2021-10-30 04:25:12 +08:00
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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/Module.h"
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2021-11-05 10:07:18 +08:00
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#include "Luau/Scope.h"
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2021-10-30 04:25:12 +08:00
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#include "Fixture.h"
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#include "doctest.h"
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using namespace Luau;
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TEST_SUITE_BEGIN("ModuleTests");
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TEST_CASE_FIXTURE(Fixture, "is_within_comment")
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{
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check(R"(
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--!strict
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local foo = {}
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function foo:bar() end
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--[[
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foo:
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]] foo:bar()
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--[[]]--[[]] -- Two distinct comments that have zero characters of space between them.
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)");
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SourceModule* sm = getMainSourceModule();
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CHECK_EQ(5, sm->commentLocations.size());
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CHECK(isWithinComment(*sm, Position{1, 15}));
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CHECK(isWithinComment(*sm, Position{6, 16}));
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CHECK(isWithinComment(*sm, Position{9, 13}));
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CHECK(isWithinComment(*sm, Position{9, 14}));
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CHECK(!isWithinComment(*sm, Position{2, 15}));
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CHECK(!isWithinComment(*sm, Position{7, 10}));
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CHECK(!isWithinComment(*sm, Position{7, 11}));
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}
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TEST_CASE_FIXTURE(Fixture, "dont_clone_persistent_primitive")
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{
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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// numberType is persistent. We leave it as-is.
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TypeId newNumber = clone(typeChecker.numberType, dest, seenTypes, seenTypePacks, cloneState);
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CHECK_EQ(newNumber, typeChecker.numberType);
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}
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TEST_CASE_FIXTURE(Fixture, "deepClone_non_persistent_primitive")
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{
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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// Create a new number type that isn't persistent
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unfreeze(typeChecker.globalTypes);
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TypeId oldNumber = typeChecker.globalTypes.addType(PrimitiveTypeVar{PrimitiveTypeVar::Number});
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freeze(typeChecker.globalTypes);
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TypeId newNumber = clone(oldNumber, dest, seenTypes, seenTypePacks, cloneState);
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CHECK_NE(newNumber, oldNumber);
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CHECK_EQ(*oldNumber, *newNumber);
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CHECK_EQ("number", toString(newNumber));
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CHECK_EQ(1, dest.typeVars.size());
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}
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TEST_CASE_FIXTURE(Fixture, "deepClone_cyclic_table")
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{
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CheckResult result = check(R"(
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local Cyclic = {}
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function Cyclic.get()
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return Cyclic
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end
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)");
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LUAU_REQUIRE_NO_ERRORS(result);
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/* The inferred type of Cyclic is {get: () -> Cyclic}
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*
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* Assert that the return type of get() is the same as the outer table.
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*/
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TypeId counterType = requireType("Cyclic");
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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TypeArena dest;
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TypeId counterCopy = clone(counterType, dest, seenTypes, seenTypePacks, cloneState);
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TableTypeVar* ttv = getMutable<TableTypeVar>(counterCopy);
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REQUIRE(ttv != nullptr);
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CHECK_EQ(std::optional<std::string>{"Cyclic"}, ttv->syntheticName);
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TypeId methodType = ttv->props["get"].type;
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REQUIRE(methodType != nullptr);
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const FunctionTypeVar* ftv = get<FunctionTypeVar>(methodType);
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REQUIRE(ftv != nullptr);
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std::optional<TypeId> methodReturnType = first(ftv->retType);
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REQUIRE(methodReturnType);
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CHECK_EQ(methodReturnType, counterCopy);
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CHECK_EQ(2, dest.typePacks.size()); // one for the function args, and another for its return type
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CHECK_EQ(2, dest.typeVars.size()); // One table and one function
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}
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TEST_CASE_FIXTURE(Fixture, "builtin_types_point_into_globalTypes_arena")
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{
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CheckResult result = check(R"(
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return {sign=math.sign}
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)");
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dumpErrors(result);
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LUAU_REQUIRE_NO_ERRORS(result);
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ModulePtr module = frontend.moduleResolver.getModule("MainModule");
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std::optional<TypeId> exports = first(module->getModuleScope()->returnType);
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REQUIRE(bool(exports));
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REQUIRE(isInArena(*exports, module->interfaceTypes));
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TableTypeVar* exportsTable = getMutable<TableTypeVar>(*exports);
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REQUIRE(exportsTable != nullptr);
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TypeId signType = exportsTable->props["sign"].type;
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REQUIRE(signType != nullptr);
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CHECK(!isInArena(signType, module->interfaceTypes));
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CHECK(isInArena(signType, typeChecker.globalTypes));
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}
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TEST_CASE_FIXTURE(Fixture, "deepClone_union")
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{
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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unfreeze(typeChecker.globalTypes);
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TypeId oldUnion = typeChecker.globalTypes.addType(UnionTypeVar{{typeChecker.numberType, typeChecker.stringType}});
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freeze(typeChecker.globalTypes);
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TypeId newUnion = clone(oldUnion, dest, seenTypes, seenTypePacks, cloneState);
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CHECK_NE(newUnion, oldUnion);
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CHECK_EQ("number | string", toString(newUnion));
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CHECK_EQ(1, dest.typeVars.size());
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}
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TEST_CASE_FIXTURE(Fixture, "deepClone_intersection")
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{
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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unfreeze(typeChecker.globalTypes);
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TypeId oldIntersection = typeChecker.globalTypes.addType(IntersectionTypeVar{{typeChecker.numberType, typeChecker.stringType}});
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freeze(typeChecker.globalTypes);
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TypeId newIntersection = clone(oldIntersection, dest, seenTypes, seenTypePacks, cloneState);
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CHECK_NE(newIntersection, oldIntersection);
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CHECK_EQ("number & string", toString(newIntersection));
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CHECK_EQ(1, dest.typeVars.size());
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}
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TEST_CASE_FIXTURE(Fixture, "clone_class")
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{
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TypeVar exampleMetaClass{ClassTypeVar{"ExampleClassMeta",
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{
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{"__add", {typeChecker.anyType}},
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},
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std::nullopt, std::nullopt, {}, {}}};
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TypeVar exampleClass{ClassTypeVar{"ExampleClass",
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{
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{"PropOne", {typeChecker.numberType}},
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{"PropTwo", {typeChecker.stringType}},
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},
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std::nullopt, &exampleMetaClass, {}, {}}};
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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TypeId cloned = clone(&exampleClass, dest, seenTypes, seenTypePacks, cloneState);
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const ClassTypeVar* ctv = get<ClassTypeVar>(cloned);
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REQUIRE(ctv != nullptr);
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REQUIRE(ctv->metatable);
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const ClassTypeVar* metatable = get<ClassTypeVar>(*ctv->metatable);
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REQUIRE(metatable);
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CHECK_EQ("ExampleClass", ctv->name);
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CHECK_EQ("ExampleClassMeta", metatable->name);
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}
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TEST_CASE_FIXTURE(Fixture, "clone_sanitize_free_types")
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{
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ScopedFastFlag sff{"LuauErrorRecoveryType", true};
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TypeVar freeTy(FreeTypeVar{TypeLevel{}});
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TypePackVar freeTp(FreeTypePack{TypeLevel{}});
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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TypeId clonedTy = clone(&freeTy, dest, seenTypes, seenTypePacks, cloneState);
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CHECK_EQ("any", toString(clonedTy));
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CHECK(cloneState.encounteredFreeType);
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cloneState = {};
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TypePackId clonedTp = clone(&freeTp, dest, seenTypes, seenTypePacks, cloneState);
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CHECK_EQ("...any", toString(clonedTp));
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CHECK(cloneState.encounteredFreeType);
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}
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TEST_CASE_FIXTURE(Fixture, "clone_seal_free_tables")
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{
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TypeVar tableTy{TableTypeVar{}};
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TableTypeVar* ttv = getMutable<TableTypeVar>(&tableTy);
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ttv->state = TableState::Free;
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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TypeId cloned = clone(&tableTy, dest, seenTypes, seenTypePacks, cloneState);
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const TableTypeVar* clonedTtv = get<TableTypeVar>(cloned);
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CHECK_EQ(clonedTtv->state, TableState::Sealed);
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CHECK(cloneState.encounteredFreeType);
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}
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TEST_CASE_FIXTURE(Fixture, "clone_self_property")
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{
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fileResolver.source["Module/A"] = R"(
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--!nonstrict
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local a = {}
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function a:foo(x)
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return -x;
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end
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return a;
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)";
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CheckResult result = frontend.check("Module/A");
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LUAU_REQUIRE_NO_ERRORS(result);
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fileResolver.source["Module/B"] = R"(
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--!nonstrict
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local a = require(script.Parent.A)
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return a.foo(5)
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)";
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result = frontend.check("Module/B");
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LUAU_REQUIRE_ERRORS(result);
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CHECK_EQ(toString(result.errors[0]), "This function was declared to accept self, but you did not pass enough arguments. Use a colon instead of a "
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"dot or pass 1 extra nil to suppress this warning");
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}
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TEST_CASE_FIXTURE(Fixture, "clone_recursion_limit")
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{
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#if defined(_DEBUG) || defined(_NOOPT)
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int limit = 250;
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#else
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int limit = 400;
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#endif
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ScopedFastInt luauTypeCloneRecursionLimit{"LuauTypeCloneRecursionLimit", limit};
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TypeArena src;
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TypeId table = src.addType(TableTypeVar{});
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TypeId nested = table;
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for (int i = 0; i < limit + 100; i++)
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{
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TableTypeVar* ttv = getMutable<TableTypeVar>(nested);
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ttv->props["a"].type = src.addType(TableTypeVar{});
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nested = ttv->props["a"].type;
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}
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TypeArena dest;
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SeenTypes seenTypes;
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SeenTypePacks seenTypePacks;
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CloneState cloneState;
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CHECK_THROWS_AS(clone(table, dest, seenTypes, seenTypePacks, cloneState), std::runtime_error);
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}
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TEST_SUITE_END();
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