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FunctionRefKind was originally designed to represent the handling needed for argument labels on function references, in which the unapplied and compound cases are effectively the same. However it has since been adopted in a bunch of other places where the spelling of the function reference is entirely orthogonal to the application level. Split out the application level from the "is compound" bit. Should be NFC. I've left some FIXMEs for non-NFC changes that I'll address in a follow-up.
335 lines
14 KiB
C++
335 lines
14 KiB
C++
//===--- DerivedConformanceAdditiveArithmetic.cpp -------------------------===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2018 - 2020 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See https://swift.org/LICENSE.txt for license information
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// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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//
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// This file implements explicit derivation of the AdditiveArithmetic protocol
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// for struct types.
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//
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// Currently, this is gated by a frontend flag:
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// `-enable-experimental-additive-arithmetic-derivation`.
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//
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// Swift Evolution pitch thread:
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// https://forums.swift.org/t/additivearithmetic-conformance-synthesis-for-structs/26159
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//
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//===----------------------------------------------------------------------===//
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#include "CodeSynthesis.h"
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#include "TypeChecker.h"
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#include "swift/AST/ConformanceLookup.h"
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#include "swift/AST/Decl.h"
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#include "swift/AST/Expr.h"
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#include "swift/AST/GenericSignature.h"
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#include "swift/AST/ParameterList.h"
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#include "swift/AST/Pattern.h"
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#include "swift/AST/ProtocolConformance.h"
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#include "swift/AST/Stmt.h"
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#include "swift/AST/Types.h"
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#include "swift/Basic/Assertions.h"
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#include "DerivedConformances.h"
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using namespace swift;
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// Represents synthesizable math operators.
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enum MathOperator {
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// `+(Self, Self)`: AdditiveArithmetic
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Add,
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// `-(Self, Self)`: AdditiveArithmetic
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Subtract,
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};
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static StringRef getMathOperatorName(MathOperator op) {
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switch (op) {
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case Add:
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return "+";
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case Subtract:
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return "-";
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}
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llvm_unreachable("invalid math operator kind");
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}
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bool DerivedConformance::canDeriveAdditiveArithmetic(NominalTypeDecl *nominal,
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DeclContext *DC) {
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// Experimental `AdditiveArithmetic` derivation must be enabled.
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if (auto *SF = DC->getParentSourceFile())
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if (!isAdditiveArithmeticConformanceDerivationEnabled(*SF))
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return false;
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// Nominal type must be a struct. (No stored properties is okay.)
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auto *structDecl = dyn_cast<StructDecl>(nominal);
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if (!structDecl)
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return false;
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// Must not have any `let` stored properties with an initial value.
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// - This restriction may be lifted later with support for "true" memberwise
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// initializers that initialize all stored properties, including initial
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// value information.
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if (hasLetStoredPropertyWithInitialValue(nominal))
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return false;
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// All stored properties must conform to `AdditiveArithmetic`.
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auto &C = nominal->getASTContext();
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auto *proto = C.getProtocol(KnownProtocolKind::AdditiveArithmetic);
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return llvm::all_of(structDecl->getStoredProperties(), [&](VarDecl *v) {
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if (v->getInterfaceType()->hasError())
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return false;
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auto varType = DC->mapTypeIntoContext(v->getValueInterfaceType());
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return (bool) checkConformance(varType, proto);
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});
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}
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// Synthesize body for math operator.
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static std::pair<BraceStmt *, bool>
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deriveBodyMathOperator(AbstractFunctionDecl *funcDecl, MathOperator op) {
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auto *parentDC = funcDecl->getParent();
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auto *nominal = parentDC->getSelfNominalTypeDecl();
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auto &C = nominal->getASTContext();
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// Create memberwise initializer: `Nominal.init(...)`.
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auto *memberwiseInitDecl = nominal->getEffectiveMemberwiseInitializer();
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assert(memberwiseInitDecl && "Memberwise initializer must exist");
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auto *initDRE =
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new (C) DeclRefExpr(memberwiseInitDecl, DeclNameLoc(), /*Implicit*/ true);
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initDRE->setFunctionRefInfo(FunctionRefInfo::singleBaseNameApply());
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auto *nominalTypeExpr = TypeExpr::createImplicitForDecl(
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DeclNameLoc(), nominal, funcDecl,
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funcDecl->mapTypeIntoContext(nominal->getInterfaceType()));
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auto *initExpr = ConstructorRefCallExpr::create(C, initDRE, nominalTypeExpr);
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// Get operator protocol requirement.
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auto *proto = C.getProtocol(KnownProtocolKind::AdditiveArithmetic);
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auto operatorId = C.getIdentifier(getMathOperatorName(op));
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auto *operatorReq = getProtocolRequirement(proto, operatorId);
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// Create reference to operator parameters: lhs and rhs.
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auto params = funcDecl->getParameters();
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// Create expression combining lhs and rhs members using member operator.
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auto createMemberOpExpr = [&](VarDecl *member) -> Expr * {
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auto memberType =
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parentDC->mapTypeIntoContext(member->getValueInterfaceType());
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auto confRef = lookupConformance(memberType, proto);
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assert(confRef && "Member does not conform to math protocol");
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// Get member type's math operator, e.g. `Member.+`.
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// Use protocol requirement declaration for the operator by default: this
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// will be dynamically dispatched.
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ValueDecl *memberOpDecl = operatorReq;
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// If conformance reference is concrete, then use concrete witness
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// declaration for the operator.
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if (confRef.isConcrete())
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if (auto *concreteMemberMethodDecl =
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confRef.getConcrete()->getWitnessDecl(operatorReq))
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memberOpDecl = concreteMemberMethodDecl;
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assert(memberOpDecl && "Member operator declaration must exist");
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auto *memberTypeExpr = TypeExpr::createImplicit(memberType, C);
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auto memberOpExpr =
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new (C) MemberRefExpr(memberTypeExpr, SourceLoc(), memberOpDecl,
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DeclNameLoc(), /*Implicit*/ true);
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// Create expression `lhs.member <op> rhs.member`.
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// NOTE(TF-1054): create new `DeclRefExpr`s per loop iteration to avoid
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// `ConstraintSystem::resolveOverload` error.
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auto *lhsDRE =
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new (C) DeclRefExpr(params->get(0), DeclNameLoc(), /*Implicit*/ true);
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auto *rhsDRE =
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new (C) DeclRefExpr(params->get(1), DeclNameLoc(), /*Implicit*/ true);
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Expr *lhsArg = new (C) MemberRefExpr(lhsDRE, SourceLoc(), member,
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DeclNameLoc(), /*Implicit*/ true);
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auto *rhsArg = new (C) MemberRefExpr(rhsDRE, SourceLoc(), member,
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DeclNameLoc(), /*Implicit*/ true);
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return BinaryExpr::create(C, lhsArg, memberOpExpr, rhsArg,
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/*implicit*/ true);
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};
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// Create array of member operator call expressions.
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llvm::SmallVector<Argument, 2> memberOpArgs;
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for (auto member : nominal->getStoredProperties()) {
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memberOpArgs.emplace_back(SourceLoc(), member->getName(),
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createMemberOpExpr(member));
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}
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// Call memberwise initializer with member operator call expressions.
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auto *argList = ArgumentList::createImplicit(C, memberOpArgs);
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auto *callExpr = CallExpr::createImplicit(C, initExpr, argList);
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ASTNode returnStmt = ReturnStmt::createImplicit(C, callExpr);
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return std::pair<BraceStmt *, bool>(
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BraceStmt::create(C, SourceLoc(), returnStmt, SourceLoc(), true), false);
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}
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// Synthesize function declaration for the given math operator.
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static ValueDecl *deriveMathOperator(DerivedConformance &derived,
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MathOperator op) {
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auto nominal = derived.Nominal;
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auto parentDC = derived.getConformanceContext();
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auto &C = derived.Context;
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auto selfInterfaceType = parentDC->getDeclaredInterfaceType();
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// Create parameter declaration with the given name and type.
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auto createParamDecl = [&](StringRef name, Type type) -> ParamDecl * {
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auto *param =
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new (C) ParamDecl(SourceLoc(), SourceLoc(), Identifier(), SourceLoc(),
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C.getIdentifier(name), parentDC);
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param->setSpecifier(ParamDecl::Specifier::Default);
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param->setInterfaceType(type);
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param->setImplicit();
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return param;
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};
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ParameterList *params =
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ParameterList::create(C, {createParamDecl("lhs", selfInterfaceType),
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createParamDecl("rhs", selfInterfaceType)});
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auto operatorId = C.getIdentifier(getMathOperatorName(op));
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DeclName operatorDeclName(C, operatorId, params);
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auto *const operatorDecl = FuncDecl::createImplicit(
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C, StaticSpellingKind::KeywordStatic, operatorDeclName,
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/*NameLoc=*/SourceLoc(),
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/*Async=*/false,
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/*Throws=*/false,
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/*ThrownType=*/Type(),
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/*GenericParams=*/nullptr, params, selfInterfaceType, parentDC);
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auto bodySynthesizer = [](AbstractFunctionDecl *funcDecl,
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void *ctx) -> std::pair<BraceStmt *, bool> {
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auto op = (MathOperator) reinterpret_cast<intptr_t>(ctx);
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return deriveBodyMathOperator(funcDecl, op);
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};
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operatorDecl->setBodySynthesizer(bodySynthesizer, (void *)op);
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operatorDecl->setGenericSignature(parentDC->getGenericSignatureOfContext());
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operatorDecl->copyFormalAccessFrom(nominal, /*sourceIsParentContext*/ true);
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derived.addMembersToConformanceContext({operatorDecl});
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// For the effective memberwise initializer before we force the body,
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// so that it becomes part of the emitted ABI members even if we don't
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// emit the body.
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(void) nominal->getEffectiveMemberwiseInitializer();
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return operatorDecl;
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}
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// Synthesize body for a property computed property getter.
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static std::pair<BraceStmt *, bool>
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deriveBodyPropertyGetter(AbstractFunctionDecl *funcDecl, ProtocolDecl *proto,
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ValueDecl *reqDecl) {
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auto *parentDC = funcDecl->getParent();
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auto *nominal = parentDC->getSelfNominalTypeDecl();
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auto &C = nominal->getASTContext();
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auto *memberwiseInitDecl = nominal->getEffectiveMemberwiseInitializer();
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assert(memberwiseInitDecl && "Memberwise initializer must exist");
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auto *initDRE =
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new (C) DeclRefExpr(memberwiseInitDecl, DeclNameLoc(), /*Implicit*/ true);
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initDRE->setFunctionRefInfo(FunctionRefInfo::singleBaseNameApply());
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auto *nominalTypeExpr = TypeExpr::createImplicitForDecl(
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DeclNameLoc(), nominal, funcDecl,
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funcDecl->mapTypeIntoContext(nominal->getInterfaceType()));
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auto *initExpr = ConstructorRefCallExpr::create(C, initDRE, nominalTypeExpr);
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auto createMemberPropertyExpr = [&](VarDecl *member) -> Expr * {
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auto memberType =
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parentDC->mapTypeIntoContext(member->getValueInterfaceType());
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Expr *memberExpr = nullptr;
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// If the property is static, create a type expression: `Member`.
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if (reqDecl->isStatic()) {
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memberExpr = TypeExpr::createImplicit(memberType, C);
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}
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// If the property is not static, create a member ref expression:
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// `self.member`.
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else {
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auto *selfDecl = funcDecl->getImplicitSelfDecl();
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auto *selfDRE =
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new (C) DeclRefExpr(selfDecl, DeclNameLoc(), /*Implicit*/ true);
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memberExpr =
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new (C) MemberRefExpr(selfDRE, SourceLoc(), member, DeclNameLoc(),
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/*Implicit*/ true);
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}
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auto confRef = lookupConformance(memberType, proto);
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assert(confRef && "Member does not conform to `AdditiveArithmetic`");
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// If conformance reference is not concrete, then concrete witness
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// declaration for property cannot be resolved. Return reference to
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// protocol requirement: this will be dynamically dispatched.
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if (!confRef.isConcrete()) {
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return new (C) MemberRefExpr(memberExpr, SourceLoc(), reqDecl,
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DeclNameLoc(), /*Implicit*/ true);
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}
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// Otherwise, return reference to concrete witness declaration.
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auto conf = confRef.getConcrete();
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auto *witnessDecl = conf->getWitnessDecl(reqDecl);
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return new (C) MemberRefExpr(memberExpr, SourceLoc(), witnessDecl,
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DeclNameLoc(), /*Implicit*/ true);
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};
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// Create array of `member.<property>` expressions.
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llvm::SmallVector<Argument, 2> args;
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for (auto member : nominal->getStoredProperties()) {
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args.emplace_back(SourceLoc(), member->getName(),
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createMemberPropertyExpr(member));
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}
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// Call memberwise initializer with member property expressions.
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auto *callExpr = CallExpr::createImplicit(
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C, initExpr, ArgumentList::createImplicit(C, args));
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ASTNode returnStmt = ReturnStmt::createImplicit(C, callExpr);
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auto *braceStmt =
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BraceStmt::create(C, SourceLoc(), returnStmt, SourceLoc(), true);
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return std::pair<BraceStmt *, bool>(braceStmt, false);
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}
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// Synthesize body for the `AdditiveArithmetic.zero` computed property getter.
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static std::pair<BraceStmt *, bool>
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deriveBodyAdditiveArithmetic_zero(AbstractFunctionDecl *funcDecl, void *) {
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auto &C = funcDecl->getASTContext();
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auto *addArithProto = C.getProtocol(KnownProtocolKind::AdditiveArithmetic);
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auto *zeroReq = getProtocolRequirement(addArithProto, C.Id_zero);
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return deriveBodyPropertyGetter(funcDecl, addArithProto, zeroReq);
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}
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// Synthesize the static property declaration for `AdditiveArithmetic.zero`.
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static ValueDecl *deriveAdditiveArithmetic_zero(DerivedConformance &derived) {
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auto &C = derived.Context;
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auto *nominal = derived.Nominal;
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auto returnInterfaceTy = nominal->getDeclaredInterfaceType();
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// Create property declaration.
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VarDecl *propDecl;
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PatternBindingDecl *pbDecl;
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std::tie(propDecl, pbDecl) = derived.declareDerivedProperty(
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DerivedConformance::SynthesizedIntroducer::Var, C.Id_zero,
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returnInterfaceTy,
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/*isStatic*/ true, /*isFinal*/ true);
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// Create property getter.
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auto *getterDecl = derived.addGetterToReadOnlyDerivedProperty(propDecl);
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getterDecl->setBodySynthesizer(deriveBodyAdditiveArithmetic_zero, nullptr);
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derived.addMembersToConformanceContext({propDecl, pbDecl});
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// For the effective memberwise initializer before we force the body,
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// so that it becomes part of the emitted ABI members even if we don't
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// emit the body.
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(void) nominal->getEffectiveMemberwiseInitializer();
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return propDecl;
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}
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ValueDecl *
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DerivedConformance::deriveAdditiveArithmetic(ValueDecl *requirement) {
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// Diagnose conformances in disallowed contexts.
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if (checkAndDiagnoseDisallowedContext(requirement))
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return nullptr;
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if (requirement->getBaseName() == Context.getIdentifier("+"))
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return deriveMathOperator(*this, Add);
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if (requirement->getBaseName() == Context.getIdentifier("-"))
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return deriveMathOperator(*this, Subtract);
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if (requirement->getBaseName() == Context.Id_zero)
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return deriveAdditiveArithmetic_zero(*this);
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Context.Diags.diagnose(requirement->getLoc(),
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diag::broken_additive_arithmetic_requirement);
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return nullptr;
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}
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