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We'll use this to represent the slightly-different polymorphic calling convention used for passing Self into protocol witnesses. Swift SVN r10898
2413 lines
80 KiB
C++
2413 lines
80 KiB
C++
//===--- Deserialization.cpp - Loading a serialized AST ---------*- c++ -*-===//
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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) 2014 - 2015 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 http://swift.org/LICENSE.txt for license information
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// See http://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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#include "ModuleFile.h"
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#include "ModuleFormat.h"
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#include "swift/AST/AST.h"
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#include "swift/Serialization/BCReadingExtras.h"
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using namespace swift;
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using namespace swift::serialization;
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using ConformancePair = std::pair<ProtocolDecl *, ProtocolConformance *>;
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/// Translate from the serialization DefaultArgumentKind enumerators, which are
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/// guaranteed to be stable, to the AST ones.
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static Optional<swift::DefaultArgumentKind>
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getActualDefaultArgKind(uint8_t raw) {
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switch (static_cast<serialization::DefaultArgumentKind>(raw)) {
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case serialization::DefaultArgumentKind::None:
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return swift::DefaultArgumentKind::None;
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case serialization::DefaultArgumentKind::Normal:
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return swift::DefaultArgumentKind::Normal;
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case serialization::DefaultArgumentKind::Column:
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return swift::DefaultArgumentKind::Column;
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case serialization::DefaultArgumentKind::File:
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return swift::DefaultArgumentKind::File;
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case serialization::DefaultArgumentKind::Line:
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return swift::DefaultArgumentKind::Line;
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}
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return Nothing;
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}
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Pattern *ModuleFile::maybeReadPattern() {
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using namespace decls_block;
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SmallVector<uint64_t, 8> scratch;
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auto next = DeclTypeCursor.advance(AF_DontPopBlockAtEnd);
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if (next.Kind != llvm::BitstreamEntry::Record)
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return nullptr;
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unsigned kind = DeclTypeCursor.readRecord(next.ID, scratch);
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switch (kind) {
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case decls_block::PAREN_PATTERN: {
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bool isImplicit;
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ParenPatternLayout::readRecord(scratch, isImplicit);
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Pattern *subPattern = maybeReadPattern();
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assert(subPattern);
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auto result = new (getContext()) ParenPattern(SourceLoc(),
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subPattern,
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SourceLoc(),
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isImplicit);
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result->setType(subPattern->getType());
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return result;
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}
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case decls_block::TUPLE_PATTERN: {
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TypeID tupleTypeID;
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unsigned count;
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bool hasVararg;
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bool isImplicit;
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TuplePatternLayout::readRecord(scratch, tupleTypeID, count, hasVararg,
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isImplicit);
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SmallVector<TuplePatternElt, 8> elements;
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for ( ; count > 0; --count) {
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scratch.clear();
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next = DeclTypeCursor.advance();
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assert(next.Kind == llvm::BitstreamEntry::Record);
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kind = DeclTypeCursor.readRecord(next.ID, scratch);
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assert(kind == decls_block::TUPLE_PATTERN_ELT);
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// FIXME: Add something for this record or remove it.
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uint8_t rawDefaultArg;
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TuplePatternEltLayout::readRecord(scratch, rawDefaultArg);
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Pattern *subPattern = maybeReadPattern();
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assert(subPattern);
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// Decode the default argument kind.
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// FIXME: Default argument expression, if available.
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swift::DefaultArgumentKind defaultArgKind
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= swift::DefaultArgumentKind::None;
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if (auto defaultArg = getActualDefaultArgKind(rawDefaultArg))
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defaultArgKind = *defaultArg;
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elements.push_back(TuplePatternElt(subPattern, nullptr,
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defaultArgKind));
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}
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auto result = TuplePattern::create(getContext(), SourceLoc(),
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elements, SourceLoc(), hasVararg,
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SourceLoc(), isImplicit);
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result->setType(getType(tupleTypeID));
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return result;
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}
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case decls_block::NAMED_PATTERN: {
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DeclID varID;
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bool isImplicit;
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NamedPatternLayout::readRecord(scratch, varID, isImplicit);
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auto var = cast<VarDecl>(getDecl(varID));
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auto result = new (getContext()) NamedPattern(var, isImplicit);
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if (var->hasType())
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result->setType(var->getType());
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return result;
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}
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case decls_block::ANY_PATTERN: {
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TypeID typeID;
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bool isImplicit;
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AnyPatternLayout::readRecord(scratch, typeID, isImplicit);
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auto result = new (getContext()) AnyPattern(SourceLoc(), isImplicit);
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result->setType(getType(typeID));
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return result;
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}
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case decls_block::TYPED_PATTERN: {
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TypeID typeID;
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bool isImplicit;
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TypedPatternLayout::readRecord(scratch, typeID, isImplicit);
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Pattern *subPattern = maybeReadPattern();
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assert(subPattern);
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TypeLoc typeInfo = TypeLoc::withoutLoc(getType(typeID));
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auto result = new (getContext()) TypedPattern(subPattern, typeInfo,
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isImplicit);
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result->setType(typeInfo.getType());
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return result;
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}
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default:
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return nullptr;
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}
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}
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ProtocolConformance *
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ModuleFile::readUnderlyingConformance(ProtocolDecl *proto,
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DeclID typeID,
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IdentifierID moduleID,
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llvm::BitstreamCursor &Cursor) {
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if (moduleID == serialization::BUILTIN_MODULE_ID) {
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// The underlying conformance is in the following record.
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return maybeReadConformance(getType(typeID), Cursor)->second;
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}
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// Dig out the protocol conformance within the nominal declaration.
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auto nominal = cast<NominalTypeDecl>(getDecl(typeID));
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Module *owningModule = getModule(moduleID);
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(void)owningModule; // FIXME: Currently only used for checking.
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// Search protocols
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for (unsigned i = 0, n = nominal->getProtocols().size(); i != n; ++i) {
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if (nominal->getProtocols()[i] == proto) {
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// FIXME: Eventually, filter by owning module.
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assert(nominal->getModuleContext() == owningModule);
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return nominal->getConformances()[i];
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}
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}
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// Search extensions.
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for (auto ext : nominal->getExtensions()) {
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for (unsigned i = 0, n = ext->getProtocols().size(); i != n; ++i) {
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if (ext->getProtocols()[i] == proto) {
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// FIXME: Eventually, filter by owning module.
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assert(ext->getModuleContext() == owningModule);
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return ext->getConformances()[i];
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}
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}
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}
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llvm_unreachable("Unable to find underlying conformance");
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}
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Optional<ConformancePair> ModuleFile::maybeReadConformance(Type conformingType,
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llvm::BitstreamCursor &Cursor){
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using namespace decls_block;
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BCOffsetRAII lastRecordOffset(Cursor);
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SmallVector<uint64_t, 16> scratch;
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auto next = Cursor.advance(AF_DontPopBlockAtEnd);
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if (next.Kind != llvm::BitstreamEntry::Record)
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return Nothing;
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unsigned kind = Cursor.readRecord(next.ID, scratch);
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switch (kind) {
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case NO_CONFORMANCE: {
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lastRecordOffset.reset();
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DeclID protoID;
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NoConformanceLayout::readRecord(scratch, protoID);
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return std::make_pair(cast<ProtocolDecl>(getDecl(protoID)), nullptr);
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}
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case NORMAL_PROTOCOL_CONFORMANCE:
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// Handled below.
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break;
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case SPECIALIZED_PROTOCOL_CONFORMANCE: {
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DeclID protoID;
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DeclID typeID;
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IdentifierID moduleID;
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unsigned numTypeWitnesses;
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unsigned numSubstitutions;
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ArrayRef<uint64_t> rawIDs;
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SpecializedProtocolConformanceLayout::readRecord(scratch, protoID,
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typeID,
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moduleID,
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numTypeWitnesses,
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numSubstitutions,
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rawIDs);
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ASTContext &ctx = getContext();
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auto proto = cast<ProtocolDecl>(getDecl(protoID));
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// Read the substitutions.
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SmallVector<Substitution, 4> substitutions;
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while (numSubstitutions--) {
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auto sub = maybeReadSubstitution(Cursor);
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assert(sub.hasValue() && "Missing substitution?");
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substitutions.push_back(*sub);
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}
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// Read the type witnesses.
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ArrayRef<uint64_t>::iterator rawIDIter = rawIDs.begin();
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TypeWitnessMap typeWitnesses;
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while (numTypeWitnesses--) {
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// FIXME: We don't actually want to allocate an archetype here; we just
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// want to get an access path within the protocol.
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auto first = cast<AssociatedTypeDecl>(getDecl(*rawIDIter++));
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auto second = maybeReadSubstitution(Cursor);
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assert(second.hasValue());
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typeWitnesses[first] = *second;
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}
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assert(rawIDIter <= rawIDs.end() && "read too much");
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ProtocolConformance *genericConformance
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= readUnderlyingConformance(proto, typeID, moduleID, Cursor);
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// Reset the offset RAII to the end of the trailing records.
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lastRecordOffset.reset();
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assert(genericConformance && "Missing generic conformance?");
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return { proto,
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ctx.getSpecializedConformance(conformingType,
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genericConformance,
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substitutions,
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std::move(typeWitnesses)) };
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}
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case INHERITED_PROTOCOL_CONFORMANCE: {
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DeclID protoID;
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DeclID typeID;
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IdentifierID moduleID;
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InheritedProtocolConformanceLayout::readRecord(scratch, protoID,
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typeID,
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moduleID);
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ASTContext &ctx = getContext();
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auto proto = cast<ProtocolDecl>(getDecl(protoID));
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ProtocolConformance *inheritedConformance
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= readUnderlyingConformance(proto, typeID, moduleID, Cursor);
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// Reset the offset RAII to the end of the trailing records.
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lastRecordOffset.reset();
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assert(inheritedConformance && "Missing generic conformance?");
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return { proto,
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ctx.getInheritedConformance(conformingType,
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inheritedConformance) };
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}
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// Not a protocol conformance.
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default:
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return Nothing;
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}
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lastRecordOffset.reset();
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DeclID protoID;
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unsigned valueCount, typeCount, inheritedCount, defaultedCount;
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ArrayRef<uint64_t> rawIDs;
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NormalProtocolConformanceLayout::readRecord(scratch, protoID,
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valueCount, typeCount,
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inheritedCount, defaultedCount,
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rawIDs);
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InheritedConformanceMap inheritedConformances;
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while (inheritedCount--) {
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auto inherited = maybeReadConformance(conformingType, Cursor);
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assert(inherited.hasValue());
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inheritedConformances.insert(inherited.getValue());
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}
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ASTContext &ctx = getContext();
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auto proto = cast<ProtocolDecl>(getDecl(protoID));
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WitnessMap witnesses;
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ArrayRef<uint64_t>::iterator rawIDIter = rawIDs.begin();
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while (valueCount--) {
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auto first = cast<ValueDecl>(getDecl(*rawIDIter++));
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auto second = cast<ValueDecl>(getDecl(*rawIDIter++));
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unsigned substitutionCount = *rawIDIter++;
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SmallVector<Substitution, 8> substitutions;
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while (substitutionCount--) {
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auto sub = maybeReadSubstitution(Cursor);
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assert(sub.hasValue());
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substitutions.push_back(sub.getValue());
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}
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ConcreteDeclRef witness;
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if (substitutions.empty())
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witness = ConcreteDeclRef(second);
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else
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witness = ConcreteDeclRef(ctx, second, substitutions);
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witnesses.insert(std::make_pair(first, witness));
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}
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assert(rawIDIter <= rawIDs.end() && "read too much");
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TypeWitnessMap typeWitnesses;
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while (typeCount--) {
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// FIXME: We don't actually want to allocate an archetype here; we just
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// want to get an access path within the protocol.
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auto first = cast<AssociatedTypeDecl>(getDecl(*rawIDIter++));
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auto second = maybeReadSubstitution(Cursor);
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assert(second.hasValue());
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typeWitnesses[first] = *second;
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}
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assert(rawIDIter <= rawIDs.end() && "read too much");
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SmallVector<ValueDecl *, 4> defaultedDefinitions;
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while (defaultedCount--) {
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auto decl = cast<ValueDecl>(getDecl(*rawIDIter++));
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defaultedDefinitions.push_back(decl);
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}
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assert(rawIDIter <= rawIDs.end() && "read too much");
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// Reset the offset RAII to the end of the trailing records.
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lastRecordOffset.reset();
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return { proto,
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ctx.getConformance(conformingType, proto,
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FileContext->getParentModule(),
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std::move(witnesses),
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std::move(typeWitnesses),
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std::move(inheritedConformances),
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defaultedDefinitions) };
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}
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/// Applies protocol conformances to a decl.
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template <typename T>
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void processConformances(ASTContext &ctx, T *decl,
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ArrayRef<ConformancePair> conformances) {
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SmallVector<ProtocolDecl *, 16> protoBuf;
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SmallVector<ProtocolConformance *, 16> conformanceBuf;
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for (auto conformancePair : conformances) {
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auto proto = conformancePair.first;
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auto conformance = conformancePair.second;
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protoBuf.push_back(proto);
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conformanceBuf.push_back(conformance);
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}
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decl->setProtocols(ctx.AllocateCopy(protoBuf));
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decl->setConformances(ctx.AllocateCopy(conformanceBuf));
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}
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Optional<Substitution> ModuleFile::maybeReadSubstitution(
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llvm::BitstreamCursor &Cursor) {
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BCOffsetRAII lastRecordOffset(Cursor);
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auto entry = Cursor.advance(AF_DontPopBlockAtEnd);
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if (entry.Kind != llvm::BitstreamEntry::Record)
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return Nothing;
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StringRef blobData;
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SmallVector<uint64_t, 2> scratch;
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unsigned recordID = Cursor.readRecord(entry.ID, scratch,
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&blobData);
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if (recordID != decls_block::BOUND_GENERIC_SUBSTITUTION)
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return Nothing;
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TypeID archetypeID, replacementID;
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unsigned numConformances;
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decls_block::BoundGenericSubstitutionLayout::readRecord(scratch,
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archetypeID,
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replacementID,
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numConformances);
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auto archetypeTy = getType(archetypeID)->castTo<ArchetypeType>();
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auto replacementTy = getType(replacementID);
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ASTContext &ctx = getContext();
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SmallVector<ProtocolConformance *, 16> conformanceBuf;
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while (numConformances--) {
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auto conformancePair = maybeReadConformance(replacementTy, Cursor);
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assert(conformancePair.hasValue() && "Missing conformance");
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conformanceBuf.push_back(conformancePair->second);
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}
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lastRecordOffset.reset();
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return Substitution{archetypeTy, replacementTy,
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ctx.AllocateCopy(conformanceBuf)};
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}
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GenericParamList *
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ModuleFile::maybeGetOrReadGenericParams(serialization::DeclID genericContextID,
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DeclContext *DC) {
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if (genericContextID) {
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Decl *genericContext = getDecl(genericContextID);
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assert(genericContext && "loading PolymorphicFunctionType before its decl");
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switch (genericContext->getKind()) {
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case DeclKind::Constructor:
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return cast<ConstructorDecl>(genericContext)->getGenericParams();
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case DeclKind::Func:
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return cast<FuncDecl>(genericContext)->getGenericParams();
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case DeclKind::Class:
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case DeclKind::Struct:
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case DeclKind::Enum:
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case DeclKind::Protocol:
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return cast<NominalTypeDecl>(genericContext)->getGenericParams();
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default:
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return nullptr;
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}
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} else {
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return maybeReadGenericParams(DC);
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}
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}
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GenericParamList *ModuleFile::maybeReadGenericParams(DeclContext *DC) {
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using namespace decls_block;
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assert(DC && "need a context for the decls in the list");
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BCOffsetRAII lastRecordOffset(DeclTypeCursor);
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SmallVector<uint64_t, 8> scratch;
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StringRef blobData;
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auto next = DeclTypeCursor.advance(AF_DontPopBlockAtEnd);
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if (next.Kind != llvm::BitstreamEntry::Record)
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return nullptr;
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unsigned kind = DeclTypeCursor.readRecord(next.ID, scratch, &blobData);
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if (kind != GENERIC_PARAM_LIST)
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return nullptr;
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ArrayRef<uint64_t> rawArchetypeIDs;
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GenericParamListLayout::readRecord(scratch, rawArchetypeIDs);
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SmallVector<ArchetypeType *, 8> archetypes;
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for (TypeID next : rawArchetypeIDs)
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archetypes.push_back(getType(next)->castTo<ArchetypeType>());
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SmallVector<GenericParam, 8> params;
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SmallVector<RequirementRepr, 8> requirements;
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while (true) {
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lastRecordOffset.reset();
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bool shouldContinue = true;
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auto entry = DeclTypeCursor.advance(AF_DontPopBlockAtEnd);
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if (entry.Kind != llvm::BitstreamEntry::Record)
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break;
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scratch.clear();
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unsigned recordID = DeclTypeCursor.readRecord(entry.ID, scratch,
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&blobData);
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switch (recordID) {
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case GENERIC_PARAM: {
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DeclID paramDeclID;
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GenericParamLayout::readRecord(scratch, paramDeclID);
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auto genericParam = cast<GenericTypeParamDecl>(getDecl(paramDeclID, DC));
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params.push_back(GenericParam(genericParam));
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break;
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}
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case GENERIC_REQUIREMENT: {
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uint8_t rawKind;
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ArrayRef<uint64_t> rawTypeIDs;
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GenericRequirementLayout::readRecord(scratch, rawKind, rawTypeIDs);
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switch (rawKind) {
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case GenericRequirementKind::Conformance: {
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assert(rawTypeIDs.size() == 2);
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auto subject = TypeLoc::withoutLoc(getType(rawTypeIDs[0]));
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auto constraint = TypeLoc::withoutLoc(getType(rawTypeIDs[1]));
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requirements.push_back(RequirementRepr::getConformance(subject,
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SourceLoc(),
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constraint));
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break;
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}
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case GenericRequirementKind::SameType: {
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assert(rawTypeIDs.size() == 2);
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auto first = TypeLoc::withoutLoc(getType(rawTypeIDs[0]));
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auto second = TypeLoc::withoutLoc(getType(rawTypeIDs[1]));
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requirements.push_back(RequirementRepr::getSameType(first,
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SourceLoc(),
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second));
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break;
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}
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case ValueWitnessMarker: {
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// Shouldn't happen where we have requirement representations.
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error();
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|
break;
|
|
}
|
|
|
|
default:
|
|
// Unknown requirement kind. Drop the requirement and continue, but log
|
|
// an error so that we don't actually try to generate code.
|
|
error();
|
|
}
|
|
|
|
break;
|
|
}
|
|
case LAST_GENERIC_REQUIREMENT:
|
|
// Read the end-of-requirements record.
|
|
uint8_t dummy;
|
|
LastGenericRequirementLayout::readRecord(scratch, dummy);
|
|
lastRecordOffset.reset();
|
|
shouldContinue = false;
|
|
break;
|
|
|
|
default:
|
|
// This record is not part of the GenericParamList.
|
|
shouldContinue = false;
|
|
break;
|
|
}
|
|
|
|
if (!shouldContinue)
|
|
break;
|
|
}
|
|
|
|
auto paramList = GenericParamList::create(getContext(), SourceLoc(),
|
|
params, SourceLoc(), requirements,
|
|
SourceLoc());
|
|
paramList->setAllArchetypes(getContext().AllocateCopy(archetypes));
|
|
paramList->setOuterParameters(DC->getGenericParamsOfContext());
|
|
|
|
return paramList;
|
|
}
|
|
|
|
void ModuleFile::readGenericRequirements(
|
|
SmallVectorImpl<Requirement> &requirements) {
|
|
using namespace decls_block;
|
|
|
|
BCOffsetRAII lastRecordOffset(DeclTypeCursor);
|
|
SmallVector<uint64_t, 8> scratch;
|
|
StringRef blobData;
|
|
|
|
while (true) {
|
|
lastRecordOffset.reset();
|
|
bool shouldContinue = true;
|
|
|
|
auto entry = DeclTypeCursor.advance(AF_DontPopBlockAtEnd);
|
|
if (entry.Kind != llvm::BitstreamEntry::Record)
|
|
break;
|
|
|
|
scratch.clear();
|
|
unsigned recordID = DeclTypeCursor.readRecord(entry.ID, scratch,
|
|
&blobData);
|
|
switch (recordID) {
|
|
case GENERIC_REQUIREMENT: {
|
|
uint8_t rawKind;
|
|
ArrayRef<uint64_t> rawTypeIDs;
|
|
GenericRequirementLayout::readRecord(scratch, rawKind, rawTypeIDs);
|
|
|
|
switch (rawKind) {
|
|
case GenericRequirementKind::Conformance: {
|
|
assert(rawTypeIDs.size() == 2);
|
|
auto subject = getType(rawTypeIDs[0]);
|
|
auto constraint = getType(rawTypeIDs[1]);
|
|
|
|
requirements.push_back(Requirement(RequirementKind::Conformance,
|
|
subject, constraint));
|
|
break;
|
|
}
|
|
case GenericRequirementKind::SameType: {
|
|
assert(rawTypeIDs.size() == 2);
|
|
auto first = getType(rawTypeIDs[0]);
|
|
auto second = getType(rawTypeIDs[1]);
|
|
|
|
requirements.push_back(Requirement(RequirementKind::SameType,
|
|
first, second));
|
|
break;
|
|
}
|
|
case GenericRequirementKind::ValueWitnessMarker: {
|
|
assert(rawTypeIDs.size() == 1);
|
|
auto first = getType(rawTypeIDs[0]);
|
|
|
|
requirements.push_back(Requirement(RequirementKind::ValueWitnessMarker,
|
|
first, Type()));
|
|
break;
|
|
}
|
|
default:
|
|
// Unknown requirement kind. Drop the requirement and continue, but log
|
|
// an error so that we don't actually try to generate code.
|
|
error();
|
|
}
|
|
break;
|
|
}
|
|
default:
|
|
// This record is not part of the GenericParamList.
|
|
shouldContinue = false;
|
|
break;
|
|
}
|
|
|
|
if (!shouldContinue)
|
|
break;
|
|
}
|
|
}
|
|
|
|
Optional<MutableArrayRef<Decl *>> ModuleFile::readMembers() {
|
|
using namespace decls_block;
|
|
|
|
auto entry = DeclTypeCursor.advance();
|
|
if (entry.Kind != llvm::BitstreamEntry::Record)
|
|
return Nothing;
|
|
|
|
SmallVector<uint64_t, 16> memberIDBuffer;
|
|
|
|
unsigned kind = DeclTypeCursor.readRecord(entry.ID, memberIDBuffer);
|
|
assert(kind == DECL_CONTEXT);
|
|
(void)kind;
|
|
|
|
ArrayRef<uint64_t> rawMemberIDs;
|
|
decls_block::DeclContextLayout::readRecord(memberIDBuffer, rawMemberIDs);
|
|
|
|
if (rawMemberIDs.empty())
|
|
return MutableArrayRef<Decl *>();
|
|
|
|
ASTContext &ctx = getContext();
|
|
MutableArrayRef<Decl *> members(ctx.Allocate<Decl *>(rawMemberIDs.size()),
|
|
rawMemberIDs.size());
|
|
auto nextMember = members.begin();
|
|
for (DeclID rawID : rawMemberIDs) {
|
|
*nextMember = getDecl(rawID);
|
|
assert(*nextMember && "unable to deserialize next member");
|
|
++nextMember;
|
|
}
|
|
|
|
return members;
|
|
}
|
|
|
|
Identifier ModuleFile::getIdentifier(IdentifierID IID) {
|
|
if (IID == 0)
|
|
return Identifier();
|
|
|
|
size_t rawID = IID - NUM_SPECIAL_MODULES;
|
|
assert(rawID < Identifiers.size() && "invalid identifier ID");
|
|
auto identRecord = Identifiers[rawID];
|
|
|
|
if (identRecord.Offset == 0)
|
|
return identRecord.Ident;
|
|
|
|
assert(!IdentifierData.empty() && "no identifier data in module");
|
|
|
|
StringRef rawStrPtr = IdentifierData.substr(identRecord.Offset);
|
|
size_t terminatorOffset = rawStrPtr.find('\0');
|
|
assert(terminatorOffset != StringRef::npos &&
|
|
"unterminated identifier string data");
|
|
|
|
return getContext().getIdentifier(rawStrPtr.slice(0, terminatorOffset));
|
|
}
|
|
|
|
DeclContext *ModuleFile::getDeclContext(DeclID DID) {
|
|
if (DID == 0)
|
|
return FileContext;
|
|
|
|
Decl *D = getDecl(DID);
|
|
|
|
if (auto ND = dyn_cast<NominalTypeDecl>(D))
|
|
return ND;
|
|
if (auto ED = dyn_cast<ExtensionDecl>(D))
|
|
return ED;
|
|
if (auto AFD = dyn_cast<AbstractFunctionDecl>(D))
|
|
return AFD;
|
|
|
|
llvm_unreachable("unknown DeclContext kind");
|
|
}
|
|
|
|
Module *ModuleFile::getModule(ModuleID MID) {
|
|
if (MID == BUILTIN_MODULE_ID)
|
|
return getContext().TheBuiltinModule;
|
|
if (MID == CURRENT_MODULE_ID)
|
|
return FileContext->getParentModule();
|
|
return getModule(getIdentifier(MID));
|
|
}
|
|
|
|
Module *ModuleFile::getModule(Identifier name) {
|
|
if (name.empty())
|
|
return getContext().TheBuiltinModule;
|
|
|
|
// FIXME: duplicated from NameBinder::getModule
|
|
// FIXME: provide a real source location.
|
|
if (name == FileContext->getParentModule()->Name) {
|
|
if (!ShadowedModule) {
|
|
auto importer = getContext().getClangModuleLoader();
|
|
assert(importer && "no way to import shadowed module");
|
|
ShadowedModule = importer->loadModule(SourceLoc(),
|
|
std::make_pair(name, SourceLoc()));
|
|
assert(ShadowedModule && "missing shadowed module");
|
|
}
|
|
|
|
return ShadowedModule;
|
|
}
|
|
|
|
// FIXME: provide a real source location.
|
|
return getContext().getModule(std::make_pair(name, SourceLoc()));
|
|
}
|
|
|
|
|
|
/// Translate from the Serialization assocativity enum values to the AST
|
|
/// strongly-typed enum.
|
|
///
|
|
/// The former is guaranteed to be stable, but may not reflect this version of
|
|
/// the AST.
|
|
static Optional<swift::Associativity> getActualAssociativity(uint8_t assoc) {
|
|
switch (assoc) {
|
|
case serialization::Associativity::LeftAssociative:
|
|
return swift::Associativity::Left;
|
|
case serialization::Associativity::RightAssociative:
|
|
return swift::Associativity::Right;
|
|
case serialization::Associativity::NonAssociative:
|
|
return swift::Associativity::None;
|
|
default:
|
|
return Nothing;
|
|
}
|
|
}
|
|
|
|
Decl *ModuleFile::getDecl(DeclID DID, Optional<DeclContext *> ForcedContext,
|
|
std::function<void(Decl*)> DidRecord) {
|
|
if (DID == 0)
|
|
return nullptr;
|
|
|
|
assert(DID <= Decls.size() && "invalid decl ID");
|
|
auto &declOrOffset = Decls[DID-1];
|
|
|
|
if (declOrOffset.isComplete()) {
|
|
if (DidRecord)
|
|
DidRecord(declOrOffset);
|
|
return declOrOffset;
|
|
}
|
|
|
|
BCOffsetRAII restoreOffset(DeclTypeCursor);
|
|
DeclTypeCursor.JumpToBit(declOrOffset);
|
|
auto entry = DeclTypeCursor.advance();
|
|
|
|
if (entry.Kind != llvm::BitstreamEntry::Record) {
|
|
// We don't know how to serialize decls represented by sub-blocks.
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
ASTContext &ctx = getContext();
|
|
|
|
SmallVector<uint64_t, 64> scratch;
|
|
StringRef blobData;
|
|
unsigned recordID = DeclTypeCursor.readRecord(entry.ID, scratch, &blobData);
|
|
|
|
switch (recordID) {
|
|
case decls_block::TYPE_ALIAS_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
TypeID underlyingTypeID, interfaceTypeID;
|
|
bool isImplicit;
|
|
|
|
decls_block::TypeAliasLayout::readRecord(scratch, nameID, contextID,
|
|
underlyingTypeID, interfaceTypeID,
|
|
isImplicit);
|
|
|
|
auto DC = ForcedContext ? *ForcedContext : getDeclContext(contextID);
|
|
auto underlyingType = TypeLoc::withoutLoc(getType(underlyingTypeID));
|
|
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto alias = new (ctx) TypeAliasDecl(SourceLoc(), getIdentifier(nameID),
|
|
SourceLoc(), underlyingType,
|
|
DC, { });
|
|
declOrOffset = alias;
|
|
|
|
if (auto interfaceType = getType(interfaceTypeID))
|
|
alias->setInterfaceType(interfaceType);
|
|
|
|
if (isImplicit)
|
|
alias->setImplicit();
|
|
|
|
SmallVector<ConformancePair, 16> conformances;
|
|
while (auto conformance = maybeReadConformance(underlyingType.getType(),
|
|
DeclTypeCursor))
|
|
conformances.push_back(*conformance);
|
|
processConformances(ctx, alias, conformances);
|
|
alias->setCheckedInheritanceClause();
|
|
break;
|
|
}
|
|
|
|
case decls_block::GENERIC_TYPE_PARAM_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
bool isImplicit;
|
|
unsigned depth;
|
|
unsigned index;
|
|
TypeID superclassID;
|
|
TypeID archetypeID;
|
|
|
|
decls_block::GenericTypeParamDeclLayout::readRecord(scratch, nameID,
|
|
contextID,
|
|
isImplicit,
|
|
depth,
|
|
index,
|
|
superclassID,
|
|
archetypeID);
|
|
|
|
auto DC = ForcedContext ? *ForcedContext : getDeclContext(contextID);
|
|
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto genericParam = new (ctx) GenericTypeParamDecl(DC,
|
|
getIdentifier(nameID),
|
|
SourceLoc(),
|
|
depth,
|
|
index);
|
|
declOrOffset = genericParam;
|
|
|
|
if (isImplicit)
|
|
genericParam->setImplicit();
|
|
|
|
genericParam->setSuperclass(getType(superclassID));
|
|
genericParam->setArchetype(getType(archetypeID)->castTo<ArchetypeType>());
|
|
|
|
SmallVector<ConformancePair, 16> conformances;
|
|
while (auto conformance
|
|
= maybeReadConformance(genericParam->getDeclaredType(),
|
|
DeclTypeCursor))
|
|
conformances.push_back(*conformance);
|
|
processConformances(ctx, genericParam, conformances);
|
|
genericParam->setCheckedInheritanceClause();
|
|
break;
|
|
}
|
|
|
|
case decls_block::ASSOCIATED_TYPE_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
TypeID superclassID;
|
|
TypeID archetypeID;
|
|
bool isImplicit;
|
|
|
|
decls_block::AssociatedTypeDeclLayout::readRecord(scratch, nameID,
|
|
contextID,
|
|
superclassID,
|
|
archetypeID,
|
|
isImplicit);
|
|
|
|
auto DC = ForcedContext ? *ForcedContext : getDeclContext(contextID);
|
|
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto assocType = new (ctx) AssociatedTypeDecl(DC, SourceLoc(),
|
|
getIdentifier(nameID),
|
|
SourceLoc());
|
|
declOrOffset = assocType;
|
|
|
|
assocType->setSuperclass(getType(superclassID));
|
|
assocType->setArchetype(getType(archetypeID)->castTo<ArchetypeType>());
|
|
if (isImplicit)
|
|
assocType->setImplicit();
|
|
|
|
SmallVector<ConformancePair, 16> conformances;
|
|
while (auto conformance
|
|
= maybeReadConformance(assocType->getDeclaredType(), DeclTypeCursor))
|
|
conformances.push_back(*conformance);
|
|
processConformances(ctx, assocType, conformances);
|
|
assocType->setCheckedInheritanceClause();
|
|
break;
|
|
}
|
|
|
|
case decls_block::STRUCT_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
bool isImplicit;
|
|
|
|
decls_block::StructLayout::readRecord(scratch, nameID, contextID,
|
|
isImplicit);
|
|
|
|
auto DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto genericParams = maybeReadGenericParams(DC);
|
|
|
|
auto theStruct = new (ctx) StructDecl(SourceLoc(), getIdentifier(nameID),
|
|
SourceLoc(), { }, genericParams, DC);
|
|
declOrOffset = theStruct;
|
|
if (DidRecord) {
|
|
DidRecord(theStruct);
|
|
DidRecord = nullptr;
|
|
}
|
|
|
|
if (isImplicit)
|
|
theStruct->setImplicit();
|
|
if (genericParams) {
|
|
SmallVector<GenericTypeParamType *, 4> paramTypes;
|
|
for (auto &genericParam : *theStruct->getGenericParams()) {
|
|
genericParam.getAsTypeParam()->setDeclContext(theStruct);
|
|
paramTypes.push_back(genericParam.getAsTypeParam()->getDeclaredType()
|
|
->castTo<GenericTypeParamType>());
|
|
}
|
|
|
|
// Read the generic requirements.
|
|
SmallVector<Requirement, 4> requirements;
|
|
readGenericRequirements(requirements);
|
|
|
|
theStruct->setGenericSignature(paramTypes, requirements);
|
|
}
|
|
|
|
theStruct->computeType();
|
|
|
|
CanType canTy = theStruct->getDeclaredTypeInContext()->getCanonicalType();
|
|
|
|
SmallVector<ConformancePair, 16> conformances;
|
|
while (auto conformance = maybeReadConformance(canTy, DeclTypeCursor))
|
|
conformances.push_back(*conformance);
|
|
processConformances(ctx, theStruct, conformances);
|
|
|
|
auto members = readMembers();
|
|
assert(members.hasValue() && "could not read struct members");
|
|
theStruct->setMembers(members.getValue(), SourceRange());
|
|
theStruct->setCheckedInheritanceClause();
|
|
break;
|
|
}
|
|
|
|
case decls_block::CONSTRUCTOR_DECL: {
|
|
DeclID parentID;
|
|
bool isImplicit, hasSelectorStyleSignature, isObjC, isTransparent;
|
|
TypeID signatureID;
|
|
TypeID interfaceID;
|
|
DeclID implicitSelfID;
|
|
|
|
decls_block::ConstructorLayout::readRecord(scratch, parentID, isImplicit,
|
|
hasSelectorStyleSignature,
|
|
isObjC, isTransparent,
|
|
signatureID, interfaceID,
|
|
implicitSelfID);
|
|
auto parent = getDeclContext(parentID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto selfDecl = cast<VarDecl>(getDecl(implicitSelfID, nullptr));
|
|
auto genericParams = maybeReadGenericParams(parent);
|
|
|
|
auto ctor = new (ctx) ConstructorDecl(ctx.getIdentifier("init"),
|
|
SourceLoc(), /*argParams=*/nullptr,
|
|
/*bodyParams=*/nullptr, selfDecl,
|
|
genericParams, parent);
|
|
declOrOffset = ctor;
|
|
selfDecl->setDeclContext(ctor);
|
|
|
|
Pattern *argParams = maybeReadPattern();
|
|
assert(argParams && "missing argument patterns for constructor");
|
|
ctor->setArgParams(argParams);
|
|
|
|
Pattern *bodyParams = maybeReadPattern();
|
|
assert(bodyParams && "missing body patterns for constructor");
|
|
ctor->setBodyParams(bodyParams);
|
|
|
|
// This must be set after recording the constructor in the map.
|
|
// A polymorphic constructor type needs to refer to the constructor to get
|
|
// its generic parameters.
|
|
ctor->setType(getType(signatureID));
|
|
if (auto interfaceType = getType(interfaceID))
|
|
ctor->setInterfaceType(interfaceType);
|
|
|
|
// Set the initializer type of the constructor.
|
|
auto allocType = ctor->getType();
|
|
auto selfTy = allocType->castTo<AnyFunctionType>()->getInput()
|
|
->castTo<MetaTypeType>()->getInstanceType();
|
|
if (auto polyFn = allocType->getAs<PolymorphicFunctionType>()) {
|
|
ctor->setInitializerType(
|
|
PolymorphicFunctionType::get(selfTy, polyFn->getResult(),
|
|
&polyFn->getGenericParams(),
|
|
polyFn->getExtInfo(),
|
|
ctx));
|
|
} else {
|
|
auto fn = allocType->castTo<FunctionType>();
|
|
ctor->setInitializerType(FunctionType::get(selfTy,
|
|
fn->getResult(),
|
|
fn->getExtInfo(),
|
|
ctx));
|
|
}
|
|
|
|
// Set the initializer interface type of the constructor.
|
|
allocType = ctor->getInterfaceType();
|
|
selfTy = allocType->castTo<AnyFunctionType>()->getInput()
|
|
->castTo<MetaTypeType>()->getInstanceType();
|
|
if (auto polyFn = allocType->getAs<GenericFunctionType>()) {
|
|
ctor->setInitializerInterfaceType(
|
|
GenericFunctionType::get(polyFn->getGenericParams(),
|
|
polyFn->getRequirements(),
|
|
selfTy, polyFn->getResult(),
|
|
polyFn->getExtInfo(),
|
|
ctx));
|
|
} else {
|
|
auto fn = allocType->castTo<FunctionType>();
|
|
ctor->setInitializerInterfaceType(FunctionType::get(selfTy,
|
|
fn->getResult(),
|
|
fn->getExtInfo(),
|
|
ctx));
|
|
}
|
|
|
|
if (isImplicit)
|
|
ctor->setImplicit();
|
|
if (hasSelectorStyleSignature)
|
|
ctor->setHasSelectorStyleSignature();
|
|
ctor->setIsObjC(isObjC);
|
|
if (isTransparent)
|
|
ctor->getMutableAttrs().setAttr(AK_transparent, SourceLoc());
|
|
|
|
if (genericParams)
|
|
for (auto &genericParam : *ctor->getGenericParams())
|
|
genericParam.getAsTypeParam()->setDeclContext(ctor);
|
|
|
|
break;
|
|
}
|
|
|
|
case decls_block::VAR_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
bool isImplicit, isObjC, isIBOutlet, isOptional, isStatic;
|
|
TypeID typeID, interfaceTypeID;
|
|
DeclID getterID, setterID;
|
|
DeclID overriddenID;
|
|
|
|
decls_block::VarLayout::readRecord(scratch, nameID, contextID, isImplicit,
|
|
isObjC, isIBOutlet, isOptional, isStatic,
|
|
typeID, interfaceTypeID,
|
|
getterID, setterID, overriddenID);
|
|
|
|
auto DC = ForcedContext ? *ForcedContext : getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto var = new (ctx) VarDecl(isStatic, SourceLoc(), getIdentifier(nameID),
|
|
getType(typeID), DC);
|
|
|
|
declOrOffset = var;
|
|
|
|
if (auto interfaceType = getType(interfaceTypeID))
|
|
var->setInterfaceType(interfaceType);
|
|
|
|
if (getterID || setterID) {
|
|
var->setComputedAccessors(ctx, SourceLoc(),
|
|
cast_or_null<FuncDecl>(getDecl(getterID)),
|
|
cast_or_null<FuncDecl>(getDecl(setterID)),
|
|
SourceLoc());
|
|
}
|
|
|
|
if (isImplicit)
|
|
var->setImplicit();
|
|
var->setIsObjC(isObjC);
|
|
if (isIBOutlet)
|
|
var->getMutableAttrs().setAttr(AK_iboutlet, SourceLoc());
|
|
if (isOptional)
|
|
var->getMutableAttrs().setAttr(AK_optional, SourceLoc());
|
|
|
|
var->setOverriddenDecl(cast_or_null<VarDecl>(getDecl(overriddenID)));
|
|
break;
|
|
}
|
|
|
|
case decls_block::FUNC_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
bool isImplicit;
|
|
bool hasSelectorStyleSignature;
|
|
bool isClassMethod;
|
|
bool isAssignmentOrConversion;
|
|
bool isObjC, isIBAction, isTransparent, isOptional;
|
|
unsigned numParamPatterns;
|
|
TypeID signatureID;
|
|
TypeID interfaceTypeID;
|
|
DeclID associatedDeclID;
|
|
DeclID overriddenID;
|
|
|
|
decls_block::FuncLayout::readRecord(scratch, nameID, contextID, isImplicit,
|
|
hasSelectorStyleSignature,
|
|
isClassMethod, isAssignmentOrConversion,
|
|
isObjC, isIBAction, isTransparent,
|
|
isOptional,
|
|
numParamPatterns, signatureID,
|
|
interfaceTypeID, associatedDeclID,
|
|
overriddenID);
|
|
|
|
auto DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
// Read generic params before reading the type, because the type may
|
|
// reference generic parameters, and we want them to have a dummy
|
|
// DeclContext for now.
|
|
GenericParamList *genericParams = maybeReadGenericParams(DC);
|
|
|
|
auto fn = FuncDecl::createDeserialized(
|
|
ctx, SourceLoc(), SourceLoc(), getIdentifier(nameID), SourceLoc(),
|
|
genericParams, /*type=*/nullptr, numParamPatterns, DC);
|
|
declOrOffset = fn;
|
|
|
|
// This must be set after recording the constructor in the map.
|
|
// A polymorphic constructor type needs to refer to the constructor to get
|
|
// its generic parameters.
|
|
auto signature = getType(signatureID)->castTo<AnyFunctionType>();
|
|
fn->setType(signature);
|
|
|
|
// Set the interface type.
|
|
if (auto interfaceType = getType(interfaceTypeID))
|
|
fn->setInterfaceType(interfaceType);
|
|
|
|
SmallVector<Pattern *, 16> patternBuf;
|
|
while (Pattern *pattern = maybeReadPattern())
|
|
patternBuf.push_back(pattern);
|
|
|
|
assert(!patternBuf.empty());
|
|
assert((patternBuf.size() == numParamPatterns ||
|
|
patternBuf.size() == numParamPatterns * 2) &&
|
|
"incorrect number of parameters");
|
|
|
|
ArrayRef<Pattern *> patterns(patternBuf);
|
|
ArrayRef<Pattern *> argPatterns = patterns.slice(0, numParamPatterns);
|
|
ArrayRef<Pattern *> bodyPatterns = patterns.slice(numParamPatterns);
|
|
if (bodyPatterns.empty())
|
|
bodyPatterns = argPatterns;
|
|
fn->setDeserializedSignature(argPatterns, bodyPatterns,
|
|
TypeLoc::withoutLoc(signature->getResult()));
|
|
|
|
if (genericParams)
|
|
for (auto &genericParam : *fn->getGenericParams())
|
|
genericParam.getAsTypeParam()->setDeclContext(fn);
|
|
|
|
fn->setOverriddenDecl(cast_or_null<FuncDecl>(getDecl(overriddenID)));
|
|
|
|
fn->setStatic(isClassMethod);
|
|
if (isImplicit)
|
|
fn->setImplicit();
|
|
if (hasSelectorStyleSignature)
|
|
fn->setHasSelectorStyleSignature();
|
|
if (!blobData.empty())
|
|
fn->getMutableAttrs().AsmName = ctx.AllocateCopy(blobData);
|
|
if (isAssignmentOrConversion) {
|
|
if (fn->isOperator())
|
|
fn->getMutableAttrs().setAttr(AK_assignment, SourceLoc());
|
|
else
|
|
fn->getMutableAttrs().setAttr(AK_conversion, SourceLoc());
|
|
}
|
|
fn->setIsObjC(isObjC);
|
|
if (isIBAction)
|
|
fn->getMutableAttrs().setAttr(AK_ibaction, SourceLoc());
|
|
if (isTransparent)
|
|
fn->getMutableAttrs().setAttr(AK_transparent, SourceLoc());
|
|
if (isOptional)
|
|
fn->getMutableAttrs().setAttr(AK_optional, SourceLoc());
|
|
|
|
if (Decl *associated = getDecl(associatedDeclID)) {
|
|
if (auto op = dyn_cast<OperatorDecl>(associated)) {
|
|
fn->setOperatorDecl(op);
|
|
|
|
if (isa<PrefixOperatorDecl>(op))
|
|
fn->getMutableAttrs().setAttr(AK_prefix, SourceLoc());
|
|
else if (isa<PostfixOperatorDecl>(op))
|
|
fn->getMutableAttrs().setAttr(AK_postfix, SourceLoc());
|
|
// Note that an explicit [infix] is not required.
|
|
}
|
|
// Otherwise, unknown associated decl kind.
|
|
}
|
|
|
|
break;
|
|
}
|
|
|
|
case decls_block::PATTERN_BINDING_DECL: {
|
|
DeclID contextID;
|
|
bool isImplicit;
|
|
bool isStatic;
|
|
|
|
decls_block::PatternBindingLayout::readRecord(scratch, contextID,
|
|
isImplicit,
|
|
isStatic);
|
|
Pattern *pattern = maybeReadPattern();
|
|
assert(pattern);
|
|
|
|
auto binding = new (ctx) PatternBindingDecl(SourceLoc(),
|
|
SourceLoc(), pattern,
|
|
/*init=*/nullptr,
|
|
getDeclContext(contextID));
|
|
binding->setStatic(isStatic);
|
|
declOrOffset = binding;
|
|
|
|
if (isImplicit)
|
|
binding->setImplicit();
|
|
|
|
break;
|
|
}
|
|
|
|
case decls_block::PROTOCOL_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
bool isImplicit, isClassProtocol, isObjC;
|
|
ArrayRef<uint64_t> protocolIDs;
|
|
|
|
decls_block::ProtocolLayout::readRecord(scratch, nameID, contextID,
|
|
isImplicit, isClassProtocol, isObjC,
|
|
protocolIDs);
|
|
|
|
auto DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto proto = new (ctx) ProtocolDecl(DC, SourceLoc(), SourceLoc(),
|
|
getIdentifier(nameID), { });
|
|
declOrOffset = proto;
|
|
|
|
if (DidRecord) {
|
|
DidRecord(proto);
|
|
DidRecord = nullptr;
|
|
}
|
|
|
|
if (auto genericParams = maybeReadGenericParams(DC)) {
|
|
proto->setGenericParams(genericParams);
|
|
SmallVector<GenericTypeParamType *, 4> paramTypes;
|
|
for (auto &genericParam : *proto->getGenericParams()) {
|
|
genericParam.getAsTypeParam()->setDeclContext(proto);
|
|
paramTypes.push_back(genericParam.getAsTypeParam()->getDeclaredType()
|
|
->castTo<GenericTypeParamType>());
|
|
}
|
|
|
|
// Read the generic requirements.
|
|
SmallVector<Requirement, 4> requirements;
|
|
readGenericRequirements(requirements);
|
|
|
|
proto->setGenericSignature(paramTypes, requirements);
|
|
}
|
|
|
|
|
|
if (isImplicit)
|
|
proto->setImplicit();
|
|
if (isClassProtocol)
|
|
proto->getMutableAttrs().setAttr(AK_class_protocol, SourceLoc());
|
|
proto->setIsObjC(isObjC);
|
|
proto->computeType();
|
|
|
|
// Deserialize the list of protocols.
|
|
SmallVector<ProtocolDecl *, 4> protocols;
|
|
for (auto protoID : protocolIDs) {
|
|
protocols.push_back(cast<ProtocolDecl>(getDecl(protoID)));
|
|
}
|
|
proto->setProtocols(ctx.AllocateCopy(protocols));
|
|
|
|
auto members = readMembers();
|
|
assert(members.hasValue() && "could not read struct members");
|
|
proto->setMembers(members.getValue(), SourceRange());
|
|
proto->setCheckedInheritanceClause();
|
|
proto->setCircularityCheck(CircularityCheck::Checked);
|
|
break;
|
|
}
|
|
|
|
case decls_block::PREFIX_OPERATOR_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
|
|
decls_block::PrefixOperatorLayout::readRecord(scratch, nameID, contextID);
|
|
declOrOffset = new (ctx) PrefixOperatorDecl(getDeclContext(contextID),
|
|
SourceLoc(), SourceLoc(),
|
|
getIdentifier(nameID),
|
|
SourceLoc(), SourceLoc(),
|
|
SourceLoc());
|
|
break;
|
|
}
|
|
|
|
case decls_block::POSTFIX_OPERATOR_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
|
|
decls_block::PostfixOperatorLayout::readRecord(scratch, nameID, contextID);
|
|
declOrOffset = new (ctx) PostfixOperatorDecl(getDeclContext(contextID),
|
|
SourceLoc(), SourceLoc(),
|
|
getIdentifier(nameID),
|
|
SourceLoc(), SourceLoc(),
|
|
SourceLoc());
|
|
break;
|
|
}
|
|
|
|
case decls_block::INFIX_OPERATOR_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
uint8_t rawAssociativity;
|
|
unsigned precedence;
|
|
|
|
decls_block::InfixOperatorLayout::readRecord(scratch, nameID, contextID,
|
|
rawAssociativity, precedence);
|
|
|
|
auto associativity = getActualAssociativity(rawAssociativity);
|
|
if (!associativity.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
InfixData infixData(precedence, associativity.getValue());
|
|
|
|
declOrOffset = new (ctx) InfixOperatorDecl(getDeclContext(contextID),
|
|
SourceLoc(), SourceLoc(),
|
|
getIdentifier(nameID),
|
|
SourceLoc(), SourceLoc(),
|
|
SourceLoc(), SourceLoc(),
|
|
SourceLoc(), SourceLoc(),
|
|
SourceLoc(), infixData);
|
|
break;
|
|
}
|
|
|
|
case decls_block::CLASS_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
bool isImplicit, isObjC;
|
|
TypeID superclassID;
|
|
unsigned resilienceKind;
|
|
decls_block::ClassLayout::readRecord(scratch, nameID, contextID,
|
|
isImplicit, isObjC, resilienceKind,
|
|
superclassID);
|
|
|
|
auto DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto genericParams = maybeReadGenericParams(DC);
|
|
|
|
auto theClass = new (ctx) ClassDecl(SourceLoc(), getIdentifier(nameID),
|
|
SourceLoc(), { }, genericParams, DC);
|
|
declOrOffset = theClass;
|
|
if (DidRecord) {
|
|
DidRecord(theClass);
|
|
DidRecord = nullptr;
|
|
}
|
|
|
|
if (isImplicit)
|
|
theClass->setImplicit();
|
|
if (superclassID)
|
|
theClass->setSuperclass(getType(superclassID));
|
|
if ((Resilience)resilienceKind == Resilience::Fragile)
|
|
theClass->getMutableAttrs().setAttr(AK_fragile, SourceLoc());
|
|
else if ((Resilience)resilienceKind == Resilience::InherentlyFragile)
|
|
theClass->getMutableAttrs().setAttr(AK_born_fragile, SourceLoc());
|
|
else if ((Resilience)resilienceKind == Resilience::Resilient)
|
|
theClass->getMutableAttrs().setAttr(AK_resilient, SourceLoc());
|
|
if (genericParams) {
|
|
SmallVector<GenericTypeParamType *, 4> paramTypes;
|
|
for (auto &genericParam : *theClass->getGenericParams()) {
|
|
genericParam.getAsTypeParam()->setDeclContext(theClass);
|
|
paramTypes.push_back(genericParam.getAsTypeParam()->getDeclaredType()
|
|
->castTo<GenericTypeParamType>());
|
|
}
|
|
|
|
// Read the generic requirements.
|
|
SmallVector<Requirement, 4> requirements;
|
|
readGenericRequirements(requirements);
|
|
|
|
theClass->setGenericSignature(paramTypes, requirements);
|
|
}
|
|
theClass->setIsObjC(isObjC);
|
|
theClass->computeType();
|
|
|
|
CanType canTy = theClass->getDeclaredTypeInContext()->getCanonicalType();
|
|
|
|
SmallVector<ConformancePair, 16> conformances;
|
|
while (auto conformance = maybeReadConformance(canTy, DeclTypeCursor))
|
|
conformances.push_back(*conformance);
|
|
processConformances(ctx, theClass, conformances);
|
|
|
|
auto members = readMembers();
|
|
assert(members.hasValue() && "could not read class members");
|
|
theClass->setMembers(members.getValue(), SourceRange());
|
|
theClass->setCheckedInheritanceClause();
|
|
theClass->setCircularityCheck(CircularityCheck::Checked);
|
|
break;
|
|
}
|
|
|
|
case decls_block::ENUM_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
bool isImplicit;
|
|
TypeID rawTypeID;
|
|
|
|
decls_block::EnumLayout::readRecord(scratch, nameID, contextID,
|
|
isImplicit, rawTypeID);
|
|
|
|
auto DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto genericParams = maybeReadGenericParams(DC);
|
|
|
|
auto theEnum = new (ctx) EnumDecl(SourceLoc(), getIdentifier(nameID),
|
|
SourceLoc(), { }, genericParams, DC);
|
|
|
|
declOrOffset = theEnum;
|
|
if (DidRecord) {
|
|
DidRecord(theEnum);
|
|
DidRecord = nullptr;
|
|
}
|
|
|
|
if (isImplicit)
|
|
theEnum->setImplicit();
|
|
theEnum->setRawType(getType(rawTypeID));
|
|
if (genericParams) {
|
|
SmallVector<GenericTypeParamType *, 4> paramTypes;
|
|
for (auto &genericParam : *theEnum->getGenericParams()) {
|
|
genericParam.getAsTypeParam()->setDeclContext(theEnum);
|
|
paramTypes.push_back(genericParam.getAsTypeParam()->getDeclaredType()
|
|
->castTo<GenericTypeParamType>());
|
|
}
|
|
|
|
// Read the generic requirements.
|
|
SmallVector<Requirement, 4> requirements;
|
|
readGenericRequirements(requirements);
|
|
|
|
theEnum->setGenericSignature(paramTypes, requirements);
|
|
}
|
|
|
|
theEnum->computeType();
|
|
CanType canTy = theEnum->getDeclaredTypeInContext()->getCanonicalType();
|
|
|
|
SmallVector<ConformancePair, 16> conformances;
|
|
while (auto conformance = maybeReadConformance(canTy, DeclTypeCursor))
|
|
conformances.push_back(*conformance);
|
|
processConformances(ctx, theEnum, conformances);
|
|
|
|
auto members = readMembers();
|
|
assert(members.hasValue() && "could not read enum members");
|
|
theEnum->setMembers(members.getValue(), SourceRange());
|
|
theEnum->setCheckedInheritanceClause();
|
|
break;
|
|
}
|
|
|
|
case decls_block::ENUM_ELEMENT_DECL: {
|
|
IdentifierID nameID;
|
|
DeclID contextID;
|
|
TypeID argTypeID, ctorTypeID, interfaceTypeID;
|
|
bool isImplicit;
|
|
|
|
decls_block::EnumElementLayout::readRecord(scratch, nameID, contextID,
|
|
argTypeID, ctorTypeID,
|
|
interfaceTypeID, isImplicit);
|
|
|
|
DeclContext *DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto argTy = getType(argTypeID);
|
|
// FIXME: Deserialize the literal raw value, if any.
|
|
auto elem = new (ctx) EnumElementDecl(SourceLoc(),
|
|
getIdentifier(nameID),
|
|
TypeLoc::withoutLoc(argTy),
|
|
SourceLoc(),
|
|
nullptr,
|
|
DC);
|
|
declOrOffset = elem;
|
|
|
|
elem->setType(getType(ctorTypeID));
|
|
if (auto interfaceType = getType(interfaceTypeID))
|
|
elem->setInterfaceType(interfaceType);
|
|
if (isImplicit)
|
|
elem->setImplicit();
|
|
|
|
break;
|
|
}
|
|
|
|
case decls_block::SUBSCRIPT_DECL: {
|
|
DeclID contextID;
|
|
bool isImplicit, isObjC, isOptional;
|
|
TypeID declTypeID, elemTypeID, interfaceTypeID;
|
|
DeclID getterID, setterID;
|
|
DeclID overriddenID;
|
|
|
|
decls_block::SubscriptLayout::readRecord(scratch, contextID, isImplicit,
|
|
isObjC, isOptional,
|
|
declTypeID, elemTypeID,
|
|
interfaceTypeID,
|
|
getterID, setterID,
|
|
overriddenID);
|
|
|
|
auto DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
Pattern *indices = maybeReadPattern();
|
|
assert(indices);
|
|
|
|
auto elemTy = TypeLoc::withoutLoc(getType(elemTypeID));
|
|
auto getter = cast_or_null<FuncDecl>(getDecl(getterID));
|
|
auto setter = cast_or_null<FuncDecl>(getDecl(setterID));
|
|
|
|
auto subscript = new (ctx) SubscriptDecl(ctx.getIdentifier("subscript"),
|
|
SourceLoc(), indices, SourceLoc(),
|
|
elemTy, SourceRange(),
|
|
getter, setter, DC);
|
|
declOrOffset = subscript;
|
|
|
|
subscript->setType(getType(declTypeID));
|
|
if (auto interfaceType = getType(interfaceTypeID))
|
|
subscript->setInterfaceType(interfaceType);
|
|
if (isImplicit)
|
|
subscript->setImplicit();
|
|
subscript->setIsObjC(isObjC);
|
|
if (isOptional)
|
|
subscript->getMutableAttrs().setAttr(AK_optional, SourceLoc());
|
|
auto overriddenDecl = cast_or_null<SubscriptDecl>(getDecl(overriddenID));
|
|
subscript->setOverriddenDecl(overriddenDecl);
|
|
|
|
if (getter)
|
|
getter->makeGetter(subscript);
|
|
if (setter)
|
|
setter->makeSetter(subscript);
|
|
break;
|
|
}
|
|
|
|
case decls_block::EXTENSION_DECL: {
|
|
TypeID baseID;
|
|
DeclID contextID;
|
|
bool isImplicit;
|
|
|
|
decls_block::ExtensionLayout::readRecord(scratch, baseID, contextID,
|
|
isImplicit);
|
|
|
|
auto DC = getDeclContext(contextID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto baseTy = TypeLoc::withoutLoc(getType(baseID));
|
|
|
|
auto extension = new (ctx) ExtensionDecl(SourceLoc(), baseTy, { }, DC);
|
|
declOrOffset = extension;
|
|
|
|
if (isImplicit)
|
|
extension->setImplicit();
|
|
|
|
CanType canBaseTy = baseTy.getType()->getCanonicalType();
|
|
|
|
SmallVector<ConformancePair, 16> conformances;
|
|
while (auto conformance = maybeReadConformance(canBaseTy, DeclTypeCursor))
|
|
conformances.push_back(*conformance);
|
|
processConformances(ctx, extension, conformances);
|
|
|
|
auto members = readMembers();
|
|
assert(members.hasValue() && "could not read extension members");
|
|
extension->setMembers(members.getValue(), SourceRange());
|
|
|
|
baseTy.getType()->getAnyNominal()->addExtension(extension);
|
|
extension->setCheckedInheritanceClause();
|
|
break;
|
|
}
|
|
|
|
case decls_block::DESTRUCTOR_DECL: {
|
|
DeclID parentID;
|
|
bool isImplicit, isObjC;
|
|
TypeID signatureID;
|
|
DeclID implicitSelfID;
|
|
|
|
decls_block::DestructorLayout::readRecord(scratch, parentID, isImplicit,
|
|
isObjC, signatureID,
|
|
implicitSelfID);
|
|
|
|
DeclContext *parent = getDeclContext(parentID);
|
|
if (declOrOffset.isComplete())
|
|
break;
|
|
|
|
auto selfDecl = cast<VarDecl>(getDecl(implicitSelfID, nullptr));
|
|
|
|
auto dtor = new (ctx) DestructorDecl(ctx.getIdentifier("destructor"),
|
|
SourceLoc(), selfDecl, parent);
|
|
declOrOffset = dtor;
|
|
selfDecl->setDeclContext(dtor);
|
|
|
|
dtor->setType(getType(signatureID));
|
|
if (isImplicit)
|
|
dtor->setImplicit();
|
|
dtor->setIsObjC(isObjC);
|
|
|
|
break;
|
|
}
|
|
|
|
case decls_block::XREF: {
|
|
uint8_t kind;
|
|
TypeID expectedTypeID;
|
|
bool isWithinExtension;
|
|
ArrayRef<uint64_t> rawAccessPath;
|
|
|
|
decls_block::XRefLayout::readRecord(scratch, kind, expectedTypeID,
|
|
isWithinExtension, rawAccessPath);
|
|
|
|
// First, find the module this reference is referring to.
|
|
Module *M = getModule(rawAccessPath.front());
|
|
assert(M && "missing dependency");
|
|
rawAccessPath = rawAccessPath.slice(1);
|
|
|
|
switch (kind) {
|
|
case XRefKind::SwiftValue:
|
|
case XRefKind::SwiftGenericParameter: {
|
|
// Start by looking up the top-level decl in the module.
|
|
Module *baseModule = M;
|
|
if (isWithinExtension) {
|
|
baseModule = getModule(rawAccessPath.front());
|
|
assert(baseModule && "missing dependency");
|
|
rawAccessPath = rawAccessPath.slice(1);
|
|
}
|
|
|
|
// We do a full qualified lookup from within the referenced module.
|
|
// This avoids inefficient access control restrictions from elsewhere in
|
|
// this module, but handles the case where a declaration is no longer
|
|
// *declared* in this module, merely re-exported. This also handles
|
|
// adapter modules for Clang frameworks.
|
|
SmallVector<ValueDecl *, 8> values;
|
|
baseModule->lookupQualified(ModuleType::get(baseModule),
|
|
getIdentifier(rawAccessPath.front()),
|
|
NL_QualifiedDefault,
|
|
/*typeResolver=*/nullptr,
|
|
values);
|
|
rawAccessPath = rawAccessPath.slice(1);
|
|
|
|
// Then, follow the chain of nested ValueDecls until we run out of
|
|
// identifiers in the access path.
|
|
SmallVector<ValueDecl *, 8> baseValues;
|
|
for (IdentifierID nextID : rawAccessPath) {
|
|
baseValues.swap(values);
|
|
values.clear();
|
|
for (auto base : baseValues) {
|
|
if (auto nominal = dyn_cast<NominalTypeDecl>(base)) {
|
|
Identifier memberName = getIdentifier(nextID);
|
|
auto members = nominal->lookupDirect(memberName);
|
|
values.append(members.begin(), members.end());
|
|
}
|
|
}
|
|
}
|
|
|
|
// If we have a type to validate against, filter out any ValueDecls that
|
|
// don't match that type.
|
|
CanType expectedTy;
|
|
if (kind == XRefKind::SwiftValue)
|
|
if (Type maybeExpectedTy = getType(expectedTypeID))
|
|
expectedTy = maybeExpectedTy->getCanonicalType();
|
|
|
|
ValueDecl *result = nullptr;
|
|
for (auto value : values) {
|
|
if (!value->hasClangNode() && value->getModuleContext() != M)
|
|
continue;
|
|
if (expectedTy &&
|
|
value->getInterfaceType()->getCanonicalType() != expectedTy)
|
|
continue;
|
|
|
|
if (!result || result == value) {
|
|
result = value;
|
|
continue;
|
|
}
|
|
|
|
// It's an error if more than one value has the same type.
|
|
// FIXME: Functions and constructors can overload based on parameter
|
|
// names.
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
// It's an error if lookup doesn't actually find anything -- that means
|
|
// the module's out of date.
|
|
if (!result) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
if (kind == XRefKind::SwiftGenericParameter) {
|
|
GenericParamList *paramList = nullptr;
|
|
|
|
if (auto nominal = dyn_cast<NominalTypeDecl>(result))
|
|
paramList = nominal->getGenericParams();
|
|
else if (auto fn = dyn_cast<FuncDecl>(result))
|
|
paramList = fn->getGenericParams();
|
|
else if (auto ctor = dyn_cast<ConstructorDecl>(result))
|
|
paramList = ctor->getGenericParams();
|
|
|
|
if (!paramList) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
if (expectedTypeID >= paramList->size()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
result = paramList->getParams()[expectedTypeID].getDecl();
|
|
assert(result);
|
|
}
|
|
|
|
declOrOffset = result;
|
|
break;
|
|
}
|
|
case XRefKind::SwiftOperator: {
|
|
assert(rawAccessPath.size() == 1 &&
|
|
"can't import operators not at module scope");
|
|
Identifier opName = getIdentifier(rawAccessPath.back());
|
|
|
|
switch (expectedTypeID) {
|
|
case OperatorKind::Infix: {
|
|
declOrOffset = M->lookupInfixOperator(opName);
|
|
break;
|
|
}
|
|
case OperatorKind::Prefix: {
|
|
declOrOffset = M->lookupPrefixOperator(opName);
|
|
break;
|
|
}
|
|
case OperatorKind::Postfix: {
|
|
declOrOffset = M->lookupPostfixOperator(opName);
|
|
break;
|
|
}
|
|
default:
|
|
// Unknown operator kind.
|
|
error();
|
|
return nullptr;
|
|
}
|
|
break;
|
|
}
|
|
default:
|
|
// Unknown cross-reference kind.
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
break;
|
|
}
|
|
|
|
default:
|
|
// We don't know how to deserialize this kind of decl.
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
if (DidRecord)
|
|
DidRecord(declOrOffset);
|
|
return declOrOffset;
|
|
}
|
|
|
|
/// Translate from the Serialization calling convention enum values to the AST
|
|
/// strongly-typed enum.
|
|
///
|
|
/// The former is guaranteed to be stable, but may not reflect this version of
|
|
/// the AST.
|
|
static Optional<swift::AbstractCC> getActualCC(uint8_t cc) {
|
|
switch (cc) {
|
|
#define CASE(THE_CC) \
|
|
case serialization::AbstractCC::THE_CC: \
|
|
return swift::AbstractCC::THE_CC;
|
|
CASE(C)
|
|
CASE(ObjCMethod)
|
|
CASE(Freestanding)
|
|
CASE(Method)
|
|
CASE(WitnessMethod)
|
|
#undef CASE
|
|
default:
|
|
return Nothing;
|
|
}
|
|
}
|
|
|
|
/// Translate from the serialization Ownership enumerators, which are
|
|
/// guaranteed to be stable, to the AST ones.
|
|
static
|
|
Optional<swift::Ownership> getActualOwnership(serialization::Ownership raw) {
|
|
switch (raw) {
|
|
case serialization::Ownership::Strong: return swift::Ownership::Strong;
|
|
case serialization::Ownership::Unowned: return swift::Ownership::Unowned;
|
|
case serialization::Ownership::Weak: return swift::Ownership::Weak;
|
|
}
|
|
return Nothing;
|
|
}
|
|
|
|
/// Translate from the serialization ParameterConvention enumerators,
|
|
/// which are guaranteed to be stable, to the AST ones.
|
|
static
|
|
Optional<swift::ParameterConvention> getActualParameterConvention(uint8_t raw) {
|
|
switch (serialization::ParameterConvention(raw)) {
|
|
#define CASE(ID) \
|
|
case serialization::ParameterConvention::ID: \
|
|
return swift::ParameterConvention::ID;
|
|
CASE(Indirect_In)
|
|
CASE(Indirect_Out)
|
|
CASE(Indirect_Inout)
|
|
CASE(Direct_Owned)
|
|
CASE(Direct_Unowned)
|
|
CASE(Direct_Guaranteed)
|
|
#undef CASE
|
|
}
|
|
return Nothing;
|
|
}
|
|
|
|
/// Translate from the serialization ResultConvention enumerators,
|
|
/// which are guaranteed to be stable, to the AST ones.
|
|
static
|
|
Optional<swift::ResultConvention> getActualResultConvention(uint8_t raw) {
|
|
switch (serialization::ResultConvention(raw)) {
|
|
#define CASE(ID) \
|
|
case serialization::ResultConvention::ID: return swift::ResultConvention::ID;
|
|
CASE(Owned)
|
|
CASE(Unowned)
|
|
CASE(Autoreleased)
|
|
#undef CASE
|
|
}
|
|
return Nothing;
|
|
}
|
|
|
|
Type ModuleFile::getType(TypeID TID) {
|
|
if (TID == 0)
|
|
return Type();
|
|
|
|
assert(TID <= Types.size() && "invalid decl ID");
|
|
auto &typeOrOffset = Types[TID-1];
|
|
|
|
if (typeOrOffset.isComplete())
|
|
return typeOrOffset;
|
|
|
|
BCOffsetRAII restoreOffset(DeclTypeCursor);
|
|
DeclTypeCursor.JumpToBit(typeOrOffset);
|
|
auto entry = DeclTypeCursor.advance();
|
|
|
|
if (entry.Kind != llvm::BitstreamEntry::Record) {
|
|
// We don't know how to serialize types represented by sub-blocks.
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
ASTContext &ctx = getContext();
|
|
|
|
SmallVector<uint64_t, 64> scratch;
|
|
StringRef blobData;
|
|
unsigned recordID = DeclTypeCursor.readRecord(entry.ID, scratch, &blobData);
|
|
|
|
switch (recordID) {
|
|
case decls_block::NAME_ALIAS_TYPE: {
|
|
DeclID underlyingID;
|
|
decls_block::NameAliasTypeLayout::readRecord(scratch, underlyingID);
|
|
auto alias = dyn_cast_or_null<TypeAliasDecl>(getDecl(underlyingID));
|
|
if (!alias) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
typeOrOffset = alias->getDeclaredType();
|
|
break;
|
|
}
|
|
|
|
case decls_block::NOMINAL_TYPE: {
|
|
DeclID declID;
|
|
TypeID parentID;
|
|
decls_block::NominalTypeLayout::readRecord(scratch, declID, parentID);
|
|
|
|
Type parentTy = getType(parentID);
|
|
|
|
// Record the type as soon as possible. Members of a nominal type often
|
|
// try to refer back to the type.
|
|
getDecl(declID, Nothing, makeStackLambda([&](Decl *D) {
|
|
// FIXME: Hack for "typedef struct CGRect CGRect". In the long run we need
|
|
// something less brittle that would also handle pointer typedefs and
|
|
// typedefs that just /happen/ to match a tagged name but don't actually
|
|
// point to the tagged type.
|
|
if (auto alias = dyn_cast<TypeAliasDecl>(D))
|
|
D = alias->getUnderlyingType()->getAnyNominal();
|
|
auto nominal = cast<NominalTypeDecl>(D);
|
|
typeOrOffset = NominalType::get(nominal, parentTy, ctx);
|
|
}));
|
|
|
|
assert(typeOrOffset.isComplete());
|
|
break;
|
|
}
|
|
|
|
case decls_block::PAREN_TYPE: {
|
|
TypeID underlyingID;
|
|
decls_block::ParenTypeLayout::readRecord(scratch, underlyingID);
|
|
typeOrOffset = ParenType::get(ctx, getType(underlyingID));
|
|
break;
|
|
}
|
|
|
|
case decls_block::TUPLE_TYPE: {
|
|
// The tuple record itself is empty. Read all trailing elements.
|
|
SmallVector<TupleTypeElt, 8> elements;
|
|
while (true) {
|
|
auto entry = DeclTypeCursor.advance(AF_DontPopBlockAtEnd);
|
|
if (entry.Kind != llvm::BitstreamEntry::Record)
|
|
break;
|
|
|
|
scratch.clear();
|
|
unsigned recordID = DeclTypeCursor.readRecord(entry.ID, scratch,
|
|
&blobData);
|
|
if (recordID != decls_block::TUPLE_TYPE_ELT)
|
|
break;
|
|
|
|
IdentifierID nameID;
|
|
TypeID typeID;
|
|
uint8_t rawDefArg;
|
|
bool isVararg;
|
|
decls_block::TupleTypeEltLayout::readRecord(scratch, nameID, typeID,
|
|
rawDefArg, isVararg);
|
|
|
|
DefaultArgumentKind defArg = DefaultArgumentKind::None;
|
|
if (auto actualDefArg = getActualDefaultArgKind(rawDefArg))
|
|
defArg = *actualDefArg;
|
|
elements.push_back({getType(typeID), getIdentifier(nameID), defArg,
|
|
isVararg});
|
|
}
|
|
|
|
typeOrOffset = TupleType::get(elements, ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::FUNCTION_TYPE: {
|
|
TypeID inputID;
|
|
TypeID resultID;
|
|
uint8_t rawCallingConvention;
|
|
bool autoClosure;
|
|
bool thin;
|
|
bool noreturn;
|
|
bool blockCompatible;
|
|
|
|
decls_block::FunctionTypeLayout::readRecord(scratch, inputID, resultID,
|
|
rawCallingConvention,
|
|
autoClosure, thin,
|
|
noreturn,
|
|
blockCompatible);
|
|
auto callingConvention = getActualCC(rawCallingConvention);
|
|
if (!callingConvention.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
auto Info = FunctionType::ExtInfo(callingConvention.getValue(),
|
|
thin,
|
|
noreturn,
|
|
autoClosure,
|
|
blockCompatible);
|
|
|
|
typeOrOffset = FunctionType::get(getType(inputID), getType(resultID),
|
|
Info, ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::METATYPE_TYPE: {
|
|
TypeID instanceID;
|
|
decls_block::MetaTypeTypeLayout::readRecord(scratch, instanceID);
|
|
typeOrOffset = MetaTypeType::get(getType(instanceID), ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::LVALUE_TYPE: {
|
|
TypeID objectTypeID;
|
|
bool isImplicit, isNonSettable;
|
|
decls_block::LValueTypeLayout::readRecord(scratch, objectTypeID,
|
|
isImplicit, isNonSettable);
|
|
LValueType::Qual quals;
|
|
if (isImplicit)
|
|
quals |= LValueType::Qual::Implicit;
|
|
if (isNonSettable)
|
|
quals |= LValueType::Qual::NonSettable;
|
|
|
|
typeOrOffset = LValueType::get(getType(objectTypeID), quals, ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::REFERENCE_STORAGE_TYPE: {
|
|
uint8_t rawOwnership;
|
|
TypeID referentTypeID;
|
|
decls_block::ReferenceStorageTypeLayout::readRecord(scratch, rawOwnership,
|
|
referentTypeID);
|
|
|
|
auto ownership =
|
|
getActualOwnership((serialization::Ownership) rawOwnership);
|
|
if (!ownership.hasValue()) {
|
|
error();
|
|
break;
|
|
}
|
|
|
|
typeOrOffset = ReferenceStorageType::get(getType(referentTypeID),
|
|
ownership.getValue(), ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::ARCHETYPE_TYPE: {
|
|
IdentifierID nameID;
|
|
bool isPrimary;
|
|
TypeID parentOrIndex;
|
|
DeclID assocTypeOrProtoID;
|
|
TypeID superclassID;
|
|
ArrayRef<uint64_t> rawConformanceIDs;
|
|
|
|
decls_block::ArchetypeTypeLayout::readRecord(scratch, nameID, isPrimary,
|
|
parentOrIndex,
|
|
assocTypeOrProtoID,
|
|
superclassID,
|
|
rawConformanceIDs);
|
|
|
|
ArchetypeType *parent = nullptr;
|
|
Type superclass;
|
|
Optional<unsigned> index;
|
|
SmallVector<ProtocolDecl *, 4> conformances;
|
|
|
|
if (isPrimary)
|
|
index = parentOrIndex;
|
|
else
|
|
parent = getType(parentOrIndex)->castTo<ArchetypeType>();
|
|
|
|
ArchetypeType::AssocTypeOrProtocolType assocTypeOrProto;
|
|
auto assocTypeOrProtoDecl = getDecl(assocTypeOrProtoID);
|
|
if (auto assocType
|
|
= dyn_cast_or_null<AssociatedTypeDecl>(assocTypeOrProtoDecl))
|
|
assocTypeOrProto = assocType;
|
|
else
|
|
assocTypeOrProto = cast_or_null<ProtocolDecl>(assocTypeOrProtoDecl);
|
|
|
|
superclass = getType(superclassID);
|
|
|
|
for (DeclID protoID : rawConformanceIDs)
|
|
conformances.push_back(cast<ProtocolDecl>(getDecl(protoID)));
|
|
|
|
// See if we triggered deserialization through our conformances.
|
|
if (typeOrOffset.isComplete())
|
|
break;
|
|
|
|
auto archetype = ArchetypeType::getNew(ctx, parent, assocTypeOrProto,
|
|
getIdentifier(nameID), conformances,
|
|
superclass, index);
|
|
typeOrOffset = archetype;
|
|
|
|
auto entry = DeclTypeCursor.advance();
|
|
if (entry.Kind != llvm::BitstreamEntry::Record) {
|
|
error();
|
|
break;
|
|
}
|
|
|
|
scratch.clear();
|
|
unsigned kind = DeclTypeCursor.readRecord(entry.ID, scratch);
|
|
if (kind != decls_block::ARCHETYPE_NESTED_TYPE_NAMES) {
|
|
error();
|
|
break;
|
|
}
|
|
|
|
ArrayRef<uint64_t> rawNameIDs;
|
|
decls_block::ArchetypeNestedTypeNamesLayout::readRecord(scratch,
|
|
rawNameIDs);
|
|
|
|
entry = DeclTypeCursor.advance();
|
|
if (entry.Kind != llvm::BitstreamEntry::Record) {
|
|
error();
|
|
break;
|
|
}
|
|
|
|
SmallVector<uint64_t, 16> scratch2;
|
|
kind = DeclTypeCursor.readRecord(entry.ID, scratch2);
|
|
if (kind != decls_block::ARCHETYPE_NESTED_TYPES) {
|
|
error();
|
|
break;
|
|
}
|
|
|
|
ArrayRef<uint64_t> rawTypeIDs;
|
|
decls_block::ArchetypeNestedTypesLayout::readRecord(scratch2, rawTypeIDs);
|
|
|
|
SmallVector<std::pair<Identifier, ArchetypeType *>, 4> nestedTypes;
|
|
for_each(rawNameIDs, rawTypeIDs, [&](IdentifierID nameID, TypeID nestedID) {
|
|
auto nestedTy = getType(nestedID)->castTo<ArchetypeType>();
|
|
nestedTypes.push_back(std::make_pair(getIdentifier(nameID), nestedTy));
|
|
});
|
|
archetype->setNestedTypes(ctx, nestedTypes);
|
|
|
|
break;
|
|
}
|
|
|
|
case decls_block::GENERIC_TYPE_PARAM_TYPE: {
|
|
DeclID declIDOrDepth;
|
|
unsigned indexPlusOne;
|
|
|
|
decls_block::GenericTypeParamTypeLayout::readRecord(scratch, declIDOrDepth,
|
|
indexPlusOne);
|
|
|
|
if (indexPlusOne == 0) {
|
|
auto genericParam
|
|
= dyn_cast_or_null<GenericTypeParamDecl>(getDecl(declIDOrDepth));
|
|
|
|
if (!genericParam) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
// See if we triggered deserialization through our conformances.
|
|
if (typeOrOffset.isComplete())
|
|
break;
|
|
|
|
typeOrOffset = genericParam->getDeclaredType();
|
|
break;
|
|
}
|
|
|
|
typeOrOffset = GenericTypeParamType::get(declIDOrDepth,indexPlusOne-1,ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::ASSOCIATED_TYPE_TYPE: {
|
|
DeclID declID;
|
|
|
|
decls_block::AssociatedTypeTypeLayout::readRecord(scratch, declID);
|
|
|
|
auto assocType = dyn_cast_or_null<AssociatedTypeDecl>(getDecl(declID));
|
|
if (!assocType) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
// See if we triggered deserialization through our conformances.
|
|
if (typeOrOffset.isComplete())
|
|
break;
|
|
|
|
typeOrOffset = assocType->getDeclaredType();
|
|
break;
|
|
}
|
|
|
|
case decls_block::PROTOCOL_COMPOSITION_TYPE: {
|
|
ArrayRef<uint64_t> rawProtocolIDs;
|
|
|
|
decls_block::ProtocolCompositionTypeLayout::readRecord(scratch,
|
|
rawProtocolIDs);
|
|
SmallVector<Type, 4> protocols;
|
|
for (TypeID protoID : rawProtocolIDs)
|
|
protocols.push_back(getType(protoID));
|
|
|
|
typeOrOffset = ProtocolCompositionType::get(ctx, protocols);
|
|
break;
|
|
}
|
|
|
|
case decls_block::SUBSTITUTED_TYPE: {
|
|
TypeID originalID, replacementID;
|
|
|
|
decls_block::SubstitutedTypeLayout::readRecord(scratch, originalID,
|
|
replacementID);
|
|
typeOrOffset = SubstitutedType::get(getType(originalID),
|
|
getType(replacementID),
|
|
ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::DEPENDENT_MEMBER_TYPE: {
|
|
TypeID baseID;
|
|
DeclID assocTypeID;
|
|
|
|
decls_block::DependentMemberTypeLayout::readRecord(scratch, baseID,
|
|
assocTypeID);
|
|
typeOrOffset = DependentMemberType::get(
|
|
getType(baseID),
|
|
cast<AssociatedTypeDecl>(getDecl(assocTypeID)),
|
|
ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::BOUND_GENERIC_TYPE: {
|
|
DeclID declID;
|
|
TypeID parentID;
|
|
ArrayRef<uint64_t> rawArgumentIDs;
|
|
|
|
decls_block::BoundGenericTypeLayout::readRecord(scratch, declID, parentID,
|
|
rawArgumentIDs);
|
|
SmallVector<Type, 8> genericArgs;
|
|
for (TypeID type : rawArgumentIDs)
|
|
genericArgs.push_back(getType(type));
|
|
|
|
auto nominal = cast<NominalTypeDecl>(getDecl(declID));
|
|
auto parentTy = getType(parentID);
|
|
|
|
auto boundTy = BoundGenericType::get(nominal, parentTy, genericArgs);
|
|
typeOrOffset = boundTy;
|
|
break;
|
|
}
|
|
|
|
case decls_block::POLYMORPHIC_FUNCTION_TYPE: {
|
|
TypeID inputID;
|
|
TypeID resultID;
|
|
DeclID genericContextID;
|
|
uint8_t rawCallingConvention;
|
|
bool thin;
|
|
bool noreturn = false;
|
|
|
|
//todo add noreturn serialization.
|
|
decls_block::PolymorphicFunctionTypeLayout::readRecord(scratch,
|
|
inputID,
|
|
resultID,
|
|
genericContextID,
|
|
rawCallingConvention,
|
|
thin,
|
|
noreturn);
|
|
auto callingConvention = getActualCC(rawCallingConvention);
|
|
if (!callingConvention.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
GenericParamList *paramList =
|
|
maybeGetOrReadGenericParams(genericContextID, FileContext);
|
|
assert(paramList && "missing generic params for polymorphic function");
|
|
|
|
auto Info = PolymorphicFunctionType::ExtInfo(callingConvention.getValue(),
|
|
thin,
|
|
noreturn);
|
|
|
|
typeOrOffset = PolymorphicFunctionType::get(getType(inputID),
|
|
getType(resultID),
|
|
paramList,
|
|
Info,
|
|
ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::GENERIC_FUNCTION_TYPE: {
|
|
TypeID inputID;
|
|
TypeID resultID;
|
|
uint8_t rawCallingConvention;
|
|
bool thin;
|
|
bool noreturn = false;
|
|
ArrayRef<uint64_t> genericParamIDs;
|
|
|
|
//todo add noreturn serialization.
|
|
decls_block::GenericFunctionTypeLayout::readRecord(scratch,
|
|
inputID,
|
|
resultID,
|
|
rawCallingConvention,
|
|
thin,
|
|
noreturn,
|
|
genericParamIDs);
|
|
auto callingConvention = getActualCC(rawCallingConvention);
|
|
if (!callingConvention.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
// Read the generic parameters.
|
|
SmallVector<GenericTypeParamType *, 4> genericParams;
|
|
for (auto paramID : genericParamIDs) {
|
|
auto param = dyn_cast_or_null<GenericTypeParamType>(
|
|
getType(paramID).getPointer());
|
|
if (!param) {
|
|
error();
|
|
break;
|
|
}
|
|
|
|
genericParams.push_back(param);
|
|
}
|
|
|
|
// Read the generic requirements.
|
|
SmallVector<Requirement, 4> requirements;
|
|
readGenericRequirements(requirements);
|
|
auto info = GenericFunctionType::ExtInfo(callingConvention.getValue(),
|
|
thin,
|
|
noreturn);
|
|
|
|
typeOrOffset = GenericFunctionType::get(genericParams,
|
|
requirements,
|
|
getType(inputID),
|
|
getType(resultID),
|
|
info,
|
|
ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::SIL_FUNCTION_TYPE: {
|
|
TypeID resultID;
|
|
uint8_t rawResultConvention;
|
|
uint8_t rawCallingConvention;
|
|
uint8_t rawCalleeConvention;
|
|
bool thin;
|
|
bool noreturn = false;
|
|
DeclID genericContextID;
|
|
ArrayRef<uint64_t> paramIDs;
|
|
|
|
decls_block::SILFunctionTypeLayout::readRecord(scratch,
|
|
resultID,
|
|
rawResultConvention,
|
|
genericContextID,
|
|
rawCalleeConvention,
|
|
rawCallingConvention,
|
|
thin,
|
|
noreturn,
|
|
paramIDs);
|
|
|
|
// Process the ExtInfo.
|
|
auto callingConvention = getActualCC(rawCallingConvention);
|
|
if (!callingConvention.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
SILFunctionType::ExtInfo extInfo(callingConvention.getValue(),
|
|
thin, noreturn);
|
|
|
|
// Process the result.
|
|
auto resultConvention = getActualResultConvention(rawResultConvention);
|
|
if (!resultConvention.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
SILResultInfo result(getType(resultID)->getCanonicalType(),
|
|
resultConvention.getValue());
|
|
|
|
// Process the parameters.
|
|
if (paramIDs.size() & 1) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
SmallVector<SILParameterInfo, 8> params;
|
|
params.reserve(paramIDs.size() / 2);
|
|
for (size_t i = 0, e = paramIDs.size(); i != e; i += 2) {
|
|
auto type = getType(paramIDs[i])->getCanonicalType();
|
|
auto convention = getActualParameterConvention(paramIDs[i+1]);
|
|
if (!convention.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
SILParameterInfo param(type, convention.getValue());
|
|
params.push_back(param);
|
|
}
|
|
|
|
// Process the callee convention.
|
|
auto calleeConvention = getActualParameterConvention(rawCalleeConvention);
|
|
if (!calleeConvention.hasValue()) {
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
// Read the generic parameters.
|
|
auto genericParams =
|
|
maybeGetOrReadGenericParams(genericContextID, FileContext);
|
|
|
|
typeOrOffset = SILFunctionType::get(genericParams, extInfo,
|
|
calleeConvention.getValue(),
|
|
params, result, ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::ARRAY_SLICE_TYPE: {
|
|
TypeID baseID;
|
|
decls_block::ArraySliceTypeLayout::readRecord(scratch, baseID);
|
|
|
|
auto sliceTy = ArraySliceType::get(getType(baseID), ctx);
|
|
typeOrOffset = sliceTy;
|
|
break;
|
|
}
|
|
|
|
case decls_block::OPTIONAL_TYPE: {
|
|
TypeID baseID;
|
|
decls_block::OptionalTypeLayout::readRecord(scratch, baseID);
|
|
|
|
auto optionalTy = OptionalType::get(getType(baseID), ctx);
|
|
typeOrOffset = optionalTy;
|
|
break;
|
|
}
|
|
|
|
case decls_block::ARRAY_TYPE: {
|
|
TypeID baseID;
|
|
uint64_t size;
|
|
decls_block::ArrayTypeLayout::readRecord(scratch, baseID, size);
|
|
|
|
typeOrOffset = ArrayType::get(getType(baseID), size, ctx);
|
|
break;
|
|
}
|
|
|
|
case decls_block::UNBOUND_GENERIC_TYPE: {
|
|
DeclID genericID;
|
|
TypeID parentID;
|
|
decls_block::UnboundGenericTypeLayout::readRecord(scratch,
|
|
genericID, parentID);
|
|
|
|
auto genericDecl = cast<NominalTypeDecl>(getDecl(genericID));
|
|
typeOrOffset = UnboundGenericType::get(genericDecl, getType(parentID), ctx);
|
|
break;
|
|
}
|
|
|
|
default:
|
|
// We don't know how to deserialize this kind of type.
|
|
error();
|
|
return nullptr;
|
|
}
|
|
|
|
return typeOrOffset;
|
|
}
|