| author | |
| committer | |
| log | d6467dcf71c40d4f09993f8c449b33adeca55ce5 |
| tree | cba752c3cba158e29f40e813693ebcbe8e4a8259 |
| parent | 21606339af2712d94bb3cfdcc9050287c5a2134c |
4 files changed, 105 insertions(+), 352 deletions(-)
src/zig_clang_cc1_main.cpp+9-6| ... | ... | @@ -203,6 +203,12 @@ int cc1_main(ArrayRef<const char *> Argv, const char *Argv0, void *MainAddr) { |
| 203 | 203 | IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts = new DiagnosticOptions(); |
| 204 | 204 | TextDiagnosticBuffer *DiagsBuffer = new TextDiagnosticBuffer; |
| 205 | 205 | DiagnosticsEngine Diags(DiagID, &*DiagOpts, DiagsBuffer); |
| 206 | ||
| 207 | // Setup round-trip remarks for the DiagnosticsEngine used in CreateFromArgs. | |
| 208 | if (find(Argv, StringRef("-Rround-trip-cc1-args")) != Argv.end()) | |
| 209 | Diags.setSeverity(diag::remark_cc1_round_trip_generated, | |
| 210 | diag::Severity::Remark, {}); | |
| 211 | ||
| 206 | 212 | bool Success = CompilerInvocation::CreateFromArgs(Clang->getInvocation(), |
| 207 | 213 | Argv, Diags, Argv0); |
| 208 | 214 | |
| ... | ... | @@ -248,12 +254,9 @@ int cc1_main(ArrayRef<const char *> Argv, const char *Argv0, void *MainAddr) { |
| 248 | 254 | if (llvm::timeTraceProfilerEnabled()) { |
| 249 | 255 | SmallString<128> Path(Clang->getFrontendOpts().OutputFile); |
| 250 | 256 | llvm::sys::path::replace_extension(Path, "json"); |
| 251 | if (auto profilerOutput = | |
| 252 | Clang->createOutputFile(Path.str(), | |
| 253 | /*Binary=*/false, | |
| 254 | /*RemoveFileOnSignal=*/false, | |
| 255 | /*useTemporary=*/false)) { | |
| 256 | ||
| 257 | if (auto profilerOutput = Clang->createOutputFile( | |
| 258 | Path.str(), /*Binary=*/false, /*RemoveFileOnSignal=*/false, | |
| 259 | /*useTemporary=*/false)) { | |
| 257 | 260 | llvm::timeTraceProfilerWrite(*profilerOutput); |
| 258 | 261 | // FIXME(ibiryukov): make profilerOutput flush in destructor instead. |
| 259 | 262 | profilerOutput->flush(); |
src/zig_clang_cc1as_main.cpp+34-27| ... | ... | @@ -91,6 +91,7 @@ struct AssemblerInvocation { |
| 91 | 91 | unsigned SaveTemporaryLabels : 1; |
| 92 | 92 | unsigned GenDwarfForAssembly : 1; |
| 93 | 93 | unsigned RelaxELFRelocations : 1; |
| 94 | unsigned Dwarf64 : 1; | |
| 94 | 95 | unsigned DwarfVersion; |
| 95 | 96 | std::string DwarfDebugFlags; |
| 96 | 97 | std::string DwarfDebugProducer; |
| ... | ... | @@ -160,6 +161,7 @@ public: |
| 160 | 161 | FatalWarnings = 0; |
| 161 | 162 | NoWarn = 0; |
| 162 | 163 | IncrementalLinkerCompatible = 0; |
| 164 | Dwarf64 = 0; | |
| 163 | 165 | DwarfVersion = 0; |
| 164 | 166 | EmbedBitcode = 0; |
| 165 | 167 | } |
| ... | ... | @@ -231,13 +233,16 @@ bool AssemblerInvocation::CreateFromArgs(AssemblerInvocation &Opts, |
| 231 | 233 | } |
| 232 | 234 | |
| 233 | 235 | Opts.RelaxELFRelocations = Args.hasArg(OPT_mrelax_relocations); |
| 236 | if (auto *DwarfFormatArg = Args.getLastArg(OPT_gdwarf64, OPT_gdwarf32)) | |
| 237 | Opts.Dwarf64 = DwarfFormatArg->getOption().matches(OPT_gdwarf64); | |
| 234 | 238 | Opts.DwarfVersion = getLastArgIntValue(Args, OPT_dwarf_version_EQ, 2, Diags); |
| 235 | 239 | Opts.DwarfDebugFlags = |
| 236 | 240 | std::string(Args.getLastArgValue(OPT_dwarf_debug_flags)); |
| 237 | 241 | Opts.DwarfDebugProducer = |
| 238 | 242 | std::string(Args.getLastArgValue(OPT_dwarf_debug_producer)); |
| 239 | Opts.DebugCompilationDir = | |
| 240 | std::string(Args.getLastArgValue(OPT_fdebug_compilation_dir)); | |
| 243 | if (const Arg *A = Args.getLastArg(options::OPT_ffile_compilation_dir_EQ, | |
| 244 | options::OPT_fdebug_compilation_dir_EQ)) | |
| 245 | Opts.DebugCompilationDir = A->getValue(); | |
| 241 | 246 | Opts.MainFileName = std::string(Args.getLastArgValue(OPT_main_file_name)); |
| 242 | 247 | |
| 243 | 248 | for (const auto &Arg : Args.getAllArgValues(OPT_fdebug_prefix_map_EQ)) { |
| ... | ... | @@ -319,7 +324,7 @@ getOutputStream(StringRef Path, DiagnosticsEngine &Diags, bool Binary) { |
| 319 | 324 | |
| 320 | 325 | std::error_code EC; |
| 321 | 326 | auto Out = std::make_unique<raw_fd_ostream>( |
| 322 | Path, EC, (Binary ? sys::fs::OF_None : sys::fs::OF_Text)); | |
| 327 | Path, EC, (Binary ? sys::fs::OF_None : sys::fs::OF_TextWithCRLF)); | |
| 323 | 328 | if (EC) { |
| 324 | 329 | Diags.Report(diag::err_fe_unable_to_open_output) << Path << EC.message(); |
| 325 | 330 | return nullptr; |
| ... | ... | @@ -328,8 +333,8 @@ getOutputStream(StringRef Path, DiagnosticsEngine &Diags, bool Binary) { |
| 328 | 333 | return Out; |
| 329 | 334 | } |
| 330 | 335 | |
| 331 | static bool ExecuteAssembler(AssemblerInvocation &Opts, | |
| 332 | DiagnosticsEngine &Diags) { | |
| 336 | static bool ExecuteAssemblerImpl(AssemblerInvocation &Opts, | |
| 337 | DiagnosticsEngine &Diags) { | |
| 333 | 338 | // Get the target specific parser. |
| 334 | 339 | std::string Error; |
| 335 | 340 | const Target *TheTarget = TargetRegistry::lookupTarget(Opts.Triple, Error); |
| ... | ... | @@ -337,7 +342,7 @@ static bool ExecuteAssembler(AssemblerInvocation &Opts, |
| 337 | 342 | return Diags.Report(diag::err_target_unknown_triple) << Opts.Triple; |
| 338 | 343 | |
| 339 | 344 | ErrorOr<std::unique_ptr<MemoryBuffer>> Buffer = |
| 340 | MemoryBuffer::getFileOrSTDIN(Opts.InputFile); | |
| 345 | MemoryBuffer::getFileOrSTDIN(Opts.InputFile, /*IsText=*/true); | |
| 341 | 346 | |
| 342 | 347 | if (std::error_code EC = Buffer.getError()) { |
| 343 | 348 | Error = EC.message(); |
| ... | ... | @@ -378,11 +383,15 @@ static bool ExecuteAssembler(AssemblerInvocation &Opts, |
| 378 | 383 | if (!Opts.SplitDwarfOutput.empty()) |
| 379 | 384 | DwoOS = getOutputStream(Opts.SplitDwarfOutput, Diags, IsBinary); |
| 380 | 385 | |
| 381 | // FIXME: This is not pretty. MCContext has a ptr to MCObjectFileInfo and | |
| 382 | // MCObjectFileInfo needs a MCContext reference in order to initialize itself. | |
| 383 | std::unique_ptr<MCObjectFileInfo> MOFI(new MCObjectFileInfo()); | |
| 386 | // Build up the feature string from the target feature list. | |
| 387 | std::string FS = llvm::join(Opts.Features, ","); | |
| 384 | 388 | |
| 385 | MCContext Ctx(MAI.get(), MRI.get(), MOFI.get(), &SrcMgr, &MCOptions); | |
| 389 | std::unique_ptr<MCSubtargetInfo> STI( | |
| 390 | TheTarget->createMCSubtargetInfo(Opts.Triple, Opts.CPU, FS)); | |
| 391 | assert(STI && "Unable to create subtarget info!"); | |
| 392 | ||
| 393 | MCContext Ctx(Triple(Opts.Triple), MAI.get(), MRI.get(), STI.get(), &SrcMgr, | |
| 394 | &MCOptions); | |
| 386 | 395 | |
| 387 | 396 | bool PIC = false; |
| 388 | 397 | if (Opts.RelocationModel == "static") { |
| ... | ... | @@ -395,7 +404,12 @@ static bool ExecuteAssembler(AssemblerInvocation &Opts, |
| 395 | 404 | PIC = false; |
| 396 | 405 | } |
| 397 | 406 | |
| 398 | MOFI->InitMCObjectFileInfo(Triple(Opts.Triple), PIC, Ctx); | |
| 407 | // FIXME: This is not pretty. MCContext has a ptr to MCObjectFileInfo and | |
| 408 | // MCObjectFileInfo needs a MCContext reference in order to initialize itself. | |
| 409 | std::unique_ptr<MCObjectFileInfo> MOFI( | |
| 410 | TheTarget->createMCObjectFileInfo(Ctx, PIC)); | |
| 411 | Ctx.setObjectFileInfo(MOFI.get()); | |
| 412 | ||
| 399 | 413 | if (Opts.SaveTemporaryLabels) |
| 400 | 414 | Ctx.setAllowTemporaryLabels(false); |
| 401 | 415 | if (Opts.GenDwarfForAssembly) |
| ... | ... | @@ -417,23 +431,17 @@ static bool ExecuteAssembler(AssemblerInvocation &Opts, |
| 417 | 431 | Ctx.addDebugPrefixMapEntry(KV.first, KV.second); |
| 418 | 432 | if (!Opts.MainFileName.empty()) |
| 419 | 433 | Ctx.setMainFileName(StringRef(Opts.MainFileName)); |
| 434 | Ctx.setDwarfFormat(Opts.Dwarf64 ? dwarf::DWARF64 : dwarf::DWARF32); | |
| 420 | 435 | Ctx.setDwarfVersion(Opts.DwarfVersion); |
| 421 | 436 | if (Opts.GenDwarfForAssembly) |
| 422 | 437 | Ctx.setGenDwarfRootFile(Opts.InputFile, |
| 423 | 438 | SrcMgr.getMemoryBuffer(BufferIndex)->getBuffer()); |
| 424 | 439 | |
| 425 | // Build up the feature string from the target feature list. | |
| 426 | std::string FS = llvm::join(Opts.Features, ","); | |
| 427 | ||
| 428 | 440 | std::unique_ptr<MCStreamer> Str; |
| 429 | 441 | |
| 430 | 442 | std::unique_ptr<MCInstrInfo> MCII(TheTarget->createMCInstrInfo()); |
| 431 | 443 | assert(MCII && "Unable to create instruction info!"); |
| 432 | 444 | |
| 433 | std::unique_ptr<MCSubtargetInfo> STI( | |
| 434 | TheTarget->createMCSubtargetInfo(Opts.Triple, Opts.CPU, FS)); | |
| 435 | assert(STI && "Unable to create subtarget info!"); | |
| 436 | ||
| 437 | 445 | raw_pwrite_stream *Out = FDOS.get(); |
| 438 | 446 | std::unique_ptr<buffer_ostream> BOS; |
| 439 | 447 | |
| ... | ... | @@ -487,8 +495,7 @@ static bool ExecuteAssembler(AssemblerInvocation &Opts, |
| 487 | 495 | |
| 488 | 496 | // When -fembed-bitcode is passed to clang_as, a 1-byte marker |
| 489 | 497 | // is emitted in __LLVM,__asm section if the object file is MachO format. |
| 490 | if (Opts.EmbedBitcode && Ctx.getObjectFileInfo()->getObjectFileType() == | |
| 491 | MCObjectFileInfo::IsMachO) { | |
| 498 | if (Opts.EmbedBitcode && Ctx.getObjectFileType() == MCContext::IsMachO) { | |
| 492 | 499 | MCSection *AsmLabel = Ctx.getMachOSection( |
| 493 | 500 | "__LLVM", "__asm", MachO::S_REGULAR, 4, SectionKind::getReadOnly()); |
| 494 | 501 | Str.get()->SwitchSection(AsmLabel); |
| ... | ... | @@ -525,12 +532,12 @@ static bool ExecuteAssembler(AssemblerInvocation &Opts, |
| 525 | 532 | Failed = Parser->Run(Opts.NoInitialTextSection); |
| 526 | 533 | } |
| 527 | 534 | |
| 528 | // Parser has a reference to the output stream (Str), so close Parser first. | |
| 529 | Parser.reset(); | |
| 530 | Str.reset(); | |
| 531 | // Close the output stream early. | |
| 532 | BOS.reset(); | |
| 533 | FDOS.reset(); | |
| 535 | return Failed; | |
| 536 | } | |
| 537 | ||
| 538 | static bool ExecuteAssembler(AssemblerInvocation &Opts, | |
| 539 | DiagnosticsEngine &Diags) { | |
| 540 | bool Failed = ExecuteAssemblerImpl(Opts, Diags); | |
| 534 | 541 | |
| 535 | 542 | // Delete output file if there were errors. |
| 536 | 543 | if (Failed) { |
| ... | ... | @@ -578,7 +585,7 @@ int cc1as_main(ArrayRef<const char *> Argv, const char *Argv0, void *MainAddr) { |
| 578 | 585 | return 1; |
| 579 | 586 | |
| 580 | 587 | if (Asm.ShowHelp) { |
| 581 | getDriverOptTable().PrintHelp( | |
| 588 | getDriverOptTable().printHelp( | |
| 582 | 589 | llvm::outs(), "clang -cc1as [options] file...", |
| 583 | 590 | "Clang Integrated Assembler", |
| 584 | 591 | /*Include=*/driver::options::CC1AsOption, /*Exclude=*/0, |
src/zig_clang_driver.cpp+54-52| ... | ... | @@ -242,20 +242,28 @@ static void getCLEnvVarOptions(std::string &EnvValue, llvm::StringSaver &Saver, |
| 242 | 242 | } |
| 243 | 243 | |
| 244 | 244 | static void SetBackdoorDriverOutputsFromEnvVars(Driver &TheDriver) { |
| 245 | // Handle CC_PRINT_OPTIONS and CC_PRINT_OPTIONS_FILE. | |
| 246 | TheDriver.CCPrintOptions = !!::getenv("CC_PRINT_OPTIONS"); | |
| 247 | if (TheDriver.CCPrintOptions) | |
| 248 | TheDriver.CCPrintOptionsFilename = ::getenv("CC_PRINT_OPTIONS_FILE"); | |
| 249 | ||
| 250 | // Handle CC_PRINT_HEADERS and CC_PRINT_HEADERS_FILE. | |
| 251 | TheDriver.CCPrintHeaders = !!::getenv("CC_PRINT_HEADERS"); | |
| 252 | if (TheDriver.CCPrintHeaders) | |
| 253 | TheDriver.CCPrintHeadersFilename = ::getenv("CC_PRINT_HEADERS_FILE"); | |
| 254 | ||
| 255 | // Handle CC_LOG_DIAGNOSTICS and CC_LOG_DIAGNOSTICS_FILE. | |
| 256 | TheDriver.CCLogDiagnostics = !!::getenv("CC_LOG_DIAGNOSTICS"); | |
| 257 | if (TheDriver.CCLogDiagnostics) | |
| 258 | TheDriver.CCLogDiagnosticsFilename = ::getenv("CC_LOG_DIAGNOSTICS_FILE"); | |
| 245 | auto CheckEnvVar = [](const char *EnvOptSet, const char *EnvOptFile, | |
| 246 | std::string &OptFile) { | |
| 247 | bool OptSet = !!::getenv(EnvOptSet); | |
| 248 | if (OptSet) { | |
| 249 | if (const char *Var = ::getenv(EnvOptFile)) | |
| 250 | OptFile = Var; | |
| 251 | } | |
| 252 | return OptSet; | |
| 253 | }; | |
| 254 | ||
| 255 | TheDriver.CCPrintOptions = | |
| 256 | CheckEnvVar("CC_PRINT_OPTIONS", "CC_PRINT_OPTIONS_FILE", | |
| 257 | TheDriver.CCPrintOptionsFilename); | |
| 258 | TheDriver.CCPrintHeaders = | |
| 259 | CheckEnvVar("CC_PRINT_HEADERS", "CC_PRINT_HEADERS_FILE", | |
| 260 | TheDriver.CCPrintHeadersFilename); | |
| 261 | TheDriver.CCLogDiagnostics = | |
| 262 | CheckEnvVar("CC_LOG_DIAGNOSTICS", "CC_LOG_DIAGNOSTICS_FILE", | |
| 263 | TheDriver.CCLogDiagnosticsFilename); | |
| 264 | TheDriver.CCPrintProcessStats = | |
| 265 | CheckEnvVar("CC_PRINT_PROC_STAT", "CC_PRINT_PROC_STAT_FILE", | |
| 266 | TheDriver.CCPrintStatReportFilename); | |
| 259 | 267 | } |
| 260 | 268 | |
| 261 | 269 | static void FixupDiagPrefixExeName(TextDiagnosticPrinter *DiagClient, |
| ... | ... | @@ -263,7 +271,7 @@ static void FixupDiagPrefixExeName(TextDiagnosticPrinter *DiagClient, |
| 263 | 271 | // If the clang binary happens to be named cl.exe for compatibility reasons, |
| 264 | 272 | // use clang-cl.exe as the prefix to avoid confusion between clang and MSVC. |
| 265 | 273 | StringRef ExeBasename(llvm::sys::path::stem(Path)); |
| 266 | if (ExeBasename.equals_lower("cl")) | |
| 274 | if (ExeBasename.equals_insensitive("cl")) | |
| 267 | 275 | ExeBasename = "clang-cl"; |
| 268 | 276 | DiagClient->setPrefix(std::string(ExeBasename)); |
| 269 | 277 | } |
| ... | ... | @@ -335,56 +343,49 @@ static int ExecuteCC1Tool(SmallVectorImpl<const char *> &ArgV) { |
| 335 | 343 | return 1; |
| 336 | 344 | } |
| 337 | 345 | |
| 338 | extern "C" int ZigClang_main(int argc_, const char **argv_); | |
| 339 | int ZigClang_main(int argc_, const char **argv_) { | |
| 346 | extern "C" int ZigClang_main(int Argc, const char **Argv); | |
| 347 | int ZigClang_main(int Argc, const char **Argv) { | |
| 340 | 348 | noteBottomOfStack(); |
| 341 | ||
| 342 | // ZIG MOD: On windows, InitLLVM calls GetCommandLineW(), | |
| 349 | // ZIG PATCH: On Windows, InitLLVM calls GetCommandLineW(), | |
| 343 | 350 | // and overwrites the args. We don't want it to do that, |
| 344 | 351 | // and we also don't need the signal handlers it installs |
| 345 | 352 | // (we have our own already), so we just use llvm_shutdown_obj |
| 346 | 353 | // instead. |
| 347 | // llvm::InitLLVM X(argc_, argv_); | |
| 354 | // llvm::InitLLVM X(Argc, Argv); | |
| 348 | 355 | llvm::llvm_shutdown_obj X; |
| 349 | 356 | |
| 350 | 357 | llvm::setBugReportMsg("PLEASE submit a bug report to " BUG_REPORT_URL |
| 351 | 358 | " and include the crash backtrace, preprocessed " |
| 352 | 359 | "source, and associated run script.\n"); |
| 353 | size_t argv_offset = (strcmp(argv_[1], "-cc1") == 0 || strcmp(argv_[1], "-cc1as") == 0) ? 0 : 1; | |
| 354 | SmallVector<const char *, 256> argv(argv_ + argv_offset, argv_ + argc_); | |
| 360 | size_t argv_offset = (strcmp(Argv[1], "-cc1") == 0 || strcmp(Argv[1], "-cc1as") == 0) ? 0 : 1; | |
| 361 | SmallVector<const char *, 256> Args(Argv + argv_offset, Argv + Argc); | |
| 355 | 362 | |
| 356 | 363 | if (llvm::sys::Process::FixupStandardFileDescriptors()) |
| 357 | 364 | return 1; |
| 358 | 365 | |
| 359 | 366 | llvm::InitializeAllTargets(); |
| 360 | auto TargetAndMode = ToolChain::getTargetAndModeFromProgramName(argv[0]); | |
| 361 | 367 | |
| 362 | 368 | llvm::BumpPtrAllocator A; |
| 363 | 369 | llvm::StringSaver Saver(A); |
| 364 | 370 | |
| 365 | 371 | // Parse response files using the GNU syntax, unless we're in CL mode. There |
| 366 | // are two ways to put clang in CL compatibility mode: argv[0] is either | |
| 372 | // are two ways to put clang in CL compatibility mode: Args[0] is either | |
| 367 | 373 | // clang-cl or cl, or --driver-mode=cl is on the command line. The normal |
| 368 | 374 | // command line parsing can't happen until after response file parsing, so we |
| 369 | 375 | // have to manually search for a --driver-mode=cl argument the hard way. |
| 370 | 376 | // Finally, our -cc1 tools don't care which tokenization mode we use because |
| 371 | 377 | // response files written by clang will tokenize the same way in either mode. |
| 372 | bool ClangCLMode = false; | |
| 373 | if (StringRef(TargetAndMode.DriverMode).equals("--driver-mode=cl") || | |
| 374 | llvm::find_if(argv, [](const char *F) { | |
| 375 | return F && strcmp(F, "--driver-mode=cl") == 0; | |
| 376 | }) != argv.end()) { | |
| 377 | ClangCLMode = true; | |
| 378 | } | |
| 378 | bool ClangCLMode = | |
| 379 | IsClangCL(getDriverMode(Args[0], llvm::makeArrayRef(Args).slice(1))); | |
| 379 | 380 | enum { Default, POSIX, Windows } RSPQuoting = Default; |
| 380 | for (const char *F : argv) { | |
| 381 | for (const char *F : Args) { | |
| 381 | 382 | if (strcmp(F, "--rsp-quoting=posix") == 0) |
| 382 | 383 | RSPQuoting = POSIX; |
| 383 | 384 | else if (strcmp(F, "--rsp-quoting=windows") == 0) |
| 384 | 385 | RSPQuoting = Windows; |
| 385 | 386 | } |
| 386 | 387 | |
| 387 | // Determines whether we want nullptr markers in argv to indicate response | |
| 388 | // Determines whether we want nullptr markers in Args to indicate response | |
| 388 | 389 | // files end-of-lines. We only use this for the /LINK driver argument with |
| 389 | 390 | // clang-cl.exe on Windows. |
| 390 | 391 | bool MarkEOLs = ClangCLMode; |
| ... | ... | @@ -395,31 +396,31 @@ int ZigClang_main(int argc_, const char **argv_) { |
| 395 | 396 | else |
| 396 | 397 | Tokenizer = &llvm::cl::TokenizeGNUCommandLine; |
| 397 | 398 | |
| 398 | if (MarkEOLs && argv.size() > 1 && StringRef(argv[1]).startswith("-cc1")) | |
| 399 | if (MarkEOLs && Args.size() > 1 && StringRef(Args[1]).startswith("-cc1")) | |
| 399 | 400 | MarkEOLs = false; |
| 400 | llvm::cl::ExpandResponseFiles(Saver, Tokenizer, argv, MarkEOLs); | |
| 401 | llvm::cl::ExpandResponseFiles(Saver, Tokenizer, Args, MarkEOLs); | |
| 401 | 402 | |
| 402 | 403 | // Handle -cc1 integrated tools, even if -cc1 was expanded from a response |
| 403 | 404 | // file. |
| 404 | auto FirstArg = std::find_if(argv.begin() + 1, argv.end(), | |
| 405 | auto FirstArg = std::find_if(Args.begin() + 1, Args.end(), | |
| 405 | 406 | [](const char *A) { return A != nullptr; }); |
| 406 | if (FirstArg != argv.end() && StringRef(*FirstArg).startswith("-cc1")) { | |
| 407 | if (FirstArg != Args.end() && StringRef(*FirstArg).startswith("-cc1")) { | |
| 407 | 408 | // If -cc1 came from a response file, remove the EOL sentinels. |
| 408 | 409 | if (MarkEOLs) { |
| 409 | auto newEnd = std::remove(argv.begin(), argv.end(), nullptr); | |
| 410 | argv.resize(newEnd - argv.begin()); | |
| 410 | auto newEnd = std::remove(Args.begin(), Args.end(), nullptr); | |
| 411 | Args.resize(newEnd - Args.begin()); | |
| 411 | 412 | } |
| 412 | return ExecuteCC1Tool(argv); | |
| 413 | return ExecuteCC1Tool(Args); | |
| 413 | 414 | } |
| 414 | 415 | |
| 415 | 416 | // Handle options that need handling before the real command line parsing in |
| 416 | 417 | // Driver::BuildCompilation() |
| 417 | 418 | bool CanonicalPrefixes = true; |
| 418 | for (int i = 1, size = argv.size(); i < size; ++i) { | |
| 419 | for (int i = 1, size = Args.size(); i < size; ++i) { | |
| 419 | 420 | // Skip end-of-line response file markers |
| 420 | if (argv[i] == nullptr) | |
| 421 | if (Args[i] == nullptr) | |
| 421 | 422 | continue; |
| 422 | if (StringRef(argv[i]) == "-no-canonical-prefixes") { | |
| 423 | if (StringRef(Args[i]) == "-no-canonical-prefixes") { | |
| 423 | 424 | CanonicalPrefixes = false; |
| 424 | 425 | break; |
| 425 | 426 | } |
| ... | ... | @@ -435,7 +436,7 @@ int ZigClang_main(int argc_, const char **argv_) { |
| 435 | 436 | getCLEnvVarOptions(OptCL.getValue(), Saver, PrependedOpts); |
| 436 | 437 | |
| 437 | 438 | // Insert right after the program name to prepend to the argument list. |
| 438 | argv.insert(argv.begin() + 1, PrependedOpts.begin(), PrependedOpts.end()); | |
| 439 | Args.insert(Args.begin() + 1, PrependedOpts.begin(), PrependedOpts.end()); | |
| 439 | 440 | } |
| 440 | 441 | // Arguments in "_CL_" are appended. |
| 441 | 442 | llvm::Optional<std::string> Opt_CL_ = llvm::sys::Process::GetEnv("_CL_"); |
| ... | ... | @@ -444,7 +445,7 @@ int ZigClang_main(int argc_, const char **argv_) { |
| 444 | 445 | getCLEnvVarOptions(Opt_CL_.getValue(), Saver, AppendedOpts); |
| 445 | 446 | |
| 446 | 447 | // Insert at the end of the argument list to append. |
| 447 | argv.append(AppendedOpts.begin(), AppendedOpts.end()); | |
| 448 | Args.append(AppendedOpts.begin(), AppendedOpts.end()); | |
| 448 | 449 | } |
| 449 | 450 | } |
| 450 | 451 | |
| ... | ... | @@ -453,12 +454,12 @@ int ZigClang_main(int argc_, const char **argv_) { |
| 453 | 454 | // scenes. |
| 454 | 455 | if (const char *OverrideStr = ::getenv("CCC_OVERRIDE_OPTIONS")) { |
| 455 | 456 | // FIXME: Driver shouldn't take extra initial argument. |
| 456 | ApplyQAOverride(argv, OverrideStr, SavedStrings); | |
| 457 | ApplyQAOverride(Args, OverrideStr, SavedStrings); | |
| 457 | 458 | } |
| 458 | 459 | |
| 459 | // Pass local param `argv_[0]` as fallback. | |
| 460 | // Pass local param `Argv[0]` as fallback. | |
| 460 | 461 | // See https://github.com/ziglang/zig/pull/3292 . |
| 461 | std::string Path = GetExecutablePath(argv_[0], CanonicalPrefixes); | |
| 462 | std::string Path = GetExecutablePath(Argv[0], CanonicalPrefixes); | |
| 462 | 463 | |
| 463 | 464 | // Whether the cc1 tool should be called inside the current process, or if we |
| 464 | 465 | // should spawn a new clang subprocess (old behavior). |
| ... | ... | @@ -467,7 +468,7 @@ int ZigClang_main(int argc_, const char **argv_) { |
| 467 | 468 | bool UseNewCC1Process; |
| 468 | 469 | |
| 469 | 470 | IntrusiveRefCntPtr<DiagnosticOptions> DiagOpts = |
| 470 | CreateAndPopulateDiagOpts(argv, UseNewCC1Process); | |
| 471 | CreateAndPopulateDiagOpts(Args, UseNewCC1Process); | |
| 471 | 472 | |
| 472 | 473 | TextDiagnosticPrinter *DiagClient |
| 473 | 474 | = new TextDiagnosticPrinter(llvm::errs(), &*DiagOpts); |
| ... | ... | @@ -488,10 +489,11 @@ int ZigClang_main(int argc_, const char **argv_) { |
| 488 | 489 | ProcessWarningOptions(Diags, *DiagOpts, /*ReportDiags=*/false); |
| 489 | 490 | |
| 490 | 491 | Driver TheDriver(Path, llvm::sys::getDefaultTargetTriple(), Diags); |
| 491 | SetInstallDir(argv, TheDriver, CanonicalPrefixes); | |
| 492 | SetInstallDir(Args, TheDriver, CanonicalPrefixes); | |
| 493 | auto TargetAndMode = ToolChain::getTargetAndModeFromProgramName(Args[0]); | |
| 492 | 494 | TheDriver.setTargetAndMode(TargetAndMode); |
| 493 | 495 | |
| 494 | insertTargetAndModeArgs(TargetAndMode, argv, SavedStrings); | |
| 496 | insertTargetAndModeArgs(TargetAndMode, Args, SavedStrings); | |
| 495 | 497 | |
| 496 | 498 | SetBackdoorDriverOutputsFromEnvVars(TheDriver); |
| 497 | 499 | |
| ... | ... | @@ -501,7 +503,7 @@ int ZigClang_main(int argc_, const char **argv_) { |
| 501 | 503 | llvm::CrashRecoveryContext::Enable(); |
| 502 | 504 | } |
| 503 | 505 | |
| 504 | std::unique_ptr<Compilation> C(TheDriver.BuildCompilation(argv)); | |
| 506 | std::unique_ptr<Compilation> C(TheDriver.BuildCompilation(Args)); | |
| 505 | 507 | int Res = 1; |
| 506 | 508 | bool IsCrash = false; |
| 507 | 509 | if (C && !C->containsError()) { |
src/zig_llvm-ar.cpp+8-267| ... | ... | @@ -1,263 +1,3 @@ |
| 1 | // In this file is copy+pasted WindowsSupport.h from LLVM 12.0.1-rc1. | |
| 2 | // This is so that we can patch it. The upstream sources are incorrectly | |
| 3 | // including "llvm/Config/config.h" which is a private header and thus not | |
| 4 | // available in the include files distributed with LLVM. | |
| 5 | // The patch here changes it to include "llvm/Config/config.h" instead. | |
| 6 | // Patch submitted upstream: https://reviews.llvm.org/D103370 | |
| 7 | #if !defined(_WIN32) | |
| 8 | #define LLVM_SUPPORT_WINDOWSSUPPORT_H | |
| 9 | #endif | |
| 10 | ||
| 11 | //===- WindowsSupport.h - Common Windows Include File -----------*- C++ -*-===// | |
| 12 | // | |
| 13 | // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. | |
| 14 | // See https://llvm.org/LICENSE.txt for license information. | |
| 15 | // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception | |
| 16 | // | |
| 17 | //===----------------------------------------------------------------------===// | |
| 18 | // | |
| 19 | // This file defines things specific to Windows implementations. In addition to | |
| 20 | // providing some helpers for working with win32 APIs, this header wraps | |
| 21 | // <windows.h> with some portability macros. Always include WindowsSupport.h | |
| 22 | // instead of including <windows.h> directly. | |
| 23 | // | |
| 24 | //===----------------------------------------------------------------------===// | |
| 25 | ||
| 26 | //===----------------------------------------------------------------------===// | |
| 27 | //=== WARNING: Implementation here must contain only generic Win32 code that | |
| 28 | //=== is guaranteed to work on *all* Win32 variants. | |
| 29 | //===----------------------------------------------------------------------===// | |
| 30 | ||
| 31 | #ifndef LLVM_SUPPORT_WINDOWSSUPPORT_H | |
| 32 | #define LLVM_SUPPORT_WINDOWSSUPPORT_H | |
| 33 | ||
| 34 | // mingw-w64 tends to define it as 0x0502 in its headers. | |
| 35 | #undef _WIN32_WINNT | |
| 36 | #undef _WIN32_IE | |
| 37 | ||
| 38 | // Require at least Windows 7 API. | |
| 39 | #define _WIN32_WINNT 0x0601 | |
| 40 | #define _WIN32_IE 0x0800 // MinGW at it again. FIXME: verify if still needed. | |
| 41 | #define WIN32_LEAN_AND_MEAN | |
| 42 | #ifndef NOMINMAX | |
| 43 | #define NOMINMAX | |
| 44 | #endif | |
| 45 | ||
| 46 | #include "llvm/ADT/SmallVector.h" | |
| 47 | #include "llvm/ADT/StringExtras.h" | |
| 48 | #include "llvm/ADT/StringRef.h" | |
| 49 | #include "llvm/ADT/Twine.h" | |
| 50 | #include "llvm/Config/llvm-config.h" // Get build system configuration settings | |
| 51 | #include "llvm/Support/Allocator.h" | |
| 52 | #include "llvm/Support/Chrono.h" | |
| 53 | #include "llvm/Support/Compiler.h" | |
| 54 | #include "llvm/Support/ErrorHandling.h" | |
| 55 | #include "llvm/Support/VersionTuple.h" | |
| 56 | #include <cassert> | |
| 57 | #include <string> | |
| 58 | #include <system_error> | |
| 59 | #include <windows.h> | |
| 60 | ||
| 61 | // Must be included after windows.h | |
| 62 | #include <wincrypt.h> | |
| 63 | ||
| 64 | namespace llvm { | |
| 65 | ||
| 66 | /// Determines if the program is running on Windows 8 or newer. This | |
| 67 | /// reimplements one of the helpers in the Windows 8.1 SDK, which are intended | |
| 68 | /// to supercede raw calls to GetVersionEx. Old SDKs, Cygwin, and MinGW don't | |
| 69 | /// yet have VersionHelpers.h, so we have our own helper. | |
| 70 | bool RunningWindows8OrGreater(); | |
| 71 | ||
| 72 | /// Returns the Windows version as Major.Minor.0.BuildNumber. Uses | |
| 73 | /// RtlGetVersion or GetVersionEx under the hood depending on what is available. | |
| 74 | /// GetVersionEx is deprecated, but this API exposes the build number which can | |
| 75 | /// be useful for working around certain kernel bugs. | |
| 76 | llvm::VersionTuple GetWindowsOSVersion(); | |
| 77 | ||
| 78 | bool MakeErrMsg(std::string *ErrMsg, const std::string &prefix); | |
| 79 | ||
| 80 | // Include GetLastError() in a fatal error message. | |
| 81 | LLVM_ATTRIBUTE_NORETURN inline void ReportLastErrorFatal(const char *Msg) { | |
| 82 | std::string ErrMsg; | |
| 83 | MakeErrMsg(&ErrMsg, Msg); | |
| 84 | llvm::report_fatal_error(ErrMsg); | |
| 85 | } | |
| 86 | ||
| 87 | template <typename HandleTraits> | |
| 88 | class ScopedHandle { | |
| 89 | typedef typename HandleTraits::handle_type handle_type; | |
| 90 | handle_type Handle; | |
| 91 | ||
| 92 | ScopedHandle(const ScopedHandle &other) = delete; | |
| 93 | void operator=(const ScopedHandle &other) = delete; | |
| 94 | public: | |
| 95 | ScopedHandle() | |
| 96 | : Handle(HandleTraits::GetInvalid()) {} | |
| 97 | ||
| 98 | explicit ScopedHandle(handle_type h) | |
| 99 | : Handle(h) {} | |
| 100 | ||
| 101 | ~ScopedHandle() { | |
| 102 | if (HandleTraits::IsValid(Handle)) | |
| 103 | HandleTraits::Close(Handle); | |
| 104 | } | |
| 105 | ||
| 106 | handle_type take() { | |
| 107 | handle_type t = Handle; | |
| 108 | Handle = HandleTraits::GetInvalid(); | |
| 109 | return t; | |
| 110 | } | |
| 111 | ||
| 112 | ScopedHandle &operator=(handle_type h) { | |
| 113 | if (HandleTraits::IsValid(Handle)) | |
| 114 | HandleTraits::Close(Handle); | |
| 115 | Handle = h; | |
| 116 | return *this; | |
| 117 | } | |
| 118 | ||
| 119 | // True if Handle is valid. | |
| 120 | explicit operator bool() const { | |
| 121 | return HandleTraits::IsValid(Handle) ? true : false; | |
| 122 | } | |
| 123 | ||
| 124 | operator handle_type() const { | |
| 125 | return Handle; | |
| 126 | } | |
| 127 | }; | |
| 128 | ||
| 129 | struct CommonHandleTraits { | |
| 130 | typedef HANDLE handle_type; | |
| 131 | ||
| 132 | static handle_type GetInvalid() { | |
| 133 | return INVALID_HANDLE_VALUE; | |
| 134 | } | |
| 135 | ||
| 136 | static void Close(handle_type h) { | |
| 137 | ::CloseHandle(h); | |
| 138 | } | |
| 139 | ||
| 140 | static bool IsValid(handle_type h) { | |
| 141 | return h != GetInvalid(); | |
| 142 | } | |
| 143 | }; | |
| 144 | ||
| 145 | struct JobHandleTraits : CommonHandleTraits { | |
| 146 | static handle_type GetInvalid() { | |
| 147 | return NULL; | |
| 148 | } | |
| 149 | }; | |
| 150 | ||
| 151 | struct CryptContextTraits : CommonHandleTraits { | |
| 152 | typedef HCRYPTPROV handle_type; | |
| 153 | ||
| 154 | static handle_type GetInvalid() { | |
| 155 | return 0; | |
| 156 | } | |
| 157 | ||
| 158 | static void Close(handle_type h) { | |
| 159 | ::CryptReleaseContext(h, 0); | |
| 160 | } | |
| 161 | ||
| 162 | static bool IsValid(handle_type h) { | |
| 163 | return h != GetInvalid(); | |
| 164 | } | |
| 165 | }; | |
| 166 | ||
| 167 | struct RegTraits : CommonHandleTraits { | |
| 168 | typedef HKEY handle_type; | |
| 169 | ||
| 170 | static handle_type GetInvalid() { | |
| 171 | return NULL; | |
| 172 | } | |
| 173 | ||
| 174 | static void Close(handle_type h) { | |
| 175 | ::RegCloseKey(h); | |
| 176 | } | |
| 177 | ||
| 178 | static bool IsValid(handle_type h) { | |
| 179 | return h != GetInvalid(); | |
| 180 | } | |
| 181 | }; | |
| 182 | ||
| 183 | struct FindHandleTraits : CommonHandleTraits { | |
| 184 | static void Close(handle_type h) { | |
| 185 | ::FindClose(h); | |
| 186 | } | |
| 187 | }; | |
| 188 | ||
| 189 | struct FileHandleTraits : CommonHandleTraits {}; | |
| 190 | ||
| 191 | typedef ScopedHandle<CommonHandleTraits> ScopedCommonHandle; | |
| 192 | typedef ScopedHandle<FileHandleTraits> ScopedFileHandle; | |
| 193 | typedef ScopedHandle<CryptContextTraits> ScopedCryptContext; | |
| 194 | typedef ScopedHandle<RegTraits> ScopedRegHandle; | |
| 195 | typedef ScopedHandle<FindHandleTraits> ScopedFindHandle; | |
| 196 | typedef ScopedHandle<JobHandleTraits> ScopedJobHandle; | |
| 197 | ||
| 198 | template <class T> | |
| 199 | class SmallVectorImpl; | |
| 200 | ||
| 201 | template <class T> | |
| 202 | typename SmallVectorImpl<T>::const_pointer | |
| 203 | c_str(SmallVectorImpl<T> &str) { | |
| 204 | str.push_back(0); | |
| 205 | str.pop_back(); | |
| 206 | return str.data(); | |
| 207 | } | |
| 208 | ||
| 209 | namespace sys { | |
| 210 | ||
| 211 | inline std::chrono::nanoseconds toDuration(FILETIME Time) { | |
| 212 | ULARGE_INTEGER TimeInteger; | |
| 213 | TimeInteger.LowPart = Time.dwLowDateTime; | |
| 214 | TimeInteger.HighPart = Time.dwHighDateTime; | |
| 215 | ||
| 216 | // FILETIME's are # of 100 nanosecond ticks (1/10th of a microsecond) | |
| 217 | return std::chrono::nanoseconds(100 * TimeInteger.QuadPart); | |
| 218 | } | |
| 219 | ||
| 220 | inline TimePoint<> toTimePoint(FILETIME Time) { | |
| 221 | ULARGE_INTEGER TimeInteger; | |
| 222 | TimeInteger.LowPart = Time.dwLowDateTime; | |
| 223 | TimeInteger.HighPart = Time.dwHighDateTime; | |
| 224 | ||
| 225 | // Adjust for different epoch | |
| 226 | TimeInteger.QuadPart -= 11644473600ll * 10000000; | |
| 227 | ||
| 228 | // FILETIME's are # of 100 nanosecond ticks (1/10th of a microsecond) | |
| 229 | return TimePoint<>(std::chrono::nanoseconds(100 * TimeInteger.QuadPart)); | |
| 230 | } | |
| 231 | ||
| 232 | inline FILETIME toFILETIME(TimePoint<> TP) { | |
| 233 | ULARGE_INTEGER TimeInteger; | |
| 234 | TimeInteger.QuadPart = TP.time_since_epoch().count() / 100; | |
| 235 | TimeInteger.QuadPart += 11644473600ll * 10000000; | |
| 236 | ||
| 237 | FILETIME Time; | |
| 238 | Time.dwLowDateTime = TimeInteger.LowPart; | |
| 239 | Time.dwHighDateTime = TimeInteger.HighPart; | |
| 240 | return Time; | |
| 241 | } | |
| 242 | ||
| 243 | namespace windows { | |
| 244 | // Returns command line arguments. Unlike arguments given to main(), | |
| 245 | // this function guarantees that the returned arguments are encoded in | |
| 246 | // UTF-8 regardless of the current code page setting. | |
| 247 | std::error_code GetCommandLineArguments(SmallVectorImpl<const char *> &Args, | |
| 248 | BumpPtrAllocator &Alloc); | |
| 249 | ||
| 250 | /// Convert UTF-8 path to a suitable UTF-16 path for use with the Win32 Unicode | |
| 251 | /// File API. | |
| 252 | std::error_code widenPath(const Twine &Path8, SmallVectorImpl<wchar_t> &Path16, | |
| 253 | size_t MaxPathLen = MAX_PATH); | |
| 254 | ||
| 255 | } // end namespace windows | |
| 256 | } // end namespace sys | |
| 257 | } // end namespace llvm. | |
| 258 | ||
| 259 | #endif | |
| 260 | ||
| 261 | 1 | //===-- llvm-ar.cpp - LLVM archive librarian utility ----------------------===// |
| 262 | 2 | // |
| 263 | 3 | // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. |
| ... | ... | @@ -386,9 +126,9 @@ MODIFIERS: |
| 386 | 126 | )"; |
| 387 | 127 | |
| 388 | 128 | static void printHelpMessage() { |
| 389 | if (Stem.contains_lower("ranlib")) | |
| 129 | if (Stem.contains_insensitive("ranlib")) | |
| 390 | 130 | outs() << RanlibHelp; |
| 391 | else if (Stem.contains_lower("ar")) | |
| 131 | else if (Stem.contains_insensitive("ar")) | |
| 392 | 132 | outs() << ArHelp; |
| 393 | 133 | } |
| 394 | 134 | |
| ... | ... | @@ -530,7 +270,8 @@ static void getArchive() { |
| 530 | 270 | } |
| 531 | 271 | |
| 532 | 272 | static object::Archive &readLibrary(const Twine &Library) { |
| 533 | auto BufOrErr = MemoryBuffer::getFile(Library, -1, false); | |
| 273 | auto BufOrErr = MemoryBuffer::getFile(Library, /*IsText=*/false, | |
| 274 | /*RequiresNullTerminator=*/false); | |
| 534 | 275 | failIfError(BufOrErr.getError(), "could not open library " + Library); |
| 535 | 276 | ArchiveBuffers.push_back(std::move(*BufOrErr)); |
| 536 | 277 | auto LibOrErr = |
| ... | ... | @@ -1255,8 +996,8 @@ static void performOperation(ArchiveOperation Operation, |
| 1255 | 996 | static int performOperation(ArchiveOperation Operation, |
| 1256 | 997 | std::vector<NewArchiveMember> *NewMembers) { |
| 1257 | 998 | // Create or open the archive object. |
| 1258 | ErrorOr<std::unique_ptr<MemoryBuffer>> Buf = | |
| 1259 | MemoryBuffer::getFile(ArchiveName, -1, false); | |
| 999 | ErrorOr<std::unique_ptr<MemoryBuffer>> Buf = MemoryBuffer::getFile( | |
| 1000 | ArchiveName, /*IsText=*/false, /*RequiresNullTerminator=*/false); | |
| 1260 | 1001 | std::error_code EC = Buf.getError(); |
| 1261 | 1002 | if (EC && EC != errc::no_such_file_or_directory) |
| 1262 | 1003 | fail("unable to open '" + ArchiveName + "': " + EC.message()); |
| ... | ... | @@ -1522,7 +1263,7 @@ static int ranlib_main(int argc, char **argv) { |
| 1522 | 1263 | |
| 1523 | 1264 | extern "C" int ZigLlvmAr_main(int argc, char **argv); |
| 1524 | 1265 | int ZigLlvmAr_main(int argc, char **argv) { |
| 1525 | // ZIG MOD: On windows, InitLLVM calls GetCommandLineW(), | |
| 1266 | // ZIG PATCH: On Windows, InitLLVM calls GetCommandLineW(), | |
| 1526 | 1267 | // and overwrites the args. We don't want it to do that, |
| 1527 | 1268 | // and we also don't need the signal handlers it installs |
| 1528 | 1269 | // (we have our own already), so we just use llvm_shutdown_obj |
| ... | ... | @@ -1543,7 +1284,7 @@ int ZigLlvmAr_main(int argc, char **argv) { |
| 1543 | 1284 | // Lib.exe -> lib (see D44808, MSBuild runs Lib.exe) |
| 1544 | 1285 | // dlltool.exe -> dlltool |
| 1545 | 1286 | // arm-pokymllib32-linux-gnueabi-llvm-ar-10 -> ar |
| 1546 | auto I = Stem.rfind_lower(Tool); | |
| 1287 | auto I = Stem.rfind_insensitive(Tool); | |
| 1547 | 1288 | return I != StringRef::npos && |
| 1548 | 1289 | (I + Tool.size() == Stem.size() || !isAlnum(Stem[I + Tool.size()])); |
| 1549 | 1290 | }; |