510 lines
18 KiB
C++
510 lines
18 KiB
C++
//===- Tokens.cpp - collect tokens from preprocessing ---------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Tooling/Syntax/Tokens.h"
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#include "clang/Basic/Diagnostic.h"
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#include "clang/Basic/IdentifierTable.h"
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#include "clang/Basic/LLVM.h"
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#include "clang/Basic/LangOptions.h"
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#include "clang/Basic/SourceLocation.h"
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#include "clang/Basic/SourceManager.h"
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#include "clang/Basic/TokenKinds.h"
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#include "clang/Lex/Preprocessor.h"
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#include "clang/Lex/Token.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/ADT/None.h"
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#include "llvm/ADT/Optional.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/ErrorHandling.h"
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#include "llvm/Support/FormatVariadic.h"
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#include "llvm/Support/raw_ostream.h"
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#include <algorithm>
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#include <cassert>
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#include <iterator>
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#include <string>
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#include <utility>
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#include <vector>
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using namespace clang;
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using namespace clang::syntax;
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syntax::Token::Token(const clang::Token &T)
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: Token(T.getLocation(), T.getLength(), T.getKind()) {
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assert(!T.isAnnotation());
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}
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llvm::StringRef syntax::Token::text(const SourceManager &SM) const {
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bool Invalid = false;
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const char *Start = SM.getCharacterData(location(), &Invalid);
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assert(!Invalid);
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return llvm::StringRef(Start, length());
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}
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FileRange syntax::Token::range(const SourceManager &SM) const {
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assert(location().isFileID() && "must be a spelled token");
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FileID File;
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unsigned StartOffset;
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std::tie(File, StartOffset) = SM.getDecomposedLoc(location());
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return FileRange(File, StartOffset, StartOffset + length());
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}
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FileRange syntax::Token::range(const SourceManager &SM,
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const syntax::Token &First,
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const syntax::Token &Last) {
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auto F = First.range(SM);
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auto L = Last.range(SM);
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assert(F.file() == L.file() && "tokens from different files");
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assert(F.endOffset() <= L.beginOffset() && "wrong order of tokens");
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return FileRange(F.file(), F.beginOffset(), L.endOffset());
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}
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llvm::raw_ostream &syntax::operator<<(llvm::raw_ostream &OS, const Token &T) {
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return OS << T.str();
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}
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FileRange::FileRange(FileID File, unsigned BeginOffset, unsigned EndOffset)
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: File(File), Begin(BeginOffset), End(EndOffset) {
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assert(File.isValid());
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assert(BeginOffset <= EndOffset);
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}
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FileRange::FileRange(const SourceManager &SM, SourceLocation BeginLoc,
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unsigned Length) {
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assert(BeginLoc.isValid());
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assert(BeginLoc.isFileID());
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std::tie(File, Begin) = SM.getDecomposedLoc(BeginLoc);
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End = Begin + Length;
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}
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FileRange::FileRange(const SourceManager &SM, SourceLocation BeginLoc,
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SourceLocation EndLoc) {
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assert(BeginLoc.isValid());
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assert(BeginLoc.isFileID());
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assert(EndLoc.isValid());
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assert(EndLoc.isFileID());
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assert(SM.getFileID(BeginLoc) == SM.getFileID(EndLoc));
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assert(SM.getFileOffset(BeginLoc) <= SM.getFileOffset(EndLoc));
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std::tie(File, Begin) = SM.getDecomposedLoc(BeginLoc);
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End = SM.getFileOffset(EndLoc);
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}
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llvm::raw_ostream &syntax::operator<<(llvm::raw_ostream &OS,
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const FileRange &R) {
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return OS << llvm::formatv("FileRange(file = {0}, offsets = {1}-{2})",
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R.file().getHashValue(), R.beginOffset(),
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R.endOffset());
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}
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llvm::StringRef FileRange::text(const SourceManager &SM) const {
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bool Invalid = false;
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StringRef Text = SM.getBufferData(File, &Invalid);
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if (Invalid)
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return "";
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assert(Begin <= Text.size());
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assert(End <= Text.size());
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return Text.substr(Begin, length());
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}
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std::pair<const syntax::Token *, const TokenBuffer::Mapping *>
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TokenBuffer::spelledForExpandedToken(const syntax::Token *Expanded) const {
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assert(Expanded);
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assert(ExpandedTokens.data() <= Expanded &&
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Expanded < ExpandedTokens.data() + ExpandedTokens.size());
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auto FileIt = Files.find(
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SourceMgr->getFileID(SourceMgr->getExpansionLoc(Expanded->location())));
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assert(FileIt != Files.end() && "no file for an expanded token");
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const MarkedFile &File = FileIt->second;
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unsigned ExpandedIndex = Expanded - ExpandedTokens.data();
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// Find the first mapping that produced tokens after \p Expanded.
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auto It = llvm::bsearch(File.Mappings, [&](const Mapping &M) {
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return ExpandedIndex < M.BeginExpanded;
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});
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// Our token could only be produced by the previous mapping.
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if (It == File.Mappings.begin()) {
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// No previous mapping, no need to modify offsets.
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return {&File.SpelledTokens[ExpandedIndex - File.BeginExpanded], nullptr};
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}
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--It; // 'It' now points to last mapping that started before our token.
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// Check if the token is part of the mapping.
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if (ExpandedIndex < It->EndExpanded)
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return {&File.SpelledTokens[It->BeginSpelled], /*Mapping*/ &*It};
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// Not part of the mapping, use the index from previous mapping to compute the
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// corresponding spelled token.
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return {
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&File.SpelledTokens[It->EndSpelled + (ExpandedIndex - It->EndExpanded)],
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/*Mapping*/ nullptr};
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}
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llvm::ArrayRef<syntax::Token> TokenBuffer::spelledTokens(FileID FID) const {
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auto It = Files.find(FID);
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assert(It != Files.end());
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return It->second.SpelledTokens;
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}
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std::string TokenBuffer::Mapping::str() const {
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return llvm::formatv("spelled tokens: [{0},{1}), expanded tokens: [{2},{3})",
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BeginSpelled, EndSpelled, BeginExpanded, EndExpanded);
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}
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llvm::Optional<llvm::ArrayRef<syntax::Token>>
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TokenBuffer::spelledForExpanded(llvm::ArrayRef<syntax::Token> Expanded) const {
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// Mapping an empty range is ambiguous in case of empty mappings at either end
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// of the range, bail out in that case.
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if (Expanded.empty())
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return llvm::None;
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// FIXME: also allow changes uniquely mapping to macro arguments.
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const syntax::Token *BeginSpelled;
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const Mapping *BeginMapping;
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std::tie(BeginSpelled, BeginMapping) =
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spelledForExpandedToken(&Expanded.front());
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const syntax::Token *LastSpelled;
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const Mapping *LastMapping;
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std::tie(LastSpelled, LastMapping) =
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spelledForExpandedToken(&Expanded.back());
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FileID FID = SourceMgr->getFileID(BeginSpelled->location());
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// FIXME: Handle multi-file changes by trying to map onto a common root.
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if (FID != SourceMgr->getFileID(LastSpelled->location()))
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return llvm::None;
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const MarkedFile &File = Files.find(FID)->second;
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// Do not allow changes that cross macro expansion boundaries.
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unsigned BeginExpanded = Expanded.begin() - ExpandedTokens.data();
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unsigned EndExpanded = Expanded.end() - ExpandedTokens.data();
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if (BeginMapping && BeginMapping->BeginExpanded < BeginExpanded)
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return llvm::None;
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if (LastMapping && EndExpanded < LastMapping->EndExpanded)
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return llvm::None;
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// All is good, return the result.
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return llvm::makeArrayRef(
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BeginMapping ? File.SpelledTokens.data() + BeginMapping->BeginSpelled
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: BeginSpelled,
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LastMapping ? File.SpelledTokens.data() + LastMapping->EndSpelled
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: LastSpelled + 1);
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}
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std::vector<syntax::Token> syntax::tokenize(FileID FID, const SourceManager &SM,
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const LangOptions &LO) {
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std::vector<syntax::Token> Tokens;
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IdentifierTable Identifiers(LO);
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auto AddToken = [&](clang::Token T) {
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// Fill the proper token kind for keywords, etc.
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if (T.getKind() == tok::raw_identifier && !T.needsCleaning() &&
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!T.hasUCN()) { // FIXME: support needsCleaning and hasUCN cases.
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clang::IdentifierInfo &II = Identifiers.get(T.getRawIdentifier());
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T.setIdentifierInfo(&II);
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T.setKind(II.getTokenID());
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}
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Tokens.push_back(syntax::Token(T));
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};
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Lexer L(FID, SM.getBuffer(FID), SM, LO);
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clang::Token T;
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while (!L.LexFromRawLexer(T))
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AddToken(T);
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// 'eof' is only the last token if the input is null-terminated. Never store
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// it, for consistency.
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if (T.getKind() != tok::eof)
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AddToken(T);
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return Tokens;
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}
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/// Fills in the TokenBuffer by tracing the run of a preprocessor. The
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/// implementation tracks the tokens, macro expansions and directives coming
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/// from the preprocessor and:
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/// - for each token, figures out if it is a part of an expanded token stream,
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/// spelled token stream or both. Stores the tokens appropriately.
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/// - records mappings from the spelled to expanded token ranges, e.g. for macro
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/// expansions.
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/// FIXME: also properly record:
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/// - #include directives,
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/// - #pragma, #line and other PP directives,
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/// - skipped pp regions,
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/// - ...
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TokenCollector::TokenCollector(Preprocessor &PP) : PP(PP) {
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// Collect the expanded token stream during preprocessing.
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PP.setTokenWatcher([this](const clang::Token &T) {
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if (T.isAnnotation())
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return;
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DEBUG_WITH_TYPE("collect-tokens", llvm::dbgs()
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<< "Token: "
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<< syntax::Token(T).dumpForTests(
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this->PP.getSourceManager())
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<< "\n"
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);
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Expanded.push_back(syntax::Token(T));
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});
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}
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/// Builds mappings and spelled tokens in the TokenBuffer based on the expanded
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/// token stream.
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class TokenCollector::Builder {
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public:
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Builder(std::vector<syntax::Token> Expanded, const SourceManager &SM,
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const LangOptions &LangOpts)
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: Result(SM), SM(SM), LangOpts(LangOpts) {
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Result.ExpandedTokens = std::move(Expanded);
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}
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TokenBuffer build() && {
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buildSpelledTokens();
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// Walk over expanded tokens and spelled tokens in parallel, building the
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// mappings between those using source locations.
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// The 'eof' token is special, it is not part of spelled token stream. We
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// handle it separately at the end.
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assert(!Result.ExpandedTokens.empty());
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assert(Result.ExpandedTokens.back().kind() == tok::eof);
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for (unsigned I = 0; I < Result.ExpandedTokens.size() - 1; ++I) {
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// (!) I might be updated by the following call.
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processExpandedToken(I);
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}
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// 'eof' not handled in the loop, do it here.
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assert(SM.getMainFileID() ==
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SM.getFileID(Result.ExpandedTokens.back().location()));
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fillGapUntil(Result.Files[SM.getMainFileID()],
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Result.ExpandedTokens.back().location(),
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Result.ExpandedTokens.size() - 1);
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Result.Files[SM.getMainFileID()].EndExpanded = Result.ExpandedTokens.size();
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// Some files might have unaccounted spelled tokens at the end, add an empty
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// mapping for those as they did not have expanded counterparts.
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fillGapsAtEndOfFiles();
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return std::move(Result);
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}
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private:
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/// Process the next token in an expanded stream and move corresponding
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/// spelled tokens, record any mapping if needed.
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/// (!) \p I will be updated if this had to skip tokens, e.g. for macros.
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void processExpandedToken(unsigned &I) {
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auto L = Result.ExpandedTokens[I].location();
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if (L.isMacroID()) {
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processMacroExpansion(SM.getExpansionRange(L), I);
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return;
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}
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if (L.isFileID()) {
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auto FID = SM.getFileID(L);
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TokenBuffer::MarkedFile &File = Result.Files[FID];
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fillGapUntil(File, L, I);
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// Skip the token.
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assert(File.SpelledTokens[NextSpelled[FID]].location() == L &&
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"no corresponding token in the spelled stream");
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++NextSpelled[FID];
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return;
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}
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}
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/// Skipped expanded and spelled tokens of a macro expansion that covers \p
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/// SpelledRange. Add a corresponding mapping.
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/// (!) \p I will be the index of the last token in an expansion after this
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/// function returns.
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void processMacroExpansion(CharSourceRange SpelledRange, unsigned &I) {
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auto FID = SM.getFileID(SpelledRange.getBegin());
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assert(FID == SM.getFileID(SpelledRange.getEnd()));
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TokenBuffer::MarkedFile &File = Result.Files[FID];
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fillGapUntil(File, SpelledRange.getBegin(), I);
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TokenBuffer::Mapping M;
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// Skip the spelled macro tokens.
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std::tie(M.BeginSpelled, M.EndSpelled) =
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consumeSpelledUntil(File, SpelledRange.getEnd().getLocWithOffset(1));
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// Skip all expanded tokens from the same macro expansion.
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M.BeginExpanded = I;
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for (; I + 1 < Result.ExpandedTokens.size(); ++I) {
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auto NextL = Result.ExpandedTokens[I + 1].location();
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if (!NextL.isMacroID() ||
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SM.getExpansionLoc(NextL) != SpelledRange.getBegin())
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break;
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}
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M.EndExpanded = I + 1;
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// Add a resulting mapping.
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File.Mappings.push_back(M);
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}
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/// Initializes TokenBuffer::Files and fills spelled tokens and expanded
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/// ranges for each of the files.
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void buildSpelledTokens() {
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for (unsigned I = 0; I < Result.ExpandedTokens.size(); ++I) {
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auto FID =
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SM.getFileID(SM.getExpansionLoc(Result.ExpandedTokens[I].location()));
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auto It = Result.Files.try_emplace(FID);
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TokenBuffer::MarkedFile &File = It.first->second;
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File.EndExpanded = I + 1;
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if (!It.second)
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continue; // we have seen this file before.
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// This is the first time we see this file.
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File.BeginExpanded = I;
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File.SpelledTokens = tokenize(FID, SM, LangOpts);
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}
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}
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/// Consumed spelled tokens until location L is reached (token starting at L
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/// is not included). Returns the indicies of the consumed range.
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std::pair</*Begin*/ unsigned, /*End*/ unsigned>
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consumeSpelledUntil(TokenBuffer::MarkedFile &File, SourceLocation L) {
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assert(L.isFileID());
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FileID FID;
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unsigned Offset;
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std::tie(FID, Offset) = SM.getDecomposedLoc(L);
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// (!) we update the index in-place.
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unsigned &SpelledI = NextSpelled[FID];
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unsigned Before = SpelledI;
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for (; SpelledI < File.SpelledTokens.size() &&
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SM.getFileOffset(File.SpelledTokens[SpelledI].location()) < Offset;
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++SpelledI) {
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}
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return std::make_pair(Before, /*After*/ SpelledI);
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};
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/// Consumes spelled tokens until location \p L is reached and adds a mapping
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/// covering the consumed tokens. The mapping will point to an empty expanded
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/// range at position \p ExpandedIndex.
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void fillGapUntil(TokenBuffer::MarkedFile &File, SourceLocation L,
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unsigned ExpandedIndex) {
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unsigned BeginSpelledGap, EndSpelledGap;
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std::tie(BeginSpelledGap, EndSpelledGap) = consumeSpelledUntil(File, L);
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if (BeginSpelledGap == EndSpelledGap)
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return; // No gap.
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TokenBuffer::Mapping M;
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M.BeginSpelled = BeginSpelledGap;
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M.EndSpelled = EndSpelledGap;
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M.BeginExpanded = M.EndExpanded = ExpandedIndex;
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File.Mappings.push_back(M);
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};
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/// Adds empty mappings for unconsumed spelled tokens at the end of each file.
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void fillGapsAtEndOfFiles() {
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for (auto &F : Result.Files) {
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unsigned Next = NextSpelled[F.first];
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if (F.second.SpelledTokens.size() == Next)
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continue; // All spelled tokens are accounted for.
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// Record a mapping for the gap at the end of the spelled tokens.
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TokenBuffer::Mapping M;
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M.BeginSpelled = Next;
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M.EndSpelled = F.second.SpelledTokens.size();
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M.BeginExpanded = F.second.EndExpanded;
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M.EndExpanded = F.second.EndExpanded;
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F.second.Mappings.push_back(M);
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}
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}
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TokenBuffer Result;
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/// For each file, a position of the next spelled token we will consume.
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llvm::DenseMap<FileID, unsigned> NextSpelled;
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const SourceManager &SM;
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const LangOptions &LangOpts;
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};
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TokenBuffer TokenCollector::consume() && {
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PP.setTokenWatcher(nullptr);
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return Builder(std::move(Expanded), PP.getSourceManager(), PP.getLangOpts())
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.build();
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}
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std::string syntax::Token::str() const {
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return llvm::formatv("Token({0}, length = {1})", tok::getTokenName(kind()),
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length());
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}
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std::string syntax::Token::dumpForTests(const SourceManager &SM) const {
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return llvm::formatv("{0} {1}", tok::getTokenName(kind()), text(SM));
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}
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std::string TokenBuffer::dumpForTests() const {
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auto PrintToken = [this](const syntax::Token &T) -> std::string {
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if (T.kind() == tok::eof)
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return "<eof>";
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return T.text(*SourceMgr);
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};
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auto DumpTokens = [this, &PrintToken](llvm::raw_ostream &OS,
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llvm::ArrayRef<syntax::Token> Tokens) {
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if (Tokens.size() == 1) {
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assert(Tokens[0].kind() == tok::eof);
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OS << "<empty>";
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return;
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}
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OS << Tokens[0].text(*SourceMgr);
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for (unsigned I = 1; I < Tokens.size(); ++I) {
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if (Tokens[I].kind() == tok::eof)
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continue;
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OS << " " << PrintToken(Tokens[I]);
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}
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};
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std::string Dump;
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llvm::raw_string_ostream OS(Dump);
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OS << "expanded tokens:\n"
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<< " ";
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DumpTokens(OS, ExpandedTokens);
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OS << "\n";
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std::vector<FileID> Keys;
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for (auto F : Files)
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Keys.push_back(F.first);
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llvm::sort(Keys);
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|
|
for (FileID ID : Keys) {
|
|
const MarkedFile &File = Files.find(ID)->second;
|
|
auto *Entry = SourceMgr->getFileEntryForID(ID);
|
|
if (!Entry)
|
|
continue; // Skip builtin files.
|
|
OS << llvm::formatv("file '{0}'\n", Entry->getName())
|
|
<< " spelled tokens:\n"
|
|
<< " ";
|
|
DumpTokens(OS, File.SpelledTokens);
|
|
OS << "\n";
|
|
|
|
if (File.Mappings.empty()) {
|
|
OS << " no mappings.\n";
|
|
continue;
|
|
}
|
|
OS << " mappings:\n";
|
|
for (auto &M : File.Mappings) {
|
|
OS << llvm::formatv(
|
|
" ['{0}'_{1}, '{2}'_{3}) => ['{4}'_{5}, '{6}'_{7})\n",
|
|
PrintToken(File.SpelledTokens[M.BeginSpelled]), M.BeginSpelled,
|
|
M.EndSpelled == File.SpelledTokens.size()
|
|
? "<eof>"
|
|
: PrintToken(File.SpelledTokens[M.EndSpelled]),
|
|
M.EndSpelled, PrintToken(ExpandedTokens[M.BeginExpanded]),
|
|
M.BeginExpanded, PrintToken(ExpandedTokens[M.EndExpanded]),
|
|
M.EndExpanded);
|
|
}
|
|
}
|
|
return OS.str();
|
|
}
|