clang 23.0.0git
CommonArgs.cpp
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1//===--- CommonArgs.cpp - Args handling for multiple toolchains -*- C++ -*-===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8
10#include "Arch/AArch64.h"
11#include "Arch/ARM.h"
12#include "Arch/CSKY.h"
13#include "Arch/LoongArch.h"
14#include "Arch/M68k.h"
15#include "Arch/Mips.h"
16#include "Arch/PPC.h"
17#include "Arch/RISCV.h"
18#include "Arch/Sparc.h"
19#include "Arch/SystemZ.h"
20#include "Arch/VE.h"
21#include "Arch/X86.h"
22#include "HIPAMD.h"
23#include "Hexagon.h"
24#include "MSP430.h"
25#include "Solaris.h"
26#include "ToolChains/Cuda.h"
28#include "clang/Config/config.h"
29#include "clang/Driver/Action.h"
31#include "clang/Driver/Driver.h"
33#include "clang/Driver/Job.h"
36#include "clang/Driver/Util.h"
40#include "llvm/ADT/STLExtras.h"
41#include "llvm/ADT/SmallSet.h"
42#include "llvm/ADT/SmallString.h"
43#include "llvm/ADT/StringExtras.h"
44#include "llvm/ADT/StringSwitch.h"
45#include "llvm/ADT/Twine.h"
46#include "llvm/BinaryFormat/Magic.h"
47#include "llvm/Config/llvm-config.h"
48#include "llvm/Option/Arg.h"
49#include "llvm/Option/ArgList.h"
50#include "llvm/Option/Option.h"
51#include "llvm/Support/CodeGen.h"
52#include "llvm/Support/Compression.h"
53#include "llvm/Support/ErrorHandling.h"
54#include "llvm/Support/FileSystem.h"
55#include "llvm/Support/Path.h"
56#include "llvm/Support/Process.h"
57#include "llvm/Support/Program.h"
58#include "llvm/Support/Threading.h"
59#include "llvm/Support/VirtualFileSystem.h"
60#include "llvm/Support/YAMLParser.h"
61#include "llvm/TargetParser/Host.h"
62#include "llvm/TargetParser/PPCTargetParser.h"
63#include "llvm/TargetParser/TargetParser.h"
64#include <optional>
65
66using namespace clang::driver;
67using namespace clang::driver::tools;
68using namespace clang;
69using namespace llvm::opt;
70
71static bool useFramePointerForTargetByDefault(const llvm::opt::ArgList &Args,
72 const llvm::Triple &Triple) {
73 if (Args.hasArg(options::OPT_pg) && !Args.hasArg(options::OPT_mfentry))
74 return true;
75
76 if (Triple.isAndroid())
77 return true;
78
79 switch (Triple.getArch()) {
80 case llvm::Triple::xcore:
81 case llvm::Triple::wasm32:
82 case llvm::Triple::wasm64:
83 case llvm::Triple::msp430:
84 // XCore never wants frame pointers, regardless of OS.
85 // WebAssembly never wants frame pointers.
86 return false;
87 case llvm::Triple::ppc:
88 case llvm::Triple::ppcle:
89 case llvm::Triple::ppc64:
90 case llvm::Triple::ppc64le:
91 case llvm::Triple::riscv32:
92 case llvm::Triple::riscv64:
93 case llvm::Triple::riscv32be:
94 case llvm::Triple::riscv64be:
95 case llvm::Triple::sparc:
96 case llvm::Triple::sparcel:
97 case llvm::Triple::sparcv9:
98 case llvm::Triple::amdgcn:
99 case llvm::Triple::r600:
100 case llvm::Triple::csky:
101 case llvm::Triple::loongarch32:
102 case llvm::Triple::loongarch64:
103 case llvm::Triple::m68k:
105 default:
106 break;
107 }
108
109 if (Triple.isOSFuchsia() || Triple.isOSNetBSD()) {
111 }
112
113 if (Triple.isOSLinux() || Triple.isOSHurd()) {
114 switch (Triple.getArch()) {
115 // Don't use a frame pointer on linux if optimizing for certain targets.
116 case llvm::Triple::arm:
117 case llvm::Triple::armeb:
118 case llvm::Triple::thumb:
119 case llvm::Triple::thumbeb:
120 case llvm::Triple::mips64:
121 case llvm::Triple::mips64el:
122 case llvm::Triple::mips:
123 case llvm::Triple::mipsel:
124 case llvm::Triple::systemz:
125 case llvm::Triple::x86:
126 case llvm::Triple::x86_64:
128 default:
129 return true;
130 }
131 }
132
133 if (Triple.isOSWindows()) {
134 switch (Triple.getArch()) {
135 case llvm::Triple::x86:
137 case llvm::Triple::x86_64:
138 return Triple.isOSBinFormatMachO();
139 case llvm::Triple::arm:
140 case llvm::Triple::thumb:
141 // Windows on ARM builds with FPO disabled to aid fast stack walking
142 return true;
143 default:
144 // All other supported Windows ISAs use xdata unwind information, so frame
145 // pointers are not generally useful.
146 return false;
147 }
148 }
149
150 if (arm::isARMEABIBareMetal(Triple))
151 return false;
152
153 return true;
154}
155
156static bool useLeafFramePointerForTargetByDefault(const llvm::Triple &Triple) {
157 if (Triple.isAArch64() || Triple.isPS() || Triple.isVE() ||
158 (Triple.isAndroid() && !Triple.isARM()))
159 return false;
160
161 if ((Triple.isARM() || Triple.isThumb()) && Triple.isOSBinFormatMachO())
162 return false;
163
164 return true;
165}
166
167static bool mustUseNonLeafFramePointerForTarget(const llvm::Triple &Triple) {
168 switch (Triple.getArch()) {
169 default:
170 return false;
171 case llvm::Triple::arm:
172 case llvm::Triple::thumb:
173 // ARM Darwin targets require a frame pointer to be always present to aid
174 // offline debugging via backtraces.
175 return Triple.isOSDarwin();
176 }
177}
178
179// True if a target-specific option requires the frame chain to be preserved,
180// even if new frame records are not created.
181static bool mustMaintainValidFrameChain(const llvm::opt::ArgList &Args,
182 const llvm::Triple &Triple) {
183 switch (Triple.getArch()) {
184 default:
185 return false;
186 case llvm::Triple::arm:
187 case llvm::Triple::armeb:
188 case llvm::Triple::thumb:
189 case llvm::Triple::thumbeb:
190 // For 32-bit Arm, the -mframe-chain=aapcs and -mframe-chain=aapcs+leaf
191 // options require the frame pointer register to be reserved (or point to a
192 // new AAPCS-compilant frame record), even with -fno-omit-frame-pointer.
193 if (Arg *A = Args.getLastArg(options::OPT_mframe_chain)) {
194 StringRef V = A->getValue();
195 return V != "none";
196 }
197 return false;
198
199 case llvm::Triple::aarch64:
200 // Arm64 Windows requires that the frame chain is valid, as there is no
201 // way to indicate during a stack walk that a frame has used the frame
202 // pointer as a general purpose register.
203 return Triple.isOSWindows();
204 }
205}
206
207// True if a target-specific option causes -fno-omit-frame-pointer to also
208// cause frame records to be created in leaf functions.
209static bool framePointerImpliesLeafFramePointer(const llvm::opt::ArgList &Args,
210 const llvm::Triple &Triple) {
211 if (Triple.isARM() || Triple.isThumb()) {
212 // For 32-bit Arm, the -mframe-chain=aapcs+leaf option causes the
213 // -fno-omit-frame-pointer optiion to imply -mno-omit-leaf-frame-pointer,
214 // but does not by itself imply either option.
215 if (Arg *A = Args.getLastArg(options::OPT_mframe_chain)) {
216 StringRef V = A->getValue();
217 return V == "aapcs+leaf";
218 }
219 return false;
220 }
221 return false;
222}
223
225getFramePointerKind(const llvm::opt::ArgList &Args,
226 const llvm::Triple &Triple) {
227 // There are four things to consider here:
228 // * Should a frame record be created for non-leaf functions?
229 // * Should a frame record be created for leaf functions?
230 // * Is the frame pointer register reserved in non-leaf functions?
231 // i.e. must it always point to either a new, valid frame record or be
232 // un-modified?
233 // * Is the frame pointer register reserved in leaf functions?
234 //
235 // Not all combinations of these are valid:
236 // * It's not useful to have leaf frame records without non-leaf ones.
237 // * It's not useful to have frame records without reserving the frame
238 // pointer.
239 //
240 // | Frame Setup | Reg Reserved |
241 // |-----------------|-----------------|
242 // | Non-leaf | Leaf | Non-Leaf | Leaf |
243 // |----------|------|----------|------|
244 // | N | N | N | N | FramePointerKind::None
245 // | N | N | N | Y | Invalid
246 // | N | N | Y | N | Invalid
247 // | N | N | Y | Y | FramePointerKind::Reserved
248 // | N | Y | N | N | Invalid
249 // | N | Y | N | Y | Invalid
250 // | N | Y | Y | N | Invalid
251 // | N | Y | Y | Y | Invalid
252 // | Y | N | N | N | Invalid
253 // | Y | N | N | Y | Invalid
254 // | Y | N | Y | N | FramePointerKind::NonLeafNoReserve
255 // | Y | N | Y | Y | FramePointerKind::NonLeaf
256 // | Y | Y | N | N | Invalid
257 // | Y | Y | N | Y | Invalid
258 // | Y | Y | Y | N | Invalid
259 // | Y | Y | Y | Y | FramePointerKind::All
260 //
261 // The FramePointerKind::Reserved case is currently only reachable for Arm,
262 // which has the -mframe-chain= option which can (in combination with
263 // -fno-omit-frame-pointer) specify that the frame chain must be valid,
264 // without requiring new frame records to be created.
265
266 bool DefaultFP = useFramePointerForTargetByDefault(Args, Triple);
267 bool EnableFP = mustUseNonLeafFramePointerForTarget(Triple) ||
268 Args.hasFlag(options::OPT_fno_omit_frame_pointer,
269 options::OPT_fomit_frame_pointer, DefaultFP);
270
271 bool DefaultLeafFP =
273 (EnableFP && framePointerImpliesLeafFramePointer(Args, Triple));
274 bool EnableLeafFP =
275 Args.hasFlag(options::OPT_mno_omit_leaf_frame_pointer,
276 options::OPT_momit_leaf_frame_pointer, DefaultLeafFP);
277
278 bool FPRegReserved = Args.hasFlag(options::OPT_mreserve_frame_pointer_reg,
279 options::OPT_mno_reserve_frame_pointer_reg,
280 mustMaintainValidFrameChain(Args, Triple));
281
282 if (EnableFP) {
283 if (EnableLeafFP)
285
286 if (FPRegReserved)
288
290 }
291 if (FPRegReserved)
294}
295
296static void renderRpassOptions(const ArgList &Args, ArgStringList &CmdArgs,
297 const StringRef PluginOptPrefix) {
298 if (const Arg *A = Args.getLastArg(options::OPT_Rpass_EQ))
299 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
300 "-pass-remarks=" + A->getValue()));
301
302 if (const Arg *A = Args.getLastArg(options::OPT_Rpass_missed_EQ))
303 CmdArgs.push_back(Args.MakeArgString(
304 Twine(PluginOptPrefix) + "-pass-remarks-missed=" + A->getValue()));
305
306 if (const Arg *A = Args.getLastArg(options::OPT_Rpass_analysis_EQ))
307 CmdArgs.push_back(Args.MakeArgString(
308 Twine(PluginOptPrefix) + "-pass-remarks-analysis=" + A->getValue()));
309}
310
311static void renderRemarksOptions(const ArgList &Args, ArgStringList &CmdArgs,
312 const llvm::Triple &Triple,
313 const InputInfo &Input,
314 const InputInfo &Output,
315 const StringRef PluginOptPrefix) {
316 StringRef Format = "yaml";
317 if (const Arg *A = Args.getLastArg(options::OPT_fsave_optimization_record_EQ))
318 Format = A->getValue();
319
321 if (const Arg *A =
322 Args.getLastArg(options::OPT_foptimization_record_file_EQ)) {
323 F = A->getValue();
324 F += ".";
325 } else if (const Arg *A = Args.getLastArg(options::OPT_dumpdir)) {
326 F = A->getValue();
327 } else if (Output.isFilename()) {
328 F = Output.getFilename();
329 F += ".";
330 }
331
332 assert(!F.empty() && "Cannot determine remarks output name.");
333 // Append "opt.ld.<format>" to the end of the file name.
334 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
335 "opt-remarks-filename=" + F + "opt.ld." +
336 Format));
337
338 if (const Arg *A =
339 Args.getLastArg(options::OPT_foptimization_record_passes_EQ))
340 CmdArgs.push_back(Args.MakeArgString(
341 Twine(PluginOptPrefix) + "opt-remarks-passes=" + A->getValue()));
342
343 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
344 "opt-remarks-format=" + Format.data()));
345}
346
347static void renderRemarksHotnessOptions(const ArgList &Args,
348 ArgStringList &CmdArgs,
349 const StringRef PluginOptPrefix) {
350 if (Args.hasFlag(options::OPT_fdiagnostics_show_hotness,
351 options::OPT_fno_diagnostics_show_hotness, false))
352 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
353 "opt-remarks-with-hotness"));
354
355 if (const Arg *A =
356 Args.getLastArg(options::OPT_fdiagnostics_hotness_threshold_EQ))
357 CmdArgs.push_back(
358 Args.MakeArgString(Twine(PluginOptPrefix) +
359 "opt-remarks-hotness-threshold=" + A->getValue()));
360}
361
362static bool shouldIgnoreUnsupportedTargetFeature(const Arg &TargetFeatureArg,
363 llvm::Triple T,
364 StringRef Processor) {
365 // Warn no-cumode for AMDGCN processors not supporing WGP mode.
366 if (!T.isAMDGPU())
367 return false;
368 auto GPUKind = T.isAMDGCN() ? llvm::AMDGPU::parseArchAMDGCN(Processor)
369 : llvm::AMDGPU::parseArchR600(Processor);
370 auto GPUFeatures = T.isAMDGCN() ? llvm::AMDGPU::getArchAttrAMDGCN(GPUKind)
371 : llvm::AMDGPU::getArchAttrR600(GPUKind);
372 if (GPUFeatures & llvm::AMDGPU::FEATURE_WGP)
373 return false;
374 return TargetFeatureArg.getOption().matches(options::OPT_mno_cumode);
375}
376
377void tools::addPathIfExists(const Driver &D, const Twine &Path,
378 ToolChain::path_list &Paths) {
379 if (D.getVFS().exists(Path))
380 Paths.push_back(Path.str());
381}
382
384 const llvm::Triple &Triple,
385 const ArgList &Args,
386 std::vector<StringRef> &Features,
387 OptSpecifier Group) {
388 std::set<StringRef> Warned;
389 for (const Arg *A : Args.filtered(Group)) {
390 StringRef Name = A->getOption().getName();
391 A->claim();
392
393 // Skip over "-m".
394 assert(Name.starts_with("m") && "Invalid feature name.");
395 Name = Name.substr(1);
396
397 auto Proc = getCPUName(D, Args, Triple);
398 if (shouldIgnoreUnsupportedTargetFeature(*A, Triple, Proc)) {
399 if (Warned.count(Name) == 0) {
400 D.getDiags().Report(
401 clang::diag::warn_drv_unsupported_option_for_processor)
402 << A->getAsString(Args) << Proc;
403 Warned.insert(Name);
404 }
405 continue;
406 }
407
408 bool IsNegative = Name.consume_front("no-");
409
410 Features.push_back(Args.MakeArgString((IsNegative ? "-" : "+") + Name));
411 }
412}
413
416 // Only add a feature if it hasn't been seen before starting from the end.
417 SmallVector<StringRef> UnifiedFeatures;
418 llvm::DenseSet<StringRef> UsedFeatures;
419 for (StringRef Feature : llvm::reverse(Features)) {
420 if (UsedFeatures.insert(Feature.drop_front()).second)
421 UnifiedFeatures.insert(UnifiedFeatures.begin(), Feature);
422 }
423
424 return UnifiedFeatures;
425}
426
427void tools::addDirectoryList(const ArgList &Args, ArgStringList &CmdArgs,
428 const char *ArgName, const char *EnvVar) {
429 const char *DirList = ::getenv(EnvVar);
430 bool CombinedArg = false;
431
432 if (!DirList)
433 return; // Nothing to do.
434
435 StringRef Name(ArgName);
436 if (Name == "-I" || Name == "-L" || Name.empty())
437 CombinedArg = true;
438
439 StringRef Dirs(DirList);
440 if (Dirs.empty()) // Empty string should not add '.'.
441 return;
442
443 StringRef::size_type Delim;
444 while ((Delim = Dirs.find(llvm::sys::EnvPathSeparator)) != StringRef::npos) {
445 if (Delim == 0) { // Leading colon.
446 if (CombinedArg) {
447 CmdArgs.push_back(Args.MakeArgString(std::string(ArgName) + "."));
448 } else {
449 CmdArgs.push_back(ArgName);
450 CmdArgs.push_back(".");
451 }
452 } else {
453 if (CombinedArg) {
454 CmdArgs.push_back(
455 Args.MakeArgString(std::string(ArgName) + Dirs.substr(0, Delim)));
456 } else {
457 CmdArgs.push_back(ArgName);
458 CmdArgs.push_back(Args.MakeArgString(Dirs.substr(0, Delim)));
459 }
460 }
461 Dirs = Dirs.substr(Delim + 1);
462 }
463
464 if (Dirs.empty()) { // Trailing colon.
465 if (CombinedArg) {
466 CmdArgs.push_back(Args.MakeArgString(std::string(ArgName) + "."));
467 } else {
468 CmdArgs.push_back(ArgName);
469 CmdArgs.push_back(".");
470 }
471 } else { // Add the last path.
472 if (CombinedArg) {
473 CmdArgs.push_back(Args.MakeArgString(std::string(ArgName) + Dirs));
474 } else {
475 CmdArgs.push_back(ArgName);
476 CmdArgs.push_back(Args.MakeArgString(Dirs));
477 }
478 }
479}
480
481void tools::AddLinkerInputs(const ToolChain &TC, const InputInfoList &Inputs,
482 const ArgList &Args, ArgStringList &CmdArgs,
483 const JobAction &JA) {
484 const Driver &D = TC.getDriver();
485
486 // Add extra linker input arguments which are not treated as inputs
487 // (constructed via -Xarch_).
488 Args.AddAllArgValues(CmdArgs, options::OPT_Zlinker_input);
489
490 // LIBRARY_PATH are included before user inputs and only supported on native
491 // toolchains.
492 if (!TC.isCrossCompiling())
493 addDirectoryList(Args, CmdArgs, "-L", "LIBRARY_PATH");
494
495 for (const auto &II : Inputs) {
496 // If the current tool chain refers to an OpenMP offloading host, we
497 // should ignore inputs that refer to OpenMP offloading devices -
498 // they will be embedded according to a proper linker script.
499 if (auto *IA = II.getAction())
501 IA->isDeviceOffloading(Action::OFK_OpenMP)))
502 continue;
503
504 if (!TC.HasNativeLLVMSupport() && types::isLLVMIR(II.getType()))
505 // Don't try to pass LLVM inputs unless we have native support.
506 D.Diag(diag::err_drv_no_linker_llvm_support) << TC.getTripleString();
507
508 // Add filenames immediately.
509 if (II.isFilename()) {
510 CmdArgs.push_back(II.getFilename());
511 continue;
512 }
513
514 // In some error cases, the input could be Nothing; skip those.
515 if (II.isNothing())
516 continue;
517
518 // Otherwise, this is a linker input argument.
519 const Arg &A = II.getInputArg();
520
521 // Handle reserved library options.
522 if (A.getOption().matches(options::OPT_Z_reserved_lib_stdcxx))
523 TC.AddCXXStdlibLibArgs(Args, CmdArgs);
524 else if (A.getOption().matches(options::OPT_Z_reserved_lib_cckext))
525 TC.AddCCKextLibArgs(Args, CmdArgs);
526 // Do not pass OPT_rpath to linker in AIX
527 else if (A.getOption().matches(options::OPT_rpath) &&
528 TC.getTriple().isOSAIX())
529 continue;
530 else
531 A.renderAsInput(Args, CmdArgs);
532 }
533 if (const Arg *A = Args.getLastArg(options::OPT_fveclib)) {
534 const llvm::Triple &Triple = TC.getTriple();
535 StringRef V = A->getValue();
536 if (V == "ArmPL" && (Triple.isOSLinux() || Triple.isOSDarwin())) {
537 // To support -fveclib=ArmPL we need to link against libamath. Some of the
538 // libamath functions depend on libm, at the same time, libamath exports
539 // its own implementation of some of the libm functions. These are faster
540 // and potentially less accurate implementations, hence we need to be
541 // careful what is being linked in. Since here we are interested only in
542 // the subset of libamath functions that is covered by the veclib
543 // mappings, we need to prioritize libm functions by putting -lm before
544 // -lamath (and then -lm again, to fulfill libamath requirements).
545 //
546 // Therefore we need to do the following:
547 //
548 // 1. On Linux, link only when actually needed.
549 //
550 // 2. Prefer libm functions over libamath (when no -nostdlib in use).
551 //
552 // 3. Link against libm to resolve libamath dependencies.
553 //
554 if (Triple.isOSLinux()) {
555 CmdArgs.push_back(Args.MakeArgString("--push-state"));
556 CmdArgs.push_back(Args.MakeArgString("--as-needed"));
557 }
558 if (!Args.hasArg(options::OPT_nostdlib))
559 CmdArgs.push_back(Args.MakeArgString("-lm"));
560 CmdArgs.push_back(Args.MakeArgString("-lamath"));
561 if (!Args.hasArg(options::OPT_nostdlib))
562 CmdArgs.push_back(Args.MakeArgString("-lm"));
563 if (Triple.isOSLinux())
564 CmdArgs.push_back(Args.MakeArgString("--pop-state"));
565 addArchSpecificRPath(TC, Args, CmdArgs);
566 }
567 }
568}
569
570const char *tools::getLDMOption(const llvm::Triple &T, const ArgList &Args) {
571 switch (T.getArch()) {
572 case llvm::Triple::x86:
573 if (T.isOSIAMCU())
574 return "elf_iamcu";
575 return "elf_i386";
576 case llvm::Triple::aarch64:
577 if (T.isOSManagarm())
578 return "aarch64managarm";
579 else if (aarch64::isAArch64BareMetal(T))
580 return "aarch64elf";
581 return "aarch64linux";
582 case llvm::Triple::aarch64_be:
584 return "aarch64elfb";
585 return "aarch64linuxb";
586 case llvm::Triple::arm:
587 case llvm::Triple::thumb:
588 case llvm::Triple::armeb:
589 case llvm::Triple::thumbeb: {
590 bool IsBigEndian = tools::arm::isARMBigEndian(T, Args);
592 return IsBigEndian ? "armelfb" : "armelf";
593 return IsBigEndian ? "armelfb_linux_eabi" : "armelf_linux_eabi";
594 }
595 case llvm::Triple::m68k:
596 return "m68kelf";
597 case llvm::Triple::ppc:
598 if (T.isOSLinux())
599 return "elf32ppclinux";
600 return "elf32ppc";
601 case llvm::Triple::ppcle:
602 if (T.isOSLinux())
603 return "elf32lppclinux";
604 return "elf32lppc";
605 case llvm::Triple::ppc64:
606 return "elf64ppc";
607 case llvm::Triple::ppc64le:
608 return "elf64lppc";
609 case llvm::Triple::riscv32:
610 return "elf32lriscv";
611 case llvm::Triple::riscv64:
612 return "elf64lriscv";
613 case llvm::Triple::riscv32be:
614 return "elf32briscv";
615 case llvm::Triple::riscv64be:
616 return "elf64briscv";
617 case llvm::Triple::sparc:
618 case llvm::Triple::sparcel:
619 return "elf32_sparc";
620 case llvm::Triple::sparcv9:
621 return "elf64_sparc";
622 case llvm::Triple::loongarch32:
623 return "elf32loongarch";
624 case llvm::Triple::loongarch64:
625 return "elf64loongarch";
626 case llvm::Triple::mips:
627 return "elf32btsmip";
628 case llvm::Triple::mipsel:
629 return "elf32ltsmip";
630 case llvm::Triple::mips64:
631 if (tools::mips::hasMipsAbiArg(Args, "n32") || T.isABIN32())
632 return "elf32btsmipn32";
633 return "elf64btsmip";
634 case llvm::Triple::mips64el:
635 if (tools::mips::hasMipsAbiArg(Args, "n32") || T.isABIN32())
636 return "elf32ltsmipn32";
637 return "elf64ltsmip";
638 case llvm::Triple::systemz:
639 return "elf64_s390";
640 case llvm::Triple::x86_64:
641 if (T.isX32())
642 return "elf32_x86_64";
643 return "elf_x86_64";
644 case llvm::Triple::ve:
645 return "elf64ve";
646 case llvm::Triple::csky:
647 return "cskyelf_linux";
648 default:
649 return nullptr;
650 }
651}
652
654 const ToolChain &TC, const llvm::opt::ArgList &Args,
655 llvm::opt::ArgStringList &CmdArgs) {
656 // GNU ld supports --compress-debug-sections=none|zlib|zlib-gnu|zlib-gabi
657 // whereas zlib is an alias to zlib-gabi and zlib-gnu is obsoleted. Therefore
658 // -gz=none|zlib are translated to --compress-debug-sections=none|zlib. -gz
659 // is not translated since ld --compress-debug-sections option requires an
660 // argument.
661 if (const Arg *A = Args.getLastArg(options::OPT_gz_EQ)) {
662 StringRef V = A->getValue();
663 if (V == "none" || V == "zlib" || V == "zstd")
664 CmdArgs.push_back(Args.MakeArgString("--compress-debug-sections=" + V));
665 else
666 TC.getDriver().Diag(diag::err_drv_unsupported_option_argument)
667 << A->getSpelling() << V;
668 }
669}
670
671void tools::AddTargetFeature(const ArgList &Args,
672 std::vector<StringRef> &Features,
673 OptSpecifier OnOpt, OptSpecifier OffOpt,
674 StringRef FeatureName) {
675 if (Arg *A = Args.getLastArg(OnOpt, OffOpt)) {
676 if (A->getOption().matches(OnOpt))
677 Features.push_back(Args.MakeArgString("+" + FeatureName));
678 else
679 Features.push_back(Args.MakeArgString("-" + FeatureName));
680 }
681}
682
683/// Get the (LLVM) name of the AMDGPU gpu we are targeting.
684static std::string getAMDGPUTargetGPU(const llvm::Triple &T,
685 const ArgList &Args) {
686 Arg *MArch = Args.getLastArg(options::OPT_march_EQ);
687 if (Arg *A = Args.getLastArg(options::OPT_mcpu_EQ)) {
688 auto GPUName = getProcessorFromTargetID(T, A->getValue());
689 return llvm::StringSwitch<std::string>(GPUName)
690 .Cases({"rv630", "rv635"}, "r600")
691 .Cases({"rv610", "rv620", "rs780"}, "rs880")
692 .Case("rv740", "rv770")
693 .Case("palm", "cedar")
694 .Cases({"sumo", "sumo2"}, "sumo")
695 .Case("hemlock", "cypress")
696 .Case("aruba", "cayman")
697 .Default(GPUName.str());
698 }
699 if (MArch)
700 return getProcessorFromTargetID(T, MArch->getValue()).str();
701 return "";
702}
703
704static std::string getLanaiTargetCPU(const ArgList &Args) {
705 if (Arg *A = Args.getLastArg(options::OPT_mcpu_EQ)) {
706 return A->getValue();
707 }
708 return "";
709}
710
711/// Get the (LLVM) name of the WebAssembly cpu we are targeting.
712static StringRef getWebAssemblyTargetCPU(const ArgList &Args) {
713 // If we have -mcpu=, use that.
714 if (Arg *A = Args.getLastArg(options::OPT_mcpu_EQ)) {
715 StringRef CPU = A->getValue();
716
717#ifdef __wasm__
718 // Handle "native" by examining the host. "native" isn't meaningful when
719 // cross compiling, so only support this when the host is also WebAssembly.
720 if (CPU == "native")
721 return llvm::sys::getHostCPUName();
722#endif
723
724 return CPU;
725 }
726
727 return "generic";
728}
729
730std::string tools::getCPUName(const Driver &D, const ArgList &Args,
731 const llvm::Triple &T, bool FromAs) {
732 Arg *A;
733
734 switch (T.getArch()) {
735 default:
736 return "";
737
738 case llvm::Triple::aarch64:
739 case llvm::Triple::aarch64_32:
740 case llvm::Triple::aarch64_be:
741 return aarch64::getAArch64TargetCPU(Args, T, A);
742
743 case llvm::Triple::arm:
744 case llvm::Triple::armeb:
745 case llvm::Triple::thumb:
746 case llvm::Triple::thumbeb: {
747 StringRef MArch, MCPU;
748 arm::getARMArchCPUFromArgs(Args, MArch, MCPU, FromAs);
749 return arm::getARMTargetCPU(MCPU, MArch, T);
750 }
751
752 case llvm::Triple::avr:
753 if (const Arg *A = Args.getLastArg(options::OPT_mmcu_EQ))
754 return A->getValue();
755 return "";
756
757 case llvm::Triple::m68k:
758 return m68k::getM68kTargetCPU(Args);
759
760 case llvm::Triple::mips:
761 case llvm::Triple::mipsel:
762 case llvm::Triple::mips64:
763 case llvm::Triple::mips64el: {
764 StringRef CPUName;
765 StringRef ABIName;
766 mips::getMipsCPUAndABI(Args, T, CPUName, ABIName);
767 return std::string(CPUName);
768 }
769
770 case llvm::Triple::nvptx:
771 case llvm::Triple::nvptx64:
772 if (const Arg *A = Args.getLastArg(options::OPT_march_EQ))
773 return A->getValue();
774 return "";
775
776 case llvm::Triple::ppc:
777 case llvm::Triple::ppcle:
778 case llvm::Triple::ppc64:
779 case llvm::Triple::ppc64le:
780 if (Arg *A = Args.getLastArg(options::OPT_mcpu_EQ))
781 return std::string(
782 llvm::PPC::getNormalizedPPCTargetCPU(T, A->getValue()));
783 return std::string(llvm::PPC::getNormalizedPPCTargetCPU(T));
784
785 case llvm::Triple::csky:
786 if (const Arg *A = Args.getLastArg(options::OPT_mcpu_EQ))
787 return A->getValue();
788 else if (const Arg *A = Args.getLastArg(options::OPT_march_EQ))
789 return A->getValue();
790 else
791 return "ck810";
792 case llvm::Triple::riscv32:
793 case llvm::Triple::riscv64:
794 case llvm::Triple::riscv32be:
795 case llvm::Triple::riscv64be:
796 return riscv::getRISCVTargetCPU(Args, T);
797
798 case llvm::Triple::bpfel:
799 case llvm::Triple::bpfeb:
800 if (const Arg *A = Args.getLastArg(options::OPT_mcpu_EQ))
801 return A->getValue();
802 return "";
803
804 case llvm::Triple::sparc:
805 case llvm::Triple::sparcel:
806 case llvm::Triple::sparcv9:
807 return sparc::getSparcTargetCPU(D, Args, T);
808
809 case llvm::Triple::x86:
810 case llvm::Triple::x86_64:
811 return x86::getX86TargetCPU(D, Args, T);
812
813 case llvm::Triple::hexagon:
814 return "hexagon" +
816
817 case llvm::Triple::lanai:
818 return getLanaiTargetCPU(Args);
819
820 case llvm::Triple::systemz:
821 return systemz::getSystemZTargetCPU(Args, T);
822
823 case llvm::Triple::r600:
824 case llvm::Triple::amdgcn:
825 return getAMDGPUTargetGPU(T, Args);
826
827 case llvm::Triple::wasm32:
828 case llvm::Triple::wasm64:
829 return std::string(getWebAssemblyTargetCPU(Args));
830
831 case llvm::Triple::loongarch32:
832 case llvm::Triple::loongarch64:
833 return loongarch::getLoongArchTargetCPU(Args, T);
834
835 case llvm::Triple::xtensa:
836 if (const Arg *A = Args.getLastArg(options::OPT_mcpu_EQ))
837 return A->getValue();
838 return "";
839 }
840}
841
843 const llvm::Triple &Triple,
844 const ArgList &Args,
845 std::vector<StringRef> &Features) {
846 handleTargetFeaturesGroup(D, Triple, Args, Features,
847 options::OPT_m_wasm_Features_Group);
848}
849
850void tools::getTargetFeatures(const Driver &D, const llvm::Triple &Triple,
851 const ArgList &Args, ArgStringList &CmdArgs,
852 bool ForAS, bool IsAux) {
853 std::vector<StringRef> Features;
854 switch (Triple.getArch()) {
855 default:
856 break;
857 case llvm::Triple::mips:
858 case llvm::Triple::mipsel:
859 case llvm::Triple::mips64:
860 case llvm::Triple::mips64el:
861 mips::getMIPSTargetFeatures(D, Triple, Args, Features);
862 break;
863 case llvm::Triple::arm:
864 case llvm::Triple::armeb:
865 case llvm::Triple::thumb:
866 case llvm::Triple::thumbeb:
867 arm::getARMTargetFeatures(D, Triple, Args, Features, ForAS);
868 break;
869 case llvm::Triple::ppc:
870 case llvm::Triple::ppcle:
871 case llvm::Triple::ppc64:
872 case llvm::Triple::ppc64le:
873 ppc::getPPCTargetFeatures(D, Triple, Args, Features);
874 break;
875 case llvm::Triple::riscv32:
876 case llvm::Triple::riscv64:
877 case llvm::Triple::riscv32be:
878 case llvm::Triple::riscv64be:
879 riscv::getRISCVTargetFeatures(D, Triple, Args, Features);
880 break;
881 case llvm::Triple::systemz:
882 systemz::getSystemZTargetFeatures(D, Args, Features);
883 break;
884 case llvm::Triple::aarch64:
885 case llvm::Triple::aarch64_32:
886 case llvm::Triple::aarch64_be:
887 aarch64::getAArch64TargetFeatures(D, Triple, Args, Features, ForAS);
888 break;
889 case llvm::Triple::x86:
890 case llvm::Triple::x86_64:
891 x86::getX86TargetFeatures(D, Triple, Args, Features);
892 break;
893 case llvm::Triple::hexagon:
894 hexagon::getHexagonTargetFeatures(D, Triple, Args, Features);
895 break;
896 case llvm::Triple::wasm32:
897 case llvm::Triple::wasm64:
898 getWebAssemblyTargetFeatures(D, Triple, Args, Features);
899 break;
900 case llvm::Triple::sparc:
901 case llvm::Triple::sparcel:
902 case llvm::Triple::sparcv9:
903 sparc::getSparcTargetFeatures(D, Triple, Args, Features);
904 break;
905 case llvm::Triple::r600:
906 case llvm::Triple::amdgcn:
907 amdgpu::getAMDGPUTargetFeatures(D, Triple, Args, Features);
908 break;
909 case llvm::Triple::nvptx:
910 case llvm::Triple::nvptx64:
911 NVPTX::getNVPTXTargetFeatures(D, Triple, Args, Features);
912 break;
913 case llvm::Triple::m68k:
914 m68k::getM68kTargetFeatures(D, Triple, Args, Features);
915 break;
916 case llvm::Triple::msp430:
917 msp430::getMSP430TargetFeatures(D, Args, Features);
918 break;
919 case llvm::Triple::ve:
920 ve::getVETargetFeatures(D, Args, Features);
921 break;
922 case llvm::Triple::csky:
923 csky::getCSKYTargetFeatures(D, Triple, Args, CmdArgs, Features);
924 break;
925 case llvm::Triple::loongarch32:
926 case llvm::Triple::loongarch64:
927 loongarch::getLoongArchTargetFeatures(D, Triple, Args, Features);
928 break;
929 }
930
931 for (auto Feature : unifyTargetFeatures(Features)) {
932 CmdArgs.push_back(IsAux ? "-aux-target-feature" : "-target-feature");
933 CmdArgs.push_back(Feature.data());
934 }
935}
936
937llvm::StringRef tools::getLTOParallelism(const ArgList &Args, const Driver &D) {
938 Arg *LtoJobsArg = Args.getLastArg(options::OPT_flto_jobs_EQ);
939 if (!LtoJobsArg)
940 return {};
941 if (!llvm::get_threadpool_strategy(LtoJobsArg->getValue()))
942 D.Diag(diag::err_drv_invalid_int_value)
943 << LtoJobsArg->getAsString(Args) << LtoJobsArg->getValue();
944 return LtoJobsArg->getValue();
945}
946
947// PS4/PS5 uses -ffunction-sections and -fdata-sections by default.
948bool tools::isUseSeparateSections(const llvm::Triple &Triple) {
949 return Triple.isPS();
950}
951
953 const llvm::opt::ArgList &Args) {
954 const llvm::Triple &Triple = TC.getEffectiveTriple();
955 Arg *A = Args.getLastArg(options::OPT_mtls_dialect_EQ);
956 if (!A)
957 return Triple.hasDefaultTLSDESC();
958 StringRef V = A->getValue();
959 bool SupportedArgument = false, EnableTLSDESC = false;
960 bool Unsupported = !Triple.isOSBinFormatELF();
961 if (Triple.isLoongArch() || Triple.isRISCV()) {
962 SupportedArgument = V == "desc" || V == "trad";
963 EnableTLSDESC = V == "desc";
964 } else if (Triple.isX86()) {
965 SupportedArgument = V == "gnu" || V == "gnu2";
966 EnableTLSDESC = V == "gnu2";
967 } else {
968 Unsupported = true;
969 }
970 if (Unsupported) {
971 TC.getDriver().Diag(diag::err_drv_unsupported_opt_for_target)
972 << A->getSpelling() << Triple.getTriple();
973 } else if (!SupportedArgument) {
974 TC.getDriver().Diag(diag::err_drv_unsupported_option_argument_for_target)
975 << A->getSpelling() << V << Triple.getTriple();
976 }
977 return EnableTLSDESC;
978}
979
980void tools::addDTLTOOptions(const ToolChain &ToolChain, const ArgList &Args,
981 llvm::opt::ArgStringList &CmdArgs) {
982 if (Arg *A = Args.getLastArg(options::OPT_fthinlto_distributor_EQ)) {
983 CmdArgs.push_back(
984 Args.MakeArgString("--thinlto-distributor=" + Twine(A->getValue())));
985 const Driver &D = ToolChain.getDriver();
986 CmdArgs.push_back(Args.MakeArgString("--thinlto-remote-compiler=" +
987 Twine(D.getClangProgramPath())));
988 if (auto *PA = D.getPrependArg())
989 CmdArgs.push_back(Args.MakeArgString(
990 "--thinlto-remote-compiler-prepend-arg=" + Twine(PA)));
991
992 for (const auto &A :
993 Args.getAllArgValues(options::OPT_Xthinlto_distributor_EQ))
994 CmdArgs.push_back(Args.MakeArgString("--thinlto-distributor-arg=" + A));
995 }
996}
997
998void tools::addLTOOptions(const ToolChain &ToolChain, const ArgList &Args,
999 ArgStringList &CmdArgs, const InputInfo &Output,
1000 const InputInfoList &Inputs, bool IsThinLTO) {
1001 const llvm::Triple &Triple = ToolChain.getTriple();
1002 const bool IsOSAIX = Triple.isOSAIX();
1003 const bool IsAMDGCN = Triple.isAMDGCN();
1004 StringRef Linker = Args.getLastArgValue(options::OPT_fuse_ld_EQ);
1005 const char *LinkerPath = Args.MakeArgString(ToolChain.GetLinkerPath());
1006 const Driver &D = ToolChain.getDriver();
1007 const bool IsFatLTO = Args.hasFlag(options::OPT_ffat_lto_objects,
1008 options::OPT_fno_fat_lto_objects, false);
1009 const bool IsUnifiedLTO = Args.hasArg(options::OPT_funified_lto);
1010
1011 assert(!Inputs.empty() && "Must have at least one input.");
1012
1013 auto Input = llvm::find_if(
1014 Inputs, [](const InputInfo &II) -> bool { return II.isFilename(); });
1015 if (Input == Inputs.end()) {
1016 // For a very rare case, all of the inputs to the linker are
1017 // InputArg. If that happens, just use the first InputInfo.
1018 Input = Inputs.begin();
1019 }
1020
1021 if (Linker != "lld" && Linker != "lld-link" &&
1022 llvm::sys::path::filename(LinkerPath) != "ld.lld" &&
1023 llvm::sys::path::stem(LinkerPath) != "ld.lld" && !Triple.isOSOpenBSD()) {
1024 // Tell the linker to load the plugin. This has to come before
1025 // AddLinkerInputs as gold requires -plugin and AIX ld requires -bplugin to
1026 // come before any -plugin-opt/-bplugin_opt that -Wl might forward.
1027 const char *PluginPrefix = IsOSAIX ? "-bplugin:" : "";
1028 const char *PluginName = IsOSAIX ? "/libLTO" : "/LLVMgold";
1029
1030 if (!IsOSAIX)
1031 CmdArgs.push_back("-plugin");
1032
1033#if defined(_WIN32)
1034 const char *Suffix = ".dll";
1035#elif defined(__APPLE__)
1036 const char *Suffix = ".dylib";
1037#else
1038 const char *Suffix = ".so";
1039#endif
1040
1041 SmallString<1024> Plugin;
1042 llvm::sys::path::native(Twine(D.Dir) +
1043 "/../" CLANG_INSTALL_LIBDIR_BASENAME +
1044 PluginName + Suffix,
1045 Plugin);
1046 CmdArgs.push_back(Args.MakeArgString(Twine(PluginPrefix) + Plugin));
1047 } else {
1048 // Tell LLD to find and use .llvm.lto section in regular relocatable object
1049 // files
1050 if (IsFatLTO)
1051 CmdArgs.push_back("--fat-lto-objects");
1052
1053 if (Args.hasArg(options::OPT_flto_partitions_EQ)) {
1054 int Value = 0;
1055 StringRef A = Args.getLastArgValue(options::OPT_flto_partitions_EQ, "8");
1056 if (A.getAsInteger(10, Value) || (Value < 1)) {
1057 Arg *Arg = Args.getLastArg(options::OPT_flto_partitions_EQ);
1058 D.Diag(diag::err_drv_invalid_int_value)
1059 << Arg->getAsString(Args) << Arg->getValue();
1060 }
1061 CmdArgs.push_back(Args.MakeArgString("--lto-partitions=" + A));
1062 }
1063 }
1064
1065 const char *PluginOptPrefix = IsOSAIX ? "-bplugin_opt:" : "-plugin-opt=";
1066 const char *ExtraDash = IsOSAIX ? "-" : "";
1067 const char *ParallelismOpt = IsOSAIX ? "-threads=" : "jobs=";
1068
1069 // Note, this solution is far from perfect, better to encode it into IR
1070 // metadata, but this may not be worth it, since it looks like aranges is on
1071 // the way out.
1072 if (Args.hasArg(options::OPT_gdwarf_aranges)) {
1073 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
1074 "-generate-arange-section"));
1075 }
1076
1077 // Pass vector library arguments to LTO.
1078 Arg *ArgVecLib = Args.getLastArg(options::OPT_fveclib);
1079 if (ArgVecLib && ArgVecLib->getNumValues() == 1) {
1080 // Map the vector library names from clang front-end to opt front-end. The
1081 // values are taken from the TargetLibraryInfo class command line options.
1082 std::optional<StringRef> OptVal =
1083 llvm::StringSwitch<std::optional<StringRef>>(ArgVecLib->getValue())
1084 .Case("Accelerate", "Accelerate")
1085 .Case("libmvec", "LIBMVEC")
1086 .Case("AMDLIBM", "AMDLIBM")
1087 .Case("MASSV", "MASSV")
1088 .Case("SVML", "SVML")
1089 .Case("SLEEF", "sleefgnuabi")
1090 .Case("Darwin_libsystem_m", "Darwin_libsystem_m")
1091 .Case("ArmPL", "ArmPL")
1092 .Case("none", "none")
1093 .Default(std::nullopt);
1094
1095 if (OptVal)
1096 CmdArgs.push_back(Args.MakeArgString(
1097 Twine(PluginOptPrefix) + "-vector-library=" + OptVal.value()));
1098 }
1099
1100 // Try to pass driver level flags relevant to LTO code generation down to
1101 // the plugin.
1102
1103 // Handle flags for selecting CPU variants.
1104 std::string CPU = getCPUName(D, Args, Triple);
1105 if (!CPU.empty())
1106 CmdArgs.push_back(
1107 Args.MakeArgString(Twine(PluginOptPrefix) + ExtraDash + "mcpu=" + CPU));
1108
1109 if (Args.getLastArg(options::OPT_O_Group)) {
1110 unsigned OptimizationLevel =
1112 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + ExtraDash +
1113 "O" + Twine(OptimizationLevel)));
1114 if (IsAMDGCN)
1115 CmdArgs.push_back(
1116 Args.MakeArgString(Twine("--lto-CGO") + Twine(OptimizationLevel)));
1117 }
1118
1119 if (Args.hasArg(options::OPT_gsplit_dwarf)) {
1121 if (const Arg *A = Args.getLastArg(options::OPT_dumpdir)) {
1122 F = A->getValue();
1123 } else {
1124 F = Output.getFilename();
1125 F += "_";
1126 }
1127 CmdArgs.push_back(
1128 Args.MakeArgString(Twine(PluginOptPrefix) + "dwo_dir=" + F + "dwo"));
1129 }
1130
1131 if (IsThinLTO && !IsOSAIX)
1132 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + "thinlto"));
1133 else if (IsThinLTO && IsOSAIX)
1134 CmdArgs.push_back(Args.MakeArgString(Twine("-bdbg:thinlto")));
1135
1136 // Matrix intrinsic lowering happens at link time with ThinLTO. Enable
1137 // LowerMatrixIntrinsicsPass, which is transitively called by
1138 // buildThinLTODefaultPipeline under EnableMatrix.
1139 if ((IsThinLTO || IsFatLTO || IsUnifiedLTO) &&
1140 Args.hasArg(options::OPT_fenable_matrix))
1141 CmdArgs.push_back(
1142 Args.MakeArgString(Twine(PluginOptPrefix) + "-enable-matrix"));
1143
1144 StringRef Parallelism = getLTOParallelism(Args, D);
1145 if (!Parallelism.empty())
1146 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
1147 ParallelismOpt + Parallelism));
1148
1149 // Pass down GlobalISel options.
1150 if (Arg *A = Args.getLastArg(options::OPT_fglobal_isel,
1151 options::OPT_fno_global_isel)) {
1152 // Parsing -fno-global-isel explicitly gives architectures that enable GISel
1153 // by default a chance to disable it.
1154 CmdArgs.push_back(Args.MakeArgString(
1155 Twine(PluginOptPrefix) + "-global-isel=" +
1156 (A->getOption().matches(options::OPT_fglobal_isel) ? "1" : "0")));
1157 }
1158
1159 // If an explicit debugger tuning argument appeared, pass it along.
1160 if (Arg *A =
1161 Args.getLastArg(options::OPT_gTune_Group, options::OPT_ggdbN_Group)) {
1162 if (A->getOption().matches(options::OPT_glldb))
1163 CmdArgs.push_back(
1164 Args.MakeArgString(Twine(PluginOptPrefix) + "-debugger-tune=lldb"));
1165 else if (A->getOption().matches(options::OPT_gsce))
1166 CmdArgs.push_back(
1167 Args.MakeArgString(Twine(PluginOptPrefix) + "-debugger-tune=sce"));
1168 else if (A->getOption().matches(options::OPT_gdbx))
1169 CmdArgs.push_back(
1170 Args.MakeArgString(Twine(PluginOptPrefix) + "-debugger-tune=dbx"));
1171 else
1172 CmdArgs.push_back(
1173 Args.MakeArgString(Twine(PluginOptPrefix) + "-debugger-tune=gdb"));
1174 }
1175
1176 if (IsOSAIX) {
1178 CmdArgs.push_back(
1179 Args.MakeArgString(Twine(PluginOptPrefix) + "-no-integrated-as=1"));
1180
1181 // On AIX, clang assumes strict-dwarf is true if any debug option is
1182 // specified, unless it is told explicitly not to assume so.
1183 Arg *A = Args.getLastArg(options::OPT_g_Group);
1184 bool EnableDebugInfo = A && !A->getOption().matches(options::OPT_g0) &&
1185 !A->getOption().matches(options::OPT_ggdb0);
1186 if (EnableDebugInfo && Args.hasFlag(options::OPT_gstrict_dwarf,
1187 options::OPT_gno_strict_dwarf, true))
1188 CmdArgs.push_back(
1189 Args.MakeArgString(Twine(PluginOptPrefix) + "-strict-dwarf=true"));
1190
1191 for (const Arg *A : Args.filtered_reverse(options::OPT_mabi_EQ)) {
1192 StringRef V = A->getValue();
1193 if (V == "vec-default")
1194 break;
1195 if (V == "vec-extabi") {
1196 CmdArgs.push_back(
1197 Args.MakeArgString(Twine(PluginOptPrefix) + "-vec-extabi"));
1198 break;
1199 }
1200 }
1201 }
1202
1203 bool UseSeparateSections =
1205
1206 if (Args.hasFlag(options::OPT_ffunction_sections,
1207 options::OPT_fno_function_sections, UseSeparateSections))
1208 CmdArgs.push_back(
1209 Args.MakeArgString(Twine(PluginOptPrefix) + "-function-sections=1"));
1210 else if (Args.hasArg(options::OPT_fno_function_sections))
1211 CmdArgs.push_back(
1212 Args.MakeArgString(Twine(PluginOptPrefix) + "-function-sections=0"));
1213
1214 bool DataSectionsTurnedOff = false;
1215 if (Args.hasFlag(options::OPT_fdata_sections, options::OPT_fno_data_sections,
1216 UseSeparateSections)) {
1217 CmdArgs.push_back(
1218 Args.MakeArgString(Twine(PluginOptPrefix) + "-data-sections=1"));
1219 } else if (Args.hasArg(options::OPT_fno_data_sections)) {
1220 DataSectionsTurnedOff = true;
1221 CmdArgs.push_back(
1222 Args.MakeArgString(Twine(PluginOptPrefix) + "-data-sections=0"));
1223 }
1224
1225 if (Args.hasArg(options::OPT_mxcoff_roptr) ||
1226 Args.hasArg(options::OPT_mno_xcoff_roptr)) {
1227 bool HasRoptr = Args.hasFlag(options::OPT_mxcoff_roptr,
1228 options::OPT_mno_xcoff_roptr, false);
1229 StringRef OptStr = HasRoptr ? "-mxcoff-roptr" : "-mno-xcoff-roptr";
1230 if (!IsOSAIX)
1231 D.Diag(diag::err_drv_unsupported_opt_for_target)
1232 << OptStr << Triple.str();
1233
1234 if (HasRoptr) {
1235 // The data sections option is on by default on AIX. We only need to error
1236 // out when -fno-data-sections is specified explicitly to turn off data
1237 // sections.
1238 if (DataSectionsTurnedOff)
1239 D.Diag(diag::err_roptr_requires_data_sections);
1240
1241 CmdArgs.push_back(
1242 Args.MakeArgString(Twine(PluginOptPrefix) + "-mxcoff-roptr"));
1243 }
1244 }
1245
1246 // Pass an option to enable split machine functions.
1247 if (auto *A = Args.getLastArg(options::OPT_fsplit_machine_functions,
1248 options::OPT_fno_split_machine_functions)) {
1249 if (A->getOption().matches(options::OPT_fsplit_machine_functions))
1250 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
1251 "-split-machine-functions"));
1252 }
1253
1254 if (auto *A =
1255 Args.getLastArg(options::OPT_fpartition_static_data_sections,
1256 options::OPT_fno_partition_static_data_sections)) {
1257 if (A->getOption().matches(options::OPT_fpartition_static_data_sections)) {
1258 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
1259 "-partition-static-data-sections"));
1260 }
1261 }
1262
1263 if (Arg *A = getLastProfileSampleUseArg(Args)) {
1264 StringRef FName = A->getValue();
1265 if (!llvm::sys::fs::exists(FName))
1266 D.Diag(diag::err_drv_no_such_file) << FName;
1267 else
1268 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
1269 "sample-profile=" + FName));
1270 }
1271
1272 if (auto *CSPGOGenerateArg = getLastCSProfileGenerateArg(Args)) {
1273 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + ExtraDash +
1274 "cs-profile-generate"));
1275 if (CSPGOGenerateArg->getOption().matches(
1276 options::OPT_fcs_profile_generate_EQ)) {
1277 SmallString<128> Path(CSPGOGenerateArg->getValue());
1278 llvm::sys::path::append(Path, "default_%m.profraw");
1279 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + ExtraDash +
1280 "cs-profile-path=" + Path));
1281 } else
1282 CmdArgs.push_back(
1283 Args.MakeArgString(Twine(PluginOptPrefix) + ExtraDash +
1284 "cs-profile-path=default_%m.profraw"));
1285 } else if (auto *ProfileUseArg = getLastProfileUseArg(Args)) {
1286 SmallString<128> Path(
1287 ProfileUseArg->getNumValues() == 0 ? "" : ProfileUseArg->getValue());
1288 if (Path.empty() || llvm::sys::fs::is_directory(Path))
1289 llvm::sys::path::append(Path, "default.profdata");
1290 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + ExtraDash +
1291 "cs-profile-path=" + Path));
1292 }
1293
1294 // This controls whether or not we perform JustMyCode instrumentation.
1295 if (Args.hasFlag(options::OPT_fjmc, options::OPT_fno_jmc, false)) {
1296 if (ToolChain.getEffectiveTriple().isOSBinFormatELF())
1297 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) +
1298 "-enable-jmc-instrument"));
1299 else
1300 D.Diag(clang::diag::warn_drv_fjmc_for_elf_only);
1301 }
1302
1303 if (Args.hasFlag(options::OPT_femulated_tls, options::OPT_fno_emulated_tls,
1304 Triple.hasDefaultEmulatedTLS())) {
1305 CmdArgs.push_back(
1306 Args.MakeArgString(Twine(PluginOptPrefix) + "-emulated-tls"));
1307 }
1308 if (isTLSDESCEnabled(ToolChain, Args))
1309 CmdArgs.push_back(
1310 Args.MakeArgString(Twine(PluginOptPrefix) + "-enable-tlsdesc"));
1311
1312 if (Args.hasFlag(options::OPT_fstack_size_section,
1313 options::OPT_fno_stack_size_section, false))
1314 CmdArgs.push_back(
1315 Args.MakeArgString(Twine(PluginOptPrefix) + "-stack-size-section"));
1316
1317 if (Args.hasFlag(options::OPT_fexperimental_call_graph_section,
1318 options::OPT_fno_experimental_call_graph_section, false))
1319 CmdArgs.push_back(
1320 Args.MakeArgString(Twine(PluginOptPrefix) + "-call-graph-section"));
1321
1322 // Setup statistics file output.
1323 SmallString<128> StatsFile = getStatsFileName(Args, Output, *Input, D);
1324 if (!StatsFile.empty())
1325 CmdArgs.push_back(
1326 Args.MakeArgString(Twine(PluginOptPrefix) + "stats-file=" + StatsFile));
1327
1328 // Setup crash diagnostics dir.
1329 if (Arg *A = Args.getLastArg(options::OPT_fcrash_diagnostics_dir))
1330 CmdArgs.push_back(Args.MakeArgString(
1331 Twine(PluginOptPrefix) + "-crash-diagnostics-dir=" + A->getValue()));
1332
1333 addX86AlignBranchArgs(D, Args, CmdArgs, /*IsLTO=*/true, PluginOptPrefix);
1334
1335 // Handle remark diagnostics on screen options: '-Rpass-*'.
1336 renderRpassOptions(Args, CmdArgs, PluginOptPrefix);
1337
1338 // Handle serialized remarks options: '-fsave-optimization-record'
1339 // and '-foptimization-record-*'.
1340 if (willEmitRemarks(Args))
1341 renderRemarksOptions(Args, CmdArgs, ToolChain.getEffectiveTriple(), *Input,
1342 Output, PluginOptPrefix);
1343
1344 // Handle remarks hotness/threshold related options.
1345 renderRemarksHotnessOptions(Args, CmdArgs, PluginOptPrefix);
1346
1348 /*IsLTO=*/true, PluginOptPrefix);
1349
1350 bool IsELF = Triple.isOSBinFormatELF();
1351 bool Crel = false;
1352 bool ImplicitMapSyms = false;
1353 for (const Arg *A : Args.filtered(options::OPT_Wa_COMMA)) {
1354 for (StringRef V : A->getValues()) {
1355 auto Equal = V.split('=');
1356 auto checkArg = [&](bool ValidTarget,
1357 std::initializer_list<const char *> Set) {
1358 if (!ValidTarget) {
1359 D.Diag(diag::err_drv_unsupported_opt_for_target)
1360 << (Twine("-Wa,") + Equal.first + "=").str()
1361 << Triple.getTriple();
1362 } else if (!llvm::is_contained(Set, Equal.second)) {
1363 D.Diag(diag::err_drv_unsupported_option_argument)
1364 << (Twine("-Wa,") + Equal.first + "=").str() << Equal.second;
1365 }
1366 };
1367 if (Equal.first == "-mmapsyms") {
1368 ImplicitMapSyms = Equal.second == "implicit";
1369 checkArg(IsELF && Triple.isAArch64(), {"default", "implicit"});
1370 } else if (V == "--crel")
1371 Crel = true;
1372 else if (V == "--no-crel")
1373 Crel = false;
1374 else
1375 continue;
1376 A->claim();
1377 }
1378 }
1379 if (Crel) {
1380 if (IsELF && !Triple.isMIPS()) {
1381 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + "-crel"));
1382 } else {
1383 D.Diag(diag::err_drv_unsupported_opt_for_target)
1384 << "-Wa,--crel" << D.getTargetTriple();
1385 }
1386 }
1387 if (ImplicitMapSyms)
1388 CmdArgs.push_back(
1389 Args.MakeArgString(Twine(PluginOptPrefix) + "-implicit-mapsyms"));
1390
1391 if (Args.hasArg(options::OPT_ftime_report))
1392 CmdArgs.push_back(
1393 Args.MakeArgString(Twine(PluginOptPrefix) + "-time-passes"));
1394
1395 addDTLTOOptions(ToolChain, Args, CmdArgs);
1396}
1397
1399 const ArgList &Args,
1400 ArgStringList &CmdArgs) {
1401 // Default to clang lib / lib64 folder, i.e. the same location as device
1402 // runtime.
1403 SmallString<256> DefaultLibPath =
1404 llvm::sys::path::parent_path(TC.getDriver().Dir);
1405 llvm::sys::path::append(DefaultLibPath, CLANG_INSTALL_LIBDIR_BASENAME);
1406 CmdArgs.push_back(Args.MakeArgString("-L" + DefaultLibPath));
1407}
1408
1409void tools::addArchSpecificRPath(const ToolChain &TC, const ArgList &Args,
1410 ArgStringList &CmdArgs) {
1411 if (!Args.hasFlag(options::OPT_frtlib_add_rpath,
1412 options::OPT_fno_rtlib_add_rpath, false))
1413 return;
1414
1415 if (TC.getTriple().isOSAIX()) // TODO: AIX doesn't support -rpath option.
1416 return;
1417
1419 if (const auto StdlibPath = TC.getStdlibPath()) {
1420 for (const Multilib &M : llvm::reverse(TC.getSelectedMultilibs())) {
1421 if (M.isDefault())
1422 continue;
1423 SmallString<128> P(*StdlibPath);
1424 llvm::sys::path::append(P, M.gccSuffix());
1425 CandidateRPaths.emplace_back(std::string(P));
1426 }
1427 CandidateRPaths.emplace_back(*StdlibPath);
1428 }
1429 for (const auto &CandidateRPath : CandidateRPaths) {
1430 if (TC.getVFS().exists(CandidateRPath)) {
1431 CmdArgs.push_back("-rpath");
1432 CmdArgs.push_back(Args.MakeArgString(CandidateRPath));
1433 }
1434 }
1435}
1436
1437bool tools::addOpenMPRuntime(const Compilation &C, ArgStringList &CmdArgs,
1438 const ToolChain &TC, const ArgList &Args,
1439 bool ForceStaticHostRuntime, bool IsOffloadingHost,
1440 bool GompNeedsRT) {
1441 if (!Args.hasFlag(options::OPT_fopenmp, options::OPT_fopenmp_EQ,
1442 options::OPT_fno_openmp, false)) {
1443 // We need libomptarget (liboffload) if it's the choosen offloading runtime.
1444 if (Args.hasFlag(options::OPT_foffload_via_llvm,
1445 options::OPT_fno_offload_via_llvm, false))
1446 CmdArgs.push_back("-lomptarget");
1447 return false;
1448 }
1449
1451
1452 if (RTKind == Driver::OMPRT_Unknown)
1453 // Already diagnosed.
1454 return false;
1455
1456 if (ForceStaticHostRuntime)
1457 CmdArgs.push_back("-Bstatic");
1458
1459 switch (RTKind) {
1460 case Driver::OMPRT_OMP:
1461 CmdArgs.push_back("-lomp");
1462 break;
1463 case Driver::OMPRT_GOMP:
1464 CmdArgs.push_back("-lgomp");
1465 break;
1467 CmdArgs.push_back("-liomp5");
1468 break;
1470 break;
1471 }
1472
1473 if (ForceStaticHostRuntime)
1474 CmdArgs.push_back("-Bdynamic");
1475
1476 if (RTKind == Driver::OMPRT_GOMP && GompNeedsRT)
1477 CmdArgs.push_back("-lrt");
1478
1479 if (IsOffloadingHost)
1480 CmdArgs.push_back("-lomptarget");
1481
1482 addArchSpecificRPath(TC, Args, CmdArgs);
1483
1484 addOpenMPRuntimeLibraryPath(TC, Args, CmdArgs);
1485
1486 return true;
1487}
1488
1490 const JobAction &JA,
1491 const llvm::opt::ArgList &Args,
1492 llvm::opt::ArgStringList &CmdArgs) {
1494 return;
1495
1496 // For all the host OpenMP offloading compile jobs we need to pass the targets
1497 // information using -fopenmp-targets= option.
1498 constexpr llvm::StringLiteral Targets("--offload-targets=");
1499
1500 SmallVector<StringRef> Triples;
1501 auto TCRange = C.getOffloadToolChains<Action::OFK_OpenMP>();
1502 std::transform(TCRange.first, TCRange.second, std::back_inserter(Triples),
1503 [](auto TC) { return TC.second->getTripleString(); });
1504 CmdArgs.push_back(
1505 Args.MakeArgString(Twine(Targets) + llvm::join(Triples, ",")));
1506}
1507
1508static void addSanitizerRuntime(const ToolChain &TC, const ArgList &Args,
1509 ArgStringList &CmdArgs, StringRef Sanitizer,
1510 bool IsShared, bool IsWhole) {
1511 // Wrap any static runtimes that must be forced into executable in
1512 // whole-archive.
1513 if (IsWhole) CmdArgs.push_back("--whole-archive");
1514 CmdArgs.push_back(TC.getCompilerRTArgString(
1515 Args, Sanitizer, IsShared ? ToolChain::FT_Shared : ToolChain::FT_Static));
1516 if (IsWhole) CmdArgs.push_back("--no-whole-archive");
1517
1518 if (IsShared) {
1519 addArchSpecificRPath(TC, Args, CmdArgs);
1520 }
1521}
1522
1523// Tries to use a file with the list of dynamic symbols that need to be exported
1524// from the runtime library. Returns true if the file was found.
1525static bool addSanitizerDynamicList(const ToolChain &TC, const ArgList &Args,
1526 ArgStringList &CmdArgs,
1527 StringRef Sanitizer) {
1528 bool LinkerIsGnuLd = solaris::isLinkerGnuLd(TC, Args);
1529
1530 // Solaris ld defaults to --export-dynamic behaviour but doesn't support
1531 // the option, so don't try to pass it.
1532 if (TC.getTriple().isOSSolaris() && !LinkerIsGnuLd)
1533 return true;
1534 SmallString<128> SanRT(TC.getCompilerRT(Args, Sanitizer));
1535 if (llvm::sys::fs::exists(SanRT + ".syms")) {
1536 CmdArgs.push_back(Args.MakeArgString("--dynamic-list=" + SanRT + ".syms"));
1537 return true;
1538 }
1539 return false;
1540}
1541
1543 const llvm::opt::ArgList &Args,
1544 llvm::opt::ArgStringList &CmdArgs,
1545 bool as_needed) {
1546 assert(!TC.getTriple().isOSAIX() &&
1547 "AIX linker does not support any form of --as-needed option yet.");
1548 bool LinkerIsGnuLd = solaris::isLinkerGnuLd(TC, Args);
1549
1550 // While the Solaris 11.2 ld added --as-needed/--no-as-needed as aliases
1551 // for the native forms -z ignore/-z record, they are missing in Illumos,
1552 // so always use the native form.
1553 // GNU ld doesn't support -z ignore/-z record, so don't use them even on
1554 // Solaris.
1555 if (TC.getTriple().isOSSolaris() && !LinkerIsGnuLd) {
1556 CmdArgs.push_back("-z");
1557 CmdArgs.push_back(as_needed ? "ignore" : "record");
1558 } else {
1559 CmdArgs.push_back(as_needed ? "--as-needed" : "--no-as-needed");
1560 }
1561}
1562
1564 const llvm::opt::ArgList &Args,
1565 ArgStringList &CmdArgs) {
1566 // Force linking against the system libraries sanitizers depends on
1567 // (see PR15823 why this is necessary).
1568 addAsNeededOption(TC, Args, CmdArgs, false);
1569 // There's no libpthread or librt on RTEMS & Android.
1570 if (TC.getTriple().getOS() != llvm::Triple::RTEMS &&
1571 !TC.getTriple().isAndroid() && !TC.getTriple().isOHOSFamily()) {
1572 CmdArgs.push_back("-lpthread");
1573 if (!TC.getTriple().isOSOpenBSD() && !TC.getTriple().isOSHaiku())
1574 CmdArgs.push_back("-lrt");
1575 }
1576 CmdArgs.push_back("-lm");
1577 // There's no libdl on all OSes.
1578 if (!TC.getTriple().isOSFreeBSD() && !TC.getTriple().isOSNetBSD() &&
1579 !TC.getTriple().isOSOpenBSD() && !TC.getTriple().isOSDragonFly() &&
1580 !TC.getTriple().isOSHaiku() &&
1581 TC.getTriple().getOS() != llvm::Triple::RTEMS)
1582 CmdArgs.push_back("-ldl");
1583 // Required for backtrace on some OSes
1584 if (TC.getTriple().isOSFreeBSD() || TC.getTriple().isOSNetBSD() ||
1585 TC.getTriple().isOSOpenBSD() || TC.getTriple().isOSDragonFly())
1586 CmdArgs.push_back("-lexecinfo");
1587 if (TC.getTriple().isOSHaiku())
1588 CmdArgs.push_back("-lbsd");
1589 // There is no libresolv on Android, FreeBSD, OpenBSD, etc. On musl
1590 // libresolv.a, even if exists, is an empty archive to satisfy POSIX -lresolv
1591 // requirement.
1592 if (TC.getTriple().isOSLinux() && !TC.getTriple().isAndroid() &&
1593 !TC.getTriple().isMusl())
1594 CmdArgs.push_back("-lresolv");
1595}
1596
1597static void
1598collectSanitizerRuntimes(const ToolChain &TC, const ArgList &Args,
1599 SmallVectorImpl<StringRef> &SharedRuntimes,
1600 SmallVectorImpl<StringRef> &StaticRuntimes,
1601 SmallVectorImpl<StringRef> &NonWholeStaticRuntimes,
1602 SmallVectorImpl<StringRef> &HelperStaticRuntimes,
1603 SmallVectorImpl<StringRef> &RequiredSymbols) {
1604 assert(!TC.getTriple().isOSDarwin() && "it's not used by Darwin");
1605 const SanitizerArgs &SanArgs = TC.getSanitizerArgs(Args);
1606 // Collect shared runtimes.
1607 if (SanArgs.needsSharedRt()) {
1608 if (SanArgs.needsAsanRt()) {
1609 SharedRuntimes.push_back("asan");
1610 if (!Args.hasArg(options::OPT_shared) && !TC.getTriple().isAndroid())
1611 HelperStaticRuntimes.push_back("asan-preinit");
1612 }
1613 if (SanArgs.needsMemProfRt()) {
1614 SharedRuntimes.push_back("memprof");
1615 if (!Args.hasArg(options::OPT_shared) && !TC.getTriple().isAndroid())
1616 HelperStaticRuntimes.push_back("memprof-preinit");
1617 }
1618 if (SanArgs.needsNsanRt())
1619 SharedRuntimes.push_back("nsan");
1620 if (SanArgs.needsUbsanRt()) {
1621 if (SanArgs.requiresMinimalRuntime())
1622 SharedRuntimes.push_back("ubsan_minimal");
1623 else
1624 SharedRuntimes.push_back("ubsan_standalone");
1625 }
1626 if (SanArgs.needsScudoRt()) {
1627 SharedRuntimes.push_back("scudo_standalone");
1628 }
1629 if (SanArgs.needsTsanRt())
1630 SharedRuntimes.push_back("tsan");
1631 if (SanArgs.needsTysanRt())
1632 SharedRuntimes.push_back("tysan");
1633 if (SanArgs.needsHwasanRt()) {
1634 if (SanArgs.needsHwasanAliasesRt())
1635 SharedRuntimes.push_back("hwasan_aliases");
1636 else
1637 SharedRuntimes.push_back("hwasan");
1638 if (!Args.hasArg(options::OPT_shared))
1639 HelperStaticRuntimes.push_back("hwasan-preinit");
1640 }
1641 if (SanArgs.needsRtsanRt() && SanArgs.linkRuntimes())
1642 SharedRuntimes.push_back("rtsan");
1643 }
1644
1645 // The stats_client library is also statically linked into DSOs.
1646 if (SanArgs.needsStatsRt())
1647 StaticRuntimes.push_back("stats_client");
1648
1649 // Always link the static runtime regardless of DSO or executable.
1650 if (SanArgs.needsAsanRt())
1651 HelperStaticRuntimes.push_back("asan_static");
1652
1653 // Collect static runtimes.
1654 if (Args.hasArg(options::OPT_shared)) {
1655 // Don't link static runtimes into DSOs.
1656 return;
1657 }
1658
1659 // Each static runtime that has a DSO counterpart above is excluded below,
1660 // but runtimes that exist only as static are not affected by needsSharedRt.
1661
1662 if (!SanArgs.needsSharedRt() && SanArgs.needsAsanRt()) {
1663 StaticRuntimes.push_back("asan");
1664 if (SanArgs.linkCXXRuntimes())
1665 StaticRuntimes.push_back("asan_cxx");
1666 }
1667
1668 if (!SanArgs.needsSharedRt() && SanArgs.needsRtsanRt() &&
1669 SanArgs.linkRuntimes())
1670 StaticRuntimes.push_back("rtsan");
1671
1672 if (!SanArgs.needsSharedRt() && SanArgs.needsMemProfRt()) {
1673 StaticRuntimes.push_back("memprof");
1674 if (SanArgs.linkCXXRuntimes())
1675 StaticRuntimes.push_back("memprof_cxx");
1676 }
1677
1678 if (!SanArgs.needsSharedRt() && SanArgs.needsHwasanRt()) {
1679 if (SanArgs.needsHwasanAliasesRt()) {
1680 StaticRuntimes.push_back("hwasan_aliases");
1681 if (SanArgs.linkCXXRuntimes())
1682 StaticRuntimes.push_back("hwasan_aliases_cxx");
1683 } else {
1684 StaticRuntimes.push_back("hwasan");
1685 if (SanArgs.linkCXXRuntimes())
1686 StaticRuntimes.push_back("hwasan_cxx");
1687 }
1688 }
1689 if (SanArgs.needsDfsanRt())
1690 StaticRuntimes.push_back("dfsan");
1691 if (SanArgs.needsLsanRt())
1692 StaticRuntimes.push_back("lsan");
1693 if (SanArgs.needsMsanRt()) {
1694 StaticRuntimes.push_back("msan");
1695 if (SanArgs.linkCXXRuntimes())
1696 StaticRuntimes.push_back("msan_cxx");
1697 }
1698 if (!SanArgs.needsSharedRt() && SanArgs.needsNsanRt())
1699 StaticRuntimes.push_back("nsan");
1700 if (!SanArgs.needsSharedRt() && SanArgs.needsTsanRt()) {
1701 StaticRuntimes.push_back("tsan");
1702 if (SanArgs.linkCXXRuntimes())
1703 StaticRuntimes.push_back("tsan_cxx");
1704 }
1705 if (!SanArgs.needsSharedRt() && SanArgs.needsTysanRt())
1706 StaticRuntimes.push_back("tysan");
1707 if (!SanArgs.needsSharedRt() && SanArgs.needsUbsanRt()) {
1708 if (SanArgs.requiresMinimalRuntime()) {
1709 StaticRuntimes.push_back("ubsan_minimal");
1710 } else {
1711 StaticRuntimes.push_back("ubsan_standalone");
1712 }
1713 }
1714 if (SanArgs.needsSafeStackRt()) {
1715 NonWholeStaticRuntimes.push_back("safestack");
1716 RequiredSymbols.push_back("__safestack_init");
1717 }
1718 if (!(SanArgs.needsSharedRt() && SanArgs.needsUbsanRt())) {
1719 if (SanArgs.needsCfiCrossDsoRt())
1720 StaticRuntimes.push_back("cfi");
1721 if (SanArgs.needsCfiCrossDsoDiagRt())
1722 StaticRuntimes.push_back("cfi_diag");
1723 }
1724 if (SanArgs.linkCXXRuntimes() && !SanArgs.requiresMinimalRuntime() &&
1725 ((!SanArgs.needsSharedRt() && SanArgs.needsUbsanCXXRt()) ||
1726 SanArgs.needsCfiCrossDsoDiagRt())) {
1727 StaticRuntimes.push_back("ubsan_standalone_cxx");
1728 }
1729 if (SanArgs.needsStatsRt()) {
1730 NonWholeStaticRuntimes.push_back("stats");
1731 RequiredSymbols.push_back("__sanitizer_stats_register");
1732 }
1733 if (!SanArgs.needsSharedRt() && SanArgs.needsScudoRt()) {
1734 StaticRuntimes.push_back("scudo_standalone");
1735 if (SanArgs.linkCXXRuntimes())
1736 StaticRuntimes.push_back("scudo_standalone_cxx");
1737 }
1738 if (SanArgs.needsUbsanLoopDetectRt())
1739 NonWholeStaticRuntimes.push_back("ubsan_loop_detect");
1740}
1741
1742// Should be called before we add system libraries (C++ ABI, libstdc++/libc++,
1743// C runtime, etc). Returns true if sanitizer system deps need to be linked in.
1744bool tools::addSanitizerRuntimes(const ToolChain &TC, const ArgList &Args,
1745 ArgStringList &CmdArgs) {
1746 const SanitizerArgs &SanArgs = TC.getSanitizerArgs(Args);
1747 SmallVector<StringRef, 4> SharedRuntimes, StaticRuntimes,
1748 NonWholeStaticRuntimes, HelperStaticRuntimes, RequiredSymbols;
1749 if (SanArgs.linkRuntimes()) {
1750 collectSanitizerRuntimes(TC, Args, SharedRuntimes, StaticRuntimes,
1751 NonWholeStaticRuntimes, HelperStaticRuntimes,
1752 RequiredSymbols);
1753 }
1754
1755 // -u options must be added before the runtime libs that resolve them.
1756 for (auto S : RequiredSymbols) {
1757 CmdArgs.push_back("-u");
1758 CmdArgs.push_back(Args.MakeArgString(S));
1759 }
1760
1761 // Add shared runtimes before adding fuzzer and its dependencies.
1762 for (auto RT : SharedRuntimes)
1763 addSanitizerRuntime(TC, Args, CmdArgs, RT, true, false);
1764
1765 // Inject libfuzzer dependencies.
1766 bool FuzzerNeedsSanitizerDeps = false;
1767 if (SanArgs.needsFuzzer() && SanArgs.linkRuntimes() &&
1768 !Args.hasArg(options::OPT_shared)) {
1769
1770 addSanitizerRuntime(TC, Args, CmdArgs, "fuzzer", false, true);
1771 FuzzerNeedsSanitizerDeps = true;
1772 if (SanArgs.needsFuzzerInterceptors())
1773 addSanitizerRuntime(TC, Args, CmdArgs, "fuzzer_interceptors", false,
1774 true);
1775 if (!Args.hasArg(options::OPT_nostdlibxx)) {
1776 bool OnlyLibstdcxxStatic = Args.hasArg(options::OPT_static_libstdcxx) &&
1777 !Args.hasArg(options::OPT_static);
1778 if (OnlyLibstdcxxStatic)
1779 CmdArgs.push_back("-Bstatic");
1780 TC.AddCXXStdlibLibArgs(Args, CmdArgs);
1781 if (OnlyLibstdcxxStatic)
1782 CmdArgs.push_back("-Bdynamic");
1783 }
1784 }
1785
1786 for (auto RT : HelperStaticRuntimes)
1787 addSanitizerRuntime(TC, Args, CmdArgs, RT, false, true);
1788 bool AddExportDynamic = false;
1789 for (auto RT : StaticRuntimes) {
1790 addSanitizerRuntime(TC, Args, CmdArgs, RT, false, true);
1791 AddExportDynamic |= !addSanitizerDynamicList(TC, Args, CmdArgs, RT);
1792 }
1793 for (auto RT : NonWholeStaticRuntimes) {
1794 addSanitizerRuntime(TC, Args, CmdArgs, RT, false, false);
1795 AddExportDynamic |= !addSanitizerDynamicList(TC, Args, CmdArgs, RT);
1796 }
1797 // If there is a static runtime with no dynamic list, force all the symbols
1798 // to be dynamic to be sure we export sanitizer interface functions.
1799 if (AddExportDynamic)
1800 CmdArgs.push_back("--export-dynamic");
1801
1802 if (SanArgs.hasCrossDsoCfi() && !AddExportDynamic)
1803 CmdArgs.push_back("--export-dynamic-symbol=__cfi_check");
1804
1805 if (SanArgs.hasMemTag()) {
1806 CmdArgs.push_back("-z");
1807 CmdArgs.push_back(
1808 Args.MakeArgString("memtag-mode=" + SanArgs.getMemtagMode()));
1809
1810 if (SanArgs.hasMemtagHeap()) {
1811 CmdArgs.push_back("-z");
1812 CmdArgs.push_back("memtag-heap");
1813 }
1814
1815 if (SanArgs.hasMemtagStack()) {
1816 CmdArgs.push_back("-z");
1817 CmdArgs.push_back("memtag-stack");
1818 }
1819
1820 if (TC.getTriple().isAndroid())
1821 CmdArgs.push_back("--android-memtag-note");
1822 }
1823
1824 return !StaticRuntimes.empty() || !NonWholeStaticRuntimes.empty() ||
1825 FuzzerNeedsSanitizerDeps;
1826}
1827
1828bool tools::addXRayRuntime(const ToolChain&TC, const ArgList &Args, ArgStringList &CmdArgs) {
1829 const XRayArgs &XRay = TC.getXRayArgs(Args);
1830 if (Args.hasArg(options::OPT_shared)) {
1831 if (XRay.needsXRayDSORt()) {
1832 CmdArgs.push_back("--whole-archive");
1833 CmdArgs.push_back(TC.getCompilerRTArgString(Args, "xray-dso"));
1834 CmdArgs.push_back("--no-whole-archive");
1835 return true;
1836 }
1837 } else if (XRay.needsXRayRt()) {
1838 CmdArgs.push_back("--whole-archive");
1839 CmdArgs.push_back(TC.getCompilerRTArgString(Args, "xray"));
1840 for (const auto &Mode : XRay.modeList())
1841 CmdArgs.push_back(TC.getCompilerRTArgString(Args, Mode));
1842 CmdArgs.push_back("--no-whole-archive");
1843 return true;
1844 }
1845
1846 return false;
1847}
1848
1850 const llvm::opt::ArgList &Args,
1851 ArgStringList &CmdArgs) {
1852 addAsNeededOption(TC, Args, CmdArgs, false);
1853 CmdArgs.push_back("-lpthread");
1854 if (!TC.getTriple().isOSOpenBSD())
1855 CmdArgs.push_back("-lrt");
1856 CmdArgs.push_back("-lm");
1857
1858 if (!TC.getTriple().isOSFreeBSD() &&
1859 !TC.getTriple().isOSNetBSD() &&
1860 !TC.getTriple().isOSOpenBSD())
1861 CmdArgs.push_back("-ldl");
1862}
1863
1864bool tools::areOptimizationsEnabled(const ArgList &Args) {
1865 // Find the last -O arg and see if it is non-zero.
1866 if (Arg *A = Args.getLastArg(options::OPT_O_Group))
1867 return !A->getOption().matches(options::OPT_O0);
1868 // Defaults to -O0.
1869 return false;
1870}
1871
1872const char *tools::SplitDebugName(const JobAction &JA, const ArgList &Args,
1873 const InputInfo &Input,
1874 const InputInfo &Output) {
1875 auto AddPostfix = [JA](auto &F) {
1877 F += (Twine("_") + JA.getOffloadingArch()).str();
1878 F += ".dwo";
1879 };
1880 if (Arg *A = Args.getLastArg(options::OPT_gsplit_dwarf_EQ))
1881 if (StringRef(A->getValue()) == "single" && Output.isFilename())
1882 return Args.MakeArgString(Output.getFilename());
1883
1885 if (const Arg *A = Args.getLastArg(options::OPT_dumpdir)) {
1886 T = A->getValue();
1887 } else {
1888 Arg *FinalOutput = Args.getLastArg(options::OPT_o, options::OPT__SLASH_o);
1889 if (FinalOutput && Args.hasArg(options::OPT_c)) {
1890 T = FinalOutput->getValue();
1891 llvm::sys::path::remove_filename(T);
1892 llvm::sys::path::append(T,
1893 llvm::sys::path::stem(FinalOutput->getValue()));
1894 AddPostfix(T);
1895 return Args.MakeArgString(T);
1896 }
1897 }
1898
1899 T += llvm::sys::path::stem(Input.getBaseInput());
1900 AddPostfix(T);
1901 return Args.MakeArgString(T);
1902}
1903
1904void tools::SplitDebugInfo(const ToolChain &TC, Compilation &C, const Tool &T,
1905 const JobAction &JA, const ArgList &Args,
1906 const InputInfo &Output, const char *OutFile) {
1907 ArgStringList ExtractArgs;
1908 ExtractArgs.push_back("--extract-dwo");
1909
1910 ArgStringList StripArgs;
1911 StripArgs.push_back("--strip-dwo");
1912
1913 // Grabbing the output of the earlier compile step.
1914 StripArgs.push_back(Output.getFilename());
1915 ExtractArgs.push_back(Output.getFilename());
1916 ExtractArgs.push_back(OutFile);
1917
1918 const char *Exec =
1919 Args.MakeArgString(TC.GetProgramPath(CLANG_DEFAULT_OBJCOPY));
1920 InputInfo II(types::TY_Object, Output.getFilename(), Output.getFilename());
1921
1922 // First extract the dwo sections.
1923 C.addCommand(std::make_unique<Command>(JA, T,
1925 Exec, ExtractArgs, II, Output));
1926
1927 // Then remove them from the original .o file.
1928 C.addCommand(std::make_unique<Command>(
1929 JA, T, ResponseFileSupport::AtFileCurCP(), Exec, StripArgs, II, Output));
1930}
1931
1932// Claim options we don't want to warn if they are unused. We do this for
1933// options that build systems might add but are unused when assembling or only
1934// running the preprocessor for example.
1935void tools::claimNoWarnArgs(const ArgList &Args) {
1936 // Don't warn about unused -f(no-)?lto. This can happen when we're
1937 // preprocessing, precompiling or assembling.
1938 Args.ClaimAllArgs(options::OPT_flto_EQ);
1939 Args.ClaimAllArgs(options::OPT_flto);
1940 Args.ClaimAllArgs(options::OPT_fno_lto);
1941}
1942
1943Arg *tools::getLastCSProfileGenerateArg(const ArgList &Args) {
1944 auto *CSPGOGenerateArg = Args.getLastArg(options::OPT_fcs_profile_generate,
1945 options::OPT_fcs_profile_generate_EQ,
1946 options::OPT_fno_profile_generate);
1947 if (CSPGOGenerateArg &&
1948 CSPGOGenerateArg->getOption().matches(options::OPT_fno_profile_generate))
1949 CSPGOGenerateArg = nullptr;
1950
1951 return CSPGOGenerateArg;
1952}
1953
1954Arg *tools::getLastProfileUseArg(const ArgList &Args) {
1955 auto *ProfileUseArg = Args.getLastArg(
1956 options::OPT_fprofile_instr_use, options::OPT_fprofile_instr_use_EQ,
1957 options::OPT_fprofile_use, options::OPT_fprofile_use_EQ,
1958 options::OPT_fno_profile_instr_use);
1959
1960 if (ProfileUseArg &&
1961 ProfileUseArg->getOption().matches(options::OPT_fno_profile_instr_use))
1962 ProfileUseArg = nullptr;
1963
1964 return ProfileUseArg;
1965}
1966
1967Arg *tools::getLastProfileSampleUseArg(const ArgList &Args) {
1968 auto *ProfileSampleUseArg = Args.getLastArg(
1969 options::OPT_fprofile_sample_use_EQ, options::OPT_fno_profile_sample_use);
1970
1971 if (ProfileSampleUseArg && (ProfileSampleUseArg->getOption().matches(
1972 options::OPT_fno_profile_sample_use)))
1973 return nullptr;
1974
1975 return Args.getLastArg(options::OPT_fprofile_sample_use_EQ);
1976}
1977
1978const char *tools::RelocationModelName(llvm::Reloc::Model Model) {
1979 switch (Model) {
1980 case llvm::Reloc::Static:
1981 return "static";
1982 case llvm::Reloc::PIC_:
1983 return "pic";
1984 case llvm::Reloc::DynamicNoPIC:
1985 return "dynamic-no-pic";
1986 case llvm::Reloc::ROPI:
1987 return "ropi";
1988 case llvm::Reloc::RWPI:
1989 return "rwpi";
1990 case llvm::Reloc::ROPI_RWPI:
1991 return "ropi-rwpi";
1992 }
1993 llvm_unreachable("Unknown Reloc::Model kind");
1994}
1995
1996/// Parses the various -fpic/-fPIC/-fpie/-fPIE arguments. Then,
1997/// smooshes them together with platform defaults, to decide whether
1998/// this compile should be using PIC mode or not. Returns a tuple of
1999/// (RelocationModel, PICLevel, IsPIE).
2000std::tuple<llvm::Reloc::Model, unsigned, bool>
2001tools::ParsePICArgs(const ToolChain &ToolChain, const ArgList &Args) {
2002 const llvm::Triple &EffectiveTriple = ToolChain.getEffectiveTriple();
2003 const llvm::Triple &Triple = ToolChain.getTriple();
2004
2005 bool PIE = ToolChain.isPIEDefault(Args);
2006 bool PIC = PIE || ToolChain.isPICDefault();
2007 // The Darwin/MachO default to use PIC does not apply when using -static.
2008 if (Triple.isOSBinFormatMachO() && Args.hasArg(options::OPT_static))
2009 PIE = PIC = false;
2010 bool IsPICLevelTwo = PIC;
2011
2012 bool KernelOrKext =
2013 Args.hasArg(options::OPT_mkernel, options::OPT_fapple_kext);
2014
2015 // Android-specific defaults for PIC/PIE
2016 if (Triple.isAndroid()) {
2017 switch (Triple.getArch()) {
2018 case llvm::Triple::x86:
2019 case llvm::Triple::x86_64:
2020 PIC = true; // "-fPIC"
2021 IsPICLevelTwo = true;
2022 break;
2023
2024 default:
2025 PIC = true; // "-fpic"
2026 break;
2027 }
2028 }
2029
2030 // OHOS-specific defaults for PIC/PIE
2031 if (Triple.isOHOSFamily() && Triple.getArch() == llvm::Triple::aarch64)
2032 PIC = true;
2033
2034 // OpenBSD-specific defaults for PIE
2035 if (Triple.isOSOpenBSD()) {
2036 switch (ToolChain.getArch()) {
2037 case llvm::Triple::arm:
2038 case llvm::Triple::aarch64:
2039 case llvm::Triple::mips64:
2040 case llvm::Triple::mips64el:
2041 case llvm::Triple::x86:
2042 case llvm::Triple::x86_64:
2043 IsPICLevelTwo = false; // "-fpie"
2044 break;
2045
2046 case llvm::Triple::ppc:
2047 case llvm::Triple::sparcv9:
2048 IsPICLevelTwo = true; // "-fPIE"
2049 break;
2050
2051 default:
2052 break;
2053 }
2054 }
2055
2056 // The last argument relating to either PIC or PIE wins, and no
2057 // other argument is used. If the last argument is any flavor of the
2058 // '-fno-...' arguments, both PIC and PIE are disabled. Any PIE
2059 // option implicitly enables PIC at the same level.
2060 Arg *LastPICArg = Args.getLastArg(options::OPT_fPIC, options::OPT_fno_PIC,
2061 options::OPT_fpic, options::OPT_fno_pic,
2062 options::OPT_fPIE, options::OPT_fno_PIE,
2063 options::OPT_fpie, options::OPT_fno_pie);
2064 if (Triple.isOSWindows() && !Triple.isOSCygMing() && LastPICArg &&
2065 LastPICArg == Args.getLastArg(options::OPT_fPIC, options::OPT_fpic,
2066 options::OPT_fPIE, options::OPT_fpie)) {
2067 ToolChain.getDriver().Diag(diag::err_drv_unsupported_opt_for_target)
2068 << LastPICArg->getSpelling() << Triple.str();
2069 if (Triple.getArch() == llvm::Triple::x86_64)
2070 return std::make_tuple(llvm::Reloc::PIC_, 2U, false);
2071 return std::make_tuple(llvm::Reloc::Static, 0U, false);
2072 }
2073
2074 // Check whether the tool chain trumps the PIC-ness decision. If the PIC-ness
2075 // is forced, then neither PIC nor PIE flags will have no effect.
2077 if (LastPICArg) {
2078 Option O = LastPICArg->getOption();
2079 if (O.matches(options::OPT_fPIC) || O.matches(options::OPT_fpic) ||
2080 O.matches(options::OPT_fPIE) || O.matches(options::OPT_fpie)) {
2081 PIE = O.matches(options::OPT_fPIE) || O.matches(options::OPT_fpie);
2082 PIC =
2083 PIE || O.matches(options::OPT_fPIC) || O.matches(options::OPT_fpic);
2084 IsPICLevelTwo =
2085 O.matches(options::OPT_fPIE) || O.matches(options::OPT_fPIC);
2086 } else {
2087 PIE = PIC = false;
2088 if (EffectiveTriple.isPS()) {
2089 Arg *ModelArg = Args.getLastArg(options::OPT_mcmodel_EQ);
2090 StringRef Model = ModelArg ? ModelArg->getValue() : "";
2091 if (Model != "kernel") {
2092 PIC = true;
2093 ToolChain.getDriver().Diag(diag::warn_drv_ps_force_pic)
2094 << LastPICArg->getSpelling()
2095 << (EffectiveTriple.isPS4() ? "PS4" : "PS5");
2096 }
2097 }
2098 }
2099 }
2100 }
2101
2102 // Introduce a Darwin and PS4/PS5-specific hack. If the default is PIC, but
2103 // the PIC level would've been set to level 1, force it back to level 2 PIC
2104 // instead.
2105 if (PIC && (Triple.isOSDarwin() || EffectiveTriple.isPS()))
2106 IsPICLevelTwo |= ToolChain.isPICDefault();
2107
2108 // This kernel flags are a trump-card: they will disable PIC/PIE
2109 // generation, independent of the argument order.
2110 if (KernelOrKext &&
2111 ((!EffectiveTriple.isiOS() || EffectiveTriple.isOSVersionLT(6)) &&
2112 !EffectiveTriple.isWatchOS() && !EffectiveTriple.isDriverKit()))
2113 PIC = PIE = false;
2114
2115 if (Arg *A = Args.getLastArg(options::OPT_mdynamic_no_pic)) {
2116 // This is a very special mode. It trumps the other modes, almost no one
2117 // uses it, and it isn't even valid on any OS but Darwin.
2118 if (!Triple.isOSDarwin())
2119 ToolChain.getDriver().Diag(diag::err_drv_unsupported_opt_for_target)
2120 << A->getSpelling() << Triple.str();
2121
2122 // FIXME: Warn when this flag trumps some other PIC or PIE flag.
2123
2124 // Only a forced PIC mode can cause the actual compile to have PIC defines
2125 // etc., no flags are sufficient. This behavior was selected to closely
2126 // match that of llvm-gcc and Apple GCC before that.
2128
2129 return std::make_tuple(llvm::Reloc::DynamicNoPIC, PIC ? 2U : 0U, false);
2130 }
2131
2132 bool EmbeddedPISupported;
2133 switch (Triple.getArch()) {
2134 case llvm::Triple::arm:
2135 case llvm::Triple::armeb:
2136 case llvm::Triple::thumb:
2137 case llvm::Triple::thumbeb:
2138 EmbeddedPISupported = true;
2139 break;
2140 default:
2141 EmbeddedPISupported = false;
2142 break;
2143 }
2144
2145 bool ROPI = false, RWPI = false;
2146 Arg* LastROPIArg = Args.getLastArg(options::OPT_fropi, options::OPT_fno_ropi);
2147 if (LastROPIArg && LastROPIArg->getOption().matches(options::OPT_fropi)) {
2148 if (!EmbeddedPISupported)
2149 ToolChain.getDriver().Diag(diag::err_drv_unsupported_opt_for_target)
2150 << LastROPIArg->getSpelling() << Triple.str();
2151 ROPI = true;
2152 }
2153 Arg *LastRWPIArg = Args.getLastArg(options::OPT_frwpi, options::OPT_fno_rwpi);
2154 if (LastRWPIArg && LastRWPIArg->getOption().matches(options::OPT_frwpi)) {
2155 if (!EmbeddedPISupported)
2156 ToolChain.getDriver().Diag(diag::err_drv_unsupported_opt_for_target)
2157 << LastRWPIArg->getSpelling() << Triple.str();
2158 RWPI = true;
2159 }
2160
2161 // ROPI and RWPI are not compatible with PIC or PIE.
2162 if ((ROPI || RWPI) && (PIC || PIE))
2163 ToolChain.getDriver().Diag(diag::err_drv_ropi_rwpi_incompatible_with_pic);
2164
2165 if (Triple.isMIPS()) {
2166 StringRef CPUName;
2167 StringRef ABIName;
2168 mips::getMipsCPUAndABI(Args, Triple, CPUName, ABIName);
2169 // When targeting the N64 ABI, PIC is the default, except in the case
2170 // when the -mno-abicalls option is used. In that case we exit
2171 // at next check regardless of PIC being set below.
2172 if (ABIName == "n64")
2173 PIC = true;
2174 // When targettng MIPS with -mno-abicalls, it's always static.
2175 if(Args.hasArg(options::OPT_mno_abicalls))
2176 return std::make_tuple(llvm::Reloc::Static, 0U, false);
2177 // Unlike other architectures, MIPS, even with -fPIC/-mxgot/multigot,
2178 // does not use PIC level 2 for historical reasons.
2179 IsPICLevelTwo = false;
2180 }
2181
2182 if (PIC)
2183 return std::make_tuple(llvm::Reloc::PIC_, IsPICLevelTwo ? 2U : 1U, PIE);
2184
2185 llvm::Reloc::Model RelocM = llvm::Reloc::Static;
2186 if (ROPI && RWPI)
2187 RelocM = llvm::Reloc::ROPI_RWPI;
2188 else if (ROPI)
2189 RelocM = llvm::Reloc::ROPI;
2190 else if (RWPI)
2191 RelocM = llvm::Reloc::RWPI;
2192
2193 return std::make_tuple(RelocM, 0U, false);
2194}
2195
2196bool tools::getStaticPIE(const ArgList &Args, const ToolChain &TC) {
2197 bool HasStaticPIE = Args.hasArg(options::OPT_static_pie);
2198 if (HasStaticPIE && Args.hasArg(options::OPT_no_pie)) {
2199 const Driver &D = TC.getDriver();
2200 const llvm::opt::OptTable &Opts = D.getOpts();
2201 StringRef StaticPIEName = Opts.getOptionName(options::OPT_static_pie);
2202 StringRef NoPIEName = Opts.getOptionName(options::OPT_nopie);
2203 D.Diag(diag::err_drv_cannot_mix_options) << StaticPIEName << NoPIEName;
2204 }
2205 return HasStaticPIE;
2206}
2207
2208// `-falign-functions` indicates that the functions should be aligned to the
2209// backend's preferred alignment.
2210//
2211// `-falign-functions=1` is the same as `-fno-align-functions`.
2212//
2213// The scalar `n` in `-falign-functions=n` must be an integral value between
2214// [0, 65536]. If the value is not a power-of-two, it will be rounded up to
2215// the nearest power-of-two.
2216//
2217// If we return `0`, the frontend will default to the backend's preferred
2218// alignment.
2219//
2220// NOTE: icc only allows values between [0, 4096]. icc uses `-falign-functions`
2221// to mean `-falign-functions=16`. GCC defaults to the backend's preferred
2222// alignment. For unaligned functions, we default to the backend's preferred
2223// alignment.
2224unsigned tools::ParseFunctionAlignment(const ToolChain &TC,
2225 const ArgList &Args) {
2226 const Arg *A = Args.getLastArg(options::OPT_falign_functions,
2227 options::OPT_falign_functions_EQ,
2228 options::OPT_fno_align_functions);
2229 if (!A || A->getOption().matches(options::OPT_fno_align_functions))
2230 return 0;
2231
2232 if (A->getOption().matches(options::OPT_falign_functions))
2233 return 0;
2234
2235 unsigned Value = 0;
2236 if (StringRef(A->getValue()).getAsInteger(10, Value) || Value > 65536)
2237 TC.getDriver().Diag(diag::err_drv_invalid_int_value)
2238 << A->getAsString(Args) << A->getValue();
2239 return Value ? llvm::Log2_32_Ceil(std::min(Value, 65536u)) : Value;
2240}
2241
2243 ArgStringList &CmdArgs, llvm::codegenoptions::DebugInfoKind DebugInfoKind) {
2244 switch (DebugInfoKind) {
2245 case llvm::codegenoptions::DebugDirectivesOnly:
2246 CmdArgs.push_back("-debug-info-kind=line-directives-only");
2247 break;
2248 case llvm::codegenoptions::DebugLineTablesOnly:
2249 CmdArgs.push_back("-debug-info-kind=line-tables-only");
2250 break;
2251 case llvm::codegenoptions::DebugInfoConstructor:
2252 CmdArgs.push_back("-debug-info-kind=constructor");
2253 break;
2254 case llvm::codegenoptions::LimitedDebugInfo:
2255 CmdArgs.push_back("-debug-info-kind=limited");
2256 break;
2257 case llvm::codegenoptions::FullDebugInfo:
2258 CmdArgs.push_back("-debug-info-kind=standalone");
2259 break;
2260 case llvm::codegenoptions::UnusedTypeInfo:
2261 CmdArgs.push_back("-debug-info-kind=unused-types");
2262 break;
2263 default:
2264 break;
2265 }
2266}
2267
2268// Convert an arg of the form "-gN" or "-ggdbN" or one of their aliases
2269// to the corresponding DebugInfoKind.
2270llvm::codegenoptions::DebugInfoKind tools::debugLevelToInfoKind(const Arg &A) {
2271 assert(A.getOption().matches(options::OPT_gN_Group) &&
2272 "Not a -g option that specifies a debug-info level");
2273 if (A.getOption().matches(options::OPT_g0) ||
2274 A.getOption().matches(options::OPT_ggdb0))
2275 return llvm::codegenoptions::NoDebugInfo;
2276 if (A.getOption().matches(options::OPT_gline_tables_only) ||
2277 A.getOption().matches(options::OPT_ggdb1))
2278 return llvm::codegenoptions::DebugLineTablesOnly;
2279 if (A.getOption().matches(options::OPT_gline_directives_only))
2280 return llvm::codegenoptions::DebugDirectivesOnly;
2281 return llvm::codegenoptions::DebugInfoConstructor;
2282}
2283
2284static unsigned ParseDebugDefaultVersion(const ToolChain &TC,
2285 const ArgList &Args) {
2286 const Arg *A = Args.getLastArg(options::OPT_fdebug_default_version);
2287
2288 if (!A)
2289 return 0;
2290
2291 unsigned Value = 0;
2292 if (StringRef(A->getValue()).getAsInteger(10, Value) || Value > 6 ||
2293 Value < 2)
2294 TC.getDriver().Diag(diag::err_drv_invalid_int_value)
2295 << A->getAsString(Args) << A->getValue();
2296 return Value;
2297}
2298
2299unsigned tools::DwarfVersionNum(StringRef ArgValue) {
2300 return llvm::StringSwitch<unsigned>(ArgValue)
2301 .Case("-gdwarf-2", 2)
2302 .Case("-gdwarf-3", 3)
2303 .Case("-gdwarf-4", 4)
2304 .Case("-gdwarf-5", 5)
2305 .Case("-gdwarf-6", 6)
2306 .Default(0);
2307}
2308
2309const Arg *tools::getDwarfNArg(const ArgList &Args) {
2310 return Args.getLastArg(options::OPT_gdwarf_2, options::OPT_gdwarf_3,
2311 options::OPT_gdwarf_4, options::OPT_gdwarf_5,
2312 options::OPT_gdwarf_6, options::OPT_gdwarf);
2313}
2314
2316 const llvm::opt::ArgList &Args) {
2317 unsigned DwarfVersion = ParseDebugDefaultVersion(TC, Args);
2318 if (const Arg *GDwarfN = getDwarfNArg(Args))
2319 if (int N = DwarfVersionNum(GDwarfN->getSpelling())) {
2320 DwarfVersion = N;
2321 if (DwarfVersion == 5 && TC.getTriple().isOSAIX())
2322 TC.getDriver().Diag(diag::err_drv_unsupported_opt_for_target)
2323 << GDwarfN->getSpelling() << TC.getTriple().str();
2324 }
2325 if (DwarfVersion == 0) {
2326 DwarfVersion = TC.GetDefaultDwarfVersion();
2327 assert(DwarfVersion && "toolchain default DWARF version must be nonzero");
2328 }
2329 return DwarfVersion;
2330}
2331
2333 const ArgList &Args, Arg *&Arg) {
2334 Arg = Args.getLastArg(options::OPT_gsplit_dwarf, options::OPT_gsplit_dwarf_EQ,
2335 options::OPT_gno_split_dwarf);
2336 if (!Arg || Arg->getOption().matches(options::OPT_gno_split_dwarf))
2338
2339 if (Arg->getOption().matches(options::OPT_gsplit_dwarf))
2341
2342 StringRef Value = Arg->getValue();
2343 if (Value == "split")
2345 if (Value == "single")
2347
2348 D.Diag(diag::err_drv_unsupported_option_argument)
2349 << Arg->getSpelling() << Arg->getValue();
2351}
2352
2353bool tools::checkDebugInfoOption(const Arg *A, const ArgList &Args,
2354 const Driver &D, const ToolChain &TC) {
2355 assert(A && "Expected non-nullptr argument.");
2356 if (TC.supportsDebugInfoOption(A))
2357 return true;
2358 D.Diag(diag::warn_drv_unsupported_debug_info_opt_for_target)
2359 << A->getAsString(Args) << TC.getTripleString();
2360 return false;
2361}
2362
2364 const ArgList &Args,
2365 ArgStringList &CmdArgs) {
2366 if (Args.hasFlag(options::OPT_fdebug_info_for_profiling,
2367 options::OPT_fno_debug_info_for_profiling, false) &&
2369 Args.getLastArg(options::OPT_fdebug_info_for_profiling), Args, D, TC))
2370 CmdArgs.push_back("-fdebug-info-for-profiling");
2371}
2372
2373void tools::AddAssemblerKPIC(const ToolChain &ToolChain, const ArgList &Args,
2374 ArgStringList &CmdArgs) {
2375 llvm::Reloc::Model RelocationModel;
2376 unsigned PICLevel;
2377 bool IsPIE;
2378 std::tie(RelocationModel, PICLevel, IsPIE) = ParsePICArgs(ToolChain, Args);
2379
2380 if (RelocationModel != llvm::Reloc::Static)
2381 CmdArgs.push_back("-KPIC");
2382}
2383
2384/// Determine whether Objective-C automated reference counting is
2385/// enabled.
2386bool tools::isObjCAutoRefCount(const ArgList &Args) {
2387 return Args.hasFlag(options::OPT_fobjc_arc, options::OPT_fno_objc_arc, false);
2388}
2389
2391
2392static LibGccType getLibGccType(const ToolChain &TC, const Driver &D,
2393 const ArgList &Args) {
2394 if (Args.hasArg(options::OPT_static_libgcc) ||
2395 Args.hasArg(options::OPT_static) || Args.hasArg(options::OPT_static_pie) ||
2396 // The Android NDK only provides libunwind.a, not libunwind.so.
2397 TC.getTriple().isAndroid())
2399 if (Args.hasArg(options::OPT_shared_libgcc))
2402}
2403
2404// Gcc adds libgcc arguments in various ways:
2405//
2406// gcc <none>: -lgcc --as-needed -lgcc_s --no-as-needed
2407// g++ <none>: -lgcc_s -lgcc
2408// gcc shared: -lgcc_s -lgcc
2409// g++ shared: -lgcc_s -lgcc
2410// gcc static: -lgcc -lgcc_eh
2411// g++ static: -lgcc -lgcc_eh
2412// gcc static-pie: -lgcc -lgcc_eh
2413// g++ static-pie: -lgcc -lgcc_eh
2414//
2415// Also, certain targets need additional adjustments.
2416
2417static void AddUnwindLibrary(const ToolChain &TC, const Driver &D,
2418 ArgStringList &CmdArgs, const ArgList &Args) {
2420 // By default OHOS binaries are linked statically to libunwind.
2421 if (TC.getTriple().isOHOSFamily() && UNW == ToolChain::UNW_CompilerRT) {
2422 CmdArgs.push_back("-l:libunwind.a");
2423 return;
2424 }
2425
2426 // Targets that don't use unwind libraries.
2427 if ((TC.getTriple().isAndroid() && UNW == ToolChain::UNW_Libgcc) ||
2428 TC.getTriple().isOSIAMCU() || TC.getTriple().isOSBinFormatWasm() ||
2429 TC.getTriple().isWindowsMSVCEnvironment() || UNW == ToolChain::UNW_None)
2430 return;
2431
2432 LibGccType LGT = getLibGccType(TC, D, Args);
2433 bool AsNeeded = LGT == LibGccType::UnspecifiedLibGcc &&
2434 (UNW == ToolChain::UNW_CompilerRT || !D.CCCIsCXX()) &&
2435 !TC.getTriple().isAndroid() &&
2436 !TC.getTriple().isOSCygMing() && !TC.getTriple().isOSAIX();
2437 if (AsNeeded)
2438 addAsNeededOption(TC, Args, CmdArgs, true);
2439
2440 switch (UNW) {
2442 return;
2443 case ToolChain::UNW_Libgcc: {
2444 if (LGT == LibGccType::StaticLibGcc)
2445 CmdArgs.push_back("-lgcc_eh");
2446 else
2447 CmdArgs.push_back("-lgcc_s");
2448 break;
2449 }
2451 if (TC.getTriple().isOSAIX()) {
2452 // AIX only has libunwind as a shared library. So do not pass
2453 // anything in if -static is specified.
2454 if (LGT != LibGccType::StaticLibGcc)
2455 CmdArgs.push_back("-lunwind");
2456 } else if (LGT == LibGccType::StaticLibGcc) {
2457 CmdArgs.push_back("-l:libunwind.a");
2458 } else if (LGT == LibGccType::SharedLibGcc) {
2459 if (TC.getTriple().isOSCygMing())
2460 CmdArgs.push_back("-l:libunwind.dll.a");
2461 else
2462 CmdArgs.push_back("-l:libunwind.so");
2463 } else {
2464 // Let the linker choose between libunwind.so and libunwind.a
2465 // depending on what's available, and depending on the -static flag
2466 CmdArgs.push_back("-lunwind");
2467 }
2468 break;
2469 }
2470
2471 if (AsNeeded)
2472 addAsNeededOption(TC, Args, CmdArgs, false);
2473}
2474
2475static void AddLibgcc(const ToolChain &TC, const Driver &D,
2476 ArgStringList &CmdArgs, const ArgList &Args) {
2477 LibGccType LGT = getLibGccType(TC, D, Args);
2478 if (LGT == LibGccType::StaticLibGcc ||
2479 (LGT == LibGccType::UnspecifiedLibGcc && !D.CCCIsCXX()))
2480 CmdArgs.push_back("-lgcc");
2481 AddUnwindLibrary(TC, D, CmdArgs, Args);
2482 if (LGT == LibGccType::SharedLibGcc ||
2484 CmdArgs.push_back("-lgcc");
2485 // compiler-rt is needed after libgcc for flang on AArch64 for the
2486 // __trampoline_setup symbol
2487 if (D.IsFlangMode() && TC.getArch() == llvm::Triple::aarch64) {
2488 CmdArgs.push_back("--as-needed");
2489 CmdArgs.push_back(TC.getCompilerRTArgString(Args, "builtins"));
2490 CmdArgs.push_back("--no-as-needed");
2491 }
2492}
2493
2494void tools::AddRunTimeLibs(const ToolChain &TC, const Driver &D,
2495 ArgStringList &CmdArgs, const ArgList &Args) {
2496 // Make use of compiler-rt if --rtlib option is used
2498
2499 switch (RLT) {
2501 CmdArgs.push_back(TC.getCompilerRTArgString(Args, "builtins"));
2502 AddUnwindLibrary(TC, D, CmdArgs, Args);
2503 break;
2505 // Make sure libgcc is not used under MSVC environment by default
2506 if (TC.getTriple().isKnownWindowsMSVCEnvironment()) {
2507 // Issue error diagnostic if libgcc is explicitly specified
2508 // through command line as --rtlib option argument.
2509 Arg *A = Args.getLastArg(options::OPT_rtlib_EQ);
2510 if (A && A->getValue() != StringRef("platform")) {
2511 TC.getDriver().Diag(diag::err_drv_unsupported_rtlib_for_platform)
2512 << A->getValue() << "MSVC";
2513 }
2514 } else
2515 AddLibgcc(TC, D, CmdArgs, Args);
2516 break;
2517 }
2518
2519 // On Android, the unwinder uses dl_iterate_phdr (or one of
2520 // dl_unwind_find_exidx/__gnu_Unwind_Find_exidx on arm32) from libdl.so. For
2521 // statically-linked executables, these functions come from libc.a instead.
2522 if (TC.getTriple().isAndroid() && !Args.hasArg(options::OPT_static) &&
2523 !Args.hasArg(options::OPT_static_pie))
2524 CmdArgs.push_back("-ldl");
2525}
2526
2527SmallString<128> tools::getStatsFileName(const llvm::opt::ArgList &Args,
2528 const InputInfo &Output,
2529 const InputInfo &Input,
2530 const Driver &D) {
2531 const Arg *A = Args.getLastArg(options::OPT_save_stats_EQ);
2532 if (!A && !D.CCPrintInternalStats)
2533 return {};
2534
2535 SmallString<128> StatsFile;
2536 if (A) {
2537 StringRef SaveStats = A->getValue();
2538 if (SaveStats == "obj" && Output.isFilename()) {
2539 StatsFile.assign(Output.getFilename());
2540 llvm::sys::path::remove_filename(StatsFile);
2541 } else if (SaveStats != "cwd") {
2542 D.Diag(diag::err_drv_invalid_value) << A->getAsString(Args) << SaveStats;
2543 return {};
2544 }
2545
2546 StringRef BaseName = llvm::sys::path::filename(Input.getBaseInput());
2547 llvm::sys::path::append(StatsFile, BaseName);
2548 llvm::sys::path::replace_extension(StatsFile, "stats");
2549 } else {
2550 assert(D.CCPrintInternalStats);
2551 StatsFile.assign(D.CCPrintInternalStatReportFilename.empty()
2552 ? "-"
2554 }
2555 return StatsFile;
2556}
2557
2558void tools::addMultilibFlag(bool Enabled, const StringRef Flag,
2559 Multilib::flags_list &Flags) {
2560 assert(Flag.front() == '-');
2561 if (Enabled) {
2562 Flags.push_back(Flag.str());
2563 } else {
2564 Flags.push_back(("!" + Flag.substr(1)).str());
2565 }
2566}
2567
2568void tools::addX86AlignBranchArgs(const Driver &D, const ArgList &Args,
2569 ArgStringList &CmdArgs, bool IsLTO,
2570 const StringRef PluginOptPrefix) {
2571 auto addArg = [&, IsLTO](const Twine &Arg) {
2572 if (IsLTO) {
2573 assert(!PluginOptPrefix.empty() && "Cannot have empty PluginOptPrefix!");
2574 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + Arg));
2575 } else {
2576 CmdArgs.push_back("-mllvm");
2577 CmdArgs.push_back(Args.MakeArgString(Arg));
2578 }
2579 };
2580
2581 if (Args.hasArg(options::OPT_mbranches_within_32B_boundaries)) {
2582 addArg(Twine("-x86-branches-within-32B-boundaries"));
2583 }
2584 if (const Arg *A = Args.getLastArg(options::OPT_malign_branch_boundary_EQ)) {
2585 StringRef Value = A->getValue();
2586 unsigned Boundary;
2587 if (Value.getAsInteger(10, Boundary) || Boundary < 16 ||
2588 !llvm::isPowerOf2_64(Boundary)) {
2589 D.Diag(diag::err_drv_invalid_argument_to_option)
2590 << Value << A->getOption().getName();
2591 } else {
2592 addArg("-x86-align-branch-boundary=" + Twine(Boundary));
2593 }
2594 }
2595 if (const Arg *A = Args.getLastArg(options::OPT_malign_branch_EQ)) {
2596 std::string AlignBranch;
2597 for (StringRef T : A->getValues()) {
2598 if (T != "fused" && T != "jcc" && T != "jmp" && T != "call" &&
2599 T != "ret" && T != "indirect")
2600 D.Diag(diag::err_drv_invalid_malign_branch_EQ)
2601 << T << "fused, jcc, jmp, call, ret, indirect";
2602 if (!AlignBranch.empty())
2603 AlignBranch += '+';
2604 AlignBranch += T;
2605 }
2606 addArg("-x86-align-branch=" + Twine(AlignBranch));
2607 }
2608 if (const Arg *A = Args.getLastArg(options::OPT_mpad_max_prefix_size_EQ)) {
2609 StringRef Value = A->getValue();
2610 unsigned PrefixSize;
2611 if (Value.getAsInteger(10, PrefixSize)) {
2612 D.Diag(diag::err_drv_invalid_argument_to_option)
2613 << Value << A->getOption().getName();
2614 } else {
2615 addArg("-x86-pad-max-prefix-size=" + Twine(PrefixSize));
2616 }
2617 }
2618}
2619
2620/// SDLSearch: Search for Static Device Library
2621/// The search for SDL bitcode files is consistent with how static host
2622/// libraries are discovered. That is, the -l option triggers a search for
2623/// files in a set of directories called the LINKPATH. The host library search
2624/// procedure looks for a specific filename in the LINKPATH. The filename for
2625/// a host library is lib<libname>.a or lib<libname>.so. For SDLs, there is an
2626/// ordered-set of filenames that are searched. We call this ordered-set of
2627/// filenames as SEARCH-ORDER. Since an SDL can either be device-type specific,
2628/// architecture specific, or generic across all architectures, a naming
2629/// convention and search order is used where the file name embeds the
2630/// architecture name <arch-name> (nvptx or amdgcn) and the GPU device type
2631/// <device-name> such as sm_30 and gfx906. <device-name> is absent in case of
2632/// device-independent SDLs. To reduce congestion in host library directories,
2633/// the search first looks for files in the “libdevice” subdirectory. SDLs that
2634/// are bc files begin with the prefix “lib”.
2635///
2636/// Machine-code SDLs can also be managed as an archive (*.a file). The
2637/// convention has been to use the prefix “lib”. To avoid confusion with host
2638/// archive libraries, we use prefix "libbc-" for the bitcode SDL archives.
2639///
2640static bool SDLSearch(const Driver &D, const llvm::opt::ArgList &DriverArgs,
2641 llvm::opt::ArgStringList &CC1Args,
2642 const SmallVectorImpl<std::string> &LibraryPaths,
2643 StringRef Lib, StringRef Arch, StringRef Target,
2644 bool isBitCodeSDL) {
2646
2647 std::string LibDeviceLoc = "/libdevice";
2648 std::string LibBcPrefix = "/libbc-";
2649 std::string LibPrefix = "/lib";
2650
2651 if (isBitCodeSDL) {
2652 // SEARCH-ORDER for Bitcode SDLs:
2653 // libdevice/libbc-<libname>-<arch-name>-<device-type>.a
2654 // libbc-<libname>-<arch-name>-<device-type>.a
2655 // libdevice/libbc-<libname>-<arch-name>.a
2656 // libbc-<libname>-<arch-name>.a
2657 // libdevice/libbc-<libname>.a
2658 // libbc-<libname>.a
2659 // libdevice/lib<libname>-<arch-name>-<device-type>.bc
2660 // lib<libname>-<arch-name>-<device-type>.bc
2661 // libdevice/lib<libname>-<arch-name>.bc
2662 // lib<libname>-<arch-name>.bc
2663 // libdevice/lib<libname>.bc
2664 // lib<libname>.bc
2665
2666 for (StringRef Base : {LibBcPrefix, LibPrefix}) {
2667 const auto *Ext = Base.contains(LibBcPrefix) ? ".a" : ".bc";
2668
2669 for (auto Suffix : {Twine(Lib + "-" + Arch + "-" + Target).str(),
2670 Twine(Lib + "-" + Arch).str(), Twine(Lib).str()}) {
2671 SDLs.push_back(Twine(LibDeviceLoc + Base + Suffix + Ext).str());
2672 SDLs.push_back(Twine(Base + Suffix + Ext).str());
2673 }
2674 }
2675 } else {
2676 // SEARCH-ORDER for Machine-code SDLs:
2677 // libdevice/lib<libname>-<arch-name>-<device-type>.a
2678 // lib<libname>-<arch-name>-<device-type>.a
2679 // libdevice/lib<libname>-<arch-name>.a
2680 // lib<libname>-<arch-name>.a
2681
2682 const auto *Ext = ".a";
2683
2684 for (auto Suffix : {Twine(Lib + "-" + Arch + "-" + Target).str(),
2685 Twine(Lib + "-" + Arch).str()}) {
2686 SDLs.push_back(Twine(LibDeviceLoc + LibPrefix + Suffix + Ext).str());
2687 SDLs.push_back(Twine(LibPrefix + Suffix + Ext).str());
2688 }
2689 }
2690
2691 // The CUDA toolchain does not use a global device llvm-link before the LLVM
2692 // backend generates ptx. So currently, the use of bitcode SDL for nvptx is
2693 // only possible with post-clang-cc1 linking. Clang cc1 has a feature that
2694 // will link libraries after clang compilation while the LLVM IR is still in
2695 // memory. This utilizes a clang cc1 option called “-mlink-builtin-bitcode”.
2696 // This is a clang -cc1 option that is generated by the clang driver. The
2697 // option value must a full path to an existing file.
2698 bool FoundSDL = false;
2699 for (auto LPath : LibraryPaths) {
2700 for (auto SDL : SDLs) {
2701 auto FullName = Twine(LPath + SDL).str();
2702 if (llvm::sys::fs::exists(FullName)) {
2703 CC1Args.push_back(DriverArgs.MakeArgString(FullName));
2704 FoundSDL = true;
2705 break;
2706 }
2707 }
2708 if (FoundSDL)
2709 break;
2710 }
2711 return FoundSDL;
2712}
2713
2714/// Search if a user provided archive file lib<libname>.a exists in any of
2715/// the library paths. If so, add a new command to clang-offload-bundler to
2716/// unbundle this archive and create a temporary device specific archive. Name
2717/// of this SDL is passed to the llvm-link tool.
2719 Compilation &C, const Driver &D, const Tool &T, const JobAction &JA,
2720 const InputInfoList &Inputs, const llvm::opt::ArgList &DriverArgs,
2721 llvm::opt::ArgStringList &CC1Args,
2722 const SmallVectorImpl<std::string> &LibraryPaths, StringRef Lib,
2723 StringRef Arch, StringRef Target, bool isBitCodeSDL) {
2724
2725 // We don't support bitcode archive bundles for nvptx
2726 if (isBitCodeSDL && Arch.contains("nvptx"))
2727 return;
2728
2729 bool FoundAOB = false;
2730 std::string ArchiveOfBundles;
2731
2732 llvm::Triple Triple(D.getTargetTriple());
2733 bool IsMSVC = Triple.isWindowsMSVCEnvironment();
2734 auto Ext = IsMSVC ? ".lib" : ".a";
2735 if (!Lib.starts_with(":") && !Lib.starts_with("-l")) {
2736 if (llvm::sys::fs::exists(Lib)) {
2737 ArchiveOfBundles = Lib;
2738 FoundAOB = true;
2739 }
2740 } else {
2741 Lib.consume_front("-l");
2742 for (auto LPath : LibraryPaths) {
2743 ArchiveOfBundles.clear();
2744 auto LibFile = (Lib.starts_with(":") ? Lib.drop_front()
2745 : IsMSVC ? Lib + Ext
2746 : "lib" + Lib + Ext)
2747 .str();
2748 for (auto Prefix : {"/libdevice/", "/"}) {
2749 auto AOB = Twine(LPath + Prefix + LibFile).str();
2750 if (llvm::sys::fs::exists(AOB)) {
2751 ArchiveOfBundles = AOB;
2752 FoundAOB = true;
2753 break;
2754 }
2755 }
2756 if (FoundAOB)
2757 break;
2758 }
2759 }
2760
2761 if (!FoundAOB)
2762 return;
2763
2764 llvm::file_magic Magic;
2765 auto EC = llvm::identify_magic(ArchiveOfBundles, Magic);
2766 if (EC || Magic != llvm::file_magic::archive)
2767 return;
2768
2769 StringRef Prefix = isBitCodeSDL ? "libbc-" : "lib";
2770 std::string OutputLib =
2771 D.GetTemporaryPath(Twine(Prefix + llvm::sys::path::filename(Lib) + "-" +
2772 Arch + "-" + Target)
2773 .str(),
2774 "a");
2775
2776 C.addTempFile(C.getArgs().MakeArgString(OutputLib));
2777
2778 SmallString<128> DeviceTriple;
2780 DeviceTriple += '-';
2781 std::string NormalizedTriple = T.getToolChain().getTriple().normalize(
2782 llvm::Triple::CanonicalForm::FOUR_IDENT);
2783 DeviceTriple += NormalizedTriple;
2784 if (!Target.empty()) {
2785 DeviceTriple += '-';
2786 DeviceTriple += Target;
2787 }
2788
2789 std::string UnbundleArg("-unbundle");
2790 std::string TypeArg("-type=a");
2791 std::string InputArg("-input=" + ArchiveOfBundles);
2792 std::string OffloadArg("-targets=" + std::string(DeviceTriple));
2793 std::string OutputArg("-output=" + OutputLib);
2794
2795 const char *UBProgram = DriverArgs.MakeArgString(
2796 T.getToolChain().GetProgramPath("clang-offload-bundler"));
2797
2798 ArgStringList UBArgs;
2799 UBArgs.push_back(C.getArgs().MakeArgString(UnbundleArg));
2800 UBArgs.push_back(C.getArgs().MakeArgString(TypeArg));
2801 UBArgs.push_back(C.getArgs().MakeArgString(InputArg));
2802 UBArgs.push_back(C.getArgs().MakeArgString(OffloadArg));
2803 UBArgs.push_back(C.getArgs().MakeArgString(OutputArg));
2804
2805 // Add this flag to not exit from clang-offload-bundler if no compatible
2806 // code object is found in heterogenous archive library.
2807 std::string AdditionalArgs("-allow-missing-bundles");
2808 UBArgs.push_back(C.getArgs().MakeArgString(AdditionalArgs));
2809
2810 // Add this flag to treat hip and hipv4 offload kinds as compatible with
2811 // openmp offload kind while extracting code objects from a heterogenous
2812 // archive library. Vice versa is also considered compatible.
2813 std::string HipCompatibleArgs("-hip-openmp-compatible");
2814 UBArgs.push_back(C.getArgs().MakeArgString(HipCompatibleArgs));
2815
2816 C.addCommand(std::make_unique<Command>(
2817 JA, T, ResponseFileSupport::AtFileCurCP(), UBProgram, UBArgs, Inputs,
2818 InputInfo(&JA, C.getArgs().MakeArgString(OutputLib))));
2819
2820 CC1Args.push_back(DriverArgs.MakeArgString(OutputLib));
2821}
2822
2823// Wrapper function used by driver for adding SDLs during link phase.
2825 const JobAction &JA,
2826 const InputInfoList &Inputs,
2827 const llvm::opt::ArgList &DriverArgs,
2828 llvm::opt::ArgStringList &CC1Args,
2829 StringRef Arch, StringRef Target,
2830 bool isBitCodeSDL) {
2831 AddStaticDeviceLibs(&C, &T, &JA, &Inputs, C.getDriver(), DriverArgs, CC1Args,
2832 Arch, Target, isBitCodeSDL);
2833}
2834
2835// User defined Static Device Libraries(SDLs) can be passed to clang for
2836// offloading GPU compilers. Like static host libraries, the use of a SDL is
2837// specified with the -l command line option. The primary difference between
2838// host and SDLs is the filenames for SDLs (refer SEARCH-ORDER for Bitcode SDLs
2839// and SEARCH-ORDER for Machine-code SDLs for the naming convention).
2840// SDLs are of following types:
2841//
2842// * Bitcode SDLs: They can either be a *.bc file or an archive of *.bc files.
2843// For NVPTX, these libraries are post-clang linked following each
2844// compilation. For AMDGPU, these libraries are linked one time
2845// during the application link phase.
2846//
2847// * Machine-code SDLs: They are archive files. For AMDGPU, the process for
2848// machine code SDLs is still in development. But they will be linked
2849// by the LLVM tool lld.
2850//
2851// * Bundled objects that contain both host and device codes: Bundled objects
2852// may also contain library code compiled from source. For NVPTX, the
2853// bundle contains cubin. For AMDGPU, the bundle contains bitcode.
2854//
2855// For Bitcode and Machine-code SDLs, current compiler toolchains hardcode the
2856// inclusion of specific SDLs such as math libraries and the OpenMP device
2857// library libomptarget.
2859 const JobAction *JA,
2860 const InputInfoList *Inputs, const Driver &D,
2861 const llvm::opt::ArgList &DriverArgs,
2862 llvm::opt::ArgStringList &CC1Args,
2863 StringRef Arch, StringRef Target,
2864 bool isBitCodeSDL) {
2865
2866 SmallVector<std::string, 8> LibraryPaths;
2867 // Add search directories from LIBRARY_PATH env variable
2868 std::optional<std::string> LibPath =
2869 llvm::sys::Process::GetEnv("LIBRARY_PATH");
2870 if (LibPath) {
2872 const char EnvPathSeparatorStr[] = {llvm::sys::EnvPathSeparator, '\0'};
2873 llvm::SplitString(*LibPath, Frags, EnvPathSeparatorStr);
2874 for (StringRef Path : Frags)
2875 LibraryPaths.emplace_back(Path.trim());
2876 }
2877
2878 // Add directories from user-specified -L options
2879 for (std::string Search_Dir : DriverArgs.getAllArgValues(options::OPT_L))
2880 LibraryPaths.emplace_back(Search_Dir);
2881
2882 // Add path to lib-debug folders
2883 SmallString<256> DefaultLibPath = llvm::sys::path::parent_path(D.Dir);
2884 llvm::sys::path::append(DefaultLibPath, CLANG_INSTALL_LIBDIR_BASENAME);
2885 LibraryPaths.emplace_back(DefaultLibPath.c_str());
2886
2887 // Build list of Static Device Libraries SDLs specified by -l option
2888 llvm::SmallSet<std::string, 16> SDLNames;
2889 static const StringRef HostOnlyArchives[] = {
2890 "omp", "cudart", "m", "gcc", "gcc_s", "pthread", "hip_hcc"};
2891 for (auto SDLName : DriverArgs.getAllArgValues(options::OPT_l)) {
2892 if (!llvm::is_contained(HostOnlyArchives, SDLName)) {
2893 SDLNames.insert(std::string("-l") + SDLName);
2894 }
2895 }
2896
2897 for (auto Input : DriverArgs.getAllArgValues(options::OPT_INPUT)) {
2898 auto FileName = StringRef(Input);
2899 // Clang treats any unknown file types as archives and passes them to the
2900 // linker. Files with extension 'lib' are classified as TY_Object by clang
2901 // but they are usually archives. It is OK if the file is not really an
2902 // archive since GetSDLFromOffloadArchive will check the magic of the file
2903 // and only unbundle it if it is really an archive.
2904 const StringRef LibFileExt = ".lib";
2905 if (!llvm::sys::path::has_extension(FileName) ||
2907 llvm::sys::path::extension(FileName).drop_front()) ==
2909 llvm::sys::path::extension(FileName) == LibFileExt)
2910 SDLNames.insert(Input);
2911 }
2912
2913 // The search stops as soon as an SDL file is found. The driver then provides
2914 // the full filename of the SDL to the llvm-link command. If no SDL is found
2915 // after searching each LINKPATH with SEARCH-ORDER, it is possible that an
2916 // archive file lib<libname>.a exists and may contain bundled object files.
2917 for (auto SDLName : SDLNames) {
2918 // This is the only call to SDLSearch
2919 if (!SDLSearch(D, DriverArgs, CC1Args, LibraryPaths, SDLName, Arch, Target,
2920 isBitCodeSDL)) {
2921 GetSDLFromOffloadArchive(*C, D, *T, *JA, *Inputs, DriverArgs, CC1Args,
2922 LibraryPaths, SDLName, Arch, Target,
2923 isBitCodeSDL);
2924 }
2925 }
2926}
2927
2928static llvm::opt::Arg *
2929getAMDGPUCodeObjectArgument(const Driver &D, const llvm::opt::ArgList &Args) {
2930 return Args.getLastArg(options::OPT_mcode_object_version_EQ);
2931}
2932
2934 const llvm::opt::ArgList &Args) {
2935 const unsigned MinCodeObjVer = 4;
2936 const unsigned MaxCodeObjVer = 6;
2937
2938 if (auto *CodeObjArg = getAMDGPUCodeObjectArgument(D, Args)) {
2939 if (CodeObjArg->getOption().getID() ==
2940 options::OPT_mcode_object_version_EQ) {
2941 unsigned CodeObjVer = MaxCodeObjVer;
2942 auto Remnant =
2943 StringRef(CodeObjArg->getValue()).getAsInteger(0, CodeObjVer);
2944 if (Remnant || CodeObjVer < MinCodeObjVer || CodeObjVer > MaxCodeObjVer)
2945 D.Diag(diag::err_drv_invalid_int_value)
2946 << CodeObjArg->getAsString(Args) << CodeObjArg->getValue();
2947 }
2948 }
2949}
2950
2952 const llvm::opt::ArgList &Args) {
2953 unsigned CodeObjVer = 6; // default
2954 if (auto *CodeObjArg = getAMDGPUCodeObjectArgument(D, Args))
2955 StringRef(CodeObjArg->getValue()).getAsInteger(0, CodeObjVer);
2956 return CodeObjVer;
2957}
2958
2960 const Driver &D, const llvm::opt::ArgList &Args) {
2961 return getAMDGPUCodeObjectArgument(D, Args) != nullptr;
2962}
2963
2965 const llvm::opt::ArgList &Args,
2966 llvm::opt::ArgStringList &CmdArgs,
2967 const llvm::Triple &Triple, bool IsLTO,
2968 const StringRef PluginOptPrefix) {
2969 auto addArg = [&, IsLTO](const Twine &Arg) {
2970 if (IsLTO) {
2971 assert(!PluginOptPrefix.empty() && "Cannot have empty PluginOptPrefix!");
2972 CmdArgs.push_back(Args.MakeArgString(Twine(PluginOptPrefix) + Arg));
2973 } else {
2974 CmdArgs.push_back("-mllvm");
2975 CmdArgs.push_back(Args.MakeArgString(Arg));
2976 }
2977 };
2978
2979 if (Arg *A = Args.getLastArg(options::OPT_moutline,
2980 options::OPT_mno_outline)) {
2981 if (A->getOption().matches(options::OPT_moutline)) {
2982 // We only support -moutline in AArch64, ARM, RISC-V and X86 targets right
2983 // now. If we're compiling for these, add the proper mllvm flags.
2984 // Otherwise, emit a warning and ignore the flag.
2985 if (Triple.isARM() || Triple.isThumb() || Triple.isAArch64() ||
2986 Triple.isRISCV() || Triple.isX86()) {
2987 addArg(Twine("-enable-machine-outliner"));
2988 } else {
2989 D.Diag(diag::warn_drv_moutline_unsupported_opt) << Triple.getArchName();
2990 }
2991 } else {
2992 if (!IsLTO)
2993 // Disable all outlining behaviour using `nooutline` attribute, in case
2994 // Linker Invocation lacks `-mno-outline`.
2995 CmdArgs.push_back("-mno-outline");
2996
2997 // Disable Pass in Pipeline
2998 addArg(Twine("-enable-machine-outliner=never"));
2999 }
3000 }
3001
3002 auto *CodeGenDataGenArg =
3003 Args.getLastArg(options::OPT_fcodegen_data_generate_EQ);
3004 auto *CodeGenDataUseArg = Args.getLastArg(options::OPT_fcodegen_data_use_EQ);
3005
3006 // We only allow one of them to be specified.
3007 if (CodeGenDataGenArg && CodeGenDataUseArg)
3008 D.Diag(diag::err_drv_argument_not_allowed_with)
3009 << CodeGenDataGenArg->getAsString(Args)
3010 << CodeGenDataUseArg->getAsString(Args);
3011
3012 // For codegen data gen, the output file is passed to the linker
3013 // while a boolean flag is passed to the LLVM backend.
3014 if (CodeGenDataGenArg)
3015 addArg(Twine("-codegen-data-generate"));
3016
3017 // For codegen data use, the input file is passed to the LLVM backend.
3018 if (CodeGenDataUseArg)
3019 addArg(Twine("-codegen-data-use-path=") + CodeGenDataUseArg->getValue());
3020}
3021
3023 const llvm::opt::ArgList &DriverArgs,
3024 llvm::opt::ArgStringList &CC1Args,
3025 StringRef BitcodeSuffix,
3026 const llvm::Triple &Triple,
3027 const ToolChain &HostTC) {
3028 SmallVector<StringRef, 8> LibraryPaths;
3029
3030 // Add user defined library paths from LIBRARY_PATH.
3031 std::optional<std::string> LibPath =
3032 llvm::sys::Process::GetEnv("LIBRARY_PATH");
3033 if (LibPath) {
3035 const char EnvPathSeparatorStr[] = {llvm::sys::EnvPathSeparator, '\0'};
3036 llvm::SplitString(*LibPath, Frags, EnvPathSeparatorStr);
3037 for (StringRef Path : Frags)
3038 LibraryPaths.emplace_back(Path.trim());
3039 }
3040
3041 // Check all of the standard library search paths used by the compiler.
3042 for (const auto &LibPath : HostTC.getFilePaths())
3043 LibraryPaths.emplace_back(LibPath);
3044
3045 // Check the target specific library path for the triple as well.
3046 SmallString<128> P(D.Dir);
3047 llvm::sys::path::append(P, "..", "lib", Triple.getTriple());
3048 LibraryPaths.emplace_back(P);
3049
3050 OptSpecifier LibomptargetBCPathOpt =
3051 Triple.isAMDGCN() ? options::OPT_libomptarget_amdgpu_bc_path_EQ
3052 : Triple.isNVPTX() ? options::OPT_libomptarget_nvptx_bc_path_EQ
3053 : options::OPT_libomptarget_spirv_bc_path_EQ;
3054
3055 StringRef ArchPrefix = Triple.isAMDGCN() ? "amdgpu"
3056 : Triple.isNVPTX() ? "nvptx"
3057 : "spirv";
3058 std::string LibOmpTargetName = ("libomptarget-" + ArchPrefix + ".bc").str();
3059
3060 // First check whether user specifies bc library
3061 if (const Arg *A = DriverArgs.getLastArg(LibomptargetBCPathOpt)) {
3062 SmallString<128> LibOmpTargetFile(A->getValue());
3063 if (llvm::sys::fs::exists(LibOmpTargetFile) &&
3064 llvm::sys::fs::is_directory(LibOmpTargetFile)) {
3065 llvm::sys::path::append(LibOmpTargetFile, LibOmpTargetName);
3066 }
3067
3068 if (llvm::sys::fs::exists(LibOmpTargetFile)) {
3069 CC1Args.push_back("-mlink-builtin-bitcode");
3070 CC1Args.push_back(DriverArgs.MakeArgString(LibOmpTargetFile));
3071 } else {
3072 D.Diag(diag::err_drv_omp_offload_target_bcruntime_not_found)
3073 << LibOmpTargetFile;
3074 }
3075 } else {
3076 bool FoundBCLibrary = false;
3077
3078 for (StringRef LibraryPath : LibraryPaths) {
3079 SmallString<128> LibOmpTargetFile(LibraryPath);
3080 llvm::sys::path::append(LibOmpTargetFile, LibOmpTargetName);
3081 if (llvm::sys::fs::exists(LibOmpTargetFile)) {
3082 CC1Args.push_back("-mlink-builtin-bitcode");
3083 CC1Args.push_back(DriverArgs.MakeArgString(LibOmpTargetFile));
3084 FoundBCLibrary = true;
3085 break;
3086 }
3087 }
3088
3089 if (!FoundBCLibrary)
3090 D.Diag(diag::err_drv_omp_offload_target_missingbcruntime)
3091 << LibOmpTargetName << ArchPrefix;
3092 }
3093}
3094
3095void tools::addOpenCLBuiltinsLib(const Driver &D, const llvm::Triple &TT,
3096 const llvm::opt::ArgList &DriverArgs,
3097 llvm::opt::ArgStringList &CC1Args) {
3098
3099 StringRef LibclcNamespec;
3100 const Arg *A = DriverArgs.getLastArg(options::OPT_libclc_lib_EQ);
3101 if (A) {
3102 // If the namespec is of the form :filename we use it exactly.
3103 LibclcNamespec = A->getValue();
3104 } else {
3105 if (!TT.isAMDGPU() || TT.getEnvironment() != llvm::Triple::LLVM)
3106 return;
3107
3108 // TODO: Should this accept following -stdlib to override?
3109 if (DriverArgs.hasArg(options::OPT_no_offloadlib,
3110 options::OPT_nodefaultlibs, options::OPT_nostdlib))
3111 return;
3112 }
3113
3114 bool FilenameSearch = LibclcNamespec.consume_front(":");
3115 if (FilenameSearch) {
3116 SmallString<128> LibclcFile(LibclcNamespec);
3117 if (D.getVFS().exists(LibclcFile)) {
3118 CC1Args.push_back("-mlink-builtin-bitcode");
3119 CC1Args.push_back(DriverArgs.MakeArgString(LibclcFile));
3120 return;
3121 }
3122 D.Diag(diag::err_drv_libclc_not_found) << LibclcFile;
3123 return;
3124 }
3125
3126 // The OpenCL libraries are stored in <ResourceDir>/lib/<triple>.
3127 SmallString<128> BasePath(D.ResourceDir);
3128 llvm::sys::path::append(BasePath, "lib");
3129 llvm::sys::path::append(BasePath, D.getTargetTriple());
3130
3131 // First check for a CPU-specific library in <ResourceDir>/lib/<triple>/<CPU>.
3132 // TODO: Factor this into common logic that checks for valid subtargets.
3133 if (const Arg *CPUArg =
3134 DriverArgs.getLastArg(options::OPT_mcpu_EQ, options::OPT_march_EQ)) {
3135 StringRef CPU = CPUArg->getValue();
3136 if (!CPU.empty()) {
3137 SmallString<128> CPUPath(BasePath);
3138 llvm::sys::path::append(CPUPath, CPU, "libclc.bc");
3139 if (D.getVFS().exists(CPUPath)) {
3140 CC1Args.push_back("-mlink-builtin-bitcode");
3141 CC1Args.push_back(DriverArgs.MakeArgString(CPUPath));
3142 return;
3143 }
3144 }
3145 }
3146
3147 // Fall back to the generic library for the triple.
3148 SmallString<128> GenericPath(BasePath);
3149 llvm::sys::path::append(GenericPath, "libclc.bc");
3150 if (D.getVFS().exists(GenericPath)) {
3151 CC1Args.push_back("-mlink-builtin-bitcode");
3152 CC1Args.push_back(DriverArgs.MakeArgString(GenericPath));
3153 return;
3154 }
3155
3156 D.Diag(diag::err_drv_libclc_not_found) << "libclc.bc";
3157}
3158
3160 const llvm::opt::ArgList &Args,
3161 llvm::opt::ArgStringList &CmdArgs,
3162 const llvm::Triple &Triple) {
3163 if (Arg *A = Args.getLastArg(options::OPT_moutline_atomics,
3164 options::OPT_mno_outline_atomics)) {
3165 // Option -moutline-atomics supported for AArch64 target only.
3166 if (!Triple.isAArch64()) {
3167 D.Diag(diag::warn_drv_moutline_atomics_unsupported_opt)
3168 << Triple.getArchName() << A->getOption().getName();
3169 } else {
3170 if (A->getOption().matches(options::OPT_moutline_atomics)) {
3171 CmdArgs.push_back("-target-feature");
3172 CmdArgs.push_back("+outline-atomics");
3173 } else {
3174 CmdArgs.push_back("-target-feature");
3175 CmdArgs.push_back("-outline-atomics");
3176 }
3177 }
3178 } else if (Triple.isAArch64() && TC.IsAArch64OutlineAtomicsDefault(Args)) {
3179 CmdArgs.push_back("-target-feature");
3180 CmdArgs.push_back("+outline-atomics");
3181 }
3182}
3183
3184void tools::addOffloadCompressArgs(const llvm::opt::ArgList &TCArgs,
3185 llvm::opt::ArgStringList &CmdArgs) {
3186 if (TCArgs.hasFlag(options::OPT_offload_compress,
3187 options::OPT_no_offload_compress, false))
3188 CmdArgs.push_back("--compress");
3189 if (TCArgs.hasArg(options::OPT_v))
3190 CmdArgs.push_back("--verbose");
3191 if (auto *Arg = TCArgs.getLastArg(options::OPT_offload_compression_level_EQ))
3192 CmdArgs.push_back(
3193 TCArgs.MakeArgString(Twine("--compression-level=") + Arg->getValue()));
3194}
3195
3196void tools::addMCModel(const Driver &D, const llvm::opt::ArgList &Args,
3197 const llvm::Triple &Triple,
3198 const llvm::Reloc::Model &RelocationModel,
3199 llvm::opt::ArgStringList &CmdArgs) {
3200 if (Arg *A = Args.getLastArg(options::OPT_mcmodel_EQ)) {
3201 StringRef CM = A->getValue();
3202 bool Ok = false;
3203 if (Triple.isOSAIX() && CM == "medium")
3204 CM = "large";
3205 if (Triple.isAArch64(64)) {
3206 Ok = CM == "tiny" || CM == "small" || CM == "large";
3207 if (CM == "large" && !Triple.isOSBinFormatMachO() &&
3208 RelocationModel != llvm::Reloc::Static)
3209 D.Diag(diag::err_drv_argument_only_allowed_with)
3210 << A->getAsString(Args) << "-fno-pic";
3211 } else if (Triple.isLoongArch()) {
3212 if (CM == "extreme" &&
3213 Args.hasFlagNoClaim(options::OPT_fplt, options::OPT_fno_plt, false))
3214 D.Diag(diag::err_drv_argument_not_allowed_with)
3215 << A->getAsString(Args) << "-fplt";
3216 Ok = CM == "normal" || CM == "medium" || CM == "extreme";
3217 // Convert to LLVM recognizable names.
3218 if (Ok)
3219 CM = llvm::StringSwitch<StringRef>(CM)
3220 .Case("normal", "small")
3221 .Case("extreme", "large")
3222 .Default(CM);
3223 } else if (Triple.isPPC64() || Triple.isOSAIX()) {
3224 Ok = CM == "small" || CM == "medium" || CM == "large";
3225 } else if (Triple.isRISCV()) {
3226 // Large code model is disallowed to be used with PIC code model.
3227 if (CM == "large" && RelocationModel != llvm::Reloc::Static)
3228 D.Diag(diag::err_drv_argument_not_allowed_with)
3229 << A->getAsString(Args) << "-fpic";
3230 if (CM == "medlow")
3231 CM = "small";
3232 else if (CM == "medany")
3233 CM = "medium";
3234 Ok = CM == "small" || CM == "medium" ||
3235 (CM == "large" && Triple.isRISCV64());
3236 } else if (Triple.getArch() == llvm::Triple::x86_64) {
3237 Ok = llvm::is_contained({"small", "kernel", "medium", "large"}, CM);
3238 } else if (Triple.isNVPTX() || Triple.isAMDGPU() || Triple.isSPIRV()) {
3239 // NVPTX/AMDGPU/SPIRV does not care about the code model and will accept
3240 // whatever works for the host.
3241 Ok = true;
3242 } else if (Triple.isSPARC64()) {
3243 if (CM == "medlow")
3244 CM = "small";
3245 else if (CM == "medmid")
3246 CM = "medium";
3247 else if (CM == "medany")
3248 CM = "large";
3249 Ok = CM == "small" || CM == "medium" || CM == "large";
3250 } else if (Triple.getArch() == llvm::Triple::lanai) {
3251 Ok = llvm::is_contained({"small", "medium", "large"}, CM);
3252 }
3253 if (Ok) {
3254 CmdArgs.push_back(Args.MakeArgString("-mcmodel=" + CM));
3255 } else {
3256 D.Diag(diag::err_drv_unsupported_option_argument_for_target)
3257 << A->getSpelling() << CM << Triple.getTriple();
3258 }
3259 }
3260
3261 if (Triple.getArch() == llvm::Triple::x86_64) {
3262 bool IsMediumCM = false;
3263 bool IsLargeCM = false;
3264 if (Arg *A = Args.getLastArg(options::OPT_mcmodel_EQ)) {
3265 IsMediumCM = StringRef(A->getValue()) == "medium";
3266 IsLargeCM = StringRef(A->getValue()) == "large";
3267 }
3268 if (Arg *A = Args.getLastArg(options::OPT_mlarge_data_threshold_EQ)) {
3269 if (!IsMediumCM && !IsLargeCM) {
3270 D.Diag(diag::warn_drv_large_data_threshold_invalid_code_model)
3271 << A->getOption().getRenderName();
3272 } else {
3273 A->render(Args, CmdArgs);
3274 }
3275 } else if (IsMediumCM) {
3276 CmdArgs.push_back("-mlarge-data-threshold=65536");
3277 } else if (IsLargeCM) {
3278 CmdArgs.push_back("-mlarge-data-threshold=0");
3279 }
3280 }
3281}
3282
3283void tools::handleColorDiagnosticsArgs(const Driver &D, const ArgList &Args,
3284 ArgStringList &CmdArgs) {
3285 // Color diagnostics are parsed by the driver directly from argv and later
3286 // re-parsed to construct this job; claim any possible color diagnostic here
3287 // to avoid warn_drv_unused_argument and diagnose bad
3288 // OPT_fdiagnostics_color_EQ values.
3289 Args.getLastArg(options::OPT_fcolor_diagnostics,
3290 options::OPT_fno_color_diagnostics);
3291 if (const Arg *A = Args.getLastArg(options::OPT_fdiagnostics_color_EQ)) {
3292 StringRef Value(A->getValue());
3293 if (Value != "always" && Value != "never" && Value != "auto")
3294 D.Diag(diag::err_drv_invalid_argument_to_option)
3295 << Value << A->getOption().getName();
3296 }
3297
3298 if (D.getDiags().getDiagnosticOptions().ShowColors)
3299 CmdArgs.push_back("-fcolor-diagnostics");
3300}
3301
3304 for (; *Arg; ++Arg) {
3305 switch (*Arg) {
3306 default:
3307 break;
3308 case ' ':
3309 case '\\':
3310 Res.push_back('\\');
3311 break;
3312 }
3313 Res.push_back(*Arg);
3314 }
3315}
3316
3318 const llvm::opt::ArgList &Args) {
3319 const Driver &D = TC.getDriver();
3320 const char *Exec = D.getClangProgramPath();
3321
3322 llvm::opt::ArgStringList OriginalArgs;
3323 for (const auto &Arg : Args)
3324 Arg->render(Args, OriginalArgs);
3325
3327 escapeSpacesAndBackslashes(Exec, Flags);
3328 for (const char *OriginalArg : OriginalArgs) {
3329 llvm::SmallString<128> EscapedArg;
3330 escapeSpacesAndBackslashes(OriginalArg, EscapedArg);
3331 Flags += " ";
3332 Flags += EscapedArg;
3333 }
3334
3335 return Args.MakeArgString(Flags);
3336}
3337
3339 const llvm::opt::ArgList &Args,
3340 bool &FRecordCommandLine,
3341 bool &GRecordCommandLine) {
3342 const Driver &D = TC.getDriver();
3343 const llvm::Triple &Triple = TC.getEffectiveTriple();
3344 const std::string &TripleStr = Triple.getTriple();
3345
3346 FRecordCommandLine =
3347 Args.hasFlag(options::OPT_frecord_command_line,
3348 options::OPT_fno_record_command_line, false);
3349 GRecordCommandLine =
3350 Args.hasFlag(options::OPT_grecord_command_line,
3351 options::OPT_gno_record_command_line, false);
3352 if (FRecordCommandLine && !Triple.isOSBinFormatELF() &&
3353 !Triple.isOSBinFormatXCOFF() && !Triple.isOSBinFormatMachO())
3354 D.Diag(diag::err_drv_unsupported_opt_for_target)
3355 << Args.getLastArg(options::OPT_frecord_command_line)->getAsString(Args)
3356 << TripleStr;
3357
3358 return FRecordCommandLine || TC.UseDwarfDebugFlags() || GRecordCommandLine;
3359}
3360
3361void tools::renderGlobalISelOptions(const Driver &D, const ArgList &Args,
3362 ArgStringList &CmdArgs,
3363 const llvm::Triple &Triple) {
3364 if (Arg *A = Args.getLastArg(options::OPT_fglobal_isel,
3365 options::OPT_fno_global_isel)) {
3366 CmdArgs.push_back("-mllvm");
3367 if (A->getOption().matches(options::OPT_fglobal_isel)) {
3368 CmdArgs.push_back("-global-isel=1");
3369
3370 // GISel is on by default on AArch64 -O0, so don't bother adding
3371 // the fallback remarks for it. Other combinations will add a warning of
3372 // some kind.
3373 bool IsArchSupported = Triple.getArch() == llvm::Triple::aarch64;
3374 bool IsOptLevelSupported = false;
3375
3376 Arg *A = Args.getLastArg(options::OPT_O_Group);
3377 if (IsArchSupported) {
3378 if (!A || A->getOption().matches(options::OPT_O0))
3379 IsOptLevelSupported = true;
3380 }
3381 if (!IsArchSupported || !IsOptLevelSupported) {
3382 CmdArgs.push_back("-mllvm");
3383 CmdArgs.push_back("-global-isel-abort=2");
3384
3385 if (!IsArchSupported)
3386 D.Diag(diag::warn_drv_global_isel_incomplete) << Triple.getArchName();
3387 else
3388 D.Diag(diag::warn_drv_global_isel_incomplete_opt);
3389 }
3390 } else {
3391 CmdArgs.push_back("-global-isel=0");
3392 }
3393 }
3394}
3395
3396void tools::renderCommonIntegerOverflowOptions(const ArgList &Args,
3397 ArgStringList &CmdArgs) {
3398 bool use_fwrapv = false;
3399 bool use_fwrapv_pointer = false;
3400 for (const Arg *A : Args.filtered(
3401 options::OPT_fstrict_overflow, options::OPT_fno_strict_overflow,
3402 options::OPT_fwrapv, options::OPT_fno_wrapv,
3403 options::OPT_fwrapv_pointer, options::OPT_fno_wrapv_pointer)) {
3404 A->claim();
3405 switch (A->getOption().getID()) {
3406 case options::OPT_fstrict_overflow:
3407 use_fwrapv = false;
3408 use_fwrapv_pointer = false;
3409 break;
3410 case options::OPT_fno_strict_overflow:
3411 use_fwrapv = true;
3412 use_fwrapv_pointer = true;
3413 break;
3414 case options::OPT_fwrapv:
3415 use_fwrapv = true;
3416 break;
3417 case options::OPT_fno_wrapv:
3418 use_fwrapv = false;
3419 break;
3420 case options::OPT_fwrapv_pointer:
3421 use_fwrapv_pointer = true;
3422 break;
3423 case options::OPT_fno_wrapv_pointer:
3424 use_fwrapv_pointer = false;
3425 break;
3426 }
3427 }
3428
3429 if (use_fwrapv)
3430 CmdArgs.push_back("-fwrapv");
3431 if (use_fwrapv_pointer)
3432 CmdArgs.push_back("-fwrapv-pointer");
3433}
3434
3435/// Vectorize at all optimization levels greater than 1 except for -Oz.
3436/// For -Oz the loop vectorizer is disabled, while the slp vectorizer is
3437/// enabled.
3438bool tools::shouldEnableVectorizerAtOLevel(const ArgList &Args, bool isSlpVec) {
3439 if (Arg *A = Args.getLastArg(options::OPT_O_Group)) {
3440 if (A->getOption().matches(options::OPT_O4) ||
3441 A->getOption().matches(options::OPT_Ofast))
3442 return true;
3443
3444 if (A->getOption().matches(options::OPT_O0))
3445 return false;
3446
3447 assert(A->getOption().matches(options::OPT_O) && "Must have a -O flag");
3448
3449 // Vectorize -Os.
3450 StringRef S(A->getValue());
3451 if (S == "s")
3452 return true;
3453
3454 // Don't vectorize -Oz, unless it's the slp vectorizer.
3455 if (S == "z")
3456 return isSlpVec;
3457
3458 unsigned OptLevel = 0;
3459 if (S.getAsInteger(10, OptLevel))
3460 return false;
3461
3462 return OptLevel > 1;
3463 }
3464
3465 return false;
3466}
3467
3468void tools::handleVectorizeLoopsArgs(const ArgList &Args,
3469 ArgStringList &CmdArgs) {
3470 bool EnableVec = shouldEnableVectorizerAtOLevel(Args, false);
3471 if (Args.hasFlag(options::OPT_fvectorize, options::OPT_fno_vectorize,
3472 EnableVec))
3473 CmdArgs.push_back("-vectorize-loops");
3474}
3475
3476void tools::handleVectorizeSLPArgs(const ArgList &Args,
3477 ArgStringList &CmdArgs) {
3478 bool EnableSLPVec = shouldEnableVectorizerAtOLevel(Args, true);
3479 if (Args.hasFlag(options::OPT_fslp_vectorize, options::OPT_fno_slp_vectorize,
3480 EnableSLPVec))
3481 CmdArgs.push_back("-vectorize-slp");
3482}
3483
3484void tools::handleInterchangeLoopsArgs(const ArgList &Args,
3485 ArgStringList &CmdArgs) {
3486 if (Args.hasFlag(options::OPT_floop_interchange,
3487 options::OPT_fno_loop_interchange, false))
3488 CmdArgs.push_back("-floop-interchange");
3489}
3490
3492 switch (Range) {
3494 return "full";
3495 break;
3497 return "basic";
3498 break;
3500 return "improved";
3501 break;
3503 return "promoted";
3504 break;
3506 return "none";
3507 break;
3508 }
3509 llvm_unreachable("Fully covered switch above");
3510}
3511
3512std::string
3514 std::string ComplexRangeStr = complexRangeKindToStr(Range);
3515 if (!ComplexRangeStr.empty())
3516 return "-complex-range=" + ComplexRangeStr;
3517 return ComplexRangeStr;
3518}
3519
3520static void emitComplexRangeDiag(const Driver &D, StringRef LastOpt,
3522 StringRef NewOpt,
3524 // Do not emit a warning if NewOpt overrides LastOpt in the following cases.
3525 //
3526 // | LastOpt | NewOpt |
3527 // |-----------------------|-----------------------|
3528 // | -fcx-limited-range | -fno-cx-limited-range |
3529 // | -fno-cx-limited-range | -fcx-limited-range |
3530 // | -fcx-fortran-rules | -fno-cx-fortran-rules |
3531 // | -fno-cx-fortran-rules | -fcx-fortran-rules |
3532 // | -ffast-math | -fno-fast-math |
3533 // | -ffp-model= | -ffast-math |
3534 // | -ffp-model= | -fno-fast-math |
3535 // | -ffp-model= | -ffp-model= |
3536 // | -fcomplex-arithmetic= | -fcomplex-arithmetic= |
3537 if (LastOpt == NewOpt || NewOpt.empty() || LastOpt.empty() ||
3538 (LastOpt == "-fcx-limited-range" && NewOpt == "-fno-cx-limited-range") ||
3539 (LastOpt == "-fno-cx-limited-range" && NewOpt == "-fcx-limited-range") ||
3540 (LastOpt == "-fcx-fortran-rules" && NewOpt == "-fno-cx-fortran-rules") ||
3541 (LastOpt == "-fno-cx-fortran-rules" && NewOpt == "-fcx-fortran-rules") ||
3542 (LastOpt == "-ffast-math" && NewOpt == "-fno-fast-math") ||
3543 (LastOpt.starts_with("-ffp-model=") && NewOpt == "-ffast-math") ||
3544 (LastOpt.starts_with("-ffp-model=") && NewOpt == "-fno-fast-math") ||
3545 (LastOpt.starts_with("-ffp-model=") &&
3546 NewOpt.starts_with("-ffp-model=")) ||
3547 (LastOpt.starts_with("-fcomplex-arithmetic=") &&
3548 NewOpt.starts_with("-fcomplex-arithmetic=")))
3549 return;
3550
3551 D.Diag(clang::diag::warn_drv_overriding_complex_range)
3552 << LastOpt << NewOpt << complexRangeKindToStr(Range)
3553 << complexRangeKindToStr(NewRange);
3554}
3555
3556void tools::setComplexRange(const Driver &D, StringRef NewOpt,
3558 StringRef &LastOpt,
3560 // Warn if user overrides the previously set complex number
3561 // multiplication/division option.
3562 if (Range != LangOptions::ComplexRangeKind::CX_None && Range != NewRange)
3563 emitComplexRangeDiag(D, LastOpt, Range, NewOpt, NewRange);
3564 LastOpt = NewOpt;
3565 Range = NewRange;
3566}
3567
3569 const JobAction &JA,
3570 const InputInfoList &JobInputs,
3571 const ArgStringList &LinkerInputs,
3572 const InputInfo &Output,
3573 const llvm::opt::ArgList &Args,
3574 const char *OutputFilename) {
3575 // Construct llvm-link command.
3576 // The output from llvm-link is a bitcode file.
3577
3578 assert(!LinkerInputs.empty() && !JobInputs.empty() &&
3579 "Must have at least one input.");
3580
3581 ArgStringList LlvmLinkArgs(
3582 {"-o", OutputFilename ? OutputFilename : Output.getFilename()});
3583
3584 LlvmLinkArgs.append(LinkerInputs);
3585
3586 const ToolChain &TC = T.getToolChain();
3587 const char *LlvmLink = Args.MakeArgString(TC.GetProgramPath("llvm-link"));
3588 C.addCommand(std::make_unique<Command>(JA, T, ResponseFileSupport::None(),
3589 LlvmLink, LlvmLinkArgs, JobInputs,
3590 Output));
3591}
#define V(N, I)
static bool useLeafFramePointerForTargetByDefault(const llvm::Triple &Triple)
static unsigned ParseDebugDefaultVersion(const ToolChain &TC, const ArgList &Args)
static void getWebAssemblyTargetFeatures(const Driver &D, const llvm::Triple &Triple, const ArgList &Args, std::vector< StringRef > &Features)
LibGccType
static void emitComplexRangeDiag(const Driver &D, StringRef LastOpt, LangOptions::ComplexRangeKind Range, StringRef NewOpt, LangOptions::ComplexRangeKind NewRange)
static bool addSanitizerDynamicList(const ToolChain &TC, const ArgList &Args, ArgStringList &CmdArgs, StringRef Sanitizer)
static bool mustMaintainValidFrameChain(const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
static llvm::opt::Arg * getAMDGPUCodeObjectArgument(const Driver &D, const llvm::opt::ArgList &Args)
static void collectSanitizerRuntimes(const ToolChain &TC, const ArgList &Args, SmallVectorImpl< StringRef > &SharedRuntimes, SmallVectorImpl< StringRef > &StaticRuntimes, SmallVectorImpl< StringRef > &NonWholeStaticRuntimes, SmallVectorImpl< StringRef > &HelperStaticRuntimes, SmallVectorImpl< StringRef > &RequiredSymbols)
static void addSanitizerRuntime(const ToolChain &TC, const ArgList &Args, ArgStringList &CmdArgs, StringRef Sanitizer, bool IsShared, bool IsWhole)
static void AddUnwindLibrary(const ToolChain &TC, const Driver &D, ArgStringList &CmdArgs, const ArgList &Args)
static bool SDLSearch(const Driver &D, const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CC1Args, const SmallVectorImpl< std::string > &LibraryPaths, StringRef Lib, StringRef Arch, StringRef Target, bool isBitCodeSDL)
SDLSearch: Search for Static Device Library The search for SDL bitcode files is consistent with how s...
static void renderRpassOptions(const ArgList &Args, ArgStringList &CmdArgs, const StringRef PluginOptPrefix)
static StringRef getWebAssemblyTargetCPU(const ArgList &Args)
Get the (LLVM) name of the WebAssembly cpu we are targeting.
static bool framePointerImpliesLeafFramePointer(const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
static void renderRemarksHotnessOptions(const ArgList &Args, ArgStringList &CmdArgs, const StringRef PluginOptPrefix)
static void GetSDLFromOffloadArchive(Compilation &C, const Driver &D, const Tool &T, const JobAction &JA, const InputInfoList &Inputs, const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CC1Args, const SmallVectorImpl< std::string > &LibraryPaths, StringRef Lib, StringRef Arch, StringRef Target, bool isBitCodeSDL)
Search if a user provided archive file lib<libname>.a exists in any of the library paths.
static std::string getLanaiTargetCPU(const ArgList &Args)
static void renderRemarksOptions(const ArgList &Args, ArgStringList &CmdArgs, const llvm::Triple &Triple, const InputInfo &Input, const InputInfo &Output, const StringRef PluginOptPrefix)
static bool useFramePointerForTargetByDefault(const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
static void AddLibgcc(const ToolChain &TC, const Driver &D, ArgStringList &CmdArgs, const ArgList &Args)
static LibGccType getLibGccType(const ToolChain &TC, const Driver &D, const ArgList &Args)
clang::CodeGenOptions::FramePointerKind getFramePointerKind(const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
static std::string getAMDGPUTargetGPU(const llvm::Triple &T, const ArgList &Args)
Get the (LLVM) name of the AMDGPU gpu we are targeting.
static bool mustUseNonLeafFramePointerForTarget(const llvm::Triple &Triple)
static bool shouldIgnoreUnsupportedTargetFeature(const Arg &TargetFeatureArg, llvm::Triple T, StringRef Processor)
llvm::MachO::Target Target
Definition MachO.h:51
DiagnosticBuilder Report(SourceLocation Loc, unsigned DiagID)
Issue the message to the client.
DiagnosticOptions & getDiagnosticOptions() const
Retrieve the diagnostic options.
Definition Diagnostic.h:603
The kind of a file that we've been handed as an input.
ComplexRangeKind
Controls the various implementations for complex multiplication and.
@ CX_Full
Implementation of complex division and multiplication using a call to runtime library functions(gener...
@ CX_Basic
Implementation of complex division and multiplication using algebraic formulas at source precision.
@ CX_Promoted
Implementation of complex division using algebraic formulas at higher precision.
@ CX_None
No range rule is enabled.
@ CX_Improved
Implementation of complex division offering an improved handling for overflow in intermediate calcula...
const char * getOffloadingArch() const
Definition Action.h:213
static StringRef GetOffloadKindName(OffloadKind Kind)
Return a string containing a offload kind name.
Definition Action.cpp:164
OffloadKind getOffloadingDeviceKind() const
Definition Action.h:212
bool isHostOffloading(unsigned int OKind) const
Check if this action have any offload kinds.
Definition Action.h:220
Compilation - A set of tasks to perform for a single driver invocation.
Definition Compilation.h:45
Driver - Encapsulate logic for constructing compilation processes from a set of gcc-driver-like comma...
Definition Driver.h:99
std::string CCPrintInternalStatReportFilename
The file to log CC_PRINT_INTERNAL_STAT_FILE output to, if enabled.
Definition Driver.h:220
DiagnosticsEngine & getDiags() const
Definition Driver.h:419
const char * getPrependArg() const
Definition Driver.h:430
OpenMPRuntimeKind getOpenMPRuntime(const llvm::opt::ArgList &Args) const
Compute the desired OpenMP runtime from the flags provided.
Definition Driver.cpp:884
const char * getClangProgramPath() const
Get the path to the main clang executable.
Definition Driver.h:441
DiagnosticBuilder Diag(unsigned DiagID) const
Definition Driver.h:169
unsigned CCPrintInternalStats
Set CC_PRINT_INTERNAL_STAT mode, which causes the driver to dump internal performance report to CC_PR...
Definition Driver.h:293
const llvm::opt::OptTable & getOpts() const
Definition Driver.h:417
std::string ResourceDir
The path to the compiler resource directory.
Definition Driver.h:189
llvm::vfs::FileSystem & getVFS() const
Definition Driver.h:421
std::string GetTemporaryPath(StringRef Prefix, StringRef Suffix) const
GetTemporaryPath - Return the pathname of a temporary file to use as part of compilation; the file wi...
Definition Driver.cpp:6898
std::string Dir
The path the driver executable was in, as invoked from the command line.
Definition Driver.h:180
@ OMPRT_IOMP5
The legacy name for the LLVM OpenMP runtime from when it was the Intel OpenMP runtime.
Definition Driver.h:165
@ OMPRT_OMP
The LLVM OpenMP runtime.
Definition Driver.h:155
@ OMPRT_Unknown
An unknown OpenMP runtime.
Definition Driver.h:151
@ OMPRT_GOMP
The GNU OpenMP runtime.
Definition Driver.h:160
std::string getTargetTriple() const
Definition Driver.h:438
bool IsFlangMode() const
Whether the driver should invoke flang for fortran inputs.
Definition Driver.h:245
bool CCCIsCXX() const
Whether the driver should follow g++ like behavior.
Definition Driver.h:232
InputInfo - Wrapper for information about an input source.
Definition InputInfo.h:22
const char * getBaseInput() const
Definition InputInfo.h:78
const char * getFilename() const
Definition InputInfo.h:83
bool isFilename() const
Definition InputInfo.h:75
This corresponds to a single GCC Multilib, or a segment of one controlled by a command line flag.
Definition Multilib.h:35
std::vector< std::string > flags_list
Definition Multilib.h:37
const std::string & getMemtagMode() const
ToolChain - Access to tools for a single platform.
Definition ToolChain.h:92
virtual void AddCCKextLibArgs(const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs) const
AddCCKextLibArgs - Add the system specific linker arguments to use for kernel extensions (Darwin-spec...
virtual bool useIntegratedAs() const
Check if the toolchain should use the integrated assembler.
std::optional< std::string > getStdlibPath() const
virtual unsigned GetDefaultDwarfVersion() const
Definition ToolChain.h:627
virtual RuntimeLibType GetRuntimeLibType(const llvm::opt::ArgList &Args) const
path_list & getFilePaths()
Definition ToolChain.h:317
virtual bool supportsDebugInfoOption(const llvm::opt::Arg *) const
Does this toolchain supports given debug info option or not.
Definition ToolChain.h:650
llvm::Triple::ArchType getArch() const
Definition ToolChain.h:293
const Driver & getDriver() const
Definition ToolChain.h:277
llvm::vfs::FileSystem & getVFS() const
virtual std::string getCompilerRT(const llvm::opt::ArgList &Args, StringRef Component, FileType Type=ToolChain::FT_Static, bool IsFortran=false) const
virtual bool isPIEDefault(const llvm::opt::ArgList &Args) const =0
Test whether this toolchain defaults to PIE.
virtual bool isPICDefaultForced() const =0
Tests whether this toolchain forces its default for PIC, PIE or non-PIC.
const llvm::Triple & getEffectiveTriple() const
Get the toolchain's effective clang triple.
Definition ToolChain.h:305
virtual void AddCXXStdlibLibArgs(const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs) const
AddCXXStdlibLibArgs - Add the system specific linker arguments to use for the given C++ standard libr...
const llvm::Triple & getTriple() const
Definition ToolChain.h:279
virtual bool HasNativeLLVMSupport() const
HasNativeLTOLinker - Check whether the linker and related tools have native LLVM support.
const llvm::SmallVector< Multilib > & getSelectedMultilibs() const
Definition ToolChain.h:325
virtual UnwindLibType GetUnwindLibType(const llvm::opt::ArgList &Args) const
const XRayArgs getXRayArgs(const llvm::opt::ArgList &) const
StringRef getTripleString() const
Definition ToolChain.h:302
std::string GetLinkerPath(bool *LinkerIsLLD=nullptr) const
Returns the linker path, respecting the -fuse-ld= argument to determine the linker suffix or name.
std::string GetProgramPath(const char *Name) const
virtual bool UseDwarfDebugFlags() const
UseDwarfDebugFlags - Embed the compile options to clang into the Dwarf compile unit information.
Definition ToolChain.h:620
SanitizerArgs getSanitizerArgs(const llvm::opt::ArgList &JobArgs) const
virtual bool IsAArch64OutlineAtomicsDefault(const llvm::opt::ArgList &Args) const
Test whether this toolchain supports outline atomics by default.
Definition ToolChain.h:591
const char * getCompilerRTArgString(const llvm::opt::ArgList &Args, StringRef Component, FileType Type=ToolChain::FT_Static, bool IsFortran=false) const
virtual path_list getArchSpecificLibPaths() const
virtual bool isCrossCompiling() const
Returns true if the toolchain is targeting a non-native architecture.
virtual bool isPICDefault() const =0
Test whether this toolchain defaults to PIC.
SmallVector< std::string, 16 > path_list
Definition ToolChain.h:94
Tool - Information on a specific compilation tool.
Definition Tool.h:32
bool needsXRayDSORt() const
Definition XRayArgs.h:39
bool needsXRayRt() const
Definition XRayArgs.h:38
llvm::ArrayRef< std::string > modeList() const
Definition XRayArgs.h:40
static StringRef GetTargetCPUVersion(const llvm::opt::ArgList &Args)
Definition Hexagon.cpp:890
void getNVPTXTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< StringRef > &Features)
Definition Cuda.cpp:668
bool isAArch64BareMetal(const llvm::Triple &Triple)
Is the triple {aarch64.aarch64_be}-none-elf?
Definition AArch64.cpp:531
void getAArch64TargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features, bool ForAS, bool ForMultilib=false)
std::string getAArch64TargetCPU(const llvm::opt::ArgList &Args, const llvm::Triple &Triple, llvm::opt::Arg *&A)
void getAMDGPUTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< StringRef > &Features)
Definition AMDGPU.cpp:655
void getARMArchCPUFromArgs(const llvm::opt::ArgList &Args, llvm::StringRef &Arch, llvm::StringRef &CPU, bool FromAs=false)
bool isARMEABIBareMetal(const llvm::Triple &Triple)
Is the triple {arm,armeb,thumb,thumbeb}-none-none-{eabi,eabihf} ?
Definition ARM.cpp:55
std::string getARMTargetCPU(StringRef CPU, llvm::StringRef Arch, const llvm::Triple &Triple)
bool isARMBigEndian(const llvm::Triple &Triple, const llvm::opt::ArgList &Args)
llvm::ARM::FPUKind getARMTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features, bool ForAS, bool ForMultilib=false)
void getCSKYTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, std::vector< llvm::StringRef > &Features)
void getHexagonTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< StringRef > &Features)
std::string getLoongArchTargetCPU(const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
void getLoongArchTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
void getM68kTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
std::string getM68kTargetCPU(const llvm::opt::ArgList &Args)
void getMIPSTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< StringRef > &Features)
bool hasMipsAbiArg(const llvm::opt::ArgList &Args, const char *Value)
void getMipsCPUAndABI(const llvm::opt::ArgList &Args, const llvm::Triple &Triple, StringRef &CPUName, StringRef &ABIName)
void getMSP430TargetFeatures(const Driver &D, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
void getPPCTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
std::string getRISCVTargetCPU(const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
Definition RISCV.cpp:347
void getRISCVTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
bool isLinkerGnuLd(const ToolChain &TC, const llvm::opt::ArgList &Args)
void getSparcTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
std::string getSparcTargetCPU(const Driver &D, const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
void getSystemZTargetFeatures(const Driver &D, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
std::string getSystemZTargetCPU(const llvm::opt::ArgList &Args, const llvm::Triple &T)
void getVETargetFeatures(const Driver &D, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
std::string getX86TargetCPU(const Driver &D, const llvm::opt::ArgList &Args, const llvm::Triple &Triple)
void getX86TargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< llvm::StringRef > &Features)
void AddStaticDeviceLibs(Compilation *C, const Tool *T, const JobAction *JA, const InputInfoList *Inputs, const Driver &D, const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CmdArgs, StringRef Arch, StringRef Target, bool isBitCodeSDL)
void addX86AlignBranchArgs(const Driver &D, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, bool IsLTO, const StringRef PluginOptPrefix="")
void addMachineOutlinerArgs(const Driver &D, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, const llvm::Triple &Triple, bool IsLTO, const StringRef PluginOptPrefix="")
unsigned ParseFunctionAlignment(const ToolChain &TC, const llvm::opt::ArgList &Args)
void addOffloadCompressArgs(const llvm::opt::ArgList &TCArgs, llvm::opt::ArgStringList &CmdArgs)
void handleTargetFeaturesGroup(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, std::vector< StringRef > &Features, llvm::opt::OptSpecifier Group)
Iterate Args and convert -mxxx to +xxx and -mno-xxx to -xxx and append it to Features.
void addMCModel(const Driver &D, const llvm::opt::ArgList &Args, const llvm::Triple &Triple, const llvm::Reloc::Model &RelocationModel, llvm::opt::ArgStringList &CmdArgs)
SmallVector< StringRef > unifyTargetFeatures(ArrayRef< StringRef > Features)
If there are multiple +xxx or -xxx features, keep the last one.
llvm::opt::Arg * getLastProfileSampleUseArg(const llvm::opt::ArgList &Args)
void handleVectorizeSLPArgs(const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
Enable -fslp-vectorize based on the optimization level selected.
void addOpenMPDeviceRTL(const Driver &D, const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CC1Args, StringRef BitcodeSuffix, const llvm::Triple &Triple, const ToolChain &HostTC)
const char * SplitDebugName(const JobAction &JA, const llvm::opt::ArgList &Args, const InputInfo &Input, const InputInfo &Output)
void addOutlineAtomicsArgs(const Driver &D, const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, const llvm::Triple &Triple)
void checkAMDGPUCodeObjectVersion(const Driver &D, const llvm::opt::ArgList &Args)
void getTargetFeatures(const Driver &D, const llvm::Triple &Triple, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, bool ForAS, bool IsAux=false)
void AddStaticDeviceLibsLinking(Compilation &C, const Tool &T, const JobAction &JA, const InputInfoList &Inputs, const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CmdArgs, StringRef Arch, StringRef Target, bool isBitCodeSDL)
std::string complexRangeKindToStr(LangOptions::ComplexRangeKind Range)
void addAsNeededOption(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, bool as_needed)
void handleColorDiagnosticsArgs(const Driver &D, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
Handle the -f{no}-color-diagnostics and -f{no}-diagnostics-colors options.
bool getStaticPIE(const llvm::opt::ArgList &Args, const ToolChain &TC)
std::string getCPUName(const Driver &D, const llvm::opt::ArgList &Args, const llvm::Triple &T, bool FromAs=false)
bool shouldRecordCommandLine(const ToolChain &TC, const llvm::opt::ArgList &Args, bool &FRecordCommandLine, bool &GRecordCommandLine)
Check if the command line should be recorded in the object file.
void addLTOOptions(const ToolChain &ToolChain, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, const InputInfo &Output, const InputInfoList &Inputs, bool IsThinLTO)
void addMultilibFlag(bool Enabled, const StringRef Flag, Multilib::flags_list &Flags)
Flag must be a flag accepted by the driver.
bool isUseSeparateSections(const llvm::Triple &Triple)
void linkXRayRuntimeDeps(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
void AddRunTimeLibs(const ToolChain &TC, const Driver &D, llvm::opt::ArgStringList &CmdArgs, const llvm::opt::ArgList &Args)
void SplitDebugInfo(const ToolChain &TC, Compilation &C, const Tool &T, const JobAction &JA, const llvm::opt::ArgList &Args, const InputInfo &Output, const char *OutFile)
void linkSanitizerRuntimeDeps(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
void addDirectoryList(const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, const char *ArgName, const char *EnvVar)
EnvVar is split by system delimiter for environment variables.
bool addSanitizerRuntimes(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
bool areOptimizationsEnabled(const llvm::opt::ArgList &Args)
void addOpenMPRuntimeLibraryPath(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
void setComplexRange(const Driver &D, StringRef NewOpt, LangOptions::ComplexRangeKind NewRange, StringRef &LastOpt, LangOptions::ComplexRangeKind &Range)
bool addXRayRuntime(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
void AddAssemblerKPIC(const ToolChain &ToolChain, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
bool haveAMDGPUCodeObjectVersionArgument(const Driver &D, const llvm::opt::ArgList &Args)
bool isTLSDESCEnabled(const ToolChain &TC, const llvm::opt::ArgList &Args)
void addDebugInfoForProfilingArgs(const Driver &D, const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
void addDebugInfoKind(llvm::opt::ArgStringList &CmdArgs, llvm::codegenoptions::DebugInfoKind DebugInfoKind)
void addPathIfExists(const Driver &D, const Twine &Path, ToolChain::path_list &Paths)
llvm::codegenoptions::DebugInfoKind debugLevelToInfoKind(const llvm::opt::Arg &A)
llvm::opt::Arg * getLastCSProfileGenerateArg(const llvm::opt::ArgList &Args)
void renderGlobalISelOptions(const Driver &D, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, const llvm::Triple &Triple)
llvm::opt::Arg * getLastProfileUseArg(const llvm::opt::ArgList &Args)
void addDTLTOOptions(const ToolChain &ToolChain, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
std::string renderComplexRangeOption(LangOptions::ComplexRangeKind Range)
DwarfFissionKind getDebugFissionKind(const Driver &D, const llvm::opt::ArgList &Args, llvm::opt::Arg *&Arg)
llvm::StringRef getLTOParallelism(const llvm::opt::ArgList &Args, const Driver &D)
void addLinkerCompressDebugSectionsOption(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
void constructLLVMLinkCommand(Compilation &C, const Tool &T, const JobAction &JA, const InputInfoList &JobInputs, const llvm::opt::ArgStringList &LinkerInputs, const InputInfo &Output, const llvm::opt::ArgList &Args, const char *OutputFilename=nullptr)
void handleInterchangeLoopsArgs(const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
Enable -floop-interchange based on the optimization level selected.
const char * renderEscapedCommandLine(const ToolChain &TC, const llvm::opt::ArgList &Args)
Join the args in the given ArgList, escape spaces and backslashes and return the joined string.
bool addOpenMPRuntime(const Compilation &C, llvm::opt::ArgStringList &CmdArgs, const ToolChain &TC, const llvm::opt::ArgList &Args, bool ForceStaticHostRuntime=false, bool IsOffloadingHost=false, bool GompNeedsRT=false)
Returns true, if an OpenMP runtime has been added.
bool checkDebugInfoOption(const llvm::opt::Arg *A, const llvm::opt::ArgList &Args, const Driver &D, const ToolChain &TC)
void renderCommonIntegerOverflowOptions(const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
std::tuple< llvm::Reloc::Model, unsigned, bool > ParsePICArgs(const ToolChain &ToolChain, const llvm::opt::ArgList &Args)
void claimNoWarnArgs(const llvm::opt::ArgList &Args)
unsigned DwarfVersionNum(StringRef ArgValue)
void AddLinkerInputs(const ToolChain &TC, const InputInfoList &Inputs, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs, const JobAction &JA)
unsigned getDwarfVersion(const ToolChain &TC, const llvm::opt::ArgList &Args)
unsigned getAMDGPUCodeObjectVersion(const Driver &D, const llvm::opt::ArgList &Args)
const llvm::opt::Arg * getDwarfNArg(const llvm::opt::ArgList &Args)
void AddTargetFeature(const llvm::opt::ArgList &Args, std::vector< StringRef > &Features, llvm::opt::OptSpecifier OnOpt, llvm::opt::OptSpecifier OffOpt, StringRef FeatureName)
SmallString< 128 > getStatsFileName(const llvm::opt::ArgList &Args, const InputInfo &Output, const InputInfo &Input, const Driver &D)
Handles the -save-stats option and returns the filename to save statistics to.
void addArchSpecificRPath(const ToolChain &TC, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
void handleVectorizeLoopsArgs(const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
Enable -fvectorize based on the optimization level selected.
void escapeSpacesAndBackslashes(const char *Arg, llvm::SmallVectorImpl< char > &Res)
Add backslashes to escape spaces and other backslashes.
const char * getLDMOption(const llvm::Triple &T, const llvm::opt::ArgList &Args)
void addOpenCLBuiltinsLib(const Driver &D, const llvm::Triple &TT, const llvm::opt::ArgList &DriverArgs, llvm::opt::ArgStringList &CC1Args)
bool isObjCAutoRefCount(const llvm::opt::ArgList &Args)
const char * RelocationModelName(llvm::Reloc::Model Model)
void addOpenMPHostOffloadingArgs(const Compilation &C, const JobAction &JA, const llvm::opt::ArgList &Args, llvm::opt::ArgStringList &CmdArgs)
Adds offloading options for OpenMP host compilation to CmdArgs.
bool shouldEnableVectorizerAtOLevel(const llvm::opt::ArgList &Args, bool isSlpVec)
bool isLLVMIR(ID Id)
Is this LLVM IR.
Definition Types.cpp:266
ID lookupTypeForExtension(llvm::StringRef Ext)
lookupTypeForExtension - Lookup the type to use for the file extension Ext.
Definition Types.cpp:309
SmallVector< InputInfo, 4 > InputInfoList
Definition Driver.h:50
bool willEmitRemarks(const llvm::opt::ArgList &Args)
The JSON file list parser is used to communicate input to InstallAPI.
llvm::StringRef getProcessorFromTargetID(const llvm::Triple &T, llvm::StringRef OffloadArch)
Get processor name from target ID.
Definition TargetID.cpp:57
unsigned getOptimizationLevel(const llvm::opt::ArgList &Args, InputKind IK, DiagnosticsEngine &Diags)
static constexpr ResponseFileSupport None()
Returns a ResponseFileSupport indicating that response files are not supported.
Definition Job.h:78
static constexpr ResponseFileSupport AtFileCurCP()
Definition Job.h:92