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## What's Changed? This week we have an update with an implementation for one of the RFCs we had approved before, an improvement of the new type solver and a small Lua 5.1 C API compatibility improvement. * `@deprecated` attribute can now have a custom suggestion for a replacement and a reason message as described in [deprecated attribute parameters RFC](https://rfcs.luau.org/syntax-attribute-functions-deprecated.html) For example: ```luau @[deprecated {reason = "foo suffers from performance issues", use = "bar"}] local function foo() ... end -- Function 'foo' is deprecated, use 'bar' instead. foo suffers from performance issues foo() ``` * `lua_cpcall` C API function has been restored both for compatibility with Lua 5.1 and as a safe way to enter protected call environment to work with Luau C API functions that may error Instead of ``` if (!lua_checkstack(L, 2)) return -1; lua_pushcfunction(L, test, nullptr); lua_pushlightuserdata(L, context); int status = lua_pcall(L, 1, 0, 0); ``` you can simply do ``` int status = lua_cpcall(L, test, context); ``` * In Luau CLI, required module return values can now have any type ## New Type Solver - Additional improvements on type refinements used with external types should fix some reported false positive errors where types refined to `never` - Fixed an issue in recursive refinement types in a form of `t1 where t1 = refine<t1, _>` getting 'stuck' - Fixed an issue in subtyping of generic functions, it is now possible to assign `<T>(T, (T) -> T) -> T` to `(number, <X>(X) -> X) -> number` - Fixed an ICE caused by recursive types (Fixes #1686) - Added additional iteration and recursion limits to stop the type solver before system resources are used up ## Internal Contributors Co-authored-by: Andy Friesen <afriesen@roblox.com> Co-authored-by: Annie Tang <annietang@roblox.com> Co-authored-by: Ariel Weiss <aaronweiss@roblox.com> Co-authored-by: Hunter Goldstein <hgoldstein@roblox.com> Co-authored-by: Ilya Rezvov <irezvov@roblox.com> Co-authored-by: Sora Kanosue <skanosue@roblox.com> Co-authored-by: Vighnesh Vijay <vvijay@roblox.com> Co-authored-by: Vyacheslav Egorov <vegorov@roblox.com>
135 lines
3.8 KiB
C++
135 lines
3.8 KiB
C++
// This file is part of the Luau programming language and is licensed under MIT License; see LICENSE.txt for details
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#include "Luau/Scope.h"
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#include "Luau/ToString.h"
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#include "Luau/TypeArena.h"
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#include "Luau/Unifier2.h"
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#include "Luau/Error.h"
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#include "ScopedFlags.h"
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#include "doctest.h"
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using namespace Luau;
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LUAU_FASTFLAG(LuauSolverV2)
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struct Unifier2Fixture
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{
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TypeArena arena;
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BuiltinTypes builtinTypes;
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Scope scope{builtinTypes.anyTypePack};
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InternalErrorReporter iceReporter;
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Unifier2 u2{NotNull{&arena}, NotNull{&builtinTypes}, NotNull{&scope}, NotNull{&iceReporter}};
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ToStringOptions opts;
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ScopedFastFlag sff{FFlag::LuauSolverV2, true};
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std::pair<TypeId, FreeType*> freshType()
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{
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FreeType ft{&scope, builtinTypes.neverType, builtinTypes.unknownType};
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TypeId ty = arena.addType(ft);
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FreeType* ftv = getMutable<FreeType>(ty);
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REQUIRE(ftv != nullptr);
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return {ty, ftv};
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}
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std::string toString(TypeId ty)
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{
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return ::Luau::toString(ty, opts);
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}
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std::string toString(TypePackId ty)
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{
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return ::Luau::toString(ty, opts);
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}
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};
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TEST_SUITE_BEGIN("Unifier2");
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TEST_CASE_FIXTURE(Unifier2Fixture, "T <: number")
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{
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auto [left, freeLeft] = freshType();
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CHECK(UnifyResult::Ok == u2.unify(left, builtinTypes.numberType));
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CHECK("never" == toString(freeLeft->lowerBound));
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CHECK("number" == toString(freeLeft->upperBound));
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}
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TEST_CASE_FIXTURE(Unifier2Fixture, "number <: T")
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{
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auto [right, freeRight] = freshType();
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CHECK(UnifyResult::Ok == u2.unify(builtinTypes.numberType, right));
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CHECK("number" == toString(freeRight->lowerBound));
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CHECK("unknown" == toString(freeRight->upperBound));
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}
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TEST_CASE_FIXTURE(Unifier2Fixture, "T <: U")
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{
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auto [left, freeLeft] = freshType();
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auto [right, freeRight] = freshType();
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CHECK(UnifyResult::Ok == u2.unify(left, right));
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CHECK("t1 where t1 = ('a <: (t1 <: 'b))" == toString(left));
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CHECK("t1 where t1 = (('a <: t1) <: 'b)" == toString(right));
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CHECK("never" == toString(freeLeft->lowerBound));
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CHECK("t1 where t1 = (('a <: t1) <: 'b)" == toString(freeLeft->upperBound));
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CHECK("t1 where t1 = ('a <: (t1 <: 'b))" == toString(freeRight->lowerBound));
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CHECK("unknown" == toString(freeRight->upperBound));
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}
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TEST_CASE_FIXTURE(Unifier2Fixture, "(string) -> () <: (X) -> Y...")
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{
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TypeId stringToUnit = arena.addType(FunctionType{arena.addTypePack({builtinTypes.stringType}), arena.addTypePack({})});
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auto [x, xFree] = freshType();
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TypePackId y = arena.freshTypePack(&scope);
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TypeId xToY = arena.addType(FunctionType{arena.addTypePack({x}), y});
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u2.unify(stringToUnit, xToY);
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CHECK("string" == toString(xFree->upperBound));
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const TypePack* yPack = get<TypePack>(follow(y));
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REQUIRE(yPack != nullptr);
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CHECK(0 == yPack->head.size());
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CHECK(!yPack->tail);
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}
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TEST_CASE_FIXTURE(Unifier2Fixture, "unify_binds_free_subtype_tail_pack")
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{
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TypePackId numberPack = arena.addTypePack({builtinTypes.numberType});
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TypePackId freeTail = arena.freshTypePack(&scope);
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TypeId freeHead = arena.addType(FreeType{&scope, builtinTypes.neverType, builtinTypes.unknownType});
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TypePackId freeAndFree = arena.addTypePack({freeHead}, freeTail);
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u2.unify(freeAndFree, numberPack);
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CHECK("('a <: number)" == toString(freeAndFree));
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}
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TEST_CASE_FIXTURE(Unifier2Fixture, "unify_binds_free_supertype_tail_pack")
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{
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TypePackId numberPack = arena.addTypePack({builtinTypes.numberType});
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TypePackId freeTail = arena.freshTypePack(&scope);
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TypeId freeHead = arena.addType(FreeType{&scope, builtinTypes.neverType, builtinTypes.unknownType});
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TypePackId freeAndFree = arena.addTypePack({freeHead}, freeTail);
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u2.unify(numberPack, freeAndFree);
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CHECK("(number <: 'a)" == toString(freeAndFree));
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}
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TEST_SUITE_END();
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