forked from OSchip/llvm-project
542 lines
19 KiB
C++
542 lines
19 KiB
C++
//===--- ARCMT.cpp - Migration to ARC mode --------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "Internals.h"
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#include "clang/Frontend/ASTUnit.h"
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#include "clang/Frontend/CompilerInstance.h"
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#include "clang/Frontend/Utils.h"
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#include "clang/AST/ASTConsumer.h"
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#include "clang/Rewrite/Rewriter.h"
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#include "clang/Sema/SemaDiagnostic.h"
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#include "clang/Basic/DiagnosticCategories.h"
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#include "clang/Lex/Preprocessor.h"
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#include "llvm/Support/MemoryBuffer.h"
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#include "llvm/ADT/Triple.h"
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using namespace clang;
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using namespace arcmt;
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using llvm::StringRef;
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bool CapturedDiagList::clearDiagnostic(llvm::ArrayRef<unsigned> IDs,
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SourceRange range) {
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if (range.isInvalid())
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return false;
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bool cleared = false;
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ListTy::iterator I = List.begin();
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while (I != List.end()) {
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FullSourceLoc diagLoc = I->getLocation();
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if ((IDs.empty() || // empty means clear all diagnostics in the range.
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std::find(IDs.begin(), IDs.end(), I->getID()) != IDs.end()) &&
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!diagLoc.isBeforeInTranslationUnitThan(range.getBegin()) &&
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(diagLoc == range.getEnd() ||
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diagLoc.isBeforeInTranslationUnitThan(range.getEnd()))) {
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cleared = true;
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ListTy::iterator eraseS = I++;
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while (I != List.end() && I->getLevel() == Diagnostic::Note)
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++I;
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// Clear the diagnostic and any notes following it.
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List.erase(eraseS, I);
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continue;
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}
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++I;
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}
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return cleared;
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}
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bool CapturedDiagList::hasDiagnostic(llvm::ArrayRef<unsigned> IDs,
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SourceRange range) const {
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if (range.isInvalid())
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return false;
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ListTy::const_iterator I = List.begin();
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while (I != List.end()) {
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FullSourceLoc diagLoc = I->getLocation();
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if ((IDs.empty() || // empty means any diagnostic in the range.
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std::find(IDs.begin(), IDs.end(), I->getID()) != IDs.end()) &&
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!diagLoc.isBeforeInTranslationUnitThan(range.getBegin()) &&
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(diagLoc == range.getEnd() ||
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diagLoc.isBeforeInTranslationUnitThan(range.getEnd()))) {
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return true;
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}
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++I;
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}
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return false;
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}
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void CapturedDiagList::reportDiagnostics(Diagnostic &Diags) const {
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for (ListTy::const_iterator I = List.begin(), E = List.end(); I != E; ++I)
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Diags.Report(*I);
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}
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bool CapturedDiagList::hasErrors() const {
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for (ListTy::const_iterator I = List.begin(), E = List.end(); I != E; ++I)
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if (I->getLevel() >= Diagnostic::Error)
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return true;
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return false;
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}
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namespace {
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class CaptureDiagnosticClient : public DiagnosticClient {
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Diagnostic &Diags;
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CapturedDiagList &CapturedDiags;
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public:
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CaptureDiagnosticClient(Diagnostic &diags,
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CapturedDiagList &capturedDiags)
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: Diags(diags), CapturedDiags(capturedDiags) { }
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virtual void HandleDiagnostic(Diagnostic::Level level,
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const DiagnosticInfo &Info) {
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if (arcmt::isARCDiagnostic(Info.getID(), Diags) ||
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level >= Diagnostic::Error || level == Diagnostic::Note) {
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CapturedDiags.push_back(StoredDiagnostic(level, Info));
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return;
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}
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// Non-ARC warnings are ignored.
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Diags.setLastDiagnosticIgnored();
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}
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};
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} // end anonymous namespace
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static inline llvm::StringRef SimulatorVersionDefineName() {
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return "__IPHONE_OS_VERSION_MIN_REQUIRED=";
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}
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/// \brief Parse the simulator version define:
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/// __IPHONE_OS_VERSION_MIN_REQUIRED=([0-9])([0-9][0-9])([0-9][0-9])
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// and return the grouped values as integers, e.g:
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// __IPHONE_OS_VERSION_MIN_REQUIRED=40201
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// will return Major=4, Minor=2, Micro=1.
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static bool GetVersionFromSimulatorDefine(llvm::StringRef define,
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unsigned &Major, unsigned &Minor,
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unsigned &Micro) {
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assert(define.startswith(SimulatorVersionDefineName()));
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llvm::StringRef name, version;
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llvm::tie(name, version) = define.split('=');
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if (version.empty())
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return false;
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std::string verstr = version.str();
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char *end;
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unsigned num = (unsigned) strtol(verstr.c_str(), &end, 10);
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if (*end != '\0')
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return false;
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Major = num / 10000;
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num = num % 10000;
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Minor = num / 100;
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Micro = num % 100;
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return true;
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}
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static bool HasARCRuntime(CompilerInvocation &origCI) {
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// This duplicates some functionality from Darwin::AddDeploymentTarget
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// but this function is well defined, so keep it decoupled from the driver
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// and avoid unrelated complications.
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for (unsigned i = 0, e = origCI.getPreprocessorOpts().Macros.size();
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i != e; ++i) {
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StringRef define = origCI.getPreprocessorOpts().Macros[i].first;
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bool isUndef = origCI.getPreprocessorOpts().Macros[i].second;
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if (isUndef)
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continue;
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if (!define.startswith(SimulatorVersionDefineName()))
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continue;
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unsigned Major, Minor, Micro;
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if (GetVersionFromSimulatorDefine(define, Major, Minor, Micro) &&
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Major < 10 && Minor < 100 && Micro < 100)
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return Major >= 5;
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}
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llvm::Triple triple(origCI.getTargetOpts().Triple);
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if (triple.getOS() == llvm::Triple::IOS)
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return triple.getOSMajorVersion() >= 5;
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if (triple.getOS() == llvm::Triple::Darwin)
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return triple.getOSMajorVersion() >= 11;
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if (triple.getOS() == llvm::Triple::MacOSX) {
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unsigned Major, Minor, Micro;
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triple.getOSVersion(Major, Minor, Micro);
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return Major > 10 || (Major == 10 && Minor >= 7);
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}
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return false;
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}
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CompilerInvocation *createInvocationForMigration(CompilerInvocation &origCI) {
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llvm::OwningPtr<CompilerInvocation> CInvok;
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CInvok.reset(new CompilerInvocation(origCI));
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CInvok->getPreprocessorOpts().ImplicitPCHInclude = std::string();
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CInvok->getPreprocessorOpts().ImplicitPTHInclude = std::string();
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std::string define = getARCMTMacroName();
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define += '=';
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CInvok->getPreprocessorOpts().addMacroDef(define);
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CInvok->getLangOpts().ObjCAutoRefCount = true;
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CInvok->getDiagnosticOpts().ErrorLimit = 0;
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CInvok->getDiagnosticOpts().Warnings.push_back(
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"error=arc-unsafe-retained-assign");
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CInvok->getLangOpts().ObjCRuntimeHasWeak = HasARCRuntime(origCI);
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return CInvok.take();
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}
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//===----------------------------------------------------------------------===//
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// checkForManualIssues.
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//===----------------------------------------------------------------------===//
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bool arcmt::checkForManualIssues(CompilerInvocation &origCI,
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llvm::StringRef Filename, InputKind Kind,
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DiagnosticClient *DiagClient) {
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if (!origCI.getLangOpts().ObjC1)
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return false;
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std::vector<TransformFn> transforms = arcmt::getAllTransformations();
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assert(!transforms.empty());
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llvm::OwningPtr<CompilerInvocation> CInvok;
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CInvok.reset(createInvocationForMigration(origCI));
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CInvok->getFrontendOpts().Inputs.clear();
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CInvok->getFrontendOpts().Inputs.push_back(std::make_pair(Kind, Filename));
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CapturedDiagList capturedDiags;
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assert(DiagClient);
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llvm::IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
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llvm::IntrusiveRefCntPtr<Diagnostic> Diags(
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new Diagnostic(DiagID, DiagClient, /*ShouldOwnClient=*/false));
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// Filter of all diagnostics.
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CaptureDiagnosticClient errRec(*Diags, capturedDiags);
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Diags->setClient(&errRec, /*ShouldOwnClient=*/false);
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llvm::OwningPtr<ASTUnit> Unit(
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ASTUnit::LoadFromCompilerInvocationAction(CInvok.take(), Diags));
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if (!Unit)
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return true;
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// Don't filter diagnostics anymore.
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Diags->setClient(DiagClient, /*ShouldOwnClient=*/false);
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ASTContext &Ctx = Unit->getASTContext();
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if (Diags->hasFatalErrorOccurred()) {
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Diags->Reset();
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DiagClient->BeginSourceFile(Ctx.getLangOptions(), &Unit->getPreprocessor());
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capturedDiags.reportDiagnostics(*Diags);
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DiagClient->EndSourceFile();
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return true;
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}
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// After parsing of source files ended, we want to reuse the
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// diagnostics objects to emit further diagnostics.
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// We call BeginSourceFile because DiagnosticClient requires that
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// diagnostics with source range information are emitted only in between
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// BeginSourceFile() and EndSourceFile().
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DiagClient->BeginSourceFile(Ctx.getLangOptions(), &Unit->getPreprocessor());
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// No macros will be added since we are just checking and we won't modify
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// source code.
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std::vector<SourceLocation> ARCMTMacroLocs;
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TransformActions testAct(*Diags, capturedDiags, Ctx, Unit->getPreprocessor());
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MigrationPass pass(Ctx, Unit->getSema(), testAct, ARCMTMacroLocs);
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for (unsigned i=0, e = transforms.size(); i != e; ++i)
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transforms[i](pass);
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capturedDiags.reportDiagnostics(*Diags);
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DiagClient->EndSourceFile();
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// If we are migrating code that gets the '-fobjc-arc' flag, make sure
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// to remove it so that we don't get errors from normal compilation.
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origCI.getLangOpts().ObjCAutoRefCount = false;
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return capturedDiags.hasErrors();
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}
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//===----------------------------------------------------------------------===//
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// applyTransformations.
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//===----------------------------------------------------------------------===//
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static bool applyTransforms(CompilerInvocation &origCI,
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llvm::StringRef Filename, InputKind Kind,
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DiagnosticClient *DiagClient,
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llvm::StringRef outputDir) {
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if (!origCI.getLangOpts().ObjC1)
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return false;
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// Make sure checking is successful first.
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CompilerInvocation CInvokForCheck(origCI);
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if (arcmt::checkForManualIssues(CInvokForCheck, Filename, Kind, DiagClient))
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return true;
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CompilerInvocation CInvok(origCI);
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CInvok.getFrontendOpts().Inputs.clear();
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CInvok.getFrontendOpts().Inputs.push_back(std::make_pair(Kind, Filename));
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MigrationProcess migration(CInvok, DiagClient, outputDir);
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std::vector<TransformFn> transforms = arcmt::getAllTransformations();
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assert(!transforms.empty());
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for (unsigned i=0, e = transforms.size(); i != e; ++i) {
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bool err = migration.applyTransform(transforms[i]);
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if (err) return true;
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}
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llvm::IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
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llvm::IntrusiveRefCntPtr<Diagnostic> Diags(
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new Diagnostic(DiagID, DiagClient, /*ShouldOwnClient=*/false));
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if (outputDir.empty()) {
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origCI.getLangOpts().ObjCAutoRefCount = true;
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return migration.getRemapper().overwriteOriginal(*Diags);
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} else {
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// If we are migrating code that gets the '-fobjc-arc' flag, make sure
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// to remove it so that we don't get errors from normal compilation.
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origCI.getLangOpts().ObjCAutoRefCount = false;
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return migration.getRemapper().flushToDisk(outputDir, *Diags);
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}
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}
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bool arcmt::applyTransformations(CompilerInvocation &origCI,
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llvm::StringRef Filename, InputKind Kind,
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DiagnosticClient *DiagClient) {
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return applyTransforms(origCI, Filename, Kind, DiagClient, llvm::StringRef());
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}
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bool arcmt::migrateWithTemporaryFiles(CompilerInvocation &origCI,
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llvm::StringRef Filename, InputKind Kind,
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DiagnosticClient *DiagClient,
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llvm::StringRef outputDir) {
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assert(!outputDir.empty() && "Expected output directory path");
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return applyTransforms(origCI, Filename, Kind, DiagClient, outputDir);
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}
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bool arcmt::getFileRemappings(std::vector<std::pair<std::string,std::string> > &
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remap,
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llvm::StringRef outputDir,
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DiagnosticClient *DiagClient) {
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assert(!outputDir.empty());
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llvm::IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
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llvm::IntrusiveRefCntPtr<Diagnostic> Diags(
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new Diagnostic(DiagID, DiagClient, /*ShouldOwnClient=*/false));
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FileRemapper remapper;
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bool err = remapper.initFromDisk(outputDir, *Diags,
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/*ignoreIfFilesChanged=*/true);
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if (err)
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return true;
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CompilerInvocation CI;
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remapper.applyMappings(CI);
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remap = CI.getPreprocessorOpts().RemappedFiles;
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return false;
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}
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//===----------------------------------------------------------------------===//
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// CollectTransformActions.
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//===----------------------------------------------------------------------===//
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namespace {
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class ARCMTMacroTrackerPPCallbacks : public PPCallbacks {
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std::vector<SourceLocation> &ARCMTMacroLocs;
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public:
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ARCMTMacroTrackerPPCallbacks(std::vector<SourceLocation> &ARCMTMacroLocs)
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: ARCMTMacroLocs(ARCMTMacroLocs) { }
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virtual void MacroExpands(const Token &MacroNameTok, const MacroInfo *MI) {
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if (MacroNameTok.getIdentifierInfo()->getName() == getARCMTMacroName())
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ARCMTMacroLocs.push_back(MacroNameTok.getLocation());
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}
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};
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class ARCMTMacroTrackerAction : public ASTFrontendAction {
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std::vector<SourceLocation> &ARCMTMacroLocs;
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public:
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ARCMTMacroTrackerAction(std::vector<SourceLocation> &ARCMTMacroLocs)
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: ARCMTMacroLocs(ARCMTMacroLocs) { }
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virtual ASTConsumer *CreateASTConsumer(CompilerInstance &CI,
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llvm::StringRef InFile) {
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CI.getPreprocessor().addPPCallbacks(
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new ARCMTMacroTrackerPPCallbacks(ARCMTMacroLocs));
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return new ASTConsumer();
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}
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};
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class RewritesApplicator : public TransformActions::RewriteReceiver {
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Rewriter &rewriter;
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ASTContext &Ctx;
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MigrationProcess::RewriteListener *Listener;
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public:
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RewritesApplicator(Rewriter &rewriter, ASTContext &ctx,
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MigrationProcess::RewriteListener *listener)
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: rewriter(rewriter), Ctx(ctx), Listener(listener) {
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if (Listener)
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Listener->start(ctx);
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}
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~RewritesApplicator() {
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if (Listener)
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Listener->finish();
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}
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virtual void insert(SourceLocation loc, llvm::StringRef text) {
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bool err = rewriter.InsertText(loc, text, /*InsertAfter=*/true,
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/*indentNewLines=*/true);
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if (!err && Listener)
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Listener->insert(loc, text);
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}
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virtual void remove(CharSourceRange range) {
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Rewriter::RewriteOptions removeOpts;
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removeOpts.IncludeInsertsAtBeginOfRange = false;
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removeOpts.IncludeInsertsAtEndOfRange = false;
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removeOpts.RemoveLineIfEmpty = true;
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bool err = rewriter.RemoveText(range, removeOpts);
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if (!err && Listener)
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Listener->remove(range);
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}
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virtual void increaseIndentation(CharSourceRange range,
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SourceLocation parentIndent) {
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rewriter.IncreaseIndentation(range, parentIndent);
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}
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};
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} // end anonymous namespace.
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/// \brief Anchor for VTable.
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MigrationProcess::RewriteListener::~RewriteListener() { }
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MigrationProcess::MigrationProcess(const CompilerInvocation &CI,
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DiagnosticClient *diagClient,
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llvm::StringRef outputDir)
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: OrigCI(CI), DiagClient(diagClient) {
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if (!outputDir.empty()) {
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llvm::IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
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llvm::IntrusiveRefCntPtr<Diagnostic> Diags(
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new Diagnostic(DiagID, DiagClient, /*ShouldOwnClient=*/false));
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Remapper.initFromDisk(outputDir, *Diags, /*ignoreIfFilesChanges=*/true);
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}
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}
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bool MigrationProcess::applyTransform(TransformFn trans,
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RewriteListener *listener) {
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llvm::OwningPtr<CompilerInvocation> CInvok;
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CInvok.reset(createInvocationForMigration(OrigCI));
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CInvok->getDiagnosticOpts().IgnoreWarnings = true;
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Remapper.applyMappings(*CInvok);
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CapturedDiagList capturedDiags;
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std::vector<SourceLocation> ARCMTMacroLocs;
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assert(DiagClient);
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llvm::IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
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llvm::IntrusiveRefCntPtr<Diagnostic> Diags(
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new Diagnostic(DiagID, DiagClient, /*ShouldOwnClient=*/false));
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// Filter of all diagnostics.
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CaptureDiagnosticClient errRec(*Diags, capturedDiags);
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Diags->setClient(&errRec, /*ShouldOwnClient=*/false);
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llvm::OwningPtr<ARCMTMacroTrackerAction> ASTAction;
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ASTAction.reset(new ARCMTMacroTrackerAction(ARCMTMacroLocs));
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llvm::OwningPtr<ASTUnit> Unit(
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ASTUnit::LoadFromCompilerInvocationAction(CInvok.take(), Diags,
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ASTAction.get()));
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if (!Unit)
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return true;
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Unit->setOwnsRemappedFileBuffers(false); // FileRemapper manages that.
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// Don't filter diagnostics anymore.
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Diags->setClient(DiagClient, /*ShouldOwnClient=*/false);
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ASTContext &Ctx = Unit->getASTContext();
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if (Diags->hasFatalErrorOccurred()) {
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Diags->Reset();
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DiagClient->BeginSourceFile(Ctx.getLangOptions(), &Unit->getPreprocessor());
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capturedDiags.reportDiagnostics(*Diags);
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DiagClient->EndSourceFile();
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return true;
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}
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// After parsing of source files ended, we want to reuse the
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// diagnostics objects to emit further diagnostics.
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// We call BeginSourceFile because DiagnosticClient requires that
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// diagnostics with source range information are emitted only in between
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// BeginSourceFile() and EndSourceFile().
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DiagClient->BeginSourceFile(Ctx.getLangOptions(), &Unit->getPreprocessor());
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Rewriter rewriter(Ctx.getSourceManager(), Ctx.getLangOptions());
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|
TransformActions TA(*Diags, capturedDiags, Ctx, Unit->getPreprocessor());
|
|
MigrationPass pass(Ctx, Unit->getSema(), TA, ARCMTMacroLocs);
|
|
|
|
trans(pass);
|
|
|
|
{
|
|
RewritesApplicator applicator(rewriter, Ctx, listener);
|
|
TA.applyRewrites(applicator);
|
|
}
|
|
|
|
DiagClient->EndSourceFile();
|
|
|
|
if (DiagClient->getNumErrors())
|
|
return true;
|
|
|
|
for (Rewriter::buffer_iterator
|
|
I = rewriter.buffer_begin(), E = rewriter.buffer_end(); I != E; ++I) {
|
|
FileID FID = I->first;
|
|
RewriteBuffer &buf = I->second;
|
|
const FileEntry *file = Ctx.getSourceManager().getFileEntryForID(FID);
|
|
assert(file);
|
|
std::string newFname = file->getName();
|
|
newFname += "-trans";
|
|
llvm::SmallString<512> newText;
|
|
llvm::raw_svector_ostream vecOS(newText);
|
|
buf.write(vecOS);
|
|
vecOS.flush();
|
|
llvm::MemoryBuffer *memBuf = llvm::MemoryBuffer::getMemBufferCopy(
|
|
llvm::StringRef(newText.data(), newText.size()), newFname);
|
|
llvm::SmallString<64> filePath(file->getName());
|
|
Unit->getFileManager().FixupRelativePath(filePath);
|
|
Remapper.remap(filePath.str(), memBuf);
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
//===----------------------------------------------------------------------===//
|
|
// isARCDiagnostic.
|
|
//===----------------------------------------------------------------------===//
|
|
|
|
bool arcmt::isARCDiagnostic(unsigned diagID, Diagnostic &Diag) {
|
|
return Diag.getDiagnosticIDs()->getCategoryNumberForDiag(diagID) ==
|
|
diag::DiagCat_Automatic_Reference_Counting_Issue;
|
|
}
|