<'lua> for Vec2 {
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
match value {
Value::UserData(ud) => Ok(*ud.borrow::<Self>()?),
_ => unreachable!(),
}
}
}
impl UserData for Vec2 {
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
methods.add_method("magnitude", |_, vec, ()| {
+6
View File
@@ -3,3 +3,9 @@ rustflags = [
"-C", "link-arg=-undefined",
"-C", "link-arg=dynamic_lookup",
]
[target.aarch64-apple-darwin]
rustflags = [
"-C", "link-arg=-undefined",
"-C", "link-arg=dynamic_lookup",
]
+3 -2
View File
@@ -2,18 +2,19 @@
name = "rust_module"
version = "0.0.0"
authors = ["Aleksandr Orlenko <zxteam@pm.me>"]
edition = "2018"
edition = "2021"
[lib]
crate-type = ["cdylib"]
[workspace]
[features]
lua54 = ["mlua/lua54"]
lua53 = ["mlua/lua53"]
lua52 = ["mlua/lua52"]
lua51 = ["mlua/lua51"]
luajit = ["mlua/luajit"]
vendored = ["mlua/vendored"]
[dependencies]
mlua = { path = "../..", features = ["module"] }
-22
View File
@@ -8,32 +8,10 @@ fn used_memory(lua: &Lua, _: ()) -> LuaResult<usize> {
Ok(lua.used_memory())
}
fn check_userdata(_: &Lua, ud: MyUserData) -> LuaResult<i32> {
Ok(ud.0)
}
#[mlua::lua_module]
fn rust_module(lua: &Lua) -> LuaResult<LuaTable> {
let exports = lua.create_table()?;
exports.set("sum", lua.create_function(sum)?)?;
exports.set("used_memory", lua.create_function(used_memory)?)?;
exports.set("check_userdata", lua.create_function(check_userdata)?)?;
Ok(exports)
}
#[derive(Clone, Copy)]
struct MyUserData(i32);
impl LuaUserData for MyUserData {}
#[mlua::lua_module]
fn rust_module_second(lua: &Lua) -> LuaResult<LuaTable> {
let exports = lua.create_table()?;
exports.set("userdata", lua.create_userdata(MyUserData(123))?)?;
Ok(exports)
}
#[mlua::lua_module]
fn rust_module_error(_: &Lua) -> LuaResult<LuaTable> {
Err("custom module error".to_lua_err())
}
+2 -2
View File
@@ -5,7 +5,7 @@ use rustyline::Editor;
fn main() {
let lua = Lua::new();
let mut editor = Editor::<()>::new();
let mut editor = Editor::<(), _>::new().expect("Failed to make rustyline editor");
loop {
let mut prompt = "> ";
@@ -19,7 +19,7 @@ fn main() {
match lua.load(&line).eval::<MultiValue>() {
Ok(values) => {
editor.add_history_entry(line);
editor.add_history_entry(line).unwrap();
println!(
"{}",
values
+4 -4
View File
@@ -1,8 +1,8 @@
[package]
name = "mlua_derive"
version = "0.6.0"
version = "0.9.0-beta.1"
authors = ["Aleksandr Orlenko <zxteam@pm.me>"]
edition = "2018"
edition = "2021"
description = "Procedural macros for the mlua crate."
repository = "https://github.com/khvzak/mlua"
keywords = ["lua", "mlua"]
@@ -18,7 +18,7 @@ macros = ["proc-macro-error", "itertools", "regex", "once_cell"]
quote = "1.0"
proc-macro2 = { version = "1.0", features = ["span-locations"] }
proc-macro-error = { version = "1.0", optional = true }
syn = { version = "1.0", features = ["full"] }
syn = { version = "2.0", features = ["full"] }
itertools = { version = "0.10", optional = true }
regex = { version = "1.4", optional = true }
once_cell = { version = "1.5", optional = true }
once_cell = { version = "1.0", optional = true }
+47 -23
View File
@@ -1,7 +1,8 @@
use proc_macro::TokenStream;
use proc_macro2::{Ident, Span};
use quote::quote;
use syn::{parse_macro_input, AttributeArgs, Error, ItemFn};
use syn::meta::ParseNestedMeta;
use syn::{parse_macro_input, ItemFn, LitStr, Result};
#[cfg(feature = "macros")]
use {
@@ -9,19 +10,41 @@ use {
proc_macro_error::proc_macro_error,
};
#[derive(Default)]
struct ModuleAttributes {
name: Option<Ident>,
}
impl ModuleAttributes {
fn parse(&mut self, meta: ParseNestedMeta) -> Result<()> {
if meta.path.is_ident("name") {
match meta.value() {
Ok(value) => {
self.name = Some(value.parse::<LitStr>()?.parse()?);
}
Err(_) => {
return Err(meta.error("`name` attribute must have a value"));
}
}
} else {
return Err(meta.error("unsupported module attribute"));
}
Ok(())
}
}
#[proc_macro_attribute]
pub fn lua_module(attr: TokenStream, item: TokenStream) -> TokenStream {
let args = parse_macro_input!(attr as AttributeArgs);
let func = parse_macro_input!(item as ItemFn);
if !args.is_empty() {
let err = Error::new(Span::call_site(), "the macro does not support arguments")
.to_compile_error();
return err.into();
let mut args = ModuleAttributes::default();
if !attr.is_empty() {
let args_parser = syn::meta::parser(|meta| args.parse(meta));
parse_macro_input!(attr with args_parser);
}
let func = parse_macro_input!(item as ItemFn);
let func_name = func.sig.ident.clone();
let ext_entrypoint_name = Ident::new(&format!("luaopen_{}", func_name), Span::call_site());
let module_name = args.name.unwrap_or_else(|| func_name.clone());
let ext_entrypoint_name = Ident::new(&format!("luaopen_{module_name}"), Span::call_site());
let wrapped = quote! {
::mlua::require_module_feature!();
@@ -62,37 +85,38 @@ pub fn chunk(input: TokenStream) -> TokenStream {
let wrapped_code = quote! {{
use ::mlua::{AsChunk, ChunkMode, Lua, Result, Value};
use ::std::marker::PhantomData;
use ::std::borrow::Cow;
use ::std::io::Result as IoResult;
use ::std::sync::Mutex;
fn annotate<'a, F: FnOnce(&'a Lua) -> Result<Value<'a>>>(f: F) -> F { f }
struct InnerChunk<F: for <'a> FnOnce(&'a Lua) -> Result<Value<'a>>>(Mutex<Option<F>>);
struct InnerChunk<'a, F: FnOnce(&'a Lua) -> Result<Value<'a>>>(Mutex<Option<F>>, PhantomData<&'a ()>);
impl<'lua, F> AsChunk<'lua> for InnerChunk<'lua, F>
impl<F> AsChunk<'static> for InnerChunk<F>
where
F: FnOnce(&'lua Lua) -> Result<Value<'lua>>,
F: for <'a> FnOnce(&'a Lua) -> Result<Value<'a>>,
{
fn source(&self) -> &[u8] {
(#source).as_bytes()
}
fn env(&self, lua: &'lua Lua) -> Result<Option<Value<'lua>>> {
fn env<'lua>(&self, lua: &'lua Lua) -> Result<Value<'lua>> {
if #caps_len > 0 {
if let Ok(mut make_env) = self.0.lock() {
if let Some(make_env) = make_env.take() {
return make_env(lua).map(Some);
return make_env(lua);
}
}
}
Ok(None)
Ok(Value::Nil)
}
fn mode(&self) -> Option<ChunkMode> {
Some(ChunkMode::Text)
}
fn source(self) -> IoResult<Cow<'static, [u8]>> {
Ok(Cow::Borrowed((#source).as_bytes()))
}
}
fn annotate<F: for<'a> FnOnce(&'a Lua) -> Result<Value<'a>>>(f: F) -> F { f }
let make_env = annotate(move |lua: &Lua| -> Result<Value> {
let globals = lua.globals();
let env = lua.create_table()?;
@@ -107,7 +131,7 @@ pub fn chunk(input: TokenStream) -> TokenStream {
Ok(Value::Table(env))
});
&InnerChunk(Mutex::new(Some(make_env)), PhantomData)
InnerChunk(Mutex::new(Some(make_env)))
}};
wrapped_code.into()
+3 -4
View File
@@ -59,7 +59,7 @@ fn parse_pos(span: &Span) -> Option<(usize, usize)> {
static RE: Lazy<Regex> = Lazy::new(|| Regex::new(r"bytes\(([0-9]+)\.\.([0-9]+)\)").unwrap());
match RE.captures(&format!("{:?}", span)) {
match RE.captures(&format!("{span:?}")) {
Some(caps) => match (caps.get(1), caps.get(2)) {
(Some(start), Some(end)) => Some((
match start.as_str().parse() {
@@ -175,8 +175,7 @@ impl Tokens {
pub(crate) fn retokenize(tt: TokenStream) -> Tokens {
Tokens(
tt.into_iter()
.map(Tokens::from)
.flatten()
.flat_map(Tokens::from)
.peekable()
.batching(|iter| {
// Find variable tokens
@@ -217,7 +216,7 @@ impl From<TokenTree> for Tokens {
vec![Token::new_delim(b, tt.clone(), true)]
.into_iter()
.chain(g.stream().into_iter().map(Tokens::from).flatten())
.chain(g.stream().into_iter().flat_map(Tokens::from))
.chain(vec![Token::new_delim(e, tt, false)])
.collect()
}
+513
View File
@@ -0,0 +1,513 @@
use std::borrow::Cow;
use std::collections::HashMap;
use std::ffi::CString;
use std::io::Result as IoResult;
use std::path::{Path, PathBuf};
use std::string::String as StdString;
use crate::error::{Error, Result};
use crate::ffi;
use crate::function::Function;
use crate::lua::Lua;
use crate::value::{FromLuaMulti, IntoLua, IntoLuaMulti, Value};
#[cfg(feature = "async")]
use {futures_core::future::LocalBoxFuture, futures_util::future};
/// Trait for types [loadable by Lua] and convertible to a [`Chunk`]
///
/// [loadable by Lua]: https://www.lua.org/manual/5.4/manual.html#3.3.2
/// [`Chunk`]: crate::Chunk
pub trait AsChunk<'a> {
/// Returns optional chunk name
fn name(&self) -> Option<StdString> {
None
}
/// Returns optional chunk [environment]
///
/// [environment]: https://www.lua.org/manual/5.4/manual.html#2.2
fn env<'lua>(&self, lua: &'lua Lua) -> Result<Value<'lua>> {
let _lua = lua; // suppress warning
Ok(Value::Nil)
}
/// Returns optional chunk mode (text or binary)
fn mode(&self) -> Option<ChunkMode> {
None
}
/// Returns chunk data (can be text or binary)
fn source(self) -> IoResult<Cow<'a, [u8]>>;
}
impl<'a> AsChunk<'a> for &'a str {
fn source(self) -> IoResult<Cow<'a, [u8]>> {
Ok(Cow::Borrowed(self.as_ref()))
}
}
impl AsChunk<'static> for StdString {
fn source(self) -> IoResult<Cow<'static, [u8]>> {
Ok(Cow::Owned(self.into_bytes()))
}
}
impl<'a> AsChunk<'a> for &'a StdString {
fn source(self) -> IoResult<Cow<'a, [u8]>> {
Ok(Cow::Borrowed(self.as_bytes()))
}
}
impl<'a> AsChunk<'a> for &'a [u8] {
fn source(self) -> IoResult<Cow<'a, [u8]>> {
Ok(Cow::Borrowed(self))
}
}
impl AsChunk<'static> for Vec<u8> {
fn source(self) -> IoResult<Cow<'static, [u8]>> {
Ok(Cow::Owned(self))
}
}
impl<'a> AsChunk<'a> for &'a Vec<u8> {
fn source(self) -> IoResult<Cow<'a, [u8]>> {
Ok(Cow::Borrowed(self.as_ref()))
}
}
impl AsChunk<'static> for &Path {
fn name(&self) -> Option<StdString> {
Some(format!("@{}", self.display()))
}
fn source(self) -> IoResult<Cow<'static, [u8]>> {
std::fs::read(self).map(Cow::Owned)
}
}
impl AsChunk<'static> for PathBuf {
fn name(&self) -> Option<StdString> {
Some(format!("@{}", self.display()))
}
fn source(self) -> IoResult<Cow<'static, [u8]>> {
std::fs::read(self).map(Cow::Owned)
}
}
/// Returned from [`Lua::load`] and is used to finalize loading and executing Lua main chunks.
///
/// [`Lua::load`]: crate::Lua::load
#[must_use = "`Chunk`s do nothing unless one of `exec`, `eval`, `call`, or `into_function` are called on them"]
pub struct Chunk<'lua, 'a> {
pub(crate) lua: &'lua Lua,
pub(crate) name: StdString,
pub(crate) env: Result<Value<'lua>>,
pub(crate) mode: Option<ChunkMode>,
pub(crate) source: IoResult<Cow<'a, [u8]>>,
#[cfg(feature = "luau")]
pub(crate) compiler: Option<Compiler>,
}
/// Represents chunk mode (text or binary).
#[derive(Clone, Copy, Debug, PartialEq, Eq)]
pub enum ChunkMode {
Text,
Binary,
}
/// Luau compiler
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
#[derive(Clone, Debug)]
pub struct Compiler {
optimization_level: u8,
debug_level: u8,
coverage_level: u8,
vector_lib: Option<String>,
vector_ctor: Option<String>,
mutable_globals: Vec<String>,
}
#[cfg(any(feature = "luau", doc))]
impl Default for Compiler {
fn default() -> Self {
// Defaults are taken from luacode.h
Compiler {
optimization_level: 1,
debug_level: 1,
coverage_level: 0,
vector_lib: None,
vector_ctor: None,
mutable_globals: Vec::new(),
}
}
}
#[cfg(any(feature = "luau", doc))]
impl Compiler {
/// Creates Luau compiler instance with default options
pub fn new() -> Self {
Compiler::default()
}
/// Sets Luau compiler optimization level.
///
/// Possible values:
/// * 0 - no optimization
/// * 1 - baseline optimization level that doesn't prevent debuggability (default)
/// * 2 - includes optimizations that harm debuggability such as inlining
pub fn set_optimization_level(mut self, level: u8) -> Self {
self.optimization_level = level;
self
}
/// Sets Luau compiler debug level.
///
/// Possible values:
/// * 0 - no debugging support
/// * 1 - line info & function names only; sufficient for backtraces (default)
/// * 2 - full debug info with local & upvalue names; necessary for debugger
pub fn set_debug_level(mut self, level: u8) -> Self {
self.debug_level = level;
self
}
/// Sets Luau compiler code coverage level.
///
/// Possible values:
/// * 0 - no code coverage support (default)
/// * 1 - statement coverage
/// * 2 - statement and expression coverage (verbose)
pub fn set_coverage_level(mut self, level: u8) -> Self {
self.coverage_level = level;
self
}
#[doc(hidden)]
pub fn set_vector_lib(mut self, lib: Option<String>) -> Self {
self.vector_lib = lib;
self
}
#[doc(hidden)]
pub fn set_vector_ctor(mut self, ctor: Option<String>) -> Self {
self.vector_ctor = ctor;
self
}
/// Sets a list of globals that are mutable.
///
/// It disables the import optimization for fields accessed through these.
pub fn set_mutable_globals(mut self, globals: Vec<String>) -> Self {
self.mutable_globals = globals;
self
}
/// Compiles the `source` into bytecode.
pub fn compile(&self, source: impl AsRef<[u8]>) -> Vec<u8> {
use std::os::raw::c_int;
use std::ptr;
let vector_lib = self.vector_lib.clone();
let vector_lib = vector_lib.and_then(|lib| CString::new(lib).ok());
let vector_lib = vector_lib.as_ref();
let vector_ctor = self.vector_ctor.clone();
let vector_ctor = vector_ctor.and_then(|ctor| CString::new(ctor).ok());
let vector_ctor = vector_ctor.as_ref();
let mutable_globals = self
.mutable_globals
.iter()
.map(|name| CString::new(name.clone()).ok())
.collect::<Option<Vec<_>>>()
.unwrap_or_default();
let mut mutable_globals = mutable_globals
.iter()
.map(|s| s.as_ptr())
.collect::<Vec<_>>();
let mut mutable_globals_ptr = ptr::null_mut();
if !mutable_globals.is_empty() {
mutable_globals.push(ptr::null());
mutable_globals_ptr = mutable_globals.as_mut_ptr();
}
unsafe {
let options = ffi::lua_CompileOptions {
optimizationLevel: self.optimization_level as c_int,
debugLevel: self.debug_level as c_int,
coverageLevel: self.coverage_level as c_int,
vectorLib: vector_lib.map_or(ptr::null(), |s| s.as_ptr()),
vectorCtor: vector_ctor.map_or(ptr::null(), |s| s.as_ptr()),
mutableGlobals: mutable_globals_ptr,
};
ffi::luau_compile(source.as_ref(), options)
}
}
}
impl<'lua, 'a> Chunk<'lua, 'a> {
/// Sets the name of this chunk, which results in more informative error traces.
pub fn set_name(mut self, name: impl Into<String>) -> Self {
self.name = name.into();
self
}
/// Sets the first upvalue (`_ENV`) of the loaded chunk to the given value.
///
/// Lua main chunks always have exactly one upvalue, and this upvalue is used as the `_ENV`
/// variable inside the chunk. By default this value is set to the global environment.
///
/// Calling this method changes the `_ENV` upvalue to the value provided, and variables inside
/// the chunk will refer to the given environment rather than the global one.
///
/// All global variables (including the standard library!) are looked up in `_ENV`, so it may be
/// necessary to populate the environment in order for scripts using custom environments to be
/// useful.
pub fn set_environment<V: IntoLua<'lua>>(mut self, env: V) -> Self {
self.env = env.into_lua(self.lua);
self
}
/// Sets whether the chunk is text or binary (autodetected by default).
///
/// Be aware, Lua does not check the consistency of the code inside binary chunks.
/// Running maliciously crafted bytecode can crash the interpreter.
pub fn set_mode(mut self, mode: ChunkMode) -> Self {
self.mode = Some(mode);
self
}
/// Sets or overwrites a Luau compiler used for this chunk.
///
/// See [`Compiler`] for details and possible options.
///
/// Requires `feature = "luau"`
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
pub fn set_compiler(mut self, compiler: Compiler) -> Self {
self.compiler = Some(compiler);
self
}
/// Execute this chunk of code.
///
/// This is equivalent to calling the chunk function with no arguments and no return values.
pub fn exec(self) -> Result<()> {
self.call(())?;
Ok(())
}
/// Asynchronously execute this chunk of code.
///
/// See [`exec`] for more details.
///
/// Requires `feature = "async"`
///
/// [`exec`]: #method.exec
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
pub fn exec_async(self) -> LocalBoxFuture<'lua, Result<()>> {
self.call_async(())
}
/// Evaluate the chunk as either an expression or block.
///
/// If the chunk can be parsed as an expression, this loads and executes the chunk and returns
/// the value that it evaluates to. Otherwise, the chunk is interpreted as a block as normal,
/// and this is equivalent to calling `exec`.
pub fn eval<R: FromLuaMulti<'lua>>(self) -> Result<R> {
// Bytecode is always interpreted as a statement.
// For source code, first try interpreting the lua as an expression by adding
// "return", then as a statement. This is the same thing the
// actual lua repl does.
if self.detect_mode() == ChunkMode::Binary {
self.call(())
} else if let Ok(function) = self.to_expression() {
function.call(())
} else {
self.call(())
}
}
/// Asynchronously evaluate the chunk as either an expression or block.
///
/// See [`eval`] for more details.
///
/// Requires `feature = "async"`
///
/// [`eval`]: #method.eval
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
pub fn eval_async<'fut, R>(self) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
R: FromLuaMulti<'lua> + 'fut,
{
if self.detect_mode() == ChunkMode::Binary {
self.call_async(())
} else if let Ok(function) = self.to_expression() {
function.call_async(())
} else {
self.call_async(())
}
}
/// Load the chunk function and call it with the given arguments.
///
/// This is equivalent to `into_function` and calling the resulting function.
pub fn call<A: IntoLuaMulti<'lua>, R: FromLuaMulti<'lua>>(self, args: A) -> Result<R> {
self.into_function()?.call(args)
}
/// Load the chunk function and asynchronously call it with the given arguments.
///
/// See [`call`] for more details.
///
/// Requires `feature = "async"`
///
/// [`call`]: #method.call
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
pub fn call_async<'fut, A, R>(self, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
match self.into_function() {
Ok(func) => func.call_async(args),
Err(e) => Box::pin(future::err(e)),
}
}
/// Load this chunk into a regular `Function`.
///
/// This simply compiles the chunk without actually executing it.
#[cfg_attr(not(feature = "luau"), allow(unused_mut))]
pub fn into_function(mut self) -> Result<Function<'lua>> {
#[cfg(feature = "luau")]
if self.compiler.is_some() {
// We don't need to compile source if no compiler set
self.compile();
}
let name = Self::convert_name(self.name)?;
self.lua
.load_chunk(Some(&name), self.env?, self.mode, self.source?.as_ref())
}
/// Compiles the chunk and changes mode to binary.
///
/// It does nothing if the chunk is already binary.
fn compile(&mut self) {
if let Ok(ref source) = self.source {
if self.detect_mode() == ChunkMode::Text {
#[cfg(feature = "luau")]
{
let data = self
.compiler
.get_or_insert_with(Default::default)
.compile(source);
self.source = Ok(Cow::Owned(data));
self.mode = Some(ChunkMode::Binary);
}
#[cfg(not(feature = "luau"))]
if let Ok(func) = self.lua.load_chunk(None, Value::Nil, None, source.as_ref()) {
let data = func.dump(false);
self.source = Ok(Cow::Owned(data));
self.mode = Some(ChunkMode::Binary);
}
}
}
}
/// Fetches compiled bytecode of this chunk from the cache.
///
/// If not found, compiles the source code and stores it on the cache.
pub(crate) fn try_cache(mut self) -> Self {
struct ChunksCache(HashMap<Vec<u8>, Vec<u8>>);
// Try to fetch compiled chunk from cache
let mut text_source = None;
if let Ok(ref source) = self.source {
if self.detect_mode() == ChunkMode::Text {
if let Some(cache) = self.lua.app_data_ref::<ChunksCache>() {
if let Some(data) = cache.0.get(source.as_ref()) {
self.source = Ok(Cow::Owned(data.clone()));
self.mode = Some(ChunkMode::Binary);
return self;
}
}
text_source = Some(source.as_ref().to_vec());
}
}
// Compile and cache the chunk
if let Some(text_source) = text_source {
self.compile();
if let Ok(ref binary_source) = self.source {
if self.detect_mode() == ChunkMode::Binary {
if let Some(mut cache) = self.lua.app_data_mut::<ChunksCache>() {
cache.0.insert(text_source, binary_source.as_ref().to_vec());
} else {
let mut cache = ChunksCache(HashMap::new());
cache.0.insert(text_source, binary_source.as_ref().to_vec());
self.lua.set_app_data(cache);
}
}
}
}
self
}
fn to_expression(&self) -> Result<Function<'lua>> {
// We assume that mode is Text
let source = self.source.as_ref();
let source = source.map_err(|err| Error::RuntimeError(err.to_string()))?;
let source = Self::expression_source(source);
// We don't need to compile source if no compiler options set
#[cfg(feature = "luau")]
let source = self
.compiler
.as_ref()
.map(|c| c.compile(&source))
.unwrap_or(source);
let name = Self::convert_name(self.name.clone())?;
self.lua
.load_chunk(Some(&name), self.env.clone()?, None, &source)
}
fn detect_mode(&self) -> ChunkMode {
match (self.mode, &self.source) {
(Some(mode), _) => mode,
(None, Ok(source)) => {
#[cfg(not(feature = "luau"))]
if source.starts_with(ffi::LUA_SIGNATURE) {
return ChunkMode::Binary;
}
#[cfg(feature = "luau")]
if *source.first().unwrap_or(&u8::MAX) < b'\n' {
return ChunkMode::Binary;
}
ChunkMode::Text
}
(None, Err(_)) => ChunkMode::Text, // any value is fine
}
}
fn convert_name(name: String) -> Result<CString> {
CString::new(name).map_err(|err| Error::RuntimeError(format!("invalid name: {err}")))
}
fn expression_source(source: &[u8]) -> Vec<u8> {
let mut buf = Vec::with_capacity(b"return ".len() + source.len());
buf.extend(b"return ");
buf.extend(source);
buf
}
}
+255 -141
View File
@@ -1,7 +1,6 @@
#![allow(clippy::wrong_self_convention)]
use std::borrow::Cow;
use std::collections::{BTreeMap, BTreeSet, HashMap, HashSet};
use std::convert::TryInto;
use std::ffi::{CStr, CString};
use std::hash::{BuildHasher, Hash};
use std::string::String as StdString;
@@ -16,12 +15,22 @@ use crate::string::String;
use crate::table::Table;
use crate::thread::Thread;
use crate::types::{LightUserData, MaybeSend};
use crate::userdata::{AnyUserData, UserData};
use crate::value::{FromLua, Nil, ToLua, Value};
use crate::userdata::{AnyUserData, UserData, UserDataRef, UserDataRefMut};
use crate::value::{FromLua, IntoLua, Nil, Value};
impl<'lua> ToLua<'lua> for Value<'lua> {
#[cfg(feature = "unstable")]
use crate::{
function::{OwnedFunction, WrappedFunction},
table::OwnedTable,
userdata::OwnedAnyUserData,
};
#[cfg(all(feature = "async", feature = "unstable"))]
use crate::function::WrappedAsyncFunction;
impl<'lua> IntoLua<'lua> for Value<'lua> {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(self)
}
}
@@ -33,9 +42,9 @@ impl<'lua> FromLua<'lua> for Value<'lua> {
}
}
impl<'lua> ToLua<'lua> for String<'lua> {
impl<'lua> IntoLua<'lua> for String<'lua> {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(self))
}
}
@@ -53,9 +62,9 @@ impl<'lua> FromLua<'lua> for String<'lua> {
}
}
impl<'lua> ToLua<'lua> for Table<'lua> {
impl<'lua> IntoLua<'lua> for Table<'lua> {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(self))
}
}
@@ -74,9 +83,25 @@ impl<'lua> FromLua<'lua> for Table<'lua> {
}
}
impl<'lua> ToLua<'lua> for Function<'lua> {
#[cfg(feature = "unstable")]
impl<'lua> IntoLua<'lua> for OwnedTable {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(Table(lua.adopt_owned_ref(self.0))))
}
}
#[cfg(feature = "unstable")]
impl<'lua> FromLua<'lua> for OwnedTable {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<OwnedTable> {
Table::from_lua(value, lua).map(|s| s.into_owned())
}
}
impl<'lua> IntoLua<'lua> for Function<'lua> {
#[inline]
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Function(self))
}
}
@@ -95,9 +120,41 @@ impl<'lua> FromLua<'lua> for Function<'lua> {
}
}
impl<'lua> ToLua<'lua> for Thread<'lua> {
#[cfg(feature = "unstable")]
impl<'lua> IntoLua<'lua> for OwnedFunction {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Function(Function(lua.adopt_owned_ref(self.0))))
}
}
#[cfg(feature = "unstable")]
impl<'lua> FromLua<'lua> for OwnedFunction {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<OwnedFunction> {
Function::from_lua(value, lua).map(|s| s.into_owned())
}
}
#[cfg(feature = "unstable")]
impl<'lua> IntoLua<'lua> for WrappedFunction<'lua> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
lua.create_callback(self.0).map(Value::Function)
}
}
#[cfg(all(feature = "async", feature = "unstable"))]
impl<'lua> IntoLua<'lua> for WrappedAsyncFunction<'lua> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
lua.create_async_callback(self.0).map(Value::Function)
}
}
impl<'lua> IntoLua<'lua> for Thread<'lua> {
#[inline]
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Thread(self))
}
}
@@ -116,9 +173,9 @@ impl<'lua> FromLua<'lua> for Thread<'lua> {
}
}
impl<'lua> ToLua<'lua> for AnyUserData<'lua> {
impl<'lua> IntoLua<'lua> for AnyUserData<'lua> {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::UserData(self))
}
}
@@ -137,30 +194,46 @@ impl<'lua> FromLua<'lua> for AnyUserData<'lua> {
}
}
impl<'lua, T: 'static + MaybeSend + UserData> ToLua<'lua> for T {
#[cfg(feature = "unstable")]
impl<'lua> IntoLua<'lua> for OwnedAnyUserData {
#[inline]
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::UserData(AnyUserData(lua.adopt_owned_ref(self.0))))
}
}
#[cfg(feature = "unstable")]
impl<'lua> FromLua<'lua> for OwnedAnyUserData {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<OwnedAnyUserData> {
AnyUserData::from_lua(value, lua).map(|s| s.into_owned())
}
}
impl<'lua, T: 'static + MaybeSend + UserData> IntoLua<'lua> for T {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::UserData(lua.create_userdata(self)?))
}
}
impl<'lua, T: 'static + UserData + Clone> FromLua<'lua> for T {
impl<'lua, T: 'static> FromLua<'lua> for UserDataRef<'lua, T> {
#[inline]
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<T> {
match value {
Value::UserData(ud) => Ok(ud.borrow::<T>()?.clone()),
_ => Err(Error::FromLuaConversionError {
from: value.type_name(),
to: "userdata",
message: None,
}),
}
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
Self::from_value(value)
}
}
impl<'lua> ToLua<'lua> for Error {
impl<'lua, T: 'static> FromLua<'lua> for UserDataRefMut<'lua, T> {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
Self::from_value(value)
}
}
impl<'lua> IntoLua<'lua> for Error {
#[inline]
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Error(self))
}
}
@@ -179,9 +252,9 @@ impl<'lua> FromLua<'lua> for Error {
}
}
impl<'lua> ToLua<'lua> for bool {
impl<'lua> IntoLua<'lua> for bool {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Boolean(self))
}
}
@@ -197,9 +270,9 @@ impl<'lua> FromLua<'lua> for bool {
}
}
impl<'lua> ToLua<'lua> for LightUserData {
impl<'lua> IntoLua<'lua> for LightUserData {
#[inline]
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::LightUserData(self))
}
}
@@ -218,9 +291,9 @@ impl<'lua> FromLua<'lua> for LightUserData {
}
}
impl<'lua> ToLua<'lua> for StdString {
impl<'lua> IntoLua<'lua> for StdString {
#[inline]
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(&self)?))
}
}
@@ -241,26 +314,29 @@ impl<'lua> FromLua<'lua> for StdString {
}
}
impl<'lua> ToLua<'lua> for &str {
impl<'lua> IntoLua<'lua> for &str {
#[inline]
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(self)?))
}
}
impl<'lua> ToLua<'lua> for Cow<'_, str> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua> IntoLua<'lua> for Cow<'_, str> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(self.as_bytes())?))
}
}
impl<'lua> ToLua<'lua> for Box<str> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua> IntoLua<'lua> for Box<str> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(&*self)?))
}
}
impl<'lua> FromLua<'lua> for Box<str> {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<Self> {
let ty = value.type_name();
Ok(lua
@@ -276,13 +352,15 @@ impl<'lua> FromLua<'lua> for Box<str> {
}
}
impl<'lua> ToLua<'lua> for CString {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua> IntoLua<'lua> for CString {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(self.as_bytes())?))
}
}
impl<'lua> FromLua<'lua> for CString {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<Self> {
let ty = value.type_name();
let string = lua
@@ -304,25 +382,29 @@ impl<'lua> FromLua<'lua> for CString {
}
}
impl<'lua> ToLua<'lua> for &CStr {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua> IntoLua<'lua> for &CStr {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(self.to_bytes())?))
}
}
impl<'lua> ToLua<'lua> for Cow<'_, CStr> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua> IntoLua<'lua> for Cow<'_, CStr> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(self.to_bytes())?))
}
}
impl<'lua> ToLua<'lua> for BString {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua> IntoLua<'lua> for BString {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(&self)?))
}
}
impl<'lua> FromLua<'lua> for BString {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<Self> {
let ty = value.type_name();
Ok(BString::from(
@@ -338,45 +420,52 @@ impl<'lua> FromLua<'lua> for BString {
}
}
impl<'lua> ToLua<'lua> for &BStr {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(&self)?))
impl<'lua> IntoLua<'lua> for &BStr {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::String(lua.create_string(self)?))
}
}
macro_rules! lua_convert_int {
($x:ty) => {
impl<'lua> ToLua<'lua> for $x {
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
if let Some(i) = cast(self) {
Ok(Value::Integer(i))
} else {
cast(self)
.ok_or_else(|| Error::ToLuaConversionError {
from: stringify!($x),
to: "number",
message: Some("out of range".to_owned()),
})
.map(Value::Number)
}
impl<'lua> IntoLua<'lua> for $x {
#[inline]
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
cast(self)
.map(Value::Integer)
.or_else(|| cast(self).map(Value::Number))
// This is impossible error because conversion to Number never fails
.ok_or_else(|| Error::ToLuaConversionError {
from: stringify!($x),
to: "number",
message: Some("out of range".to_owned()),
})
}
}
impl<'lua> FromLua<'lua> for $x {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<Self> {
let ty = value.type_name();
(if let Some(i) = lua.coerce_integer(value.clone())? {
cast(i)
} else {
cast(lua.coerce_number(value)?.ok_or_else(|| {
Error::FromLuaConversionError {
from: ty,
to: stringify!($x),
message: Some(
"expected number or string coercible to number".to_string(),
),
(match value {
Value::Integer(i) => cast(i),
Value::Number(n) => cast(n),
_ => {
if let Some(i) = lua.coerce_integer(value.clone())? {
cast(i)
} else {
cast(lua.coerce_number(value)?.ok_or_else(|| {
Error::FromLuaConversionError {
from: ty,
to: stringify!($x),
message: Some(
"expected number or string coercible to number".to_string(),
),
}
})?)
}
})?)
}
})
.ok_or_else(|| Error::FromLuaConversionError {
from: ty,
@@ -403,8 +492,9 @@ lua_convert_int!(usize);
macro_rules! lua_convert_float {
($x:ty) => {
impl<'lua> ToLua<'lua> for $x {
fn to_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua> IntoLua<'lua> for $x {
#[inline]
fn into_lua(self, _: &'lua Lua) -> Result<Value<'lua>> {
cast(self)
.ok_or_else(|| Error::ToLuaConversionError {
from: stringify!($x),
@@ -416,6 +506,7 @@ macro_rules! lua_convert_float {
}
impl<'lua> FromLua<'lua> for $x {
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<Self> {
let ty = value.type_name();
lua.coerce_number(value)?
@@ -439,94 +530,110 @@ macro_rules! lua_convert_float {
lua_convert_float!(f32);
lua_convert_float!(f64);
impl<'lua, T> ToLua<'lua> for &[T]
impl<'lua, T> IntoLua<'lua> for &[T]
where
T: Clone + ToLua<'lua>,
T: Clone + IntoLua<'lua>,
{
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(
lua.create_sequence_from(self.iter().cloned())?,
))
}
}
macro_rules! lua_convert_array {
($($N:literal)+) => {
$(
impl<'lua, T> ToLua<'lua> for [T; $N]
where
T: Clone + ToLua<'lua>,
{
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
(&self).to_lua(lua)
}
}
impl<'lua, T> ToLua<'lua> for &[T; $N]
where
T: Clone + ToLua<'lua>,
{
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(
lua.create_sequence_from(self.iter().cloned())?,
))
}
}
)+
impl<'lua, T, const N: usize> IntoLua<'lua> for [T; N]
where
T: IntoLua<'lua>,
{
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(lua.create_sequence_from(self)?))
}
}
lua_convert_array! {
0 1 2 3 4 5 6 7 8 9
10 11 12 13 14 15 16 17 18 19
20 21 22 23 24 25 26 27 28 29
30 31 32
impl<'lua, T, const N: usize> FromLua<'lua> for [T; N]
where
T: FromLua<'lua>,
{
#[inline]
fn from_lua(value: Value<'lua>, _lua: &'lua Lua) -> Result<Self> {
match value {
#[cfg(feature = "luau")]
Value::Vector(x, y, z) if N == 3 => Ok(mlua_expect!(
vec![
T::from_lua(Value::Number(x as _), _lua)?,
T::from_lua(Value::Number(y as _), _lua)?,
T::from_lua(Value::Number(z as _), _lua)?,
]
.try_into()
.map_err(|_| ()),
"cannot convert vector to array"
)),
Value::Table(table) => {
let vec = table.sequence_values().collect::<Result<Vec<_>>>()?;
vec.try_into()
.map_err(|vec: Vec<T>| Error::FromLuaConversionError {
from: "Table",
to: "Array",
message: Some(format!("expected table of length {}, got {}", N, vec.len())),
})
}
_ => Err(Error::FromLuaConversionError {
from: value.type_name(),
to: "Array",
message: Some("expected table".to_string()),
}),
}
}
}
impl<'lua, T: ToLua<'lua>> ToLua<'lua> for Box<[T]> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua, T: IntoLua<'lua>> IntoLua<'lua> for Box<[T]> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(lua.create_sequence_from(self.into_vec())?))
}
}
impl<'lua, T: FromLua<'lua>> FromLua<'lua> for Box<[T]> {
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
if let Value::Table(table) = value {
table.sequence_values().collect()
} else {
Err(Error::FromLuaConversionError {
from: value.type_name(),
to: "Box<[T]>",
message: Some("expected table".to_string()),
})
}
#[inline]
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<Self> {
Ok(Vec::<T>::from_lua(value, lua)?.into_boxed_slice())
}
}
impl<'lua, T: ToLua<'lua>> ToLua<'lua> for Vec<T> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua, T: IntoLua<'lua>> IntoLua<'lua> for Vec<T> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(lua.create_sequence_from(self)?))
}
}
impl<'lua, T: FromLua<'lua>> FromLua<'lua> for Vec<T> {
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
if let Value::Table(table) = value {
table.sequence_values().collect()
} else {
Err(Error::FromLuaConversionError {
#[inline]
fn from_lua(value: Value<'lua>, _lua: &'lua Lua) -> Result<Self> {
match value {
#[cfg(feature = "luau")]
Value::Vector(x, y, z) => Ok(vec![
T::from_lua(Value::Number(x as _), _lua)?,
T::from_lua(Value::Number(y as _), _lua)?,
T::from_lua(Value::Number(z as _), _lua)?,
]),
Value::Table(table) => table.sequence_values().collect(),
_ => Err(Error::FromLuaConversionError {
from: value.type_name(),
to: "Vec",
message: Some("expected table".to_string()),
})
}),
}
}
}
impl<'lua, K: Eq + Hash + ToLua<'lua>, V: ToLua<'lua>, S: BuildHasher> ToLua<'lua>
impl<'lua, K: Eq + Hash + IntoLua<'lua>, V: IntoLua<'lua>, S: BuildHasher> IntoLua<'lua>
for HashMap<K, V, S>
{
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(lua.create_table_from(self)?))
}
}
@@ -534,6 +641,7 @@ impl<'lua, K: Eq + Hash + ToLua<'lua>, V: ToLua<'lua>, S: BuildHasher> ToLua<'lu
impl<'lua, K: Eq + Hash + FromLua<'lua>, V: FromLua<'lua>, S: BuildHasher + Default> FromLua<'lua>
for HashMap<K, V, S>
{
#[inline]
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
if let Value::Table(table) = value {
table.pairs().collect()
@@ -547,13 +655,15 @@ impl<'lua, K: Eq + Hash + FromLua<'lua>, V: FromLua<'lua>, S: BuildHasher + Defa
}
}
impl<'lua, K: Ord + ToLua<'lua>, V: ToLua<'lua>> ToLua<'lua> for BTreeMap<K, V> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua, K: Ord + IntoLua<'lua>, V: IntoLua<'lua>> IntoLua<'lua> for BTreeMap<K, V> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(lua.create_table_from(self)?))
}
}
impl<'lua, K: Ord + FromLua<'lua>, V: FromLua<'lua>> FromLua<'lua> for BTreeMap<K, V> {
#[inline]
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
if let Value::Table(table) = value {
table.pairs().collect()
@@ -567,8 +677,9 @@ impl<'lua, K: Ord + FromLua<'lua>, V: FromLua<'lua>> FromLua<'lua> for BTreeMap<
}
}
impl<'lua, T: Eq + Hash + ToLua<'lua>, S: BuildHasher> ToLua<'lua> for HashSet<T, S> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua, T: Eq + Hash + IntoLua<'lua>, S: BuildHasher> IntoLua<'lua> for HashSet<T, S> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(lua.create_table_from(
self.into_iter().map(|val| (val, true)),
)?))
@@ -576,6 +687,7 @@ impl<'lua, T: Eq + Hash + ToLua<'lua>, S: BuildHasher> ToLua<'lua> for HashSet<T
}
impl<'lua, T: Eq + Hash + FromLua<'lua>, S: BuildHasher + Default> FromLua<'lua> for HashSet<T, S> {
#[inline]
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
match value {
Value::Table(table) if table.len()? > 0 => table.sequence_values().collect(),
@@ -592,8 +704,9 @@ impl<'lua, T: Eq + Hash + FromLua<'lua>, S: BuildHasher + Default> FromLua<'lua>
}
}
impl<'lua, T: Ord + ToLua<'lua>> ToLua<'lua> for BTreeSet<T> {
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
impl<'lua, T: Ord + IntoLua<'lua>> IntoLua<'lua> for BTreeSet<T> {
#[inline]
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
Ok(Value::Table(lua.create_table_from(
self.into_iter().map(|val| (val, true)),
)?))
@@ -601,6 +714,7 @@ impl<'lua, T: Ord + ToLua<'lua>> ToLua<'lua> for BTreeSet<T> {
}
impl<'lua, T: Ord + FromLua<'lua>> FromLua<'lua> for BTreeSet<T> {
#[inline]
fn from_lua(value: Value<'lua>, _: &'lua Lua) -> Result<Self> {
match value {
Value::Table(table) if table.len()? > 0 => table.sequence_values().collect(),
@@ -617,11 +731,11 @@ impl<'lua, T: Ord + FromLua<'lua>> FromLua<'lua> for BTreeSet<T> {
}
}
impl<'lua, T: ToLua<'lua>> ToLua<'lua> for Option<T> {
impl<'lua, T: IntoLua<'lua>> IntoLua<'lua> for Option<T> {
#[inline]
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>> {
match self {
Some(val) => val.to_lua(lua),
Some(val) => val.into_lua(lua),
None => Ok(Nil),
}
}
+183 -42
View File
@@ -1,5 +1,3 @@
#![allow(clippy::wrong_self_convention)]
use std::error::Error as StdError;
use std::fmt;
use std::io::Error as IoError;
@@ -9,6 +7,8 @@ use std::str::Utf8Error;
use std::string::String as StdString;
use std::sync::Arc;
use crate::private::Sealed;
/// Error type returned by `mlua` methods.
#[derive(Debug, Clone)]
#[non_exhaustive]
@@ -37,7 +37,8 @@ pub enum Error {
/// Lua garbage collector error, aka `LUA_ERRGCMM`.
///
/// The Lua VM returns this error when there is an error running a `__gc` metamethod.
#[cfg(any(feature = "lua53", feature = "lua52"))]
#[cfg(any(feature = "lua53", feature = "lua52", doc))]
#[cfg_attr(docsrs, doc(cfg(any(feature = "lua53", feature = "lua52"))))]
GarbageCollectorError(StdString),
/// Potentially unsafe action in safe mode.
SafetyError(StdString),
@@ -70,6 +71,20 @@ pub enum Error {
StackError,
/// Too many arguments to `Function::bind`
BindError,
/// Bad argument received from Lua (usually when calling a function).
///
/// This error can help to identify the argument that caused the error
/// (which is stored in the corresponding field).
BadArgument {
/// Function that was called.
to: Option<StdString>,
/// Argument position (usually starts from 1).
pos: usize,
/// Argument name.
name: Option<StdString>,
/// Underlying error returned when converting argument to a Lua value.
cause: Arc<Error>,
},
/// A Rust value could not be converted to a Lua value.
ToLuaConversionError {
/// Name of the Rust type that could not be converted.
@@ -96,8 +111,8 @@ pub enum Error {
/// [`Thread::status`] can be used to check if the coroutine can be resumed without causing this
/// error.
///
/// [`Thread::resume`]: struct.Thread.html#method.resume
/// [`Thread::status`]: struct.Thread.html#method.status
/// [`Thread::resume`]: crate::Thread::resume
/// [`Thread::status`]: crate::Thread::status
CoroutineInactive,
/// An [`AnyUserData`] is not the expected type in a borrow.
///
@@ -105,15 +120,15 @@ pub enum Error {
/// metamethods for binary operators. Refer to the documentation of [`UserDataMethods`] for
/// details.
///
/// [`AnyUserData`]: struct.AnyUserData.html
/// [`UserDataMethods`]: trait.UserDataMethods.html
/// [`AnyUserData`]: crate::AnyUserData
/// [`UserDataMethods`]: crate::UserDataMethods
UserDataTypeMismatch,
/// An [`AnyUserData`] borrow failed because it has been destructed.
///
/// This error can happen either due to to being destructed in a previous __gc, or due to being
/// destructed from exiting a `Lua::scope` call.
///
/// [`AnyUserData`]: struct.AnyUserData.html
/// [`AnyUserData`]: crate::AnyUserData
UserDataDestructed,
/// An [`AnyUserData`] immutable borrow failed because it is already borrowed mutably.
///
@@ -121,8 +136,8 @@ pub enum Error {
/// tries to call a method on the same [`UserData`] type. Consider restructuring your API to
/// prevent these errors.
///
/// [`AnyUserData`]: struct.AnyUserData.html
/// [`UserData`]: trait.UserData.html
/// [`AnyUserData`]: crate::AnyUserData
/// [`UserData`]: crate::UserData
UserDataBorrowError,
/// An [`AnyUserData`] mutable borrow failed because it is already borrowed.
///
@@ -130,22 +145,27 @@ pub enum Error {
/// tries to call a method on the same [`UserData`] type. Consider restructuring your API to
/// prevent these errors.
///
/// [`AnyUserData`]: struct.AnyUserData.html
/// [`UserData`]: trait.UserData.html
/// [`AnyUserData`]: crate::AnyUserData
/// [`UserData`]: crate::UserData
UserDataBorrowMutError,
/// A [`MetaMethod`] operation is restricted (typically for `__gc` or `__metatable`).
///
/// [`MetaMethod`]: enum.MetaMethod.html
/// [`MetaMethod`]: crate::MetaMethod
MetaMethodRestricted(StdString),
/// A [`MetaMethod`] (eg. `__index` or `__newindex`) has invalid type.
///
/// [`MetaMethod`]: enum.MetaMethod.html
/// [`MetaMethod`]: crate::MetaMethod
MetaMethodTypeError {
/// Name of the metamethod.
method: StdString,
/// Passed value type.
type_name: &'static str,
/// A string containing more detailed error information.
message: Option<StdString>,
},
/// A `RegistryKey` produced from a different Lua state was used.
/// A [`RegistryKey`] produced from a different Lua state was used.
///
/// [`RegistryKey`]: crate::RegistryKey
MismatchedRegistryKey,
/// A Rust callback returned `Err`, raising the contained `Error` as a Lua error.
CallbackError {
@@ -175,6 +195,13 @@ pub enum Error {
/// error. The Rust code that originally invoked the Lua code then receives a `CallbackError`,
/// from which the original error (and a stack traceback) can be recovered.
ExternalError(Arc<dyn StdError + Send + Sync>),
/// An error with additional context.
WithContext {
/// A string containing additional context.
context: StdString,
/// Underlying error.
cause: Arc<Error>,
},
}
/// A specialized `Result` type used by `mlua`'s API.
@@ -184,17 +211,17 @@ pub type Result<T> = StdResult<T, Error>;
impl fmt::Display for Error {
fn fmt(&self, fmt: &mut fmt::Formatter) -> fmt::Result {
match *self {
Error::SyntaxError { ref message, .. } => write!(fmt, "syntax error: {}", message),
Error::RuntimeError(ref msg) => write!(fmt, "runtime error: {}", msg),
Error::SyntaxError { ref message, .. } => write!(fmt, "syntax error: {message}"),
Error::RuntimeError(ref msg) => write!(fmt, "runtime error: {msg}"),
Error::MemoryError(ref msg) => {
write!(fmt, "memory error: {}", msg)
write!(fmt, "memory error: {msg}")
}
#[cfg(any(feature = "lua53", feature = "lua52"))]
Error::GarbageCollectorError(ref msg) => {
write!(fmt, "garbage collector error: {}", msg)
write!(fmt, "garbage collector error: {msg}")
}
Error::SafetyError(ref msg) => {
write!(fmt, "safety error: {}", msg)
write!(fmt, "safety error: {msg}")
},
Error::MemoryLimitNotAvailable => {
write!(fmt, "setting memory limit is not available")
@@ -215,18 +242,29 @@ impl fmt::Display for Error {
fmt,
"too many arguments to Function::bind"
),
Error::BadArgument { ref to, pos, ref name, ref cause } => {
if let Some(name) = name {
write!(fmt, "bad argument `{name}`")?;
} else {
write!(fmt, "bad argument #{pos}")?;
}
if let Some(to) = to {
write!(fmt, " to `{to}`")?;
}
write!(fmt, ": {cause}")
},
Error::ToLuaConversionError { from, to, ref message } => {
write!(fmt, "error converting {} to Lua {}", from, to)?;
write!(fmt, "error converting {from} to Lua {to}")?;
match *message {
None => Ok(()),
Some(ref message) => write!(fmt, " ({})", message),
Some(ref message) => write!(fmt, " ({message})"),
}
}
Error::FromLuaConversionError { from, to, ref message } => {
write!(fmt, "error converting Lua {} to {}", from, to)?;
write!(fmt, "error converting Lua {from} to {to}")?;
match *message {
None => Ok(()),
Some(ref message) => write!(fmt, " ({})", message),
Some(ref message) => write!(fmt, " ({message})"),
}
}
Error::CoroutineInactive => write!(fmt, "cannot resume inactive coroutine"),
@@ -234,32 +272,56 @@ impl fmt::Display for Error {
Error::UserDataDestructed => write!(fmt, "userdata has been destructed"),
Error::UserDataBorrowError => write!(fmt, "userdata already mutably borrowed"),
Error::UserDataBorrowMutError => write!(fmt, "userdata already borrowed"),
Error::MetaMethodRestricted(ref method) => write!(fmt, "metamethod {} is restricted", method),
Error::MetaMethodRestricted(ref method) => write!(fmt, "metamethod {method} is restricted"),
Error::MetaMethodTypeError { ref method, type_name, ref message } => {
write!(fmt, "metamethod {} has unsupported type {}", method, type_name)?;
write!(fmt, "metamethod {method} has unsupported type {type_name}")?;
match *message {
None => Ok(()),
Some(ref message) => write!(fmt, " ({})", message),
Some(ref message) => write!(fmt, " ({message})"),
}
}
Error::MismatchedRegistryKey => {
write!(fmt, "RegistryKey used from different Lua state")
}
Error::CallbackError { ref traceback, .. } => {
write!(fmt, "callback error\n{}", traceback)
Error::CallbackError { ref cause, ref traceback } => {
// Trace errors down to the root
let (mut cause, mut full_traceback) = (cause, None);
while let Error::CallbackError { cause: ref cause2, traceback: ref traceback2 } = **cause {
cause = cause2;
full_traceback = Some(traceback2);
}
writeln!(fmt, "{cause}")?;
if let Some(full_traceback) = full_traceback {
let traceback = traceback.trim_start_matches("stack traceback:");
let traceback = traceback.trim_start().trim_end();
// Try to find local traceback within the full traceback
if let Some(pos) = full_traceback.find(traceback) {
write!(fmt, "{}", &full_traceback[..pos])?;
writeln!(fmt, ">{}", &full_traceback[pos..].trim_end())?;
} else {
writeln!(fmt, "{}", full_traceback.trim_end())?;
}
} else {
writeln!(fmt, "{}", traceback.trim_end())?;
}
Ok(())
}
Error::PreviouslyResumedPanic => {
write!(fmt, "previously resumed panic returned again")
}
#[cfg(feature = "serialize")]
Error::SerializeError(ref err) => {
write!(fmt, "serialize error: {}", err)
write!(fmt, "serialize error: {err}")
},
#[cfg(feature = "serialize")]
Error::DeserializeError(ref err) => {
write!(fmt, "deserialize error: {}", err)
write!(fmt, "deserialize error: {err}")
},
Error::ExternalError(ref err) => write!(fmt, "{}", err),
Error::ExternalError(ref err) => write!(fmt, "{err}"),
Error::WithContext { ref context, ref cause } => {
writeln!(fmt, "{context}")?;
write!(fmt, "{cause}")
}
}
}
}
@@ -267,7 +329,11 @@ impl fmt::Display for Error {
impl StdError for Error {
fn source(&self) -> Option<&(dyn StdError + 'static)> {
match *self {
Error::CallbackError { ref cause, .. } => Some(cause.as_ref()),
// An error type with a source error should either return that error via source or
// include that source's error message in its own Display output, but never both.
// https://blog.rust-lang.org/inside-rust/2021/07/01/What-the-error-handling-project-group-is-working-towards.html
// Given that we include source to fmt::Display implementation for `CallbackError`, this call returns nothing.
Error::CallbackError { .. } => None,
Error::ExternalError(ref err) => err.source(),
_ => None,
}
@@ -275,47 +341,122 @@ impl StdError for Error {
}
impl Error {
pub fn external<T: Into<Box<dyn StdError + Send + Sync>>>(err: T) -> Error {
/// Wraps an external error object.
pub fn external<T: Into<Box<dyn StdError + Send + Sync>>>(err: T) -> Self {
Error::ExternalError(err.into().into())
}
/// Attempts to downcast the external error object to a concrete type by reference.
pub fn downcast_ref<T>(&self) -> Option<&T>
where
T: StdError + 'static,
{
match self {
Error::ExternalError(err) => err.downcast_ref(),
_ => None,
}
}
pub(crate) fn bad_self_argument(to: &str, cause: Error) -> Self {
Error::BadArgument {
to: Some(to.to_string()),
pos: 1,
name: Some("self".to_string()),
cause: Arc::new(cause),
}
}
pub(crate) fn from_lua_conversion<'a>(
from: &'static str,
to: &'static str,
message: impl Into<Option<&'a str>>,
) -> Self {
Error::FromLuaConversionError {
from,
to,
message: message.into().map(|s| s.into()),
}
}
}
pub trait ExternalError {
fn to_lua_err(self) -> Error;
fn into_lua_err(self) -> Error;
}
impl<E: Into<Box<dyn StdError + Send + Sync>>> ExternalError for E {
fn to_lua_err(self) -> Error {
fn into_lua_err(self) -> Error {
Error::external(self)
}
}
pub trait ExternalResult<T> {
fn to_lua_err(self) -> Result<T>;
fn into_lua_err(self) -> Result<T>;
}
impl<T, E> ExternalResult<T> for StdResult<T, E>
where
E: ExternalError,
{
fn to_lua_err(self) -> Result<T> {
self.map_err(|e| e.to_lua_err())
fn into_lua_err(self) -> Result<T> {
self.map_err(|e| e.into_lua_err())
}
}
impl std::convert::From<AddrParseError> for Error {
/// Provides the `context` method for [`Error`] and `Result<T, Error>`.
pub trait ErrorContext: Sealed {
/// Wraps the error value with additional context.
fn context<C: fmt::Display>(self, context: C) -> Self;
/// Wrap the error value with additional context that is evaluated lazily
/// only once an error does occur.
fn with_context<C: fmt::Display>(self, f: impl FnOnce(&Error) -> C) -> Self;
}
impl ErrorContext for Error {
fn context<C: fmt::Display>(self, context: C) -> Self {
Error::WithContext {
context: context.to_string(),
cause: Arc::new(self),
}
}
fn with_context<C: fmt::Display>(self, f: impl FnOnce(&Error) -> C) -> Self {
Error::WithContext {
context: f(&self).to_string(),
cause: Arc::new(self),
}
}
}
impl<T> ErrorContext for StdResult<T, Error> {
fn context<C: fmt::Display>(self, context: C) -> Self {
self.map_err(|err| Error::WithContext {
context: context.to_string(),
cause: Arc::new(err),
})
}
fn with_context<C: fmt::Display>(self, f: impl FnOnce(&Error) -> C) -> Self {
self.map_err(|err| Error::WithContext {
context: f(&err).to_string(),
cause: Arc::new(err),
})
}
}
impl From<AddrParseError> for Error {
fn from(err: AddrParseError) -> Self {
Error::external(err)
}
}
impl std::convert::From<IoError> for Error {
impl From<IoError> for Error {
fn from(err: IoError) -> Self {
Error::external(err)
}
}
impl std::convert::From<Utf8Error> for Error {
impl From<Utf8Error> for Error {
fn from(err: Utf8Error) -> Self {
Error::external(err)
}
-289
View File
@@ -1,289 +0,0 @@
// The MIT License (MIT)
//
// Copyright (c) 2019-2021 A. Orlenko
// Copyright (c) 2014 J.C. Moyer
//
// 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.
#include <errno.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <lauxlib.h>
#include <lua.h>
#include <lualib.h>
#ifndef LUA_EXTRASPACE
#define LUA_EXTRASPACE (sizeof(void*))
#endif
// Macros taken from https://gcc.gnu.org/onlinedocs/cpp/Stringification.html
#define xstr(s) str(s)
#define str(s) #s
typedef struct rs_item {
int type;
const char *name;
union {
int int_val;
const char *str_val;
LUA_INTEGER lua_int_val;
};
} rs_item;
#define TY_INT 0
#define RS_INT(name, val) \
{ TY_INT, name, .int_val = val }
#if LUA_VERSION_NUM >= 503
#define TY_LUAINT 1
#define RS_LUAINT(name, val) \
{ TY_LUAINT, name, .lua_int_val = val }
#endif
#define TY_STR 2
#define RS_STR(name, val) \
{ TY_STR, name, .str_val = val }
#define TY_TYPE 3
#define RS_TYPE(name, val) \
{ TY_TYPE, name, .str_val = val }
#define TY_COMMENT 4
#define RS_COMMENT(val) \
{ TY_COMMENT, NULL, .str_val = val }
#define TY_RAW 5
#define RS_RAW(val) \
{ TY_RAW, NULL, .str_val = val }
const char *rs_int_type(int width) {
switch (width) {
default:
case 2:
return "i16";
case 4:
return "i32";
case 8:
return "i64";
case 16:
return "i128";
}
}
const char *rs_uint_type(int width) {
switch (width) {
default:
case 2:
return "u16";
case 4:
return "u32";
case 8:
return "u64";
case 16:
return "u128";
}
}
int try_write(char **str, char c, size_t n, size_t *written, size_t szstr) {
if (szstr - *written < n) {
return 0;
}
for (; n; n--, *written++)
*(*str)++ = c;
return 1;
}
// converts \ in a string to \\ so that it can be used as a rust string literal
// ensures that `out` will always have a null terminating character
size_t escape(const char *in, char *out, size_t szout) {
size_t written = 0;
char cur;
while ((cur = *in++)) {
switch (cur) {
case '\\':
if (!try_write(&out, cur, 2, &written, szout))
goto finalize;
break;
default:
if (!try_write(&out, cur, 1, &written, szout))
goto finalize;
break;
}
}
finalize:
if (written + 1 <= szout) {
*out++ = '\0';
written++;
}
return written;
}
int write_int_item(FILE *f, const char *name, int value) {
return fprintf(f, "pub const %s: c_int = %d;\n", name, value);
}
#if LUA_VERSION_NUM >= 503
int write_lua_int_item(FILE *f, const char *name, LUA_INTEGER value) {
return fprintf(f, "pub const %s: LUA_INTEGER = " LUA_INTEGER_FMT ";\n", name,
value);
}
#endif
int write_str_item(FILE *f, const char *name, const char *value) {
size_t len = strlen(value);
size_t bufsz = len * 2 + 1;
char *buf = malloc(bufsz);
int ret;
escape(value, buf, bufsz);
ret = fprintf(f, "pub const %s: &str = \"%s\";\n", name, buf);
free(buf);
return ret;
}
int write_type(FILE *f, const char *name, const char *value) {
return fprintf(f, "pub type %s = %s;\n", name, value);
}
int write_comment(FILE *f, const char *value) {
return fprintf(f, "/* %s */\n", value);
}
int write_raw(FILE *f, const char *value) { return fputs(value, f) >= 0; }
int write_item(FILE *f, const rs_item *c) {
switch (c->type) {
case TY_INT:
return write_int_item(f, c->name, c->int_val);
#if LUA_VERSION_NUM >= 503
case TY_LUAINT:
return write_lua_int_item(f, c->name, c->lua_int_val);
#endif
case TY_STR:
return write_str_item(f, c->name, c->str_val);
case TY_TYPE:
return write_type(f, c->name, c->str_val);
case TY_COMMENT:
return write_comment(f, c->str_val);
case TY_RAW:
return write_raw(f, c->str_val);
default:
return 0;
}
}
int write_items_(FILE *f, const rs_item items[], size_t num) {
size_t i;
for (i = 0; i < num; i++) {
if (!write_item(f, &items[i]))
return 0;
}
return 1;
}
#define write_items(f, cs) write_items_(f, cs, sizeof(cs) / sizeof(cs[0]))
int main(int argc, const char **argv) {
if (argc <= 1) {
printf("usage: %s <filename>\n", argv[0]);
return EXIT_FAILURE;
}
const char *filename = argv[1];
FILE *f = fopen(filename, "w");
if (!f) {
printf("could not open file: errno = %d\n", errno);
return EXIT_FAILURE;
}
const rs_item glue_entries[] = {
RS_COMMENT("this file was generated by glue.c; do not modify it by hand"),
RS_RAW("use std::os::raw::*;\n"),
// == luaconf.h ==========================================================
RS_COMMENT("luaconf.h"),
RS_INT("LUA_EXTRASPACE", LUA_EXTRASPACE),
RS_INT("LUA_IDSIZE", LUA_IDSIZE),
RS_TYPE("LUA_NUMBER",
sizeof(LUA_NUMBER) > sizeof(float) ? "c_double" : "c_float"),
RS_TYPE("LUA_INTEGER", rs_int_type(sizeof(LUA_INTEGER))),
#if LUA_VERSION_NUM >= 502
RS_TYPE("LUA_UNSIGNED", rs_uint_type(sizeof(LUA_UNSIGNED))),
#else
RS_TYPE("LUA_UNSIGNED", rs_uint_type(sizeof(size_t))),
#endif
// == lua.h ==============================================================
RS_COMMENT("lua.h"),
RS_INT("LUA_VERSION_NUM", LUA_VERSION_NUM),
RS_INT("LUA_REGISTRYINDEX", LUA_REGISTRYINDEX),
#if LUA_VERSION_NUM == 501
RS_INT("LUA_ENVIRONINDEX", LUA_ENVIRONINDEX),
RS_INT("LUA_GLOBALSINDEX", LUA_GLOBALSINDEX),
#endif
// == lauxlib.h ==========================================================
RS_COMMENT("lauxlib.h"),
#if LUA_VERSION_NUM >= 503
RS_INT("LUAL_NUMSIZES", LUAL_NUMSIZES),
#endif
// == lualib.h ===========================================================
RS_COMMENT("lualib.h"),
RS_STR("LUA_COLIBNAME", LUA_COLIBNAME),
RS_STR("LUA_TABLIBNAME", LUA_TABLIBNAME),
RS_STR("LUA_IOLIBNAME", LUA_IOLIBNAME),
RS_STR("LUA_OSLIBNAME", LUA_OSLIBNAME),
RS_STR("LUA_STRLIBNAME", LUA_STRLIBNAME),
#ifdef LUA_UTF8LIBNAME
RS_STR("LUA_UTF8LIBNAME", LUA_UTF8LIBNAME),
#endif
#ifdef LUA_BITLIBNAME
RS_STR("LUA_BITLIBNAME", LUA_BITLIBNAME),
#endif
RS_STR("LUA_MATHLIBNAME", LUA_MATHLIBNAME),
RS_STR("LUA_DBLIBNAME", LUA_DBLIBNAME),
RS_STR("LUA_LOADLIBNAME", LUA_LOADLIBNAME),
#ifdef LUA_JITLIBNAME
RS_STR("LUA_JITLIBNAME", LUA_JITLIBNAME),
#endif
#ifdef LUA_FFILIBNAME
RS_STR("LUA_FFILIBNAME", LUA_FFILIBNAME),
#endif
};
if (!write_items(f, glue_entries)) {
printf("%s: error generating %s; aborting\n", argv[0], filename);
return EXIT_FAILURE;
}
fclose(f);
return EXIT_SUCCESS;
}
-306
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@@ -1,306 +0,0 @@
// The MIT License (MIT)
//
// Copyright (c) 2019-2021 A. Orlenko
// Copyright (c) 2014 J.C. Moyer
//
// 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.
//! Contains definitions from `lauxlib.h`.
use std::os::raw::{c_char, c_int, c_long, c_void};
use std::ptr;
use super::lua::{self, lua_CFunction, lua_Integer, lua_Number, lua_State};
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use super::glue::LUAL_NUMSIZES;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub use super::compat53::{luaL_getmetafield, luaL_newmetatable, luaL_requiref, luaL_tolstring};
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub use super::compat53::{
luaL_checkstack, luaL_checkversion, luaL_getsubtable, luaL_len, luaL_loadbufferx,
luaL_setfuncs, luaL_setmetatable, luaL_testudata, luaL_traceback,
};
// extra error code for 'luaL_load'
pub const LUA_ERRFILE: c_int = lua::LUA_ERRERR + 1;
#[repr(C)]
pub struct luaL_Reg {
pub name: *const c_char,
pub func: lua_CFunction,
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn luaL_checkversion(L: *mut lua_State) {
#[cfg(any(feature = "lua54", feature = "lua53"))]
luaL_checkversion_(
L,
lua::LUA_VERSION_NUM as lua_Number,
LUAL_NUMSIZES as usize,
);
#[cfg(feature = "lua52")]
luaL_checkversion_(L, lua::LUA_VERSION_NUM as lua_Number);
}
extern "C" {
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn luaL_checkversion_(L: *mut lua_State, ver: lua_Number, sz: usize);
#[cfg(feature = "lua52")]
pub fn luaL_checkversion_(L: *mut lua_State, ver: lua_Number);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn luaL_getmetafield(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "luaL_getmetafield"]
pub fn luaL_getmetafield_old(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_callmeta(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn luaL_argerror(L: *mut lua_State, arg: c_int, l: *const c_char) -> c_int;
pub fn luaL_checklstring(L: *mut lua_State, arg: c_int, l: *mut usize) -> *const c_char;
pub fn luaL_optlstring(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
l: *mut usize,
) -> *const c_char;
pub fn luaL_checknumber(L: *mut lua_State, arg: c_int) -> lua_Number;
pub fn luaL_optnumber(L: *mut lua_State, arg: c_int, def: lua_Number) -> lua_Number;
pub fn luaL_checkinteger(L: *mut lua_State, arg: c_int) -> lua_Integer;
pub fn luaL_optinteger(L: *mut lua_State, arg: c_int, def: lua_Integer) -> lua_Integer;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char);
pub fn luaL_checktype(L: *mut lua_State, arg: c_int, t: c_int);
pub fn luaL_checkany(L: *mut lua_State, arg: c_int);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_int;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "luaL_newmetatable"]
pub fn luaL_newmetatable_old(L: *mut lua_State, tname: *const c_char) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char);
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_testudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_checkudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_where(L: *mut lua_State, lvl: c_int);
pub fn luaL_error(L: *mut lua_State, fmt: *const c_char, ...) -> !;
// TODO: test this
pub fn luaL_checkoption(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
lst: *const *const c_char,
) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_fileresult(L: *mut lua_State, stat: c_int, fname: *const c_char) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_execresult(L: *mut lua_State, stat: c_int) -> c_int;
}
// pre-defined references
pub const LUA_NOREF: c_int = -2;
pub const LUA_REFNIL: c_int = -1;
extern "C" {
pub fn luaL_ref(L: *mut lua_State, t: c_int) -> c_int;
pub fn luaL_unref(L: *mut lua_State, t: c_int, r: c_int);
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_loadfilex(L: *mut lua_State, filename: *const c_char, mode: *const c_char)
-> c_int;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn luaL_loadfile(L: *mut lua_State, filename: *const c_char) -> c_int;
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn luaL_loadfile(L: *mut lua_State, f: *const c_char) -> c_int {
luaL_loadfilex(L, f, ptr::null())
}
extern "C" {
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_loadbufferx(
L: *mut lua_State,
buff: *const c_char,
sz: usize,
name: *const c_char,
mode: *const c_char,
) -> c_int;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn luaL_loadbuffer(
L: *mut lua_State,
buff: *const c_char,
sz: usize,
name: *const c_char,
) -> c_int;
pub fn luaL_loadstring(L: *mut lua_State, s: *const c_char) -> c_int;
pub fn luaL_newstate() -> *mut lua_State;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_len(L: *mut lua_State, idx: c_int) -> lua_Integer;
// TODO (lua54): luaL_addgsub
pub fn luaL_gsub(
L: *mut lua_State,
s: *const c_char,
p: *const c_char,
r: *const c_char,
) -> *const c_char;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_setfuncs(L: *mut lua_State, l: *const luaL_Reg, nup: c_int);
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_getsubtable(L: *mut lua_State, idx: c_int, fname: *const c_char) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaL_traceback(L: *mut lua_State, L1: *mut lua_State, msg: *const c_char, level: c_int);
// Skip Lua 5.2 implementation in favor of the compat53 one
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn luaL_requiref(
L: *mut lua_State,
modname: *const c_char,
openf: lua_CFunction,
glb: c_int,
);
}
#[inline(always)]
#[allow(unused_variables)]
pub unsafe fn luaL_newlibtable(L: *mut lua_State, l: *const luaL_Reg) {
// TODO: figure out how to pass an appropriate hint for the second param
// this involves correcting the second parameter's type; in C this is
// sizeof(l)/sizeof(l[0])
lua::lua_createtable(L, 0, 0)
}
#[inline(always)]
pub unsafe fn luaL_newlib(L: *mut lua_State, l: *const luaL_Reg) {
luaL_checkversion(L);
luaL_newlibtable(L, l);
luaL_setfuncs(L, l, 0)
}
#[inline(always)]
pub unsafe fn luaL_argcheck(L: *mut lua_State, cond: c_int, arg: c_int, extramsg: *const c_char) {
if cond == 0 {
luaL_argerror(L, arg, extramsg);
}
}
#[inline(always)]
pub unsafe fn luaL_checkstring(L: *mut lua_State, n: c_int) -> *const c_char {
luaL_checklstring(L, n, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_optstring(L: *mut lua_State, n: c_int, d: *const c_char) -> *const c_char {
luaL_optlstring(L, n, d, ptr::null_mut())
}
// From 5.3 user manual:
// Macros to project non-default integer types (luaL_checkint, luaL_optint,
// luaL_checklong, luaL_optlong) were deprecated. Use their equivalent over
// lua_Integer with a type cast (or, when possible, use lua_Integer in your
// code).
#[inline(always)]
//#[deprecated]
pub unsafe fn luaL_checkint(L: *mut lua_State, n: c_int) -> c_int {
luaL_checkinteger(L, n) as c_int
}
#[inline(always)]
//#[deprecated]
pub unsafe fn luaL_optint(L: *mut lua_State, n: c_int, d: c_int) -> c_int {
luaL_optinteger(L, n, d as lua_Integer) as c_int
}
#[inline(always)]
//#[deprecated]
pub unsafe fn luaL_checklong(L: *mut lua_State, n: c_int) -> c_long {
luaL_checkinteger(L, n) as c_long
}
#[inline(always)]
//#[deprecated]
pub unsafe fn luaL_optlong(L: *mut lua_State, n: c_int, d: c_long) -> c_long {
luaL_optinteger(L, n, d as lua_Integer) as c_long
}
#[inline(always)]
pub unsafe fn luaL_typename(L: *mut lua_State, i: c_int) -> *const c_char {
lua::lua_typename(L, lua::lua_type(L, i))
}
#[inline(always)]
pub unsafe fn luaL_dofile(L: *mut lua_State, filename: *const c_char) -> c_int {
let status = luaL_loadfile(L, filename);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_dostring(L: *mut lua_State, s: *const c_char) -> c_int {
let status = luaL_loadstring(L, s);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_getmetatable(L: *mut lua_State, n: *const c_char) {
lua::lua_getfield(L, lua::LUA_REGISTRYINDEX, n);
}
// luaL_opt would be implemented here but it is undocumented, so it's omitted
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn luaL_loadbuffer(
L: *mut lua_State,
s: *const c_char,
sz: usize,
n: *const c_char,
) -> c_int {
luaL_loadbufferx(L, s, sz, n, ptr::null())
}
// TODO: Add buffer API
// omitted: old module system compatibility (removed in 5.4)
-830
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@@ -1,830 +0,0 @@
// The MIT License (MIT)
//
// Copyright (c) 2019-2021 A. Orlenko
// Copyright (c) 2014 J.C. Moyer
//
// 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.
//! Contains definitions from `lua.h`.
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
use std::os::raw::c_uchar;
use std::os::raw::{c_char, c_int, c_void};
#[cfg(feature = "lua54")]
use std::os::raw::{c_uint, c_ushort};
use std::ptr;
use super::luaconf;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub use super::glue::{LUA_ENVIRONINDEX, LUA_GLOBALSINDEX};
pub use super::glue::{LUA_REGISTRYINDEX, LUA_VERSION_NUM};
#[cfg(not(feature = "luajit"))]
pub const LUA_SIGNATURE: &[u8] = b"\x1bLua";
#[cfg(feature = "luajit")]
pub const LUA_SIGNATURE: &[u8] = b"\x1bLJ";
// option for multiple returns in 'lua_pcall' and 'lua_call'
pub const LUA_MULTRET: c_int = -1;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub use super::compat53::{
lua_dump, lua_getextraspace, lua_getfield, lua_geti, lua_gettable, lua_getuservalue,
lua_isinteger, lua_pushlstring, lua_rawget, lua_rawgeti, lua_rawgetp, lua_rotate, lua_seti,
lua_stringtonumber, lua_tointegerx,
};
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub use super::compat53::{
lua_absindex, lua_arith, lua_compare, lua_copy, lua_len, lua_pushglobaltable, lua_pushstring,
lua_rawlen, lua_rawsetp, lua_resume as lua_resume_53, lua_setuservalue, lua_tonumberx,
lua_upvalueindex,
};
#[cfg(feature = "lua52")]
pub use super::compat53::lua_getglobal;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub fn lua_upvalueindex(i: c_int) -> c_int {
LUA_REGISTRYINDEX - i
}
// thread status
pub const LUA_OK: c_int = 0;
pub const LUA_YIELD: c_int = 1;
pub const LUA_ERRRUN: c_int = 2;
pub const LUA_ERRSYNTAX: c_int = 3;
pub const LUA_ERRMEM: c_int = 4;
#[cfg(any(feature = "lua53", feature = "lua52"))]
pub const LUA_ERRGCMM: c_int = 5;
#[cfg(any(feature = "lua54", feature = "lua51", feature = "luajit"))]
pub const LUA_ERRERR: c_int = 5;
#[cfg(any(feature = "lua53", feature = "lua52"))]
pub const LUA_ERRERR: c_int = 6;
/// A raw Lua state associated with a thread.
pub type lua_State = c_void;
// basic types
pub const LUA_TNONE: c_int = -1;
pub const LUA_TNIL: c_int = 0;
pub const LUA_TBOOLEAN: c_int = 1;
pub const LUA_TLIGHTUSERDATA: c_int = 2;
pub const LUA_TNUMBER: c_int = 3;
pub const LUA_TSTRING: c_int = 4;
pub const LUA_TTABLE: c_int = 5;
pub const LUA_TFUNCTION: c_int = 6;
pub const LUA_TUSERDATA: c_int = 7;
pub const LUA_TTHREAD: c_int = 8;
#[cfg(feature = "lua54")]
pub const LUA_NUMTYPES: c_int = 9;
#[cfg(any(feature = "lua53", feature = "lua52"))]
pub const LUA_NUMTAGS: c_int = 9;
// minimum stack available to a C function
pub const LUA_MINSTACK: c_int = 20;
// predefined values in the registry
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub const LUA_RIDX_MAINTHREAD: lua_Integer = 1;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub const LUA_RIDX_GLOBALS: lua_Integer = 2;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub const LUA_RIDX_LAST: lua_Integer = LUA_RIDX_GLOBALS;
// I believe `luaL_traceback` < 5.4 requires this much free stack to not error.
// 5.4 uses `luaL_Buffer`
pub const LUA_TRACEBACK_STACK: c_int = 11;
/// A Lua number, usually equivalent to `f64`.
pub type lua_Number = luaconf::LUA_NUMBER;
/// A Lua integer, usually equivalent to `i64`.
pub type lua_Integer = luaconf::LUA_INTEGER;
/// A Lua unsigned integer, usually equivalent to `u64`.
pub type lua_Unsigned = luaconf::LUA_UNSIGNED;
// type for continuation-function contexts
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub type lua_KContext = luaconf::LUA_KCONTEXT;
/// Type for native C functions that can be passed to Lua.
pub type lua_CFunction = unsafe extern "C" fn(L: *mut lua_State) -> c_int;
// Type for continuation functions
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub type lua_KFunction =
unsafe extern "C" fn(L: *mut lua_State, status: c_int, ctx: lua_KContext) -> c_int;
// Type for functions that read/write blocks when loading/dumping Lua chunks
pub type lua_Reader =
unsafe extern "C" fn(L: *mut lua_State, ud: *mut c_void, sz: *mut usize) -> *const c_char;
pub type lua_Writer =
unsafe extern "C" fn(L: *mut lua_State, p: *const c_void, sz: usize, ud: *mut c_void) -> c_int;
// Type for memory-allocation functions.
pub type lua_Alloc = unsafe extern "C" fn(
ud: *mut c_void,
ptr: *mut c_void,
osize: usize,
nsize: usize,
) -> *mut c_void;
// Type for warning functions
#[cfg(feature = "lua54")]
pub type lua_WarnFunction =
unsafe extern "C" fn(ud: *mut c_void, msg: *const c_char, tocont: c_int);
extern "C" {
// state manipulation
pub fn lua_newstate(f: lua_Alloc, ud: *mut c_void) -> *mut lua_State;
pub fn lua_close(L: *mut lua_State);
pub fn lua_newthread(L: *mut lua_State) -> *mut lua_State;
#[cfg(feature = "lua54")]
#[link_name = "lua_resetthread"]
pub fn lua_resetthread_54(L: *mut lua_State) -> c_int;
#[cfg(all(feature = "luajit", feature = "vendored"))]
#[link_name = "lua_resetthread"]
pub fn lua_resetthread_jit(L: *mut lua_State, th: *mut lua_State);
pub fn lua_atpanic(L: *mut lua_State, panicf: lua_CFunction) -> lua_CFunction;
#[cfg(feature = "lua54")]
pub fn lua_version(L: *mut lua_State) -> lua_Number;
#[cfg(feature = "lua53")]
pub fn lua_version(L: *mut lua_State) -> *const lua_Number;
// basic stack manipulation
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_absindex(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_gettop(L: *mut lua_State) -> c_int;
pub fn lua_settop(L: *mut lua_State, idx: c_int);
pub fn lua_pushvalue(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub fn lua_remove(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub fn lua_insert(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub fn lua_replace(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_rotate(L: *mut lua_State, idx: c_int, n: c_int);
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int);
pub fn lua_checkstack(L: *mut lua_State, sz: c_int) -> c_int;
pub fn lua_xmove(from: *mut lua_State, to: *mut lua_State, n: c_int);
// access functions (stack -> C)
pub fn lua_isnumber(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isstring(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_iscfunction(L: *mut lua_State, idx: c_int) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_isinteger(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isuserdata(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_type(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_typename(L: *mut lua_State, tp: c_int) -> *const c_char;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_tonumber(L: *mut lua_State, idx: c_int) -> lua_Number;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_tonumberx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Number;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_tointeger(L: *mut lua_State, idx: c_int) -> lua_Integer;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_tointegerx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Integer;
pub fn lua_toboolean(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_objlen(L: *mut lua_State, idx: c_int) -> usize;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_rawlen(L: *mut lua_State, idx: c_int) -> usize;
pub fn lua_tocfunction(L: *mut lua_State, idx: c_int) -> lua_CFunction;
pub fn lua_touserdata(L: *mut lua_State, idx: c_int) -> *mut c_void;
pub fn lua_tothread(L: *mut lua_State, idx: c_int) -> *mut lua_State;
pub fn lua_topointer(L: *mut lua_State, idx: c_int) -> *const c_void;
}
#[cfg(any(feature = "lua54", all(feature = "luajit", feature = "vendored")))]
pub unsafe fn lua_resetthread(_L: *mut lua_State, th: *mut lua_State) -> c_int {
#[cfg(all(feature = "luajit", feature = "vendored"))]
{
lua_resetthread_jit(_L, th);
LUA_OK
}
#[cfg(feature = "lua54")]
lua_resetthread_54(th)
}
// Comparison and arithmetic functions
pub const LUA_OPADD: c_int = 0;
pub const LUA_OPSUB: c_int = 1;
pub const LUA_OPMUL: c_int = 2;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub const LUA_OPDIV: c_int = 3;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub const LUA_OPMOD: c_int = 4;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub const LUA_OPPOW: c_int = 5;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
pub const LUA_OPUNM: c_int = 6;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPMOD: c_int = 3;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPPOW: c_int = 4;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPDIV: c_int = 5;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPIDIV: c_int = 6;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPBAND: c_int = 7;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPBOR: c_int = 8;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPBXOR: c_int = 9;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPSHL: c_int = 10;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPSHR: c_int = 11;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPUNM: c_int = 12;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub const LUA_OPBNOT: c_int = 13;
extern "C" {
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_arith(L: *mut lua_State, op: c_int);
}
pub const LUA_OPEQ: c_int = 0;
pub const LUA_OPLT: c_int = 1;
pub const LUA_OPLE: c_int = 2;
extern "C" {
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_equal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_rawequal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_lessthan(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_compare(L: *mut lua_State, idx1: c_int, idx2: c_int, op: c_int) -> c_int;
}
// push functions (C -> stack)
extern "C" {
pub fn lua_pushnil(L: *mut lua_State);
pub fn lua_pushnumber(L: *mut lua_State, n: lua_Number);
pub fn lua_pushinteger(L: *mut lua_State, n: lua_Integer);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_pushlstring(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "lua_pushlstring"]
pub fn lua_pushlstring_old(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_pushstring(L: *mut lua_State, s: *const c_char) -> *const c_char;
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[link_name = "lua_pushstring"]
pub fn lua_pushstring_old(L: *mut lua_State, s: *const c_char) -> *const c_char;
// TODO: omitted:
// lua_pushvfstring
pub fn lua_pushfstring(L: *mut lua_State, fmt: *const c_char, ...) -> *const c_char;
pub fn lua_pushcclosure(L: *mut lua_State, f: lua_CFunction, n: c_int);
pub fn lua_pushboolean(L: *mut lua_State, b: c_int);
pub fn lua_pushlightuserdata(L: *mut lua_State, p: *mut c_void);
pub fn lua_pushthread(L: *mut lua_State) -> c_int;
}
// get functions (Lua -> stack)
extern "C" {
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_getglobal(L: *mut lua_State, var: *const c_char) -> c_int;
#[cfg(feature = "lua52")]
#[link_name = "lua_getglobal"]
pub fn lua_getglobal_old(L: *mut lua_State, var: *const c_char);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_gettable(L: *mut lua_State, idx: c_int) -> c_int;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "lua_gettable"]
pub fn lua_gettable_old(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "lua_getfield"]
pub fn lua_getfield_old(L: *mut lua_State, idx: c_int, k: *const c_char);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_geti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_rawget(L: *mut lua_State, idx: c_int) -> c_int;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "lua_rawget"]
pub fn lua_rawget_old(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_rawgeti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "lua_rawgeti"]
pub fn lua_rawgeti_old(L: *mut lua_State, idx: c_int, n: lua_Integer);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int;
#[cfg(feature = "lua52")]
#[link_name = "lua_rawgetp"]
pub fn lua_rawgetp_old(L: *mut lua_State, idx: c_int, p: *const c_void);
pub fn lua_createtable(L: *mut lua_State, narr: c_int, nrec: c_int);
#[cfg(feature = "lua54")]
pub fn lua_newuserdatauv(L: *mut lua_State, sz: usize, nuvalue: c_int) -> *mut c_void;
#[cfg(any(
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
))]
pub fn lua_newuserdata(L: *mut lua_State, sz: usize) -> *mut c_void;
pub fn lua_getmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
#[cfg(feature = "lua54")]
pub fn lua_getiuservalue(L: *mut lua_State, idx: c_int, n: c_int) -> c_int;
#[cfg(feature = "lua53")]
pub fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int;
#[cfg(feature = "lua52")]
#[link_name = "lua_getuservalue"]
pub fn lua_getuservalue_old(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_getfenv(L: *mut lua_State, idx: c_int);
}
#[cfg(feature = "lua54")]
#[inline(always)]
pub unsafe fn lua_newuserdata(L: *mut lua_State, sz: usize) -> *mut c_void {
lua_newuserdatauv(L, sz, 1)
}
#[cfg(feature = "lua54")]
#[inline(always)]
pub unsafe fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int {
lua_getiuservalue(L, idx, 1)
}
// set functions (stack -> Lua)
extern "C" {
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_setglobal(L: *mut lua_State, var: *const c_char);
pub fn lua_settable(L: *mut lua_State, idx: c_int);
pub fn lua_setfield(L: *mut lua_State, idx: c_int, k: *const c_char);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_seti(L: *mut lua_State, idx: c_int, n: lua_Integer);
pub fn lua_rawset(L: *mut lua_State, idx: c_int);
pub fn lua_rawseti(L: *mut lua_State, idx: c_int, n: lua_Integer);
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void);
pub fn lua_setmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
#[cfg(feature = "lua54")]
pub fn lua_setiuservalue(L: *mut lua_State, idx: c_int, n: c_int) -> c_int;
#[cfg(any(feature = "lua53", feature = "lua52"))]
pub fn lua_setuservalue(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_setfenv(L: *mut lua_State, idx: c_int) -> c_int;
}
#[cfg(feature = "lua54")]
#[inline(always)]
pub unsafe fn lua_setuservalue(L: *mut lua_State, idx: c_int) {
lua_setiuservalue(L, idx, 1);
}
// 'load' and 'call' functions (load and run Lua code)
extern "C" {
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_callk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
);
#[cfg(feature = "lua52")]
pub fn lua_callk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
ctx: c_int,
k: Option<lua_CFunction>,
);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_pcallk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
errfunc: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
) -> c_int;
#[cfg(feature = "lua52")]
pub fn lua_pcallk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
errfunc: c_int,
ctx: c_int,
k: Option<lua_CFunction>,
) -> c_int;
#[cfg(feature = "lua52")]
pub fn lua_getctx(L: *mut lua_State, ctx: *mut c_int) -> c_int;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_call(L: *mut lua_State, nargs: c_int, nresults: c_int);
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_pcall(L: *mut lua_State, nargs: c_int, nresults: c_int, errfunc: c_int) -> c_int;
// TODO
pub fn lua_load(
L: *mut lua_State,
reader: lua_Reader,
dt: *mut c_void,
chunkname: *const c_char,
mode: *const c_char,
) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_dump(
L: *mut lua_State,
writer: lua_Writer,
data: *mut c_void,
strip: c_int,
) -> c_int;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
#[link_name = "lua_dump"]
pub fn lua_dump_old(L: *mut lua_State, writer: lua_Writer, data: *mut c_void) -> c_int;
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn lua_call(L: *mut lua_State, n: c_int, r: c_int) {
lua_callk(L, n, r, 0, None)
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn lua_pcall(L: *mut lua_State, n: c_int, r: c_int, f: c_int) -> c_int {
lua_pcallk(L, n, r, f, 0, None)
}
// coroutine functions
extern "C" {
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_yieldk(
L: *mut lua_State,
nresults: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
) -> c_int;
#[cfg(feature = "lua52")]
pub fn lua_yieldk(
L: *mut lua_State,
nresults: c_int,
ctx: c_int,
k: Option<lua_CFunction>,
) -> c_int;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub fn lua_yield(L: *mut lua_State, nresults: c_int) -> c_int;
#[cfg(feature = "lua54")]
pub fn lua_resume(
L: *mut lua_State,
from: *mut lua_State,
narg: c_int,
nres: *mut c_int,
) -> c_int;
#[cfg(any(feature = "lua53", feature = "lua52"))]
#[link_name = "lua_resume"]
pub fn lua_resume_53(L: *mut lua_State, from: *mut lua_State, narg: c_int) -> c_int;
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[link_name = "lua_resume"]
pub fn lua_resume_old(L: *mut lua_State, narg: c_int) -> c_int;
pub fn lua_status(L: *mut lua_State) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_isyieldable(L: *mut lua_State) -> c_int;
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn lua_yield(L: *mut lua_State, n: c_int) -> c_int {
lua_yieldk(L, n, 0, None)
}
#[cfg(any(
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
))]
#[inline(always)]
pub unsafe fn lua_resume(
L: *mut lua_State,
from: *mut lua_State,
narg: c_int,
nres: *mut c_int,
) -> c_int {
let ret = lua_resume_53(L, from, narg);
if ret == LUA_OK || ret == LUA_YIELD {
*nres = lua_gettop(L);
}
ret
}
// warning-related functions
#[cfg(feature = "lua54")]
extern "C" {
pub fn lua_setwarnf(L: *mut lua_State, f: lua_WarnFunction, ud: *mut c_void);
pub fn lua_warning(L: *mut lua_State, msg: *const c_char, tocont: c_int);
}
// garbage-collection function and options
pub const LUA_GCSTOP: c_int = 0;
pub const LUA_GCRESTART: c_int = 1;
pub const LUA_GCCOLLECT: c_int = 2;
pub const LUA_GCCOUNT: c_int = 3;
pub const LUA_GCCOUNTB: c_int = 4;
pub const LUA_GCSTEP: c_int = 5;
pub const LUA_GCSETPAUSE: c_int = 6;
pub const LUA_GCSETSTEPMUL: c_int = 7;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub const LUA_GCISRUNNING: c_int = 9;
#[cfg(feature = "lua54")]
pub const LUA_GCGEN: c_int = 10;
#[cfg(feature = "lua54")]
pub const LUA_GCINC: c_int = 11;
extern "C" {
#[cfg(feature = "lua54")]
pub fn lua_gc(L: *mut lua_State, what: c_int, ...) -> c_int;
#[cfg(any(
feature = "lua53",
feature = "lua52",
feature = "lua51",
feature = "luajit"
))]
pub fn lua_gc(L: *mut lua_State, what: c_int, data: c_int) -> c_int;
}
// miscellaneous functions
extern "C" {
pub fn lua_error(L: *mut lua_State) -> !;
pub fn lua_next(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_concat(L: *mut lua_State, n: c_int);
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_len(L: *mut lua_State, idx: c_int);
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn lua_stringtonumber(L: *mut lua_State, s: *const c_char) -> usize;
pub fn lua_getallocf(L: *mut lua_State, ud: *mut *mut c_void) -> lua_Alloc;
pub fn lua_setallocf(L: *mut lua_State, f: lua_Alloc, ud: *mut c_void);
#[cfg(feature = "lua54")]
pub fn lua_toclose(L: *mut lua_State, idx: c_int);
}
// some useful macros
// here, implemented as Rust functions
#[cfg(any(feature = "lua54", feature = "lua53"))]
#[inline(always)]
pub unsafe fn lua_getextraspace(L: *mut lua_State) -> *mut c_void {
L.offset(-super::glue::LUA_EXTRASPACE as isize) as *mut c_void
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn lua_tonumber(L: *mut lua_State, i: c_int) -> lua_Number {
lua_tonumberx(L, i, ptr::null_mut())
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn lua_tointeger(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_pop(L: *mut lua_State, n: c_int) {
lua_settop(L, -n - 1)
}
#[inline(always)]
pub unsafe fn lua_newtable(L: *mut lua_State) {
lua_createtable(L, 0, 0)
}
#[inline(always)]
pub unsafe fn lua_register(L: *mut lua_State, n: *const c_char, f: lua_CFunction) {
lua_pushcfunction(L, f);
lua_setglobal(L, n)
}
#[inline(always)]
pub unsafe fn lua_pushcfunction(L: *mut lua_State, f: lua_CFunction) {
lua_pushcclosure(L, f, 0)
}
#[inline(always)]
pub unsafe fn lua_isfunction(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TFUNCTION) as c_int
}
#[inline(always)]
pub unsafe fn lua_istable(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTABLE) as c_int
}
#[inline(always)]
pub unsafe fn lua_islightuserdata(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TLIGHTUSERDATA) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_isboolean(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TBOOLEAN) as c_int
}
#[inline(always)]
pub unsafe fn lua_isthread(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTHREAD) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnone(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNONE) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnoneornil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) <= 0) as c_int
}
#[inline(always)]
pub unsafe fn lua_pushliteral(L: *mut lua_State, s: &'static str) -> *const c_char {
use std::ffi::CString;
let c_str = CString::new(s).unwrap();
lua_pushlstring(L, c_str.as_ptr(), c_str.as_bytes().len())
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_setglobal(L: *mut lua_State, var: *const c_char) {
lua_setfield(L, LUA_GLOBALSINDEX, var)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_getglobal(L: *mut lua_State, var: *const c_char) -> c_int {
lua_getfield(L, LUA_GLOBALSINDEX, var)
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[inline(always)]
pub unsafe fn lua_pushglobaltable(L: *mut lua_State) -> c_int {
lua_rawgeti(L, LUA_REGISTRYINDEX, LUA_RIDX_GLOBALS)
}
#[inline(always)]
pub unsafe fn lua_tostring(L: *mut lua_State, i: c_int) -> *const c_char {
lua_tolstring(L, i, ptr::null_mut())
}
#[cfg(any(feature = "lua54", feature = "lua53"))]
#[inline(always)]
pub unsafe fn lua_insert(L: *mut lua_State, idx: c_int) {
lua_rotate(L, idx, 1)
}
#[cfg(any(feature = "lua54", feature = "lua53"))]
#[inline(always)]
pub unsafe fn lua_remove(L: *mut lua_State, idx: c_int) {
lua_rotate(L, idx, -1);
lua_pop(L, 1)
}
#[cfg(any(feature = "lua54", feature = "lua53"))]
#[inline(always)]
pub unsafe fn lua_replace(L: *mut lua_State, idx: c_int) {
lua_copy(L, -1, idx);
lua_pop(L, 1)
}
// Debug API
// Event codes
pub const LUA_HOOKCALL: c_int = 0;
pub const LUA_HOOKRET: c_int = 1;
pub const LUA_HOOKLINE: c_int = 2;
pub const LUA_HOOKCOUNT: c_int = 3;
pub const LUA_HOOKTAILCALL: c_int = 4;
// Event masks
pub const LUA_MASKCALL: c_int = 1 << (LUA_HOOKCALL as usize);
pub const LUA_MASKRET: c_int = 1 << (LUA_HOOKRET as usize);
pub const LUA_MASKLINE: c_int = 1 << (LUA_HOOKLINE as usize);
pub const LUA_MASKCOUNT: c_int = 1 << (LUA_HOOKCOUNT as usize);
/// Type for functions to be called on debug events.
pub type lua_Hook = unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug);
extern "C" {
pub fn lua_getstack(L: *mut lua_State, level: c_int, ar: *mut lua_Debug) -> c_int;
pub fn lua_getinfo(L: *mut lua_State, what: *const c_char, ar: *mut lua_Debug) -> c_int;
pub fn lua_getlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_setlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_getupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_setupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_upvalueid(L: *mut lua_State, fidx: c_int, n: c_int) -> *mut c_void;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn lua_upvaluejoin(L: *mut lua_State, fidx1: c_int, n1: c_int, fidx2: c_int, n2: c_int);
pub fn lua_sethook(L: *mut lua_State, func: Option<lua_Hook>, mask: c_int, count: c_int);
pub fn lua_gethook(L: *mut lua_State) -> Option<lua_Hook>;
pub fn lua_gethookmask(L: *mut lua_State) -> c_int;
pub fn lua_gethookcount(L: *mut lua_State) -> c_int;
#[cfg(feature = "lua54")]
pub fn lua_setcstacklimit(L: *mut lua_State, limit: c_uint) -> c_int;
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[repr(C)]
pub struct lua_Debug {
pub event: c_int,
pub name: *const c_char,
pub namewhat: *const c_char,
pub what: *const c_char,
pub source: *const c_char,
#[cfg(feature = "lua54")]
pub srclen: usize,
pub currentline: c_int,
pub linedefined: c_int,
pub lastlinedefined: c_int,
pub nups: c_uchar,
pub nparams: c_uchar,
pub isvararg: c_char,
pub istailcall: c_char,
#[cfg(feature = "lua54")]
pub ftransfer: c_ushort,
#[cfg(feature = "lua54")]
pub ntransfer: c_ushort,
pub short_src: [c_char; luaconf::LUA_IDSIZE as usize],
// lua.h mentions this is for private use
i_ci: *mut c_void,
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[repr(C)]
pub struct lua_Debug {
pub event: c_int,
pub name: *const c_char,
pub namewhat: *const c_char,
pub what: *const c_char,
pub source: *const c_char,
pub currentline: c_int,
pub nups: c_int,
pub linedefined: c_int,
pub lastlinedefined: c_int,
pub short_src: [c_char; luaconf::LUA_IDSIZE as usize],
// lua.h mentions this is for private use
i_ci: c_int,
}
+92 -359
View File
@@ -1,69 +1,16 @@
// The MIT License (MIT)
//
// Copyright (c) 2019-2021 A. Orlenko
//
// 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.
//! MLua compatibility layer for Lua 5.1/JIT
//!
//! Based on github.com/keplerproject/lua-compat-5.3
// Based on github.com/keplerproject/lua-compat-5.3
#![allow(clippy::needless_return)]
use std::ffi::CStr;
use std::convert::TryInto;
use std::mem;
use std::os::raw::{c_char, c_int, c_void};
use std::ptr;
use super::lauxlib::{
luaL_callmeta, luaL_error, luaL_getmetafield_old, luaL_loadbuffer, luaL_newmetatable_old,
};
#[cfg(any(feature = "lua51", feature = "luajit"))]
use super::lauxlib::{luaL_Reg, luaL_checktype, luaL_getmetatable};
#[cfg(feature = "lua52")]
use super::lauxlib::{luaL_checkstack, luaL_getsubtable};
use super::lua::{
self, lua_CFunction, lua_Debug, lua_Integer, lua_Number, lua_State, lua_Writer, lua_call,
lua_createtable, lua_dump_old, lua_error, lua_getfield_old, lua_getstack, lua_gettable_old,
lua_gettop, lua_insert, lua_isstring, lua_istable, lua_newuserdata, lua_pop, lua_pushboolean,
lua_pushcfunction, lua_pushfstring, lua_pushinteger, lua_pushliteral, lua_pushlstring_old,
lua_pushnil, lua_pushnumber, lua_pushthread, lua_pushvalue, lua_rawget_old, lua_rawgeti_old,
lua_rawset, lua_replace, lua_setfield, lua_setglobal, lua_setmetatable, lua_settable,
lua_toboolean, lua_tointeger, lua_tolstring, lua_tonumber, lua_topointer, lua_tostring,
lua_touserdata, lua_type, lua_typename,
};
#[cfg(any(feature = "lua51", feature = "luajit"))]
use super::lua::{
lua_checkstack, lua_concat, lua_equal, lua_getfenv, lua_getinfo, lua_getmetatable,
lua_isnumber, lua_lessthan, lua_newtable, lua_next, lua_objlen, lua_pushcclosure,
lua_pushlightuserdata, lua_pushstring_old, lua_rawequal, lua_remove, lua_resume_old,
lua_setfenv, lua_settop, LUA_OPADD, LUA_OPUNM,
};
#[cfg(feature = "lua52")]
use super::lua::{
lua_absindex, lua_getglobal_old, lua_getuservalue_old, lua_pushstring, lua_rawgetp_old,
lua_rawsetp, lua_tonumberx,
};
use super::lauxlib::*;
use super::lua::*;
#[inline(always)]
unsafe fn compat53_reverse(L: *mut lua_State, mut a: c_int, mut b: c_int) {
while a < b {
lua_pushvalue(L, a);
@@ -125,10 +72,9 @@ unsafe fn compat53_checkmode(
);
return err;
}
lua::LUA_OK
LUA_OK
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
unsafe fn compat53_findfield(L: *mut lua_State, objidx: c_int, level: c_int) -> c_int {
if level == 0 || lua_istable(L, -1) == 0 {
return 0; // not found
@@ -137,7 +83,7 @@ unsafe fn compat53_findfield(L: *mut lua_State, objidx: c_int, level: c_int) ->
lua_pushnil(L); // start 'next' loop
while lua_next(L, -2) != 0 {
// for each pair in table
if lua_type(L, -2) == lua::LUA_TSTRING {
if lua_type(L, -2) == LUA_TSTRING {
// ignore non-string keys
if lua_rawequal(L, objidx, -1) != 0 {
// found object?
@@ -154,25 +100,23 @@ unsafe fn compat53_findfield(L: *mut lua_State, objidx: c_int, level: c_int) ->
}
lua_pop(L, 1); // remove value
}
return 0; // not found
0 // not found
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
unsafe fn compat53_pushglobalfuncname(L: *mut lua_State, ar: *mut lua_Debug) -> c_int {
let top = lua_gettop(L);
lua_getinfo(L, cstr!("f"), ar); // push function
lua_pushvalue(L, lua::LUA_GLOBALSINDEX);
lua_pushvalue(L, LUA_GLOBALSINDEX);
if compat53_findfield(L, top + 1, 2) != 0 {
lua_copy(L, -1, top + 1); // move name to proper place
lua_pop(L, 2); // remove pushed values
return 1;
1
} else {
lua_settop(L, top); // remove function and global table
return 0;
0
}
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
unsafe fn compat53_pushfuncname(L: *mut lua_State, ar: *mut lua_Debug) {
if *(*ar).namewhat != b'\0' as c_char {
// is there a name?
@@ -197,75 +141,27 @@ unsafe fn compat53_pushfuncname(L: *mut lua_State, ar: *mut lua_Debug) {
}
}
unsafe fn compat53_call_lua(L: *mut lua_State, code: &str, nargs: c_int, nret: c_int) {
lua_rawgetp(L, lua::LUA_REGISTRYINDEX, code.as_ptr() as *const c_void);
if lua_type(L, -1) != lua::LUA_TFUNCTION {
lua_pop(L, 1);
if luaL_loadbuffer(
L,
code.as_ptr() as *const c_char,
code.as_bytes().len(),
cstr!("=none"),
) != 0
{
lua_error(L);
}
lua_pushvalue(L, -1);
lua_rawsetp(L, lua::LUA_REGISTRYINDEX, code.as_ptr() as *const c_void);
}
lua_insert(L, -nargs - 1);
lua_call(L, nargs, nret);
}
//
// lua ported functions
//
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub fn lua_upvalueindex(i: c_int) -> c_int {
lua::LUA_GLOBALSINDEX - i
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_absindex(L: *mut lua_State, mut idx: c_int) -> c_int {
if idx < 0 && idx > lua::LUA_REGISTRYINDEX {
if idx < 0 && idx > LUA_REGISTRYINDEX {
idx += lua_gettop(L) + 1;
}
idx
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
static COMPAT53_ARITH_CODE: &str = r#"
local op,a,b=...
if op == 0 then return a+b
elseif op == 1 then return a-b
elseif op == 2 then return a*b
elseif op == 3 then return a/b
elseif op == 4 then return a%b
elseif op == 5 then return a^b
elseif op == 6 then return -a
end
"#;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub unsafe fn lua_arith(L: *mut lua_State, op: c_int) {
#[allow(clippy::manual_range_contains)]
if op < LUA_OPADD || op > LUA_OPUNM {
luaL_error(L, cstr!("invalid 'op' argument for lua_arith"));
}
luaL_checkstack(L, 5, cstr!("not enough stack slots"));
if op == LUA_OPUNM {
lua_pushvalue(L, -1);
}
lua_pushnumber(L, op as lua_Number);
lua_insert(L, -3);
compat53_call_lua(L, COMPAT53_ARITH_CODE, 3, 1);
}
pub unsafe fn lua_rotate(L: *mut lua_State, mut idx: c_int, mut n: c_int) {
idx = lua_absindex(L, idx);
if n > 0 {
// Faster version
for _ in 0..n {
lua_insert(L, idx);
}
return;
}
let n_elems = lua_gettop(L) - idx + 1;
if n < 0 {
n += n_elems;
@@ -279,7 +175,6 @@ pub unsafe fn lua_rotate(L: *mut lua_State, mut idx: c_int, mut n: c_int) {
}
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int) {
let abs_to = lua_absindex(L, toidx);
@@ -290,32 +185,30 @@ pub unsafe fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int) {
#[inline(always)]
pub unsafe fn lua_isinteger(L: *mut lua_State, idx: c_int) -> c_int {
if lua_type(L, idx) == lua::LUA_TNUMBER {
if lua_type(L, idx) == LUA_TNUMBER {
let n = lua_tonumber(L, idx);
let i = lua_tointeger(L, idx);
if (n - i as lua_Number).abs() < lua_Number::EPSILON {
return 1;
}
}
return 0;
0
}
#[inline(always)]
pub unsafe fn lua_tointeger(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx(L, i, ptr::null_mut())
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_tonumberx(L: *mut lua_State, i: c_int, isnum: *mut c_int) -> lua_Number {
let n = lua_tonumber(L, i);
if !isnum.is_null() {
*isnum = if n != 0.0 || lua_isnumber(L, i) != 0 {
1
} else {
0
};
*isnum = (n != 0.0 || lua_isnumber(L, i) != 0) as c_int;
}
return n;
n
}
// Implemented for Lua 5.2 as well
// See https://github.com/keplerproject/lua-compat-5.3/issues/40
#[inline(always)]
pub unsafe fn lua_tointegerx(L: *mut lua_State, i: c_int, isnum: *mut c_int) -> lua_Integer {
let mut ok = 0;
@@ -330,80 +223,45 @@ pub unsafe fn lua_tointegerx(L: *mut lua_State, i: c_int, isnum: *mut c_int) ->
if !isnum.is_null() {
*isnum = 0;
}
return 0;
0
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_rawlen(L: *mut lua_State, idx: c_int) -> usize {
lua_objlen(L, idx)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_compare(L: *mut lua_State, mut idx1: c_int, mut idx2: c_int, op: c_int) -> c_int {
match op {
lua::LUA_OPEQ => lua_equal(L, idx1, idx2),
lua::LUA_OPLT => lua_lessthan(L, idx1, idx2),
lua::LUA_OPLE => {
luaL_checkstack(L, 5, cstr!("not enough stack slots"));
idx1 = lua_absindex(L, idx1);
idx2 = lua_absindex(L, idx2);
lua_pushvalue(L, idx1);
lua_pushvalue(L, idx2);
compat53_call_lua(L, "local a,b=...\nreturn a<=b\n", 2, 1);
let result = lua_toboolean(L, -1);
lua_pop(L, 1);
result
}
_ => luaL_error(L, cstr!("invalid 'op' argument for lua_compare")),
}
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_pushlstring(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char {
if l == 0 {
lua_pushlstring_old(L, cstr!(""), 0);
lua_pushlstring_(L, cstr!(""), 0);
} else {
lua_pushlstring_old(L, s, l);
lua_pushlstring_(L, s, l);
}
lua_tostring(L, -1)
}
#[cfg(feature = "lua52")]
#[inline(always)]
pub unsafe fn lua_pushlstring(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char {
if l == 0 {
lua_pushlstring_old(L, cstr!(""), 0)
} else {
lua_pushlstring_old(L, s, l)
}
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_pushstring(L: *mut lua_State, s: *const c_char) -> *const c_char {
lua_pushstring_old(L, s);
lua_pushstring_(L, s);
lua_tostring(L, -1)
}
#[cfg(feature = "lua52")]
#[inline(always)]
pub unsafe fn lua_getglobal(L: *mut lua_State, var: *const c_char) -> c_int {
lua_getglobal_old(L, var);
lua_getglobal_(L, var);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_gettable(L: *mut lua_State, idx: c_int) -> c_int {
lua_gettable_old(L, idx);
lua_gettable_(L, idx);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int {
lua_getfield_old(L, idx, k);
lua_getfield_(L, idx, k);
lua_type(L, -1)
}
@@ -411,54 +269,35 @@ pub unsafe fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c
pub unsafe fn lua_geti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) -> c_int {
idx = lua_absindex(L, idx);
lua_pushinteger(L, n);
lua_gettable(L, idx);
lua_type(L, -1)
lua_gettable(L, idx)
}
// A new version which returns c_int
#[inline(always)]
pub unsafe fn lua_rawget(L: *mut lua_State, idx: c_int) -> c_int {
lua_rawget_old(L, idx);
lua_rawget_(L, idx);
lua_type(L, -1)
}
// A new version which returns c_int
#[inline(always)]
pub unsafe fn lua_rawgeti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int {
lua_rawgeti_old(L, idx, n);
let n = n.try_into().expect("cannot convert index to lua_Integer");
lua_rawgeti_(L, idx, n);
lua_type(L, -1)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int {
let abs_i = lua_absindex(L, idx);
lua_pushlightuserdata(L, p as *mut c_void);
lua_rawget(L, abs_i);
lua_type(L, -1)
lua_rawget(L, abs_i)
}
#[cfg(feature = "lua52")]
#[inline(always)]
pub unsafe fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int {
lua_rawgetp_old(L, idx, p);
lua_type(L, -1)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int {
lua_getfenv(L, idx);
lua_type(L, -1)
}
#[cfg(feature = "lua52")]
#[inline(always)]
pub unsafe fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int {
lua_getuservalue_old(L, idx);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_seti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) {
luaL_checkstack(L, 1, cstr!("not enough stack slots available"));
@@ -468,7 +307,12 @@ pub unsafe fn lua_seti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) {
lua_settable(L, idx);
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_rawseti(L: *mut lua_State, idx: c_int, n: lua_Integer) {
let n = n.try_into().expect("cannot convert index from lua_Integer");
lua_rawseti_(L, idx, n)
}
#[inline(always)]
pub unsafe fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void) {
let abs_i = lua_absindex(L, idx);
@@ -478,10 +322,9 @@ pub unsafe fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void) {
lua_rawset(L, abs_i);
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_setuservalue(L: *mut lua_State, idx: c_int) {
luaL_checktype(L, -1, lua::LUA_TTABLE);
luaL_checktype(L, -1, LUA_TTABLE);
lua_setfenv(L, idx);
}
@@ -492,28 +335,21 @@ pub unsafe fn lua_dump(
data: *mut c_void,
_strip: c_int,
) -> c_int {
lua_dump_old(L, writer, data)
lua_dump_(L, writer, data)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_resume(L: *mut lua_State, _from: *mut lua_State, narg: c_int) -> c_int {
lua_resume_old(L, narg)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_len(L: *mut lua_State, idx: c_int) {
match lua_type(L, idx) {
lua::LUA_TSTRING => {
LUA_TSTRING => {
lua_pushnumber(L, lua_objlen(L, idx) as lua_Number);
}
lua::LUA_TTABLE => {
LUA_TTABLE => {
if luaL_callmeta(L, idx, cstr!("__len")) == 0 {
lua_pushnumber(L, lua_objlen(L, idx) as lua_Number);
}
}
lua::LUA_TUSERDATA if luaL_callmeta(L, idx, cstr!("__len")) != 0 => {}
LUA_TUSERDATA if luaL_callmeta(L, idx, cstr!("__len")) != 0 => {}
_ => {
luaL_error(
L,
@@ -524,88 +360,32 @@ pub unsafe fn lua_len(L: *mut lua_State, idx: c_int) {
}
}
#[inline(always)]
pub unsafe fn lua_stringtonumber(L: *mut lua_State, s: *const c_char) -> usize {
use std::str::FromStr;
let cs = CStr::from_ptr(s);
if let Ok(rs) = cs.to_str() {
if let Ok(n) = f64::from_str(rs.trim()) {
lua_pushnumber(L, n as lua_Number);
return cs.to_bytes_with_nul().len();
}
}
0
}
#[allow(clippy::branches_sharing_code)]
pub unsafe fn lua_getextraspace(L: *mut lua_State) -> *mut c_void {
use super::glue::LUA_EXTRASPACE;
luaL_checkstack(L, 4, cstr!("not enough stack slots available"));
lua_pushliteral(L, "__compat53_extraspace");
lua_pushvalue(L, -1);
lua_rawget(L, lua::LUA_REGISTRYINDEX);
if lua_istable(L, -1) == 0 {
lua_pop(L, 1);
lua_createtable(L, 0, 2);
lua_createtable(L, 0, 1);
lua_pushliteral(L, "k");
lua_setfield(L, -2, cstr!("__mode"));
lua_setmetatable(L, -2);
lua_pushvalue(L, -2);
lua_pushvalue(L, -2);
lua_rawset(L, lua::LUA_REGISTRYINDEX);
}
lua_replace(L, -2);
let is_main = lua_pushthread(L);
lua_rawget(L, -2);
let mut _ptr = lua_touserdata(L, -1);
if _ptr.is_null() {
lua_pop(L, 1);
_ptr = lua_newuserdata(L, LUA_EXTRASPACE as usize);
if is_main != 0 {
// mem::size_of::<c_void>() == 1
ptr::write_bytes(_ptr, 0, LUA_EXTRASPACE as usize);
lua_pushthread(L);
lua_pushvalue(L, -2);
lua_rawset(L, -4);
lua_pushboolean(L, 1);
lua_pushvalue(L, -2);
lua_rawset(L, -4);
} else {
lua_pushboolean(L, 1);
lua_rawget(L, -3);
let mptr = lua_touserdata(L, -1);
if !mptr.is_null() {
ptr::copy_nonoverlapping(mptr, _ptr, LUA_EXTRASPACE as usize)
} else {
ptr::write_bytes(_ptr, 0, LUA_EXTRASPACE as usize);
}
lua_pop(L, 1);
lua_pushthread(L);
lua_pushvalue(L, -2);
lua_rawset(L, -4);
}
}
lua_pop(L, 2);
return _ptr;
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn lua_pushglobaltable(L: *mut lua_State) {
lua_pushvalue(L, lua::LUA_GLOBALSINDEX);
lua_pushvalue(L, LUA_GLOBALSINDEX);
}
#[inline(always)]
pub unsafe fn lua_resume(
L: *mut lua_State,
_from: *mut lua_State,
narg: c_int,
nres: *mut c_int,
) -> c_int {
let ret = lua_resume_(L, narg);
if (ret == LUA_OK || ret == LUA_YIELD) && !(nres.is_null()) {
*nres = lua_gettop(L);
}
ret
}
//
// lauxlib ported functions
//
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char) {
if lua_checkstack(L, sz + lua::LUA_MINSTACK) == 0 {
if lua_checkstack(L, sz + LUA_MINSTACK) == 0 {
if !msg.is_null() {
luaL_error(L, cstr!("stack overflow (%s)"), msg);
} else {
@@ -615,23 +395,19 @@ pub unsafe fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char)
}
}
pub unsafe fn luaL_checkversion(_L: *mut lua_State) {
// Void
}
#[inline(always)]
pub unsafe fn luaL_getmetafield(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int {
if luaL_getmetafield_old(L, obj, e) != 0 {
if luaL_getmetafield_(L, obj, e) != 0 {
lua_type(L, -1)
} else {
lua::LUA_TNIL
LUA_TNIL
}
}
#[inline(always)]
pub unsafe fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_int {
if luaL_newmetatable_old(L, tname) != 0 {
lua_pushstring(L, tname);
if luaL_newmetatable_(L, tname) != 0 {
lua_pushstring_(L, tname);
lua_setfield(L, -2, cstr!("__name"));
1
} else {
@@ -639,7 +415,6 @@ pub unsafe fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_in
}
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn luaL_loadbufferx(
L: *mut lua_State,
@@ -648,32 +423,30 @@ pub unsafe fn luaL_loadbufferx(
name: *const c_char,
mode: *const c_char,
) -> c_int {
let status = if sz > 0 && *buff as u8 == lua::LUA_SIGNATURE[0] {
compat53_checkmode(L, mode, cstr!("binary"), lua::LUA_ERRSYNTAX)
let status = if sz > 0 && *buff as u8 == LUA_SIGNATURE[0] {
compat53_checkmode(L, mode, cstr!("binary"), LUA_ERRSYNTAX)
} else {
compat53_checkmode(L, mode, cstr!("text"), lua::LUA_ERRSYNTAX)
compat53_checkmode(L, mode, cstr!("text"), LUA_ERRSYNTAX)
};
if status != lua::LUA_OK {
if status != LUA_OK {
return status;
}
luaL_loadbuffer(L, buff, sz, name)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn luaL_len(L: *mut lua_State, idx: c_int) -> lua_Integer {
let mut isnum = 0;
luaL_checkstack(L, 1, cstr!("not enough stack slots"));
lua_len(L, idx);
let res = lua_tointegerx(L, -1, &mut isnum);
lua::lua_pop(L, 1);
lua_pop(L, 1);
if isnum == 0 {
luaL_error(L, cstr!("object length is not an integer"));
}
res
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub unsafe fn luaL_traceback(
L: *mut lua_State,
L1: *mut lua_State,
@@ -717,13 +490,13 @@ pub unsafe fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) ->
if luaL_callmeta(L, idx, cstr!("__tostring")) == 0 {
let t = lua_type(L, idx);
match t {
lua::LUA_TNIL => {
LUA_TNIL => {
lua_pushliteral(L, "nil");
}
lua::LUA_TSTRING | lua::LUA_TNUMBER => {
LUA_TSTRING | LUA_TNUMBER => {
lua_pushvalue(L, idx);
}
lua::LUA_TBOOLEAN => {
LUA_TBOOLEAN => {
if lua_toboolean(L, idx) == 0 {
lua_pushliteral(L, "false");
} else {
@@ -732,13 +505,13 @@ pub unsafe fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) ->
}
_ => {
let tt = luaL_getmetafield(L, idx, cstr!("__name"));
let name = if tt == lua::LUA_TSTRING {
let name = if tt == LUA_TSTRING {
lua_tostring(L, -1)
} else {
lua_typename(L, t)
};
lua_pushfstring(L, cstr!("%s: %p"), name, lua_topointer(L, idx));
if tt != lua::LUA_TNIL {
if tt != LUA_TNIL {
lua_replace(L, -2);
}
}
@@ -749,7 +522,6 @@ pub unsafe fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) ->
lua_tolstring(L, -1, len)
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char) {
luaL_checkstack(L, 1, cstr!("not enough stack slots"));
@@ -757,57 +529,19 @@ pub unsafe fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char) {
lua_setmetatable(L, -2);
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn luaL_testudata(L: *mut lua_State, i: c_int, tname: *const c_char) -> *mut c_void {
let mut p = lua_touserdata(L, i);
luaL_checkstack(L, 2, cstr!("not enough stack slots"));
if p.is_null() || lua_getmetatable(L, i) == 0 {
return ptr::null_mut();
} else {
luaL_getmetatable(L, tname);
let res = lua_rawequal(L, -1, -2);
lua_pop(L, 2);
if res == 0 {
p = ptr::null_mut();
}
}
return p;
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline(always)]
pub unsafe fn luaL_setfuncs(L: *mut lua_State, mut l: *const luaL_Reg, nup: c_int) {
luaL_checkstack(L, nup + 1, cstr!("too many upvalues"));
while !(*l).name.is_null() {
// fill the table with given functions
l = l.offset(1);
lua_pushstring(L, (*l).name);
for _ in 0..nup {
// copy upvalues to the top
lua_pushvalue(L, -(nup + 1));
}
lua_pushcclosure(L, (*l).func, nup); // closure with those upvalues
lua_settable(L, -(nup + 3)); // table must be below the upvalues, the name and the closure
}
lua_pop(L, nup); // remove upvalues
}
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub unsafe fn luaL_getsubtable(L: *mut lua_State, idx: c_int, fname: *const c_char) -> c_int {
let abs_i = lua_absindex(L, idx);
luaL_checkstack(L, 3, cstr!("not enough stack slots"));
lua_pushstring(L, fname);
lua_gettable(L, abs_i);
if lua_istable(L, -1) != 0 {
lua_pushstring_(L, fname);
if lua_gettable(L, abs_i) == LUA_TTABLE {
return 1;
}
lua_pop(L, 1);
lua_newtable(L);
lua_pushstring(L, fname);
lua_pushstring_(L, fname);
lua_pushvalue(L, -2);
lua_settable(L, abs_i);
return 0;
0
}
pub unsafe fn luaL_requiref(
@@ -817,12 +551,12 @@ pub unsafe fn luaL_requiref(
glb: c_int,
) {
luaL_checkstack(L, 3, cstr!("not enough stack slots available"));
luaL_getsubtable(L, lua::LUA_REGISTRYINDEX, cstr!("_LOADED"));
if lua_getfield(L, -1, modname) == lua::LUA_TNIL {
luaL_getsubtable(L, LUA_REGISTRYINDEX, cstr!("_LOADED"));
if lua_getfield(L, -1, modname) == LUA_TNIL {
lua_pop(L, 1);
lua_pushcfunction(L, openf);
lua_pushstring(L, modname);
#[cfg(any(feature = "lua52", feature = "lua51"))]
#[cfg(feature = "lua51")]
{
lua_call(L, 1, 1);
lua_pushvalue(L, -1);
@@ -834,11 +568,10 @@ pub unsafe fn luaL_requiref(
lua_getfield(L, -1, modname);
}
}
if cfg!(any(feature = "lua52", feature = "lua51")) && glb != 0 {
if glb != 0 {
lua_pushvalue(L, -1);
lua_setglobal(L, modname);
}
if cfg!(feature = "luajit") && glb == 0 {
} else {
lua_pushnil(L);
lua_setglobal(L, modname);
}
+145
View File
@@ -0,0 +1,145 @@
//! Contains definitions from `lauxlib.h`.
use std::os::raw::{c_char, c_int, c_void};
use std::ptr;
use super::lua::{self, lua_CFunction, lua_Integer, lua_Number, lua_State};
// Extra error code for 'luaL_load'
pub const LUA_ERRFILE: c_int = lua::LUA_ERRERR + 1;
#[repr(C)]
pub struct luaL_Reg {
pub name: *const c_char,
pub func: lua_CFunction,
}
extern "C" {
pub fn luaL_register(L: *mut lua_State, libname: *const c_char, l: *const luaL_Reg);
#[link_name = "luaL_getmetafield"]
pub fn luaL_getmetafield_(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_callmeta(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_typerror(L: *mut lua_State, narg: c_int, tname: *const c_char) -> c_int;
pub fn luaL_argerror(L: *mut lua_State, narg: c_int, extramsg: *const c_char) -> c_int;
pub fn luaL_checklstring(L: *mut lua_State, narg: c_int, l: *mut usize) -> *const c_char;
pub fn luaL_optlstring(
L: *mut lua_State,
narg: c_int,
def: *const c_char,
l: *mut usize,
) -> *const c_char;
pub fn luaL_checknumber(L: *mut lua_State, narg: c_int) -> lua_Number;
pub fn luaL_optnumber(L: *mut lua_State, narg: c_int, def: lua_Number) -> lua_Number;
pub fn luaL_checkinteger(L: *mut lua_State, narg: c_int) -> lua_Integer;
pub fn luaL_optinteger(L: *mut lua_State, narg: c_int, def: lua_Integer) -> lua_Integer;
#[link_name = "luaL_checkstack"]
pub fn luaL_checkstack_(L: *mut lua_State, sz: c_int, msg: *const c_char);
pub fn luaL_checktype(L: *mut lua_State, narg: c_int, t: c_int);
pub fn luaL_checkany(L: *mut lua_State, narg: c_int);
#[link_name = "luaL_newmetatable"]
pub fn luaL_newmetatable_(L: *mut lua_State, tname: *const c_char) -> c_int;
pub fn luaL_checkudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_where(L: *mut lua_State, lvl: c_int);
pub fn luaL_error(L: *mut lua_State, fmt: *const c_char, ...) -> !;
pub fn luaL_checkoption(
L: *mut lua_State,
narg: c_int,
def: *const c_char,
lst: *const *const c_char,
) -> c_int;
}
// Pre-defined references
pub const LUA_NOREF: c_int = -2;
pub const LUA_REFNIL: c_int = -1;
extern "C" {
pub fn luaL_ref(L: *mut lua_State, t: c_int) -> c_int;
pub fn luaL_unref(L: *mut lua_State, t: c_int, r#ref: c_int);
pub fn luaL_loadfile(L: *mut lua_State, filename: *const c_char) -> c_int;
pub fn luaL_loadbuffer(
L: *mut lua_State,
buff: *const c_char,
sz: usize,
name: *const c_char,
) -> c_int;
pub fn luaL_loadstring(L: *mut lua_State, s: *const c_char) -> c_int;
pub fn luaL_newstate() -> *mut lua_State;
pub fn luaL_gsub(
L: *mut lua_State,
s: *const c_char,
p: *const c_char,
r: *const c_char,
) -> *const c_char;
pub fn luaL_findtable(
L: *mut lua_State,
idx: c_int,
fname: *const c_char,
szhint: c_int,
) -> *const c_char;
}
//
// Some useful macros (implemented as Rust functions)
//
#[inline(always)]
pub unsafe fn luaL_argcheck(L: *mut lua_State, cond: c_int, narg: c_int, extramsg: *const c_char) {
if cond == 0 {
luaL_argerror(L, narg, extramsg);
}
}
#[inline(always)]
pub unsafe fn luaL_checkstring(L: *mut lua_State, n: c_int) -> *const c_char {
luaL_checklstring(L, n, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_optstring(L: *mut lua_State, n: c_int, d: *const c_char) -> *const c_char {
luaL_optlstring(L, n, d, ptr::null_mut())
}
// Deprecated from 5.3: luaL_checkint, luaL_optint, luaL_checklong, luaL_optlong
#[inline(always)]
pub unsafe fn luaL_typename(L: *mut lua_State, i: c_int) -> *const c_char {
lua::lua_typename(L, lua::lua_type(L, i))
}
pub unsafe fn luaL_dofile(L: *mut lua_State, filename: *const c_char) -> c_int {
let status = luaL_loadfile(L, filename);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_dostring(L: *mut lua_State, s: *const c_char) -> c_int {
let status = luaL_loadstring(L, s);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_getmetatable(L: *mut lua_State, n: *const c_char) {
lua::lua_getfield_(L, lua::LUA_REGISTRYINDEX, n);
}
// TODO: luaL_opt
//
// TODO: Generic Buffer Manipulation
//
+389
View File
@@ -0,0 +1,389 @@
//! Contains definitions from `lua.h`.
use std::marker::{PhantomData, PhantomPinned};
use std::os::raw::{c_char, c_double, c_int, c_void};
use std::ptr;
// Mark for precompiled code (`<esc>Lua`)
#[cfg(not(feature = "luajit"))]
pub const LUA_SIGNATURE: &[u8] = b"\x1bLua";
#[cfg(feature = "luajit")]
pub const LUA_SIGNATURE: &[u8] = b"\x1bLJ";
// Option for multiple returns in 'lua_pcall' and 'lua_call'
pub const LUA_MULTRET: c_int = -1;
//
// Pseudo-indices
//
pub const LUA_REGISTRYINDEX: c_int = -10000;
pub const LUA_ENVIRONINDEX: c_int = -10001;
pub const LUA_GLOBALSINDEX: c_int = -10002;
pub const fn lua_upvalueindex(i: c_int) -> c_int {
LUA_GLOBALSINDEX - i
}
//
// Thread status
//
pub const LUA_OK: c_int = 0;
pub const LUA_YIELD: c_int = 1;
pub const LUA_ERRRUN: c_int = 2;
pub const LUA_ERRSYNTAX: c_int = 3;
pub const LUA_ERRMEM: c_int = 4;
pub const LUA_ERRERR: c_int = 5;
/// A raw Lua state associated with a thread.
#[repr(C)]
pub struct lua_State {
_data: [u8; 0],
_marker: PhantomData<(*mut u8, PhantomPinned)>,
}
//
// Basic types
//
pub const LUA_TNONE: c_int = -1;
pub const LUA_TNIL: c_int = 0;
pub const LUA_TBOOLEAN: c_int = 1;
pub const LUA_TLIGHTUSERDATA: c_int = 2;
pub const LUA_TNUMBER: c_int = 3;
pub const LUA_TSTRING: c_int = 4;
pub const LUA_TTABLE: c_int = 5;
pub const LUA_TFUNCTION: c_int = 6;
pub const LUA_TUSERDATA: c_int = 7;
pub const LUA_TTHREAD: c_int = 8;
/// Type produced by LuaJIT FFI module
#[cfg(feature = "luajit")]
pub const LUA_TCDATA: c_int = 10;
/// Minimum Lua stack available to a C function
pub const LUA_MINSTACK: c_int = 20;
/// A Lua number, usually equivalent to `f64`
pub type lua_Number = c_double;
/// A Lua integer, usually equivalent to `i64`
#[cfg(target_pointer_width = "32")]
pub type lua_Integer = i32;
#[cfg(target_pointer_width = "64")]
pub type lua_Integer = i64;
/// Type for native C functions that can be passed to Lua.
pub type lua_CFunction = unsafe extern "C" fn(L: *mut lua_State) -> c_int;
// Type for functions that read/write blocks when loading/dumping Lua chunks
pub type lua_Reader =
unsafe extern "C" fn(L: *mut lua_State, ud: *mut c_void, sz: *mut usize) -> *const c_char;
pub type lua_Writer =
unsafe extern "C" fn(L: *mut lua_State, p: *const c_void, sz: usize, ud: *mut c_void) -> c_int;
/// Type for memory-allocation functions
pub type lua_Alloc = unsafe extern "C" fn(
ud: *mut c_void,
ptr: *mut c_void,
osize: usize,
nsize: usize,
) -> *mut c_void;
extern "C" {
//
// State manipulation
//
pub fn lua_newstate(f: lua_Alloc, ud: *mut c_void) -> *mut lua_State;
pub fn lua_close(L: *mut lua_State);
pub fn lua_newthread(L: *mut lua_State) -> *mut lua_State;
#[cfg(all(feature = "luajit", feature = "vendored"))]
pub fn lua_resetthread(L: *mut lua_State, th: *mut lua_State);
pub fn lua_atpanic(L: *mut lua_State, panicf: lua_CFunction) -> lua_CFunction;
//
// Basic stack manipulation
//
pub fn lua_gettop(L: *mut lua_State) -> c_int;
pub fn lua_settop(L: *mut lua_State, idx: c_int);
pub fn lua_pushvalue(L: *mut lua_State, idx: c_int);
pub fn lua_remove(L: *mut lua_State, idx: c_int);
pub fn lua_insert(L: *mut lua_State, idx: c_int);
pub fn lua_replace(L: *mut lua_State, idx: c_int);
pub fn lua_checkstack(L: *mut lua_State, sz: c_int) -> c_int;
pub fn lua_xmove(from: *mut lua_State, to: *mut lua_State, n: c_int);
//
// Access functions (stack -> C)
//
pub fn lua_isnumber(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isstring(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_iscfunction(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isuserdata(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_type(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_typename(L: *mut lua_State, tp: c_int) -> *const c_char;
pub fn lua_equal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_rawequal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_lessthan(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_tonumber(L: *mut lua_State, idx: c_int) -> lua_Number;
#[link_name = "lua_tointeger"]
pub fn lua_tointeger_(L: *mut lua_State, idx: c_int) -> lua_Integer;
pub fn lua_toboolean(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn lua_objlen(L: *mut lua_State, idx: c_int) -> usize;
pub fn lua_tocfunction(L: *mut lua_State, idx: c_int) -> Option<lua_CFunction>;
pub fn lua_touserdata(L: *mut lua_State, idx: c_int) -> *mut c_void;
pub fn lua_tothread(L: *mut lua_State, idx: c_int) -> *mut lua_State;
pub fn lua_topointer(L: *mut lua_State, idx: c_int) -> *const c_void;
//
// Push functions (C -> stack)
//
pub fn lua_pushnil(L: *mut lua_State);
pub fn lua_pushnumber(L: *mut lua_State, n: lua_Number);
pub fn lua_pushinteger(L: *mut lua_State, n: lua_Integer);
#[link_name = "lua_pushlstring"]
pub fn lua_pushlstring_(L: *mut lua_State, s: *const c_char, l: usize);
#[link_name = "lua_pushstring"]
pub fn lua_pushstring_(L: *mut lua_State, s: *const c_char);
// lua_pushvfstring
pub fn lua_pushfstring(L: *mut lua_State, fmt: *const c_char, ...) -> *const c_char;
pub fn lua_pushcclosure(L: *mut lua_State, f: lua_CFunction, n: c_int);
pub fn lua_pushboolean(L: *mut lua_State, b: c_int);
pub fn lua_pushlightuserdata(L: *mut lua_State, p: *mut c_void);
pub fn lua_pushthread(L: *mut lua_State) -> c_int;
//
// Get functions (Lua -> stack)
//
#[link_name = "lua_gettable"]
pub fn lua_gettable_(L: *mut lua_State, idx: c_int);
#[link_name = "lua_getfield"]
pub fn lua_getfield_(L: *mut lua_State, idx: c_int, k: *const c_char);
#[link_name = "lua_rawget"]
pub fn lua_rawget_(L: *mut lua_State, idx: c_int);
#[link_name = "lua_rawgeti"]
pub fn lua_rawgeti_(L: *mut lua_State, idx: c_int, n: c_int);
pub fn lua_createtable(L: *mut lua_State, narr: c_int, nrec: c_int);
pub fn lua_newuserdata(L: *mut lua_State, sz: usize) -> *mut c_void;
pub fn lua_getmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_getfenv(L: *mut lua_State, idx: c_int);
//
// Set functions (stack -> Lua)
//
pub fn lua_settable(L: *mut lua_State, idx: c_int);
pub fn lua_setfield(L: *mut lua_State, idx: c_int, k: *const c_char);
pub fn lua_rawset(L: *mut lua_State, idx: c_int);
#[link_name = "lua_rawseti"]
pub fn lua_rawseti_(L: *mut lua_State, idx: c_int, n: c_int);
pub fn lua_setmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_setfenv(L: *mut lua_State, idx: c_int) -> c_int;
//
// 'load' and 'call' functions (load and run Lua code)
//
pub fn lua_call(L: *mut lua_State, nargs: c_int, nresults: c_int);
pub fn lua_pcall(L: *mut lua_State, nargs: c_int, nresults: c_int, errfunc: c_int) -> c_int;
pub fn lua_cpcall(L: *mut lua_State, f: lua_CFunction, ud: *mut c_void) -> c_int;
pub fn lua_load(
L: *mut lua_State,
reader: lua_Reader,
data: *mut c_void,
chunkname: *const c_char,
) -> c_int;
#[link_name = "lua_dump"]
pub fn lua_dump_(L: *mut lua_State, writer: lua_Writer, data: *mut c_void) -> c_int;
//
// Coroutine functions
//
pub fn lua_yield(L: *mut lua_State, nresults: c_int) -> c_int;
#[link_name = "lua_resume"]
pub fn lua_resume_(L: *mut lua_State, narg: c_int) -> c_int;
pub fn lua_status(L: *mut lua_State) -> c_int;
}
//
// Garbage-collection function and options
//
pub const LUA_GCSTOP: c_int = 0;
pub const LUA_GCRESTART: c_int = 1;
pub const LUA_GCCOLLECT: c_int = 2;
pub const LUA_GCCOUNT: c_int = 3;
pub const LUA_GCCOUNTB: c_int = 4;
pub const LUA_GCSTEP: c_int = 5;
pub const LUA_GCSETPAUSE: c_int = 6;
pub const LUA_GCSETSTEPMUL: c_int = 7;
extern "C" {
pub fn lua_gc(L: *mut lua_State, what: c_int, data: c_int) -> c_int;
}
//
// Miscellaneous functions
//
extern "C" {
pub fn lua_error(L: *mut lua_State) -> !;
pub fn lua_next(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_concat(L: *mut lua_State, n: c_int);
pub fn lua_getallocf(L: *mut lua_State, ud: *mut *mut c_void) -> lua_Alloc;
pub fn lua_setallocf(L: *mut lua_State, f: lua_Alloc, ud: *mut c_void);
}
//
// Some useful macros (implemented as Rust functions)
//
#[inline(always)]
pub unsafe fn lua_pop(L: *mut lua_State, n: c_int) {
lua_settop(L, -n - 1)
}
#[inline(always)]
pub unsafe fn lua_newtable(L: *mut lua_State) {
lua_createtable(L, 0, 0)
}
#[inline(always)]
pub unsafe fn lua_register(L: *mut lua_State, n: *const c_char, f: lua_CFunction) {
lua_pushcfunction(L, f);
lua_setglobal(L, n)
}
#[inline(always)]
pub unsafe fn lua_pushcfunction(L: *mut lua_State, f: lua_CFunction) {
lua_pushcclosure(L, f, 0)
}
// TODO: lua_strlen
#[inline(always)]
pub unsafe fn lua_isfunction(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TFUNCTION) as c_int
}
#[inline(always)]
pub unsafe fn lua_istable(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTABLE) as c_int
}
#[inline(always)]
pub unsafe fn lua_islightuserdata(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TLIGHTUSERDATA) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_isboolean(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TBOOLEAN) as c_int
}
#[inline(always)]
pub unsafe fn lua_isthread(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTHREAD) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnone(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNONE) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnoneornil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) <= LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_pushliteral(L: *mut lua_State, s: &'static str) {
use std::ffi::CString;
let c_str = CString::new(s).unwrap();
lua_pushlstring_(L, c_str.as_ptr(), c_str.as_bytes().len())
}
#[inline(always)]
pub unsafe fn lua_setglobal(L: *mut lua_State, var: *const c_char) {
lua_setfield(L, LUA_GLOBALSINDEX, var)
}
#[inline(always)]
pub unsafe fn lua_getglobal_(L: *mut lua_State, var: *const c_char) {
lua_getfield_(L, LUA_GLOBALSINDEX, var)
}
#[inline(always)]
pub unsafe fn lua_tostring(L: *mut lua_State, i: c_int) -> *const c_char {
lua_tolstring(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_xpush(from: *mut lua_State, to: *mut lua_State, idx: c_int) {
lua_pushvalue(from, idx);
lua_xmove(from, to, 1);
}
//
// Debug API
//
// Maximum size for the description of the source of a function in debug information.
const LUA_IDSIZE: usize = 60;
// Event codes
pub const LUA_HOOKCALL: c_int = 0;
pub const LUA_HOOKRET: c_int = 1;
pub const LUA_HOOKLINE: c_int = 2;
pub const LUA_HOOKCOUNT: c_int = 3;
pub const LUA_HOOKTAILCALL: c_int = 4;
// Event masks
pub const LUA_MASKCALL: c_int = 1 << (LUA_HOOKCALL as usize);
pub const LUA_MASKRET: c_int = 1 << (LUA_HOOKRET as usize);
pub const LUA_MASKLINE: c_int = 1 << (LUA_HOOKLINE as usize);
pub const LUA_MASKCOUNT: c_int = 1 << (LUA_HOOKCOUNT as usize);
/// Type for functions to be called on debug events.
pub type lua_Hook = unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug);
extern "C" {
pub fn lua_getstack(L: *mut lua_State, level: c_int, ar: *mut lua_Debug) -> c_int;
pub fn lua_getinfo(L: *mut lua_State, what: *const c_char, ar: *mut lua_Debug) -> c_int;
pub fn lua_getlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_setlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_getupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_setupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_sethook(
L: *mut lua_State,
func: Option<lua_Hook>,
mask: c_int,
count: c_int,
) -> c_int;
pub fn lua_gethook(L: *mut lua_State) -> Option<lua_Hook>;
pub fn lua_gethookmask(L: *mut lua_State) -> c_int;
pub fn lua_gethookcount(L: *mut lua_State) -> c_int;
}
#[repr(C)]
pub struct lua_Debug {
pub event: c_int,
pub name: *const c_char,
pub namewhat: *const c_char,
pub what: *const c_char,
pub source: *const c_char,
pub currentline: c_int,
pub nups: c_int,
pub linedefined: c_int,
pub lastlinedefined: c_int,
pub short_src: [c_char; LUA_IDSIZE],
// lua.h mentions this is for private use
i_ci: c_int,
}
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//! Contains definitions from `lualib.h`.
use std::os::raw::c_int;
use super::lua::lua_State;
pub const LUA_COLIBNAME: &str = "coroutine";
pub const LUA_TABLIBNAME: &str = "table";
pub const LUA_IOLIBNAME: &str = "io";
pub const LUA_OSLIBNAME: &str = "os";
pub const LUA_STRLIBNAME: &str = "string";
pub const LUA_MATHLIBNAME: &str = "math";
pub const LUA_DBLIBNAME: &str = "debug";
pub const LUA_LOADLIBNAME: &str = "package";
#[cfg(feature = "luajit")]
pub const LUA_BITLIBNAME: &str = "bit";
#[cfg(feature = "luajit")]
pub const LUA_JITLIBNAME: &str = "jit";
#[cfg(feature = "luajit")]
pub const LUA_FFILIBNAME: &str = "ffi";
extern "C" {
pub fn luaopen_base(L: *mut lua_State) -> c_int;
pub fn luaopen_table(L: *mut lua_State) -> c_int;
pub fn luaopen_io(L: *mut lua_State) -> c_int;
pub fn luaopen_os(L: *mut lua_State) -> c_int;
pub fn luaopen_string(L: *mut lua_State) -> c_int;
pub fn luaopen_math(L: *mut lua_State) -> c_int;
pub fn luaopen_debug(L: *mut lua_State) -> c_int;
pub fn luaopen_package(L: *mut lua_State) -> c_int;
#[cfg(feature = "luajit")]
pub fn luaopen_bit(L: *mut lua_State) -> c_int;
#[cfg(feature = "luajit")]
pub fn luaopen_jit(L: *mut lua_State) -> c_int;
#[cfg(feature = "luajit")]
pub fn luaopen_ffi(L: *mut lua_State) -> c_int;
// open all builtin libraries
pub fn luaL_openlibs(L: *mut lua_State);
}
+11
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//! Low level bindings to Lua 5.1.
pub use compat::*;
pub use lauxlib::*;
pub use lua::*;
pub use lualib::*;
pub mod compat;
pub mod lauxlib;
pub mod lua;
pub mod lualib;
+265
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//! MLua compatibility layer for Lua 5.2
//!
//! Based on github.com/keplerproject/lua-compat-5.3
use std::convert::TryInto;
use std::os::raw::{c_char, c_int, c_void};
use std::ptr;
use super::lauxlib::*;
use super::lua::*;
#[inline(always)]
unsafe fn compat53_reverse(L: *mut lua_State, mut a: c_int, mut b: c_int) {
while a < b {
lua_pushvalue(L, a);
lua_pushvalue(L, b);
lua_replace(L, a);
lua_replace(L, b);
a += 1;
b -= 1;
}
}
//
// lua ported functions
//
pub unsafe fn lua_rotate(L: *mut lua_State, mut idx: c_int, mut n: c_int) {
idx = lua_absindex(L, idx);
if n > 0 {
// Faster version
for _ in 0..n {
lua_insert(L, idx);
}
return;
}
let n_elems = lua_gettop(L) - idx + 1;
if n < 0 {
n += n_elems;
}
if n > 0 && n < n_elems {
luaL_checkstack(L, 2, cstr!("not enough stack slots available"));
n = n_elems - n;
compat53_reverse(L, idx, idx + n - 1);
compat53_reverse(L, idx + n, idx + n_elems - 1);
compat53_reverse(L, idx, idx + n_elems - 1);
}
}
#[inline(always)]
pub unsafe fn lua_isinteger(L: *mut lua_State, idx: c_int) -> c_int {
if lua_type(L, idx) == LUA_TNUMBER {
let n = lua_tonumber(L, idx);
let i = lua_tointeger(L, idx);
if (n - i as lua_Number).abs() < lua_Number::EPSILON {
return 1;
}
}
0
}
#[inline(always)]
pub unsafe fn lua_tointeger(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx(L, i, ptr::null_mut())
}
// Implemented for Lua 5.2 as well
// See https://github.com/keplerproject/lua-compat-5.3/issues/40
#[inline(always)]
pub unsafe fn lua_tointegerx(L: *mut lua_State, i: c_int, isnum: *mut c_int) -> lua_Integer {
let mut ok = 0;
let n = lua_tonumberx(L, i, &mut ok);
let n_int = n as lua_Integer;
if ok != 0 && (n - n_int as lua_Number).abs() < lua_Number::EPSILON {
if !isnum.is_null() {
*isnum = 1;
}
return n_int;
}
if !isnum.is_null() {
*isnum = 0;
}
0
}
#[inline(always)]
pub unsafe fn lua_pushlstring(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char {
if l == 0 {
lua_pushlstring_(L, cstr!(""), 0)
} else {
lua_pushlstring_(L, s, l)
}
}
#[inline(always)]
pub unsafe fn lua_getglobal(L: *mut lua_State, var: *const c_char) -> c_int {
lua_getglobal_(L, var);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_gettable(L: *mut lua_State, idx: c_int) -> c_int {
lua_gettable_(L, idx);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int {
lua_getfield_(L, idx, k);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_geti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) -> c_int {
idx = lua_absindex(L, idx);
lua_pushinteger(L, n);
lua_gettable(L, idx)
}
#[inline(always)]
pub unsafe fn lua_rawget(L: *mut lua_State, idx: c_int) -> c_int {
lua_rawget_(L, idx);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_rawgeti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int {
let n = n.try_into().expect("cannot convert index to lua_Integer");
lua_rawgeti_(L, idx, n);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int {
lua_rawgetp_(L, idx, p);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int {
lua_getuservalue_(L, idx);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_seti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) {
luaL_checkstack(L, 1, cstr!("not enough stack slots available"));
idx = lua_absindex(L, idx);
lua_pushinteger(L, n);
lua_insert(L, -2);
lua_settable(L, idx);
}
#[inline(always)]
pub unsafe fn lua_rawseti(L: *mut lua_State, idx: c_int, n: lua_Integer) {
let n = n.try_into().expect("cannot convert index from lua_Integer");
lua_rawseti_(L, idx, n)
}
#[inline(always)]
pub unsafe fn lua_dump(
L: *mut lua_State,
writer: lua_Writer,
data: *mut c_void,
_strip: c_int,
) -> c_int {
lua_dump_(L, writer, data)
}
#[inline(always)]
pub unsafe fn lua_resume(
L: *mut lua_State,
from: *mut lua_State,
narg: c_int,
nres: *mut c_int,
) -> c_int {
let ret = lua_resume_(L, from, narg);
if (ret == LUA_OK || ret == LUA_YIELD) && !(nres.is_null()) {
*nres = lua_gettop(L);
}
ret
}
//
// lauxlib ported functions
//
#[inline(always)]
pub unsafe fn luaL_getmetafield(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int {
if luaL_getmetafield_(L, obj, e) != 0 {
lua_type(L, -1)
} else {
LUA_TNIL
}
}
#[inline(always)]
pub unsafe fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_int {
if luaL_newmetatable_(L, tname) != 0 {
lua_pushstring(L, tname);
lua_setfield(L, -2, cstr!("__name"));
1
} else {
0
}
}
pub unsafe fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char {
if luaL_callmeta(L, idx, cstr!("__tostring")) == 0 {
let t = lua_type(L, idx);
match t {
LUA_TNIL => {
lua_pushliteral(L, "nil");
}
LUA_TSTRING | LUA_TNUMBER => {
lua_pushvalue(L, idx);
}
LUA_TBOOLEAN => {
if lua_toboolean(L, idx) == 0 {
lua_pushliteral(L, "false");
} else {
lua_pushliteral(L, "true");
}
}
_ => {
let tt = luaL_getmetafield(L, idx, cstr!("__name"));
let name = if tt == LUA_TSTRING {
lua_tostring(L, -1)
} else {
lua_typename(L, t)
};
lua_pushfstring(L, cstr!("%s: %p"), name, lua_topointer(L, idx));
if tt != LUA_TNIL {
lua_replace(L, -2);
}
}
};
} else if lua_isstring(L, -1) == 0 {
luaL_error(L, cstr!("'__tostring' must return a string"));
}
lua_tolstring(L, -1, len)
}
pub unsafe fn luaL_requiref(
L: *mut lua_State,
modname: *const c_char,
openf: lua_CFunction,
glb: c_int,
) {
luaL_checkstack(L, 3, cstr!("not enough stack slots available"));
luaL_getsubtable(L, LUA_REGISTRYINDEX, cstr!("_LOADED"));
if lua_getfield(L, -1, modname) == LUA_TNIL {
lua_pop(L, 1);
lua_pushcfunction(L, openf);
lua_pushstring(L, modname);
lua_call(L, 1, 1);
lua_pushvalue(L, -1);
lua_setfield(L, -3, modname);
}
if glb != 0 {
lua_pushvalue(L, -1);
lua_setglobal(L, modname);
}
lua_replace(L, -2);
}
+184
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//! Contains definitions from `lauxlib.h`.
use std::os::raw::{c_char, c_int, c_void};
use std::ptr;
use super::lua::{self, lua_CFunction, lua_Integer, lua_Number, lua_State, lua_Unsigned};
// Extra error code for 'luaL_load'
pub const LUA_ERRFILE: c_int = lua::LUA_ERRERR + 1;
#[repr(C)]
pub struct luaL_Reg {
pub name: *const c_char,
pub func: lua_CFunction,
}
extern "C" {
pub fn luaL_checkversion_(L: *mut lua_State, ver: lua_Number);
#[link_name = "luaL_getmetafield"]
pub fn luaL_getmetafield_(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_callmeta(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
#[link_name = "luaL_tolstring"]
pub fn luaL_tolstring_(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn luaL_argerror(L: *mut lua_State, arg: c_int, extramsg: *const c_char) -> c_int;
pub fn luaL_checklstring(L: *mut lua_State, arg: c_int, l: *mut usize) -> *const c_char;
pub fn luaL_optlstring(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
l: *mut usize,
) -> *const c_char;
pub fn luaL_checknumber(L: *mut lua_State, arg: c_int) -> lua_Number;
pub fn luaL_optnumber(L: *mut lua_State, arg: c_int, def: lua_Number) -> lua_Number;
pub fn luaL_checkinteger(L: *mut lua_State, arg: c_int) -> lua_Integer;
pub fn luaL_optinteger(L: *mut lua_State, arg: c_int, def: lua_Integer) -> lua_Integer;
pub fn luaL_checkunsigned(L: *mut lua_State, arg: c_int) -> lua_Unsigned;
pub fn luaL_optunsigned(L: *mut lua_State, arg: c_int, def: lua_Unsigned) -> lua_Unsigned;
pub fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char);
pub fn luaL_checktype(L: *mut lua_State, arg: c_int, t: c_int);
pub fn luaL_checkany(L: *mut lua_State, arg: c_int);
#[link_name = "luaL_newmetatable"]
pub fn luaL_newmetatable_(L: *mut lua_State, tname: *const c_char) -> c_int;
pub fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char);
pub fn luaL_testudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_checkudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_where(L: *mut lua_State, lvl: c_int);
pub fn luaL_error(L: *mut lua_State, fmt: *const c_char, ...) -> !;
pub fn luaL_checkoption(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
lst: *const *const c_char,
) -> c_int;
pub fn luaL_fileresult(L: *mut lua_State, stat: c_int, fname: *const c_char) -> c_int;
pub fn luaL_execresult(L: *mut lua_State, stat: c_int) -> c_int;
}
// Pre-defined references
pub const LUA_NOREF: c_int = -2;
pub const LUA_REFNIL: c_int = -1;
extern "C" {
pub fn luaL_ref(L: *mut lua_State, t: c_int) -> c_int;
pub fn luaL_unref(L: *mut lua_State, t: c_int, r#ref: c_int);
pub fn luaL_loadfilex(L: *mut lua_State, filename: *const c_char, mode: *const c_char)
-> c_int;
}
#[inline(always)]
pub unsafe fn luaL_loadfile(L: *mut lua_State, f: *const c_char) -> c_int {
luaL_loadfilex(L, f, ptr::null())
}
extern "C" {
pub fn luaL_loadbufferx(
L: *mut lua_State,
buff: *const c_char,
sz: usize,
name: *const c_char,
mode: *const c_char,
) -> c_int;
pub fn luaL_loadstring(L: *mut lua_State, s: *const c_char) -> c_int;
pub fn luaL_newstate() -> *mut lua_State;
pub fn luaL_len(L: *mut lua_State, idx: c_int) -> lua_Integer;
pub fn luaL_gsub(
L: *mut lua_State,
s: *const c_char,
p: *const c_char,
r: *const c_char,
) -> *const c_char;
pub fn luaL_setfuncs(L: *mut lua_State, l: *const luaL_Reg, nup: c_int);
pub fn luaL_getsubtable(L: *mut lua_State, idx: c_int, fname: *const c_char) -> c_int;
pub fn luaL_traceback(L: *mut lua_State, L1: *mut lua_State, msg: *const c_char, level: c_int);
#[link_name = "luaL_requiref"]
pub fn luaL_requiref_(
L: *mut lua_State,
modname: *const c_char,
openf: lua_CFunction,
glb: c_int,
);
}
//
// Some useful macros (implemented as Rust functions)
//
// TODO: luaL_newlibtable, luaL_newlib
#[inline(always)]
pub unsafe fn luaL_argcheck(L: *mut lua_State, cond: c_int, arg: c_int, extramsg: *const c_char) {
if cond == 0 {
luaL_argerror(L, arg, extramsg);
}
}
#[inline(always)]
pub unsafe fn luaL_checkstring(L: *mut lua_State, n: c_int) -> *const c_char {
luaL_checklstring(L, n, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_optstring(L: *mut lua_State, n: c_int, d: *const c_char) -> *const c_char {
luaL_optlstring(L, n, d, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_typename(L: *mut lua_State, i: c_int) -> *const c_char {
lua::lua_typename(L, lua::lua_type(L, i))
}
#[inline(always)]
pub unsafe fn luaL_dofile(L: *mut lua_State, filename: *const c_char) -> c_int {
let status = luaL_loadfile(L, filename);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_dostring(L: *mut lua_State, s: *const c_char) -> c_int {
let status = luaL_loadstring(L, s);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_getmetatable(L: *mut lua_State, n: *const c_char) {
lua::lua_getfield_(L, lua::LUA_REGISTRYINDEX, n);
}
// luaL_opt would be implemented here but it is undocumented, so it's omitted
#[inline(always)]
pub unsafe fn luaL_loadbuffer(
L: *mut lua_State,
s: *const c_char,
sz: usize,
n: *const c_char,
) -> c_int {
luaL_loadbufferx(L, s, sz, n, ptr::null())
}
//
// TODO: Generic Buffer Manipulation
//
+476
View File
@@ -0,0 +1,476 @@
//! Contains definitions from `lua.h`.
use std::marker::{PhantomData, PhantomPinned};
use std::os::raw::{c_char, c_double, c_int, c_uchar, c_uint, c_void};
use std::ptr;
// Mark for precompiled code (`<esc>Lua`)
pub const LUA_SIGNATURE: &[u8] = b"\x1bLua";
// Option for multiple returns in 'lua_pcall' and 'lua_call'
pub const LUA_MULTRET: c_int = -1;
// Size of the Lua stack
pub const LUAI_MAXSTACK: c_int = 1000000;
//
// Pseudo-indices
//
pub const LUA_REGISTRYINDEX: c_int = -LUAI_MAXSTACK - 1000;
pub const fn lua_upvalueindex(i: c_int) -> c_int {
LUA_REGISTRYINDEX - i
}
//
// Thread status
//
pub const LUA_OK: c_int = 0;
pub const LUA_YIELD: c_int = 1;
pub const LUA_ERRRUN: c_int = 2;
pub const LUA_ERRSYNTAX: c_int = 3;
pub const LUA_ERRMEM: c_int = 4;
pub const LUA_ERRGCMM: c_int = 5;
pub const LUA_ERRERR: c_int = 6;
/// A raw Lua state associated with a thread.
#[repr(C)]
pub struct lua_State {
_data: [u8; 0],
_marker: PhantomData<(*mut u8, PhantomPinned)>,
}
//
// Basic types
//
pub const LUA_TNONE: c_int = -1;
pub const LUA_TNIL: c_int = 0;
pub const LUA_TBOOLEAN: c_int = 1;
pub const LUA_TLIGHTUSERDATA: c_int = 2;
pub const LUA_TNUMBER: c_int = 3;
pub const LUA_TSTRING: c_int = 4;
pub const LUA_TTABLE: c_int = 5;
pub const LUA_TFUNCTION: c_int = 6;
pub const LUA_TUSERDATA: c_int = 7;
pub const LUA_TTHREAD: c_int = 8;
pub const LUA_NUMTAGS: c_int = 9;
/// Minimum Lua stack available to a C function
pub const LUA_MINSTACK: c_int = 20;
// Predefined values in the registry
pub const LUA_RIDX_MAINTHREAD: lua_Integer = 1;
pub const LUA_RIDX_GLOBALS: lua_Integer = 2;
pub const LUA_RIDX_LAST: lua_Integer = LUA_RIDX_GLOBALS;
/// A Lua number, usually equivalent to `f64`
pub type lua_Number = c_double;
/// A Lua integer, usually equivalent to `i64`
#[cfg(target_pointer_width = "32")]
pub type lua_Integer = i32;
#[cfg(target_pointer_width = "64")]
pub type lua_Integer = i64;
/// A Lua unsigned integer, equivalent to `u32` in Lua 5.2
pub type lua_Unsigned = c_uint;
/// Type for native C functions that can be passed to Lua
pub type lua_CFunction = unsafe extern "C" fn(L: *mut lua_State) -> c_int;
// Type for functions that read/write blocks when loading/dumping Lua chunks
pub type lua_Reader =
unsafe extern "C" fn(L: *mut lua_State, ud: *mut c_void, sz: *mut usize) -> *const c_char;
pub type lua_Writer =
unsafe extern "C" fn(L: *mut lua_State, p: *const c_void, sz: usize, ud: *mut c_void) -> c_int;
/// Type for memory-allocation functions
pub type lua_Alloc = unsafe extern "C" fn(
ud: *mut c_void,
ptr: *mut c_void,
osize: usize,
nsize: usize,
) -> *mut c_void;
extern "C" {
//
// State manipulation
//
pub fn lua_newstate(f: lua_Alloc, ud: *mut c_void) -> *mut lua_State;
pub fn lua_close(L: *mut lua_State);
pub fn lua_newthread(L: *mut lua_State) -> *mut lua_State;
pub fn lua_atpanic(L: *mut lua_State, panicf: lua_CFunction) -> lua_CFunction;
pub fn lua_version(L: *mut lua_State) -> *const lua_Number;
//
// Basic stack manipulation
//
pub fn lua_absindex(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_gettop(L: *mut lua_State) -> c_int;
pub fn lua_settop(L: *mut lua_State, idx: c_int);
pub fn lua_pushvalue(L: *mut lua_State, idx: c_int);
pub fn lua_remove(L: *mut lua_State, idx: c_int);
pub fn lua_insert(L: *mut lua_State, idx: c_int);
pub fn lua_replace(L: *mut lua_State, idx: c_int);
pub fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int);
pub fn lua_checkstack(L: *mut lua_State, sz: c_int) -> c_int;
pub fn lua_xmove(from: *mut lua_State, to: *mut lua_State, n: c_int);
//
// Access functions (stack -> C)
//
pub fn lua_isnumber(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isstring(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_iscfunction(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isuserdata(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_type(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_typename(L: *mut lua_State, tp: c_int) -> *const c_char;
pub fn lua_tonumberx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Number;
#[link_name = "lua_tointegerx"]
pub fn lua_tointegerx_(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Integer;
pub fn lua_tounsignedx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Unsigned;
pub fn lua_toboolean(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn lua_rawlen(L: *mut lua_State, idx: c_int) -> usize;
pub fn lua_tocfunction(L: *mut lua_State, idx: c_int) -> Option<lua_CFunction>;
pub fn lua_touserdata(L: *mut lua_State, idx: c_int) -> *mut c_void;
pub fn lua_tothread(L: *mut lua_State, idx: c_int) -> *mut lua_State;
pub fn lua_topointer(L: *mut lua_State, idx: c_int) -> *const c_void;
}
//
// Comparison and arithmetic functions
//
pub const LUA_OPADD: c_int = 0;
pub const LUA_OPSUB: c_int = 1;
pub const LUA_OPMUL: c_int = 2;
pub const LUA_OPDIV: c_int = 3;
pub const LUA_OPMOD: c_int = 4;
pub const LUA_OPPOW: c_int = 5;
pub const LUA_OPUNM: c_int = 6;
extern "C" {
pub fn lua_arith(L: *mut lua_State, op: c_int);
}
pub const LUA_OPEQ: c_int = 0;
pub const LUA_OPLT: c_int = 1;
pub const LUA_OPLE: c_int = 2;
extern "C" {
pub fn lua_rawequal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_compare(L: *mut lua_State, idx1: c_int, idx2: c_int, op: c_int) -> c_int;
}
extern "C" {
//
// Push functions (C -> stack)
//
pub fn lua_pushnil(L: *mut lua_State);
pub fn lua_pushnumber(L: *mut lua_State, n: lua_Number);
pub fn lua_pushinteger(L: *mut lua_State, n: lua_Integer);
pub fn lua_pushunsigned(L: *mut lua_State, n: lua_Unsigned);
#[link_name = "lua_pushlstring"]
pub fn lua_pushlstring_(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char;
pub fn lua_pushstring(L: *mut lua_State, s: *const c_char) -> *const c_char;
// lua_pushvfstring
pub fn lua_pushfstring(L: *mut lua_State, fmt: *const c_char, ...) -> *const c_char;
pub fn lua_pushcclosure(L: *mut lua_State, f: lua_CFunction, n: c_int);
pub fn lua_pushboolean(L: *mut lua_State, b: c_int);
pub fn lua_pushlightuserdata(L: *mut lua_State, p: *mut c_void);
pub fn lua_pushthread(L: *mut lua_State) -> c_int;
//
// Get functions (Lua -> stack)
//
#[link_name = "lua_getglobal"]
pub fn lua_getglobal_(L: *mut lua_State, name: *const c_char);
#[link_name = "lua_gettable"]
pub fn lua_gettable_(L: *mut lua_State, idx: c_int);
#[link_name = "lua_getfield"]
pub fn lua_getfield_(L: *mut lua_State, idx: c_int, k: *const c_char);
#[link_name = "lua_rawget"]
pub fn lua_rawget_(L: *mut lua_State, idx: c_int);
#[link_name = "lua_rawgeti"]
pub fn lua_rawgeti_(L: *mut lua_State, idx: c_int, n: c_int);
#[link_name = "lua_rawgetp"]
pub fn lua_rawgetp_(L: *mut lua_State, idx: c_int, p: *const c_void);
pub fn lua_createtable(L: *mut lua_State, narr: c_int, nrec: c_int);
pub fn lua_newuserdata(L: *mut lua_State, sz: usize) -> *mut c_void;
pub fn lua_getmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
#[link_name = "lua_getuservalue"]
pub fn lua_getuservalue_(L: *mut lua_State, idx: c_int);
//
// Set functions (stack -> Lua)
//
pub fn lua_setglobal(L: *mut lua_State, var: *const c_char);
pub fn lua_settable(L: *mut lua_State, idx: c_int);
pub fn lua_setfield(L: *mut lua_State, idx: c_int, k: *const c_char);
pub fn lua_rawset(L: *mut lua_State, idx: c_int);
#[link_name = "lua_rawseti"]
pub fn lua_rawseti_(L: *mut lua_State, idx: c_int, n: c_int);
pub fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void);
pub fn lua_setmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_setuservalue(L: *mut lua_State, idx: c_int);
//
// 'load' and 'call' functions (load and run Lua code)
//
pub fn lua_callk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
ctx: c_int,
k: Option<lua_CFunction>,
);
pub fn lua_pcallk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
errfunc: c_int,
ctx: c_int,
k: Option<lua_CFunction>,
) -> c_int;
pub fn lua_getctx(L: *mut lua_State, ctx: *mut c_int) -> c_int;
pub fn lua_load(
L: *mut lua_State,
reader: lua_Reader,
data: *mut c_void,
chunkname: *const c_char,
mode: *const c_char,
) -> c_int;
#[link_name = "lua_dump"]
pub fn lua_dump_(L: *mut lua_State, writer: lua_Writer, data: *mut c_void) -> c_int;
}
#[inline(always)]
pub unsafe fn lua_call(L: *mut lua_State, n: c_int, r: c_int) {
lua_callk(L, n, r, 0, None)
}
#[inline(always)]
pub unsafe fn lua_pcall(L: *mut lua_State, n: c_int, r: c_int, f: c_int) -> c_int {
lua_pcallk(L, n, r, f, 0, None)
}
extern "C" {
//
// Coroutine functions
//
pub fn lua_yieldk(
L: *mut lua_State,
nresults: c_int,
ctx: c_int,
k: Option<lua_CFunction>,
) -> c_int;
#[link_name = "lua_resume"]
pub fn lua_resume_(L: *mut lua_State, from: *mut lua_State, narg: c_int) -> c_int;
pub fn lua_status(L: *mut lua_State) -> c_int;
}
#[inline(always)]
pub unsafe fn lua_yield(L: *mut lua_State, n: c_int) -> c_int {
lua_yieldk(L, n, 0, None)
}
//
// Garbage-collection function and options
//
pub const LUA_GCSTOP: c_int = 0;
pub const LUA_GCRESTART: c_int = 1;
pub const LUA_GCCOLLECT: c_int = 2;
pub const LUA_GCCOUNT: c_int = 3;
pub const LUA_GCCOUNTB: c_int = 4;
pub const LUA_GCSTEP: c_int = 5;
pub const LUA_GCSETPAUSE: c_int = 6;
pub const LUA_GCSETSTEPMUL: c_int = 7;
pub const LUA_GCSETMAJORINC: c_int = 8;
pub const LUA_GCISRUNNING: c_int = 9;
pub const LUA_GCGEN: c_int = 10;
pub const LUA_GCINC: c_int = 11;
extern "C" {
pub fn lua_gc(L: *mut lua_State, what: c_int, data: c_int) -> c_int;
}
extern "C" {
//
// Miscellaneous functions
//
pub fn lua_error(L: *mut lua_State) -> !;
pub fn lua_next(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_concat(L: *mut lua_State, n: c_int);
pub fn lua_len(L: *mut lua_State, idx: c_int);
pub fn lua_getallocf(L: *mut lua_State, ud: *mut *mut c_void) -> lua_Alloc;
pub fn lua_setallocf(L: *mut lua_State, f: lua_Alloc, ud: *mut c_void);
}
//
// Some useful macros (implemented as Rust functions)
//
#[inline(always)]
pub unsafe fn lua_tonumber(L: *mut lua_State, i: c_int) -> lua_Number {
lua_tonumberx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_tointeger_(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx_(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_tounsigned(L: *mut lua_State, i: c_int) -> lua_Unsigned {
lua_tounsignedx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_pop(L: *mut lua_State, n: c_int) {
lua_settop(L, -n - 1)
}
#[inline(always)]
pub unsafe fn lua_newtable(L: *mut lua_State) {
lua_createtable(L, 0, 0)
}
#[inline(always)]
pub unsafe fn lua_register(L: *mut lua_State, n: *const c_char, f: lua_CFunction) {
lua_pushcfunction(L, f);
lua_setglobal(L, n)
}
#[inline(always)]
pub unsafe fn lua_pushcfunction(L: *mut lua_State, f: lua_CFunction) {
lua_pushcclosure(L, f, 0)
}
#[inline(always)]
pub unsafe fn lua_isfunction(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TFUNCTION) as c_int
}
#[inline(always)]
pub unsafe fn lua_istable(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTABLE) as c_int
}
#[inline(always)]
pub unsafe fn lua_islightuserdata(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TLIGHTUSERDATA) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_isboolean(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TBOOLEAN) as c_int
}
#[inline(always)]
pub unsafe fn lua_isthread(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTHREAD) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnone(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNONE) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnoneornil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) <= 0) as c_int
}
#[inline(always)]
pub unsafe fn lua_pushliteral(L: *mut lua_State, s: &'static str) -> *const c_char {
use std::ffi::CString;
let c_str = CString::new(s).unwrap();
lua_pushlstring_(L, c_str.as_ptr(), c_str.as_bytes().len())
}
#[inline(always)]
pub unsafe fn lua_pushglobaltable(L: *mut lua_State) {
lua_rawgeti_(L, LUA_REGISTRYINDEX, LUA_RIDX_GLOBALS as _)
}
#[inline(always)]
pub unsafe fn lua_tostring(L: *mut lua_State, i: c_int) -> *const c_char {
lua_tolstring(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_xpush(from: *mut lua_State, to: *mut lua_State, idx: c_int) {
lua_pushvalue(from, idx);
lua_xmove(from, to, 1);
}
//
// Debug API
//
// Maximum size for the description of the source of a function in debug information.
const LUA_IDSIZE: usize = 60;
// Event codes
pub const LUA_HOOKCALL: c_int = 0;
pub const LUA_HOOKRET: c_int = 1;
pub const LUA_HOOKLINE: c_int = 2;
pub const LUA_HOOKCOUNT: c_int = 3;
pub const LUA_HOOKTAILCALL: c_int = 4;
// Event masks
pub const LUA_MASKCALL: c_int = 1 << (LUA_HOOKCALL as usize);
pub const LUA_MASKRET: c_int = 1 << (LUA_HOOKRET as usize);
pub const LUA_MASKLINE: c_int = 1 << (LUA_HOOKLINE as usize);
pub const LUA_MASKCOUNT: c_int = 1 << (LUA_HOOKCOUNT as usize);
/// Type for functions to be called on debug events.
pub type lua_Hook = unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug);
extern "C" {
pub fn lua_getstack(L: *mut lua_State, level: c_int, ar: *mut lua_Debug) -> c_int;
pub fn lua_getinfo(L: *mut lua_State, what: *const c_char, ar: *mut lua_Debug) -> c_int;
pub fn lua_getlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_setlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_getupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_setupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_upvalueid(L: *mut lua_State, fidx: c_int, n: c_int) -> *mut c_void;
pub fn lua_upvaluejoin(L: *mut lua_State, fidx1: c_int, n1: c_int, fidx2: c_int, n2: c_int);
pub fn lua_sethook(L: *mut lua_State, func: Option<lua_Hook>, mask: c_int, count: c_int);
pub fn lua_gethook(L: *mut lua_State) -> Option<lua_Hook>;
pub fn lua_gethookmask(L: *mut lua_State) -> c_int;
pub fn lua_gethookcount(L: *mut lua_State) -> c_int;
}
#[repr(C)]
pub struct lua_Debug {
pub event: c_int,
pub name: *const c_char,
pub namewhat: *const c_char,
pub what: *const c_char,
pub source: *const c_char,
pub currentline: c_int,
pub linedefined: c_int,
pub lastlinedefined: c_int,
pub nups: c_uchar,
pub nparams: c_uchar,
pub isvararg: c_char,
pub istailcall: c_char,
pub short_src: [c_char; LUA_IDSIZE],
// lua.h mentions this is for private use
i_ci: *mut c_void,
}
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//! Contains definitions from `lualib.h`.
use std::os::raw::c_int;
use super::lua::lua_State;
pub const LUA_COLIBNAME: &str = "coroutine";
pub const LUA_TABLIBNAME: &str = "table";
pub const LUA_IOLIBNAME: &str = "io";
pub const LUA_OSLIBNAME: &str = "os";
pub const LUA_STRLIBNAME: &str = "string";
pub const LUA_BITLIBNAME: &str = "bit32";
pub const LUA_MATHLIBNAME: &str = "math";
pub const LUA_DBLIBNAME: &str = "debug";
pub const LUA_LOADLIBNAME: &str = "package";
extern "C" {
pub fn luaopen_base(L: *mut lua_State) -> c_int;
pub fn luaopen_coroutine(L: *mut lua_State) -> c_int;
pub fn luaopen_table(L: *mut lua_State) -> c_int;
pub fn luaopen_io(L: *mut lua_State) -> c_int;
pub fn luaopen_os(L: *mut lua_State) -> c_int;
pub fn luaopen_string(L: *mut lua_State) -> c_int;
pub fn luaopen_bit32(L: *mut lua_State) -> c_int;
pub fn luaopen_math(L: *mut lua_State) -> c_int;
pub fn luaopen_debug(L: *mut lua_State) -> c_int;
pub fn luaopen_package(L: *mut lua_State) -> c_int;
// open all builtin libraries
pub fn luaL_openlibs(L: *mut lua_State);
}
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//! Low level bindings to Lua 5.2.
pub use compat::*;
pub use lauxlib::*;
pub use lua::*;
pub use lualib::*;
pub mod compat;
pub mod lauxlib;
pub mod lua;
pub mod lualib;
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//! MLua compatibility layer for Lua 5.2
use std::os::raw::c_int;
use super::lua::*;
#[inline(always)]
pub unsafe fn lua_resume(
L: *mut lua_State,
from: *mut lua_State,
narg: c_int,
nres: *mut c_int,
) -> c_int {
let ret = lua_resume_(L, from, narg);
if (ret == LUA_OK || ret == LUA_YIELD) && !(nres.is_null()) {
*nres = lua_gettop(L);
}
ret
}
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//! Contains definitions from `lauxlib.h`.
use std::os::raw::{c_char, c_int, c_void};
use std::ptr;
use super::lua::{self, lua_CFunction, lua_Integer, lua_Number, lua_State};
// Extra error code for 'luaL_loadfilex'
pub const LUA_ERRFILE: c_int = lua::LUA_ERRERR + 1;
// Key, in the registry, for table of loaded modules
pub const LUA_LOADED_TABLE: &str = "_LOADED";
// Key, in the registry, for table of preloaded loaders
pub const LUA_PRELOAD_TABLE: &str = "_PRELOAD";
#[repr(C)]
pub struct luaL_Reg {
pub name: *const c_char,
pub func: lua_CFunction,
}
extern "C" {
pub fn luaL_checkversion_(L: *mut lua_State, ver: lua_Number, sz: usize);
pub fn luaL_getmetafield(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_callmeta(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn luaL_argerror(L: *mut lua_State, arg: c_int, extramsg: *const c_char) -> c_int;
pub fn luaL_checklstring(L: *mut lua_State, arg: c_int, l: *mut usize) -> *const c_char;
pub fn luaL_optlstring(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
l: *mut usize,
) -> *const c_char;
pub fn luaL_checknumber(L: *mut lua_State, arg: c_int) -> lua_Number;
pub fn luaL_optnumber(L: *mut lua_State, arg: c_int, def: lua_Number) -> lua_Number;
pub fn luaL_checkinteger(L: *mut lua_State, arg: c_int) -> lua_Integer;
pub fn luaL_optinteger(L: *mut lua_State, arg: c_int, def: lua_Integer) -> lua_Integer;
pub fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char);
pub fn luaL_checktype(L: *mut lua_State, arg: c_int, t: c_int);
pub fn luaL_checkany(L: *mut lua_State, arg: c_int);
pub fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_int;
pub fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char);
pub fn luaL_testudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_checkudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_where(L: *mut lua_State, lvl: c_int);
pub fn luaL_error(L: *mut lua_State, fmt: *const c_char, ...) -> !;
pub fn luaL_checkoption(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
lst: *const *const c_char,
) -> c_int;
pub fn luaL_fileresult(L: *mut lua_State, stat: c_int, fname: *const c_char) -> c_int;
pub fn luaL_execresult(L: *mut lua_State, stat: c_int) -> c_int;
}
// Pre-defined references
pub const LUA_NOREF: c_int = -2;
pub const LUA_REFNIL: c_int = -1;
extern "C" {
pub fn luaL_ref(L: *mut lua_State, t: c_int) -> c_int;
pub fn luaL_unref(L: *mut lua_State, t: c_int, r#ref: c_int);
pub fn luaL_loadfilex(L: *mut lua_State, filename: *const c_char, mode: *const c_char)
-> c_int;
}
#[inline(always)]
pub unsafe fn luaL_loadfile(L: *mut lua_State, f: *const c_char) -> c_int {
luaL_loadfilex(L, f, ptr::null())
}
extern "C" {
pub fn luaL_loadbufferx(
L: *mut lua_State,
buff: *const c_char,
sz: usize,
name: *const c_char,
mode: *const c_char,
) -> c_int;
pub fn luaL_loadstring(L: *mut lua_State, s: *const c_char) -> c_int;
pub fn luaL_newstate() -> *mut lua_State;
pub fn luaL_len(L: *mut lua_State, idx: c_int) -> lua_Integer;
pub fn luaL_gsub(
L: *mut lua_State,
s: *const c_char,
p: *const c_char,
r: *const c_char,
) -> *const c_char;
pub fn luaL_setfuncs(L: *mut lua_State, l: *const luaL_Reg, nup: c_int);
pub fn luaL_getsubtable(L: *mut lua_State, idx: c_int, fname: *const c_char) -> c_int;
pub fn luaL_traceback(L: *mut lua_State, L1: *mut lua_State, msg: *const c_char, level: c_int);
pub fn luaL_requiref(
L: *mut lua_State,
modname: *const c_char,
openf: lua_CFunction,
glb: c_int,
);
}
//
// Some useful macros (implemented as Rust functions)
//
// TODO: luaL_newlibtable, luaL_newlib
#[inline(always)]
pub unsafe fn luaL_argcheck(L: *mut lua_State, cond: c_int, arg: c_int, extramsg: *const c_char) {
if cond == 0 {
luaL_argerror(L, arg, extramsg);
}
}
#[inline(always)]
pub unsafe fn luaL_checkstring(L: *mut lua_State, n: c_int) -> *const c_char {
luaL_checklstring(L, n, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_optstring(L: *mut lua_State, n: c_int, d: *const c_char) -> *const c_char {
luaL_optlstring(L, n, d, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_typename(L: *mut lua_State, i: c_int) -> *const c_char {
lua::lua_typename(L, lua::lua_type(L, i))
}
#[inline(always)]
pub unsafe fn luaL_dofile(L: *mut lua_State, filename: *const c_char) -> c_int {
let status = luaL_loadfile(L, filename);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_dostring(L: *mut lua_State, s: *const c_char) -> c_int {
let status = luaL_loadstring(L, s);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_getmetatable(L: *mut lua_State, n: *const c_char) {
lua::lua_getfield(L, lua::LUA_REGISTRYINDEX, n);
}
// luaL_opt would be implemented here but it is undocumented, so it's omitted
#[inline(always)]
pub unsafe fn luaL_loadbuffer(
L: *mut lua_State,
s: *const c_char,
sz: usize,
n: *const c_char,
) -> c_int {
luaL_loadbufferx(L, s, sz, n, ptr::null())
}
//
// TODO: Generic Buffer Manipulation
//
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//! Contains definitions from `lua.h`.
use std::marker::{PhantomData, PhantomPinned};
use std::mem;
use std::os::raw::{c_char, c_double, c_int, c_uchar, c_void};
use std::ptr;
// Mark for precompiled code (`<esc>Lua`)
pub const LUA_SIGNATURE: &[u8] = b"\x1bLua";
// Option for multiple returns in 'lua_pcall' and 'lua_call'
pub const LUA_MULTRET: c_int = -1;
// Size of the Lua stack
pub const LUAI_MAXSTACK: c_int = 1000000;
// Size of a raw memory area associated with a Lua state with very fast access.
pub const LUA_EXTRASPACE: usize = mem::size_of::<*const ()>();
//
// Pseudo-indices
//
pub const LUA_REGISTRYINDEX: c_int = -LUAI_MAXSTACK - 1000;
pub const fn lua_upvalueindex(i: c_int) -> c_int {
LUA_REGISTRYINDEX - i
}
//
// Thread status
//
pub const LUA_OK: c_int = 0;
pub const LUA_YIELD: c_int = 1;
pub const LUA_ERRRUN: c_int = 2;
pub const LUA_ERRSYNTAX: c_int = 3;
pub const LUA_ERRMEM: c_int = 4;
pub const LUA_ERRGCMM: c_int = 5;
pub const LUA_ERRERR: c_int = 6;
/// A raw Lua state associated with a thread.
#[repr(C)]
pub struct lua_State {
_data: [u8; 0],
_marker: PhantomData<(*mut u8, PhantomPinned)>,
}
//
// Basic types
//
pub const LUA_TNONE: c_int = -1;
pub const LUA_TNIL: c_int = 0;
pub const LUA_TBOOLEAN: c_int = 1;
pub const LUA_TLIGHTUSERDATA: c_int = 2;
pub const LUA_TNUMBER: c_int = 3;
pub const LUA_TSTRING: c_int = 4;
pub const LUA_TTABLE: c_int = 5;
pub const LUA_TFUNCTION: c_int = 6;
pub const LUA_TUSERDATA: c_int = 7;
pub const LUA_TTHREAD: c_int = 8;
pub const LUA_NUMTAGS: c_int = 9;
/// Minimum Lua stack available to a C function
pub const LUA_MINSTACK: c_int = 20;
// Predefined values in the registry
pub const LUA_RIDX_MAINTHREAD: lua_Integer = 1;
pub const LUA_RIDX_GLOBALS: lua_Integer = 2;
pub const LUA_RIDX_LAST: lua_Integer = LUA_RIDX_GLOBALS;
/// A Lua number, usually equivalent to `f64`
pub type lua_Number = c_double;
/// A Lua integer, usually equivalent to `i64`
pub type lua_Integer = i64;
/// A Lua unsigned integer, usually equivalent to `u64`
pub type lua_Unsigned = u64;
/// Type for continuation-function contexts
pub type lua_KContext = isize;
/// Type for native C functions that can be passed to Lua
pub type lua_CFunction = unsafe extern "C" fn(L: *mut lua_State) -> c_int;
/// Type for continuation functions
pub type lua_KFunction =
unsafe extern "C" fn(L: *mut lua_State, status: c_int, ctx: lua_KContext) -> c_int;
// Type for functions that read/write blocks when loading/dumping Lua chunks
pub type lua_Reader =
unsafe extern "C" fn(L: *mut lua_State, ud: *mut c_void, sz: *mut usize) -> *const c_char;
pub type lua_Writer =
unsafe extern "C" fn(L: *mut lua_State, p: *const c_void, sz: usize, ud: *mut c_void) -> c_int;
/// Type for memory-allocation functions
pub type lua_Alloc = unsafe extern "C" fn(
ud: *mut c_void,
ptr: *mut c_void,
osize: usize,
nsize: usize,
) -> *mut c_void;
extern "C" {
//
// State manipulation
//
pub fn lua_newstate(f: lua_Alloc, ud: *mut c_void) -> *mut lua_State;
pub fn lua_close(L: *mut lua_State);
pub fn lua_newthread(L: *mut lua_State) -> *mut lua_State;
pub fn lua_atpanic(L: *mut lua_State, panicf: lua_CFunction) -> lua_CFunction;
pub fn lua_version(L: *mut lua_State) -> *const lua_Number;
//
// Basic stack manipulation
//
pub fn lua_absindex(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_gettop(L: *mut lua_State) -> c_int;
pub fn lua_settop(L: *mut lua_State, idx: c_int);
pub fn lua_pushvalue(L: *mut lua_State, idx: c_int);
pub fn lua_rotate(L: *mut lua_State, idx: c_int, n: c_int);
pub fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int);
pub fn lua_checkstack(L: *mut lua_State, sz: c_int) -> c_int;
pub fn lua_xmove(from: *mut lua_State, to: *mut lua_State, n: c_int);
//
// Access functions (stack -> C)
//
pub fn lua_isnumber(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isstring(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_iscfunction(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isinteger(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isuserdata(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_type(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_typename(L: *mut lua_State, tp: c_int) -> *const c_char;
pub fn lua_tonumberx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Number;
pub fn lua_tointegerx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Integer;
pub fn lua_toboolean(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn lua_rawlen(L: *mut lua_State, idx: c_int) -> usize;
pub fn lua_tocfunction(L: *mut lua_State, idx: c_int) -> Option<lua_CFunction>;
pub fn lua_touserdata(L: *mut lua_State, idx: c_int) -> *mut c_void;
pub fn lua_tothread(L: *mut lua_State, idx: c_int) -> *mut lua_State;
pub fn lua_topointer(L: *mut lua_State, idx: c_int) -> *const c_void;
}
//
// Comparison and arithmetic functions
//
pub const LUA_OPADD: c_int = 0;
pub const LUA_OPSUB: c_int = 1;
pub const LUA_OPMUL: c_int = 2;
pub const LUA_OPMOD: c_int = 3;
pub const LUA_OPPOW: c_int = 4;
pub const LUA_OPDIV: c_int = 5;
pub const LUA_OPIDIV: c_int = 6;
pub const LUA_OPBAND: c_int = 7;
pub const LUA_OPBOR: c_int = 8;
pub const LUA_OPBXOR: c_int = 9;
pub const LUA_OPSHL: c_int = 10;
pub const LUA_OPSHR: c_int = 11;
pub const LUA_OPUNM: c_int = 12;
pub const LUA_OPBNOT: c_int = 13;
extern "C" {
pub fn lua_arith(L: *mut lua_State, op: c_int);
}
pub const LUA_OPEQ: c_int = 0;
pub const LUA_OPLT: c_int = 1;
pub const LUA_OPLE: c_int = 2;
extern "C" {
pub fn lua_rawequal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_compare(L: *mut lua_State, idx1: c_int, idx2: c_int, op: c_int) -> c_int;
}
extern "C" {
//
// Push functions (C -> stack)
//
pub fn lua_pushnil(L: *mut lua_State);
pub fn lua_pushnumber(L: *mut lua_State, n: lua_Number);
pub fn lua_pushinteger(L: *mut lua_State, n: lua_Integer);
pub fn lua_pushlstring(L: *mut lua_State, s: *const c_char, len: usize) -> *const c_char;
pub fn lua_pushstring(L: *mut lua_State, s: *const c_char) -> *const c_char;
// lua_pushvfstring
pub fn lua_pushfstring(L: *mut lua_State, fmt: *const c_char, ...) -> *const c_char;
pub fn lua_pushcclosure(L: *mut lua_State, f: lua_CFunction, n: c_int);
pub fn lua_pushboolean(L: *mut lua_State, b: c_int);
pub fn lua_pushlightuserdata(L: *mut lua_State, p: *mut c_void);
pub fn lua_pushthread(L: *mut lua_State) -> c_int;
//
// Get functions (Lua -> stack)
//
pub fn lua_getglobal(L: *mut lua_State, name: *const c_char) -> c_int;
pub fn lua_gettable(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int;
pub fn lua_geti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int;
pub fn lua_rawget(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_rawgeti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int;
pub fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int;
pub fn lua_createtable(L: *mut lua_State, narr: c_int, nrec: c_int);
pub fn lua_newuserdata(L: *mut lua_State, sz: usize) -> *mut c_void;
pub fn lua_getmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int;
//
// Set functions (stack -> Lua)
//
pub fn lua_setglobal(L: *mut lua_State, name: *const c_char);
pub fn lua_settable(L: *mut lua_State, idx: c_int);
pub fn lua_setfield(L: *mut lua_State, idx: c_int, k: *const c_char);
pub fn lua_seti(L: *mut lua_State, idx: c_int, n: lua_Integer);
pub fn lua_rawset(L: *mut lua_State, idx: c_int);
pub fn lua_rawseti(L: *mut lua_State, idx: c_int, n: lua_Integer);
pub fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void);
pub fn lua_setmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_setuservalue(L: *mut lua_State, idx: c_int);
//
// 'load' and 'call' functions (load and run Lua code)
//
pub fn lua_callk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
);
pub fn lua_pcallk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
errfunc: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
) -> c_int;
pub fn lua_load(
L: *mut lua_State,
reader: lua_Reader,
data: *mut c_void,
chunkname: *const c_char,
mode: *const c_char,
) -> c_int;
pub fn lua_dump(
L: *mut lua_State,
writer: lua_Writer,
data: *mut c_void,
strip: c_int,
) -> c_int;
}
#[inline(always)]
pub unsafe fn lua_call(L: *mut lua_State, n: c_int, r: c_int) {
lua_callk(L, n, r, 0, None)
}
#[inline(always)]
pub unsafe fn lua_pcall(L: *mut lua_State, n: c_int, r: c_int, f: c_int) -> c_int {
lua_pcallk(L, n, r, f, 0, None)
}
extern "C" {
//
// Coroutine functions
//
pub fn lua_yieldk(
L: *mut lua_State,
nresults: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
) -> c_int;
#[link_name = "lua_resume"]
pub fn lua_resume_(L: *mut lua_State, from: *mut lua_State, narg: c_int) -> c_int;
pub fn lua_status(L: *mut lua_State) -> c_int;
pub fn lua_isyieldable(L: *mut lua_State) -> c_int;
}
#[inline(always)]
pub unsafe fn lua_yield(L: *mut lua_State, n: c_int) -> c_int {
lua_yieldk(L, n, 0, None)
}
//
// Garbage-collection function and options
//
pub const LUA_GCSTOP: c_int = 0;
pub const LUA_GCRESTART: c_int = 1;
pub const LUA_GCCOLLECT: c_int = 2;
pub const LUA_GCCOUNT: c_int = 3;
pub const LUA_GCCOUNTB: c_int = 4;
pub const LUA_GCSTEP: c_int = 5;
pub const LUA_GCSETPAUSE: c_int = 6;
pub const LUA_GCSETSTEPMUL: c_int = 7;
pub const LUA_GCISRUNNING: c_int = 9;
extern "C" {
pub fn lua_gc(L: *mut lua_State, what: c_int, data: c_int) -> c_int;
}
extern "C" {
//
// Miscellaneous functions
//
pub fn lua_error(L: *mut lua_State) -> !;
pub fn lua_next(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_concat(L: *mut lua_State, n: c_int);
pub fn lua_len(L: *mut lua_State, idx: c_int);
pub fn lua_stringtonumber(L: *mut lua_State, s: *const c_char) -> usize;
pub fn lua_getallocf(L: *mut lua_State, ud: *mut *mut c_void) -> lua_Alloc;
pub fn lua_setallocf(L: *mut lua_State, f: lua_Alloc, ud: *mut c_void);
}
//
// Some useful macros (implemented as Rust functions)
//
#[inline(always)]
pub unsafe fn lua_getextraspace(L: *mut lua_State) -> *mut c_void {
(L as *mut c_char).sub(LUA_EXTRASPACE) as *mut c_void
}
#[inline(always)]
pub unsafe fn lua_tonumber(L: *mut lua_State, i: c_int) -> lua_Number {
lua_tonumberx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_tointeger(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_pop(L: *mut lua_State, n: c_int) {
lua_settop(L, -n - 1)
}
#[inline(always)]
pub unsafe fn lua_newtable(L: *mut lua_State) {
lua_createtable(L, 0, 0)
}
#[inline(always)]
pub unsafe fn lua_register(L: *mut lua_State, n: *const c_char, f: lua_CFunction) {
lua_pushcfunction(L, f);
lua_setglobal(L, n)
}
#[inline(always)]
pub unsafe fn lua_pushcfunction(L: *mut lua_State, f: lua_CFunction) {
lua_pushcclosure(L, f, 0)
}
#[inline(always)]
pub unsafe fn lua_isfunction(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TFUNCTION) as c_int
}
#[inline(always)]
pub unsafe fn lua_istable(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTABLE) as c_int
}
#[inline(always)]
pub unsafe fn lua_islightuserdata(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TLIGHTUSERDATA) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_isboolean(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TBOOLEAN) as c_int
}
#[inline(always)]
pub unsafe fn lua_isthread(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTHREAD) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnone(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNONE) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnoneornil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) <= 0) as c_int
}
#[inline(always)]
pub unsafe fn lua_pushliteral(L: *mut lua_State, s: &'static str) -> *const c_char {
use std::ffi::CString;
let c_str = CString::new(s).unwrap();
lua_pushlstring(L, c_str.as_ptr(), c_str.as_bytes().len())
}
#[inline(always)]
pub unsafe fn lua_pushglobaltable(L: *mut lua_State) -> c_int {
lua_rawgeti(L, LUA_REGISTRYINDEX, LUA_RIDX_GLOBALS)
}
#[inline(always)]
pub unsafe fn lua_tostring(L: *mut lua_State, i: c_int) -> *const c_char {
lua_tolstring(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_insert(L: *mut lua_State, idx: c_int) {
lua_rotate(L, idx, 1)
}
#[inline(always)]
pub unsafe fn lua_remove(L: *mut lua_State, idx: c_int) {
lua_rotate(L, idx, -1);
lua_pop(L, 1)
}
#[inline(always)]
pub unsafe fn lua_replace(L: *mut lua_State, idx: c_int) {
lua_copy(L, -1, idx);
lua_pop(L, 1)
}
#[inline(always)]
pub unsafe fn lua_xpush(from: *mut lua_State, to: *mut lua_State, idx: c_int) {
lua_pushvalue(from, idx);
lua_xmove(from, to, 1);
}
//
// Debug API
//
// Maximum size for the description of the source of a function in debug information.
const LUA_IDSIZE: usize = 60;
// Event codes
pub const LUA_HOOKCALL: c_int = 0;
pub const LUA_HOOKRET: c_int = 1;
pub const LUA_HOOKLINE: c_int = 2;
pub const LUA_HOOKCOUNT: c_int = 3;
pub const LUA_HOOKTAILCALL: c_int = 4;
// Event masks
pub const LUA_MASKCALL: c_int = 1 << (LUA_HOOKCALL as usize);
pub const LUA_MASKRET: c_int = 1 << (LUA_HOOKRET as usize);
pub const LUA_MASKLINE: c_int = 1 << (LUA_HOOKLINE as usize);
pub const LUA_MASKCOUNT: c_int = 1 << (LUA_HOOKCOUNT as usize);
/// Type for functions to be called on debug events.
pub type lua_Hook = unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug);
extern "C" {
pub fn lua_getstack(L: *mut lua_State, level: c_int, ar: *mut lua_Debug) -> c_int;
pub fn lua_getinfo(L: *mut lua_State, what: *const c_char, ar: *mut lua_Debug) -> c_int;
pub fn lua_getlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_setlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_getupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_setupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_upvalueid(L: *mut lua_State, fidx: c_int, n: c_int) -> *mut c_void;
pub fn lua_upvaluejoin(L: *mut lua_State, fidx1: c_int, n1: c_int, fidx2: c_int, n2: c_int);
pub fn lua_sethook(L: *mut lua_State, func: Option<lua_Hook>, mask: c_int, count: c_int);
pub fn lua_gethook(L: *mut lua_State) -> Option<lua_Hook>;
pub fn lua_gethookmask(L: *mut lua_State) -> c_int;
pub fn lua_gethookcount(L: *mut lua_State) -> c_int;
}
#[repr(C)]
pub struct lua_Debug {
pub event: c_int,
pub name: *const c_char,
pub namewhat: *const c_char,
pub what: *const c_char,
pub source: *const c_char,
pub currentline: c_int,
pub linedefined: c_int,
pub lastlinedefined: c_int,
pub nups: c_uchar,
pub nparams: c_uchar,
pub isvararg: c_char,
pub istailcall: c_char,
pub short_src: [c_char; LUA_IDSIZE],
// lua.h mentions this is for private use
i_ci: *mut c_void,
}
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//! Contains definitions from `lualib.h`.
use std::os::raw::c_int;
use super::lua::lua_State;
pub const LUA_COLIBNAME: &str = "coroutine";
pub const LUA_TABLIBNAME: &str = "table";
pub const LUA_IOLIBNAME: &str = "io";
pub const LUA_OSLIBNAME: &str = "os";
pub const LUA_STRLIBNAME: &str = "string";
pub const LUA_UTF8LIBNAME: &str = "utf8";
pub const LUA_BITLIBNAME: &str = "bit32";
pub const LUA_MATHLIBNAME: &str = "math";
pub const LUA_DBLIBNAME: &str = "debug";
pub const LUA_LOADLIBNAME: &str = "package";
extern "C" {
pub fn luaopen_base(L: *mut lua_State) -> c_int;
pub fn luaopen_coroutine(L: *mut lua_State) -> c_int;
pub fn luaopen_table(L: *mut lua_State) -> c_int;
pub fn luaopen_io(L: *mut lua_State) -> c_int;
pub fn luaopen_os(L: *mut lua_State) -> c_int;
pub fn luaopen_string(L: *mut lua_State) -> c_int;
pub fn luaopen_utf8(L: *mut lua_State) -> c_int;
pub fn luaopen_bit32(L: *mut lua_State) -> c_int;
pub fn luaopen_math(L: *mut lua_State) -> c_int;
pub fn luaopen_debug(L: *mut lua_State) -> c_int;
pub fn luaopen_package(L: *mut lua_State) -> c_int;
// open all builtin libraries
pub fn luaL_openlibs(L: *mut lua_State);
}
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//! Low level bindings to Lua 5.3.
pub use compat::*;
pub use lauxlib::*;
pub use lua::*;
pub use lualib::*;
pub mod compat;
pub mod lauxlib;
pub mod lua;
pub mod lualib;
+186
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//! Contains definitions from `lauxlib.h`.
use std::os::raw::{c_char, c_int, c_void};
use std::ptr;
use super::lua::{self, lua_CFunction, lua_Integer, lua_Number, lua_State};
// Extra error code for 'luaL_loadfilex'
pub const LUA_ERRFILE: c_int = lua::LUA_ERRERR + 1;
// Key, in the registry, for table of loaded modules
pub const LUA_LOADED_TABLE: &str = "_LOADED";
// Key, in the registry, for table of preloaded loaders
pub const LUA_PRELOAD_TABLE: &str = "_PRELOAD";
#[repr(C)]
pub struct luaL_Reg {
pub name: *const c_char,
pub func: lua_CFunction,
}
extern "C" {
pub fn luaL_checkversion_(L: *mut lua_State, ver: lua_Number, sz: usize);
pub fn luaL_getmetafield(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_callmeta(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn luaL_argerror(L: *mut lua_State, arg: c_int, extramsg: *const c_char) -> c_int;
pub fn luaL_checklstring(L: *mut lua_State, arg: c_int, l: *mut usize) -> *const c_char;
pub fn luaL_optlstring(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
l: *mut usize,
) -> *const c_char;
pub fn luaL_checknumber(L: *mut lua_State, arg: c_int) -> lua_Number;
pub fn luaL_optnumber(L: *mut lua_State, arg: c_int, def: lua_Number) -> lua_Number;
pub fn luaL_checkinteger(L: *mut lua_State, arg: c_int) -> lua_Integer;
pub fn luaL_optinteger(L: *mut lua_State, arg: c_int, def: lua_Integer) -> lua_Integer;
pub fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char);
pub fn luaL_checktype(L: *mut lua_State, arg: c_int, t: c_int);
pub fn luaL_checkany(L: *mut lua_State, arg: c_int);
pub fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_int;
pub fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char);
pub fn luaL_testudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_checkudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_where(L: *mut lua_State, lvl: c_int);
pub fn luaL_error(L: *mut lua_State, fmt: *const c_char, ...) -> !;
pub fn luaL_checkoption(
L: *mut lua_State,
arg: c_int,
def: *const c_char,
lst: *const *const c_char,
) -> c_int;
pub fn luaL_fileresult(L: *mut lua_State, stat: c_int, fname: *const c_char) -> c_int;
pub fn luaL_execresult(L: *mut lua_State, stat: c_int) -> c_int;
}
// Pre-defined references
pub const LUA_NOREF: c_int = -2;
pub const LUA_REFNIL: c_int = -1;
extern "C" {
pub fn luaL_ref(L: *mut lua_State, t: c_int) -> c_int;
pub fn luaL_unref(L: *mut lua_State, t: c_int, r#ref: c_int);
pub fn luaL_loadfilex(L: *mut lua_State, filename: *const c_char, mode: *const c_char)
-> c_int;
}
#[inline(always)]
pub unsafe fn luaL_loadfile(L: *mut lua_State, f: *const c_char) -> c_int {
luaL_loadfilex(L, f, ptr::null())
}
extern "C" {
pub fn luaL_loadbufferx(
L: *mut lua_State,
buff: *const c_char,
sz: usize,
name: *const c_char,
mode: *const c_char,
) -> c_int;
pub fn luaL_loadstring(L: *mut lua_State, s: *const c_char) -> c_int;
pub fn luaL_newstate() -> *mut lua_State;
pub fn luaL_len(L: *mut lua_State, idx: c_int) -> lua_Integer;
// TODO: luaL_addgsub
pub fn luaL_gsub(
L: *mut lua_State,
s: *const c_char,
p: *const c_char,
r: *const c_char,
) -> *const c_char;
pub fn luaL_setfuncs(L: *mut lua_State, l: *const luaL_Reg, nup: c_int);
pub fn luaL_getsubtable(L: *mut lua_State, idx: c_int, fname: *const c_char) -> c_int;
pub fn luaL_traceback(L: *mut lua_State, L1: *mut lua_State, msg: *const c_char, level: c_int);
pub fn luaL_requiref(
L: *mut lua_State,
modname: *const c_char,
openf: lua_CFunction,
glb: c_int,
);
}
//
// Some useful macros (implemented as Rust functions)
//
// TODO: luaL_newlibtable, luaL_newlib
#[inline(always)]
pub unsafe fn luaL_argcheck(L: *mut lua_State, cond: c_int, arg: c_int, extramsg: *const c_char) {
if cond == 0 {
luaL_argerror(L, arg, extramsg);
}
}
#[inline(always)]
pub unsafe fn luaL_checkstring(L: *mut lua_State, n: c_int) -> *const c_char {
luaL_checklstring(L, n, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_optstring(L: *mut lua_State, n: c_int, d: *const c_char) -> *const c_char {
luaL_optlstring(L, n, d, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_typename(L: *mut lua_State, i: c_int) -> *const c_char {
lua::lua_typename(L, lua::lua_type(L, i))
}
#[inline(always)]
pub unsafe fn luaL_dofile(L: *mut lua_State, filename: *const c_char) -> c_int {
let status = luaL_loadfile(L, filename);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_dostring(L: *mut lua_State, s: *const c_char) -> c_int {
let status = luaL_loadstring(L, s);
if status == 0 {
lua::lua_pcall(L, 0, lua::LUA_MULTRET, 0)
} else {
status
}
}
#[inline(always)]
pub unsafe fn luaL_getmetatable(L: *mut lua_State, n: *const c_char) {
lua::lua_getfield(L, lua::LUA_REGISTRYINDEX, n);
}
// luaL_opt would be implemented here but it is undocumented, so it's omitted
#[inline(always)]
pub unsafe fn luaL_loadbuffer(
L: *mut lua_State,
s: *const c_char,
sz: usize,
n: *const c_char,
) -> c_int {
luaL_loadbufferx(L, s, sz, n, ptr::null())
}
//
// TODO: Generic Buffer Manipulation
//
+539
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//! Contains definitions from `lua.h`.
use std::marker::{PhantomData, PhantomPinned};
use std::mem;
use std::os::raw::{c_char, c_double, c_int, c_uchar, c_ushort, c_void};
use std::ptr;
// Mark for precompiled code (`<esc>Lua`)
pub const LUA_SIGNATURE: &[u8] = b"\x1bLua";
// Option for multiple returns in 'lua_pcall' and 'lua_call'
pub const LUA_MULTRET: c_int = -1;
// Size of the Lua stack
pub const LUAI_MAXSTACK: c_int = 1000000;
// Size of a raw memory area associated with a Lua state with very fast access.
pub const LUA_EXTRASPACE: usize = mem::size_of::<*const ()>();
//
// Pseudo-indices
//
pub const LUA_REGISTRYINDEX: c_int = -LUAI_MAXSTACK - 1000;
pub const fn lua_upvalueindex(i: c_int) -> c_int {
LUA_REGISTRYINDEX - i
}
//
// Thread status
//
pub const LUA_OK: c_int = 0;
pub const LUA_YIELD: c_int = 1;
pub const LUA_ERRRUN: c_int = 2;
pub const LUA_ERRSYNTAX: c_int = 3;
pub const LUA_ERRMEM: c_int = 4;
pub const LUA_ERRERR: c_int = 5;
/// A raw Lua state associated with a thread.
#[repr(C)]
pub struct lua_State {
_data: [u8; 0],
_marker: PhantomData<(*mut u8, PhantomPinned)>,
}
//
// Basic types
//
pub const LUA_TNONE: c_int = -1;
pub const LUA_TNIL: c_int = 0;
pub const LUA_TBOOLEAN: c_int = 1;
pub const LUA_TLIGHTUSERDATA: c_int = 2;
pub const LUA_TNUMBER: c_int = 3;
pub const LUA_TSTRING: c_int = 4;
pub const LUA_TTABLE: c_int = 5;
pub const LUA_TFUNCTION: c_int = 6;
pub const LUA_TUSERDATA: c_int = 7;
pub const LUA_TTHREAD: c_int = 8;
pub const LUA_NUMTYPES: c_int = 9;
/// Minimum Lua stack available to a C function
pub const LUA_MINSTACK: c_int = 20;
// Predefined values in the registry
pub const LUA_RIDX_MAINTHREAD: lua_Integer = 1;
pub const LUA_RIDX_GLOBALS: lua_Integer = 2;
pub const LUA_RIDX_LAST: lua_Integer = LUA_RIDX_GLOBALS;
/// A Lua number, usually equivalent to `f64`
pub type lua_Number = c_double;
/// A Lua integer, usually equivalent to `i64`
pub type lua_Integer = i64;
/// A Lua unsigned integer, usually equivalent to `u64`
pub type lua_Unsigned = u64;
/// Type for continuation-function contexts
pub type lua_KContext = isize;
/// Type for native C functions that can be passed to Lua
pub type lua_CFunction = unsafe extern "C" fn(L: *mut lua_State) -> c_int;
/// Type for continuation functions
pub type lua_KFunction =
unsafe extern "C" fn(L: *mut lua_State, status: c_int, ctx: lua_KContext) -> c_int;
// Type for functions that read/write blocks when loading/dumping Lua chunks
pub type lua_Reader =
unsafe extern "C" fn(L: *mut lua_State, ud: *mut c_void, sz: *mut usize) -> *const c_char;
pub type lua_Writer =
unsafe extern "C" fn(L: *mut lua_State, p: *const c_void, sz: usize, ud: *mut c_void) -> c_int;
/// Type for memory-allocation functions
pub type lua_Alloc = unsafe extern "C" fn(
ud: *mut c_void,
ptr: *mut c_void,
osize: usize,
nsize: usize,
) -> *mut c_void;
/// Type for warning functions
pub type lua_WarnFunction =
unsafe extern "C" fn(ud: *mut c_void, msg: *const c_char, tocont: c_int);
extern "C" {
//
// State manipulation
//
pub fn lua_newstate(f: lua_Alloc, ud: *mut c_void) -> *mut lua_State;
pub fn lua_close(L: *mut lua_State);
pub fn lua_newthread(L: *mut lua_State) -> *mut lua_State;
pub fn lua_resetthread(L: *mut lua_State) -> c_int;
pub fn lua_atpanic(L: *mut lua_State, panicf: lua_CFunction) -> lua_CFunction;
pub fn lua_version(L: *mut lua_State) -> lua_Number;
//
// Basic stack manipulation
//
pub fn lua_absindex(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_gettop(L: *mut lua_State) -> c_int;
pub fn lua_settop(L: *mut lua_State, idx: c_int);
pub fn lua_pushvalue(L: *mut lua_State, idx: c_int);
pub fn lua_rotate(L: *mut lua_State, idx: c_int, n: c_int);
pub fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int);
pub fn lua_checkstack(L: *mut lua_State, sz: c_int) -> c_int;
pub fn lua_xmove(from: *mut lua_State, to: *mut lua_State, n: c_int);
//
// Access functions (stack -> C)
//
pub fn lua_isnumber(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isstring(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_iscfunction(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isinteger(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isuserdata(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_type(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_typename(L: *mut lua_State, tp: c_int) -> *const c_char;
pub fn lua_tonumberx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Number;
pub fn lua_tointegerx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Integer;
pub fn lua_toboolean(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn lua_rawlen(L: *mut lua_State, idx: c_int) -> usize;
pub fn lua_tocfunction(L: *mut lua_State, idx: c_int) -> Option<lua_CFunction>;
pub fn lua_touserdata(L: *mut lua_State, idx: c_int) -> *mut c_void;
pub fn lua_tothread(L: *mut lua_State, idx: c_int) -> *mut lua_State;
pub fn lua_topointer(L: *mut lua_State, idx: c_int) -> *const c_void;
}
//
// Comparison and arithmetic functions
//
pub const LUA_OPADD: c_int = 0;
pub const LUA_OPSUB: c_int = 1;
pub const LUA_OPMUL: c_int = 2;
pub const LUA_OPMOD: c_int = 3;
pub const LUA_OPPOW: c_int = 4;
pub const LUA_OPDIV: c_int = 5;
pub const LUA_OPIDIV: c_int = 6;
pub const LUA_OPBAND: c_int = 7;
pub const LUA_OPBOR: c_int = 8;
pub const LUA_OPBXOR: c_int = 9;
pub const LUA_OPSHL: c_int = 10;
pub const LUA_OPSHR: c_int = 11;
pub const LUA_OPUNM: c_int = 12;
pub const LUA_OPBNOT: c_int = 13;
extern "C" {
pub fn lua_arith(L: *mut lua_State, op: c_int);
}
pub const LUA_OPEQ: c_int = 0;
pub const LUA_OPLT: c_int = 1;
pub const LUA_OPLE: c_int = 2;
extern "C" {
pub fn lua_rawequal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_compare(L: *mut lua_State, idx1: c_int, idx2: c_int, op: c_int) -> c_int;
}
extern "C" {
//
// Push functions (C -> stack)
//
pub fn lua_pushnil(L: *mut lua_State);
pub fn lua_pushnumber(L: *mut lua_State, n: lua_Number);
pub fn lua_pushinteger(L: *mut lua_State, n: lua_Integer);
pub fn lua_pushlstring(L: *mut lua_State, s: *const c_char, len: usize) -> *const c_char;
pub fn lua_pushstring(L: *mut lua_State, s: *const c_char) -> *const c_char;
// lua_pushvfstring
pub fn lua_pushfstring(L: *mut lua_State, fmt: *const c_char, ...) -> *const c_char;
pub fn lua_pushcclosure(L: *mut lua_State, f: lua_CFunction, n: c_int);
pub fn lua_pushboolean(L: *mut lua_State, b: c_int);
pub fn lua_pushlightuserdata(L: *mut lua_State, p: *mut c_void);
pub fn lua_pushthread(L: *mut lua_State) -> c_int;
//
// Get functions (Lua -> stack)
//
pub fn lua_getglobal(L: *mut lua_State, name: *const c_char) -> c_int;
pub fn lua_gettable(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int;
pub fn lua_geti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int;
pub fn lua_rawget(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_rawgeti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int;
pub fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int;
pub fn lua_createtable(L: *mut lua_State, narr: c_int, nrec: c_int);
pub fn lua_newuserdatauv(L: *mut lua_State, sz: usize, nuvalue: c_int) -> *mut c_void;
pub fn lua_getmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_getiuservalue(L: *mut lua_State, idx: c_int, n: c_int) -> c_int;
//
// Set functions (stack -> Lua)
//
pub fn lua_setglobal(L: *mut lua_State, name: *const c_char);
pub fn lua_settable(L: *mut lua_State, idx: c_int);
pub fn lua_setfield(L: *mut lua_State, idx: c_int, k: *const c_char);
pub fn lua_seti(L: *mut lua_State, idx: c_int, n: lua_Integer);
pub fn lua_rawset(L: *mut lua_State, idx: c_int);
pub fn lua_rawseti(L: *mut lua_State, idx: c_int, n: lua_Integer);
pub fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void);
pub fn lua_setmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_setiuservalue(L: *mut lua_State, idx: c_int, n: c_int) -> c_int;
//
// 'load' and 'call' functions (load and run Lua code)
//
pub fn lua_callk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
);
pub fn lua_pcallk(
L: *mut lua_State,
nargs: c_int,
nresults: c_int,
errfunc: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
) -> c_int;
pub fn lua_load(
L: *mut lua_State,
reader: lua_Reader,
data: *mut c_void,
chunkname: *const c_char,
mode: *const c_char,
) -> c_int;
pub fn lua_dump(
L: *mut lua_State,
writer: lua_Writer,
data: *mut c_void,
strip: c_int,
) -> c_int;
}
#[inline(always)]
pub unsafe fn lua_call(L: *mut lua_State, n: c_int, r: c_int) {
lua_callk(L, n, r, 0, None)
}
#[inline(always)]
pub unsafe fn lua_pcall(L: *mut lua_State, n: c_int, r: c_int, f: c_int) -> c_int {
lua_pcallk(L, n, r, f, 0, None)
}
extern "C" {
//
// Coroutine functions
//
pub fn lua_yieldk(
L: *mut lua_State,
nresults: c_int,
ctx: lua_KContext,
k: Option<lua_KFunction>,
) -> c_int;
pub fn lua_resume(
L: *mut lua_State,
from: *mut lua_State,
narg: c_int,
nres: *mut c_int,
) -> c_int;
pub fn lua_status(L: *mut lua_State) -> c_int;
pub fn lua_isyieldable(L: *mut lua_State) -> c_int;
}
#[inline(always)]
pub unsafe fn lua_yield(L: *mut lua_State, n: c_int) -> c_int {
lua_yieldk(L, n, 0, None)
}
//
// Warning-related functions
//
extern "C" {
pub fn lua_setwarnf(L: *mut lua_State, f: Option<lua_WarnFunction>, ud: *mut c_void);
pub fn lua_warning(L: *mut lua_State, msg: *const c_char, tocont: c_int);
}
//
// Garbage-collection function and options
//
pub const LUA_GCSTOP: c_int = 0;
pub const LUA_GCRESTART: c_int = 1;
pub const LUA_GCCOLLECT: c_int = 2;
pub const LUA_GCCOUNT: c_int = 3;
pub const LUA_GCCOUNTB: c_int = 4;
pub const LUA_GCSTEP: c_int = 5;
pub const LUA_GCSETPAUSE: c_int = 6;
pub const LUA_GCSETSTEPMUL: c_int = 7;
pub const LUA_GCISRUNNING: c_int = 9;
pub const LUA_GCGEN: c_int = 10;
pub const LUA_GCINC: c_int = 11;
extern "C" {
pub fn lua_gc(L: *mut lua_State, what: c_int, ...) -> c_int;
}
extern "C" {
//
// Miscellaneous functions
//
pub fn lua_error(L: *mut lua_State) -> !;
pub fn lua_next(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_concat(L: *mut lua_State, n: c_int);
pub fn lua_len(L: *mut lua_State, idx: c_int);
pub fn lua_stringtonumber(L: *mut lua_State, s: *const c_char) -> usize;
pub fn lua_getallocf(L: *mut lua_State, ud: *mut *mut c_void) -> lua_Alloc;
pub fn lua_setallocf(L: *mut lua_State, f: lua_Alloc, ud: *mut c_void);
pub fn lua_toclose(L: *mut lua_State, idx: c_int);
pub fn lua_closeslot(L: *mut lua_State, idx: c_int);
}
//
// Some useful macros (implemented as Rust functions)
//
#[inline(always)]
pub unsafe fn lua_getextraspace(L: *mut lua_State) -> *mut c_void {
(L as *mut c_char).sub(LUA_EXTRASPACE) as *mut c_void
}
#[inline(always)]
pub unsafe fn lua_tonumber(L: *mut lua_State, i: c_int) -> lua_Number {
lua_tonumberx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_tointeger(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_pop(L: *mut lua_State, n: c_int) {
lua_settop(L, -n - 1)
}
#[inline(always)]
pub unsafe fn lua_newtable(L: *mut lua_State) {
lua_createtable(L, 0, 0)
}
#[inline(always)]
pub unsafe fn lua_register(L: *mut lua_State, n: *const c_char, f: lua_CFunction) {
lua_pushcfunction(L, f);
lua_setglobal(L, n)
}
#[inline(always)]
pub unsafe fn lua_pushcfunction(L: *mut lua_State, f: lua_CFunction) {
lua_pushcclosure(L, f, 0)
}
#[inline(always)]
pub unsafe fn lua_isfunction(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TFUNCTION) as c_int
}
#[inline(always)]
pub unsafe fn lua_istable(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTABLE) as c_int
}
#[inline(always)]
pub unsafe fn lua_islightuserdata(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TLIGHTUSERDATA) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_isboolean(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TBOOLEAN) as c_int
}
#[inline(always)]
pub unsafe fn lua_isthread(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTHREAD) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnone(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNONE) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnoneornil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) <= 0) as c_int
}
#[inline(always)]
pub unsafe fn lua_pushliteral(L: *mut lua_State, s: &'static str) -> *const c_char {
use std::ffi::CString;
let c_str = CString::new(s).unwrap();
lua_pushlstring(L, c_str.as_ptr(), c_str.as_bytes().len())
}
#[inline(always)]
pub unsafe fn lua_pushglobaltable(L: *mut lua_State) -> c_int {
lua_rawgeti(L, LUA_REGISTRYINDEX, LUA_RIDX_GLOBALS)
}
#[inline(always)]
pub unsafe fn lua_tostring(L: *mut lua_State, i: c_int) -> *const c_char {
lua_tolstring(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_insert(L: *mut lua_State, idx: c_int) {
lua_rotate(L, idx, 1)
}
#[inline(always)]
pub unsafe fn lua_remove(L: *mut lua_State, idx: c_int) {
lua_rotate(L, idx, -1);
lua_pop(L, 1)
}
#[inline(always)]
pub unsafe fn lua_replace(L: *mut lua_State, idx: c_int) {
lua_copy(L, -1, idx);
lua_pop(L, 1)
}
#[inline(always)]
pub unsafe fn lua_xpush(from: *mut lua_State, to: *mut lua_State, idx: c_int) {
lua_pushvalue(from, idx);
lua_xmove(from, to, 1);
}
#[inline(always)]
pub unsafe fn lua_newuserdata(L: *mut lua_State, sz: usize) -> *mut c_void {
lua_newuserdatauv(L, sz, 1)
}
#[inline(always)]
pub unsafe fn lua_getuservalue(L: *mut lua_State, idx: c_int) -> c_int {
lua_getiuservalue(L, idx, 1)
}
#[inline(always)]
pub unsafe fn lua_setuservalue(L: *mut lua_State, idx: c_int) -> c_int {
lua_setiuservalue(L, idx, 1)
}
//
// Debug API
//
// Maximum size for the description of the source of a function in debug information.
const LUA_IDSIZE: usize = 60;
// Event codes
pub const LUA_HOOKCALL: c_int = 0;
pub const LUA_HOOKRET: c_int = 1;
pub const LUA_HOOKLINE: c_int = 2;
pub const LUA_HOOKCOUNT: c_int = 3;
pub const LUA_HOOKTAILCALL: c_int = 4;
// Event masks
pub const LUA_MASKCALL: c_int = 1 << (LUA_HOOKCALL as usize);
pub const LUA_MASKRET: c_int = 1 << (LUA_HOOKRET as usize);
pub const LUA_MASKLINE: c_int = 1 << (LUA_HOOKLINE as usize);
pub const LUA_MASKCOUNT: c_int = 1 << (LUA_HOOKCOUNT as usize);
/// Type for functions to be called on debug events.
pub type lua_Hook = unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug);
extern "C" {
pub fn lua_getstack(L: *mut lua_State, level: c_int, ar: *mut lua_Debug) -> c_int;
pub fn lua_getinfo(L: *mut lua_State, what: *const c_char, ar: *mut lua_Debug) -> c_int;
pub fn lua_getlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_setlocal(L: *mut lua_State, ar: *const lua_Debug, n: c_int) -> *const c_char;
pub fn lua_getupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_setupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_upvalueid(L: *mut lua_State, fidx: c_int, n: c_int) -> *mut c_void;
pub fn lua_upvaluejoin(L: *mut lua_State, fidx1: c_int, n1: c_int, fidx2: c_int, n2: c_int);
pub fn lua_sethook(L: *mut lua_State, func: Option<lua_Hook>, mask: c_int, count: c_int);
pub fn lua_gethook(L: *mut lua_State) -> Option<lua_Hook>;
pub fn lua_gethookmask(L: *mut lua_State) -> c_int;
pub fn lua_gethookcount(L: *mut lua_State) -> c_int;
}
#[repr(C)]
pub struct lua_Debug {
pub event: c_int,
pub name: *const c_char,
pub namewhat: *const c_char,
pub what: *const c_char,
pub source: *const c_char,
pub srclen: usize,
pub currentline: c_int,
pub linedefined: c_int,
pub lastlinedefined: c_int,
pub nups: c_uchar,
pub nparams: c_uchar,
pub isvararg: c_char,
pub istailcall: c_char,
pub ftransfer: c_ushort,
pub ntransfer: c_ushort,
pub short_src: [c_char; LUA_IDSIZE],
// lua.h mentions this is for private use
i_ci: *mut c_void,
}
+31
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@@ -0,0 +1,31 @@
//! Contains definitions from `lualib.h`.
use std::os::raw::c_int;
use super::lua::lua_State;
pub const LUA_COLIBNAME: &str = "coroutine";
pub const LUA_TABLIBNAME: &str = "table";
pub const LUA_IOLIBNAME: &str = "io";
pub const LUA_OSLIBNAME: &str = "os";
pub const LUA_STRLIBNAME: &str = "string";
pub const LUA_UTF8LIBNAME: &str = "utf8";
pub const LUA_MATHLIBNAME: &str = "math";
pub const LUA_DBLIBNAME: &str = "debug";
pub const LUA_LOADLIBNAME: &str = "package";
extern "C" {
pub fn luaopen_base(L: *mut lua_State) -> c_int;
pub fn luaopen_coroutine(L: *mut lua_State) -> c_int;
pub fn luaopen_table(L: *mut lua_State) -> c_int;
pub fn luaopen_io(L: *mut lua_State) -> c_int;
pub fn luaopen_os(L: *mut lua_State) -> c_int;
pub fn luaopen_string(L: *mut lua_State) -> c_int;
pub fn luaopen_utf8(L: *mut lua_State) -> c_int;
pub fn luaopen_math(L: *mut lua_State) -> c_int;
pub fn luaopen_debug(L: *mut lua_State) -> c_int;
pub fn luaopen_package(L: *mut lua_State) -> c_int;
// open all builtin libraries
pub fn luaL_openlibs(L: *mut lua_State);
}
+9
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@@ -0,0 +1,9 @@
//! Low level bindings to Lua 5.4.
pub use lauxlib::*;
pub use lua::*;
pub use lualib::*;
pub mod lauxlib;
pub mod lua;
pub mod lualib;
-36
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@@ -1,36 +0,0 @@
// The MIT License (MIT)
//
// Copyright (c) 2019-2021 A. Orlenko
// Copyright (c) 2014 J.C. Moyer
//
// 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.
//! Contains definitions from `luaconf.h`.
pub use super::glue::LUA_INTEGER;
pub use super::glue::LUA_NUMBER;
pub use super::glue::LUA_UNSIGNED;
pub use super::glue::LUA_IDSIZE;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use super::glue::LUAL_NUMSIZES;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub type LUA_KCONTEXT = isize; // intptr_t
-67
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@@ -1,67 +0,0 @@
// The MIT License (MIT)
//
// Copyright (c) 2019-2021 A. Orlenko
// Copyright (c) 2014 J.C. Moyer
//
// 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.
//! Contains definitions from `lualib.h`.
use std::os::raw::c_int;
use super::lua::lua_State;
pub use super::glue::{
LUA_COLIBNAME, LUA_DBLIBNAME, LUA_IOLIBNAME, LUA_LOADLIBNAME, LUA_MATHLIBNAME, LUA_OSLIBNAME,
LUA_STRLIBNAME, LUA_TABLIBNAME,
};
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use super::glue::LUA_UTF8LIBNAME;
#[cfg(any(feature = "lua52", feature = "luajit"))]
pub use super::glue::LUA_BITLIBNAME;
#[cfg(feature = "luajit")]
pub use super::glue::{LUA_FFILIBNAME, LUA_JITLIBNAME};
extern "C" {
pub fn luaopen_base(L: *mut lua_State) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub fn luaopen_coroutine(L: *mut lua_State) -> c_int;
pub fn luaopen_table(L: *mut lua_State) -> c_int;
pub fn luaopen_io(L: *mut lua_State) -> c_int;
pub fn luaopen_os(L: *mut lua_State) -> c_int;
pub fn luaopen_string(L: *mut lua_State) -> c_int;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub fn luaopen_utf8(L: *mut lua_State) -> c_int;
#[cfg(feature = "lua52")]
pub fn luaopen_bit32(L: *mut lua_State) -> c_int;
pub fn luaopen_math(L: *mut lua_State) -> c_int;
pub fn luaopen_debug(L: *mut lua_State) -> c_int;
pub fn luaopen_package(L: *mut lua_State) -> c_int;
#[cfg(feature = "luajit")]
pub fn luaopen_bit(L: *mut lua_State) -> c_int;
#[cfg(feature = "luajit")]
pub fn luaopen_jit(L: *mut lua_State) -> c_int;
#[cfg(feature = "luajit")]
pub fn luaopen_ffi(L: *mut lua_State) -> c_int;
pub fn luaL_openlibs(L: *mut lua_State);
}
+521
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@@ -0,0 +1,521 @@
//! MLua compatibility layer for Roblox Luau.
//!
//! Based on github.com/keplerproject/lua-compat-5.3
use std::ffi::CStr;
use std::mem;
use std::os::raw::{c_char, c_int, c_void};
use std::ptr;
use super::lauxlib::*;
use super::lua::*;
use super::luacode::*;
unsafe fn compat53_reverse(L: *mut lua_State, mut a: c_int, mut b: c_int) {
while a < b {
lua_pushvalue(L, a);
lua_pushvalue(L, b);
lua_replace(L, a);
lua_replace(L, b);
a += 1;
b -= 1;
}
}
const COMPAT53_LEVELS1: c_int = 12; // size of the first part of the stack
const COMPAT53_LEVELS2: c_int = 10; // size of the second part of the stack
unsafe fn compat53_findfield(L: *mut lua_State, objidx: c_int, level: c_int) -> c_int {
if level == 0 || lua_istable(L, -1) == 0 {
return 0; // not found
}
lua_pushnil(L); // start 'next' loop
while lua_next(L, -2) != 0 {
// for each pair in table
if lua_type(L, -2) == LUA_TSTRING {
// ignore non-string keys
if lua_rawequal(L, objidx, -1) != 0 {
// found object?
lua_pop(L, 1); // remove value (but keep name)
return 1;
} else if compat53_findfield(L, objidx, level - 1) != 0 {
// try recursively
lua_remove(L, -2); // remove table (but keep name)
lua_pushliteral(L, ".");
lua_insert(L, -2); // place '.' between the two names
lua_concat(L, 3);
return 1;
}
}
lua_pop(L, 1); // remove value
}
0 // not found
}
unsafe fn compat53_pushglobalfuncname(
L: *mut lua_State,
level: c_int,
ar: *mut lua_Debug,
) -> c_int {
let top = lua_gettop(L);
// push function
lua_getinfo(L, level, cstr!("f"), ar);
lua_pushvalue(L, LUA_GLOBALSINDEX);
if compat53_findfield(L, top + 1, 2) != 0 {
lua_copy(L, -1, top + 1); // move name to proper place
lua_pop(L, 2); // remove pushed values
1
} else {
lua_settop(L, top); // remove function and global table
0
}
}
unsafe fn compat53_pushfuncname(L: *mut lua_State, level: c_int, ar: *mut lua_Debug) {
if !(*ar).name.is_null() {
// is there a name?
lua_pushfstring(L, cstr!("function '%s'"), (*ar).name);
} else if compat53_pushglobalfuncname(L, level, ar) != 0 {
lua_pushfstring(L, cstr!("function '%s'"), lua_tostring(L, -1));
lua_remove(L, -2); // remove name
} else {
lua_pushliteral(L, "?");
}
}
//
// lua ported functions
//
pub unsafe fn lua_rotate(L: *mut lua_State, mut idx: c_int, mut n: c_int) {
idx = lua_absindex(L, idx);
if n > 0 {
// Faster version
for _ in 0..n {
lua_insert(L, idx);
}
return;
}
let n_elems = lua_gettop(L) - idx + 1;
if n < 0 {
n += n_elems;
}
if n > 0 && n < n_elems {
luaL_checkstack(L, 2, cstr!("not enough stack slots available"));
n = n_elems - n;
compat53_reverse(L, idx, idx + n - 1);
compat53_reverse(L, idx + n, idx + n_elems - 1);
compat53_reverse(L, idx, idx + n_elems - 1);
}
}
#[inline(always)]
pub unsafe fn lua_copy(L: *mut lua_State, fromidx: c_int, toidx: c_int) {
let abs_to = lua_absindex(L, toidx);
luaL_checkstack(L, 1, cstr!("not enough stack slots"));
lua_pushvalue(L, fromidx);
lua_replace(L, abs_to);
}
#[inline(always)]
pub unsafe fn lua_isinteger(L: *mut lua_State, idx: c_int) -> c_int {
if lua_type(L, idx) == LUA_TNUMBER {
let n = lua_tonumber(L, idx);
let i = lua_tointeger(L, idx);
if (n - i as lua_Number).abs() < lua_Number::EPSILON {
return 1;
}
}
0
}
#[inline(always)]
pub unsafe fn lua_tointeger(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx(L, i, ptr::null_mut())
}
pub unsafe fn lua_tointegerx(L: *mut lua_State, i: c_int, isnum: *mut c_int) -> lua_Integer {
let mut ok = 0;
let n = lua_tonumberx(L, i, &mut ok);
let n_int = n as lua_Integer;
if ok != 0 && (n - n_int as lua_Number).abs() < lua_Number::EPSILON {
if !isnum.is_null() {
*isnum = 1;
}
return n_int;
}
if !isnum.is_null() {
*isnum = 0;
}
0
}
#[inline(always)]
pub unsafe fn lua_rawlen(L: *mut lua_State, idx: c_int) -> usize {
lua_objlen(L, idx)
}
#[inline(always)]
pub unsafe fn lua_pushlstring(L: *mut lua_State, s: *const c_char, l: usize) -> *const c_char {
if l == 0 {
lua_pushlstring_(L, cstr!(""), 0);
} else {
lua_pushlstring_(L, s, l);
}
lua_tostring(L, -1)
}
#[inline(always)]
pub unsafe fn lua_pushstring(L: *mut lua_State, s: *const c_char) -> *const c_char {
lua_pushstring_(L, s);
lua_tostring(L, -1)
}
#[inline(always)]
pub unsafe fn lua_geti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) -> c_int {
idx = lua_absindex(L, idx);
lua_pushinteger(L, n);
lua_gettable(L, idx)
}
#[inline(always)]
pub unsafe fn lua_rawgeti(L: *mut lua_State, idx: c_int, n: lua_Integer) -> c_int {
lua_rawgeti_(L, idx, n)
}
#[inline(always)]
pub unsafe fn lua_rawgetp(L: *mut lua_State, idx: c_int, p: *const c_void) -> c_int {
let abs_i = lua_absindex(L, idx);
lua_pushlightuserdata(L, p as *mut c_void);
lua_rawget(L, abs_i)
}
#[inline(always)]
pub unsafe fn lua_getuservalue(L: *mut lua_State, mut idx: c_int) -> c_int {
luaL_checkstack(L, 2, cstr!("not enough stack slots available"));
idx = lua_absindex(L, idx);
lua_pushliteral(L, "__mlua_uservalues");
if lua_rawget(L, LUA_REGISTRYINDEX) != LUA_TTABLE {
return LUA_TNIL;
}
lua_pushvalue(L, idx);
lua_rawget(L, -2);
lua_remove(L, -2);
lua_type(L, -1)
}
#[inline(always)]
pub unsafe fn lua_seti(L: *mut lua_State, mut idx: c_int, n: lua_Integer) {
luaL_checkstack(L, 1, cstr!("not enough stack slots available"));
idx = lua_absindex(L, idx);
lua_pushinteger(L, n);
lua_insert(L, -2);
lua_settable(L, idx);
}
#[inline(always)]
pub unsafe fn lua_rawseti(L: *mut lua_State, idx: c_int, n: lua_Integer) {
lua_rawseti_(L, idx, n)
}
#[inline(always)]
pub unsafe fn lua_rawsetp(L: *mut lua_State, idx: c_int, p: *const c_void) {
let abs_i = lua_absindex(L, idx);
luaL_checkstack(L, 1, cstr!("not enough stack slots"));
lua_pushlightuserdata(L, p as *mut c_void);
lua_insert(L, -2);
lua_rawset(L, abs_i);
}
#[inline(always)]
pub unsafe fn lua_setuservalue(L: *mut lua_State, mut idx: c_int) {
luaL_checkstack(L, 4, cstr!("not enough stack slots available"));
idx = lua_absindex(L, idx);
lua_pushliteral(L, "__mlua_uservalues");
lua_pushvalue(L, -1);
if lua_rawget(L, LUA_REGISTRYINDEX) != LUA_TTABLE {
lua_pop(L, 1);
lua_createtable(L, 0, 2); // main table
lua_createtable(L, 0, 1); // metatable
lua_pushliteral(L, "k");
lua_setfield(L, -2, cstr!("__mode"));
lua_setmetatable(L, -2);
lua_pushvalue(L, -2);
lua_pushvalue(L, -2);
lua_rawset(L, LUA_REGISTRYINDEX);
}
lua_replace(L, -2);
lua_pushvalue(L, idx);
lua_pushvalue(L, -3);
lua_remove(L, -4);
lua_rawset(L, -3);
lua_pop(L, 1);
}
#[inline(always)]
pub unsafe fn lua_len(L: *mut lua_State, idx: c_int) {
match lua_type(L, idx) {
LUA_TSTRING => {
lua_pushnumber(L, lua_objlen(L, idx) as lua_Number);
}
LUA_TTABLE => {
if luaL_callmeta(L, idx, cstr!("__len")) == 0 {
lua_pushnumber(L, lua_objlen(L, idx) as lua_Number);
}
}
LUA_TUSERDATA if luaL_callmeta(L, idx, cstr!("__len")) != 0 => {}
_ => {
luaL_error(
L,
cstr!("attempt to get length of a %s value"),
lua_typename(L, lua_type(L, idx)),
);
}
}
}
#[inline(always)]
pub unsafe fn lua_pushglobaltable(L: *mut lua_State) {
lua_pushvalue(L, LUA_GLOBALSINDEX);
}
#[inline(always)]
pub unsafe fn lua_resume(
L: *mut lua_State,
from: *mut lua_State,
narg: c_int,
nres: *mut c_int,
) -> c_int {
let ret = lua_resume_(L, from, narg);
if (ret == LUA_OK || ret == LUA_YIELD) && !(nres.is_null()) {
*nres = lua_gettop(L);
}
ret
}
//
// lauxlib ported functions
//
#[inline(always)]
pub unsafe fn luaL_checkstack(L: *mut lua_State, sz: c_int, msg: *const c_char) {
if lua_checkstack(L, sz + LUA_MINSTACK) == 0 {
if !msg.is_null() {
luaL_error(L, cstr!("stack overflow (%s)"), msg);
} else {
lua_pushliteral(L, "stack overflow");
lua_error(L);
}
}
}
#[inline(always)]
pub unsafe fn luaL_getmetafield(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int {
if luaL_getmetafield_(L, obj, e) != 0 {
lua_type(L, -1)
} else {
LUA_TNIL
}
}
#[inline(always)]
pub unsafe fn luaL_newmetatable(L: *mut lua_State, tname: *const c_char) -> c_int {
if luaL_newmetatable_(L, tname) != 0 {
lua_pushstring(L, tname);
lua_setfield(L, -2, cstr!("__name"));
1
} else {
0
}
}
pub unsafe fn luaL_loadbufferx(
L: *mut lua_State,
data: *const c_char,
mut size: usize,
name: *const c_char,
mode: *const c_char,
) -> c_int {
extern "C" {
fn free(p: *mut c_void);
}
let chunk_is_text = size == 0 || (*data as u8) >= b'\n';
if !mode.is_null() {
let modeb = CStr::from_ptr(mode).to_bytes();
if !chunk_is_text && !modeb.contains(&b'b') {
lua_pushfstring(
L,
cstr!("attempt to load a binary chunk (mode is '%s')"),
mode,
);
return LUA_ERRSYNTAX;
} else if chunk_is_text && !modeb.contains(&b't') {
lua_pushfstring(
L,
cstr!("attempt to load a text chunk (mode is '%s')"),
mode,
);
return LUA_ERRSYNTAX;
}
}
if chunk_is_text {
let data = luau_compile_(data, size, ptr::null_mut(), &mut size);
let ok = luau_load(L, name, data, size, 0) == 0;
free(data as *mut c_void);
if !ok {
return LUA_ERRSYNTAX;
}
} else if luau_load(L, name, data, size, 0) != 0 {
return LUA_ERRSYNTAX;
}
LUA_OK
}
#[inline(always)]
pub unsafe fn luaL_loadbuffer(
L: *mut lua_State,
data: *const c_char,
size: usize,
name: *const c_char,
) -> c_int {
luaL_loadbufferx(L, data, size, name, ptr::null())
}
#[inline(always)]
pub unsafe fn luaL_len(L: *mut lua_State, idx: c_int) -> lua_Integer {
let mut isnum = 0;
luaL_checkstack(L, 1, cstr!("not enough stack slots"));
lua_len(L, idx);
let res = lua_tointegerx(L, -1, &mut isnum);
lua_pop(L, 1);
if isnum == 0 {
luaL_error(L, cstr!("object length is not an integer"));
}
res
}
pub unsafe fn luaL_traceback(
L: *mut lua_State,
L1: *mut lua_State,
msg: *const c_char,
mut level: c_int,
) {
let mut ar: lua_Debug = mem::zeroed();
let top = lua_gettop(L);
let numlevels = lua_stackdepth(L);
let mark = if numlevels > COMPAT53_LEVELS1 + COMPAT53_LEVELS2 {
COMPAT53_LEVELS1
} else {
0
};
if !msg.is_null() {
lua_pushfstring(L, cstr!("%s\n"), msg);
}
lua_pushliteral(L, "stack traceback:");
while lua_getinfo(L1, level, cstr!(""), &mut ar) != 0 {
if level + 1 == mark {
// too many levels?
lua_pushliteral(L, "\n\t..."); // add a '...'
level = numlevels - COMPAT53_LEVELS2; // and skip to last ones
} else {
lua_getinfo(L1, level, cstr!("sln"), &mut ar);
lua_pushfstring(L, cstr!("\n\t%s:"), ar.short_src);
if ar.currentline > 0 {
lua_pushfstring(L, cstr!("%d:"), ar.currentline);
}
lua_pushliteral(L, " in ");
compat53_pushfuncname(L, level, &mut ar);
lua_concat(L, lua_gettop(L) - top);
}
level += 1;
}
lua_concat(L, lua_gettop(L) - top);
}
pub unsafe fn luaL_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char {
if luaL_callmeta(L, idx, cstr!("__tostring")) == 0 {
let t = lua_type(L, idx);
match t {
LUA_TNIL => {
lua_pushliteral(L, "nil");
}
LUA_TSTRING | LUA_TNUMBER => {
lua_pushvalue(L, idx);
}
LUA_TBOOLEAN => {
if lua_toboolean(L, idx) == 0 {
lua_pushliteral(L, "false");
} else {
lua_pushliteral(L, "true");
}
}
_ => {
let tt = luaL_getmetafield(L, idx, cstr!("__name"));
let name = if tt == LUA_TSTRING {
lua_tostring(L, -1)
} else {
lua_typename(L, t)
};
lua_pushfstring(L, cstr!("%s: %p"), name, lua_topointer(L, idx));
if tt != LUA_TNIL {
lua_replace(L, -2);
}
}
};
} else if lua_isstring(L, -1) == 0 {
luaL_error(L, cstr!("'__tostring' must return a string"));
}
lua_tolstring(L, -1, len)
}
#[inline(always)]
pub unsafe fn luaL_setmetatable(L: *mut lua_State, tname: *const c_char) {
luaL_checkstack(L, 1, cstr!("not enough stack slots"));
luaL_getmetatable(L, tname);
lua_setmetatable(L, -2);
}
pub unsafe fn luaL_getsubtable(L: *mut lua_State, idx: c_int, fname: *const c_char) -> c_int {
let abs_i = lua_absindex(L, idx);
luaL_checkstack(L, 3, cstr!("not enough stack slots"));
lua_pushstring_(L, fname);
if lua_gettable(L, abs_i) == LUA_TTABLE {
return 1;
}
lua_pop(L, 1);
lua_newtable(L);
lua_pushstring_(L, fname);
lua_pushvalue(L, -2);
lua_settable(L, abs_i);
0
}
pub unsafe fn luaL_requiref(
L: *mut lua_State,
modname: *const c_char,
openf: lua_CFunction,
glb: c_int,
) {
luaL_checkstack(L, 3, cstr!("not enough stack slots available"));
luaL_getsubtable(L, LUA_REGISTRYINDEX, cstr!("_LOADED"));
if lua_getfield(L, -1, modname) == LUA_TNIL {
lua_pop(L, 1);
lua_pushcfunction(L, openf);
lua_pushstring(L, modname);
lua_call(L, 1, 1);
lua_pushvalue(L, -1);
lua_setfield(L, -3, modname);
}
if glb != 0 {
lua_pushvalue(L, -1);
lua_setglobal(L, modname);
} else {
lua_pushnil(L);
lua_setglobal(L, modname);
}
lua_replace(L, -2);
}
+156
View File
@@ -0,0 +1,156 @@
//! Contains definitions from `lualib.h`.
use std::os::raw::{c_char, c_float, c_int, c_void};
use std::ptr;
use super::lua::{
self, lua_CFunction, lua_Integer, lua_Number, lua_State, lua_Unsigned, LUA_REGISTRYINDEX,
};
#[repr(C)]
pub struct luaL_Reg {
pub name: *const c_char,
pub func: lua_CFunction,
}
extern "C" {
pub fn luaL_register(L: *mut lua_State, libname: *const c_char, l: *const luaL_Reg);
#[link_name = "luaL_getmetafield"]
pub fn luaL_getmetafield_(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
pub fn luaL_callmeta(L: *mut lua_State, obj: c_int, e: *const c_char) -> c_int;
#[link_name = "luaL_typeerrorL"]
pub fn luaL_typeerror(L: *mut lua_State, narg: c_int, tname: *const c_char) -> !;
#[link_name = "luaL_argerrorL"]
pub fn luaL_argerror(L: *mut lua_State, narg: c_int, extramsg: *const c_char) -> !;
pub fn luaL_checklstring(L: *mut lua_State, narg: c_int, l: *mut usize) -> *const c_char;
pub fn luaL_optlstring(
L: *mut lua_State,
narg: c_int,
def: *const c_char,
l: *mut usize,
) -> *const c_char;
pub fn luaL_checknumber(L: *mut lua_State, narg: c_int) -> lua_Number;
pub fn luaL_optnumber(L: *mut lua_State, narg: c_int, def: lua_Number) -> lua_Number;
pub fn luaL_checkboolean(L: *mut lua_State, narg: c_int) -> c_int;
pub fn luaL_optboolean(L: *mut lua_State, narg: c_int, def: c_int) -> c_int;
pub fn luaL_checkinteger(L: *mut lua_State, narg: c_int) -> lua_Integer;
pub fn luaL_optinteger(L: *mut lua_State, narg: c_int, def: lua_Integer) -> lua_Integer;
pub fn luaL_checkunsigned(L: *mut lua_State, narg: c_int) -> lua_Unsigned;
pub fn luaL_optunsigned(L: *mut lua_State, narg: c_int, def: lua_Unsigned) -> lua_Unsigned;
pub fn luaL_checkvector(L: *mut lua_State, narg: c_int) -> *const c_float;
pub fn luaL_optvector(L: *mut lua_State, narg: c_int, def: *const c_float) -> *const c_float;
#[link_name = "luaL_checkstack"]
pub fn luaL_checkstack_(L: *mut lua_State, sz: c_int, msg: *const c_char);
pub fn luaL_checktype(L: *mut lua_State, narg: c_int, t: c_int);
pub fn luaL_checkany(L: *mut lua_State, narg: c_int);
#[link_name = "luaL_newmetatable"]
pub fn luaL_newmetatable_(L: *mut lua_State, tname: *const c_char) -> c_int;
pub fn luaL_checkudata(L: *mut lua_State, ud: c_int, tname: *const c_char) -> *mut c_void;
pub fn luaL_where(L: *mut lua_State, lvl: c_int);
#[link_name = "luaL_errorL"]
pub fn luaL_error(L: *mut lua_State, fmt: *const c_char, ...) -> !;
pub fn luaL_checkoption(
L: *mut lua_State,
narg: c_int,
def: *const c_char,
lst: *const *const c_char,
) -> c_int;
#[link_name = "luaL_tolstring"]
pub fn luaL_tolstring_(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn luaL_newstate() -> *mut lua_State;
// TODO: luaL_findtable
pub fn luaL_typename(L: *mut lua_State, idx: c_int) -> *const c_char;
// sandbox libraries and globals
#[link_name = "luaL_sandbox"]
pub fn luaL_sandbox_(L: *mut lua_State);
pub fn luaL_sandboxthread(L: *mut lua_State);
}
//
// Some useful macros (implemented as Rust functions)
//
#[inline(always)]
pub unsafe fn luaL_argcheck(L: *mut lua_State, cond: c_int, arg: c_int, extramsg: *const c_char) {
if cond == 0 {
luaL_argerror(L, arg, extramsg);
}
}
#[inline(always)]
pub unsafe fn luaL_argexpected(L: *mut lua_State, cond: c_int, arg: c_int, tname: *const c_char) {
if cond == 0 {
luaL_typeerror(L, arg, tname);
}
}
#[inline(always)]
pub unsafe fn luaL_checkstring(L: *mut lua_State, n: c_int) -> *const c_char {
luaL_checklstring(L, n, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn luaL_optstring(L: *mut lua_State, n: c_int, d: *const c_char) -> *const c_char {
luaL_optlstring(L, n, d, ptr::null_mut())
}
// TODO: luaL_opt
#[inline(always)]
pub unsafe fn luaL_getmetatable(L: *mut lua_State, n: *const c_char) -> c_int {
lua::lua_getfield(L, LUA_REGISTRYINDEX, n)
}
#[inline(always)]
pub unsafe fn luaL_ref(L: *mut lua_State, t: c_int) -> c_int {
assert_eq!(t, LUA_REGISTRYINDEX);
let r = lua::lua_ref(L, -1);
lua::lua_pop(L, 1);
r
}
#[inline(always)]
pub unsafe fn luaL_unref(L: *mut lua_State, t: c_int, r#ref: c_int) {
assert_eq!(t, LUA_REGISTRYINDEX);
lua::lua_unref(L, r#ref)
}
pub unsafe fn luaL_sandbox(L: *mut lua_State, enabled: c_int) {
use super::lua::*;
// set all libraries to read-only
lua_pushnil(L);
while lua_next(L, LUA_GLOBALSINDEX) != 0 {
if lua_istable(L, -1) != 0 {
lua_setreadonly(L, -1, enabled);
}
lua_pop(L, 1);
}
// set all builtin metatables to read-only
lua_pushliteral(L, "");
lua_getmetatable(L, -1);
lua_setreadonly(L, -1, enabled);
lua_pop(L, 2);
// set globals to readonly and activate safeenv since the env is immutable
lua_setreadonly(L, LUA_GLOBALSINDEX, enabled);
lua_setsafeenv(L, LUA_GLOBALSINDEX, enabled);
}
//
// TODO: Generic Buffer Manipulation
//
+510
View File
@@ -0,0 +1,510 @@
//! Contains definitions from `lua.h`.
use std::marker::{PhantomData, PhantomPinned};
use std::os::raw::{c_char, c_double, c_float, c_int, c_uint, c_void};
use std::ptr;
// Option for multiple returns in 'lua_pcall' and 'lua_call'
pub const LUA_MULTRET: c_int = -1;
// Max number of Lua stack slots
const LUAI_MAXCSTACK: c_int = 100000;
//
// Pseudo-indices
//
pub const LUA_REGISTRYINDEX: c_int = -LUAI_MAXCSTACK - 2000;
pub const LUA_ENVIRONINDEX: c_int = -LUAI_MAXCSTACK - 2001;
pub const LUA_GLOBALSINDEX: c_int = -LUAI_MAXCSTACK - 2002;
pub const fn lua_upvalueindex(i: c_int) -> c_int {
LUA_GLOBALSINDEX - i
}
//
// Thread status
//
pub const LUA_OK: c_int = 0;
pub const LUA_YIELD: c_int = 1;
pub const LUA_ERRRUN: c_int = 2;
pub const LUA_ERRSYNTAX: c_int = 3;
pub const LUA_ERRMEM: c_int = 4;
pub const LUA_ERRERR: c_int = 5;
/// A raw Lua state associated with a thread.
#[repr(C)]
pub struct lua_State {
_data: [u8; 0],
_marker: PhantomData<(*mut u8, PhantomPinned)>,
}
//
// Basic types
//
pub const LUA_TNONE: c_int = -1;
pub const LUA_TNIL: c_int = 0;
pub const LUA_TBOOLEAN: c_int = 1;
pub const LUA_TLIGHTUSERDATA: c_int = 2;
pub const LUA_TNUMBER: c_int = 3;
pub const LUA_TVECTOR: c_int = 4;
pub const LUA_TSTRING: c_int = 5;
pub const LUA_TTABLE: c_int = 6;
pub const LUA_TFUNCTION: c_int = 7;
pub const LUA_TUSERDATA: c_int = 8;
pub const LUA_TTHREAD: c_int = 9;
/// Guaranteed number of Lua stack slots available to a C function.
pub const LUA_MINSTACK: c_int = 20;
/// A Lua number, usually equivalent to `f64`.
pub type lua_Number = c_double;
/// A Lua integer, equivalent to `i32`.
pub type lua_Integer = c_int;
/// A Lua unsigned integer, equivalent to `u32`.
pub type lua_Unsigned = c_uint;
/// Type for native C functions that can be passed to Lua.
pub type lua_CFunction = unsafe extern "C" fn(L: *mut lua_State) -> c_int;
pub type lua_Continuation = unsafe extern "C" fn(L: *mut lua_State, status: c_int) -> c_int;
/// Type for userdata destructor functions.
pub type lua_Udestructor = unsafe extern "C" fn(*mut c_void);
/// Type for memory-allocation functions.
pub type lua_Alloc = unsafe extern "C" fn(
ud: *mut c_void,
ptr: *mut c_void,
osize: usize,
nsize: usize,
) -> *mut c_void;
extern "C" {
//
// State manipulation
//
pub fn lua_newstate(f: lua_Alloc, ud: *mut c_void) -> *mut lua_State;
pub fn lua_close(L: *mut lua_State);
pub fn lua_newthread(L: *mut lua_State) -> *mut lua_State;
pub fn lua_mainthread(L: *mut lua_State) -> *mut lua_State;
pub fn lua_resetthread(L: *mut lua_State);
pub fn lua_isthreadreset(L: *mut lua_State) -> c_int;
//
// Basic stack manipulation
//
pub fn lua_absindex(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_gettop(L: *mut lua_State) -> c_int;
pub fn lua_settop(L: *mut lua_State, idx: c_int);
pub fn lua_pushvalue(L: *mut lua_State, idx: c_int);
pub fn lua_remove(L: *mut lua_State, idx: c_int);
pub fn lua_insert(L: *mut lua_State, idx: c_int);
pub fn lua_replace(L: *mut lua_State, idx: c_int);
pub fn lua_checkstack(L: *mut lua_State, sz: c_int) -> c_int;
pub fn lua_rawcheckstack(L: *mut lua_State, sz: c_int);
pub fn lua_xmove(from: *mut lua_State, to: *mut lua_State, n: c_int);
pub fn lua_xpush(from: *mut lua_State, to: *mut lua_State, idx: c_int);
//
// Access functions (stack -> C)
//
pub fn lua_isnumber(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isstring(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_iscfunction(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isLfunction(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_isuserdata(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_type(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_typename(L: *mut lua_State, tp: c_int) -> *const c_char;
pub fn lua_equal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_rawequal(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_lessthan(L: *mut lua_State, idx1: c_int, idx2: c_int) -> c_int;
pub fn lua_tonumberx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Number;
#[link_name = "lua_tointegerx"]
pub fn lua_tointegerx_(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Integer;
pub fn lua_tounsignedx(L: *mut lua_State, idx: c_int, isnum: *mut c_int) -> lua_Unsigned;
pub fn lua_tovector(L: *mut lua_State, idx: c_int) -> *const c_float;
pub fn lua_toboolean(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_tolstring(L: *mut lua_State, idx: c_int, len: *mut usize) -> *const c_char;
pub fn lua_tostringatom(L: *mut lua_State, idx: c_int, atom: *mut c_int) -> *const c_char;
pub fn lua_namecallatom(L: *mut lua_State, atom: *mut c_int) -> *const c_char;
pub fn lua_objlen(L: *mut lua_State, idx: c_int) -> usize;
pub fn lua_tocfunction(L: *mut lua_State, idx: c_int) -> Option<lua_CFunction>;
pub fn lua_tolightuserdata(L: *mut lua_State, idx: c_int) -> *mut c_void;
pub fn lua_touserdata(L: *mut lua_State, idx: c_int) -> *mut c_void;
pub fn lua_touserdatatagged(L: *mut lua_State, idx: c_int, tag: c_int) -> *mut c_void;
pub fn lua_userdatatag(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_tothread(L: *mut lua_State, idx: c_int) -> *mut lua_State;
pub fn lua_topointer(L: *mut lua_State, idx: c_int) -> *const c_void;
//
// Push functions (C -> stack)
//
pub fn lua_pushnil(L: *mut lua_State);
pub fn lua_pushnumber(L: *mut lua_State, n: lua_Number);
pub fn lua_pushinteger(L: *mut lua_State, n: lua_Integer);
pub fn lua_pushunsigned(L: *mut lua_State, n: lua_Unsigned);
pub fn lua_pushvector(L: *mut lua_State, x: c_float, y: c_float, z: c_float);
#[link_name = "lua_pushlstring"]
pub fn lua_pushlstring_(L: *mut lua_State, s: *const c_char, l: usize);
#[link_name = "lua_pushstring"]
pub fn lua_pushstring_(L: *mut lua_State, s: *const c_char);
// lua_pushvfstring
#[link_name = "lua_pushfstringL"]
pub fn lua_pushfstring(L: *mut lua_State, fmt: *const c_char, ...) -> *const c_char;
pub fn lua_pushcclosurek(
L: *mut lua_State,
f: lua_CFunction,
debugname: *const c_char,
nup: c_int,
cont: Option<lua_Continuation>,
);
pub fn lua_pushboolean(L: *mut lua_State, b: c_int);
pub fn lua_pushthread(L: *mut lua_State) -> c_int;
pub fn lua_pushlightuserdata(L: *mut lua_State, p: *mut c_void);
pub fn lua_newuserdatatagged(L: *mut lua_State, sz: usize, tag: c_int) -> *mut c_void;
pub fn lua_newuserdatadtor(L: *mut lua_State, sz: usize, dtor: lua_Udestructor) -> *mut c_void;
//
// Get functions (Lua -> stack)
//
pub fn lua_gettable(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_getfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int;
pub fn lua_rawgetfield(L: *mut lua_State, idx: c_int, k: *const c_char) -> c_int;
pub fn lua_rawget(L: *mut lua_State, idx: c_int) -> c_int;
#[link_name = "lua_rawgeti"]
pub fn lua_rawgeti_(L: *mut lua_State, idx: c_int, n: c_int) -> c_int;
pub fn lua_createtable(L: *mut lua_State, narr: c_int, nrec: c_int);
pub fn lua_setreadonly(L: *mut lua_State, idx: c_int, enabled: c_int);
pub fn lua_getreadonly(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_setsafeenv(L: *mut lua_State, idx: c_int, enabled: c_int);
pub fn lua_getmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_getfenv(L: *mut lua_State, idx: c_int);
//
// Set functions (stack -> Lua)
//
pub fn lua_settable(L: *mut lua_State, idx: c_int);
pub fn lua_setfield(L: *mut lua_State, idx: c_int, k: *const c_char);
pub fn lua_rawset(L: *mut lua_State, idx: c_int);
#[link_name = "lua_rawseti"]
pub fn lua_rawseti_(L: *mut lua_State, idx: c_int, n: c_int);
pub fn lua_setmetatable(L: *mut lua_State, objindex: c_int) -> c_int;
pub fn lua_setfenv(L: *mut lua_State, idx: c_int) -> c_int;
//
// `load' and `call' functions (load and run Luau bytecode)
//
pub fn luau_load(
L: *mut lua_State,
chunkname: *const c_char,
data: *const c_char,
size: usize,
env: c_int,
) -> c_int;
pub fn lua_call(L: *mut lua_State, nargs: c_int, nresults: c_int);
pub fn lua_pcall(L: *mut lua_State, nargs: c_int, nresults: c_int, errfunc: c_int) -> c_int;
//
// Coroutine functions
//
pub fn lua_yield(L: *mut lua_State, nresults: c_int) -> c_int;
pub fn lua_break(L: *mut lua_State) -> c_int;
#[link_name = "lua_resume"]
pub fn lua_resume_(L: *mut lua_State, from: *mut lua_State, narg: c_int) -> c_int;
pub fn lua_resumeerror(L: *mut lua_State, from: *mut lua_State) -> c_int;
pub fn lua_status(L: *mut lua_State) -> c_int;
pub fn lua_isyieldable(L: *mut lua_State) -> c_int;
pub fn lua_getthreaddata(L: *mut lua_State) -> *mut c_void;
pub fn lua_setthreaddata(L: *mut lua_State, data: *mut c_void);
}
//
// Garbage-collection function and options
//
pub const LUA_GCSTOP: c_int = 0;
pub const LUA_GCRESTART: c_int = 1;
pub const LUA_GCCOLLECT: c_int = 2;
pub const LUA_GCCOUNT: c_int = 3;
pub const LUA_GCCOUNTB: c_int = 4;
pub const LUA_GCISRUNNING: c_int = 5;
pub const LUA_GCSTEP: c_int = 6;
pub const LUA_GCSETGOAL: c_int = 7;
pub const LUA_GCSETSTEPMUL: c_int = 8;
pub const LUA_GCSETSTEPSIZE: c_int = 9;
extern "C" {
pub fn lua_gc(L: *mut lua_State, what: c_int, data: c_int) -> c_int;
}
//
// Memory statistics
//
extern "C" {
pub fn lua_setmemcat(L: *mut lua_State, category: c_int);
pub fn lua_totalbytes(L: *mut lua_State, category: c_int) -> usize;
}
//
// Miscellaneous functions
//
extern "C" {
pub fn lua_error(L: *mut lua_State) -> !;
pub fn lua_next(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_rawiter(L: *mut lua_State, idx: c_int, iter: c_int) -> c_int;
pub fn lua_concat(L: *mut lua_State, n: c_int);
// TODO: lua_encodepointer
pub fn lua_clock() -> c_double;
pub fn lua_setuserdatatag(L: *mut lua_State, idx: c_int, tag: c_int);
pub fn lua_setuserdatadtor(
L: *mut lua_State,
tag: c_int,
dtor: Option<unsafe extern "C" fn(*mut lua_State, *mut c_void)>,
);
pub fn lua_clonefunction(L: *mut lua_State, idx: c_int);
pub fn lua_cleartable(L: *mut lua_State, idx: c_int);
}
//
// Reference system, can be used to pin objects
//
pub const LUA_NOREF: c_int = -1;
pub const LUA_REFNIL: c_int = 0;
extern "C" {
pub fn lua_ref(L: *mut lua_State, idx: c_int) -> c_int;
pub fn lua_unref(L: *mut lua_State, r#ref: c_int);
}
//
// Some useful macros (implemented as Rust functions)
//
#[inline(always)]
pub unsafe fn lua_tonumber(L: *mut lua_State, i: c_int) -> lua_Number {
lua_tonumberx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_tointeger_(L: *mut lua_State, i: c_int) -> lua_Integer {
lua_tointegerx_(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_tounsigned(L: *mut lua_State, i: c_int) -> lua_Unsigned {
lua_tounsignedx(L, i, ptr::null_mut())
}
#[inline(always)]
pub unsafe fn lua_pop(L: *mut lua_State, n: c_int) {
lua_settop(L, -n - 1)
}
#[inline(always)]
pub unsafe fn lua_newtable(L: *mut lua_State) {
lua_createtable(L, 0, 0)
}
#[inline(always)]
pub unsafe fn lua_newuserdata(L: *mut lua_State, sz: usize) -> *mut c_void {
lua_newuserdatatagged(L, sz, 0)
}
// TODO: lua_strlen
#[inline(always)]
pub unsafe fn lua_isfunction(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TFUNCTION) as c_int
}
#[inline(always)]
pub unsafe fn lua_istable(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTABLE) as c_int
}
#[inline(always)]
pub unsafe fn lua_islightuserdata(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TLIGHTUSERDATA) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_isboolean(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TBOOLEAN) as c_int
}
#[inline(always)]
pub unsafe fn lua_isvector(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TVECTOR) as c_int
}
#[inline(always)]
pub unsafe fn lua_isthread(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TTHREAD) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnone(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) == LUA_TNONE) as c_int
}
#[inline(always)]
pub unsafe fn lua_isnoneornil(L: *mut lua_State, n: c_int) -> c_int {
(lua_type(L, n) <= LUA_TNIL) as c_int
}
#[inline(always)]
pub unsafe fn lua_pushliteral(L: *mut lua_State, s: &'static str) {
use std::ffi::CString;
let c_str = CString::new(s).unwrap();
lua_pushlstring_(L, c_str.as_ptr(), c_str.as_bytes().len())
}
pub unsafe fn lua_pushcfunction(L: *mut lua_State, f: lua_CFunction) {
lua_pushcclosurek(L, f, ptr::null(), 0, None)
}
pub unsafe fn lua_pushcfunctiond(L: *mut lua_State, f: lua_CFunction, debugname: *const c_char) {
lua_pushcclosurek(L, f, debugname, 0, None)
}
pub unsafe fn lua_pushcclosure(L: *mut lua_State, f: lua_CFunction, nup: c_int) {
lua_pushcclosurek(L, f, ptr::null(), nup, None)
}
pub unsafe fn lua_pushcclosured(
L: *mut lua_State,
f: lua_CFunction,
debugname: *const c_char,
nup: c_int,
) {
lua_pushcclosurek(L, f, debugname, nup, None)
}
#[inline(always)]
pub unsafe fn lua_setglobal(L: *mut lua_State, var: *const c_char) {
lua_setfield(L, LUA_GLOBALSINDEX, var)
}
#[inline(always)]
pub unsafe fn lua_getglobal(L: *mut lua_State, var: *const c_char) -> c_int {
lua_getfield(L, LUA_GLOBALSINDEX, var)
}
#[inline(always)]
pub unsafe fn lua_tostring(L: *mut lua_State, i: c_int) -> *const c_char {
lua_tolstring(L, i, ptr::null_mut())
}
//
// Debug API
//
// Maximum size for the description of the source of a function in debug information.
const LUA_IDSIZE: usize = 256;
/// Type for functions to be called on debug events.
pub type lua_Hook = unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug);
pub type lua_Coverage = unsafe extern "C" fn(
context: *mut c_void,
function: *const c_char,
linedefined: c_int,
depth: c_int,
hits: *const c_int,
size: usize,
);
extern "C" {
pub fn lua_stackdepth(L: *mut lua_State) -> c_int;
pub fn lua_getinfo(
L: *mut lua_State,
level: c_int,
what: *const c_char,
ar: *mut lua_Debug,
) -> c_int;
pub fn lua_getargument(L: *mut lua_State, level: c_int, n: c_int) -> c_int;
pub fn lua_getlocal(L: *mut lua_State, level: c_int, n: c_int) -> *const c_char;
pub fn lua_setlocal(L: *mut lua_State, level: c_int, n: c_int) -> *const c_char;
pub fn lua_getupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_setupvalue(L: *mut lua_State, funcindex: c_int, n: c_int) -> *const c_char;
pub fn lua_singlestep(L: *mut lua_State, enabled: c_int);
pub fn lua_breakpoint(
L: *mut lua_State,
funcindex: c_int,
line: c_int,
enabled: c_int,
) -> c_int;
pub fn lua_getcoverage(
L: *mut lua_State,
funcindex: c_int,
context: *mut c_void,
callback: lua_Coverage,
);
pub fn lua_debugtrace(L: *mut lua_State) -> *const c_char;
}
#[repr(C)]
pub struct lua_Debug {
pub name: *const c_char,
pub what: *const c_char,
pub source: *const c_char,
pub short_src: *const c_char,
pub linedefined: c_int,
pub currentline: c_int,
pub nupvals: u8,
pub nparams: u8,
pub isvararg: c_char,
pub userdata: *mut c_void,
pub ssbuf: [c_char; LUA_IDSIZE],
}
//
// Callbacks that can be used to reconfigure behavior of the VM dynamically.
// These are shared between all coroutines.
//
#[repr(C)]
pub struct lua_Callbacks {
/// arbitrary userdata pointer that is never overwritten by Luau
pub userdata: *mut c_void,
/// gets called at safepoints (loop back edges, call/ret, gc) if set
pub interrupt: Option<unsafe extern "C" fn(L: *mut lua_State, gc: c_int)>,
/// gets called when an unprotected error is raised (if longjmp is used)
pub panic: Option<unsafe extern "C" fn(L: *mut lua_State, errcode: c_int)>,
/// gets called when L is created (LP == parent) or destroyed (LP == NULL)
pub userthread: Option<unsafe extern "C" fn(LP: *mut lua_State, L: *mut lua_State)>,
/// gets called when a string is created; returned atom can be retrieved via tostringatom
pub useratom: Option<unsafe extern "C" fn(s: *const c_char, l: usize) -> i16>,
/// gets called when BREAK instruction is encountered
pub debugbreak: Option<unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug)>,
/// gets called after each instruction in single step mode
pub debugstep: Option<unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug)>,
/// gets called when thread execution is interrupted by break in another thread
pub debuginterrupt: Option<unsafe extern "C" fn(L: *mut lua_State, ar: *mut lua_Debug)>,
/// gets called when protected call results in an error
pub debugprotectederror: Option<unsafe extern "C" fn(L: *mut lua_State)>,
}
extern "C" {
pub fn lua_callbacks(L: *mut lua_State) -> *mut lua_Callbacks;
}
+39
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@@ -0,0 +1,39 @@
//! Contains definitions from `luacode.h`.
use std::os::raw::{c_char, c_int, c_void};
use std::slice;
#[repr(C)]
pub struct lua_CompileOptions {
pub optimizationLevel: c_int,
pub debugLevel: c_int,
pub coverageLevel: c_int,
pub vectorLib: *const c_char,
pub vectorCtor: *const c_char,
pub mutableGlobals: *mut *const c_char,
}
extern "C" {
#[link_name = "luau_compile"]
pub fn luau_compile_(
source: *const c_char,
size: usize,
options: *mut lua_CompileOptions,
outsize: *mut usize,
) -> *mut c_char;
fn free(p: *mut c_void);
}
pub unsafe fn luau_compile(source: &[u8], mut options: lua_CompileOptions) -> Vec<u8> {
let mut outsize = 0;
let data_ptr = luau_compile_(
source.as_ptr() as *const c_char,
source.len(),
&mut options,
&mut outsize,
);
let data = slice::from_raw_parts(data_ptr as *mut u8, outsize).to_vec();
free(data_ptr as *mut c_void);
data
}
+29
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@@ -0,0 +1,29 @@
//! Contains definitions from `lualib.h`.
use std::os::raw::c_int;
use super::lua::lua_State;
pub const LUA_COLIBNAME: &str = "coroutine";
pub const LUA_TABLIBNAME: &str = "table";
pub const LUA_OSLIBNAME: &str = "os";
pub const LUA_STRLIBNAME: &str = "string";
pub const LUA_BITLIBNAME: &str = "bit32";
pub const LUA_UTF8LIBNAME: &str = "utf8";
pub const LUA_MATHLIBNAME: &str = "math";
pub const LUA_DBLIBNAME: &str = "debug";
extern "C" {
pub fn luaopen_base(L: *mut lua_State) -> c_int;
pub fn luaopen_coroutine(L: *mut lua_State) -> c_int;
pub fn luaopen_table(L: *mut lua_State) -> c_int;
pub fn luaopen_os(L: *mut lua_State) -> c_int;
pub fn luaopen_string(L: *mut lua_State) -> c_int;
pub fn luaopen_bit32(L: *mut lua_State) -> c_int;
pub fn luaopen_utf8(L: *mut lua_State) -> c_int;
pub fn luaopen_math(L: *mut lua_State) -> c_int;
pub fn luaopen_debug(L: *mut lua_State) -> c_int;
// open all builtin libraries
pub fn luaL_openlibs(L: *mut lua_State);
}
+13
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@@ -0,0 +1,13 @@
//! Low level bindings to Luau.
pub use compat::*;
pub use lauxlib::*;
pub use lua::*;
pub use luacode::*;
pub use lualib::*;
pub mod compat;
pub mod lauxlib;
pub mod lua;
pub mod luacode;
pub mod lualib;
+59 -270
View File
@@ -1,262 +1,42 @@
// The MIT License (MIT)
//
// Copyright (c) 2019-2021 A. Orlenko
// Copyright (c) 2014 J.C. Moyer
//
// 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.
//! Low level bindings to Lua.
//! Low level bindings to Lua 5.4/5.3/5.2/5.1 including LuaJIT.
#![allow(non_camel_case_types, non_snake_case, dead_code)]
use std::os::raw::c_int;
// This is more or less in the order it appears in the Lua manual, with the
// exception of constants, which appear scattered throughout the manual text.
// C API types
pub use self::lua::{
lua_Alloc, lua_CFunction, lua_Debug, lua_Hook, lua_Integer, lua_Number, lua_Reader, lua_State,
lua_Unsigned, lua_Writer,
};
#[cfg(feature = "lua54")]
pub use self::lua::lua_WarnFunction;
pub use lua54::*;
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use self::lua::{lua_KContext, lua_KFunction};
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub use self::lua::{lua_getfenv, lua_setfenv};
// C API functions
pub use self::lua::{
lua_absindex,
lua_arith,
lua_atpanic,
lua_call,
lua_checkstack,
lua_close,
lua_compare,
lua_concat,
lua_copy,
lua_createtable,
lua_dump,
lua_error,
lua_gc,
lua_getallocf,
lua_getextraspace,
lua_getfield,
lua_getglobal,
lua_gethook,
lua_gethookcount,
lua_gethookmask,
lua_geti,
lua_getinfo,
lua_getlocal,
lua_getmetatable,
lua_getstack,
lua_gettable,
lua_gettop,
lua_getupvalue,
lua_getuservalue,
lua_insert,
lua_isboolean,
lua_iscfunction,
lua_isfunction,
lua_isinteger,
lua_islightuserdata,
lua_isnil,
lua_isnone,
lua_isnoneornil,
lua_isnumber,
lua_isstring,
lua_istable,
lua_isthread,
lua_isuserdata,
lua_len,
lua_load,
lua_newstate,
lua_newtable,
lua_newthread,
lua_newuserdata,
lua_next,
lua_pcall,
lua_pop,
lua_pushboolean,
lua_pushcclosure,
lua_pushcfunction,
lua_pushfstring,
lua_pushglobaltable,
lua_pushinteger,
lua_pushlightuserdata,
lua_pushliteral,
lua_pushlstring,
lua_pushnil,
lua_pushnumber,
lua_pushstring,
lua_pushthread,
lua_pushvalue,
// omitted: lua_pushvfstring
lua_rawequal,
lua_rawget,
lua_rawgeti,
lua_rawgetp,
lua_rawlen,
lua_rawset,
lua_rawseti,
lua_rawsetp,
lua_register,
lua_remove,
lua_replace,
lua_resume,
lua_rotate,
lua_setallocf,
lua_setfield,
lua_setglobal,
lua_sethook,
lua_seti,
lua_setlocal,
lua_setmetatable,
lua_settable,
lua_settop,
lua_setupvalue,
lua_setuservalue,
lua_status,
lua_stringtonumber,
lua_toboolean,
lua_tocfunction,
lua_tointeger,
lua_tointegerx,
lua_tolstring,
lua_tonumber,
lua_tonumberx,
lua_topointer,
lua_tostring,
lua_tothread,
lua_touserdata,
lua_type,
lua_typename,
lua_upvalueindex,
lua_xmove,
lua_yield,
};
#[cfg(feature = "lua54")]
pub use self::lua::{
lua_getiuservalue, lua_newuserdatauv, lua_setcstacklimit, lua_setiuservalue, lua_setwarnf,
lua_toclose, lua_warning,
};
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use self::lua::{lua_isyieldable, lua_version};
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub use self::lua::{lua_callk, lua_pcallk, lua_upvalueid, lua_upvaluejoin, lua_yieldk};
#[cfg(any(feature = "lua54", all(feature = "luajit", feature = "vendored")))]
pub use self::lua::lua_resetthread;
// auxiliary library types
pub use self::lauxlib::luaL_Reg;
// auxiliary library functions
pub use self::lauxlib::{
luaL_argcheck, luaL_argerror, luaL_callmeta, luaL_checkany, luaL_checkint, luaL_checkinteger,
luaL_checklong, luaL_checklstring, luaL_checknumber, luaL_checkoption, luaL_checkstack,
luaL_checkstring, luaL_checktype, luaL_checkudata, luaL_checkversion, luaL_dofile,
luaL_dostring, luaL_error, luaL_getmetafield, luaL_getmetatable, luaL_getsubtable, luaL_gsub,
luaL_len, luaL_loadbuffer, luaL_loadbufferx, luaL_loadfile, luaL_loadstring, luaL_newlib,
luaL_newlibtable, luaL_newmetatable, luaL_newstate, luaL_optint, luaL_optinteger, luaL_optlong,
luaL_optlstring, luaL_optnumber, luaL_optstring, luaL_ref, luaL_requiref, luaL_setfuncs,
luaL_setmetatable, luaL_testudata, luaL_tolstring, luaL_traceback, luaL_typename, luaL_unref,
luaL_where,
};
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub use self::lauxlib::{luaL_execresult, luaL_fileresult, luaL_loadfilex};
// lualib.h functions
pub use self::lualib::{
luaL_openlibs, luaopen_base, luaopen_debug, luaopen_io, luaopen_math, luaopen_os,
luaopen_package, luaopen_string, luaopen_table,
};
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use self::lualib::{luaopen_coroutine, luaopen_utf8};
#[cfg(feature = "lua53")]
pub use lua53::*;
#[cfg(feature = "lua52")]
pub use self::lualib::{luaopen_bit32, luaopen_coroutine};
#[cfg(feature = "luajit")]
pub use self::lualib::{luaopen_bit, luaopen_ffi, luaopen_jit};
// constants from lua.h
pub use self::lua::{
LUA_ERRERR, LUA_ERRMEM, LUA_ERRRUN, LUA_ERRSYNTAX, LUA_GCCOLLECT, LUA_GCCOUNT, LUA_GCCOUNTB,
LUA_GCRESTART, LUA_GCSETPAUSE, LUA_GCSETSTEPMUL, LUA_GCSTEP, LUA_GCSTOP, LUA_HOOKCALL,
LUA_HOOKCOUNT, LUA_HOOKLINE, LUA_HOOKRET, LUA_HOOKTAILCALL, LUA_MASKCALL, LUA_MASKCOUNT,
LUA_MASKLINE, LUA_MASKRET, LUA_MINSTACK, LUA_MULTRET, LUA_OK, LUA_OPADD, LUA_OPDIV, LUA_OPEQ,
LUA_OPLE, LUA_OPLT, LUA_OPMOD, LUA_OPMUL, LUA_OPPOW, LUA_OPSUB, LUA_OPUNM, LUA_REGISTRYINDEX,
LUA_SIGNATURE, LUA_TBOOLEAN, LUA_TFUNCTION, LUA_TLIGHTUSERDATA, LUA_TNIL, LUA_TNONE,
LUA_TNUMBER, LUA_TRACEBACK_STACK, LUA_TSTRING, LUA_TTABLE, LUA_TTHREAD, LUA_TUSERDATA,
LUA_YIELD,
};
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use self::lua::{
LUA_OPBAND, LUA_OPBNOT, LUA_OPBOR, LUA_OPBXOR, LUA_OPIDIV, LUA_OPSHL, LUA_OPSHR,
};
#[cfg(feature = "lua54")]
pub use self::lua::{LUA_GCGEN, LUA_GCINC};
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub use self::lua::{LUA_GCISRUNNING, LUA_RIDX_GLOBALS, LUA_RIDX_MAINTHREAD};
#[cfg(any(feature = "lua53", feature = "lua52"))]
pub use self::lua::LUA_ERRGCMM;
pub use lua52::*;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub use self::lua::{LUA_ENVIRONINDEX, LUA_GLOBALSINDEX};
pub use lua51::*;
// constants from lauxlib.h
pub use self::lauxlib::{LUA_ERRFILE, LUA_NOREF, LUA_REFNIL};
#[cfg(feature = "luau")]
pub use luau::*;
// constants from lualib.h
pub use self::lualib::{
LUA_COLIBNAME, LUA_DBLIBNAME, LUA_IOLIBNAME, LUA_LOADLIBNAME, LUA_MATHLIBNAME, LUA_OSLIBNAME,
LUA_STRLIBNAME, LUA_TABLIBNAME,
};
#[cfg(any(feature = "lua54", feature = "lua53"))]
pub use self::lualib::LUA_UTF8LIBNAME;
#[cfg(any(feature = "lua52", feature = "luajit"))]
pub use self::lualib::LUA_BITLIBNAME;
#[cfg(feature = "luajit")]
pub use self::lualib::{LUA_FFILIBNAME, LUA_JITLIBNAME};
// Not actually defined in lua.h / luaconf.h
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
pub const LUA_MAX_UPVALUES: c_int = 255;
#[cfg(any(feature = "lua51", all(feature = "luajit", not(feature = "vendored"))))]
pub const LUA_MAX_UPVALUES: c_int = 60;
#[cfg(all(feature = "luajit", feature = "vendored"))]
pub const LUA_MAX_UPVALUES: c_int = 120;
#[cfg(feature = "luau")]
pub const LUA_MAX_UPVALUES: c_int = 200;
// I believe `luaL_traceback` < 5.4 requires this much free stack to not error.
// 5.4 uses `luaL_Buffer`
pub const LUA_TRACEBACK_STACK: c_int = 11;
// The minimum alignment guaranteed by the architecture. This value is used to
// add fast paths for low alignment values.
// Copied from https://github.com/rust-lang/rust/blob/master/library/std/src/sys/common/alloc.rs
#[cfg(all(any(
target_arch = "x86",
@@ -268,7 +48,8 @@ pub const LUA_MAX_UPVALUES: c_int = 255;
target_arch = "asmjs",
target_arch = "wasm32",
target_arch = "hexagon",
target_arch = "riscv32"
all(target_arch = "riscv32", not(target_os = "espidf")),
all(target_arch = "xtensa", not(target_os = "espidf")),
)))]
pub const SYS_MIN_ALIGN: usize = 8;
#[cfg(all(any(
@@ -277,39 +58,47 @@ pub const SYS_MIN_ALIGN: usize = 8;
target_arch = "mips64",
target_arch = "s390x",
target_arch = "sparc64",
target_arch = "riscv64"
target_arch = "riscv64",
target_arch = "wasm64",
)))]
pub const SYS_MIN_ALIGN: usize = 16;
// The allocator on the esp-idf platform guarentees 4 byte alignment.
#[cfg(all(any(
all(target_arch = "riscv32", target_os = "espidf"),
all(target_arch = "xtensa", target_os = "espidf"),
)))]
pub const SYS_MIN_ALIGN: usize = 4;
// Hack to avoid stripping a few unused Lua symbols that could be imported
// by C modules in unsafe mode
#[cfg(not(feature = "luau"))]
pub(crate) fn keep_lua_symbols() {
let mut symbols: Vec<*const extern "C" fn()> = Vec::new();
symbols.push(lua_atpanic as _);
symbols.push(lua_isuserdata as _);
symbols.push(lua_tocfunction as _);
symbols.push(luaL_loadstring as _);
symbols.push(luaL_openlibs as _);
if cfg!(any(any(
feature = "lua54",
feature = "lua53",
feature = "lua52"
))) {
symbols.push(lua_getglobal as _);
symbols.push(lua_setglobal as _);
let mut _symbols: Vec<*const extern "C" fn()> = vec![
lua_atpanic as _,
lua_isuserdata as _,
lua_tocfunction as _,
luaL_loadstring as _,
luaL_openlibs as _,
];
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
{
_symbols.push(lua_getglobal as _);
_symbols.push(lua_setglobal as _);
_symbols.push(luaL_setfuncs as _);
}
}
#[allow(unused_imports, dead_code, non_camel_case_types)]
#[allow(clippy::unreadable_literal)]
mod glue {
include!(concat!(env!("OUT_DIR"), "/glue.rs"));
}
#[cfg(feature = "lua54")]
pub mod lua54;
#[cfg(any(feature = "lua52", feature = "lua51", feature = "luajit"))]
mod compat53;
#[cfg(feature = "lua53")]
pub mod lua53;
mod lauxlib;
mod lua;
mod luaconf;
mod lualib;
#[cfg(feature = "lua52")]
pub mod lua52;
#[cfg(any(feature = "lua51", feature = "luajit"))]
pub mod lua51;
#[cfg(feature = "luau")]
pub mod luau;
+291 -49
View File
@@ -1,20 +1,72 @@
use std::mem;
use std::os::raw::{c_int, c_void};
use std::ptr;
use std::slice;
use crate::error::{Error, Result};
use crate::ffi;
use crate::memory::MemoryState;
use crate::types::LuaRef;
use crate::util::{assert_stack, check_stack, error_traceback, pop_error, StackGuard};
use crate::value::{FromLuaMulti, MultiValue, ToLuaMulti};
use crate::util::{
assert_stack, check_stack, error_traceback, pop_error, ptr_to_cstr_bytes, StackGuard,
};
use crate::value::{FromLuaMulti, IntoLuaMulti};
#[cfg(feature = "unstable")]
use {
crate::lua::Lua,
crate::types::{Callback, MaybeSend},
crate::value::IntoLua,
std::cell::RefCell,
};
#[cfg(feature = "async")]
use {futures_core::future::LocalBoxFuture, futures_util::future};
#[cfg(all(feature = "async", feature = "unstable"))]
use {crate::types::AsyncCallback, futures_core::Future, futures_util::TryFutureExt};
/// Handle to an internal Lua function.
#[derive(Clone, Debug)]
pub struct Function<'lua>(pub(crate) LuaRef<'lua>);
/// Owned handle to an internal Lua function.
#[cfg(feature = "unstable")]
#[cfg_attr(docsrs, doc(cfg(feature = "unstable")))]
#[derive(Clone, Debug)]
pub struct OwnedFunction(pub(crate) crate::types::LuaOwnedRef);
#[cfg(feature = "unstable")]
impl OwnedFunction {
/// Get borrowed handle to the underlying Lua function.
pub const fn to_ref(&self) -> Function {
Function(self.0.to_ref())
}
}
#[derive(Clone, Debug)]
pub struct FunctionInfo {
pub name: Option<Vec<u8>>,
pub name_what: Option<Vec<u8>>,
pub what: Option<Vec<u8>>,
pub source: Option<Vec<u8>>,
pub short_src: Option<Vec<u8>>,
pub line_defined: i32,
#[cfg(not(feature = "luau"))]
pub last_line_defined: i32,
}
/// Luau function coverage snapshot.
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
#[derive(Clone, Debug, PartialEq, Eq)]
pub struct CoverageInfo {
pub function: Option<std::string::String>,
pub line_defined: i32,
pub depth: i32,
pub hits: Vec<i32>,
}
impl<'lua> Function<'lua> {
/// Calls the function, passing `args` as function arguments.
///
@@ -56,39 +108,40 @@ impl<'lua> Function<'lua> {
/// # Ok(())
/// # }
/// ```
pub fn call<A: ToLuaMulti<'lua>, R: FromLuaMulti<'lua>>(&self, args: A) -> Result<R> {
pub fn call<A: IntoLuaMulti<'lua>, R: FromLuaMulti<'lua>>(&self, args: A) -> Result<R> {
let lua = self.0.lua;
let state = lua.state();
let args = args.to_lua_multi(lua)?;
let mut args = args.into_lua_multi(lua)?;
let nargs = args.len() as c_int;
let results = unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, nargs + 3)?;
let _sg = StackGuard::new(state);
check_stack(state, nargs + 3)?;
ffi::lua_pushcfunction(lua.state, error_traceback);
let stack_start = ffi::lua_gettop(lua.state);
MemoryState::relax_limit_with(state, || ffi::lua_pushcfunction(state, error_traceback));
let stack_start = ffi::lua_gettop(state);
lua.push_ref(&self.0);
for arg in args {
for arg in args.drain_all() {
lua.push_value(arg)?;
}
let ret = ffi::lua_pcall(lua.state, nargs, ffi::LUA_MULTRET, stack_start);
let ret = ffi::lua_pcall(state, nargs, ffi::LUA_MULTRET, stack_start);
if ret != ffi::LUA_OK {
return Err(pop_error(lua.state, ret));
return Err(pop_error(state, ret));
}
let nresults = ffi::lua_gettop(lua.state) - stack_start;
let mut results = MultiValue::new();
assert_stack(lua.state, 2);
let nresults = ffi::lua_gettop(state) - stack_start;
let mut results = args; // Reuse MultiValue container
assert_stack(state, 2);
for _ in 0..nresults {
results.push_front(lua.pop_value());
}
ffi::lua_pop(lua.state, 1);
ffi::lua_pop(state, 1);
results
};
R::from_lua_multi(results, lua)
}
/// Returns a Feature that, when polled, calls `self`, passing `args` as function arguments,
/// Returns a future that, when polled, calls `self`, passing `args` as function arguments,
/// and drives the execution.
///
/// Internally it wraps the function to an [`AsyncThread`].
@@ -116,18 +169,22 @@ impl<'lua> Function<'lua> {
/// # }
/// ```
///
/// [`AsyncThread`]: struct.AsyncThread.html
/// [`AsyncThread`]: crate::AsyncThread
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
pub fn call_async<'fut, A, R>(&self, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: ToLuaMulti<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
let lua = self.0.lua;
match lua.create_thread(self.clone()) {
Ok(t) => Box::pin(t.into_async(args)),
match lua.create_recycled_thread(self) {
Ok(t) => {
let mut t = t.into_async(args);
t.set_recyclable(true);
Box::pin(t)
}
Err(e) => Box::pin(future::err(e)),
}
}
@@ -159,50 +216,100 @@ impl<'lua> Function<'lua> {
/// # Ok(())
/// # }
/// ```
pub fn bind<A: ToLuaMulti<'lua>>(&self, args: A) -> Result<Function<'lua>> {
unsafe extern "C" fn bind_call_impl(state: *mut ffi::lua_State) -> c_int {
pub fn bind<A: IntoLuaMulti<'lua>>(&self, args: A) -> Result<Function<'lua>> {
unsafe extern "C" fn args_wrapper_impl(state: *mut ffi::lua_State) -> c_int {
let nargs = ffi::lua_gettop(state);
let nbinds = ffi::lua_tointeger(state, ffi::lua_upvalueindex(2)) as c_int;
ffi::luaL_checkstack(state, nbinds + 2, ptr::null());
ffi::lua_settop(state, nargs + nbinds + 1);
ffi::lua_rotate(state, -(nargs + nbinds + 1), nbinds + 1);
ffi::lua_pushvalue(state, ffi::lua_upvalueindex(1));
ffi::lua_replace(state, 1);
let nbinds = ffi::lua_tointeger(state, ffi::lua_upvalueindex(1)) as c_int;
ffi::luaL_checkstack(state, nbinds, ptr::null());
for i in 0..nbinds {
ffi::lua_pushvalue(state, ffi::lua_upvalueindex(i + 3));
ffi::lua_replace(state, i + 2);
ffi::lua_pushvalue(state, ffi::lua_upvalueindex(i + 2));
}
if nargs > 0 {
ffi::lua_rotate(state, 1, nbinds);
}
ffi::lua_call(state, nargs + nbinds, ffi::LUA_MULTRET);
ffi::lua_gettop(state)
nargs + nbinds
}
let lua = self.0.lua;
let state = lua.state();
let args = args.to_lua_multi(lua)?;
let args = args.into_lua_multi(lua)?;
let nargs = args.len() as c_int;
if nargs + 2 > ffi::LUA_MAX_UPVALUES {
if nargs == 0 {
return Ok(self.clone());
}
if nargs + 1 > ffi::LUA_MAX_UPVALUES {
return Err(Error::BindError);
}
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, nargs + 5)?;
let args_wrapper = unsafe {
let _sg = StackGuard::new(state);
check_stack(state, nargs + 3)?;
lua.push_ref(&self.0);
ffi::lua_pushinteger(lua.state, nargs as ffi::lua_Integer);
ffi::lua_pushinteger(state, nargs as ffi::lua_Integer);
for arg in args {
lua.push_value(arg)?;
}
protect_lua!(lua.state, nargs + 2, 1, fn(state) {
ffi::lua_pushcclosure(state, bind_call_impl, ffi::lua_gettop(state));
protect_lua!(state, nargs + 1, 1, fn(state) {
ffi::lua_pushcclosure(state, args_wrapper_impl, ffi::lua_gettop(state));
})?;
Ok(Function(lua.pop_ref()))
Function(lua.pop_ref())
};
lua.load(
r#"
local func, args_wrapper = ...
return function(...)
return func(args_wrapper(...))
end
"#,
)
.try_cache()
.set_name("_mlua_bind")
.call((self.clone(), args_wrapper))
}
/// Returns information about the function.
///
/// Corresponds to the `>Sn` what mask for [`lua_getinfo`] when applied to the function.
///
/// [`lua_getinfo`]: https://www.lua.org/manual/5.4/manual.html#lua_getinfo
pub fn info(&self) -> FunctionInfo {
let lua = self.0.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(state);
assert_stack(state, 1);
let mut ar: ffi::lua_Debug = mem::zeroed();
lua.push_ref(&self.0);
#[cfg(not(feature = "luau"))]
let res = ffi::lua_getinfo(state, cstr!(">Sn"), &mut ar);
#[cfg(feature = "luau")]
let res = ffi::lua_getinfo(state, -1, cstr!("sn"), &mut ar);
mlua_assert!(res != 0, "lua_getinfo failed with `>Sn`");
FunctionInfo {
name: ptr_to_cstr_bytes(ar.name).map(|s| s.to_vec()),
#[cfg(not(feature = "luau"))]
name_what: ptr_to_cstr_bytes(ar.namewhat).map(|s| s.to_vec()),
#[cfg(feature = "luau")]
name_what: None,
what: ptr_to_cstr_bytes(ar.what).map(|s| s.to_vec()),
source: ptr_to_cstr_bytes(ar.source).map(|s| s.to_vec()),
#[cfg(not(feature = "luau"))]
short_src: ptr_to_cstr_bytes(ar.short_src.as_ptr()).map(|s| s.to_vec()),
#[cfg(feature = "luau")]
short_src: ptr_to_cstr_bytes(ar.short_src).map(|s| s.to_vec()),
line_defined: ar.linedefined,
#[cfg(not(feature = "luau"))]
last_line_defined: ar.lastlinedefined,
}
}
}
@@ -210,6 +317,12 @@ impl<'lua> Function<'lua> {
///
/// If `strip` is true, the binary representation may not include all debug information
/// about the function, to save space.
///
/// For Luau a [Compiler] can be used to compile Lua chunks to bytecode.
///
/// [Compiler]: crate::chunk::Compiler
#[cfg(not(feature = "luau"))]
#[cfg_attr(docsrs, doc(cfg(not(feature = "luau"))))]
pub fn dump(&self, strip: bool) -> Vec<u8> {
unsafe extern "C" fn writer(
_state: *mut ffi::lua_State,
@@ -224,20 +337,81 @@ impl<'lua> Function<'lua> {
}
let lua = self.0.lua;
let state = lua.state();
let mut data: Vec<u8> = Vec::new();
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 1);
let _sg = StackGuard::new(state);
assert_stack(state, 1);
lua.push_ref(&self.0);
let data_ptr = &mut data as *mut Vec<u8> as *mut c_void;
let strip = if strip { 1 } else { 0 };
ffi::lua_dump(lua.state, writer, data_ptr, strip);
ffi::lua_pop(lua.state, 1);
ffi::lua_dump(state, writer, data_ptr, strip as i32);
ffi::lua_pop(state, 1);
}
data
}
/// Retrieves recorded coverage information about this Lua function including inner calls.
///
/// This function takes a callback as an argument and calls it providing [`CoverageInfo`] snapshot
/// per each executed inner function.
///
/// Recording of coverage information is controlled by [`Compiler::set_coverage_level`] option.
///
/// Requires `feature = "luau"`
///
/// [`Compiler::set_coverage_level`]: crate::chunk::Compiler::set_coverage_level
#[cfg(any(feature = "luau", docsrs))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
pub fn coverage<F>(&self, mut func: F)
where
F: FnMut(CoverageInfo),
{
use std::ffi::CStr;
use std::os::raw::c_char;
unsafe extern "C" fn callback<F: FnMut(CoverageInfo)>(
data: *mut c_void,
function: *const c_char,
line_defined: c_int,
depth: c_int,
hits: *const c_int,
size: usize,
) {
let function = if !function.is_null() {
Some(CStr::from_ptr(function).to_string_lossy().to_string())
} else {
None
};
let rust_callback = &mut *(data as *mut F);
rust_callback(CoverageInfo {
function,
line_defined,
depth,
hits: slice::from_raw_parts(hits, size).to_vec(),
});
}
let lua = self.0.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(state);
assert_stack(state, 1);
lua.push_ref(&self.0);
let func_ptr = &mut func as *mut F as *mut c_void;
ffi::lua_getcoverage(state, -1, func_ptr, callback::<F>);
}
}
/// Convert this handle to owned version.
#[cfg(feature = "unstable")]
#[cfg_attr(docsrs, doc(cfg(feature = "unstable")))]
#[inline]
pub fn into_owned(self) -> OwnedFunction {
OwnedFunction(self.0.into_owned())
}
}
impl<'lua> PartialEq for Function<'lua> {
@@ -245,3 +419,71 @@ impl<'lua> PartialEq for Function<'lua> {
self.0 == other.0
}
}
#[cfg(feature = "unstable")]
pub(crate) struct WrappedFunction<'lua>(pub(crate) Callback<'lua, 'static>);
#[cfg(all(feature = "async", feature = "unstable"))]
pub(crate) struct WrappedAsyncFunction<'lua>(pub(crate) AsyncCallback<'lua, 'static>);
#[cfg(feature = "unstable")]
#[cfg_attr(docsrs, doc(cfg(feature = "unstable")))]
impl<'lua> Function<'lua> {
/// Wraps a Rust function or closure, returning an opaque type that implements [`IntoLua`] trait.
#[inline]
pub fn wrap<F, A, R>(func: F) -> impl IntoLua<'lua>
where
F: Fn(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
WrappedFunction(Box::new(move |lua, args| {
func(lua, A::from_lua_multi(args, lua)?)?.into_lua_multi(lua)
}))
}
/// Wraps a Rust mutable closure, returning an opaque type that implements [`IntoLua`] trait.
#[inline]
pub fn wrap_mut<F, A, R>(func: F) -> impl IntoLua<'lua>
where
F: FnMut(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let func = RefCell::new(func);
WrappedFunction(Box::new(move |lua, args| {
let mut func = func
.try_borrow_mut()
.map_err(|_| Error::RecursiveMutCallback)?;
func(lua, A::from_lua_multi(args, lua)?)?.into_lua_multi(lua)
}))
}
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
pub fn wrap_async<F, A, FR, R>(func: F) -> impl IntoLua<'lua>
where
F: Fn(&'lua Lua, A) -> FR + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
FR: Future<Output = Result<R>> + 'lua,
R: IntoLuaMulti<'lua>,
{
WrappedAsyncFunction(Box::new(move |lua, args| {
let args = match A::from_lua_multi(args, lua) {
Ok(args) => args,
Err(e) => return Box::pin(future::err(e)),
};
Box::pin(func(lua, args).and_then(move |ret| future::ready(ret.into_lua_multi(lua))))
}))
}
}
#[cfg(test)]
mod assertions {
use super::*;
static_assertions::assert_not_impl_any!(Function: Send);
#[cfg(feature = "unstable")]
static_assertions::assert_not_impl_any!(OwnedFunction: Send);
}
+139 -70
View File
@@ -1,75 +1,115 @@
use std::ffi::CStr;
use std::marker::PhantomData;
use std::cell::UnsafeCell;
#[cfg(not(feature = "luau"))]
use std::ops::{BitOr, BitOrAssign};
use std::os::raw::{c_char, c_int};
use std::os::raw::c_int;
use crate::ffi::{self, lua_Debug, lua_State};
use crate::ffi::{self, lua_Debug};
use crate::lua::Lua;
use crate::util::callback_error;
use crate::util::ptr_to_cstr_bytes;
/// Contains information about currently executing Lua code.
///
/// The `Debug` structure is provided as a parameter to the hook function set with
/// [`Lua::set_hook`]. You may call the methods on this structure to retrieve information about the
/// Lua code executing at the time that the hook function was called. Further information can be
/// found in the [Lua 5.3 documentation][lua_doc].
/// found in the Lua [documentation][lua_doc].
///
/// [lua_doc]: https://www.lua.org/manual/5.3/manual.html#lua_Debug
/// [`Lua::set_hook`]: struct.Lua.html#method.set_hook
#[derive(Clone)]
pub struct Debug<'a> {
ar: *mut lua_Debug,
state: *mut lua_State,
_phantom: PhantomData<&'a ()>,
/// [lua_doc]: https://www.lua.org/manual/5.4/manual.html#lua_Debug
/// [`Lua::set_hook`]: crate::Lua::set_hook
pub struct Debug<'lua> {
lua: &'lua Lua,
ar: ActivationRecord,
#[cfg(feature = "luau")]
level: c_int,
}
impl<'a> Debug<'a> {
impl<'lua> Debug<'lua> {
#[cfg(not(feature = "luau"))]
pub(crate) fn new(lua: &'lua Lua, ar: *mut lua_Debug) -> Self {
Debug {
lua,
ar: ActivationRecord::Borrowed(ar),
}
}
pub(crate) fn new_owned(lua: &'lua Lua, _level: c_int, ar: lua_Debug) -> Self {
Debug {
lua,
ar: ActivationRecord::Owned(UnsafeCell::new(ar)),
#[cfg(feature = "luau")]
level: _level,
}
}
/// Returns the specific event that triggered the hook.
///
/// For [Lua 5.1] `DebugEvent::TailCall` is used for return events to indicate a return
/// from a function that did a tail call.
///
/// [Lua 5.1]: https://www.lua.org/manual/5.1/manual.html#pdf-LUA_HOOKTAILRET
#[cfg(not(feature = "luau"))]
#[cfg_attr(docsrs, doc(cfg(not(feature = "luau"))))]
pub fn event(&self) -> DebugEvent {
unsafe {
match (*self.ar).event {
match (*self.ar.get()).event {
ffi::LUA_HOOKCALL => DebugEvent::Call,
ffi::LUA_HOOKRET => DebugEvent::Ret,
ffi::LUA_HOOKTAILCALL => DebugEvent::TailCall,
ffi::LUA_HOOKLINE => DebugEvent::Line,
ffi::LUA_HOOKCOUNT => DebugEvent::Count,
event => mlua_panic!("Unknown Lua event code: {}", event),
event => DebugEvent::Unknown(event),
}
}
}
/// Corresponds to the `n` what mask.
pub fn names(&self) -> DebugNames<'a> {
pub fn names(&self) -> DebugNames {
unsafe {
#[cfg(not(feature = "luau"))]
mlua_assert!(
ffi::lua_getinfo(self.state, cstr!("n"), self.ar) != 0,
ffi::lua_getinfo(self.lua.state(), cstr!("n"), self.ar.get()) != 0,
"lua_getinfo failed with `n`"
);
#[cfg(feature = "luau")]
mlua_assert!(
ffi::lua_getinfo(self.lua.state(), self.level, cstr!("n"), self.ar.get()) != 0,
"lua_getinfo failed with `n`"
);
DebugNames {
name: ptr_to_str((*self.ar).name),
name_what: ptr_to_str((*self.ar).namewhat),
name: ptr_to_cstr_bytes((*self.ar.get()).name),
#[cfg(not(feature = "luau"))]
name_what: ptr_to_cstr_bytes((*self.ar.get()).namewhat),
#[cfg(feature = "luau")]
name_what: None,
}
}
}
/// Corresponds to the `S` what mask.
pub fn source(&self) -> DebugSource<'a> {
pub fn source(&self) -> DebugSource {
unsafe {
#[cfg(not(feature = "luau"))]
mlua_assert!(
ffi::lua_getinfo(self.state, cstr!("S"), self.ar) != 0,
ffi::lua_getinfo(self.lua.state(), cstr!("S"), self.ar.get()) != 0,
"lua_getinfo failed with `S`"
);
#[cfg(feature = "luau")]
mlua_assert!(
ffi::lua_getinfo(self.lua.state(), self.level, cstr!("s"), self.ar.get()) != 0,
"lua_getinfo failed with `s`"
);
DebugSource {
source: ptr_to_str((*self.ar).source),
short_src: ptr_to_str((*self.ar).short_src.as_ptr()),
line_defined: (*self.ar).linedefined as i32,
last_line_defined: (*self.ar).lastlinedefined as i32,
what: ptr_to_str((*self.ar).what),
source: ptr_to_cstr_bytes((*self.ar.get()).source),
#[cfg(not(feature = "luau"))]
short_src: ptr_to_cstr_bytes((*self.ar.get()).short_src.as_ptr()),
#[cfg(feature = "luau")]
short_src: ptr_to_cstr_bytes((*self.ar.get()).short_src),
line_defined: (*self.ar.get()).linedefined,
#[cfg(not(feature = "luau"))]
last_line_defined: (*self.ar.get()).lastlinedefined,
what: ptr_to_cstr_bytes((*self.ar.get()).what),
}
}
}
@@ -77,40 +117,81 @@ impl<'a> Debug<'a> {
/// Corresponds to the `l` what mask. Returns the current line.
pub fn curr_line(&self) -> i32 {
unsafe {
#[cfg(not(feature = "luau"))]
mlua_assert!(
ffi::lua_getinfo(self.state, cstr!("l"), self.ar) != 0,
ffi::lua_getinfo(self.lua.state(), cstr!("l"), self.ar.get()) != 0,
"lua_getinfo failed with `l`"
);
(*self.ar).currentline as i32
#[cfg(feature = "luau")]
mlua_assert!(
ffi::lua_getinfo(self.lua.state(), self.level, cstr!("l"), self.ar.get()) != 0,
"lua_getinfo failed with `l`"
);
(*self.ar.get()).currentline
}
}
/// Corresponds to the `t` what mask. Returns true if the hook is in a function tail call, false
/// otherwise.
#[cfg(not(feature = "luau"))]
#[cfg_attr(docsrs, doc(cfg(not(feature = "luau"))))]
pub fn is_tail_call(&self) -> bool {
unsafe {
mlua_assert!(
ffi::lua_getinfo(self.state, cstr!("t"), self.ar) != 0,
ffi::lua_getinfo(self.lua.state(), cstr!("t"), self.ar.get()) != 0,
"lua_getinfo failed with `t`"
);
(*self.ar).currentline != 0
(*self.ar.get()).currentline != 0
}
}
/// Corresponds to the `u` what mask.
pub fn stack(&self) -> DebugStack {
unsafe {
#[cfg(not(feature = "luau"))]
mlua_assert!(
ffi::lua_getinfo(self.state, cstr!("u"), self.ar) != 0,
ffi::lua_getinfo(self.lua.state(), cstr!("u"), self.ar.get()) != 0,
"lua_getinfo failed with `u`"
);
DebugStack {
num_ups: (*self.ar).nups as i32,
#[cfg(feature = "luau")]
mlua_assert!(
ffi::lua_getinfo(self.lua.state(), self.level, cstr!("a"), self.ar.get()) != 0,
"lua_getinfo failed with `a`"
);
#[cfg(not(feature = "luau"))]
let stack = DebugStack {
num_ups: (*self.ar.get()).nups as _,
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
num_params: (*self.ar).nparams as i32,
num_params: (*self.ar.get()).nparams as _,
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
is_vararg: (*self.ar).isvararg != 0,
}
is_vararg: (*self.ar.get()).isvararg != 0,
};
#[cfg(feature = "luau")]
let stack = DebugStack {
num_ups: (*self.ar.get()).nupvals as i32,
num_params: (*self.ar.get()).nparams as i32,
is_vararg: (*self.ar.get()).isvararg != 0,
};
stack
}
}
}
enum ActivationRecord {
#[cfg(not(feature = "luau"))]
Borrowed(*mut lua_Debug),
Owned(UnsafeCell<lua_Debug>),
}
impl ActivationRecord {
#[inline]
fn get(&self) -> *mut lua_Debug {
match self {
#[cfg(not(feature = "luau"))]
ActivationRecord::Borrowed(x) => *x,
ActivationRecord::Owned(x) => x.get(),
}
}
}
@@ -123,6 +204,7 @@ pub enum DebugEvent {
TailCall,
Line,
Count,
Unknown(c_int),
}
#[derive(Clone, Debug)]
@@ -136,6 +218,7 @@ pub struct DebugSource<'a> {
pub source: Option<&'a [u8]>,
pub short_src: Option<&'a [u8]>,
pub line_defined: i32,
#[cfg(not(feature = "luau"))]
pub last_line_defined: i32,
pub what: Option<&'a [u8]>,
}
@@ -143,15 +226,27 @@ pub struct DebugSource<'a> {
#[derive(Copy, Clone, Debug)]
pub struct DebugStack {
pub num_ups: i32,
/// Requires `feature = "lua54/lua53/lua52"`
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52", doc))]
/// Requires `feature = "lua54/lua53/lua52/luau"`
#[cfg(any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "luau"
))]
pub num_params: i32,
/// Requires `feature = "lua54/lua53/lua52"`
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52", doc))]
/// Requires `feature = "lua54/lua53/lua52/luau"`
#[cfg(any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "luau"
))]
pub is_vararg: bool,
}
/// Determines when a hook function will be called by Lua.
#[cfg(not(feature = "luau"))]
#[cfg_attr(docsrs, doc(cfg(not(feature = "luau"))))]
#[derive(Clone, Copy, Debug, Default)]
pub struct HookTriggers {
/// Before a function call.
@@ -169,6 +264,7 @@ pub struct HookTriggers {
pub every_nth_instruction: Option<u32>,
}
#[cfg(not(feature = "luau"))]
impl HookTriggers {
/// Returns a new instance of `HookTriggers` with [`on_calls`] trigger set.
///
@@ -235,6 +331,7 @@ impl HookTriggers {
}
}
#[cfg(not(feature = "luau"))]
impl BitOr for HookTriggers {
type Output = Self;
@@ -249,37 +346,9 @@ impl BitOr for HookTriggers {
}
}
#[cfg(not(feature = "luau"))]
impl BitOrAssign for HookTriggers {
fn bitor_assign(&mut self, rhs: Self) {
*self = *self | rhs;
}
}
pub(crate) unsafe extern "C" fn hook_proc(state: *mut lua_State, ar: *mut lua_Debug) {
callback_error(state, |_| {
let debug = Debug {
ar,
state,
_phantom: PhantomData,
};
let lua = mlua_expect!(Lua::make_from_ptr(state), "cannot make Lua instance");
let hook_cb = mlua_expect!(lua.hook_callback(), "no hook callback set in hook_proc");
#[allow(clippy::match_wild_err_arm)]
match hook_cb.try_borrow_mut() {
Ok(mut b) => (&mut *b)(&lua, debug),
Err(_) => mlua_panic!("Lua should not allow hooks to be called within another hook"),
}?;
Ok(())
})
}
unsafe fn ptr_to_str<'a>(input: *const c_char) -> Option<&'a [u8]> {
if input.is_null() {
None
} else {
Some(CStr::from_ptr(input).to_bytes())
}
}
+94 -33
View File
@@ -10,10 +10,10 @@
//!
//! # Converting data
//!
//! The [`ToLua`] and [`FromLua`] traits allow conversion from Rust types to Lua values and vice
//! The [`IntoLua`] and [`FromLua`] traits allow conversion from Rust types to Lua values and vice
//! versa. They are implemented for many data structures found in Rust's standard library.
//!
//! For more general conversions, the [`ToLuaMulti`] and [`FromLuaMulti`] traits allow converting
//! For more general conversions, the [`IntoLuaMulti`] and [`FromLuaMulti`] traits allow converting
//! between Rust types and *any number* of Lua values.
//!
//! Most code in `mlua` is generic over implementors of those traits, so in most places the normal
@@ -50,29 +50,29 @@
//! to [`Function`]s and [`UserData`].
//!
//! [Lua programming language]: https://www.lua.org/
//! [`Lua`]: struct.Lua.html
//! [executing]: struct.Chunk.html#method.exec
//! [evaluating]: struct.Chunk.html#method.eval
//! [globals]: struct.Lua.html#method.globals
//! [`ToLua`]: trait.ToLua.html
//! [`FromLua`]: trait.FromLua.html
//! [`ToLuaMulti`]: trait.ToLuaMulti.html
//! [`FromLuaMulti`]: trait.FromLuaMulti.html
//! [`Function`]: struct.Function.html
//! [`UserData`]: trait.UserData.html
//! [`UserDataFields`]: trait.UserDataFields.html
//! [`UserDataMethods`]: trait.UserDataMethods.html
//! [`LuaSerdeExt`]: serde/trait.LuaSerdeExt.html
//! [`Value`]: enum.Value.html
//! [`create_async_function`]: struct.Lua.html#method.create_async_function
//! [`call_async`]: struct.Function.html#method.call_async
//! [`AsyncThread`]: struct.AsyncThread.html
//! [`Future`]: ../futures_core/future/trait.Future.html
//! [`Lua`]: crate::Lua
//! [executing]: crate::Chunk::exec
//! [evaluating]: crate::Chunk::eval
//! [globals]: crate::Lua::globals
//! [`IntoLua`]: crate::IntoLua
//! [`FromLua`]: crate::FromLua
//! [`IntoLuaMulti`]: crate::IntoLuaMulti
//! [`FromLuaMulti`]: crate::FromLuaMulti
//! [`Function`]: crate::Function
//! [`UserData`]: crate::UserData
//! [`UserDataFields`]: crate::UserDataFields
//! [`UserDataMethods`]: crate::UserDataMethods
//! [`LuaSerdeExt`]: crate::LuaSerdeExt
//! [`Value`]: crate::Value
//! [`create_async_function`]: crate::Lua::create_async_function
//! [`call_async`]: crate::Function::call_async
//! [`AsyncThread`]: crate::AsyncThread
//! [`Future`]: std::future::Future
//! [`serde::Serialize`]: https://docs.serde.rs/serde/ser/trait.Serialize.html
//! [`serde::Deserialize`]: https://docs.serde.rs/serde/de/trait.Deserialize.html
// mlua types in rustdoc of other crates get linked to here.
#![doc(html_root_url = "https://docs.rs/mlua/0.6.4")]
#![doc(html_root_url = "https://docs.rs/mlua/0.9.0-beta.1")]
// Deny warnings inside doc tests / examples. When this isn't present, rustdoc doesn't show *any*
// warnings at all.
#![doc(test(attr(deny(warnings))))]
@@ -81,12 +81,16 @@
#[macro_use]
mod macros;
mod chunk;
mod conversion;
mod error;
mod ffi;
mod function;
mod hook;
mod lua;
#[cfg(feature = "luau")]
mod luau;
mod memory;
mod multi;
mod scope;
mod stdlib;
@@ -95,15 +99,20 @@ mod table;
mod thread;
mod types;
mod userdata;
mod userdata_ext;
mod userdata_impl;
mod util;
mod value;
pub mod prelude;
pub use crate::{ffi::lua_CFunction, ffi::lua_State};
pub use crate::error::{Error, ExternalError, ExternalResult, Result};
pub use crate::function::Function;
pub use crate::hook::{Debug, DebugEvent, DebugNames, DebugSource, DebugStack, HookTriggers};
pub use crate::lua::{AsChunk, Chunk, ChunkMode, GCMode, Lua, LuaOptions};
pub use crate::chunk::{AsChunk, Chunk, ChunkMode};
pub use crate::error::{Error, ErrorContext, ExternalError, ExternalResult, Result};
pub use crate::function::{Function, FunctionInfo};
pub use crate::hook::{Debug, DebugEvent, DebugNames, DebugSource, DebugStack};
pub use crate::lua::{GCMode, Lua, LuaOptions};
pub use crate::multi::Variadic;
pub use crate::scope::Scope;
pub use crate::stdlib::StdLib;
@@ -113,20 +122,28 @@ pub use crate::thread::{Thread, ThreadStatus};
pub use crate::types::{Integer, LightUserData, Number, RegistryKey};
pub use crate::userdata::{
AnyUserData, MetaMethod, UserData, UserDataFields, UserDataMetatable, UserDataMethods,
UserDataRef, UserDataRefMut,
};
pub use crate::value::{FromLua, FromLuaMulti, MultiValue, Nil, ToLua, ToLuaMulti, Value};
pub use crate::userdata_ext::AnyUserDataExt;
pub use crate::userdata_impl::UserDataRegistrar;
pub use crate::value::{FromLua, FromLuaMulti, IntoLua, IntoLuaMulti, MultiValue, Nil, Value};
#[cfg(not(feature = "luau"))]
pub use crate::hook::HookTriggers;
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
pub use crate::{chunk::Compiler, function::CoverageInfo, types::VmState};
#[cfg(feature = "async")]
pub use crate::thread::AsyncThread;
#[cfg(feature = "serialize")]
#[cfg_attr(docsrs, doc(cfg(feature = "serialize")))]
#[doc(inline)]
pub use crate::serde::{
de::Options as DeserializeOptions, ser::Options as SerializeOptions, LuaSerdeExt,
};
pub mod prelude;
#[cfg(feature = "serialize")]
#[cfg_attr(docsrs, doc(cfg(feature = "serialize")))]
pub mod serde;
@@ -136,12 +153,16 @@ pub mod serde;
#[macro_use]
extern crate mlua_derive;
// Unstable features
#[cfg(all(feature = "unstable", not(feature = "send")))]
pub use crate::{function::OwnedFunction, table::OwnedTable, userdata::OwnedAnyUserData};
/// Create a type that implements [`AsChunk`] and can capture Rust variables.
///
/// This macro allows to write Lua code directly in Rust code.
///
/// Rust variables can be referenced from Lua using `$` prefix, as shown in the example below.
/// User's Rust types needs to implement [`UserData`] or [`ToLua`] traits.
/// User's Rust types needs to implement [`UserData`] or [`IntoLua`] traits.
///
/// Captured variables are **moved** into the chunk.
///
@@ -185,13 +206,53 @@ extern crate mlua_derive;
///
/// Everything else should work.
///
/// [`AsChunk`]: trait.AsChunk.html
/// [`UserData`]: trait.UserData.html
/// [`ToLua`]: trait.ToLua.html
/// [`AsChunk`]: crate::AsChunk
/// [`UserData`]: crate::UserData
/// [`IntoLua`]: crate::IntoLua
#[cfg(any(feature = "macros"))]
#[cfg_attr(docsrs, doc(cfg(feature = "macros")))]
pub use mlua_derive::chunk;
#[cfg(any(feature = "module"))]
/// Registers Lua module entrypoint.
///
/// You can register multiple entrypoints as required.
///
/// ```
/// use mlua::{Lua, Result, Table};
///
/// #[mlua::lua_module]
/// fn my_module(lua: &Lua) -> Result<Table> {
/// let exports = lua.create_table()?;
/// exports.set("hello", "world")?;
/// Ok(exports)
/// }
/// ```
///
/// Internally in the code above the compiler defines C function `luaopen_my_module`.
///
/// You can also pass options to the attribute:
///
/// name - name of the module, defaults to the name of the function
///
/// ```ignore
/// #[mlua::lua_module(name = "alt_module")]
/// fn my_module(lua: &Lua) -> Result<Table> {
/// ...
/// }
/// ```
///
#[cfg(any(feature = "module", docsrs))]
#[cfg_attr(docsrs, doc(cfg(feature = "module")))]
pub use mlua_derive::lua_module;
pub(crate) mod private {
use super::*;
pub trait Sealed {}
impl Sealed for Error {}
impl<T> Sealed for std::result::Result<T, Error> {}
impl Sealed for Lua {}
impl Sealed for Table<'_> {}
impl Sealed for AnyUserData<'_> {}
}
+1658 -1501
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File diff suppressed because it is too large Load Diff
+132
View File
@@ -0,0 +1,132 @@
use std::ffi::CStr;
use std::os::raw::{c_float, c_int};
use std::string::String as StdString;
use crate::chunk::ChunkMode;
use crate::error::{Error, Result};
use crate::ffi;
use crate::lua::Lua;
use crate::table::Table;
use crate::util::{check_stack, StackGuard};
use crate::value::Value;
// Since Luau has some missing standard function, we re-implement them here
impl Lua {
pub(crate) unsafe fn prepare_luau_state(&self) -> Result<()> {
let globals = self.globals();
globals.raw_set(
"collectgarbage",
self.create_c_function(lua_collectgarbage)?,
)?;
globals.raw_set("require", self.create_function(lua_require)?)?;
globals.raw_set("vector", self.create_c_function(lua_vector)?)?;
// Set `_VERSION` global to include version number
// The environment variable `LUAU_VERSION` set by the build script
if let Some(version) = option_env!("LUAU_VERSION") {
globals.raw_set("_VERSION", format!("Luau {version}"))?;
}
Ok(())
}
}
unsafe extern "C" fn lua_collectgarbage(state: *mut ffi::lua_State) -> c_int {
let option = ffi::luaL_optstring(state, 1, cstr!("collect"));
let option = CStr::from_ptr(option);
let arg = ffi::luaL_optinteger(state, 2, 0);
match option.to_str() {
Ok("collect") => {
ffi::lua_gc(state, ffi::LUA_GCCOLLECT, 0);
0
}
Ok("stop") => {
ffi::lua_gc(state, ffi::LUA_GCSTOP, 0);
0
}
Ok("restart") => {
ffi::lua_gc(state, ffi::LUA_GCRESTART, 0);
0
}
Ok("count") => {
let kbytes = ffi::lua_gc(state, ffi::LUA_GCCOUNT, 0) as ffi::lua_Number;
let kbytes_rem = ffi::lua_gc(state, ffi::LUA_GCCOUNTB, 0) as ffi::lua_Number;
ffi::lua_pushnumber(state, kbytes + kbytes_rem / 1024.0);
1
}
Ok("step") => {
let res = ffi::lua_gc(state, ffi::LUA_GCSTEP, arg);
ffi::lua_pushboolean(state, res);
1
}
Ok("isrunning") => {
let res = ffi::lua_gc(state, ffi::LUA_GCISRUNNING, 0);
ffi::lua_pushboolean(state, res);
1
}
_ => ffi::luaL_error(state, cstr!("collectgarbage called with invalid option")),
}
}
fn lua_require(lua: &Lua, name: Option<StdString>) -> Result<Value> {
let name = name.ok_or_else(|| Error::RuntimeError("invalid module name".into()))?;
// Find module in the cache
let state = lua.state();
let loaded = unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 2)?;
protect_lua!(state, 0, 1, fn(state) {
ffi::luaL_getsubtable(state, ffi::LUA_REGISTRYINDEX, cstr!("_LOADED"));
})?;
Table(lua.pop_ref())
};
if let Some(v) = loaded.raw_get(name.clone())? {
return Ok(v);
}
// Load file from filesystem
let mut search_path = std::env::var("LUAU_PATH").unwrap_or_default();
if search_path.is_empty() {
search_path = "?.luau;?.lua".into();
}
let (mut source, mut source_name) = (None, String::new());
for path in search_path.split(';') {
let file_path = path.replacen('?', &name, 1);
if let Ok(buf) = std::fs::read(&file_path) {
source = Some(buf);
source_name = file_path;
break;
}
}
let source = source.ok_or_else(|| Error::RuntimeError(format!("cannot find '{name}'")))?;
let value = lua
.load(&source)
.set_name(&format!("={source_name}"))
.set_mode(ChunkMode::Text)
.call::<_, Value>(())?;
// Save in the cache
loaded.raw_set(
name,
match value.clone() {
Value::Nil => Value::Boolean(true),
v => v,
},
)?;
Ok(value)
}
// Luau vector datatype constructor
unsafe extern "C" fn lua_vector(state: *mut ffi::lua_State) -> c_int {
let x = ffi::luaL_checknumber(state, 1) as c_float;
let y = ffi::luaL_checknumber(state, 2) as c_float;
let z = ffi::luaL_checknumber(state, 3) as c_float;
ffi::lua_pushvector(state, x, y, z);
1
}
+153
View File
@@ -0,0 +1,153 @@
use std::alloc::{self, Layout};
use std::os::raw::c_void;
use std::ptr;
use crate::ffi;
#[cfg(feature = "luau")]
use crate::lua::ExtraData;
pub(crate) static ALLOCATOR: ffi::lua_Alloc = allocator;
#[derive(Default)]
pub(crate) struct MemoryState {
used_memory: isize,
memory_limit: isize,
// Can be set to temporary ignore the memory limit.
// This is used when calling `lua_pushcfunction` for lua5.1/jit/luau.
ignore_limit: bool,
// Indicates that the memory limit was reached on the last allocation.
#[cfg(feature = "luau")]
limit_reached: bool,
}
impl MemoryState {
#[inline]
pub(crate) fn used_memory(&self) -> usize {
self.used_memory as usize
}
#[inline]
pub(crate) fn memory_limit(&self) -> usize {
self.memory_limit as usize
}
#[inline]
pub(crate) fn set_memory_limit(&mut self, limit: usize) -> usize {
let prev_limit = self.memory_limit;
self.memory_limit = limit as isize;
prev_limit as usize
}
// This function is used primarily for calling `lua_pushcfunction` in lua5.1/jit
// to bypass the memory limit (if set).
#[cfg(any(feature = "lua51", feature = "luajit"))]
#[inline]
pub(crate) unsafe fn relax_limit_with(state: *mut ffi::lua_State, f: impl FnOnce()) {
let mut mem_state: *mut c_void = ptr::null_mut();
if ffi::lua_getallocf(state, &mut mem_state) == ALLOCATOR {
(*(mem_state as *mut MemoryState)).ignore_limit = true;
f();
(*(mem_state as *mut MemoryState)).ignore_limit = false;
} else {
f();
}
}
// Same as the above but for Luau
// It does not have `lua_getallocf` function, so instead we use `lua_callbacks`
#[cfg(feature = "luau")]
#[inline]
pub(crate) unsafe fn relax_limit_with(state: *mut ffi::lua_State, f: impl FnOnce()) {
let extra = (*ffi::lua_callbacks(state)).userdata as *mut ExtraData;
if extra.is_null() {
return f();
}
let mem_state = (*extra).mem_state();
(*mem_state.as_ptr()).ignore_limit = true;
f();
(*mem_state.as_ptr()).ignore_limit = false;
}
// Does nothing apart from calling `f()`, we don't need to bypass any limits
#[cfg(any(feature = "lua52", feature = "lua53", feature = "lua54"))]
#[inline]
pub(crate) unsafe fn relax_limit_with(_state: *mut ffi::lua_State, f: impl FnOnce()) {
f();
}
// Returns `true` if the memory limit was reached on the last memory operation
#[cfg(feature = "luau")]
pub(crate) unsafe fn limit_reached(state: *mut ffi::lua_State) -> bool {
let extra = (*ffi::lua_callbacks(state)).userdata as *mut ExtraData;
if extra.is_null() {
return false;
}
(*(*extra).mem_state().as_ptr()).limit_reached
}
}
unsafe extern "C" fn allocator(
extra: *mut c_void,
ptr: *mut c_void,
osize: usize,
nsize: usize,
) -> *mut c_void {
let mem_state = &mut *(extra as *mut MemoryState);
#[cfg(feature = "luau")]
{
// Reset the flag
mem_state.limit_reached = false;
}
if nsize == 0 {
// Free memory
if !ptr.is_null() {
let layout = Layout::from_size_align_unchecked(osize, ffi::SYS_MIN_ALIGN);
alloc::dealloc(ptr as *mut u8, layout);
mem_state.used_memory -= osize as isize;
}
return ptr::null_mut();
}
// Do not allocate more than isize::MAX
if nsize > isize::MAX as usize {
return ptr::null_mut();
}
// Are we fit to the memory limits?
let mut mem_diff = nsize as isize;
if !ptr.is_null() {
mem_diff -= osize as isize;
}
let mem_limit = mem_state.memory_limit;
let new_used_memory = mem_state.used_memory + mem_diff;
if mem_limit > 0 && new_used_memory > mem_limit && !mem_state.ignore_limit {
#[cfg(feature = "luau")]
{
mem_state.limit_reached = true;
}
return ptr::null_mut();
}
mem_state.used_memory += mem_diff;
if ptr.is_null() {
// Allocate new memory
let new_layout = match Layout::from_size_align(nsize, ffi::SYS_MIN_ALIGN) {
Ok(layout) => layout,
Err(_) => return ptr::null_mut(),
};
let new_ptr = alloc::alloc(new_layout) as *mut c_void;
if new_ptr.is_null() {
alloc::handle_alloc_error(new_layout);
}
return new_ptr;
}
// Reallocate memory
let old_layout = Layout::from_size_align_unchecked(osize, ffi::SYS_MIN_ALIGN);
let new_ptr = alloc::realloc(ptr as *mut u8, old_layout, nsize) as *mut c_void;
if new_ptr.is_null() {
alloc::handle_alloc_error(old_layout);
}
new_ptr
}
+77 -39
View File
@@ -1,52 +1,67 @@
#![allow(clippy::wrong_self_convention)]
use std::iter::FromIterator;
use std::ops::{Deref, DerefMut};
use std::result::Result as StdResult;
use crate::error::Result;
use crate::lua::Lua;
use crate::value::{FromLua, FromLuaMulti, MultiValue, Nil, ToLua, ToLuaMulti};
use crate::value::{FromLua, FromLuaMulti, IntoLua, IntoLuaMulti, MultiValue, Nil};
/// Result is convertible to `MultiValue` following the common Lua idiom of returning the result
/// on success, or in the case of an error, returning `nil` and an error message.
impl<'lua, T: ToLua<'lua>, E: ToLua<'lua>> ToLuaMulti<'lua> for StdResult<T, E> {
fn to_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
let mut result = MultiValue::new();
impl<'lua, T: IntoLua<'lua>, E: IntoLua<'lua>> IntoLuaMulti<'lua> for StdResult<T, E> {
#[inline]
fn into_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
let mut result = MultiValue::new_or_pooled(lua);
match self {
Ok(v) => result.push_front(v.to_lua(lua)?),
Ok(v) => result.push_front(v.into_lua(lua)?),
Err(e) => {
result.push_front(e.to_lua(lua)?);
result.push_front(e.into_lua(lua)?);
result.push_front(Nil);
}
}
Ok(result)
}
}
impl<'lua, T: ToLua<'lua>> ToLuaMulti<'lua> for T {
fn to_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
let mut v = MultiValue::new();
v.push_front(self.to_lua(lua)?);
impl<'lua, T: IntoLua<'lua>> IntoLuaMulti<'lua> for T {
#[inline]
fn into_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
let mut v = MultiValue::new_or_pooled(lua);
v.push_front(self.into_lua(lua)?);
Ok(v)
}
}
impl<'lua, T: FromLua<'lua>> FromLuaMulti<'lua> for T {
#[inline]
fn from_lua_multi(mut values: MultiValue<'lua>, lua: &'lua Lua) -> Result<Self> {
T::from_lua(values.pop_front().unwrap_or(Nil), lua)
let res = T::from_lua(values.pop_front().unwrap_or(Nil), lua);
MultiValue::return_to_pool(values, lua);
res
}
#[inline]
fn from_lua_multi_args(
mut values: MultiValue<'lua>,
i: usize,
to: Option<&str>,
lua: &'lua Lua,
) -> Result<Self> {
let res = T::from_lua_arg(values.pop_front().unwrap_or(Nil), i, to, lua);
MultiValue::return_to_pool(values, lua);
res
}
}
impl<'lua> ToLuaMulti<'lua> for MultiValue<'lua> {
fn to_lua_multi(self, _: &'lua Lua) -> Result<MultiValue<'lua>> {
impl<'lua> IntoLuaMulti<'lua> for MultiValue<'lua> {
#[inline]
fn into_lua_multi(self, _: &'lua Lua) -> Result<MultiValue<'lua>> {
Ok(self)
}
}
impl<'lua> FromLuaMulti<'lua> for MultiValue<'lua> {
#[inline]
fn from_lua_multi(values: MultiValue<'lua>, _: &'lua Lua) -> Result<Self> {
Ok(values)
}
@@ -76,14 +91,14 @@ impl<'lua> FromLuaMulti<'lua> for MultiValue<'lua> {
/// # }
/// ```
///
/// [`FromLua`]: trait.FromLua.html
/// [`MultiValue`]: struct.MultiValue.html
/// [`FromLua`]: crate::FromLua
/// [`MultiValue`]: crate::MultiValue
#[derive(Debug, Clone)]
pub struct Variadic<T>(Vec<T>);
impl<T> Variadic<T> {
/// Creates an empty `Variadic` wrapper containing no values.
pub fn new() -> Variadic<T> {
pub const fn new() -> Variadic<T> {
Variadic(Vec::new())
}
}
@@ -123,49 +138,59 @@ impl<T> DerefMut for Variadic<T> {
}
}
impl<'lua, T: ToLua<'lua>> ToLuaMulti<'lua> for Variadic<T> {
fn to_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
self.0.into_iter().map(|e| e.to_lua(lua)).collect()
impl<'lua, T: IntoLua<'lua>> IntoLuaMulti<'lua> for Variadic<T> {
#[inline]
fn into_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
let mut values = MultiValue::new_or_pooled(lua);
values.refill(self.0.into_iter().map(|e| e.into_lua(lua)))?;
Ok(values)
}
}
impl<'lua, T: FromLua<'lua>> FromLuaMulti<'lua> for Variadic<T> {
fn from_lua_multi(values: MultiValue<'lua>, lua: &'lua Lua) -> Result<Self> {
values
.into_iter()
#[inline]
fn from_lua_multi(mut values: MultiValue<'lua>, lua: &'lua Lua) -> Result<Self> {
let res = values
.drain_all()
.map(|e| T::from_lua(e, lua))
.collect::<Result<Vec<T>>>()
.map(Variadic)
.map(Variadic);
MultiValue::return_to_pool(values, lua);
res
}
}
macro_rules! impl_tuple {
() => (
impl<'lua> ToLuaMulti<'lua> for () {
fn to_lua_multi(self, _: &'lua Lua) -> Result<MultiValue<'lua>> {
Ok(MultiValue::new())
impl<'lua> IntoLuaMulti<'lua> for () {
#[inline]
fn into_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
Ok(MultiValue::new_or_pooled(lua))
}
}
impl<'lua> FromLuaMulti<'lua> for () {
fn from_lua_multi(_: MultiValue<'lua>, _: &'lua Lua) -> Result<Self> {
#[inline]
fn from_lua_multi(values: MultiValue<'lua>, lua: &'lua Lua) -> Result<Self> {
MultiValue::return_to_pool(values, lua);
Ok(())
}
}
);
($last:ident $($name:ident)*) => (
impl<'lua, $($name,)* $last> ToLuaMulti<'lua> for ($($name,)* $last,)
where $($name: ToLua<'lua>,)*
$last: ToLuaMulti<'lua>
impl<'lua, $($name,)* $last> IntoLuaMulti<'lua> for ($($name,)* $last,)
where $($name: IntoLua<'lua>,)*
$last: IntoLuaMulti<'lua>
{
#[allow(unused_mut)]
#[allow(non_snake_case)]
fn to_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
#[inline]
fn into_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>> {
let ($($name,)* $last,) = self;
let mut results = $last.to_lua_multi(lua)?;
push_reverse!(results, $($name.to_lua(lua)?,)*);
let mut results = $last.into_lua_multi(lua)?;
push_reverse!(results, $($name.into_lua(lua)?,)*);
Ok(results)
}
}
@@ -176,10 +201,23 @@ macro_rules! impl_tuple {
{
#[allow(unused_mut)]
#[allow(non_snake_case)]
#[inline]
fn from_lua_multi(mut values: MultiValue<'lua>, lua: &'lua Lua) -> Result<Self> {
$(let $name = values.pop_front().unwrap_or(Nil);)*
$(let $name = FromLua::from_lua(values.pop_front().unwrap_or(Nil), lua)?;)*
let $last = FromLuaMulti::from_lua_multi(values, lua)?;
Ok(($(FromLua::from_lua($name, lua)?,)* $last,))
Ok(($($name,)* $last,))
}
#[allow(unused_mut)]
#[allow(non_snake_case)]
#[inline]
fn from_lua_multi_args(mut values: MultiValue<'lua>, mut i: usize, to: Option<&str>, lua: &'lua Lua) -> Result<Self> {
$(
let $name = FromLua::from_lua_arg(values.pop_front().unwrap_or(Nil), i, to, lua)?;
i += 1;
)*
let $last = FromLuaMulti::from_lua_multi_args(values, i, to, lua)?;
Ok(($($name,)* $last,))
}
}
);
+29 -9
View File
@@ -1,24 +1,44 @@
//! Re-exports most types with an extra `Lua*` prefix to prevent name clashes.
#[doc(no_inline)]
pub use crate::{
AnyUserData as LuaAnyUserData, Chunk as LuaChunk, Error as LuaError,
ExternalError as LuaExternalError, ExternalResult as LuaExternalResult, FromLua, FromLuaMulti,
Function as LuaFunction, GCMode as LuaGCMode, Integer as LuaInteger,
LightUserData as LuaLightUserData, Lua, LuaOptions, MetaMethod as LuaMetaMethod,
AnyUserData as LuaAnyUserData, AnyUserDataExt as LuaAnyUserDataExt, Chunk as LuaChunk,
Error as LuaError, ErrorContext as LuaErrorContext, ExternalError as LuaExternalError,
ExternalResult as LuaExternalResult, FromLua, FromLuaMulti, Function as LuaFunction,
FunctionInfo as LuaFunctionInfo, GCMode as LuaGCMode, Integer as LuaInteger, IntoLua,
IntoLuaMulti, LightUserData as LuaLightUserData, Lua, LuaOptions, MetaMethod as LuaMetaMethod,
MultiValue as LuaMultiValue, Nil as LuaNil, Number as LuaNumber, RegistryKey as LuaRegistryKey,
Result as LuaResult, String as LuaString, Table as LuaTable, TableExt as LuaTableExt,
TablePairs as LuaTablePairs, TableSequence as LuaTableSequence, Thread as LuaThread,
ThreadStatus as LuaThreadStatus, ToLua, ToLuaMulti, UserData as LuaUserData,
Result as LuaResult, StdLib as LuaStdLib, String as LuaString, Table as LuaTable,
TableExt as LuaTableExt, TablePairs as LuaTablePairs, TableSequence as LuaTableSequence,
Thread as LuaThread, ThreadStatus as LuaThreadStatus, UserData as LuaUserData,
UserDataFields as LuaUserDataFields, UserDataMetatable as LuaUserDataMetatable,
UserDataMethods as LuaUserDataMethods, Value as LuaValue,
UserDataMethods as LuaUserDataMethods, UserDataRef as LuaUserDataRef,
UserDataRefMut as LuaUserDataRefMut, UserDataRegistrar as LuaUserDataRegistrar,
Value as LuaValue,
};
#[cfg(not(feature = "luau"))]
#[doc(no_inline)]
pub use crate::HookTriggers as LuaHookTriggers;
#[cfg(feature = "luau")]
#[doc(no_inline)]
pub use crate::{CoverageInfo as LuaCoverageInfo, VmState as LuaVmState};
#[cfg(feature = "async")]
#[doc(no_inline)]
pub use crate::AsyncThread as LuaAsyncThread;
#[cfg(feature = "serialize")]
#[doc(inline)]
#[doc(no_inline)]
pub use crate::{
DeserializeOptions as LuaDeserializeOptions, LuaSerdeExt,
SerializeOptions as LuaSerializeOptions,
};
#[cfg(all(feature = "unstable", not(feature = "send")))]
#[doc(no_inline)]
pub use crate::{
OwnedAnyUserData as LuaOwnedAnyUserData, OwnedFunction as LuaOwnedFunction,
OwnedTable as LuaOwnedTable,
};
+367 -368
View File
File diff suppressed because it is too large Load Diff
+118 -30
View File
@@ -1,13 +1,15 @@
use std::cell::RefCell;
use std::collections::HashSet;
use std::convert::TryInto;
use std::os::raw::c_void;
use std::rc::Rc;
use std::string::String as StdString;
use rustc_hash::FxHashSet;
use serde::de::{self, IntoDeserializer};
use crate::error::{Error, Result};
use crate::table::{Table, TablePairs, TableSequence};
use crate::userdata::AnyUserData;
use crate::value::Value;
/// A struct for deserializing Lua values into Rust values.
@@ -15,18 +17,23 @@ use crate::value::Value;
pub struct Deserializer<'lua> {
value: Value<'lua>,
options: Options,
visited: Rc<RefCell<HashSet<*const c_void>>>,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
}
/// A struct with options to change default deserializer behavior.
#[derive(Debug, Clone, Copy)]
#[non_exhaustive]
pub struct Options {
/// If true, an attempt to serialize types such as `Thread`, `UserData`, `LightUserData`
/// and `Error` will cause an error.
/// If true, an attempt to serialize types such as [`Thread`], [`UserData`], [`LightUserData`]
/// and [`Error`] will cause an error.
/// Otherwise these types skipped when iterating or serialized as unit type.
///
/// Default: **true**
///
/// [`Thread`]: crate::Thread
/// [`UserData`]: crate::UserData
/// [`LightUserData`]: crate::LightUserData
/// [`Error`]: crate::Error
pub deny_unsupported_types: bool,
/// If true, an attempt to serialize a recursive table (table that refers to itself)
@@ -39,23 +46,24 @@ pub struct Options {
impl Default for Options {
fn default() -> Self {
Options {
deny_unsupported_types: true,
deny_recursive_tables: true,
}
Self::new()
}
}
impl Options {
/// Returns a new instance of `Options` with default parameters.
pub fn new() -> Self {
Self::default()
pub const fn new() -> Self {
Options {
deny_unsupported_types: true,
deny_recursive_tables: true,
}
}
/// Sets [`deny_unsupported_types`] option.
///
/// [`deny_unsupported_types`]: #structfield.deny_unsupported_types
pub fn deny_unsupported_types(mut self, enabled: bool) -> Self {
#[must_use]
pub const fn deny_unsupported_types(mut self, enabled: bool) -> Self {
self.deny_unsupported_types = enabled;
self
}
@@ -63,7 +71,8 @@ impl Options {
/// Sets [`deny_recursive_tables`] option.
///
/// [`deny_recursive_tables`]: #structfield.deny_recursive_tables
pub fn deny_recursive_tables(mut self, enabled: bool) -> Self {
#[must_use]
pub const fn deny_recursive_tables(mut self, enabled: bool) -> Self {
self.deny_recursive_tables = enabled;
self
}
@@ -80,14 +89,14 @@ impl<'lua> Deserializer<'lua> {
Deserializer {
value,
options,
visited: Rc::new(RefCell::new(HashSet::new())),
visited: Rc::new(RefCell::new(FxHashSet::default())),
}
}
fn from_parts(
value: Value<'lua>,
options: Options,
visited: Rc<RefCell<HashSet<*const c_void>>>,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
) -> Self {
Deserializer {
value,
@@ -109,9 +118,13 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
Value::Nil => visitor.visit_unit(),
Value::Boolean(b) => visitor.visit_bool(b),
#[allow(clippy::useless_conversion)]
Value::Integer(i) => visitor.visit_i64(i.into()),
Value::Integer(i) => {
visitor.visit_i64(i.try_into().expect("cannot convert lua_Integer to i64"))
}
#[allow(clippy::useless_conversion)]
Value::Number(n) => visitor.visit_f64(n.into()),
#[cfg(feature = "luau")]
Value::Vector(_, _, _) => self.deserialize_seq(visitor),
Value::String(s) => match s.to_str() {
Ok(s) => visitor.visit_str(s),
Err(_) => visitor.visit_bytes(s.as_bytes()),
@@ -119,6 +132,9 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
Value::Table(ref t) if t.raw_len() > 0 || t.is_array() => self.deserialize_seq(visitor),
Value::Table(_) => self.deserialize_map(visitor),
Value::LightUserData(ud) if ud.0.is_null() => visitor.visit_none(),
Value::UserData(ud) if ud.is_serializable() => {
serde_userdata(ud, |value| value.deserialize_any(visitor))
}
Value::Function(_)
| Value::Thread(_)
| Value::UserData(_)
@@ -151,8 +167,8 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
#[inline]
fn deserialize_enum<V>(
self,
_name: &str,
_variants: &'static [&'static str],
name: &'static str,
variants: &'static [&'static str],
visitor: V,
) -> Result<V::Value>
where
@@ -186,6 +202,9 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
(variant, Some(value), Some(_guard))
}
Value::String(variant) => (variant.to_str()?.to_owned(), None, None),
Value::UserData(ud) if ud.is_serializable() => {
return serde_userdata(ud, |value| value.deserialize_enum(name, variants, visitor));
}
_ => return Err(de::Error::custom("bad enum value")),
};
@@ -203,6 +222,16 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
V: de::Visitor<'de>,
{
match self.value {
#[cfg(feature = "luau")]
Value::Vector(x, y, z) => {
let mut deserializer = VecDeserializer {
vec: [x, y, z],
next: 0,
options: self.options,
visited: self.visited,
};
visitor.visit_seq(&mut deserializer)
}
Value::Table(t) => {
let _guard = RecursionGuard::new(&t, &self.visited);
@@ -222,6 +251,9 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
))
}
}
Value::UserData(ud) if ud.is_serializable() => {
serde_userdata(ud, |value| value.deserialize_seq(visitor))
}
value => Err(de::Error::invalid_type(
de::Unexpected::Other(value.type_name()),
&"table",
@@ -277,6 +309,9 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
))
}
}
Value::UserData(ud) if ud.is_serializable() => {
serde_userdata(ud, |value| value.deserialize_map(visitor))
}
value => Err(de::Error::invalid_type(
de::Unexpected::Other(value.type_name()),
&"table",
@@ -297,17 +332,29 @@ impl<'lua, 'de> serde::Deserializer<'de> for Deserializer<'lua> {
self.deserialize_map(visitor)
}
#[inline]
fn deserialize_newtype_struct<V>(self, name: &'static str, visitor: V) -> Result<V::Value>
where
V: de::Visitor<'de>,
{
match self.value {
Value::UserData(ud) if ud.is_serializable() => {
serde_userdata(ud, |value| value.deserialize_newtype_struct(name, visitor))
}
_ => visitor.visit_newtype_struct(self),
}
}
serde::forward_to_deserialize_any! {
bool i8 i16 i32 i64 u8 u16 u32 u64 f32 f64 char str string bytes
byte_buf unit unit_struct newtype_struct
identifier ignored_any
bool i8 i16 i32 i64 i128 u8 u16 u32 u64 u128 f32 f64 char str string bytes
byte_buf unit unit_struct identifier ignored_any
}
}
struct SeqDeserializer<'lua> {
seq: TableSequence<'lua, Value<'lua>>,
options: Options,
visited: Rc<RefCell<HashSet<*const c_void>>>,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
}
impl<'lua, 'de> de::SeqAccess<'de> for SeqDeserializer<'lua> {
@@ -341,11 +388,44 @@ impl<'lua, 'de> de::SeqAccess<'de> for SeqDeserializer<'lua> {
}
}
#[cfg(feature = "luau")]
struct VecDeserializer {
vec: [f32; 3],
next: usize,
options: Options,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
}
#[cfg(feature = "luau")]
impl<'de> de::SeqAccess<'de> for VecDeserializer {
type Error = Error;
fn next_element_seed<T>(&mut self, seed: T) -> Result<Option<T::Value>>
where
T: de::DeserializeSeed<'de>,
{
match self.vec.get(self.next) {
Some(&n) => {
self.next += 1;
let visited = Rc::clone(&self.visited);
let deserializer =
Deserializer::from_parts(Value::Number(n as _), self.options, visited);
seed.deserialize(deserializer).map(Some)
}
None => Ok(None),
}
}
fn size_hint(&self) -> Option<usize> {
Some(3)
}
}
struct MapDeserializer<'lua> {
pairs: TablePairs<'lua, Value<'lua>, Value<'lua>>,
value: Option<Value<'lua>>,
options: Options,
visited: Rc<RefCell<HashSet<*const c_void>>>,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
processed: usize,
}
@@ -401,7 +481,7 @@ struct EnumDeserializer<'lua> {
variant: StdString,
value: Option<Value<'lua>>,
options: Options,
visited: Rc<RefCell<HashSet<*const c_void>>>,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
}
impl<'lua, 'de> de::EnumAccess<'de> for EnumDeserializer<'lua> {
@@ -425,7 +505,7 @@ impl<'lua, 'de> de::EnumAccess<'de> for EnumDeserializer<'lua> {
struct VariantDeserializer<'lua> {
value: Option<Value<'lua>>,
options: Options,
visited: Rc<RefCell<HashSet<*const c_void>>>,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
}
impl<'lua, 'de> de::VariantAccess<'de> for VariantDeserializer<'lua> {
@@ -493,14 +573,14 @@ impl<'lua, 'de> de::VariantAccess<'de> for VariantDeserializer<'lua> {
// Used to track recursive tables but allow to traverse same tables multiple times
struct RecursionGuard {
ptr: *const c_void,
visited: Rc<RefCell<HashSet<*const c_void>>>,
visited: Rc<RefCell<FxHashSet<*const c_void>>>,
}
impl RecursionGuard {
#[inline]
fn new(table: &Table, visited: &Rc<RefCell<HashSet<*const c_void>>>) -> Self {
fn new(table: &Table, visited: &Rc<RefCell<FxHashSet<*const c_void>>>) -> Self {
let visited = Rc::clone(visited);
let ptr = unsafe { table.0.lua.get_ref_ptr(&table.0) };
let ptr = table.to_pointer();
visited.borrow_mut().insert(ptr);
RecursionGuard { ptr, visited }
}
@@ -516,12 +596,11 @@ impl Drop for RecursionGuard {
fn check_value_if_skip(
value: &Value,
options: Options,
visited: &RefCell<HashSet<*const c_void>>,
visited: &RefCell<FxHashSet<*const c_void>>,
) -> Result<bool> {
match value {
Value::Table(table) => {
let lua = table.0.lua;
let ptr = unsafe { lua.get_ref_ptr(&table.0) };
let ptr = table.to_pointer();
if visited.borrow().contains(&ptr) {
if options.deny_recursive_tables {
return Err(de::Error::custom("recursive table detected"));
@@ -529,6 +608,7 @@ fn check_value_if_skip(
return Ok(true); // skip
}
}
Value::UserData(ud) if ud.is_serializable() => {}
Value::Function(_)
| Value::Thread(_)
| Value::UserData(_)
@@ -542,3 +622,11 @@ fn check_value_if_skip(
}
Ok(false) // do not skip
}
fn serde_userdata<V>(
ud: AnyUserData,
f: impl FnOnce(serde_value::Value) -> std::result::Result<V, serde_value::DeserializerError>,
) -> Result<V> {
let value = serde_value::to_value(ud).map_err(|err| Error::SerializeError(err.to_string()))?;
f(value).map_err(|err| Error::DeserializeError(err.to_string()))
}
+17 -17
View File
@@ -8,13 +8,15 @@ use serde::{Deserialize, Serialize};
use crate::error::Result;
use crate::ffi;
use crate::lua::Lua;
use crate::private::Sealed;
use crate::table::Table;
use crate::types::LightUserData;
use crate::util::{assert_stack, check_stack, StackGuard};
use crate::util::check_stack;
use crate::value::Value;
/// Trait for serializing/deserializing Lua values using Serde.
pub trait LuaSerdeExt<'lua> {
#[cfg_attr(docsrs, doc(cfg(feature = "serialize")))]
pub trait LuaSerdeExt<'lua>: Sealed {
/// A special value (lightuserdata) to encode/decode optional (none) values.
///
/// Requires `feature = "serialize"`
@@ -69,11 +71,11 @@ pub trait LuaSerdeExt<'lua> {
/// ```
fn array_metatable(&'lua self) -> Table<'lua>;
/// Converts `T` into a `Value` instance.
/// Converts `T` into a [`Value`] instance.
///
/// Requires `feature = "serialize"`
///
/// [`Value`]: enum.Value.html
/// [`Value`]: crate::Value
///
/// # Example
///
@@ -102,11 +104,11 @@ pub trait LuaSerdeExt<'lua> {
/// ```
fn to_value<T: Serialize + ?Sized>(&'lua self, t: &T) -> Result<Value<'lua>>;
/// Converts `T` into a `Value` instance with options.
/// Converts `T` into a [`Value`] instance with options.
///
/// Requires `feature = "serialize"`
///
/// [`Value`]: enum.Value.html
/// [`Value`]: crate::Value
///
/// # Example
///
@@ -129,11 +131,11 @@ pub trait LuaSerdeExt<'lua> {
where
T: Serialize + ?Sized;
/// Deserializes a `Value` into any serde deserializable object.
/// Deserializes a [`Value`] into any serde deserializable object.
///
/// Requires `feature = "serialize"`
///
/// [`Value`]: enum.Value.html
/// [`Value`]: crate::Value
///
/// # Example
///
@@ -157,13 +159,14 @@ pub trait LuaSerdeExt<'lua> {
/// Ok(())
/// }
/// ```
#[allow(clippy::wrong_self_convention)]
fn from_value<T: Deserialize<'lua>>(&'lua self, value: Value<'lua>) -> Result<T>;
/// Deserializes a `Value` into any serde deserializable object with options.
/// Deserializes a [`Value`] into any serde deserializable object with options.
///
/// Requires `feature = "serialize"`
///
/// [`Value`]: enum.Value.html
/// [`Value`]: crate::Value
///
/// # Example
///
@@ -188,6 +191,7 @@ pub trait LuaSerdeExt<'lua> {
/// Ok(())
/// }
/// ```
#[allow(clippy::wrong_self_convention)]
fn from_value_with<T: Deserialize<'lua>>(
&'lua self,
value: Value<'lua>,
@@ -202,12 +206,8 @@ impl<'lua> LuaSerdeExt<'lua> for Lua {
fn array_metatable(&'lua self) -> Table<'lua> {
unsafe {
let _sg = StackGuard::new(self.state);
assert_stack(self.state, 1);
push_array_metatable(self.state);
Table(self.pop_ref())
push_array_metatable(self.ref_thread());
Table(self.pop_ref_thread())
}
}
@@ -256,7 +256,7 @@ pub(crate) unsafe fn init_metatables(state: *mut ffi::lua_State) -> Result<()> {
}
pub(crate) unsafe fn push_array_metatable(state: *mut ffi::lua_State) {
let array_metatable_key = &ARRAY_METATABLE_REGISTRY_KEY as *const u8 as *mut c_void;
let array_metatable_key = &ARRAY_METATABLE_REGISTRY_KEY as *const u8 as *const c_void;
ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, array_metatable_key);
}
+35 -22
View File
@@ -10,7 +10,7 @@ use crate::string::String;
use crate::table::Table;
use crate::types::Integer;
use crate::util::{check_stack, StackGuard};
use crate::value::{ToLua, Value};
use crate::value::{IntoLua, Value};
/// A struct for serializing Rust values into Lua values.
#[derive(Debug)]
@@ -28,16 +28,16 @@ pub struct Options {
///
/// Default: **true**
///
/// [`array_metatable`]: ../trait.LuaSerdeExt.html#tymethod.array_metatable
/// [`array_metatable`]: crate::LuaSerdeExt::array_metatable
pub set_array_metatable: bool,
/// If true, serialize `None` (part of `Option` type) to [`null`].
/// If true, serialize `None` (part of the `Option` type) to [`null`].
/// Otherwise it will be set to Lua [`Nil`].
///
/// Default: **true**
///
/// [`null`]: ../trait.LuaSerdeExt.html#tymethod.null
/// [`Nil`]: ../../enum.Value.html#variant.Nil
/// [`null`]: crate::LuaSerdeExt::null
/// [`Nil`]: crate::Value::Nil
pub serialize_none_to_null: bool,
/// If true, serialize `Unit` (type of `()` in Rust) and Unit structs to [`null`].
@@ -45,31 +45,32 @@ pub struct Options {
///
/// Default: **true**
///
/// [`null`]: ../trait.LuaSerdeExt.html#tymethod.null
/// [`Nil`]: ../../enum.Value.html#variant.Nil
/// [`null`]: crate::LuaSerdeExt::null
/// [`Nil`]: crate::Value::Nil
pub serialize_unit_to_null: bool,
}
impl Default for Options {
fn default() -> Self {
Self::new()
}
}
impl Options {
/// Returns a new instance of [`Options`] with default parameters.
pub const fn new() -> Self {
Options {
set_array_metatable: true,
serialize_none_to_null: true,
serialize_unit_to_null: true,
}
}
}
impl Options {
/// Returns a new instance of `Options` with default parameters.
pub fn new() -> Self {
Self::default()
}
/// Sets [`set_array_metatable`] option.
///
/// [`set_array_metatable`]: #structfield.set_array_metatable
pub fn set_array_metatable(mut self, enabled: bool) -> Self {
#[must_use]
pub const fn set_array_metatable(mut self, enabled: bool) -> Self {
self.set_array_metatable = enabled;
self
}
@@ -77,7 +78,8 @@ impl Options {
/// Sets [`serialize_none_to_null`] option.
///
/// [`serialize_none_to_null`]: #structfield.serialize_none_to_null
pub fn serialize_none_to_null(mut self, enabled: bool) -> Self {
#[must_use]
pub const fn serialize_none_to_null(mut self, enabled: bool) -> Self {
self.serialize_none_to_null = enabled;
self
}
@@ -85,7 +87,8 @@ impl Options {
/// Sets [`serialize_unit_to_null`] option.
///
/// [`serialize_unit_to_null`]: #structfield.serialize_unit_to_null
pub fn serialize_unit_to_null(mut self, enabled: bool) -> Self {
#[must_use]
pub const fn serialize_unit_to_null(mut self, enabled: bool) -> Self {
self.serialize_unit_to_null = enabled;
self
}
@@ -107,7 +110,7 @@ macro_rules! lua_serialize_number {
($name:ident, $t:ty) => {
#[inline]
fn $name(self, value: $t) -> Result<Value<'lua>> {
value.to_lua(self.lua)
value.into_lua(self.lua)
}
};
}
@@ -139,6 +142,8 @@ impl<'lua> ser::Serializer for Serializer<'lua> {
lua_serialize_number!(serialize_u32, u32);
lua_serialize_number!(serialize_i64, i64);
lua_serialize_number!(serialize_u64, u64);
lua_serialize_number!(serialize_i128, i128);
lua_serialize_number!(serialize_u128, u128);
lua_serialize_number!(serialize_f32, f32);
lua_serialize_number!(serialize_f64, f64);
@@ -315,17 +320,25 @@ impl<'lua> ser::SerializeSeq for SerializeVec<'lua> {
T: Serialize + ?Sized,
{
let lua = self.table.0.lua;
let state = lua.state();
let value = lua.to_value_with(value, self.options)?;
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 4)?;
let _sg = StackGuard::new(state);
check_stack(state, 4)?;
lua.push_ref(&self.table.0);
lua.push_value(value)?;
protect_lua!(lua.state, 2, 0, fn(state) {
if lua.unlikely_memory_error() {
let len = ffi::lua_rawlen(state, -2) as Integer;
ffi::lua_rawseti(state, -2, len + 1);
})
ffi::lua_pop(state, 1);
Ok(())
} else {
protect_lua!(state, 2, 0, fn(state) {
let len = ffi::lua_rawlen(state, -2) as Integer;
ffi::lua_rawseti(state, -2, len + 1);
})
}
}
}
+29 -15
View File
@@ -6,45 +6,56 @@ use std::u32;
pub struct StdLib(u32);
impl StdLib {
/// [`coroutine`](https://www.lua.org/manual/5.3/manual.html#6.2) library
/// [`coroutine`](https://www.lua.org/manual/5.4/manual.html#6.2) library
///
/// Requires `feature = "lua54/lua53/lua52"`
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52", doc))]
/// Requires `feature = "lua54/lua53/lua52/luau"`
#[cfg(any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "luau"
))]
pub const COROUTINE: StdLib = StdLib(1);
/// [`table`](https://www.lua.org/manual/5.3/manual.html#6.6) library
/// [`table`](https://www.lua.org/manual/5.4/manual.html#6.6) library
pub const TABLE: StdLib = StdLib(1 << 1);
/// [`io`](https://www.lua.org/manual/5.3/manual.html#6.8) library
/// [`io`](https://www.lua.org/manual/5.4/manual.html#6.8) library
#[cfg(not(feature = "luau"))]
#[cfg_attr(docsrs, doc(cfg(not(feature = "luau"))))]
pub const IO: StdLib = StdLib(1 << 2);
/// [`os`](https://www.lua.org/manual/5.3/manual.html#6.9) library
/// [`os`](https://www.lua.org/manual/5.4/manual.html#6.9) library
pub const OS: StdLib = StdLib(1 << 3);
/// [`string`](https://www.lua.org/manual/5.3/manual.html#6.4) library
/// [`string`](https://www.lua.org/manual/5.4/manual.html#6.4) library
pub const STRING: StdLib = StdLib(1 << 4);
/// [`utf8`](https://www.lua.org/manual/5.3/manual.html#6.5) library
/// [`utf8`](https://www.lua.org/manual/5.4/manual.html#6.5) library
///
/// Requires `feature = "lua54/lua53"`
#[cfg(any(feature = "lua54", feature = "lua53", doc))]
/// Requires `feature = "lua54/lua53/luau"`
#[cfg(any(feature = "lua54", feature = "lua53", feature = "luau"))]
pub const UTF8: StdLib = StdLib(1 << 5);
/// [`bit`](https://www.lua.org/manual/5.2/manual.html#6.7) library
///
/// Requires `feature = "lua52/luajit"`
#[cfg(any(feature = "lua52", feature = "luajit", doc))]
/// Requires `feature = "lua52/luajit/luau"`
#[cfg(any(feature = "lua52", feature = "luajit", feature = "luau", doc))]
pub const BIT: StdLib = StdLib(1 << 6);
/// [`math`](https://www.lua.org/manual/5.3/manual.html#6.7) library
/// [`math`](https://www.lua.org/manual/5.4/manual.html#6.7) library
pub const MATH: StdLib = StdLib(1 << 7);
/// [`package`](https://www.lua.org/manual/5.3/manual.html#6.3) library
/// [`package`](https://www.lua.org/manual/5.4/manual.html#6.3) library
#[cfg(not(feature = "luau"))]
#[cfg_attr(docsrs, doc(cfg(not(feature = "luau"))))]
pub const PACKAGE: StdLib = StdLib(1 << 8);
/// [`jit`](http://luajit.org/ext_jit.html) library
///
/// Requires `feature = "luajit"`
#[cfg(any(feature = "luajit", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luajit")))]
pub const JIT: StdLib = StdLib(1 << 9);
/// (**unsafe**) [`ffi`](http://luajit.org/ext_ffi.html) library
///
/// Requires `feature = "luajit"`
#[cfg(any(feature = "luajit", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luajit")))]
pub const FFI: StdLib = StdLib(1 << 30);
/// (**unsafe**) [`debug`](https://www.lua.org/manual/5.3/manual.html#6.10) library
/// (**unsafe**) [`debug`](https://www.lua.org/manual/5.4/manual.html#6.10) library
pub const DEBUG: StdLib = StdLib(1 << 31);
/// No libraries
@@ -52,7 +63,10 @@ impl StdLib {
/// (**unsafe**) All standard libraries
pub const ALL: StdLib = StdLib(u32::MAX);
/// The safe subset of the standard libraries
#[cfg(not(feature = "luau"))]
pub const ALL_SAFE: StdLib = StdLib((1 << 30) - 1);
#[cfg(feature = "luau")]
pub const ALL_SAFE: StdLib = StdLib(u32::MAX);
pub fn contains(self, lib: Self) -> bool {
(self & lib).0 != 0
+73 -12
View File
@@ -1,6 +1,8 @@
use std::borrow::Cow;
use std::borrow::{Borrow, Cow};
use std::hash::{Hash, Hasher};
use std::os::raw::c_void;
use std::string::String as StdString;
use std::{slice, str};
use std::{fmt, slice, str};
#[cfg(feature = "serialize")]
use {
@@ -11,12 +13,11 @@ use {
use crate::error::{Error, Result};
use crate::ffi;
use crate::types::LuaRef;
use crate::util::{assert_stack, StackGuard};
/// Handle to an internal Lua string.
///
/// Unlike Rust strings, Lua strings may not be valid UTF-8.
#[derive(Clone, Debug)]
#[derive(Clone)]
pub struct String<'lua>(pub(crate) LuaRef<'lua>);
impl<'lua> String<'lua> {
@@ -38,6 +39,7 @@ impl<'lua> String<'lua> {
/// # Ok(())
/// # }
/// ```
#[inline]
pub fn to_str(&self) -> Result<&str> {
str::from_utf8(self.as_bytes()).map_err(|e| Error::FromLuaConversionError {
from: "string",
@@ -64,6 +66,7 @@ impl<'lua> String<'lua> {
/// # Ok(())
/// # }
/// ```
#[inline]
pub fn to_string_lossy(&self) -> Cow<'_, str> {
StdString::from_utf8_lossy(self.as_bytes())
}
@@ -85,6 +88,7 @@ impl<'lua> String<'lua> {
/// # Ok(())
/// # }
/// ```
#[inline]
pub fn as_bytes(&self) -> &[u8] {
let nulled = self.as_bytes_with_nul();
&nulled[..nulled.len() - 1]
@@ -92,25 +96,61 @@ impl<'lua> String<'lua> {
/// Get the bytes that make up this string, including the trailing nul byte.
pub fn as_bytes_with_nul(&self) -> &[u8] {
let lua = self.0.lua;
let ref_thread = self.0.lua.ref_thread();
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 1);
lua.push_ref(&self.0);
mlua_debug_assert!(
ffi::lua_type(lua.state, -1) == ffi::LUA_TSTRING,
ffi::lua_type(ref_thread, self.0.index) == ffi::LUA_TSTRING,
"string ref is not string type"
);
let mut size = 0;
// This will not trigger a 'm' error, because the reference is guaranteed to be of
// string type
let data = ffi::lua_tolstring(lua.state, -1, &mut size);
let data = ffi::lua_tolstring(ref_thread, self.0.index, &mut size);
slice::from_raw_parts(data as *const u8, size + 1)
}
}
/// Converts the string to a generic C pointer.
///
/// There is no way to convert the pointer back to its original value.
///
/// Typically this function is used only for hashing and debug information.
#[inline]
pub fn to_pointer(&self) -> *const c_void {
let ref_thread = self.0.lua.ref_thread();
unsafe { ffi::lua_topointer(ref_thread, self.0.index) }
}
}
impl<'lua> fmt::Debug for String<'lua> {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
let bytes = self.as_bytes();
// Check if the string is valid utf8
if let Ok(s) = str::from_utf8(bytes) {
return s.fmt(f);
}
// Format as bytes
write!(f, "b\"")?;
for &b in bytes {
// https://doc.rust-lang.org/reference/tokens.html#byte-escapes
match b {
b'\n' => write!(f, "\\n")?,
b'\r' => write!(f, "\\r")?,
b'\t' => write!(f, "\\t")?,
b'\\' | b'"' => write!(f, "\\{}", b as char)?,
b'\0' => write!(f, "\\0")?,
// ASCII printable
0x20..=0x7e => write!(f, "{}", b as char)?,
_ => write!(f, "\\x{b:02x}")?,
}
}
write!(f, "\"")?;
Ok(())
}
}
impl<'lua> AsRef<[u8]> for String<'lua> {
@@ -119,6 +159,12 @@ impl<'lua> AsRef<[u8]> for String<'lua> {
}
}
impl<'lua> Borrow<[u8]> for String<'lua> {
fn borrow(&self) -> &[u8] {
self.as_bytes()
}
}
// Lua strings are basically &[u8] slices, so implement PartialEq for anything resembling that.
//
// This makes our `String` comparable with `Vec<u8>`, `[u8]`, `&str`, `String` and `mlua::String`
@@ -129,13 +175,21 @@ impl<'lua> AsRef<[u8]> for String<'lua> {
// in other ways.
impl<'lua, T> PartialEq<T> for String<'lua>
where
T: AsRef<[u8]>,
T: AsRef<[u8]> + ?Sized,
{
fn eq(&self, other: &T) -> bool {
self.as_bytes() == other.as_ref()
}
}
impl<'lua> Eq for String<'lua> {}
impl<'lua> Hash for String<'lua> {
fn hash<H: Hasher>(&self, state: &mut H) {
self.as_bytes().hash(state);
}
}
#[cfg(feature = "serialize")]
impl<'lua> Serialize for String<'lua> {
fn serialize<S>(&self, serializer: S) -> StdResult<S::Ok, S::Error>
@@ -148,3 +202,10 @@ impl<'lua> Serialize for String<'lua> {
}
}
}
#[cfg(test)]
mod assertions {
use super::*;
static_assertions::assert_not_impl_any!(String: Send);
}
+437 -114
View File
@@ -1,17 +1,20 @@
use std::marker::PhantomData;
use std::os::raw::c_void;
#[cfg(feature = "serialize")]
use {
serde::ser::{Serialize, SerializeMap, SerializeSeq, Serializer},
std::result::Result as StdResult,
rustc_hash::FxHashSet,
serde::ser::{self, Serialize, SerializeMap, SerializeSeq, Serializer},
std::{cell::RefCell, result::Result as StdResult},
};
use crate::error::{Error, Result};
use crate::ffi;
use crate::function::Function;
use crate::private::Sealed;
use crate::types::{Integer, LuaRef};
use crate::util::{assert_stack, check_stack, StackGuard};
use crate::value::{FromLua, FromLuaMulti, Nil, ToLua, ToLuaMulti, Value};
use crate::value::{FromLua, FromLuaMulti, IntoLua, IntoLuaMulti, Nil, Value};
#[cfg(feature = "async")]
use {futures_core::future::LocalBoxFuture, futures_util::future};
@@ -20,6 +23,20 @@ use {futures_core::future::LocalBoxFuture, futures_util::future};
#[derive(Clone, Debug)]
pub struct Table<'lua>(pub(crate) LuaRef<'lua>);
/// Owned handle to an internal Lua table.
#[cfg(feature = "unstable")]
#[cfg_attr(docsrs, doc(cfg(feature = "unstable")))]
#[derive(Clone, Debug)]
pub struct OwnedTable(pub(crate) crate::types::LuaOwnedRef);
#[cfg(feature = "unstable")]
impl OwnedTable {
/// Get borrowed handle to the underlying Lua table.
pub const fn to_ref(&self) -> Table {
Table(self.0.to_ref())
}
}
#[allow(clippy::len_without_is_empty)]
impl<'lua> Table<'lua> {
/// Sets a key-value pair in the table.
@@ -55,19 +72,25 @@ impl<'lua> Table<'lua> {
/// ```
///
/// [`raw_set`]: #method.raw_set
pub fn set<K: ToLua<'lua>, V: ToLua<'lua>>(&self, key: K, value: V) -> Result<()> {
let lua = self.0.lua;
let key = key.to_lua(lua)?;
let value = value.to_lua(lua)?;
pub fn set<K: IntoLua<'lua>, V: IntoLua<'lua>>(&self, key: K, value: V) -> Result<()> {
// Fast track
if !self.has_metatable() {
return self.raw_set(key, value);
}
let lua = self.0.lua;
let key = key.into_lua(lua)?;
let value = value.into_lua(lua)?;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 5)?;
let _sg = StackGuard::new(state);
check_stack(state, 5)?;
lua.push_ref(&self.0);
lua.push_value(key)?;
lua.push_value(value)?;
protect_lua!(lua.state, 3, 0, fn(state) ffi::lua_settable(state, -3))
protect_lua!(state, 3, 0, fn(state) ffi::lua_settable(state, -3))
}
}
@@ -95,17 +118,23 @@ impl<'lua> Table<'lua> {
/// ```
///
/// [`raw_get`]: #method.raw_get
pub fn get<K: ToLua<'lua>, V: FromLua<'lua>>(&self, key: K) -> Result<V> {
pub fn get<K: IntoLua<'lua>, V: FromLua<'lua>>(&self, key: K) -> Result<V> {
// Fast track
if !self.has_metatable() {
return self.raw_get(key);
}
let lua = self.0.lua;
let key = key.to_lua(lua)?;
let state = lua.state();
let key = key.into_lua(lua)?;
let value = unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 4)?;
let _sg = StackGuard::new(state);
check_stack(state, 4)?;
lua.push_ref(&self.0);
lua.push_value(key)?;
protect_lua!(lua.state, 2, 1, fn(state) ffi::lua_gettable(state, -2))?;
protect_lua!(state, 2, 1, fn(state) ffi::lua_gettable(state, -2))?;
lua.pop_value()
};
@@ -113,19 +142,57 @@ impl<'lua> Table<'lua> {
}
/// Checks whether the table contains a non-nil value for `key`.
pub fn contains_key<K: ToLua<'lua>>(&self, key: K) -> Result<bool> {
let lua = self.0.lua;
let key = key.to_lua(lua)?;
pub fn contains_key<K: IntoLua<'lua>>(&self, key: K) -> Result<bool> {
Ok(self.get::<_, Value>(key)? != Value::Nil)
}
/// Appends a value to the back of the table.
pub fn push<V: IntoLua<'lua>>(&self, value: V) -> Result<()> {
// Fast track
if !self.has_metatable() {
return self.raw_push(value);
}
let lua = self.0.lua;
let state = lua.state();
let value = value.into_lua(lua)?;
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 4)?;
let _sg = StackGuard::new(state);
check_stack(state, 4)?;
lua.push_ref(&self.0);
lua.push_value(key)?;
protect_lua!(lua.state, 2, 1, fn(state) ffi::lua_gettable(state, -2))?;
Ok(ffi::lua_isnil(lua.state, -1) == 0)
lua.push_value(value)?;
protect_lua!(state, 2, 0, fn(state) {
let len = ffi::luaL_len(state, -2) as Integer;
ffi::lua_seti(state, -2, len + 1);
})?
}
Ok(())
}
/// Removes the last element from the table and returns it.
pub fn pop<V: FromLua<'lua>>(&self) -> Result<V> {
// Fast track
if !self.has_metatable() {
return self.raw_pop();
}
let lua = self.0.lua;
let state = lua.state();
let value = unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 4)?;
lua.push_ref(&self.0);
protect_lua!(state, 1, 1, fn(state) {
let len = ffi::luaL_len(state, -1) as Integer;
ffi::lua_geti(state, -1, len);
ffi::lua_pushnil(state);
ffi::lua_seti(state, -3, len);
})?;
lua.pop_value()
};
V::from_lua(value, lua)
}
/// Compares two tables for equality.
@@ -185,34 +252,46 @@ impl<'lua> Table<'lua> {
}
/// Sets a key-value pair without invoking metamethods.
pub fn raw_set<K: ToLua<'lua>, V: ToLua<'lua>>(&self, key: K, value: V) -> Result<()> {
pub fn raw_set<K: IntoLua<'lua>, V: IntoLua<'lua>>(&self, key: K, value: V) -> Result<()> {
#[cfg(feature = "luau")]
self.check_readonly_write()?;
let lua = self.0.lua;
let key = key.to_lua(lua)?;
let value = value.to_lua(lua)?;
let state = lua.state();
let key = key.into_lua(lua)?;
let value = value.into_lua(lua)?;
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 5)?;
let _sg = StackGuard::new(state);
check_stack(state, 5)?;
lua.push_ref(&self.0);
lua.push_value(key)?;
lua.push_value(value)?;
protect_lua!(lua.state, 3, 0, fn(state) ffi::lua_rawset(state, -3))
if lua.unlikely_memory_error() {
ffi::lua_rawset(state, -3);
ffi::lua_pop(state, 1);
Ok(())
} else {
protect_lua!(state, 3, 0, fn(state) ffi::lua_rawset(state, -3))
}
}
}
/// Gets the value associated to `key` without invoking metamethods.
pub fn raw_get<K: ToLua<'lua>, V: FromLua<'lua>>(&self, key: K) -> Result<V> {
pub fn raw_get<K: IntoLua<'lua>, V: FromLua<'lua>>(&self, key: K) -> Result<V> {
let lua = self.0.lua;
let key = key.to_lua(lua)?;
let state = lua.state();
let key = key.into_lua(lua)?;
let value = unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 3)?;
let _sg = StackGuard::new(state);
check_stack(state, 3)?;
lua.push_ref(&self.0);
lua.push_value(key)?;
ffi::lua_rawget(lua.state, -2);
ffi::lua_rawget(state, -2);
lua.pop_value()
};
@@ -221,21 +300,23 @@ impl<'lua> Table<'lua> {
/// Inserts element value at position `idx` to the table, shifting up the elements from `table[idx]`.
/// The worst case complexity is O(n), where n is the table length.
pub fn raw_insert<V: ToLua<'lua>>(&self, idx: Integer, value: V) -> Result<()> {
pub fn raw_insert<V: IntoLua<'lua>>(&self, idx: Integer, value: V) -> Result<()> {
let lua = self.0.lua;
let state = lua.state();
let size = self.raw_len();
if idx < 1 || idx > size + 1 {
return Err(Error::RuntimeError("index out of bounds".to_string()));
}
let value = value.to_lua(lua)?;
let value = value.into_lua(lua)?;
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 5)?;
let _sg = StackGuard::new(state);
check_stack(state, 5)?;
lua.push_ref(&self.0);
lua.push_value(value)?;
protect_lua!(lua.state, 2, 0, |state| {
protect_lua!(state, 2, 0, |state| {
for i in (idx..=size).rev() {
// table[i+1] = table[i]
ffi::lua_rawgeti(state, -2, i);
@@ -246,6 +327,58 @@ impl<'lua> Table<'lua> {
}
}
/// Appends a value to the back of the table without invoking metamethods.
pub fn raw_push<V: IntoLua<'lua>>(&self, value: V) -> Result<()> {
#[cfg(feature = "luau")]
self.check_readonly_write()?;
let lua = self.0.lua;
let state = lua.state();
let value = value.into_lua(lua)?;
unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 4)?;
lua.push_ref(&self.0);
lua.push_value(value)?;
unsafe fn callback(state: *mut ffi::lua_State) {
let len = ffi::lua_rawlen(state, -2) as Integer;
ffi::lua_rawseti(state, -2, len + 1);
}
if lua.unlikely_memory_error() {
callback(state);
} else {
protect_lua!(state, 2, 0, fn(state) callback(state))?;
}
}
Ok(())
}
/// Removes the last element from the table and returns it, without invoking metamethods.
pub fn raw_pop<V: FromLua<'lua>>(&self) -> Result<V> {
#[cfg(feature = "luau")]
self.check_readonly_write()?;
let lua = self.0.lua;
let state = lua.state();
let value = unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 3)?;
lua.push_ref(&self.0);
let len = ffi::lua_rawlen(state, -1) as Integer;
ffi::lua_rawgeti(state, -1, len);
// Set slot to nil (it must be safe to do)
ffi::lua_pushnil(state);
ffi::lua_rawseti(state, -3, len);
lua.pop_value()
};
V::from_lua(value, lua)
}
/// Removes a key from the table.
///
/// If `key` is an integer, mlua shifts down the elements from `table[key+1]`,
@@ -253,9 +386,10 @@ impl<'lua> Table<'lua> {
/// where n is the table length.
///
/// For other key types this is equivalent to setting `table[key] = nil`.
pub fn raw_remove<K: ToLua<'lua>>(&self, key: K) -> Result<()> {
pub fn raw_remove<K: IntoLua<'lua>>(&self, key: K) -> Result<()> {
let lua = self.0.lua;
let key = key.to_lua(lua)?;
let state = lua.state();
let key = key.into_lua(lua)?;
match key {
Value::Integer(idx) => {
let size = self.raw_len();
@@ -263,11 +397,11 @@ impl<'lua> Table<'lua> {
return Err(Error::RuntimeError("index out of bounds".to_string()));
}
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 4)?;
let _sg = StackGuard::new(state);
check_stack(state, 4)?;
lua.push_ref(&self.0);
protect_lua!(lua.state, 1, 0, |state| {
protect_lua!(state, 1, 0, |state| {
for i in idx..size {
ffi::lua_rawgeti(state, -1, i + 1);
ffi::lua_rawseti(state, -2, i);
@@ -281,32 +415,73 @@ impl<'lua> Table<'lua> {
}
}
/// Clears the table, removing all keys and values from array and hash parts,
/// without invoking metamethods.
///
/// This method is useful to clear the table while keeping its capacity.
pub fn clear(&self) -> Result<()> {
#[cfg(feature = "luau")]
self.check_readonly_write()?;
let lua = self.0.lua;
unsafe {
#[cfg(feature = "luau")]
ffi::lua_cleartable(lua.ref_thread(), self.0.index);
#[cfg(not(feature = "luau"))]
{
let state = lua.state();
check_stack(state, 4)?;
lua.push_ref(&self.0);
// Clear array part
for i in 1..=ffi::lua_rawlen(state, -1) {
ffi::lua_pushnil(state);
ffi::lua_rawseti(state, -2, i as Integer);
}
// Clear hash part
// It must be safe as long as we don't use invalid keys
ffi::lua_pushnil(state);
while ffi::lua_next(state, -2) != 0 {
ffi::lua_pop(state, 1); // pop value
ffi::lua_pushvalue(state, -1); // copy key
ffi::lua_pushnil(state);
ffi::lua_rawset(state, -4);
}
}
}
Ok(())
}
/// Returns the result of the Lua `#` operator.
///
/// This might invoke the `__len` metamethod. Use the [`raw_len`] method if that is not desired.
///
/// [`raw_len`]: #method.raw_len
pub fn len(&self) -> Result<Integer> {
// Fast track
if !self.has_metatable() {
return Ok(self.raw_len());
}
let lua = self.0.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 4)?;
let _sg = StackGuard::new(state);
check_stack(state, 4)?;
lua.push_ref(&self.0);
protect_lua!(lua.state, 1, 0, |state| ffi::luaL_len(state, -1))
protect_lua!(state, 1, 0, |state| ffi::luaL_len(state, -1))
}
}
/// Returns the result of the Lua `#` operator, without invoking the `__len` metamethod.
pub fn raw_len(&self) -> Integer {
let lua = self.0.lua;
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 1);
lua.push_ref(&self.0);
ffi::lua_rawlen(lua.state, -1) as Integer
}
let ref_thread = self.0.lua.ref_thread();
unsafe { ffi::lua_rawlen(ref_thread, self.0.index) as Integer }
}
/// Returns a reference to the metatable of this table, or `None` if no metatable is set.
@@ -314,12 +489,13 @@ impl<'lua> Table<'lua> {
/// Unlike the `getmetatable` Lua function, this method ignores the `__metatable` field.
pub fn get_metatable(&self) -> Option<Table<'lua>> {
let lua = self.0.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 2);
let _sg = StackGuard::new(state);
assert_stack(state, 2);
lua.push_ref(&self.0);
if ffi::lua_getmetatable(lua.state, -1) == 0 {
if ffi::lua_getmetatable(state, -1) == 0 {
None
} else {
Some(Table(lua.pop_ref()))
@@ -332,21 +508,88 @@ impl<'lua> Table<'lua> {
/// If `metatable` is `None`, the metatable is removed (if no metatable is set, this does
/// nothing).
pub fn set_metatable(&self, metatable: Option<Table<'lua>>) {
// Workaround to throw readonly error without returning Result
#[cfg(feature = "luau")]
if self.is_readonly() {
panic!("attempt to modify a readonly table");
}
let lua = self.0.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 2);
let _sg = StackGuard::new(state);
assert_stack(state, 2);
lua.push_ref(&self.0);
if let Some(metatable) = metatable {
lua.push_ref(&metatable.0);
} else {
ffi::lua_pushnil(lua.state);
ffi::lua_pushnil(state);
}
ffi::lua_setmetatable(lua.state, -2);
ffi::lua_setmetatable(state, -2);
}
}
/// Returns true if the table has metatable attached.
#[doc(hidden)]
#[inline]
pub fn has_metatable(&self) -> bool {
let ref_thread = self.0.lua.ref_thread();
unsafe {
if ffi::lua_getmetatable(ref_thread, self.0.index) != 0 {
ffi::lua_pop(ref_thread, 1);
return true;
}
}
false
}
/// Sets `readonly` attribute on the table.
///
/// Requires `feature = "luau"`
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
pub fn set_readonly(&self, enabled: bool) {
let ref_thread = self.0.lua.ref_thread();
unsafe {
ffi::lua_setreadonly(ref_thread, self.0.index, enabled as _);
if !enabled {
// Reset "safeenv" flag
ffi::lua_setsafeenv(ref_thread, self.0.index, 0);
}
}
}
/// Returns `readonly` attribute of the table.
///
/// Requires `feature = "luau"`
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
pub fn is_readonly(&self) -> bool {
let ref_thread = self.0.lua.ref_thread();
unsafe { ffi::lua_getreadonly(ref_thread, self.0.index) != 0 }
}
/// Converts the table to a generic C pointer.
///
/// Different tables will give different pointers.
/// There is no way to convert the pointer back to its original value.
///
/// Typically this function is used only for hashing and debug information.
#[inline]
pub fn to_pointer(&self) -> *const c_void {
let ref_thread = self.0.lua.ref_thread();
unsafe { ffi::lua_topointer(ref_thread, self.0.index) }
}
/// Convert this handle to owned version.
#[cfg(feature = "unstable")]
#[cfg_attr(docsrs, doc(cfg(feature = "unstable")))]
#[inline]
pub fn into_owned(self) -> OwnedTable {
OwnedTable(self.0.into_owned())
}
/// Consume this table and return an iterator over the pairs of the table.
///
/// This works like the Lua `pairs` function, but does not invoke the `__pairs` metamethod.
@@ -378,8 +621,8 @@ impl<'lua> Table<'lua> {
/// # }
/// ```
///
/// [`Result`]: type.Result.html
/// [Lua manual]: http://www.lua.org/manual/5.3/manual.html#pdf-next
/// [`Result`]: crate::Result
/// [Lua manual]: http://www.lua.org/manual/5.4/manual.html#pdf-next
pub fn pairs<K: FromLua<'lua>, V: FromLua<'lua>>(self) -> TablePairs<'lua, K, V> {
TablePairs {
table: self.0,
@@ -427,8 +670,8 @@ impl<'lua> Table<'lua> {
/// ```
///
/// [`pairs`]: #method.pairs
/// [`Result`]: type.Result.html
/// [Lua manual]: http://www.lua.org/manual/5.3/manual.html#pdf-next
/// [`Result`]: crate::Result
/// [Lua manual]: http://www.lua.org/manual/5.4/manual.html#pdf-next
pub fn sequence_values<V: FromLua<'lua>>(self) -> TableSequence<'lua, V> {
TableSequence {
table: self.0,
@@ -454,7 +697,7 @@ impl<'lua> Table<'lua> {
}
}
#[cfg(any(feature = "async", feature = "serialize"))]
#[cfg(any(feature = "serialize"))]
pub(crate) fn raw_sequence_values_by_len<V: FromLua<'lua>>(
self,
len: Option<Integer>,
@@ -472,18 +715,29 @@ impl<'lua> Table<'lua> {
#[cfg(feature = "serialize")]
pub(crate) fn is_array(&self) -> bool {
let lua = self.0.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 3);
let _sg = StackGuard::new(state);
assert_stack(state, 3);
lua.push_ref(&self.0);
if ffi::lua_getmetatable(lua.state, -1) == 0 {
if ffi::lua_getmetatable(state, -1) == 0 {
return false;
}
crate::serde::push_array_metatable(lua.state);
ffi::lua_rawequal(lua.state, -1, -2) != 0
crate::serde::push_array_metatable(state);
ffi::lua_rawequal(state, -1, -2) != 0
}
}
#[cfg(feature = "luau")]
#[inline(always)]
pub(crate) fn check_readonly_write(&self) -> Result<()> {
if self.is_readonly() {
let err = "attempt to modify a readonly table".to_string();
return Err(Error::RuntimeError(err));
}
Ok(())
}
}
impl<'lua> PartialEq for Table<'lua> {
@@ -500,7 +754,26 @@ impl<'lua> AsRef<Table<'lua>> for Table<'lua> {
}
/// An extension trait for `Table`s that provides a variety of convenient functionality.
pub trait TableExt<'lua> {
pub trait TableExt<'lua>: Sealed {
/// Calls the table as function assuming it has `__call` metamethod.
///
/// The metamethod is called with the table as its first argument, followed by the passed arguments.
fn call<A, R>(&self, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>;
/// Asynchronously calls the table as function assuming it has `__call` metamethod.
///
/// The metamethod is called with the table as its first argument, followed by the passed arguments.
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
fn call_async<'fut, A, R>(&self, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut;
/// Gets the function associated to `key` from the table and executes it,
/// passing the table itself along with `args` as function arguments.
///
@@ -510,8 +783,8 @@ pub trait TableExt<'lua> {
/// This might invoke the `__index` metamethod.
fn call_method<K, A, R>(&self, key: K, args: A) -> Result<R>
where
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>;
/// Gets the function associated to `key` from the table and executes it,
@@ -523,8 +796,8 @@ pub trait TableExt<'lua> {
/// This might invoke the `__index` metamethod.
fn call_function<K, A, R>(&self, key: K, args: A) -> Result<R>
where
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>;
/// Gets the function associated to `key` from the table and asynchronously executes it,
@@ -538,8 +811,8 @@ pub trait TableExt<'lua> {
fn call_async_method<'fut, K, A, R>(&self, key: K, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut;
/// Gets the function associated to `key` from the table and asynchronously executes it,
@@ -557,28 +830,47 @@ pub trait TableExt<'lua> {
) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut;
}
impl<'lua> TableExt<'lua> for Table<'lua> {
fn call<A, R>(&self, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
// Convert table to a function and call via pcall that respects the `__call` metamethod.
Function(self.0.clone()).call(args)
}
#[cfg(feature = "async")]
fn call_async<'fut, A, R>(&self, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
Function(self.0.clone()).call_async(args)
}
fn call_method<K, A, R>(&self, key: K, args: A) -> Result<R>
where
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
let lua = self.0.lua;
let mut args = args.to_lua_multi(lua)?;
let mut args = args.into_lua_multi(lua)?;
args.push_front(Value::Table(self.clone()));
self.get::<_, Function>(key)?.call(args)
}
fn call_function<K, A, R>(&self, key: K, args: A) -> Result<R>
where
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
self.get::<_, Function>(key)?.call(args)
@@ -588,12 +880,12 @@ impl<'lua> TableExt<'lua> for Table<'lua> {
fn call_async_method<'fut, K, A, R>(&self, key: K, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
let lua = self.0.lua;
let mut args = match args.to_lua_multi(lua) {
let mut args = match args.into_lua_multi(lua) {
Ok(args) => args,
Err(e) => return Box::pin(future::err(e)),
};
@@ -605,8 +897,8 @@ impl<'lua> TableExt<'lua> for Table<'lua> {
fn call_async_function<'fut, K, A, R>(&self, key: K, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
K: ToLua<'lua>,
A: ToLuaMulti<'lua>,
K: IntoLua<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
match self.get::<_, Function>(key) {
@@ -622,22 +914,41 @@ impl<'lua> Serialize for Table<'lua> {
where
S: Serializer,
{
let len = self.raw_len() as usize;
if len > 0 || self.is_array() {
let mut seq = serializer.serialize_seq(Some(len))?;
for v in self.clone().raw_sequence_values_by_len::<Value>(None) {
let v = v.map_err(serde::ser::Error::custom)?;
seq.serialize_element(&v)?;
}
return seq.end();
thread_local! {
static VISITED: RefCell<FxHashSet<*const c_void>> = RefCell::new(FxHashSet::default());
}
let mut map = serializer.serialize_map(None)?;
for kv in self.clone().pairs::<Value, Value>() {
let (k, v) = kv.map_err(serde::ser::Error::custom)?;
map.serialize_entry(&k, &v)?;
}
map.end()
let ptr = self.to_pointer();
let res = VISITED.with(|visited| {
{
let mut visited = visited.borrow_mut();
if visited.contains(&ptr) {
return Err(ser::Error::custom("recursive table detected"));
}
visited.insert(ptr);
}
let len = self.raw_len() as usize;
if len > 0 || self.is_array() {
let mut seq = serializer.serialize_seq(Some(len))?;
for v in self.clone().raw_sequence_values_by_len::<Value>(None) {
let v = v.map_err(serde::ser::Error::custom)?;
seq.serialize_element(&v)?;
}
return seq.end();
}
let mut map = serializer.serialize_map(None)?;
for kv in self.clone().pairs::<Value, Value>() {
let (k, v) = kv.map_err(serde::ser::Error::custom)?;
map.serialize_entry(&k, &v)?;
}
map.end()
});
VISITED.with(|visited| {
visited.borrow_mut().remove(&ptr);
});
res
}
}
@@ -645,7 +956,7 @@ impl<'lua> Serialize for Table<'lua> {
///
/// This struct is created by the [`Table::pairs`] method.
///
/// [`Table::pairs`]: struct.Table.html#method.pairs
/// [`Table::pairs`]: crate::Table::pairs
pub struct TablePairs<'lua, K, V> {
table: LuaRef<'lua>,
key: Option<Value<'lua>>,
@@ -662,15 +973,16 @@ where
fn next(&mut self) -> Option<Self::Item> {
if let Some(prev_key) = self.key.take() {
let lua = self.table.lua;
let state = lua.state();
let res = (|| unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 5)?;
let _sg = StackGuard::new(state);
check_stack(state, 5)?;
lua.push_ref(&self.table);
lua.push_value(prev_key)?;
let next = protect_lua!(lua.state, 2, ffi::LUA_MULTRET, |state| {
let next = protect_lua!(state, 2, ffi::LUA_MULTRET, |state| {
ffi::lua_next(state, -2)
})?;
if next != 0 {
@@ -704,7 +1016,7 @@ where
///
/// This struct is created by the [`Table::sequence_values`] method.
///
/// [`Table::sequence_values`]: struct.Table.html#method.sequence_values
/// [`Table::sequence_values`]: crate::Table::sequence_values
pub struct TableSequence<'lua, V> {
table: LuaRef<'lua>,
index: Option<Integer>,
@@ -722,16 +1034,17 @@ where
fn next(&mut self) -> Option<Self::Item> {
if let Some(index) = self.index.take() {
let lua = self.table.lua;
let state = lua.state();
let res = (|| unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 1 + if self.raw { 0 } else { 3 })?;
let _sg = StackGuard::new(state);
check_stack(state, 1 + if self.raw { 0 } else { 3 })?;
lua.push_ref(&self.table);
let res = if self.raw {
ffi::lua_rawgeti(lua.state, -1, index)
ffi::lua_rawgeti(state, -1, index)
} else {
protect_lua!(lua.state, 1, 1, |state| ffi::lua_geti(state, -1, index))?
protect_lua!(state, 1, 1, |state| ffi::lua_geti(state, -1, index))?
};
match res {
ffi::LUA_TNIL if index > self.len.unwrap_or(0) => Ok(None),
@@ -752,3 +1065,13 @@ where
}
}
}
#[cfg(test)]
mod assertions {
use super::*;
static_assertions::assert_not_impl_any!(Table: Send);
#[cfg(feature = "unstable")]
static_assertions::assert_not_impl_any!(OwnedTable: Send);
}
+197 -82
View File
@@ -4,26 +4,27 @@ use std::os::raw::c_int;
use crate::error::{Error, Result};
use crate::ffi;
use crate::types::LuaRef;
use crate::util::{assert_stack, check_stack, error_traceback, pop_error, StackGuard};
use crate::value::{FromLuaMulti, MultiValue, ToLuaMulti};
use crate::util::{check_stack, error_traceback_thread, pop_error, StackGuard};
use crate::value::{FromLuaMulti, IntoLuaMulti};
#[cfg(any(feature = "lua54", all(feature = "luajit", feature = "vendored"), doc))]
#[cfg(any(
feature = "lua54",
all(feature = "luajit", feature = "vendored"),
feature = "luau",
))]
use crate::function::Function;
#[cfg(feature = "async")]
use {
crate::{
lua::{ASYNC_POLL_PENDING, WAKER_REGISTRY_KEY},
util::get_gc_userdata,
value::Value,
lua::{Lua, ASYNC_POLL_PENDING},
value::{MultiValue, Value},
},
futures_core::{future::Future, stream::Stream},
std::{
cell::RefCell,
marker::PhantomData,
mem,
os::raw::c_void,
pin::Pin,
ptr::NonNull,
task::{Context, Poll, Waker},
},
};
@@ -35,7 +36,7 @@ pub enum ThreadStatus {
///
/// If a thread is in this state, it can be resumed by calling [`Thread::resume`].
///
/// [`Thread::resume`]: struct.Thread.html#method.resume
/// [`Thread::resume`]: crate::Thread::resume
Resumable,
/// Either the thread has finished executing, or the thread is currently running.
Unresumable,
@@ -51,15 +52,15 @@ pub struct Thread<'lua>(pub(crate) LuaRef<'lua>);
///
/// Requires `feature = "async"`
///
/// [`Future`]: ../futures_core/future/trait.Future.html
/// [`Stream`]: ../futures_core/stream/trait.Stream.html
/// [`Future`]: futures_core::future::Future
/// [`Stream`]: futures_core::stream::Stream
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
#[derive(Debug)]
pub struct AsyncThread<'lua, R> {
thread: Thread<'lua>,
args0: RefCell<Option<Result<MultiValue<'lua>>>>,
args0: Option<Result<MultiValue<'lua>>>,
ret: PhantomData<R>,
recycle: bool,
}
impl<'lua> Thread<'lua> {
@@ -106,19 +107,19 @@ impl<'lua> Thread<'lua> {
/// ```
pub fn resume<A, R>(&self, args: A) -> Result<R>
where
A: ToLuaMulti<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
let lua = self.0.lua;
let args = args.to_lua_multi(lua)?;
let state = lua.state();
let mut args = args.into_lua_multi(lua)?;
let nargs = args.len() as c_int;
let results = unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, cmp::min(nargs + 1, 3))?;
let _sg = StackGuard::new(state);
check_stack(state, cmp::max(nargs + 1, 3))?;
lua.push_ref(&self.0);
let thread_state = ffi::lua_tothread(lua.state, -1);
ffi::lua_pop(lua.state, 1);
let thread_state = ffi::lua_tothread(lua.ref_thread(), self.0.index);
let status = ffi::lua_status(thread_state);
if status != ffi::LUA_YIELD && ffi::lua_gettop(thread_state) == 0 {
@@ -126,22 +127,30 @@ impl<'lua> Thread<'lua> {
}
check_stack(thread_state, nargs)?;
for arg in args {
for arg in args.drain_all() {
lua.push_value(arg)?;
}
ffi::lua_xmove(lua.state, thread_state, nargs);
ffi::lua_xmove(state, thread_state, nargs);
let mut nresults = 0;
let ret = ffi::lua_resume(thread_state, lua.state, nargs, &mut nresults as *mut c_int);
let ret = ffi::lua_resume(thread_state, state, nargs, &mut nresults as *mut c_int);
if ret != ffi::LUA_OK && ret != ffi::LUA_YIELD {
protect_lua!(lua.state, 0, 0, |_| error_traceback(thread_state))?;
return Err(pop_error(thread_state, ret));
if ret == ffi::LUA_ERRMEM {
// Don't call error handler for memory errors
return Err(pop_error(thread_state, ret));
}
check_stack(state, 3)?;
protect_lua!(state, 0, 1, |state| error_traceback_thread(
state,
thread_state
))?;
return Err(pop_error(state, ret));
}
let mut results = MultiValue::new();
check_stack(lua.state, nresults + 2)?; // 2 is extra for `lua.pop_value()` below
ffi::lua_xmove(thread_state, lua.state, nresults);
let mut results = args; // Reuse MultiValue container
check_stack(state, nresults + 2)?; // 2 is extra for `lua.pop_value()` below
ffi::lua_xmove(thread_state, state, nresults);
for _ in 0..nresults {
results.push_front(lua.pop_value());
@@ -155,12 +164,7 @@ impl<'lua> Thread<'lua> {
pub fn status(&self) -> ThreadStatus {
let lua = self.0.lua;
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 1);
lua.push_ref(&self.0);
let thread_state = ffi::lua_tothread(lua.state, -1);
ffi::lua_pop(lua.state, 1);
let thread_state = ffi::lua_tothread(lua.ref_thread(), self.0.index);
let status = ffi::lua_status(thread_state);
if status != ffi::LUA_OK && status != ffi::LUA_YIELD {
@@ -179,41 +183,59 @@ impl<'lua> Thread<'lua> {
/// Returns a error in case of either the original error that stopped the thread or errors
/// in closing methods.
///
/// In [LuaJIT]: resets to the initial state of a newly created Lua thread.
/// In [LuaJIT] and Luau: resets to the initial state of a newly created Lua thread.
/// Lua threads in arbitrary states (like yielded or errored) can be reset properly.
///
/// Sets a Lua function for the thread afterwards.
///
/// Requires `feature = "lua54"` OR `feature = "luajit,vendored"`
/// Requires `feature = "lua54"` OR `feature = "luajit,vendored"` OR `feature = "luau"`
///
/// [Lua 5.4]: https://www.lua.org/manual/5.4/manual.html#lua_resetthread
/// [LuaJIT]: https://github.com/openresty/luajit2#lua_resetthread
#[cfg(any(feature = "lua54", all(feature = "luajit", feature = "vendored"), doc))]
#[cfg(any(
feature = "lua54",
all(feature = "luajit", feature = "vendored"),
feature = "luau",
))]
pub fn reset(&self, func: Function<'lua>) -> Result<()> {
let lua = self.0.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(lua.state);
check_stack(lua.state, 2)?;
let _sg = StackGuard::new(state);
check_stack(state, 2)?;
lua.push_ref(&self.0);
let thread_state = ffi::lua_tothread(lua.state, -1);
let thread_state = ffi::lua_tothread(state, -1);
let ret = ffi::lua_resetthread(lua.state, thread_state);
if ret != ffi::LUA_OK {
return Err(pop_error(thread_state, ret));
#[cfg(feature = "lua54")]
let status = ffi::lua_resetthread(thread_state);
#[cfg(feature = "lua54")]
if status != ffi::LUA_OK {
return Err(pop_error(thread_state, status));
}
#[cfg(all(feature = "luajit", feature = "vendored"))]
ffi::lua_resetthread(state, thread_state);
#[cfg(feature = "luau")]
ffi::lua_resetthread(thread_state);
lua.push_ref(&func.0);
ffi::lua_xmove(lua.state, thread_state, 1);
ffi::lua_xmove(state, thread_state, 1);
#[cfg(feature = "luau")]
{
// Inherit `LUA_GLOBALSINDEX` from the caller
ffi::lua_xpush(state, thread_state, ffi::LUA_GLOBALSINDEX);
ffi::lua_replace(thread_state, ffi::LUA_GLOBALSINDEX);
}
Ok(())
}
}
/// Converts Thread to an AsyncThread which implements Future and Stream traits.
/// Converts Thread to an AsyncThread which implements [`Future`] and [`Stream`] traits.
///
/// `args` are passed as arguments to the thread function for first call.
/// The object call `resume()` while polling and also allows to run rust futures
/// The object calls [`resume()`] while polling and also allows to run rust futures
/// to completion using an executor.
///
/// Using AsyncThread as a Stream allows to iterate through `coroutine.yield()`
@@ -222,6 +244,10 @@ impl<'lua> Thread<'lua> {
///
/// Requires `feature = "async"`
///
/// [`Future`]: futures_core::future::Future
/// [`Stream`]: futures_core::stream::Stream
/// [`resume()`]: https://www.lua.org/manual/5.4/manual.html#lua_resume
///
/// # Examples
///
/// ```
@@ -255,14 +281,63 @@ impl<'lua> Thread<'lua> {
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
pub fn into_async<A, R>(self, args: A) -> AsyncThread<'lua, R>
where
A: ToLuaMulti<'lua>,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
let args = args.to_lua_multi(self.0.lua);
let args = args.into_lua_multi(self.0.lua);
AsyncThread {
thread: self,
args0: RefCell::new(Some(args)),
args0: Some(args),
ret: PhantomData,
recycle: false,
}
}
/// Enables sandbox mode on this thread.
///
/// Under the hood replaces the global environment table with a new table,
/// that performs writes locally and proxies reads to caller's global environment.
///
/// This mode ideally should be used together with the global sandbox mode [`Lua::sandbox()`].
///
/// Please note that Luau links environment table with chunk when loading it into Lua state.
/// Therefore you need to load chunks into a thread to link with the thread environment.
///
/// # Examples
///
/// ```
/// # use mlua::{Lua, Result};
/// # fn main() -> Result<()> {
/// let lua = Lua::new();
/// let thread = lua.create_thread(lua.create_function(|lua2, ()| {
/// lua2.load("var = 123").exec()?;
/// assert_eq!(lua2.globals().get::<_, u32>("var")?, 123);
/// Ok(())
/// })?)?;
/// thread.sandbox()?;
/// thread.resume(())?;
///
/// // The global environment should be unchanged
/// assert_eq!(lua.globals().get::<_, Option<u32>>("var")?, None);
/// # Ok(())
/// # }
/// ```
///
/// Requires `feature = "luau"`
#[cfg(any(feature = "luau", docsrs))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
#[doc(hidden)]
pub fn sandbox(&self) -> Result<()> {
let lua = self.0.lua;
let state = lua.state();
unsafe {
let thread = ffi::lua_tothread(lua.ref_thread(), self.0.index);
check_stack(thread, 1)?;
check_stack(state, 3)?;
// Inherit `LUA_GLOBALSINDEX` from the caller
ffi::lua_xpush(state, thread, ffi::LUA_GLOBALSINDEX);
ffi::lua_replace(thread, ffi::LUA_GLOBALSINDEX);
protect_lua!(state, 0, 0, |_| ffi::luaL_sandboxthread(thread))
}
}
}
@@ -273,6 +348,38 @@ impl<'lua> PartialEq for Thread<'lua> {
}
}
#[cfg(feature = "async")]
impl<'lua, R> AsyncThread<'lua, R> {
#[inline]
pub(crate) fn set_recyclable(&mut self, recyclable: bool) {
self.recycle = recyclable;
}
}
#[cfg(feature = "async")]
#[cfg(any(
feature = "lua54",
all(feature = "luajit", feature = "vendored"),
feature = "luau",
))]
impl<'lua, R> Drop for AsyncThread<'lua, R> {
fn drop(&mut self) {
if self.recycle {
unsafe {
let lua = self.thread.0.lua;
// For Lua 5.4 this also closes all pending to-be-closed variables
if !lua.recycle_thread(&mut self.thread) {
#[cfg(feature = "lua54")]
if self.thread.status() == ThreadStatus::Error {
let thread_state = ffi::lua_tothread(lua.ref_thread(), self.thread.0.index);
ffi::lua_resetthread(thread_state);
}
}
}
}
}
}
#[cfg(feature = "async")]
impl<'lua, R> Stream for AsyncThread<'lua, R>
where
@@ -288,11 +395,14 @@ where
_ => return Poll::Ready(None),
};
let _wg = WakerGuard::new(lua.state, cx.waker().clone());
let ret: MultiValue = if let Some(args) = self.args0.borrow_mut().take() {
self.thread.resume(args?)?
let _wg = WakerGuard::new(lua, cx.waker());
// This is safe as we are not moving the whole struct
let this = unsafe { self.get_unchecked_mut() };
let ret: MultiValue = if let Some(args) = this.args0.take() {
this.thread.resume(args?)?
} else {
self.thread.resume(())?
this.thread.resume(())?
};
if is_poll_pending(&ret) {
@@ -319,18 +429,21 @@ where
_ => return Poll::Ready(Err(Error::CoroutineInactive)),
};
let _wg = WakerGuard::new(lua.state, cx.waker().clone());
let ret: MultiValue = if let Some(args) = self.args0.borrow_mut().take() {
self.thread.resume(args?)?
let _wg = WakerGuard::new(lua, cx.waker());
// This is safe as we are not moving the whole struct
let this = unsafe { self.get_unchecked_mut() };
let ret: MultiValue = if let Some(args) = this.args0.take() {
this.thread.resume(args?)?
} else {
self.thread.resume(())?
this.thread.resume(())?
};
if is_poll_pending(&ret) {
return Poll::Pending;
}
if let ThreadStatus::Resumable = self.thread.status() {
if let ThreadStatus::Resumable = this.thread.status() {
// Ignore value returned via yield()
cx.waker().wake_by_ref();
return Poll::Pending;
@@ -344,45 +457,47 @@ where
#[inline(always)]
fn is_poll_pending(val: &MultiValue) -> bool {
match val.iter().enumerate().last() {
Some((1, Value::LightUserData(ud))) => {
ud.0 == &ASYNC_POLL_PENDING as *const u8 as *mut c_void
Some((0, Value::LightUserData(ud))) => {
std::ptr::eq(ud.0 as *const u8, &ASYNC_POLL_PENDING as *const u8)
}
_ => false,
}
}
#[cfg(feature = "async")]
struct WakerGuard(*mut ffi::lua_State, Option<Waker>);
struct WakerGuard<'lua, 'a> {
lua: &'lua Lua,
prev: NonNull<Waker>,
_phantom: PhantomData<&'a ()>,
}
#[cfg(feature = "async")]
impl WakerGuard {
pub fn new(state: *mut ffi::lua_State, waker: Waker) -> Result<WakerGuard> {
impl<'lua, 'a> WakerGuard<'lua, 'a> {
#[inline]
pub fn new(lua: &'lua Lua, waker: &'a Waker) -> Result<WakerGuard<'lua, 'a>> {
unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 3)?;
let waker_key = &WAKER_REGISTRY_KEY as *const u8 as *const c_void;
ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, waker_key);
let waker_slot = get_gc_userdata::<Option<Waker>>(state, -1).as_mut();
let old = mlua_expect!(waker_slot, "Waker is destroyed").replace(waker);
Ok(WakerGuard(state, old))
let prev = lua.set_waker(NonNull::from(waker));
Ok(WakerGuard {
lua,
prev,
_phantom: PhantomData,
})
}
}
}
#[cfg(feature = "async")]
impl Drop for WakerGuard {
impl<'lua, 'a> Drop for WakerGuard<'lua, 'a> {
fn drop(&mut self) {
let state = self.0;
unsafe {
let _sg = StackGuard::new(state);
assert_stack(state, 3);
let waker_key = &WAKER_REGISTRY_KEY as *const u8 as *const c_void;
ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, waker_key);
let waker_slot = get_gc_userdata::<Option<Waker>>(state, -1).as_mut();
mem::swap(mlua_expect!(waker_slot, "Waker is destroyed"), &mut self.1);
self.lua.set_waker(self.prev);
}
}
}
#[cfg(test)]
mod assertions {
use super::*;
static_assertions::assert_not_impl_any!(Thread: Send);
}
+172 -32
View File
@@ -1,16 +1,21 @@
use std::cell::RefCell;
use std::cell::UnsafeCell;
use std::hash::{Hash, Hasher};
use std::os::raw::{c_int, c_void};
use std::sync::atomic::{AtomicBool, Ordering};
use std::sync::{Arc, Mutex};
use std::{fmt, mem, ptr};
#[cfg(feature = "lua54")]
use std::ffi::CStr;
#[cfg(feature = "async")]
use futures_core::future::LocalBoxFuture;
use crate::error::Result;
use crate::ffi;
#[cfg(not(feature = "luau"))]
use crate::hook::Debug;
use crate::lua::Lua;
use crate::lua::{ExtraData, Lua};
use crate::util::{assert_stack, StackGuard};
use crate::value::MultiValue;
@@ -26,32 +31,48 @@ pub struct LightUserData(pub *mut c_void);
pub(crate) type Callback<'lua, 'a> =
Box<dyn Fn(&'lua Lua, MultiValue<'lua>) -> Result<MultiValue<'lua>> + 'a>;
pub(crate) struct CallbackUpvalue<'lua> {
pub(crate) lua: Lua,
pub(crate) func: Callback<'lua, 'static>,
pub(crate) struct Upvalue<T> {
pub(crate) data: T,
pub(crate) extra: Arc<UnsafeCell<ExtraData>>,
}
pub(crate) type CallbackUpvalue = Upvalue<Callback<'static, 'static>>;
#[cfg(feature = "async")]
pub(crate) type AsyncCallback<'lua, 'a> =
Box<dyn Fn(&'lua Lua, MultiValue<'lua>) -> LocalBoxFuture<'lua, Result<MultiValue<'lua>>> + 'a>;
#[cfg(feature = "async")]
pub(crate) struct AsyncCallbackUpvalue<'lua> {
pub(crate) lua: Lua,
pub(crate) func: AsyncCallback<'lua, 'static>,
}
pub(crate) type AsyncCallbackUpvalue = Upvalue<AsyncCallback<'static, 'static>>;
#[cfg(feature = "async")]
pub(crate) struct AsyncPollUpvalue<'lua> {
pub(crate) lua: Lua,
pub(crate) fut: LocalBoxFuture<'lua, Result<MultiValue<'lua>>>,
pub(crate) type AsyncPollUpvalue = Upvalue<LocalBoxFuture<'static, Result<MultiValue<'static>>>>;
/// Type to set next Luau VM action after executing interrupt function.
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
pub enum VmState {
Continue,
Yield,
}
#[cfg(feature = "send")]
pub(crate) type HookCallback = Arc<RefCell<dyn FnMut(&Lua, Debug) -> Result<()> + Send>>;
#[cfg(all(feature = "send", not(feature = "luau")))]
pub(crate) type HookCallback = Arc<dyn Fn(&Lua, Debug) -> Result<()> + Send>;
#[cfg(not(feature = "send"))]
pub(crate) type HookCallback = Arc<RefCell<dyn FnMut(&Lua, Debug) -> Result<()>>>;
#[cfg(all(not(feature = "send"), not(feature = "luau")))]
pub(crate) type HookCallback = Arc<dyn Fn(&Lua, Debug) -> Result<()>>;
#[cfg(all(feature = "luau", feature = "send"))]
pub(crate) type InterruptCallback = Arc<dyn Fn(&Lua) -> Result<VmState> + Send>;
#[cfg(all(feature = "luau", not(feature = "send")))]
pub(crate) type InterruptCallback = Arc<dyn Fn(&Lua) -> Result<VmState>>;
#[cfg(all(feature = "send", feature = "lua54"))]
pub(crate) type WarnCallback = Box<dyn Fn(&Lua, &CStr, bool) -> Result<()> + Send>;
#[cfg(all(not(feature = "send"), feature = "lua54"))]
pub(crate) type WarnCallback = Box<dyn Fn(&Lua, &CStr, bool) -> Result<()>>;
#[cfg(feature = "send")]
pub trait MaybeSend: Send {}
@@ -63,7 +84,7 @@ pub trait MaybeSend {}
#[cfg(not(feature = "send"))]
impl<T> MaybeSend for T {}
pub(crate) struct DestructedUserdataMT;
pub(crate) struct DestructedUserdata;
/// An auto generated key into the Lua registry.
///
@@ -71,17 +92,20 @@ pub(crate) struct DestructedUserdataMT;
/// garbage collected on Drop, but it can be removed with [`Lua::remove_registry_value`],
/// and instances not manually removed can be garbage collected with [`Lua::expire_registry_values`].
///
/// Be warned, If you place this into Lua via a `UserData` type or a rust callback, it is *very
/// Be warned, If you place this into Lua via a [`UserData`] type or a rust callback, it is *very
/// easy* to accidentally cause reference cycles that the Lua garbage collector cannot resolve.
/// Instead of placing a `RegistryKey` into a `UserData` type, prefer instead to use
/// [`UserData::set_user_value`] / [`UserData::get_user_value`].
/// Instead of placing a [`RegistryKey`] into a [`UserData`] type, prefer instead to use
/// [`AnyUserData::set_user_value`] / [`AnyUserData::get_user_value`].
///
/// [`Lua::remove_registry_value`]: struct.Lua.html#method.remove_registry_value
/// [`Lua::expire_registry_values`]: struct.Lua.html#method.expire_registry_values
/// [`UserData::set_user_value`]: struct.UserData.html#method.set_user_value
/// [`UserData::get_user_value`]: struct.UserData.html#method.get_user_value
/// [`UserData`]: crate::UserData
/// [`RegistryKey`]: crate::RegistryKey
/// [`Lua::remove_registry_value`]: crate::Lua::remove_registry_value
/// [`Lua::expire_registry_values`]: crate::Lua::expire_registry_values
/// [`AnyUserData::set_user_value`]: crate::AnyUserData::set_user_value
/// [`AnyUserData::get_user_value`]: crate::AnyUserData::get_user_value
pub struct RegistryKey {
pub(crate) registry_id: c_int,
pub(crate) is_nil: AtomicBool,
pub(crate) unref_list: Arc<Mutex<Option<Vec<c_int>>>>,
}
@@ -107,15 +131,27 @@ impl Eq for RegistryKey {}
impl Drop for RegistryKey {
fn drop(&mut self) {
let mut unref_list = mlua_expect!(self.unref_list.lock(), "unref list poisoned");
if let Some(list) = unref_list.as_mut() {
list.push(self.registry_id);
// We don't need to collect nil slot
if self.registry_id > ffi::LUA_REFNIL {
let mut unref_list = mlua_expect!(self.unref_list.lock(), "unref list poisoned");
if let Some(list) = unref_list.as_mut() {
list.push(self.registry_id);
}
}
}
}
impl RegistryKey {
// Destroys the RegistryKey without adding to the drop list
// Creates a new instance of `RegistryKey`
pub(crate) const fn new(id: c_int, unref_list: Arc<Mutex<Option<Vec<c_int>>>>) -> Self {
RegistryKey {
registry_id: id,
is_nil: AtomicBool::new(id == ffi::LUA_REFNIL),
unref_list,
}
}
// Destroys the `RegistryKey` without adding to the unref list
pub(crate) fn take(self) -> c_int {
let registry_id = self.registry_id;
unsafe {
@@ -124,11 +160,46 @@ impl RegistryKey {
}
registry_id
}
// Returns true if this `RegistryKey` holds a nil value
#[inline(always)]
pub(crate) fn is_nil(&self) -> bool {
self.is_nil.load(Ordering::Relaxed)
}
// Marks value of this `RegistryKey` as `Nil`
#[inline(always)]
pub(crate) fn set_nil(&self, enabled: bool) {
// We cannot replace previous value with nil in as this will break
// Lua mechanism to find free keys.
// Instead, we set a special flag to mark value as nil.
self.is_nil.store(enabled, Ordering::Relaxed);
}
}
pub(crate) struct LuaRef<'lua> {
pub(crate) lua: &'lua Lua,
pub(crate) index: c_int,
pub(crate) drop: bool,
}
impl<'lua> LuaRef<'lua> {
pub(crate) const fn new(lua: &'lua Lua, index: c_int) -> Self {
LuaRef {
lua,
index,
drop: true,
}
}
#[cfg(feature = "unstable")]
#[inline]
pub(crate) fn into_owned(self) -> LuaOwnedRef {
assert!(self.drop, "Cannot turn non-drop reference into owned");
let owned_ref = LuaOwnedRef::new(self.lua.clone(), self.index);
mem::forget(self);
owned_ref
}
}
impl<'lua> fmt::Debug for LuaRef<'lua> {
@@ -145,19 +216,88 @@ impl<'lua> Clone for LuaRef<'lua> {
impl<'lua> Drop for LuaRef<'lua> {
fn drop(&mut self) {
self.lua.drop_ref(self)
if self.drop {
self.lua.drop_ref_index(self.index);
}
}
}
impl<'lua> PartialEq for LuaRef<'lua> {
fn eq(&self, other: &Self) -> bool {
let lua = self.lua;
let state = lua.state();
unsafe {
let _sg = StackGuard::new(lua.state);
assert_stack(lua.state, 2);
let _sg = StackGuard::new(state);
assert_stack(state, 2);
lua.push_ref(self);
lua.push_ref(other);
ffi::lua_rawequal(lua.state, -1, -2) == 1
ffi::lua_rawequal(state, -1, -2) == 1
}
}
}
#[cfg(feature = "unstable")]
pub(crate) struct LuaOwnedRef {
pub(crate) lua: Lua,
pub(crate) index: c_int,
_non_send: std::marker::PhantomData<*const ()>,
}
#[cfg(feature = "unstable")]
impl fmt::Debug for LuaOwnedRef {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
write!(f, "OwnedRef({})", self.index)
}
}
#[cfg(feature = "unstable")]
impl Clone for LuaOwnedRef {
fn clone(&self) -> Self {
self.to_ref().clone().into_owned()
}
}
#[cfg(feature = "unstable")]
impl Drop for LuaOwnedRef {
fn drop(&mut self) {
self.lua.drop_ref_index(self.index);
}
}
#[cfg(feature = "unstable")]
impl LuaOwnedRef {
pub(crate) const fn new(lua: Lua, index: c_int) -> Self {
#[cfg(feature = "send")]
{
let _lua = lua;
let _index = index;
panic!("mlua must be compiled without \"send\" feature to use Owned types");
}
#[cfg(not(feature = "send"))]
LuaOwnedRef {
lua,
index,
_non_send: std::marker::PhantomData,
}
}
pub(crate) const fn to_ref(&self) -> LuaRef {
LuaRef {
lua: &self.lua,
index: self.index,
drop: false,
}
}
}
#[cfg(test)]
mod assertions {
use super::*;
static_assertions::assert_impl_all!(RegistryKey: Send, Sync);
static_assertions::assert_not_impl_any!(LuaRef: Send);
#[cfg(feature = "unstable")]
static_assertions::assert_not_impl_any!(LuaOwnedRef: Send);
}
+600 -288
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+205
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@@ -0,0 +1,205 @@
use crate::error::{Error, Result};
use crate::private::Sealed;
use crate::userdata::{AnyUserData, MetaMethod};
use crate::value::{FromLua, FromLuaMulti, IntoLua, IntoLuaMulti, Value};
#[cfg(feature = "async")]
use {futures_core::future::LocalBoxFuture, futures_util::future};
/// An extension trait for [`AnyUserData`] that provides a variety of convenient functionality.
pub trait AnyUserDataExt<'lua>: Sealed {
/// Gets the value associated to `key` from the userdata, assuming it has `__index` metamethod.
fn get<K: IntoLua<'lua>, V: FromLua<'lua>>(&self, key: K) -> Result<V>;
/// Sets the value associated to `key` in the userdata, assuming it has `__newindex` metamethod.
fn set<K: IntoLua<'lua>, V: IntoLua<'lua>>(&self, key: K, value: V) -> Result<()>;
/// Calls the userdata as a function assuming it has `__call` metamethod.
///
/// The metamethod is called with the userdata as its first argument, followed by the passed arguments.
fn call<A, R>(&self, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>;
/// Asynchronously calls the userdata as a function assuming it has `__call` metamethod.
///
/// The metamethod is called with the userdata as its first argument, followed by the passed arguments.
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
fn call_async<'fut, A, R>(&self, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut;
/// Calls the userdata method, assuming it has `__index` metamethod
/// and a function associated to `name`.
fn call_method<A, R>(&self, name: impl AsRef<str>, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>;
/// Gets the function associated to `key` from the table and asynchronously executes it,
/// passing the table itself along with `args` as function arguments and returning Future.
///
/// Requires `feature = "async"`
///
/// This might invoke the `__index` metamethod.
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
fn call_async_method<'fut, A, R>(
&self,
name: impl AsRef<str>,
args: A,
) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut;
/// Gets the function associated to `key` from the table and executes it,
/// passing `args` as function arguments.
///
/// This is a shortcut for
/// `table.get::<_, Function>(key)?.call(args)`
///
/// This might invoke the `__index` metamethod.
fn call_function<A, R>(&self, name: impl AsRef<str>, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>;
/// Gets the function associated to `key` from the table and asynchronously executes it,
/// passing `args` as function arguments and returning Future.
///
/// Requires `feature = "async"`
///
/// This might invoke the `__index` metamethod.
#[cfg(feature = "async")]
#[cfg_attr(docsrs, doc(cfg(feature = "async")))]
fn call_async_function<'fut, A, R>(
&self,
name: impl AsRef<str>,
args: A,
) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut;
}
impl<'lua> AnyUserDataExt<'lua> for AnyUserData<'lua> {
fn get<K: IntoLua<'lua>, V: FromLua<'lua>>(&self, key: K) -> Result<V> {
let metatable = self.get_metatable()?;
match metatable.get::<Value>(MetaMethod::Index)? {
Value::Table(table) => table.raw_get(key),
Value::Function(func) => func.call((self.clone(), key)),
_ => Err(Error::RuntimeError(
"attempt to index a userdata value".to_string(),
)),
}
}
fn set<K: IntoLua<'lua>, V: IntoLua<'lua>>(&self, key: K, value: V) -> Result<()> {
let metatable = self.get_metatable()?;
match metatable.get::<Value>(MetaMethod::NewIndex)? {
Value::Table(table) => table.raw_set(key, value),
Value::Function(func) => func.call((self.clone(), key, value)),
_ => Err(Error::RuntimeError(
"attempt to index a userdata value".to_string(),
)),
}
}
fn call<A, R>(&self, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
let metatable = self.get_metatable()?;
match metatable.get::<Value>(MetaMethod::Call)? {
Value::Function(func) => func.call((self.clone(), args)),
_ => Err(Error::RuntimeError(
"attempt to call a userdata value".to_string(),
)),
}
}
#[cfg(feature = "async")]
fn call_async<'fut, A, R>(&self, args: A) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
let metatable = match self.get_metatable() {
Ok(metatable) => metatable,
Err(err) => return Box::pin(future::err(err)),
};
match metatable.get::<Value>(MetaMethod::Call) {
Ok(Value::Function(func)) => func.call_async((self.clone(), args)),
Ok(_) => Box::pin(future::err(Error::RuntimeError(
"attempt to call a userdata value".to_string(),
))),
Err(err) => Box::pin(future::err(err)),
}
}
fn call_method<A, R>(&self, name: impl AsRef<str>, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
self.call_function(name, (self.clone(), args))
}
#[cfg(feature = "async")]
fn call_async_method<'fut, A, R>(
&self,
name: impl AsRef<str>,
args: A,
) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
self.call_async_function(name, (self.clone(), args))
}
fn call_function<A, R>(&self, name: impl AsRef<str>, args: A) -> Result<R>
where
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua>,
{
match self.get(name.as_ref())? {
Value::Function(func) => func.call(args),
val => Err(Error::RuntimeError(format!(
"attempt to call a {} value",
val.type_name()
))),
}
}
#[cfg(feature = "async")]
fn call_async_function<'fut, A, R>(
&self,
name: impl AsRef<str>,
args: A,
) -> LocalBoxFuture<'fut, Result<R>>
where
'lua: 'fut,
A: IntoLuaMulti<'lua>,
R: FromLuaMulti<'lua> + 'fut,
{
match self.get(name.as_ref()) {
Ok(Value::Function(func)) => func.call_async(args),
Ok(val) => Box::pin(future::err(Error::RuntimeError(format!(
"attempt to call a {} value",
val.type_name()
)))),
Err(err) => Box::pin(future::err(err)),
}
}
}
+673
View File
@@ -0,0 +1,673 @@
use std::any::{self, TypeId};
use std::cell::{Ref, RefCell, RefMut};
use std::marker::PhantomData;
use std::string::String as StdString;
use std::sync::{Arc, Mutex, RwLock};
use crate::error::{Error, Result};
use crate::ffi;
use crate::lua::Lua;
use crate::types::{Callback, MaybeSend};
use crate::userdata::{
AnyUserData, MetaMethod, UserData, UserDataCell, UserDataFields, UserDataMethods,
};
use crate::util::{check_stack, get_userdata, StackGuard};
use crate::value::{FromLua, FromLuaMulti, IntoLua, IntoLuaMulti, Value};
#[cfg(not(feature = "send"))]
use std::rc::Rc;
#[cfg(feature = "async")]
use {
crate::types::AsyncCallback,
futures_util::future::{self, TryFutureExt},
std::future::Future,
};
pub struct UserDataRegistrar<'lua, T: 'static> {
// Fields
pub(crate) field_getters: Vec<(String, Callback<'lua, 'static>)>,
pub(crate) field_setters: Vec<(String, Callback<'lua, 'static>)>,
#[allow(clippy::type_complexity)]
pub(crate) meta_fields: Vec<(
String,
Box<dyn Fn(&'lua Lua) -> Result<Value<'lua>> + 'static>,
)>,
// Methods
pub(crate) methods: Vec<(String, Callback<'lua, 'static>)>,
#[cfg(feature = "async")]
pub(crate) async_methods: Vec<(String, AsyncCallback<'lua, 'static>)>,
pub(crate) meta_methods: Vec<(String, Callback<'lua, 'static>)>,
#[cfg(feature = "async")]
pub(crate) async_meta_methods: Vec<(String, AsyncCallback<'lua, 'static>)>,
_type: PhantomData<T>,
}
impl<'lua, T: 'static> UserDataRegistrar<'lua, T> {
pub(crate) const fn new() -> Self {
UserDataRegistrar {
field_getters: Vec::new(),
field_setters: Vec::new(),
meta_fields: Vec::new(),
methods: Vec::new(),
#[cfg(feature = "async")]
async_methods: Vec::new(),
meta_methods: Vec::new(),
#[cfg(feature = "async")]
async_meta_methods: Vec::new(),
_type: PhantomData,
}
}
fn box_method<M, A, R>(name: &str, method: M) -> Callback<'lua, 'static>
where
M: Fn(&'lua Lua, &T, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = get_function_name::<T>(name);
macro_rules! try_self_arg {
($res:expr) => {
$res.map_err(|err| Error::bad_self_argument(&name, err))?
};
($res:expr, $err:expr) => {
$res.map_err(|_| Error::bad_self_argument(&name, $err))?
};
}
Box::new(move |lua, mut args| {
let front = args.pop_front();
let call = |ud| {
// Self was at index 1, so we pass 2 here
let args = A::from_lua_multi_args(args, 2, Some(&name), lua)?;
method(lua, ud, args)?.into_lua_multi(lua)
};
if let Some(front) = front {
let state = lua.state();
let userdata = try_self_arg!(AnyUserData::from_lua(front, lua));
unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 2)?;
let type_id = try_self_arg!(lua.push_userdata_ref(&userdata.0));
match type_id {
Some(id) if id == TypeId::of::<T>() => {
let ud = try_self_arg!(get_userdata_ref::<T>(state));
call(&ud)
}
#[cfg(not(feature = "send"))]
Some(id) if id == TypeId::of::<Rc<RefCell<T>>>() => {
let ud = try_self_arg!(get_userdata_ref::<Rc<RefCell<T>>>(state));
let ud = try_self_arg!(ud.try_borrow(), Error::UserDataBorrowError);
call(&ud)
}
Some(id) if id == TypeId::of::<Arc<Mutex<T>>>() => {
let ud = try_self_arg!(get_userdata_ref::<Arc<Mutex<T>>>(state));
let ud = try_self_arg!(ud.try_lock(), Error::UserDataBorrowError);
call(&ud)
}
#[cfg(feature = "parking_lot")]
Some(id) if id == TypeId::of::<Arc<parking_lot::Mutex<T>>>() => {
let ud = get_userdata_ref::<Arc<parking_lot::Mutex<T>>>(state);
let ud = try_self_arg!(ud);
let ud = try_self_arg!(ud.try_lock().ok_or(Error::UserDataBorrowError));
call(&ud)
}
Some(id) if id == TypeId::of::<Arc<RwLock<T>>>() => {
let ud = try_self_arg!(get_userdata_ref::<Arc<RwLock<T>>>(state));
let ud = try_self_arg!(ud.try_read(), Error::UserDataBorrowError);
call(&ud)
}
#[cfg(feature = "parking_lot")]
Some(id) if id == TypeId::of::<Arc<parking_lot::RwLock<T>>>() => {
let ud = get_userdata_ref::<Arc<parking_lot::RwLock<T>>>(state);
let ud = try_self_arg!(ud);
let ud = try_self_arg!(ud.try_read().ok_or(Error::UserDataBorrowError));
call(&ud)
}
_ => Err(Error::bad_self_argument(&name, Error::UserDataTypeMismatch)),
}
}
} else {
let err = Error::from_lua_conversion("missing argument", "userdata", None);
Err(Error::bad_self_argument(&name, err))
}
})
}
fn box_method_mut<M, A, R>(name: &str, method: M) -> Callback<'lua, 'static>
where
M: FnMut(&'lua Lua, &mut T, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = get_function_name::<T>(name);
macro_rules! try_self_arg {
($res:expr) => {
$res.map_err(|err| Error::bad_self_argument(&name, err))?
};
($res:expr, $err:expr) => {
$res.map_err(|_| Error::bad_self_argument(&name, $err))?
};
}
let method = RefCell::new(method);
Box::new(move |lua, mut args| {
let mut method = method
.try_borrow_mut()
.map_err(|_| Error::RecursiveMutCallback)?;
let front = args.pop_front();
let call = |ud| {
// Self was at index 1, so we pass 2 here
let args = A::from_lua_multi_args(args, 2, Some(&name), lua)?;
method(lua, ud, args)?.into_lua_multi(lua)
};
if let Some(front) = front {
let state = lua.state();
let userdata = try_self_arg!(AnyUserData::from_lua(front, lua));
unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 2)?;
let type_id = try_self_arg!(lua.push_userdata_ref(&userdata.0));
match type_id {
Some(id) if id == TypeId::of::<T>() => {
let mut ud = try_self_arg!(get_userdata_mut::<T>(state));
call(&mut ud)
}
#[cfg(not(feature = "send"))]
Some(id) if id == TypeId::of::<Rc<RefCell<T>>>() => {
let ud = try_self_arg!(get_userdata_mut::<Rc<RefCell<T>>>(state));
let mut ud =
try_self_arg!(ud.try_borrow_mut(), Error::UserDataBorrowMutError);
call(&mut ud)
}
Some(id) if id == TypeId::of::<Arc<Mutex<T>>>() => {
let ud = try_self_arg!(get_userdata_mut::<Arc<Mutex<T>>>(state));
let mut ud =
try_self_arg!(ud.try_lock(), Error::UserDataBorrowMutError);
call(&mut ud)
}
#[cfg(feature = "parking_lot")]
Some(id) if id == TypeId::of::<Arc<parking_lot::Mutex<T>>>() => {
let ud = get_userdata_mut::<Arc<parking_lot::Mutex<T>>>(state);
let ud = try_self_arg!(ud);
let mut ud =
try_self_arg!(ud.try_lock().ok_or(Error::UserDataBorrowMutError));
call(&mut ud)
}
Some(id) if id == TypeId::of::<Arc<RwLock<T>>>() => {
let ud = try_self_arg!(get_userdata_mut::<Arc<RwLock<T>>>(state));
let mut ud =
try_self_arg!(ud.try_write(), Error::UserDataBorrowMutError);
call(&mut ud)
}
#[cfg(feature = "parking_lot")]
Some(id) if id == TypeId::of::<Arc<parking_lot::RwLock<T>>>() => {
let ud = get_userdata_mut::<Arc<parking_lot::RwLock<T>>>(state);
let ud = try_self_arg!(ud);
let mut ud =
try_self_arg!(ud.try_write().ok_or(Error::UserDataBorrowMutError));
call(&mut ud)
}
_ => Err(Error::bad_self_argument(&name, Error::UserDataTypeMismatch)),
}
}
} else {
let err = Error::from_lua_conversion("missing argument", "userdata", None);
Err(Error::bad_self_argument(&name, err))
}
})
}
#[cfg(feature = "async")]
fn box_async_method<M, A, MR, R>(name: &str, method: M) -> AsyncCallback<'lua, 'static>
where
T: Clone,
M: Fn(&'lua Lua, T, A) -> MR + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
MR: Future<Output = Result<R>> + 'lua,
R: IntoLuaMulti<'lua>,
{
let name = get_function_name::<T>(name);
macro_rules! try_self_arg {
($res:expr) => {
$res.map_err(|err| Error::bad_self_argument(&name, err))?
};
($res:expr, $err:expr) => {
$res.map_err(|_| Error::bad_self_argument(&name, $err))?
};
}
Box::new(move |lua, mut args| {
let front = args.pop_front();
let call = |ud| {
// Self was at index 1, so we pass 2 here
let args = A::from_lua_multi_args(args, 2, Some(&name), lua)?;
Ok(method(lua, ud, args))
};
let fut_res = || {
if let Some(front) = front {
let state = lua.state();
let userdata = AnyUserData::from_lua(front, lua)?;
unsafe {
let _sg = StackGuard::new(state);
check_stack(state, 2)?;
let type_id = try_self_arg!(lua.push_userdata_ref(&userdata.0));
match type_id {
Some(id) if id == TypeId::of::<T>() => {
let ud = get_userdata_ref::<T>(state)?;
call(ud.clone())
}
#[cfg(not(feature = "send"))]
Some(id) if id == TypeId::of::<Rc<RefCell<T>>>() => {
let ud = try_self_arg!(get_userdata_ref::<Rc<RefCell<T>>>(state));
let ud = try_self_arg!(ud.try_borrow(), Error::UserDataBorrowError);
call(ud.clone())
}
Some(id) if id == TypeId::of::<Arc<Mutex<T>>>() => {
let ud = try_self_arg!(get_userdata_ref::<Arc<Mutex<T>>>(state));
let ud = try_self_arg!(ud.try_lock(), Error::UserDataBorrowError);
call(ud.clone())
}
#[cfg(feature = "parking_lot")]
Some(id) if id == TypeId::of::<Arc<parking_lot::Mutex<T>>>() => {
let ud = get_userdata_ref::<Arc<parking_lot::Mutex<T>>>(state);
let ud = try_self_arg!(ud);
let ud =
try_self_arg!(ud.try_lock().ok_or(Error::UserDataBorrowError));
call(ud.clone())
}
Some(id) if id == TypeId::of::<Arc<RwLock<T>>>() => {
let ud = try_self_arg!(get_userdata_ref::<Arc<RwLock<T>>>(state));
let ud = try_self_arg!(ud.try_read(), Error::UserDataBorrowError);
call(ud.clone())
}
#[cfg(feature = "parking_lot")]
Some(id) if id == TypeId::of::<Arc<parking_lot::RwLock<T>>>() => {
let ud = get_userdata_ref::<Arc<parking_lot::RwLock<T>>>(state);
let ud = try_self_arg!(ud);
let ud =
try_self_arg!(ud.try_read().ok_or(Error::UserDataBorrowError));
call(ud.clone())
}
_ => Err(Error::bad_self_argument(&name, Error::UserDataTypeMismatch)),
}
}
} else {
let err = Error::from_lua_conversion("missing argument", "userdata", None);
Err(Error::bad_self_argument(&name, err))
}
};
match fut_res() {
Ok(fut) => {
Box::pin(fut.and_then(move |ret| future::ready(ret.into_lua_multi(lua))))
}
Err(e) => Box::pin(future::err(e)),
}
})
}
fn box_function<F, A, R>(name: &str, function: F) -> Callback<'lua, 'static>
where
F: Fn(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = get_function_name::<T>(name);
Box::new(move |lua, args| {
function(lua, A::from_lua_multi_args(args, 1, Some(&name), lua)?)?.into_lua_multi(lua)
})
}
fn box_function_mut<F, A, R>(name: &str, function: F) -> Callback<'lua, 'static>
where
F: FnMut(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = get_function_name::<T>(name);
let function = RefCell::new(function);
Box::new(move |lua, args| {
let function = &mut *function
.try_borrow_mut()
.map_err(|_| Error::RecursiveMutCallback)?;
function(lua, A::from_lua_multi_args(args, 1, Some(&name), lua)?)?.into_lua_multi(lua)
})
}
#[cfg(feature = "async")]
fn box_async_function<F, A, FR, R>(name: &str, function: F) -> AsyncCallback<'lua, 'static>
where
F: Fn(&'lua Lua, A) -> FR + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
FR: Future<Output = Result<R>> + 'lua,
R: IntoLuaMulti<'lua>,
{
let name = get_function_name::<T>(name);
Box::new(move |lua, args| {
let args = match A::from_lua_multi_args(args, 1, Some(&name), lua) {
Ok(args) => args,
Err(e) => return Box::pin(future::err(e)),
};
Box::pin(
function(lua, args).and_then(move |ret| future::ready(ret.into_lua_multi(lua))),
)
})
}
}
// Returns function name for the type `T`, without the module path
fn get_function_name<T: 'static>(name: &str) -> StdString {
let type_name = any::type_name::<T>().rsplit("::").next().unwrap();
format!("{type_name}.{name}",)
}
impl<'lua, T: 'static> UserDataFields<'lua, T> for UserDataRegistrar<'lua, T> {
fn add_field_method_get<M, R>(&mut self, name: impl AsRef<str>, method: M)
where
M: Fn(&'lua Lua, &T) -> Result<R> + MaybeSend + 'static,
R: IntoLua<'lua>,
{
let name = name.as_ref();
let method = Self::box_method(name, move |lua, data, ()| method(lua, data));
self.field_getters.push((name.into(), method));
}
fn add_field_method_set<M, A>(&mut self, name: impl AsRef<str>, method: M)
where
M: FnMut(&'lua Lua, &mut T, A) -> Result<()> + MaybeSend + 'static,
A: FromLua<'lua>,
{
let name = name.as_ref();
let method = Self::box_method_mut(name, method);
self.field_setters.push((name.into(), method));
}
fn add_field_function_get<F, R>(&mut self, name: impl AsRef<str>, function: F)
where
F: Fn(&'lua Lua, AnyUserData<'lua>) -> Result<R> + MaybeSend + 'static,
R: IntoLua<'lua>,
{
let name = name.as_ref();
let func = Self::box_function(name, function);
self.field_getters.push((name.into(), func));
}
fn add_field_function_set<F, A>(&mut self, name: impl AsRef<str>, mut function: F)
where
F: FnMut(&'lua Lua, AnyUserData<'lua>, A) -> Result<()> + MaybeSend + 'static,
A: FromLua<'lua>,
{
let name = name.as_ref();
let func = Self::box_function_mut(name, move |lua, (data, val)| function(lua, data, val));
self.field_setters.push((name.into(), func));
}
fn add_meta_field_with<F, R>(&mut self, name: impl AsRef<str>, f: F)
where
F: Fn(&'lua Lua) -> Result<R> + MaybeSend + 'static,
R: IntoLua<'lua>,
{
let name = name.as_ref().to_string();
self.meta_fields.push((
name.clone(),
Box::new(move |lua| {
let value = f(lua)?.into_lua(lua)?;
if name == MetaMethod::Index || name == MetaMethod::NewIndex {
match value {
Value::Nil | Value::Table(_) | Value::Function(_) => {}
_ => {
return Err(Error::MetaMethodTypeError {
method: name.clone(),
type_name: value.type_name(),
message: Some("expected nil, table or function".to_string()),
})
}
}
}
Ok(value)
}),
));
}
// Below are internal methods
fn add_field_getter(&mut self, name: String, callback: Callback<'lua, 'static>) {
self.field_getters.push((name, callback));
}
fn add_field_setter(&mut self, name: String, callback: Callback<'lua, 'static>) {
self.field_setters.push((name, callback));
}
}
impl<'lua, T: 'static> UserDataMethods<'lua, T> for UserDataRegistrar<'lua, T> {
fn add_method<M, A, R>(&mut self, name: impl AsRef<str>, method: M)
where
M: Fn(&'lua Lua, &T, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.methods
.push((name.into(), Self::box_method(name, method)));
}
fn add_method_mut<M, A, R>(&mut self, name: impl AsRef<str>, method: M)
where
M: FnMut(&'lua Lua, &mut T, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.methods
.push((name.into(), Self::box_method_mut(name, method)));
}
#[cfg(feature = "async")]
fn add_async_method<M, A, MR, R>(&mut self, name: impl AsRef<str>, method: M)
where
T: Clone,
M: Fn(&'lua Lua, T, A) -> MR + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
MR: Future<Output = Result<R>> + 'lua,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.async_methods
.push((name.into(), Self::box_async_method(name, method)));
}
fn add_function<F, A, R>(&mut self, name: impl AsRef<str>, function: F)
where
F: Fn(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.methods
.push((name.into(), Self::box_function(name, function)));
}
fn add_function_mut<F, A, R>(&mut self, name: impl AsRef<str>, function: F)
where
F: FnMut(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.methods
.push((name.into(), Self::box_function_mut(name, function)));
}
#[cfg(feature = "async")]
fn add_async_function<F, A, FR, R>(&mut self, name: impl AsRef<str>, function: F)
where
F: Fn(&'lua Lua, A) -> FR + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
FR: Future<Output = Result<R>> + 'lua,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.async_methods
.push((name.into(), Self::box_async_function(name, function)));
}
fn add_meta_method<M, A, R>(&mut self, name: impl AsRef<str>, method: M)
where
M: Fn(&'lua Lua, &T, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.meta_methods
.push((name.into(), Self::box_method(name, method)));
}
fn add_meta_method_mut<M, A, R>(&mut self, name: impl AsRef<str>, method: M)
where
M: FnMut(&'lua Lua, &mut T, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.meta_methods
.push((name.into(), Self::box_method_mut(name, method)));
}
#[cfg(all(feature = "async", not(any(feature = "lua51", feature = "luau"))))]
fn add_async_meta_method<M, A, MR, R>(&mut self, name: impl AsRef<str>, method: M)
where
T: Clone,
M: Fn(&'lua Lua, T, A) -> MR + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
MR: Future<Output = Result<R>> + 'lua,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.async_meta_methods
.push((name.into(), Self::box_async_method(name, method)));
}
fn add_meta_function<F, A, R>(&mut self, name: impl AsRef<str>, function: F)
where
F: Fn(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.meta_methods
.push((name.into(), Self::box_function(name, function)));
}
fn add_meta_function_mut<F, A, R>(&mut self, name: impl AsRef<str>, function: F)
where
F: FnMut(&'lua Lua, A) -> Result<R> + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.meta_methods
.push((name.into(), Self::box_function_mut(name, function)));
}
#[cfg(all(feature = "async", not(any(feature = "lua51", feature = "luau"))))]
fn add_async_meta_function<F, A, FR, R>(&mut self, name: impl AsRef<str>, function: F)
where
F: Fn(&'lua Lua, A) -> FR + MaybeSend + 'static,
A: FromLuaMulti<'lua>,
FR: Future<Output = Result<R>> + 'lua,
R: IntoLuaMulti<'lua>,
{
let name = name.as_ref();
self.async_meta_methods
.push((name.into(), Self::box_async_function(name, function)));
}
// Below are internal methods used in generated code
fn add_callback(&mut self, name: String, callback: Callback<'lua, 'static>) {
self.methods.push((name, callback));
}
#[cfg(feature = "async")]
fn add_async_callback(&mut self, name: String, callback: AsyncCallback<'lua, 'static>) {
self.async_methods.push((name, callback));
}
fn add_meta_callback(&mut self, name: String, callback: Callback<'lua, 'static>) {
self.meta_methods.push((name, callback));
}
#[cfg(feature = "async")]
fn add_async_meta_callback(&mut self, meta: String, callback: AsyncCallback<'lua, 'static>) {
self.async_meta_methods.push((meta, callback))
}
}
#[inline]
unsafe fn get_userdata_ref<'a, T>(state: *mut ffi::lua_State) -> Result<Ref<'a, T>> {
(*get_userdata::<UserDataCell<T>>(state, -1)).try_borrow()
}
#[inline]
unsafe fn get_userdata_mut<'a, T>(state: *mut ffi::lua_State) -> Result<RefMut<'a, T>> {
(*get_userdata::<UserDataCell<T>>(state, -1)).try_borrow_mut()
}
macro_rules! lua_userdata_impl {
($type:ty) => {
impl<T: UserData + 'static> UserData for $type {
fn add_fields<'lua, F: UserDataFields<'lua, Self>>(fields: &mut F) {
let mut orig_fields = UserDataRegistrar::new();
T::add_fields(&mut orig_fields);
for (name, callback) in orig_fields.field_getters {
fields.add_field_getter(name, callback);
}
for (name, callback) in orig_fields.field_setters {
fields.add_field_setter(name, callback);
}
}
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
let mut orig_methods = UserDataRegistrar::new();
T::add_methods(&mut orig_methods);
for (name, callback) in orig_methods.methods {
methods.add_callback(name, callback);
}
#[cfg(feature = "async")]
for (name, callback) in orig_methods.async_methods {
methods.add_async_callback(name, callback);
}
for (meta, callback) in orig_methods.meta_methods {
methods.add_meta_callback(meta, callback);
}
#[cfg(feature = "async")]
for (meta, callback) in orig_methods.async_meta_methods {
methods.add_async_meta_callback(meta, callback);
}
}
}
};
}
#[cfg(not(feature = "send"))]
lua_userdata_impl!(Rc<RefCell<T>>);
lua_userdata_impl!(Arc<Mutex<T>>);
lua_userdata_impl!(Arc<RwLock<T>>);
#[cfg(feature = "parking_lot")]
lua_userdata_impl!(Arc<parking_lot::Mutex<T>>);
#[cfg(feature = "parking_lot")]
lua_userdata_impl!(Arc<parking_lot::RwLock<T>>);
// A special proxy object for UserData
pub(crate) struct UserDataProxy<T>(pub(crate) PhantomData<T>);
lua_userdata_impl!(UserDataProxy<T>);
+359 -217
View File
@@ -1,19 +1,21 @@
use std::any::{Any, TypeId};
use std::collections::HashMap;
use std::error::Error as StdError;
use std::ffi::CStr;
use std::fmt::Write;
use std::mem::MaybeUninit;
use std::os::raw::{c_char, c_int, c_void};
use std::panic::{catch_unwind, resume_unwind, AssertUnwindSafe};
use std::sync::Arc;
use std::{mem, ptr, slice};
use once_cell::sync::Lazy;
use rustc_hash::FxHashMap;
use crate::error::{Error, Result};
use crate::ffi;
use crate::memory::MemoryState;
static METATABLE_CACHE: Lazy<HashMap<TypeId, u8>> = Lazy::new(|| {
let mut map = HashMap::with_capacity(32);
static METATABLE_CACHE: Lazy<FxHashMap<TypeId, u8>> = Lazy::new(|| {
let mut map = FxHashMap::with_capacity_and_hasher(32, Default::default());
crate::lua::init_metatable_cache(&mut map);
map.insert(TypeId::of::<WrappedFailure>(), 0);
map.insert(TypeId::of::<String>(), 0);
@@ -46,7 +48,6 @@ pub unsafe fn check_stack(state: *mut ffi::lua_State, amount: c_int) -> Result<(
pub struct StackGuard {
state: *mut ffi::lua_State,
top: c_int,
extra: c_int,
}
impl StackGuard {
@@ -58,17 +59,6 @@ impl StackGuard {
StackGuard {
state,
top: ffi::lua_gettop(state),
extra: 0,
}
}
// Similar to `new`, but checks and keeps `extra` elements from top of the stack on Drop.
#[inline]
pub unsafe fn new_extra(state: *mut ffi::lua_State, extra: c_int) -> StackGuard {
StackGuard {
state,
top: ffi::lua_gettop(state),
extra,
}
}
}
@@ -77,14 +67,11 @@ impl Drop for StackGuard {
fn drop(&mut self) {
unsafe {
let top = ffi::lua_gettop(self.state);
if top < self.top + self.extra {
if top < self.top {
mlua_panic!("{} too many stack values popped", self.top - top)
}
if top > self.top + self.extra {
if self.extra > 0 {
ffi::lua_rotate(self.state, self.top + 1, self.extra);
}
ffi::lua_settop(self.state, self.top + self.extra);
if top > self.top {
ffi::lua_settop(self.state, self.top);
}
}
}
@@ -103,8 +90,10 @@ pub unsafe fn protect_lua_call(
) -> Result<()> {
let stack_start = ffi::lua_gettop(state) - nargs;
ffi::lua_pushcfunction(state, error_traceback);
ffi::lua_pushcfunction(state, f);
MemoryState::relax_limit_with(state, || {
ffi::lua_pushcfunction(state, error_traceback);
ffi::lua_pushcfunction(state, f);
});
if nargs > 0 {
ffi::lua_rotate(state, stack_start + 1, 2);
}
@@ -136,26 +125,21 @@ where
F: Fn(*mut ffi::lua_State) -> R,
R: Copy,
{
union URes<R: Copy> {
uninit: (),
init: R,
}
struct Params<F, R: Copy> {
function: F,
result: URes<R>,
result: MaybeUninit<R>,
nresults: c_int,
}
unsafe extern "C" fn do_call<F, R>(state: *mut ffi::lua_State) -> c_int
where
R: Copy,
F: Fn(*mut ffi::lua_State) -> R,
R: Copy,
{
let params = ffi::lua_touserdata(state, -1) as *mut Params<F, R>;
ffi::lua_pop(state, 1);
(*params).result.init = ((*params).function)(state);
(*params).result.write(((*params).function)(state));
if (*params).nresults == ffi::LUA_MULTRET {
ffi::lua_gettop(state)
@@ -166,15 +150,17 @@ where
let stack_start = ffi::lua_gettop(state) - nargs;
ffi::lua_pushcfunction(state, error_traceback);
ffi::lua_pushcfunction(state, do_call::<F, R>);
MemoryState::relax_limit_with(state, || {
ffi::lua_pushcfunction(state, error_traceback);
ffi::lua_pushcfunction(state, do_call::<F, R>);
});
if nargs > 0 {
ffi::lua_rotate(state, stack_start + 1, 2);
}
let mut params = Params {
function: f,
result: URes { uninit: () },
result: MaybeUninit::uninit(),
nresults,
};
@@ -185,7 +171,7 @@ where
if ret == ffi::LUA_OK {
// `LUA_OK` is only returned when the `do_call` function has completed successfully, so
// `params.result` is definitely initialized.
Ok(params.result.init)
Ok(params.result.assume_init())
} else {
Err(pop_error(state, ret))
}
@@ -203,7 +189,7 @@ pub unsafe fn pop_error(state: *mut ffi::lua_State, err_code: c_int) -> Error {
"pop_error called with non-error return code"
);
match get_gc_userdata::<WrappedFailure>(state, -1).as_mut() {
match get_gc_userdata::<WrappedFailure>(state, -1, ptr::null()).as_mut() {
Some(WrappedFailure::Error(err)) => {
ffi::lua_pop(state, 1);
err.clone()
@@ -246,30 +232,38 @@ pub unsafe fn pop_error(state: *mut ffi::lua_State, err_code: c_int) -> Error {
}
}
// Uses 3 stack spaces, does not call checkstack.
#[inline]
pub unsafe fn push_string<S: AsRef<[u8]> + ?Sized>(
state: *mut ffi::lua_State,
s: &S,
) -> Result<()> {
let s = s.as_ref();
protect_lua!(state, 0, 1, |state| {
// Uses 3 (or 1 if unprotected) stack spaces, does not call checkstack.
#[inline(always)]
pub unsafe fn push_string(state: *mut ffi::lua_State, s: &[u8], protect: bool) -> Result<()> {
// Always use protected mode if the string is too long
if protect || s.len() > (1 << 30) {
protect_lua!(state, 0, 1, |state| {
ffi::lua_pushlstring(state, s.as_ptr() as *const c_char, s.len());
})
} else {
ffi::lua_pushlstring(state, s.as_ptr() as *const c_char, s.len());
})
Ok(())
}
}
// Uses 3 stack spaces, does not call checkstack.
#[inline]
pub unsafe fn push_table(state: *mut ffi::lua_State, narr: c_int, nrec: c_int) -> Result<()> {
protect_lua!(state, 0, 1, |state| ffi::lua_createtable(state, narr, nrec))
pub unsafe fn push_table(
state: *mut ffi::lua_State,
narr: c_int,
nrec: c_int,
protect: bool,
) -> Result<()> {
if protect {
protect_lua!(state, 0, 1, |state| ffi::lua_createtable(state, narr, nrec))
} else {
ffi::lua_createtable(state, narr, nrec);
Ok(())
}
}
// Uses 4 stack spaces, does not call checkstack.
pub unsafe fn rawset_field<S>(state: *mut ffi::lua_State, table: c_int, field: &S) -> Result<()>
where
S: AsRef<[u8]> + ?Sized,
{
let field = field.as_ref();
pub unsafe fn rawset_field(state: *mut ffi::lua_State, table: c_int, field: &str) -> Result<()> {
ffi::lua_pushvalue(state, table);
protect_lua!(state, 2, 0, |state| {
ffi::lua_pushlstring(state, field.as_ptr() as *const c_char, field.len());
@@ -279,11 +273,57 @@ where
}
// Internally uses 3 stack spaces, does not call checkstack.
#[cfg(not(feature = "luau"))]
#[inline]
pub unsafe fn push_userdata<T>(state: *mut ffi::lua_State, t: T) -> Result<()> {
let ud = protect_lua!(state, 0, 1, |state| {
pub unsafe fn push_userdata<T>(state: *mut ffi::lua_State, t: T, protect: bool) -> Result<()> {
let ud = if protect {
protect_lua!(state, 0, 1, |state| {
ffi::lua_newuserdata(state, mem::size_of::<T>()) as *mut T
})?
} else {
ffi::lua_newuserdata(state, mem::size_of::<T>()) as *mut T
})?;
};
ptr::write(ud, t);
Ok(())
}
// Internally uses 3 stack spaces, does not call checkstack.
#[cfg(feature = "luau")]
#[inline]
pub unsafe fn push_userdata<T>(state: *mut ffi::lua_State, t: T, protect: bool) -> Result<()> {
unsafe extern "C" fn destructor<T>(ud: *mut c_void) {
ptr::drop_in_place(ud as *mut T);
}
let size = mem::size_of::<T>();
let ud = if protect {
protect_lua!(state, 0, 1, |state| {
ffi::lua_newuserdatadtor(state, size, destructor::<T>) as *mut T
})?
} else {
ffi::lua_newuserdatadtor(state, size, destructor::<T>) as *mut T
};
ptr::write(ud, t);
Ok(())
}
// Internally uses 3 stack spaces, does not call checkstack.
#[cfg(feature = "lua54")]
#[inline]
pub unsafe fn push_userdata_uv<T>(
state: *mut ffi::lua_State,
t: T,
nuvalue: c_int,
protect: bool,
) -> Result<()> {
let ud = if protect {
protect_lua!(state, 0, 1, |state| {
ffi::lua_newuserdatauv(state, mem::size_of::<T>(), nuvalue) as *mut T
})?
} else {
ffi::lua_newuserdatauv(state, mem::size_of::<T>(), nuvalue) as *mut T
};
ptr::write(ud, t);
Ok(())
}
@@ -306,35 +346,175 @@ pub unsafe fn take_userdata<T>(state: *mut ffi::lua_State) -> T {
// after the first call to __gc.
get_destructed_userdata_metatable(state);
ffi::lua_setmetatable(state, -2);
let ud = get_userdata(state, -1);
let ud = get_userdata::<T>(state, -1);
// Update userdata tag to disable destructor and mark as destructed
#[cfg(feature = "luau")]
ffi::lua_setuserdatatag(state, -1, 1);
ffi::lua_pop(state, 1);
ptr::read(ud)
}
// Pushes the userdata and attaches a metatable with __gc method.
// Internally uses 3 stack spaces, does not call checkstack.
pub unsafe fn push_gc_userdata<T: Any>(state: *mut ffi::lua_State, t: T) -> Result<()> {
push_userdata(state, t)?;
pub unsafe fn push_gc_userdata<T: Any>(
state: *mut ffi::lua_State,
t: T,
protect: bool,
) -> Result<()> {
push_userdata(state, t, protect)?;
get_gc_metatable::<T>(state);
ffi::lua_setmetatable(state, -2);
Ok(())
}
// Uses 2 stack spaces, does not call checkstack
pub unsafe fn get_gc_userdata<T: Any>(state: *mut ffi::lua_State, index: c_int) -> *mut T {
pub unsafe fn get_gc_userdata<T: Any>(
state: *mut ffi::lua_State,
index: c_int,
mt_ptr: *const c_void,
) -> *mut T {
let ud = ffi::lua_touserdata(state, index) as *mut T;
if ud.is_null() || ffi::lua_getmetatable(state, index) == 0 {
return ptr::null_mut();
}
get_gc_metatable::<T>(state);
let res = ffi::lua_rawequal(state, -1, -2);
ffi::lua_pop(state, 2);
if res == 0 {
return ptr::null_mut();
if !mt_ptr.is_null() {
let ud_mt_ptr = ffi::lua_topointer(state, -1);
ffi::lua_pop(state, 1);
if !ptr::eq(ud_mt_ptr, mt_ptr) {
return ptr::null_mut();
}
} else {
get_gc_metatable::<T>(state);
let res = ffi::lua_rawequal(state, -1, -2);
ffi::lua_pop(state, 2);
if res == 0 {
return ptr::null_mut();
}
}
ud
}
unsafe extern "C" fn lua_error_impl(state: *mut ffi::lua_State) -> c_int {
ffi::lua_error(state);
}
unsafe extern "C" fn lua_isfunction_impl(state: *mut ffi::lua_State) -> c_int {
let t = ffi::lua_type(state, -1);
ffi::lua_pop(state, 1);
ffi::lua_pushboolean(state, (t == ffi::LUA_TFUNCTION) as c_int);
1
}
unsafe fn init_userdata_metatable_index(state: *mut ffi::lua_State) -> Result<()> {
let index_key = &USERDATA_METATABLE_INDEX as *const u8 as *const _;
if ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, index_key) == ffi::LUA_TFUNCTION {
return Ok(());
}
ffi::lua_pop(state, 1);
// Create and cache `__index` generator
let code = cstr!(
r#"
local error, isfunction = ...
return function (__index, field_getters, methods)
-- Fastpath to return methods table for index access
if __index == nil and field_getters == nil then
return methods
end
-- Alternatively return a function for index access
return function (self, key)
if field_getters ~= nil then
local field_getter = field_getters[key]
if field_getter ~= nil then
return field_getter(self)
end
end
if methods ~= nil then
local method = methods[key]
if method ~= nil then
return method
end
end
if isfunction(__index) then
return __index(self, key)
elseif __index == nil then
error("attempt to get an unknown field '"..key.."'")
else
return __index[key]
end
end
end
"#
);
let code_len = CStr::from_ptr(code).to_bytes().len();
protect_lua!(state, 0, 1, |state| {
let ret = ffi::luaL_loadbuffer(state, code, code_len, cstr!("__mlua_index"));
if ret != ffi::LUA_OK {
ffi::lua_error(state);
}
ffi::lua_pushcfunction(state, lua_error_impl);
ffi::lua_pushcfunction(state, lua_isfunction_impl);
ffi::lua_call(state, 2, 1);
// Store in the registry
ffi::lua_pushvalue(state, -1);
ffi::lua_rawsetp(state, ffi::LUA_REGISTRYINDEX, index_key);
})
}
pub unsafe fn init_userdata_metatable_newindex(state: *mut ffi::lua_State) -> Result<()> {
let newindex_key = &USERDATA_METATABLE_NEWINDEX as *const u8 as *const _;
if ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, newindex_key) == ffi::LUA_TFUNCTION {
return Ok(());
}
ffi::lua_pop(state, 1);
// Create and cache `__newindex` generator
let code = cstr!(
r#"
local error, isfunction = ...
return function (__newindex, field_setters)
return function (self, key, value)
if field_setters ~= nil then
local field_setter = field_setters[key]
if field_setter ~= nil then
field_setter(self, value)
return
end
end
if isfunction(__newindex) then
__newindex(self, key, value)
elseif __newindex == nil then
error("attempt to set an unknown field '"..key.."'")
else
__newindex[key] = value
end
end
end
"#
);
let code_len = CStr::from_ptr(code).to_bytes().len();
protect_lua!(state, 0, 1, |state| {
let ret = ffi::luaL_loadbuffer(state, code, code_len, cstr!("__mlua_newindex"));
if ret != ffi::LUA_OK {
ffi::lua_error(state);
}
ffi::lua_pushcfunction(state, lua_error_impl);
ffi::lua_pushcfunction(state, lua_isfunction_impl);
ffi::lua_call(state, 2, 1);
// Store in the registry
ffi::lua_pushvalue(state, -1);
ffi::lua_rawsetp(state, ffi::LUA_REGISTRYINDEX, newindex_key);
})
}
// Populates the given table with the appropriate members to be a userdata metatable for the given type.
// This function takes the given table at the `metatable` index, and adds an appropriate `__gc` member
// to it for the given type and a `__metatable` entry to protect the table from script access.
@@ -350,99 +530,14 @@ pub unsafe fn init_userdata_metatable<T>(
field_setters: Option<c_int>,
methods: Option<c_int>,
) -> Result<()> {
// Wrapper to lookup in `field_getters` first, then `methods`, ending original `__index`.
// Used only if `field_getters` or `methods` set.
unsafe extern "C" fn meta_index_impl(state: *mut ffi::lua_State) -> c_int {
// stack: self, key
ffi::luaL_checkstack(state, 2, ptr::null());
// lookup in `field_getters` table
if ffi::lua_isnil(state, ffi::lua_upvalueindex(2)) == 0 {
ffi::lua_pushvalue(state, -1); // `key` arg
if ffi::lua_rawget(state, ffi::lua_upvalueindex(2)) != ffi::LUA_TNIL {
ffi::lua_insert(state, -3); // move function
ffi::lua_pop(state, 1); // remove `key`
ffi::lua_call(state, 1, 1);
return 1;
}
ffi::lua_pop(state, 1); // pop the nil value
}
// lookup in `methods` table
if ffi::lua_isnil(state, ffi::lua_upvalueindex(3)) == 0 {
ffi::lua_pushvalue(state, -1); // `key` arg
if ffi::lua_rawget(state, ffi::lua_upvalueindex(3)) != ffi::LUA_TNIL {
ffi::lua_insert(state, -3);
ffi::lua_pop(state, 2);
return 1;
}
ffi::lua_pop(state, 1); // pop the nil value
}
// lookup in `__index`
ffi::lua_pushvalue(state, ffi::lua_upvalueindex(1));
match ffi::lua_type(state, -1) {
ffi::LUA_TNIL => {
ffi::lua_pop(state, 1); // pop the nil value
let field = ffi::lua_tostring(state, -1);
ffi::luaL_error(state, cstr!("attempt to get an unknown field '%s'"), field);
}
ffi::LUA_TTABLE => {
ffi::lua_insert(state, -2);
ffi::lua_gettable(state, -2);
}
ffi::LUA_TFUNCTION => {
ffi::lua_insert(state, -3);
ffi::lua_call(state, 2, 1);
}
_ => unreachable!(),
}
1
}
// Similar to `meta_index_impl`, checks `field_setters` table first, then `__newindex` metamethod.
// Used only if `field_setters` set.
unsafe extern "C" fn meta_newindex_impl(state: *mut ffi::lua_State) -> c_int {
// stack: self, key, value
ffi::luaL_checkstack(state, 2, ptr::null());
// lookup in `field_setters` table
ffi::lua_pushvalue(state, -2); // `key` arg
if ffi::lua_rawget(state, ffi::lua_upvalueindex(2)) != ffi::LUA_TNIL {
ffi::lua_remove(state, -3); // remove `key`
ffi::lua_insert(state, -3); // move function
ffi::lua_call(state, 2, 0);
return 0;
}
ffi::lua_pop(state, 1); // pop the nil value
// lookup in `__newindex`
ffi::lua_pushvalue(state, ffi::lua_upvalueindex(1));
match ffi::lua_type(state, -1) {
ffi::LUA_TNIL => {
ffi::lua_pop(state, 1); // pop the nil value
let field = ffi::lua_tostring(state, -2);
ffi::luaL_error(state, cstr!("attempt to set an unknown field '%s'"), field);
}
ffi::LUA_TTABLE => {
ffi::lua_insert(state, -3);
ffi::lua_settable(state, -3);
}
ffi::LUA_TFUNCTION => {
ffi::lua_insert(state, -4);
ffi::lua_call(state, 3, 0);
}
_ => unreachable!(),
}
0
}
ffi::lua_pushvalue(state, metatable);
if field_getters.is_some() || methods.is_some() {
push_string(state, "__index")?;
let index_type = ffi::lua_rawget(state, -2);
// Push `__index` generator function
init_userdata_metatable_index(state)?;
push_string(state, b"__index", true)?;
let index_type = ffi::lua_rawget(state, -3);
match index_type {
ffi::LUA_TNIL | ffi::LUA_TTABLE | ffi::LUA_TFUNCTION => {
for &idx in &[field_getters, methods] {
@@ -452,9 +547,9 @@ pub unsafe fn init_userdata_metatable<T>(
ffi::lua_pushnil(state);
}
}
protect_lua!(state, 3, 1, fn(state) {
ffi::lua_pushcclosure(state, meta_index_impl, 3);
})?;
// Generate `__index`
protect_lua!(state, 4, 1, fn(state) ffi::lua_call(state, 3, 1))?;
}
_ => mlua_panic!("improper __index type {}", index_type),
}
@@ -463,14 +558,16 @@ pub unsafe fn init_userdata_metatable<T>(
}
if let Some(field_setters) = field_setters {
push_string(state, "__newindex")?;
let newindex_type = ffi::lua_rawget(state, -2);
// Push `__newindex` generator function
init_userdata_metatable_newindex(state)?;
push_string(state, b"__newindex", true)?;
let newindex_type = ffi::lua_rawget(state, -3);
match newindex_type {
ffi::LUA_TNIL | ffi::LUA_TTABLE | ffi::LUA_TFUNCTION => {
ffi::lua_pushvalue(state, field_setters);
protect_lua!(state, 2, 1, fn(state) {
ffi::lua_pushcclosure(state, meta_newindex_impl, 2);
})?;
// Generate `__newindex`
protect_lua!(state, 3, 1, fn(state) ffi::lua_call(state, 2, 1))?;
}
_ => mlua_panic!("improper __newindex type {}", newindex_type),
}
@@ -478,8 +575,11 @@ pub unsafe fn init_userdata_metatable<T>(
rawset_field(state, -2, "__newindex")?;
}
ffi::lua_pushcfunction(state, userdata_destructor::<T>);
rawset_field(state, -2, "__gc")?;
#[cfg(not(feature = "luau"))]
{
ffi::lua_pushcfunction(state, userdata_destructor::<T>);
rawset_field(state, -2, "__gc")?;
}
ffi::lua_pushboolean(state, 0);
rawset_field(state, -2, "__metatable")?;
@@ -489,6 +589,7 @@ pub unsafe fn init_userdata_metatable<T>(
Ok(())
}
#[cfg(not(feature = "luau"))]
pub unsafe extern "C" fn userdata_destructor<T>(state: *mut ffi::lua_State) -> c_int {
// It's probably NOT a good idea to catch Rust panics in finalizer
// Lua 5.4 ignores it, other versions generates `LUA_ERRGCMM` without calling message handler
@@ -523,7 +624,7 @@ where
// We cannot shadow Rust errors with Lua ones, we pre-allocate enough memory
// to store a wrapped error or panic *before* we proceed.
let ud = ffi::lua_newuserdata(state, mem::size_of::<WrappedFailure>());
let ud = WrappedFailure::new_userdata(state);
ffi::lua_rotate(state, 1, 1);
match catch_unwind(AssertUnwindSafe(|| f(nargs))) {
@@ -535,11 +636,8 @@ where
ffi::lua_settop(state, 1);
let wrapped_error = ud as *mut WrappedFailure;
ptr::write(wrapped_error, WrappedFailure::Error(err));
get_gc_metatable::<WrappedFailure>(state);
ffi::lua_setmetatable(state, -2);
// Convert to CallbackError and attach traceback
// Build `CallbackError` with traceback
let traceback = if ffi::lua_checkstack(state, ffi::LUA_TRACEBACK_STACK) != 0 {
ffi::luaL_traceback(state, state, ptr::null(), 0);
let traceback = to_string(state, -1);
@@ -548,10 +646,13 @@ where
} else {
"<not enough stack space for traceback>".to_string()
};
if let WrappedFailure::Error(ref mut err) = *wrapped_error {
let cause = Arc::new(err.clone());
*err = Error::CallbackError { traceback, cause };
}
let cause = Arc::new(err);
ptr::write(
wrapped_error,
WrappedFailure::Error(Error::CallbackError { traceback, cause }),
);
get_gc_metatable::<WrappedFailure>(state);
ffi::lua_setmetatable(state, -2);
ffi::lua_error(state)
}
@@ -566,16 +667,23 @@ where
}
pub unsafe extern "C" fn error_traceback(state: *mut ffi::lua_State) -> c_int {
// Luau calls error handler for memory allocation errors, skip it
// See https://github.com/Roblox/luau/issues/880
#[cfg(feature = "luau")]
if MemoryState::limit_reached(state) {
return 0;
}
if ffi::lua_checkstack(state, 2) == 0 {
// If we don't have enough stack space to even check the error type, do
// nothing so we don't risk shadowing a rust panic.
return 1;
}
if get_gc_userdata::<WrappedFailure>(state, -1).is_null() {
if get_gc_userdata::<WrappedFailure>(state, -1, ptr::null()).is_null() {
let s = ffi::luaL_tolstring(state, -1, ptr::null_mut());
if ffi::lua_checkstack(state, ffi::LUA_TRACEBACK_STACK) != 0 {
ffi::luaL_traceback(state, state, s, 1);
ffi::luaL_traceback(state, state, s, 0);
ffi::lua_remove(state, -2);
}
}
@@ -583,6 +691,20 @@ pub unsafe extern "C" fn error_traceback(state: *mut ffi::lua_State) -> c_int {
1
}
// A variant of `error_traceback` that can safely inspect another (yielded) thread stack
pub unsafe fn error_traceback_thread(state: *mut ffi::lua_State, thread: *mut ffi::lua_State) {
// Move error object to the main thread to safely call `__tostring` metamethod if present
ffi::lua_xmove(thread, state, 1);
if get_gc_userdata::<WrappedFailure>(state, -1, ptr::null()).is_null() {
let s = ffi::luaL_tolstring(state, -1, ptr::null_mut());
if ffi::lua_checkstack(state, ffi::LUA_TRACEBACK_STACK) != 0 {
ffi::luaL_traceback(state, thread, s, 0);
ffi::lua_remove(state, -2);
}
}
}
// A variant of `pcall` that does not allow Lua to catch Rust panics from `callback_error`.
pub unsafe extern "C" fn safe_pcall(state: *mut ffi::lua_State) -> c_int {
ffi::luaL_checkstack(state, 2, ptr::null());
@@ -599,7 +721,7 @@ pub unsafe extern "C" fn safe_pcall(state: *mut ffi::lua_State) -> c_int {
ffi::lua_gettop(state)
} else {
if let Some(WrappedFailure::Panic(_)) =
get_gc_userdata::<WrappedFailure>(state, -1).as_ref()
get_gc_userdata::<WrappedFailure>(state, -1, ptr::null()).as_ref()
{
ffi::lua_error(state);
}
@@ -615,7 +737,7 @@ pub unsafe extern "C" fn safe_xpcall(state: *mut ffi::lua_State) -> c_int {
ffi::luaL_checkstack(state, 2, ptr::null());
if let Some(WrappedFailure::Panic(_)) =
get_gc_userdata::<WrappedFailure>(state, -1).as_ref()
get_gc_userdata::<WrappedFailure>(state, -1, ptr::null()).as_ref()
{
1
} else {
@@ -645,7 +767,7 @@ pub unsafe extern "C" fn safe_xpcall(state: *mut ffi::lua_State) -> c_int {
ffi::lua_gettop(state) - 1
} else {
if let Some(WrappedFailure::Panic(_)) =
get_gc_userdata::<WrappedFailure>(state, -1).as_ref()
get_gc_userdata::<WrappedFailure>(state, -1, ptr::null()).as_ref()
{
ffi::lua_error(state);
}
@@ -676,6 +798,8 @@ pub unsafe fn get_main_state(state: *mut ffi::lua_State) -> Option<*mut ffi::lua
None
}
}
#[cfg(feature = "luau")]
Some(ffi::lua_mainthread(state))
}
// Initialize the internal (with __gc method) metatable for a type T.
@@ -686,10 +810,13 @@ pub unsafe fn init_gc_metatable<T: Any>(
) -> Result<()> {
check_stack(state, 6)?;
push_table(state, 0, 3)?;
push_table(state, 0, 3, true)?;
ffi::lua_pushcfunction(state, userdata_destructor::<T>);
rawset_field(state, -2, "__gc")?;
#[cfg(not(feature = "luau"))]
{
ffi::lua_pushcfunction(state, userdata_destructor::<T>);
rawset_field(state, -2, "__gc")?;
}
ffi::lua_pushboolean(state, 0);
rawset_field(state, -2, "__metatable")?;
@@ -724,7 +851,7 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
callback_error(state, |_| {
check_stack(state, 3)?;
let err_buf = match get_gc_userdata::<WrappedFailure>(state, -1).as_ref() {
let err_buf = match get_gc_userdata::<WrappedFailure>(state, -1, ptr::null()).as_ref() {
Some(WrappedFailure::Error(error)) => {
let err_buf_key = &ERROR_PRINT_BUFFER_KEY as *const u8 as *const c_void;
ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, err_buf_key);
@@ -735,33 +862,7 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
// Depending on how the API is used and what error types scripts are given, it may
// be possible to make this consume arbitrary amounts of memory (for example, some
// kind of recursive error structure?)
let _ = write!(&mut (*err_buf), "{}", error);
// Find first two sources that caused the error
let mut source1 = error.source();
let mut source0 = source1.and_then(|s| s.source());
while let Some(source) = source0.and_then(|s| s.source()) {
source1 = source0;
source0 = Some(source);
}
match (source1, source0) {
(_, Some(error0))
if error0.to_string().contains("\nstack traceback:\n") =>
{
let _ = write!(&mut (*err_buf), "\ncaused by: {}", error0);
}
(Some(error1), Some(error0)) => {
let _ = write!(&mut (*err_buf), "\ncaused by: {}", error0);
let s = error1.to_string();
if let Some(traceback) = s.splitn(2, "\nstack traceback:\n").nth(1) {
let _ =
write!(&mut (*err_buf), "\nstack traceback:\n{}", traceback);
}
}
(Some(error1), None) => {
let _ = write!(&mut (*err_buf), "\ncaused by: {}", error1);
}
_ => {}
}
let _ = write!(&mut (*err_buf), "{error}");
Ok(err_buf)
}
Some(WrappedFailure::Panic(Some(ref panic))) => {
@@ -772,9 +873,9 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
ffi::lua_pop(state, 2);
if let Some(msg) = panic.downcast_ref::<&str>() {
let _ = write!(&mut (*err_buf), "{}", msg);
let _ = write!(&mut (*err_buf), "{msg}");
} else if let Some(msg) = panic.downcast_ref::<String>() {
let _ = write!(&mut (*err_buf), "{}", msg);
let _ = write!(&mut (*err_buf), "{msg}");
} else {
let _ = write!(&mut (*err_buf), "<panic>");
};
@@ -787,7 +888,7 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
}
}?;
push_string(state, &*err_buf)?;
push_string(state, (*err_buf).as_bytes(), true)?;
(*err_buf).clear();
Ok(1)
@@ -808,7 +909,7 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
callback_error(state, |_| Err(Error::CallbackDestructed))
}
push_table(state, 0, 26)?;
push_table(state, 0, 26, true)?;
ffi::lua_pushcfunction(state, destructed_error);
for &method in &[
"__add",
@@ -841,10 +942,17 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
"__newindex",
"__call",
"__tostring",
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[cfg(any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "luajit52"
))]
"__pairs",
#[cfg(any(feature = "lua53", feature = "lua52"))]
#[cfg(any(feature = "lua53", feature = "lua52", feature = "luajit52"))]
"__ipairs",
#[cfg(feature = "luau")]
"__iter",
#[cfg(feature = "lua54")]
"__close",
] {
@@ -860,7 +968,7 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
// Create error print buffer
init_gc_metatable::<String>(state, None)?;
push_gc_userdata(state, String::new())?;
push_gc_userdata(state, String::new(), true)?;
protect_lua!(state, 1, 0, fn(state) {
let err_buf_key = &ERROR_PRINT_BUFFER_KEY as *const u8 as *const c_void;
ffi::lua_rawsetp(state, ffi::LUA_REGISTRYINDEX, err_buf_key);
@@ -870,10 +978,28 @@ pub unsafe fn init_error_registry(state: *mut ffi::lua_State) -> Result<()> {
}
pub(crate) enum WrappedFailure {
None,
Error(Error),
Panic(Option<Box<dyn Any + Send + 'static>>),
}
impl WrappedFailure {
pub(crate) unsafe fn new_userdata(state: *mut ffi::lua_State) -> *mut Self {
let size = mem::size_of::<WrappedFailure>();
#[cfg(feature = "luau")]
let ud = {
unsafe extern "C" fn destructor(p: *mut c_void) {
ptr::drop_in_place(p as *mut WrappedFailure);
}
ffi::lua_newuserdatadtor(state, size, destructor) as *mut Self
};
#[cfg(not(feature = "luau"))]
let ud = ffi::lua_newuserdata(state, size) as *mut Self;
ptr::write(ud, WrappedFailure::None);
ud
}
}
// Converts the given lua value to a string in a reasonable format without causing a Lua error or
// panicking.
pub(crate) unsafe fn to_string(state: *mut ffi::lua_State, index: c_int) -> String {
@@ -893,6 +1019,13 @@ pub(crate) unsafe fn to_string(state: *mut ffi::lua_State, index: c_int) -> Stri
i.to_string()
}
}
#[cfg(feature = "luau")]
ffi::LUA_TVECTOR => {
let v = ffi::lua_tovector(state, index);
mlua_debug_assert!(!v.is_null(), "vector is null");
let (x, y, z) = (*v, *v.add(1), *v.add(2));
format!("vector({x},{y},{z})")
}
ffi::LUA_TSTRING => {
let mut size = 0;
// This will not trigger a 'm' error, because the reference is guaranteed to be of
@@ -913,5 +1046,14 @@ pub(crate) unsafe fn get_destructed_userdata_metatable(state: *mut ffi::lua_Stat
ffi::lua_rawgetp(state, ffi::LUA_REGISTRYINDEX, key);
}
pub(crate) unsafe fn ptr_to_cstr_bytes<'a>(input: *const c_char) -> Option<&'a [u8]> {
if input.is_null() {
return None;
}
Some(CStr::from_ptr(input).to_bytes())
}
static DESTRUCTED_USERDATA_METATABLE: u8 = 0;
static ERROR_PRINT_BUFFER_KEY: u8 = 0;
static USERDATA_METATABLE_INDEX: u8 = 0;
static USERDATA_METATABLE_NEWINDEX: u8 = 0;
+162 -20
View File
@@ -1,13 +1,18 @@
use std::iter::{self, FromIterator};
use std::{slice, str, vec};
use std::ops::Index;
use std::os::raw::c_void;
use std::sync::Arc;
use std::{ptr, slice, str, vec};
#[cfg(feature = "serialize")]
use {
serde::ser::{self, Serialize, Serializer},
std::convert::TryInto,
std::result::Result as StdResult,
};
use crate::error::{Error, Result};
use crate::ffi;
use crate::function::Function;
use crate::lua::Lua;
use crate::string::String;
@@ -33,6 +38,10 @@ pub enum Value<'lua> {
Integer(Integer),
/// A floating point number.
Number(Number),
/// A Luau vector.
#[cfg(any(feature = "luau", doc))]
#[cfg_attr(docsrs, doc(cfg(feature = "luau")))]
Vector(f32, f32, f32),
/// An interned string, managed by Lua.
///
/// Unlike Rust strings, Lua strings may not be valid UTF-8.
@@ -49,16 +58,19 @@ pub enum Value<'lua> {
/// `Error` is a special builtin userdata type. When received from Lua it is implicitly cloned.
Error(Error),
}
pub use self::Value::Nil;
impl<'lua> Value<'lua> {
pub fn type_name(&self) -> &'static str {
pub const fn type_name(&self) -> &'static str {
match *self {
Value::Nil => "nil",
Value::Boolean(_) => "boolean",
Value::LightUserData(_) => "lightuserdata",
Value::Integer(_) => "integer",
Value::Number(_) => "number",
#[cfg(feature = "luau")]
Value::Vector(_, _, _) => "vector",
Value::String(_) => "string",
Value::Table(_) => "table",
Value::Function(_) => "function",
@@ -82,7 +94,31 @@ impl<'lua> Value<'lua> {
match (self, other.as_ref()) {
(Value::Table(a), Value::Table(b)) => a.equals(b),
(Value::UserData(a), Value::UserData(b)) => a.equals(b),
_ => Ok(self == other.as_ref()),
(a, b) => Ok(a == b),
}
}
/// Converts the value to a generic C pointer.
///
/// The value can be a userdata, a table, a thread, a string, or a function; otherwise it returns NULL.
/// Different objects will give different pointers.
/// There is no way to convert the pointer back to its original value.
///
/// Typically this function is used only for hashing and debug information.
#[inline]
pub fn to_pointer(&self) -> *const c_void {
unsafe {
match self {
Value::LightUserData(ud) => ud.0,
Value::Table(t) => t.to_pointer(),
Value::String(s) => s.to_pointer(),
Value::Function(Function(r))
| Value::Thread(Thread(r))
| Value::UserData(AnyUserData(r)) => {
ffi::lua_topointer(r.lua.ref_thread(), r.index)
}
_ => ptr::null(),
}
}
}
}
@@ -97,6 +133,8 @@ impl<'lua> PartialEq for Value<'lua> {
(Value::Integer(a), Value::Number(b)) => *a as Number == *b,
(Value::Number(a), Value::Integer(b)) => *a == *b as Number,
(Value::Number(a), Value::Number(b)) => *a == *b,
#[cfg(feature = "luau")]
(Value::Vector(x1, y1, z1), Value::Vector(x2, y2, z2)) => (x1, y1, z1) == (x2, y2, z2),
(Value::String(a), Value::String(b)) => a == b,
(Value::Table(a), Value::Table(b)) => a == b,
(Value::Function(a), Value::Function(b)) => a == b,
@@ -124,9 +162,11 @@ impl<'lua> Serialize for Value<'lua> {
Value::Nil => serializer.serialize_unit(),
Value::Boolean(b) => serializer.serialize_bool(*b),
#[allow(clippy::useless_conversion)]
Value::Integer(i) => serializer.serialize_i64((*i).into()),
#[allow(clippy::useless_conversion)]
Value::Number(n) => serializer.serialize_f64((*n).into()),
Value::Integer(i) => serializer
.serialize_i64((*i).try_into().expect("cannot convert Lua Integer to i64")),
Value::Number(n) => serializer.serialize_f64(*n),
#[cfg(feature = "luau")]
Value::Vector(x, y, z) => (x, y, z).serialize(serializer),
Value::String(s) => s.serialize(serializer),
Value::Table(t) => t.serialize(serializer),
Value::UserData(ud) => ud.serialize(serializer),
@@ -140,15 +180,34 @@ impl<'lua> Serialize for Value<'lua> {
}
/// Trait for types convertible to `Value`.
pub trait ToLua<'lua> {
pub trait IntoLua<'lua> {
/// Performs the conversion.
fn to_lua(self, lua: &'lua Lua) -> Result<Value<'lua>>;
fn into_lua(self, lua: &'lua Lua) -> Result<Value<'lua>>;
}
/// Trait for types convertible from `Value`.
pub trait FromLua<'lua>: Sized {
/// Performs the conversion.
fn from_lua(lua_value: Value<'lua>, lua: &'lua Lua) -> Result<Self>;
fn from_lua(value: Value<'lua>, lua: &'lua Lua) -> Result<Self>;
/// Performs the conversion for an argument (eg. function argument).
///
/// `i` is the argument index (position),
/// `to` is a function name that received the argument.
#[doc(hidden)]
fn from_lua_arg(
value: Value<'lua>,
i: usize,
to: Option<&str>,
lua: &'lua Lua,
) -> Result<Self> {
Self::from_lua(value, lua).map_err(|err| Error::BadArgument {
to: to.map(|s| s.to_string()),
pos: i,
name: None,
cause: Arc::new(err),
})
}
}
/// Multiple Lua values used for both argument passing and also for multiple return values.
@@ -157,10 +216,21 @@ pub struct MultiValue<'lua>(Vec<Value<'lua>>);
impl<'lua> MultiValue<'lua> {
/// Creates an empty `MultiValue` containing no values.
#[inline]
pub fn new() -> MultiValue<'lua> {
pub const fn new() -> MultiValue<'lua> {
MultiValue(Vec::new())
}
/// Similar to `new` but can return previously used container with allocated capacity.
#[inline]
pub(crate) fn new_or_pooled(lua: &'lua Lua) -> MultiValue<'lua> {
lua.new_multivalue_from_pool()
}
/// Clears and returns previously allocated multivalue container to the pool.
#[inline]
pub(crate) fn return_to_pool(multivalue: Self, lua: &Lua) {
lua.return_multivalue_to_pool(multivalue);
}
}
impl<'lua> Default for MultiValue<'lua> {
@@ -193,7 +263,24 @@ impl<'a, 'lua> IntoIterator for &'a MultiValue<'lua> {
#[inline]
fn into_iter(self) -> Self::IntoIter {
(&self.0).iter().rev()
self.0.iter().rev()
}
}
impl<'lua> Index<usize> for MultiValue<'lua> {
type Output = Value<'lua>;
#[inline]
fn index(&self, index: usize) -> &Self::Output {
if let Some(result) = self.get(index) {
result
} else {
panic!(
"index out of bounds: the len is {} but the index is {}",
self.len(),
index
)
}
}
}
@@ -211,19 +298,32 @@ impl<'lua> MultiValue<'lua> {
v
}
#[inline]
pub fn get(&self, index: usize) -> Option<&Value<'lua>> {
if index < self.0.len() {
return self.0.get(self.0.len() - index - 1);
}
None
}
#[inline]
pub(crate) fn reserve(&mut self, size: usize) {
self.0.reserve(size);
}
#[inline]
pub(crate) fn push_front(&mut self, value: Value<'lua>) {
pub fn pop_front(&mut self) -> Option<Value<'lua>> {
self.0.pop()
}
#[inline]
pub fn push_front(&mut self, value: Value<'lua>) {
self.0.push(value);
}
#[inline]
pub(crate) fn pop_front(&mut self) -> Option<Value<'lua>> {
self.0.pop()
pub fn clear(&mut self) {
self.0.clear();
}
#[inline]
@@ -233,22 +333,40 @@ impl<'lua> MultiValue<'lua> {
#[inline]
pub fn is_empty(&self) -> bool {
self.0.len() == 0
self.0.is_empty()
}
#[inline]
pub fn iter(&self) -> iter::Rev<slice::Iter<Value<'lua>>> {
self.0.iter().rev()
}
#[inline]
pub(crate) fn drain_all(&mut self) -> iter::Rev<vec::Drain<Value<'lua>>> {
self.0.drain(..).rev()
}
#[inline]
pub(crate) fn refill(
&mut self,
iter: impl IntoIterator<Item = Result<Value<'lua>>>,
) -> Result<()> {
self.0.clear();
for value in iter {
self.0.push(value?);
}
self.0.reverse();
Ok(())
}
}
/// Trait for types convertible to any number of Lua values.
///
/// This is a generalization of `ToLua`, allowing any number of resulting Lua values instead of just
/// one. Any type that implements `ToLua` will automatically implement this trait.
pub trait ToLuaMulti<'lua> {
/// This is a generalization of `IntoLua`, allowing any number of resulting Lua values instead of just
/// one. Any type that implements `IntoLua` will automatically implement this trait.
pub trait IntoLuaMulti<'lua> {
/// Performs the conversion.
fn to_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>>;
fn into_lua_multi(self, lua: &'lua Lua) -> Result<MultiValue<'lua>>;
}
/// Trait for types that can be created from an arbitrary number of Lua values.
@@ -263,4 +381,28 @@ pub trait FromLuaMulti<'lua>: Sized {
/// assigning values. Similarly, if not enough values are given, conversions should assume that
/// any missing values are nil.
fn from_lua_multi(values: MultiValue<'lua>, lua: &'lua Lua) -> Result<Self>;
/// Performs the conversion for a list of arguments.
///
/// `i` is an index (position) of the first argument,
/// `to` is a function name that received the arguments.
#[doc(hidden)]
#[inline]
fn from_lua_multi_args(
values: MultiValue<'lua>,
i: usize,
to: Option<&str>,
lua: &'lua Lua,
) -> Result<Self> {
let _ = (i, to);
Self::from_lua_multi(values, lua)
}
}
#[cfg(test)]
mod assertions {
use super::*;
static_assertions::assert_not_impl_any!(Value: Send);
static_assertions::assert_not_impl_any!(MultiValue: Send);
}
+145 -113
View File
@@ -1,18 +1,15 @@
#![cfg(feature = "async")]
use std::cell::Cell;
use std::rc::Rc;
use std::sync::{
atomic::{AtomicI64, Ordering},
Arc,
};
use std::sync::atomic::{AtomicU64, Ordering};
use std::sync::Arc;
use std::time::Duration;
use futures_timer::Delay;
use futures_util::stream::TryStreamExt;
use mlua::{
Error, Function, Lua, Result, Table, TableExt, Thread, UserData, UserDataMethods, Value,
AnyUserDataExt, Error, Function, Lua, LuaOptions, Result, StdLib, Table, TableExt, UserData,
UserDataMethods,
};
#[tokio::test]
@@ -29,6 +26,20 @@ async fn test_async_function() -> Result<()> {
Ok(())
}
#[cfg(feature = "unstable")]
#[tokio::test]
async fn test_async_function_wrap() -> Result<()> {
let lua = Lua::new();
let f = Function::wrap_async(|_, s: String| async move { Ok(s) });
lua.globals().set("f", f)?;
let res: String = lua.load(r#"f("hello")"#).eval_async().await?;
assert_eq!(res, "hello");
Ok(())
}
#[tokio::test]
async fn test_async_sleep() -> Result<()> {
let lua = Lua::new();
@@ -74,7 +85,10 @@ async fn test_async_call() -> Result<()> {
async fn test_async_bind_call() -> Result<()> {
let lua = Lua::new();
let sum = lua.create_async_function(|_lua, (a, b): (i64, i64)| async move { Ok(a + b) })?;
let sum = lua.create_async_function(|_lua, (a, b): (i64, i64)| async move {
tokio::task::yield_now().await;
Ok(a + b)
})?;
let plus_10 = sum.bind(10)?;
lua.globals().set("plus_10", plus_10)?;
@@ -170,6 +184,38 @@ async fn test_async_return_async_closure() -> Result<()> {
Ok(())
}
#[cfg(feature = "lua54")]
#[tokio::test]
async fn test_async_lua54_to_be_closed() -> Result<()> {
let lua = Lua::new();
let globals = lua.globals();
globals.set("close_count", 0)?;
let code = r#"
local t <close> = setmetatable({}, {
__close = function()
close_count = close_count + 1
end
})
error "test"
"#;
let f = lua.load(code).into_function()?;
// Test close using call_async
let _ = f.call_async::<_, ()>(()).await;
assert_eq!(globals.get::<_, usize>("close_count")?, 1);
// Don't close by default when awaiting async threads
let co = lua.create_thread(f.clone())?;
let _ = co.clone().into_async::<_, ()>(()).await;
assert_eq!(globals.get::<_, usize>("close_count")?, 1);
let _ = co.reset(f);
assert_eq!(globals.get::<_, usize>("close_count")?, 2);
Ok(())
}
#[tokio::test]
async fn test_async_thread_stream() -> Result<()> {
let lua = Lua::new();
@@ -227,7 +273,8 @@ async fn test_async_thread() -> Result<()> {
#[tokio::test]
async fn test_async_table() -> Result<()> {
let lua = Lua::new();
let options = LuaOptions::new().thread_pool_size(4);
let lua = Lua::new_with(StdLib::ALL_SAFE, options)?;
let table = lua.create_table()?;
table.set("val", 10)?;
@@ -273,10 +320,32 @@ async fn test_async_table() -> Result<()> {
Ok(())
}
#[tokio::test]
async fn test_async_thread_pool() -> Result<()> {
let options = LuaOptions::new().thread_pool_size(4);
let lua = Lua::new_with(StdLib::ALL_SAFE, options)?;
let error_f = lua.create_async_function(|_, ()| async move {
Delay::new(Duration::from_millis(10)).await;
Err::<(), _>(Error::RuntimeError("test".to_string()))
})?;
let sleep = lua.create_async_function(|_, n| async move {
Delay::new(Duration::from_millis(n)).await;
Ok(format!("elapsed:{}ms", n))
})?;
assert!(error_f.call_async::<_, ()>(()).await.is_err());
// Next call should use cached thread
assert_eq!(sleep.call_async::<_, String>(3).await?, "elapsed:3ms");
Ok(())
}
#[tokio::test]
async fn test_async_userdata() -> Result<()> {
#[derive(Clone)]
struct MyUserData(Arc<AtomicI64>);
struct MyUserData(Arc<AtomicU64>);
impl UserData for MyUserData {
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
@@ -295,13 +364,46 @@ async fn test_async_userdata() -> Result<()> {
Delay::new(Duration::from_millis(n)).await;
Ok(format!("elapsed:{}ms", n))
});
#[cfg(not(any(feature = "lua51", feature = "luau")))]
methods.add_async_meta_method(mlua::MetaMethod::Call, |_, data, ()| async move {
let n = data.0.load(Ordering::Relaxed);
Delay::new(Duration::from_millis(n)).await;
Ok(format!("elapsed:{}ms", n))
});
#[cfg(not(any(feature = "lua51", feature = "luau")))]
methods.add_async_meta_method(
mlua::MetaMethod::Index,
|_, data, key: String| async move {
Delay::new(Duration::from_millis(10)).await;
match key.as_str() {
"ms" => Ok(Some(data.0.load(Ordering::Relaxed) as f64)),
"s" => Ok(Some((data.0.load(Ordering::Relaxed) as f64) / 1000.0)),
_ => Ok(None),
}
},
);
#[cfg(not(any(feature = "lua51", feature = "luau")))]
methods.add_async_meta_method(
mlua::MetaMethod::NewIndex,
|_, data, (key, value): (String, f64)| async move {
Delay::new(Duration::from_millis(10)).await;
match key.as_str() {
"ms" => Ok(data.0.store(value as u64, Ordering::Relaxed)),
"s" => Ok(data.0.store((value * 1000.0) as u64, Ordering::Relaxed)),
_ => Err(Error::external(format!("key '{}' not found", key))),
}
},
);
}
}
let lua = Lua::new();
let globals = lua.globals();
let userdata = lua.create_userdata(MyUserData(Arc::new(AtomicI64::new(11))))?;
let userdata = lua.create_userdata(MyUserData(Arc::new(AtomicU64::new(11))))?;
globals.set("userdata", userdata.clone())?;
lua.load(
@@ -315,123 +417,53 @@ async fn test_async_userdata() -> Result<()> {
.exec_async()
.await?;
Ok(())
}
#[cfg(not(any(feature = "lua51", feature = "luau")))]
lua.load(
r#"
userdata:set_value(15)
assert(userdata() == "elapsed:15ms")
#[tokio::test]
async fn test_async_scope() -> Result<()> {
let ref lua = Lua::new();
userdata.ms = 2000
assert(userdata.s == 2)
let ref rc = Rc::new(Cell::new(0));
userdata.s = 15
assert(userdata.ms == 15000)
"#,
)
.exec_async()
.await?;
let fut = lua.async_scope(|scope| async move {
let f = scope.create_async_function(move |_, n: u64| {
let rc2 = rc.clone();
async move {
rc2.set(42);
Delay::new(Duration::from_millis(n)).await;
assert_eq!(Rc::strong_count(&rc2), 2);
Ok(())
}
})?;
userdata.call_async_method("set_value", 24).await?;
let n: u64 = userdata.call_async_method("get_value", ()).await?;
assert_eq!(n, 24);
userdata.call_async_function("sleep", 15).await?;
lua.globals().set("f", f.clone())?;
assert_eq!(Rc::strong_count(rc), 1);
let _ = f.call_async::<u64, ()>(10).await?;
assert_eq!(Rc::strong_count(rc), 1);
// Create future in partialy polled state (Poll::Pending)
let g = lua.create_thread(f)?;
g.resume::<u64, ()>(10)?;
lua.globals().set("g", g)?;
assert_eq!(Rc::strong_count(rc), 2);
Ok(())
});
assert_eq!(Rc::strong_count(rc), 1);
let _ = fut.await?;
assert_eq!(Rc::strong_count(rc), 1);
match lua
.globals()
.get::<_, Function>("f")?
.call_async::<_, ()>(10)
.await
{
Err(Error::CallbackError { ref cause, .. }) => match cause.as_ref() {
Error::CallbackDestructed => {}
e => panic!("expected `CallbackDestructed` error cause, got {:?}", e),
},
r => panic!("improper return for destructed function: {:?}", r),
};
match lua.globals().get::<_, Thread>("g")?.resume::<_, Value>(()) {
Err(Error::CallbackError { ref cause, .. }) => match cause.as_ref() {
Error::CallbackDestructed => {}
e => panic!("expected `CallbackDestructed` error cause, got {:?}", e),
},
r => panic!("improper return for destructed function: {:?}", r),
};
#[cfg(not(any(feature = "lua51", feature = "luau")))]
assert_eq!(userdata.call_async::<_, String>(()).await?, "elapsed:24ms");
Ok(())
}
#[tokio::test]
async fn test_async_scope_userdata() -> Result<()> {
#[derive(Clone)]
struct MyUserData(Arc<AtomicI64>);
async fn test_async_thread_error() -> Result<()> {
struct MyUserData;
impl UserData for MyUserData {
fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
methods.add_async_method("get_value", |_, data, ()| async move {
Delay::new(Duration::from_millis(10)).await;
Ok(data.0.load(Ordering::Relaxed))
});
methods.add_async_method("set_value", |_, data, n| async move {
Delay::new(Duration::from_millis(10)).await;
data.0.store(n, Ordering::Relaxed);
Ok(())
});
methods.add_async_function("sleep", |_, n| async move {
Delay::new(Duration::from_millis(n)).await;
Ok(format!("elapsed:{}ms", n))
});
methods.add_meta_method("__tostring", |_, _this, ()| Ok("myuserdata error"))
}
}
let ref lua = Lua::new();
let ref arc = Arc::new(AtomicI64::new(11));
lua.async_scope(|scope| async move {
let ud = scope.create_userdata(MyUserData(arc.clone()))?;
lua.globals().set("userdata", ud)?;
lua.load(
r#"
assert(userdata:get_value() == 11)
userdata:set_value(12)
assert(userdata.sleep(5) == "elapsed:5ms")
assert(userdata:get_value() == 12)
"#,
)
.exec_async()
.await
})
.await?;
assert_eq!(Arc::strong_count(arc), 1);
match lua.load("userdata:get_value()").exec_async().await {
Err(Error::CallbackError { ref cause, .. }) => match cause.as_ref() {
Error::CallbackDestructed => {}
e => panic!("expected `CallbackDestructed` error cause, got {:?}", e),
},
r => panic!("improper return for destructed userdata: {:?}", r),
};
let lua = Lua::new();
let result = lua
.load("function x(...) error(...) end x(...)")
.set_name("chunk")
.call_async::<_, ()>(MyUserData)
.await;
assert!(
matches!(result, Err(Error::RuntimeError(cause)) if cause.contains("myuserdata error")),
"improper error traceback from dead thread"
);
Ok(())
}
+53
View File
@@ -0,0 +1,53 @@
use std::fs;
use std::io;
use mlua::{Lua, Result};
#[test]
fn test_chunk_path() -> Result<()> {
let lua = Lua::new();
let temp_dir = tempfile::tempdir().unwrap();
fs::write(
temp_dir.path().join("module.lua"),
r#"
return 321
"#,
)?;
let i: i32 = lua.load(&*temp_dir.path().join("module.lua")).eval()?;
assert_eq!(i, 321);
match lua.load(&*temp_dir.path().join("module2.lua")).exec() {
Err(err) if err.downcast_ref::<io::Error>().unwrap().kind() == io::ErrorKind::NotFound => {}
res => panic!("expected io::Error, got {:?}", res),
};
Ok(())
}
#[test]
#[cfg(feature = "macros")]
fn test_chunk_macro() -> Result<()> {
let lua = Lua::new();
let name = "Rustacean";
let table = vec![1];
let data = lua.create_table()?;
data.raw_set("num", 1)?;
lua.globals().set("g", 123)?;
lua.load(mlua::chunk! {
assert($name == "Rustacean")
assert($table[1] == 1)
assert($data.num == 1)
assert(g == 123)
s = 321
})
.exec()?;
assert_eq!(lua.globals().get::<_, i32>("s")?, 321);
Ok(())
}
+1 -3
View File
@@ -1,8 +1,6 @@
use mlua::{Lua, UserData, UserDataMethods};
use mlua::{UserData, UserDataMethods};
fn main() {
let ref lua = Lua::new();
#[derive(Clone)]
struct MyUserData<'a>(&'a i64);
+12 -34
View File
@@ -1,36 +1,14 @@
error[E0495]: cannot infer an appropriate lifetime due to conflicting requirements
--> $DIR/async_nonstatic_userdata.rs:11:72
error: lifetime may not live long enough
--> tests/compile/async_nonstatic_userdata.rs:9:13
|
11 | methods.add_async_method("print", |_, data, ()| async move {
| ________________________________________________________________________^
12 | | println!("{}", data.0);
13 | | Ok(())
14 | | });
| |_____________^
7 | impl<'a> UserData for MyUserData<'a> {
| -- lifetime `'a` defined here
8 | fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
| ---- lifetime `'lua` defined here
9 | / methods.add_async_method("print", |_, data, ()| async move {
10 | | println!("{}", data.0);
11 | | Ok(())
12 | | });
| |______________^ argument requires that `'a` must outlive `'lua`
|
note: first, the lifetime cannot outlive the lifetime `'a` as defined on the impl at 9:10...
--> $DIR/async_nonstatic_userdata.rs:9:10
|
9 | impl<'a> UserData for MyUserData<'a> {
| ^^
note: ...so that the types are compatible
--> $DIR/async_nonstatic_userdata.rs:11:72
|
11 | methods.add_async_method("print", |_, data, ()| async move {
| ________________________________________________________________________^
12 | | println!("{}", data.0);
13 | | Ok(())
14 | | });
| |_____________^
= note: expected `(MyUserData<'_>,)`
found `(MyUserData<'a>,)`
note: but, the lifetime must be valid for the lifetime `'lua` as defined on the method body at 10:24...
--> $DIR/async_nonstatic_userdata.rs:10:24
|
10 | fn add_methods<'lua, M: UserDataMethods<'lua, Self>>(methods: &mut M) {
| ^^^^
note: ...so that the type `impl Future` will meet its required lifetime bounds
--> $DIR/async_nonstatic_userdata.rs:11:21
|
11 | methods.add_async_method("print", |_, data, ()| async move {
| ^^^^^^^^^^^^^^^^
= help: consider adding the following bound: `'a: 'lua`
+7 -7
View File
@@ -1,20 +1,20 @@
error[E0373]: closure may outlive the current function, but it borrows `test`, which is owned by the current function
--> $DIR/function_borrow.rs:9:33
error[E0373]: closure may outlive the current function, but it borrows `test.0`, which is owned by the current function
--> tests/compile/function_borrow.rs:9:33
|
9 | let _ = lua.create_function(|_, ()| -> Result<i32> {
| ^^^^^^^^^^^^^^^^^^^^^^ may outlive borrowed value `test`
| ^^^^^^^^^^^^^^^^^^^^^^ may outlive borrowed value `test.0`
10 | Ok(test.0)
| ------ `test` is borrowed here
| ------ `test.0` is borrowed here
|
note: function requires argument type to outlive `'static`
--> $DIR/function_borrow.rs:9:13
--> tests/compile/function_borrow.rs:9:13
|
9 | let _ = lua.create_function(|_, ()| -> Result<i32> {
| _____________^
10 | | Ok(test.0)
11 | | });
| |______^
help: to force the closure to take ownership of `test` (and any other referenced variables), use the `move` keyword
help: to force the closure to take ownership of `test.0` (and any other referenced variables), use the `move` keyword
|
9 | let _ = lua.create_function(move |_, ()| -> Result<i32> {
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^
| ++++
+13 -26
View File
@@ -1,35 +1,22 @@
error[E0277]: the type `UnsafeCell<()>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
--> $DIR/lua_norefunwindsafe.rs:7:5
error[E0277]: the type `UnsafeCell<mlua::lua::LuaInner>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
--> tests/compile/lua_norefunwindsafe.rs:7:5
|
7 | catch_unwind(|| lua.create_table().unwrap());
| ^^^^^^^^^^^^ `UnsafeCell<()>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
| ^^^^^^^^^^^^ `UnsafeCell<mlua::lua::LuaInner>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
|
::: $RUST/std/src/panic.rs
|
| pub fn catch_unwind<F: FnOnce() -> R + UnwindSafe, R>(f: F) -> Result<R> {
| ---------- required by this bound in `catch_unwind`
|
= help: within `Lua`, the trait `RefUnwindSafe` is not implemented for `UnsafeCell<()>`
= note: required because it appears within the type `PhantomData<UnsafeCell<()>>`
= help: within `Lua`, the trait `RefUnwindSafe` is not implemented for `UnsafeCell<mlua::lua::LuaInner>`
= note: required because it appears within the type `alloc::sync::ArcInner<UnsafeCell<mlua::lua::LuaInner>>`
= note: required because it appears within the type `PhantomData<alloc::sync::ArcInner<UnsafeCell<mlua::lua::LuaInner>>>`
= note: required because it appears within the type `Arc<UnsafeCell<mlua::lua::LuaInner>>`
= note: required because it appears within the type `Lua`
= note: required because of the requirements on the impl of `UnwindSafe` for `&Lua`
= note: required because it appears within the type `[closure@$DIR/tests/compile/lua_norefunwindsafe.rs:7:18: 7:48]`
error[E0277]: the type `UnsafeCell<mlua::lua::ExtraData>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
--> $DIR/lua_norefunwindsafe.rs:7:5
note: required because it's used within this closure
--> tests/compile/lua_norefunwindsafe.rs:7:18
|
7 | catch_unwind(|| lua.create_table().unwrap());
| ^^^^^^^^^^^^ `UnsafeCell<mlua::lua::ExtraData>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
|
::: $RUST/std/src/panic.rs
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
note: required by a bound in `catch_unwind`
--> $RUST/std/src/panic.rs
|
| pub fn catch_unwind<F: FnOnce() -> R + UnwindSafe, R>(f: F) -> Result<R> {
| ---------- required by this bound in `catch_unwind`
|
= help: within `Lua`, the trait `RefUnwindSafe` is not implemented for `UnsafeCell<mlua::lua::ExtraData>`
= note: required because it appears within the type `alloc::sync::ArcInner<UnsafeCell<mlua::lua::ExtraData>>`
= note: required because it appears within the type `PhantomData<alloc::sync::ArcInner<UnsafeCell<mlua::lua::ExtraData>>>`
= note: required because it appears within the type `Arc<UnsafeCell<mlua::lua::ExtraData>>`
= note: required because it appears within the type `Lua`
= note: required because of the requirements on the impl of `UnwindSafe` for `&Lua`
= note: required because it appears within the type `[closure@$DIR/tests/compile/lua_norefunwindsafe.rs:7:18: 7:48]`
| ^^^^^^^^^^ required by this bound in `catch_unwind`
+25 -13
View File
@@ -1,14 +1,26 @@
error[E0277]: `Rc<Cell<i32>>` cannot be sent between threads safely
--> $DIR/non_send.rs:11:9
|
11 | lua.create_function(move |_, ()| {
| _________^^^^^^^^^^^^^^^_-
| | |
| | `Rc<Cell<i32>>` cannot be sent between threads safely
12 | | Ok(data.get())
13 | | })?
| |_____- within this `[closure@$DIR/tests/compile/non_send.rs:11:25: 13:6]`
|
= help: within `[closure@$DIR/tests/compile/non_send.rs:11:25: 13:6]`, the trait `Send` is not implemented for `Rc<Cell<i32>>`
= note: required because it appears within the type `[closure@$DIR/tests/compile/non_send.rs:11:25: 13:6]`
= note: required because of the requirements on the impl of `mlua::types::MaybeSend` for `[closure@$DIR/tests/compile/non_send.rs:11:25: 13:6]`
--> tests/compile/non_send.rs:11:9
|
11 | lua.create_function(move |_, ()| {
| _________^^^^^^^^^^^^^^^_-
| | |
| | `Rc<Cell<i32>>` cannot be sent between threads safely
12 | | Ok(data.get())
13 | | })?
| |_____- within this `[closure@$DIR/tests/compile/non_send.rs:11:25: 13:6]`
|
= help: within `[closure@$DIR/tests/compile/non_send.rs:11:25: 13:6]`, the trait `Send` is not implemented for `Rc<Cell<i32>>`
note: required because it's used within this closure
--> tests/compile/non_send.rs:11:25
|
11 | lua.create_function(move |_, ()| {
| _________________________^
12 | | Ok(data.get())
13 | | })?
| |_____^
= note: required because of the requirements on the impl of `mlua::types::MaybeSend` for `[closure@$DIR/tests/compile/non_send.rs:11:25: 13:6]`
note: required by a bound in `Lua::create_function`
--> src/lua.rs
|
| F: 'static + MaybeSend + Fn(&'lua Lua, A) -> Result<R>,
| ^^^^^^^^^ required by this bound in `Lua::create_function`
+13 -28
View File
@@ -1,39 +1,24 @@
error[E0277]: the type `UnsafeCell<()>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
--> $DIR/ref_nounwindsafe.rs:8:5
error[E0277]: the type `UnsafeCell<mlua::lua::LuaInner>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
--> tests/compile/ref_nounwindsafe.rs:8:5
|
8 | catch_unwind(move || table.set("a", "b").unwrap());
| ^^^^^^^^^^^^ `UnsafeCell<()>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
| ^^^^^^^^^^^^ `UnsafeCell<mlua::lua::LuaInner>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
|
::: $RUST/std/src/panic.rs
|
| pub fn catch_unwind<F: FnOnce() -> R + UnwindSafe, R>(f: F) -> Result<R> {
| ---------- required by this bound in `catch_unwind`
|
= help: within `Lua`, the trait `RefUnwindSafe` is not implemented for `UnsafeCell<()>`
= note: required because it appears within the type `PhantomData<UnsafeCell<()>>`
= help: within `Lua`, the trait `RefUnwindSafe` is not implemented for `UnsafeCell<mlua::lua::LuaInner>`
= note: required because it appears within the type `alloc::sync::ArcInner<UnsafeCell<mlua::lua::LuaInner>>`
= note: required because it appears within the type `PhantomData<alloc::sync::ArcInner<UnsafeCell<mlua::lua::LuaInner>>>`
= note: required because it appears within the type `Arc<UnsafeCell<mlua::lua::LuaInner>>`
= note: required because it appears within the type `Lua`
= note: required because of the requirements on the impl of `UnwindSafe` for `&Lua`
= note: required because it appears within the type `mlua::types::LuaRef<'_>`
= note: required because it appears within the type `LuaTable<'_>`
= note: required because it appears within the type `[closure@$DIR/tests/compile/ref_nounwindsafe.rs:8:18: 8:54]`
error[E0277]: the type `UnsafeCell<mlua::lua::ExtraData>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
--> $DIR/ref_nounwindsafe.rs:8:5
note: required because it's used within this closure
--> tests/compile/ref_nounwindsafe.rs:8:18
|
8 | catch_unwind(move || table.set("a", "b").unwrap());
| ^^^^^^^^^^^^ `UnsafeCell<mlua::lua::ExtraData>` may contain interior mutability and a reference may not be safely transferrable across a catch_unwind boundary
|
::: $RUST/std/src/panic.rs
| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
note: required by a bound in `catch_unwind`
--> $RUST/std/src/panic.rs
|
| pub fn catch_unwind<F: FnOnce() -> R + UnwindSafe, R>(f: F) -> Result<R> {
| ---------- required by this bound in `catch_unwind`
|
= help: within `Lua`, the trait `RefUnwindSafe` is not implemented for `UnsafeCell<mlua::lua::ExtraData>`
= note: required because it appears within the type `alloc::sync::ArcInner<UnsafeCell<mlua::lua::ExtraData>>`
= note: required because it appears within the type `PhantomData<alloc::sync::ArcInner<UnsafeCell<mlua::lua::ExtraData>>>`
= note: required because it appears within the type `Arc<UnsafeCell<mlua::lua::ExtraData>>`
= note: required because it appears within the type `Lua`
= note: required because of the requirements on the impl of `UnwindSafe` for `&Lua`
= note: required because it appears within the type `mlua::types::LuaRef<'_>`
= note: required because it appears within the type `LuaTable<'_>`
= note: required because it appears within the type `[closure@$DIR/tests/compile/ref_nounwindsafe.rs:8:18: 8:54]`
| ^^^^^^^^^^ required by this bound in `catch_unwind`
+5 -5
View File
@@ -1,5 +1,5 @@
error[E0521]: borrowed data escapes outside of closure
--> $DIR/scope_callback_inner.rs:7:17
--> tests/compile/scope_callback_inner.rs:7:17
|
5 | lua.scope(|scope| {
| -----
@@ -16,10 +16,10 @@ error[E0521]: borrowed data escapes outside of closure
| |______________^ `scope` escapes the closure body here
error[E0373]: closure may outlive the current function, but it borrows `inner`, which is owned by the current function
--> $DIR/scope_callback_inner.rs:8:34
--> tests/compile/scope_callback_inner.rs:8:34
|
5 | lua.scope(|scope| {
| ----- has type `&Scope<'_, '2>`
| ----- has type `&mlua::Scope<'_, '2>`
...
8 | .create_function_mut(|_, t: Table| {
| ^^^^^^^^^^^^^ may outlive borrowed value `inner`
@@ -27,7 +27,7 @@ error[E0373]: closure may outlive the current function, but it borrows `inner`,
| ----- `inner` is borrowed here
|
note: function requires argument type to outlive `'2`
--> $DIR/scope_callback_inner.rs:7:17
--> tests/compile/scope_callback_inner.rs:7:17
|
7 | let f = scope
| _________________^
@@ -39,4 +39,4 @@ note: function requires argument type to outlive `'2`
help: to force the closure to take ownership of `inner` (and any other referenced variables), use the `move` keyword
|
8 | .create_function_mut(move |_, t: Table| {
| ^^^^^^^^^^^^^^^^^^
| ++++
+8 -8
View File
@@ -1,16 +1,16 @@
error[E0373]: closure may outlive the current function, but it borrows `test`, which is owned by the current function
--> $DIR/scope_invariance.rs:14:38
error[E0373]: closure may outlive the current function, but it borrows `test.field`, which is owned by the current function
--> tests/compile/scope_invariance.rs:14:38
|
9 | lua.scope(|scope| {
| ----- has type `&Scope<'_, '1>`
| ----- has type `&mlua::Scope<'_, '1>`
...
14 | .create_function_mut(|_, ()| {
| ^^^^^^^ may outlive borrowed value `test`
| ^^^^^^^ may outlive borrowed value `test.field`
15 | test.field = 42;
| ---------- `test` is borrowed here
| ---------- `test.field` is borrowed here
|
note: function requires argument type to outlive `'1`
--> $DIR/scope_invariance.rs:13:13
--> tests/compile/scope_invariance.rs:13:13
|
13 | / scope
14 | | .create_function_mut(|_, ()| {
@@ -19,7 +19,7 @@ note: function requires argument type to outlive `'1`
17 | | Ok(())
18 | | })?
| |__________________^
help: to force the closure to take ownership of `test` (and any other referenced variables), use the `move` keyword
help: to force the closure to take ownership of `test.field` (and any other referenced variables), use the `move` keyword
|
14 | .create_function_mut(move |_, ()| {
| ^^^^^^^^^^^^
| ++++
+2 -2
View File
@@ -1,8 +1,8 @@
error[E0597]: `ibad` does not live long enough
--> $DIR/scope_userdata_borrow.rs:15:56
--> tests/compile/scope_userdata_borrow.rs:15:56
|
11 | lua.scope(|scope| {
| ----- has type `&Scope<'_, '1>`
| ----- has type `&mlua::Scope<'_, '1>`
...
15 | scope.create_nonstatic_userdata(MyUserData(&ibad)).unwrap();
| -------------------------------------------^^^^^--
+24 -28
View File
@@ -1,35 +1,31 @@
error[E0597]: `lua` does not live long enough
--> $DIR/static_callback_args.rs:12:5
--> tests/compile/static_callback_args.rs:12:5
|
12 | lua.create_function(|_, table: Table| {
| -^^
| |
| _____borrowed value does not live long enough
| |
13 | | BAD_TIME.with(|bt| {
14 | | *bt.borrow_mut() = Some(table);
15 | | });
16 | | Ok(())
17 | | })?
| |______- argument requires that `lua` is borrowed for `'static`
12 | / lua.create_function(|_, table: Table| {
13 | | BAD_TIME.with(|bt| {
| |_________-
14 | || *bt.borrow_mut() = Some(table);
15 | || });
| ||__________- argument requires that `lua` is borrowed for `'static`
16 | | Ok(())
17 | | })?
| |______^ borrowed value does not live long enough
...
32 | }
| - `lua` dropped here while still borrowed
32 | }
| - `lua` dropped here while still borrowed
error[E0505]: cannot move out of `lua` because it is borrowed
--> $DIR/static_callback_args.rs:22:10
--> tests/compile/static_callback_args.rs:22:10
|
12 | lua.create_function(|_, table: Table| {
| ---
| |
| _____borrow of `lua` occurs here
| |
13 | | BAD_TIME.with(|bt| {
14 | | *bt.borrow_mut() = Some(table);
15 | | });
16 | | Ok(())
17 | | })?
| |______- argument requires that `lua` is borrowed for `'static`
12 | / lua.create_function(|_, table: Table| {
13 | | BAD_TIME.with(|bt| {
| |_________-
14 | || *bt.borrow_mut() = Some(table);
15 | || });
| ||__________- argument requires that `lua` is borrowed for `'static`
16 | | Ok(())
17 | | })?
| |______- borrow of `lua` occurs here
...
22 | drop(lua);
| ^^^ move out of `lua` occurs here
22 | drop(lua);
| ^^^ move out of `lua` occurs here
+16 -1
View File
@@ -3,7 +3,7 @@ use std::collections::{BTreeMap, BTreeSet, HashMap, HashSet};
use std::ffi::{CStr, CString};
use maplit::{btreemap, btreeset, hashmap, hashset};
use mlua::{Lua, Result};
use mlua::{Error, Lua, Result};
#[test]
fn test_conv_vec() -> Result<()> {
@@ -123,3 +123,18 @@ fn test_conv_boxed_slice() -> Result<()> {
Ok(())
}
#[test]
fn test_conv_array() -> Result<()> {
let lua = Lua::new();
let v = [1, 2, 3];
lua.globals().set("v", v)?;
let v2: [i32; 3] = lua.globals().get("v")?;
assert_eq!(v, v2);
let v2 = lua.globals().get::<_, [i32; 4]>("v");
assert!(matches!(v2, Err(Error::FromLuaConversionError { .. })));
Ok(())
}
+33
View File
@@ -0,0 +1,33 @@
use mlua::{Error, ErrorContext, Lua, Result};
#[test]
fn test_error_context() -> Result<()> {
let lua = Lua::new();
let func = lua.create_function(|_, ()| {
Err::<(), _>(Error::RuntimeError("runtime error".into())).context("some context")
})?;
lua.globals().set("func", func)?;
let msg = lua
.load("local _, err = pcall(func); return tostring(err)")
.eval::<String>()?;
assert!(msg.contains("some context"));
assert!(msg.contains("runtime error"));
let func2 = lua.create_function(|lua, ()| {
lua.globals()
.get::<_, String>("nonextant")
.with_context(|_| "failed to find global")
})?;
lua.globals().set("func2", func2)?;
let msg2 = lua
.load("local _, err = pcall(func2); return tostring(err)")
.eval::<String>()?;
assert!(msg2.contains("failed to find global"));
println!("{msg2}");
assert!(msg2.contains("error converting Lua nil to String"));
Ok(())
}
+94
View File
@@ -42,11 +42,17 @@ fn test_bind() -> Result<()> {
concat = concat.bind("foo")?;
concat = concat.bind("bar")?;
concat = concat.bind(("baz", "baf"))?;
assert_eq!(concat.call::<_, String>(())?, "foobarbazbaf");
assert_eq!(
concat.call::<_, String>(("hi", "wut"))?,
"foobarbazbafhiwut"
);
let mut concat2 = globals.get::<_, Function>("concat")?;
concat2 = concat2.bind(())?;
assert_eq!(concat2.call::<_, String>(())?, "");
assert_eq!(concat2.call::<_, String>(("ab", "cd"))?, "abcd");
Ok(())
}
@@ -93,6 +99,7 @@ fn test_c_function() -> Result<()> {
Ok(())
}
#[cfg(not(feature = "luau"))]
#[test]
fn test_dump() -> Result<()> {
let lua = unsafe { Lua::unsafe_new() };
@@ -106,3 +113,90 @@ fn test_dump() -> Result<()> {
Ok(())
}
#[test]
fn test_function_info() -> Result<()> {
let lua = Lua::new();
let globals = lua.globals();
lua.load(
r#"
function function1()
return function() end
end
"#,
)
.set_name("source1")
.exec()?;
let function1 = globals.get::<_, Function>("function1")?;
let function2 = function1.call::<_, Function>(())?;
let function3 = lua.create_function(|_, ()| Ok(()))?;
let function1_info = function1.info();
#[cfg(feature = "luau")]
assert_eq!(function1_info.name, Some(b"function1".to_vec()));
assert_eq!(function1_info.source, Some(b"source1".to_vec()));
assert_eq!(function1_info.line_defined, 2);
#[cfg(not(feature = "luau"))]
assert_eq!(function1_info.last_line_defined, 4);
assert_eq!(function1_info.what, Some(b"Lua".to_vec()));
let function2_info = function2.info();
assert_eq!(function2_info.name, None);
assert_eq!(function2_info.source, Some(b"source1".to_vec()));
assert_eq!(function2_info.line_defined, 3);
#[cfg(not(feature = "luau"))]
assert_eq!(function2_info.last_line_defined, 3);
assert_eq!(function2_info.what, Some(b"Lua".to_vec()));
let function3_info = function3.info();
assert_eq!(function3_info.name, None);
assert_eq!(function3_info.source, Some(b"=[C]".to_vec()));
assert_eq!(function3_info.line_defined, -1);
#[cfg(not(feature = "luau"))]
assert_eq!(function3_info.last_line_defined, -1);
assert_eq!(function3_info.what, Some(b"C".to_vec()));
let print_info = globals.get::<_, Function>("print")?.info();
#[cfg(feature = "luau")]
assert_eq!(print_info.name, Some(b"print".to_vec()));
assert_eq!(print_info.source, Some(b"=[C]".to_vec()));
assert_eq!(print_info.what, Some(b"C".to_vec()));
assert_eq!(print_info.line_defined, -1);
Ok(())
}
#[cfg(feature = "unstable")]
#[test]
fn test_function_wrap() -> Result<()> {
use mlua::Error;
let lua = Lua::new();
lua.globals()
.set("f", Function::wrap(|_, s: String| Ok(s)))?;
lua.load(r#"assert(f("hello") == "hello")"#).exec().unwrap();
let mut _i = false;
lua.globals().set(
"f",
Function::wrap_mut(move |lua, ()| {
_i = true;
lua.globals().get::<_, Function>("f")?.call::<_, ()>(())
}),
)?;
match lua.globals().get::<_, Function>("f")?.call::<_, ()>(()) {
Err(Error::CallbackError { ref cause, .. }) => match *cause.as_ref() {
Error::CallbackError { ref cause, .. } => match *cause.as_ref() {
Error::RecursiveMutCallback { .. } => {}
ref other => panic!("incorrect result: {other:?}"),
},
ref other => panic!("incorrect result: {other:?}"),
},
other => panic!("incorrect result: {other:?}"),
};
Ok(())
}
+6 -4
View File
@@ -1,6 +1,9 @@
#![cfg(not(feature = "luau"))]
use std::cell::RefCell;
use std::ops::Deref;
use std::str;
use std::sync::atomic::{AtomicI64, Ordering};
use std::sync::{Arc, Mutex};
use mlua::{DebugEvent, Error, HookTriggers, Lua, Result, Value};
@@ -126,18 +129,17 @@ fn test_error_within_hook() -> Result<()> {
#[test]
fn test_limit_execution_instructions() -> Result<()> {
let lua = Lua::new();
let mut max_instructions = 10000;
#[cfg(feature = "luajit")]
// For LuaJIT disable JIT, as compiled code does not trigger hooks
#[cfg(feature = "luajit")]
lua.load("jit.off()").exec()?;
let max_instructions = AtomicI64::new(10000);
lua.set_hook(
HookTriggers::every_nth_instruction(30),
move |_lua, debug| {
assert_eq!(debug.event(), DebugEvent::Count);
max_instructions -= 30;
if max_instructions < 0 {
if max_instructions.fetch_sub(30, Ordering::Relaxed) <= 30 {
Err(Error::RuntimeError("time's up".to_string()))
} else {
Ok(())
+310
View File
@@ -0,0 +1,310 @@
#![cfg(feature = "luau")]
use std::env;
use std::fmt::Debug;
use std::fs;
use std::panic::{catch_unwind, AssertUnwindSafe};
use std::sync::atomic::{AtomicU64, Ordering};
use std::sync::Arc;
use mlua::{Compiler, CoverageInfo, Error, Lua, Result, Table, ThreadStatus, Value, VmState};
#[test]
fn test_require() -> Result<()> {
let lua = Lua::new();
let temp_dir = tempfile::tempdir().unwrap();
fs::write(
temp_dir.path().join("module.luau"),
r#"
counter = (counter or 0) + 1
return {
counter = counter,
error = function() error("test") end,
}
"#,
)?;
env::set_var("LUAU_PATH", temp_dir.path().join("?.luau"));
lua.load(
r#"
local module = require("module")
assert(module.counter == 1)
module = require("module")
assert(module.counter == 1)
local ok, err = pcall(module.error)
assert(not ok and string.find(err, "module.luau") ~= nil)
"#,
)
.exec()
}
#[test]
fn test_vectors() -> Result<()> {
let lua = Lua::new();
let v: [f32; 3] = lua.load("vector(1, 2, 3) + vector(3, 2, 1)").eval()?;
assert_eq!(v, [4.0, 4.0, 4.0]);
// Test vector methods
lua.load(
r#"
local v = vector(1, 2, 3)
assert(v.x == 1)
assert(v.y == 2)
assert(v.z == 3)
"#,
)
.exec()?;
// Test vector methods (fastcall)
lua.load(
r#"
local v = vector(1, 2, 3)
assert(v.x == 1)
assert(v.y == 2)
assert(v.z == 3)
"#,
)
.set_compiler(Compiler::new().set_vector_ctor(Some("vector".to_string())))
.exec()?;
Ok(())
}
#[test]
fn test_readonly_table() -> Result<()> {
let lua = Lua::new();
let t = lua.create_sequence_from([1])?;
assert!(!t.is_readonly());
t.set_readonly(true);
assert!(t.is_readonly());
#[track_caller]
fn check_readonly_error<T: Debug>(res: Result<T>) {
match res {
Err(Error::RuntimeError(e)) if e.contains("attempt to modify a readonly table") => {}
r => panic!("expected RuntimeError(...) with a specific message, got {r:?}"),
}
}
check_readonly_error(t.set("key", "value"));
check_readonly_error(t.raw_set("key", "value"));
check_readonly_error(t.raw_insert(1, "value"));
check_readonly_error(t.raw_remove(1));
check_readonly_error(t.push("value"));
check_readonly_error(t.pop::<Value>());
check_readonly_error(t.raw_push("value"));
check_readonly_error(t.raw_pop::<Value>());
// Special case
match catch_unwind(AssertUnwindSafe(|| t.set_metatable(None))) {
Ok(_) => panic!("expected panic, got nothing"),
Err(_) => {}
}
Ok(())
}
#[test]
fn test_sandbox() -> Result<()> {
let lua = Lua::new();
lua.sandbox(true)?;
lua.load("global = 123").exec()?;
let n: i32 = lua.load("return global").eval()?;
assert_eq!(n, 123);
assert_eq!(lua.globals().get::<_, Option<i32>>("global")?, Some(123));
// Threads should inherit "main" globals
let f = lua.create_function(|lua, ()| lua.globals().get::<_, i32>("global"))?;
let co = lua.create_thread(f.clone())?;
assert_eq!(co.resume::<_, Option<i32>>(())?, Some(123));
// Sandboxed threads should also inherit "main" globals
let co = lua.create_thread(f)?;
co.sandbox()?;
assert_eq!(co.resume::<_, Option<i32>>(())?, Some(123));
lua.sandbox(false)?;
// Previously set variable `global` should be cleared now
assert_eq!(lua.globals().get::<_, Option<i32>>("global")?, None);
// Readonly flags should be cleared as well
let table = lua.globals().get::<_, Table>("table")?;
table.set("test", "test")?;
Ok(())
}
#[test]
fn test_sandbox_threads() -> Result<()> {
let lua = Lua::new();
let f = lua.create_function(|lua, v: Value| lua.globals().set("global", v))?;
let co = lua.create_thread(f.clone())?;
co.resume(321)?;
// The main state should see the `global` variable (as the thread is not sandboxed)
assert_eq!(lua.globals().get::<_, Option<i32>>("global")?, Some(321));
let co = lua.create_thread(f.clone())?;
co.sandbox()?;
co.resume(123)?;
// The main state should see the previous `global` value (as the thread is sandboxed)
assert_eq!(lua.globals().get::<_, Option<i32>>("global")?, Some(321));
// Try to reset the (sandboxed) thread
co.reset(f)?;
co.resume(111)?;
assert_eq!(lua.globals().get::<_, Option<i32>>("global")?, Some(111));
Ok(())
}
#[test]
fn test_interrupts() -> Result<()> {
let lua = Lua::new();
let interrupts_count = Arc::new(AtomicU64::new(0));
let interrupts_count2 = interrupts_count.clone();
lua.set_interrupt(move |_| {
interrupts_count2.fetch_add(1, Ordering::Relaxed);
Ok(VmState::Continue)
});
let f = lua
.load(
r#"
local x = 2 + 3
local y = x * 63
local z = string.len(x..", "..y)
"#,
)
.into_function()?;
f.call(())?;
assert!(interrupts_count.load(Ordering::Relaxed) > 0);
//
// Test yields from interrupt
//
let yield_count = Arc::new(AtomicU64::new(0));
let yield_count2 = yield_count.clone();
lua.set_interrupt(move |_| {
if yield_count2.fetch_add(1, Ordering::Relaxed) == 1 {
return Ok(VmState::Yield);
}
Ok(VmState::Continue)
});
let co = lua.create_thread(
lua.load(
r#"
local a = {1, 2, 3}
local b = 0
for _, x in ipairs(a) do b += x end
return b
"#,
)
.into_function()?,
)?;
co.resume(())?;
assert_eq!(co.status(), ThreadStatus::Resumable);
let result: i32 = co.resume(())?;
assert_eq!(result, 6);
assert_eq!(yield_count.load(Ordering::Relaxed), 7);
assert_eq!(co.status(), ThreadStatus::Unresumable);
//
// Test errors in interrupts
//
lua.set_interrupt(|_| Err(Error::RuntimeError("error from interrupt".into())));
match f.call::<_, ()>(()) {
Err(Error::CallbackError { cause, .. }) => match *cause {
Error::RuntimeError(ref m) if m == "error from interrupt" => {}
ref e => panic!("expected RuntimeError with a specific message, got {:?}", e),
},
r => panic!("expected CallbackError, got {:?}", r),
}
lua.remove_interrupt();
Ok(())
}
#[test]
fn test_coverage() -> Result<()> {
let lua = Lua::new();
lua.set_compiler(Compiler::default().set_coverage_level(1));
let f = lua
.load(
r#"local v = vector(1, 2, 3)
assert(v.x == 1 and v.y == 2 and v.z == 3)
function abc(i)
if i < 5 then
return 0
else
return 1
end
end
(function()
(function() abc(10) end)()
end)()
"#,
)
.into_function()?;
f.call(())?;
let mut report = Vec::new();
f.coverage(|cov| {
report.push(cov);
});
assert_eq!(
report[0],
CoverageInfo {
function: None,
line_defined: 1,
depth: 0,
hits: vec![-1, 1, 1, -1, 1, -1, -1, -1, -1, -1, -1, -1, 1, -1, -1, -1],
}
);
assert_eq!(
report[1],
CoverageInfo {
function: Some("abc".into()),
line_defined: 4,
depth: 1,
hits: vec![-1, -1, -1, -1, -1, 1, 0, -1, 1, -1, -1, -1, -1, -1, -1, -1],
}
);
assert_eq!(
report[2],
CoverageInfo {
function: None,
line_defined: 12,
depth: 1,
hits: vec![-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 1, -1, -1],
}
);
assert_eq!(
report[3],
CoverageInfo {
function: None,
line_defined: 13,
depth: 2,
hits: vec![-1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 1, -1, -1],
}
);
Ok(())
}
-29
View File
@@ -1,29 +0,0 @@
#![cfg(feature = "macros")]
use mlua::{chunk, Lua, Result};
#[test]
fn test_chunk_macro() -> Result<()> {
let lua = Lua::new();
let name = "Rustacean";
let table = vec![1];
let data = lua.create_table()?;
data.raw_set("num", 1)?;
lua.globals().set("g", 123)?;
lua.load(chunk! {
assert($name == "Rustacean")
assert($table[1] == 1)
assert($data.num == 1)
assert(g == 123)
s = 321
})
.exec()?;
assert_eq!(lua.globals().get::<_, i32>("s")?, 321);
Ok(())
}
+45 -10
View File
@@ -1,11 +1,7 @@
use std::sync::Arc;
use mlua::{Lua, Result, UserData};
use mlua::{Error, GCMode, Lua, Result, UserData};
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
use mlua::Error;
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[test]
fn test_memory_limit() -> Result<()> {
let lua = Lua::new();
@@ -21,6 +17,15 @@ fn test_memory_limit() -> Result<()> {
.into_function()?;
f.call::<_, ()>(()).expect("should trigger no memory limit");
if cfg!(feature = "luajit") && cfg!(not(feature = "vendored")) {
// we don't support setting memory limit for non-vendored luajit
assert!(matches!(
lua.set_memory_limit(0),
Err(Error::MemoryLimitNotAvailable)
));
return Ok(());
}
lua.set_memory_limit(initial_memory + 10000)?;
match f.call::<_, ()>(()) {
Err(Error::MemoryError(_)) => {}
@@ -33,15 +38,46 @@ fn test_memory_limit() -> Result<()> {
Ok(())
}
#[test]
fn test_memory_limit_thread() -> Result<()> {
let lua = Lua::new();
let f = lua
.load("local t = {}; for i = 1,10000 do t[i] = i end")
.into_function()?;
if cfg!(feature = "luajit") && cfg!(not(feature = "vendored")) {
// we don't support setting memory limit for non-vendored luajit
return Ok(());
}
lua.set_memory_limit(lua.used_memory() + 10000)?;
let thread = lua.create_thread(f)?;
match thread.resume::<_, ()>(()) {
Err(Error::MemoryError(_)) => {}
something_else => panic!("did not trigger memory error: {:?}", something_else),
};
Ok(())
}
#[test]
fn test_gc_control() -> Result<()> {
let lua = Lua::new();
let globals = lua.globals();
#[cfg(feature = "lua54")]
assert_eq!(lua.gc_gen(0, 0), mlua::GCMode::Incremental);
{
assert_eq!(lua.gc_gen(0, 0), GCMode::Incremental);
assert_eq!(lua.gc_inc(0, 0, 0), GCMode::Generational);
}
#[cfg(any(feature = "lua54", feature = "lua53", feature = "lua52"))]
#[cfg(any(
feature = "lua54",
feature = "lua53",
feature = "lua52",
feature = "luau"
))]
{
assert!(lua.gc_is_running());
lua.gc_stop();
@@ -50,6 +86,8 @@ fn test_gc_control() -> Result<()> {
assert!(lua.gc_is_running());
}
assert_eq!(lua.gc_inc(200, 100, 13), GCMode::Incremental);
struct MyUserdata(Arc<()>);
impl UserData for MyUserdata {}
@@ -62,9 +100,6 @@ fn test_gc_control() -> Result<()> {
lua.gc_collect()?;
assert_eq!(Arc::strong_count(&rc), 1);
#[cfg(feature = "lua54")]
assert_eq!(lua.gc_inc(0, 0, 0), mlua::GCMode::Generational);
Ok(())
}
+9 -3
View File
@@ -1,5 +1,11 @@
[target.x86_64-apple-darwin]
rustflags = ["-C", "link-args=-rdynamic"]
rustflags = [
"-C", "link-arg=-undefined",
"-C", "link-arg=dynamic_lookup",
]
[target.x86_64-unknown-linux-gnu]
rustflags = ["-C", "link-args=-rdynamic"]
[target.aarch64-apple-darwin]
rustflags = [
"-C", "link-arg=-undefined",
"-C", "link-arg=dynamic_lookup",
]
+11 -4
View File
@@ -1,8 +1,16 @@
[package]
name = "module_runner"
name = "test_module"
version = "0.0.0"
authors = ["Aleksandr Orlenko <zxteam@pm.me>"]
edition = "2018"
edition = "2021"
[lib]
crate-type = ["cdylib"]
[workspace]
members = [
"loader",
]
[features]
lua54 = ["mlua/lua54"]
@@ -10,7 +18,6 @@ lua53 = ["mlua/lua53"]
lua52 = ["mlua/lua52"]
lua51 = ["mlua/lua51"]
luajit = ["mlua/luajit"]
vendored = ["mlua/vendored"]
[dependencies]
mlua = { path = "../.." }
mlua = { path = "../..", features = ["module"] }

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