2024-05-17 00:02:03 +01:00
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// 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/Generalization.h"
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#include "Luau/Scope.h"
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#include "Luau/ToString.h"
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#include "Luau/Type.h"
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#include "Luau/TypeArena.h"
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#include "Luau/Error.h"
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2024-06-29 01:34:49 +01:00
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#include "Fixture.h"
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2024-05-17 00:02:03 +01:00
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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(DebugLuauDeferredConstraintResolution)
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TEST_SUITE_BEGIN("Generalization");
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struct GeneralizationFixture
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{
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TypeArena arena;
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BuiltinTypes builtinTypes;
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2024-06-14 21:21:20 +01:00
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ScopePtr globalScope = std::make_shared<Scope>(builtinTypes.anyTypePack);
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ScopePtr scope = std::make_shared<Scope>(globalScope);
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ToStringOptions opts;
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2024-06-14 21:21:20 +01:00
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DenseHashSet<TypeId> generalizedTypes_{nullptr};
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NotNull<DenseHashSet<TypeId>> generalizedTypes{&generalizedTypes_};
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2024-05-17 00:02:03 +01:00
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ScopedFastFlag sff{FFlag::DebugLuauDeferredConstraintResolution, true};
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std::pair<TypeId, FreeType*> freshType()
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{
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FreeType ft{scope.get(), 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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std::optional<TypeId> generalize(TypeId ty)
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{
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return ::Luau::generalize(NotNull{&arena}, NotNull{&builtinTypes}, NotNull{scope.get()}, generalizedTypes, ty);
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}
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};
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TEST_CASE_FIXTURE(GeneralizationFixture, "generalize_a_type_that_is_bounded_by_another_generalizable_type")
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{
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auto [t1, ft1] = freshType();
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auto [t2, ft2] = freshType();
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// t2 <: t1 <: unknown
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// unknown <: t2 <: t1
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ft1->lowerBound = t2;
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ft2->upperBound = t1;
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ft2->lowerBound = builtinTypes.unknownType;
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auto t2generalized = generalize(t2);
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REQUIRE(t2generalized);
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CHECK(follow(t1) == follow(t2));
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auto t1generalized = generalize(t1);
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REQUIRE(t1generalized);
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CHECK(builtinTypes.unknownType == follow(t1));
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CHECK(builtinTypes.unknownType == follow(t2));
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}
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// Same as generalize_a_type_that_is_bounded_by_another_generalizable_type
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// except that we generalize the types in the opposite order
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TEST_CASE_FIXTURE(GeneralizationFixture, "generalize_a_type_that_is_bounded_by_another_generalizable_type_in_reverse_order")
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{
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auto [t1, ft1] = freshType();
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auto [t2, ft2] = freshType();
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// t2 <: t1 <: unknown
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// unknown <: t2 <: t1
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ft1->lowerBound = t2;
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ft2->upperBound = t1;
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ft2->lowerBound = builtinTypes.unknownType;
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auto t1generalized = generalize(t1);
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REQUIRE(t1generalized);
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CHECK(follow(t1) == follow(t2));
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auto t2generalized = generalize(t2);
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REQUIRE(t2generalized);
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CHECK(builtinTypes.unknownType == follow(t1));
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CHECK(builtinTypes.unknownType == follow(t2));
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}
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TEST_CASE_FIXTURE(GeneralizationFixture, "dont_traverse_into_class_types_when_generalizing")
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{
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auto [propTy, _] = freshType();
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2024-07-17 15:43:31 +01:00
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TypeId cursedClass = arena.addType(ClassType{"Cursed", {{"oh_no", Property::readonly(propTy)}}, std::nullopt, std::nullopt, {}, {}, "", {}});
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auto genClass = generalize(cursedClass);
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REQUIRE(genClass);
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auto genPropTy = get<ClassType>(*genClass)->props.at("oh_no").readTy;
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CHECK(is<FreeType>(*genPropTy));
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}
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2024-06-14 21:21:20 +01:00
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TEST_CASE_FIXTURE(GeneralizationFixture, "cache_fully_generalized_types")
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{
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CHECK(generalizedTypes->empty());
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2024-08-02 15:30:04 +01:00
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TypeId tinyTable = arena.addType(
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TableType{TableType::Props{{"one", builtinTypes.numberType}, {"two", builtinTypes.stringType}}, std::nullopt, TypeLevel{}, TableState::Sealed}
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);
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generalize(tinyTable);
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CHECK(generalizedTypes->contains(tinyTable));
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CHECK(generalizedTypes->contains(builtinTypes.numberType));
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CHECK(generalizedTypes->contains(builtinTypes.stringType));
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}
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TEST_CASE_FIXTURE(GeneralizationFixture, "dont_cache_types_that_arent_done_yet")
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{
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TypeId freeTy = arena.addType(FreeType{NotNull{globalScope.get()}, builtinTypes.neverType, builtinTypes.stringType});
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2024-06-21 00:37:55 +01:00
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TypeId fnTy = arena.addType(FunctionType{builtinTypes.emptyTypePack, arena.addTypePack(TypePack{{builtinTypes.numberType}})});
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TypeId tableTy = arena.addType(
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TableType{TableType::Props{{"one", builtinTypes.numberType}, {"two", freeTy}, {"three", fnTy}}, std::nullopt, TypeLevel{}, TableState::Sealed}
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);
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generalize(tableTy);
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CHECK(generalizedTypes->contains(fnTy));
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CHECK(generalizedTypes->contains(builtinTypes.numberType));
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CHECK(generalizedTypes->contains(builtinTypes.neverType));
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CHECK(generalizedTypes->contains(builtinTypes.stringType));
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CHECK(!generalizedTypes->contains(freeTy));
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CHECK(!generalizedTypes->contains(tableTy));
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}
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TEST_CASE_FIXTURE(GeneralizationFixture, "functions_containing_cyclic_tables_can_be_cached")
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{
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TypeId selfTy = arena.addType(BlockedType{});
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TypeId methodTy = arena.addType(FunctionType{
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arena.addTypePack({selfTy}),
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arena.addTypePack({builtinTypes.numberType}),
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});
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asMutable(selfTy)->ty.emplace<TableType>(
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TableType::Props{{"count", builtinTypes.numberType}, {"method", methodTy}}, std::nullopt, TypeLevel{}, TableState::Sealed
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);
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generalize(methodTy);
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CHECK(generalizedTypes->contains(methodTy));
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CHECK(generalizedTypes->contains(selfTy));
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CHECK(generalizedTypes->contains(builtinTypes.numberType));
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}
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2024-06-29 01:34:49 +01:00
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TEST_CASE_FIXTURE(GeneralizationFixture, "union_type_traversal_doesnt_crash")
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{
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// t1 where t1 = ('h <: (t1 <: 'i)) | ('j <: (t1 <: 'i))
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TypeId i = arena.addType(FreeType{NotNull{globalScope.get()}});
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TypeId h = arena.addType(FreeType{NotNull{globalScope.get()}});
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TypeId j = arena.addType(FreeType{NotNull{globalScope.get()}});
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TypeId unionType = arena.addType(UnionType{{h, j}});
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getMutable<FreeType>(h)->upperBound = i;
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getMutable<FreeType>(h)->lowerBound = builtinTypes.neverType;
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getMutable<FreeType>(i)->upperBound = builtinTypes.unknownType;
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getMutable<FreeType>(i)->lowerBound = unionType;
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getMutable<FreeType>(j)->upperBound = i;
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getMutable<FreeType>(j)->lowerBound = builtinTypes.neverType;
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generalize(unionType);
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}
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TEST_CASE_FIXTURE(GeneralizationFixture, "intersection_type_traversal_doesnt_crash")
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{
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// t1 where t1 = ('h <: (t1 <: 'i)) & ('j <: (t1 <: 'i))
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TypeId i = arena.addType(FreeType{NotNull{globalScope.get()}});
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TypeId h = arena.addType(FreeType{NotNull{globalScope.get()}});
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TypeId j = arena.addType(FreeType{NotNull{globalScope.get()}});
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TypeId intersectionType = arena.addType(IntersectionType{{h, j}});
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getMutable<FreeType>(h)->upperBound = i;
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getMutable<FreeType>(h)->lowerBound = builtinTypes.neverType;
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getMutable<FreeType>(i)->upperBound = builtinTypes.unknownType;
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getMutable<FreeType>(i)->lowerBound = intersectionType;
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getMutable<FreeType>(j)->upperBound = i;
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getMutable<FreeType>(j)->lowerBound = builtinTypes.neverType;
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generalize(intersectionType);
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}
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TEST_CASE_FIXTURE(BuiltinsFixture, "generalization_traversal_should_re_traverse_unions_if_they_change_type")
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{
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// This test case should just not assert
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CheckResult result = check(R"(
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function byId(p)
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return p.id
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end
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function foo()
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local productButtonPairs = {}
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local func = byId
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local dir = -1
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local function updateSearch()
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for product, button in pairs(productButtonPairs) do
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button.LayoutOrder = func(product) * dir
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end
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end
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function(mode)
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if mode == 'Name'then
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else
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if mode == 'New'then
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func = function(p)
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return p.id
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end
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elseif mode == 'Price'then
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func = function(p)
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return p.price
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end
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end
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end
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end
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end
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)");
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}
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2024-05-17 00:02:03 +01:00
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TEST_SUITE_END();
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