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199 lines
7.8 KiB
C++
199 lines
7.8 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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#pragma once
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#include <memory>
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#include <vector>
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#include <unordered_map>
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#include "Luau/Ast.h"
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#include "Luau/Constraint.h"
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#include "Luau/Module.h"
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#include "Luau/NotNull.h"
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#include "Luau/Symbol.h"
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#include "Luau/TypeVar.h"
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#include "Luau/Variant.h"
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namespace Luau
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{
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struct Scope2;
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struct ConstraintGraphBuilder
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{
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// A list of all the scopes in the module. This vector holds ownership of the
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// scope pointers; the scopes themselves borrow pointers to other scopes to
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// define the scope hierarchy.
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std::vector<std::pair<Location, std::unique_ptr<Scope2>>> scopes;
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ModuleName moduleName;
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SingletonTypes& singletonTypes;
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const NotNull<TypeArena> arena;
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// The root scope of the module we're generating constraints for.
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// This is null when the CGB is initially constructed.
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Scope2* rootScope;
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// A mapping of AST node to TypeId.
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DenseHashMap<const AstExpr*, TypeId> astTypes{nullptr};
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// A mapping of AST node to TypePackId.
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DenseHashMap<const AstExpr*, TypePackId> astTypePacks{nullptr};
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DenseHashMap<const AstExpr*, TypeId> astOriginalCallTypes{nullptr};
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// Types resolved from type annotations. Analogous to astTypes.
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DenseHashMap<const AstType*, TypeId> astResolvedTypes{nullptr};
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// Type packs resolved from type annotations. Analogous to astTypePacks.
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DenseHashMap<const AstTypePack*, TypePackId> astResolvedTypePacks{nullptr};
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int recursionCount = 0;
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// It is pretty uncommon for constraint generation to itself produce errors, but it can happen.
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std::vector<TypeError> errors;
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// Occasionally constraint generation needs to produce an ICE.
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const NotNull<InternalErrorReporter> ice;
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NotNull<Scope2> globalScope;
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ConstraintGraphBuilder(const ModuleName& moduleName, TypeArena* arena, NotNull<InternalErrorReporter> ice, NotNull<Scope2> globalScope);
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/**
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* Fabricates a new free type belonging to a given scope.
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* @param scope the scope the free type belongs to.
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*/
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TypeId freshType(NotNull<Scope2> scope);
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/**
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* Fabricates a new free type pack belonging to a given scope.
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* @param scope the scope the free type pack belongs to.
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*/
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TypePackId freshTypePack(NotNull<Scope2> scope);
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/**
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* Fabricates a scope that is a child of another scope.
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* @param location the lexical extent of the scope in the source code.
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* @param parent the parent scope of the new scope. Must not be null.
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*/
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NotNull<Scope2> childScope(Location location, NotNull<Scope2> parent);
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/**
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* Adds a new constraint with no dependencies to a given scope.
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* @param scope the scope to add the constraint to.
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* @param cv the constraint variant to add.
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*/
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void addConstraint(NotNull<Scope2> scope, ConstraintV cv);
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/**
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* Adds a constraint to a given scope.
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* @param scope the scope to add the constraint to. Must not be null.
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* @param c the constraint to add.
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*/
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void addConstraint(NotNull<Scope2> scope, std::unique_ptr<Constraint> c);
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/**
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* The entry point to the ConstraintGraphBuilder. This will construct a set
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* of scopes, constraints, and free types that can be solved later.
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* @param block the root block to generate constraints for.
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*/
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void visit(AstStatBlock* block);
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void visitBlockWithoutChildScope(NotNull<Scope2> scope, AstStatBlock* block);
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void visit(NotNull<Scope2> scope, AstStat* stat);
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void visit(NotNull<Scope2> scope, AstStatBlock* block);
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void visit(NotNull<Scope2> scope, AstStatLocal* local);
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void visit(NotNull<Scope2> scope, AstStatFor* for_);
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void visit(NotNull<Scope2> scope, AstStatLocalFunction* function);
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void visit(NotNull<Scope2> scope, AstStatFunction* function);
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void visit(NotNull<Scope2> scope, AstStatReturn* ret);
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void visit(NotNull<Scope2> scope, AstStatAssign* assign);
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void visit(NotNull<Scope2> scope, AstStatIf* ifStatement);
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void visit(NotNull<Scope2> scope, AstStatTypeAlias* alias);
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TypePackId checkExprList(NotNull<Scope2> scope, const AstArray<AstExpr*>& exprs);
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TypePackId checkPack(NotNull<Scope2> scope, AstArray<AstExpr*> exprs);
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TypePackId checkPack(NotNull<Scope2> scope, AstExpr* expr);
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/**
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* Checks an expression that is expected to evaluate to one type.
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* @param scope the scope the expression is contained within.
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* @param expr the expression to check.
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* @return the type of the expression.
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*/
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TypeId check(NotNull<Scope2> scope, AstExpr* expr);
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TypeId checkExprTable(NotNull<Scope2> scope, AstExprTable* expr);
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TypeId check(NotNull<Scope2> scope, AstExprIndexName* indexName);
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TypeId check(NotNull<Scope2> scope, AstExprIndexExpr* indexExpr);
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TypeId check(NotNull<Scope2> scope, AstExprUnary* unary);
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TypeId check(NotNull<Scope2> scope, AstExprBinary* binary);
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struct FunctionSignature
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{
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// The type of the function.
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TypeId signature;
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// The scope that encompasses the function's signature. May be nullptr
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// if there was no need for a signature scope (the function has no
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// generics).
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Scope2* signatureScope;
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// The scope that encompasses the function's body. Is a child scope of
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// signatureScope, if present.
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NotNull<Scope2> bodyScope;
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};
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FunctionSignature checkFunctionSignature(NotNull<Scope2> parent, AstExprFunction* fn);
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/**
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* Checks the body of a function expression.
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* @param scope the interior scope of the body of the function.
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* @param fn the function expression to check.
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*/
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void checkFunctionBody(NotNull<Scope2> scope, AstExprFunction* fn);
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/**
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* Resolves a type from its AST annotation.
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* @param scope the scope that the type annotation appears within.
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* @param ty the AST annotation to resolve.
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* @return the type of the AST annotation.
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**/
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TypeId resolveType(NotNull<Scope2> scope, AstType* ty);
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/**
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* Resolves a type pack from its AST annotation.
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* @param scope the scope that the type annotation appears within.
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* @param tp the AST annotation to resolve.
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* @return the type pack of the AST annotation.
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**/
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TypePackId resolveTypePack(NotNull<Scope2> scope, AstTypePack* tp);
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TypePackId resolveTypePack(NotNull<Scope2> scope, const AstTypeList& list);
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std::vector<std::pair<Name, GenericTypeDefinition>> createGenerics(NotNull<Scope2> scope, AstArray<AstGenericType> generics);
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std::vector<std::pair<Name, GenericTypePackDefinition>> createGenericPacks(NotNull<Scope2> scope, AstArray<AstGenericTypePack> packs);
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TypeId flattenPack(NotNull<Scope2> scope, Location location, TypePackId tp);
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void reportError(Location location, TypeErrorData err);
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void reportCodeTooComplex(Location location);
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/** Scan the program for global definitions.
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*
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* ConstraintGraphBuilder needs to differentiate between globals and accesses to undefined symbols. Doing this "for
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* real" in a general way is going to be pretty hard, so we are choosing not to tackle that yet. For now, we do an
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* initial scan of the AST and note what globals are defined.
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*/
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void prepopulateGlobalScope(NotNull<Scope2> globalScope, AstStatBlock* program);
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};
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/**
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* Collects a vector of borrowed constraints from the scope and all its child
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* scopes. It is important to only call this function when you're done adding
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* constraints to the scope or its descendants, lest the borrowed pointers
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* become invalid due to a container reallocation.
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* @param rootScope the root scope of the scope graph to collect constraints
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* from.
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* @return a list of pointers to constraints contained within the scope graph.
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* None of these pointers should be null.
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*/
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std::vector<NotNull<Constraint>> collectConstraints(NotNull<Scope2> rootScope);
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} // namespace Luau
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