112f3ca4cSDimitry Andric //===- ELFObjectFile.cpp - ELF object file implementation -----------------===//
2cf099d11SDimitry Andric //
3e6d15924SDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4e6d15924SDimitry Andric // See https://llvm.org/LICENSE.txt for license information.
5e6d15924SDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6cf099d11SDimitry Andric //
7cf099d11SDimitry Andric //===----------------------------------------------------------------------===//
8cf099d11SDimitry Andric //
963faed5bSDimitry Andric // Part of the ELFObjectFile class implementation.
10cf099d11SDimitry Andric //
11cf099d11SDimitry Andric //===----------------------------------------------------------------------===//
12cf099d11SDimitry Andric
137ab83427SDimitry Andric #include "llvm/Object/ELFObjectFile.h"
147ab83427SDimitry Andric #include "llvm/BinaryFormat/ELF.h"
15d8e91e46SDimitry Andric #include "llvm/MC/MCInstrAnalysis.h"
16c0981da4SDimitry Andric #include "llvm/MC/TargetRegistry.h"
1712f3ca4cSDimitry Andric #include "llvm/Object/ELF.h"
1812f3ca4cSDimitry Andric #include "llvm/Object/ELFTypes.h"
1912f3ca4cSDimitry Andric #include "llvm/Object/Error.h"
2071d5a254SDimitry Andric #include "llvm/Support/ARMAttributeParser.h"
217ab83427SDimitry Andric #include "llvm/Support/ARMBuildAttributes.h"
2212f3ca4cSDimitry Andric #include "llvm/Support/ErrorHandling.h"
23ac9a064cSDimitry Andric #include "llvm/Support/HexagonAttributeParser.h"
244a16efa3SDimitry Andric #include "llvm/Support/MathExtras.h"
25cfca06d7SDimitry Andric #include "llvm/Support/RISCVAttributeParser.h"
26cfca06d7SDimitry Andric #include "llvm/Support/RISCVAttributes.h"
27ac9a064cSDimitry Andric #include "llvm/TargetParser/RISCVISAInfo.h"
287fa27ce4SDimitry Andric #include "llvm/TargetParser/SubtargetFeature.h"
297fa27ce4SDimitry Andric #include "llvm/TargetParser/Triple.h"
3012f3ca4cSDimitry Andric #include <algorithm>
3112f3ca4cSDimitry Andric #include <cstddef>
3212f3ca4cSDimitry Andric #include <cstdint>
3312f3ca4cSDimitry Andric #include <memory>
34e3b55780SDimitry Andric #include <optional>
3512f3ca4cSDimitry Andric #include <string>
3612f3ca4cSDimitry Andric #include <utility>
37cf099d11SDimitry Andric
3812f3ca4cSDimitry Andric using namespace llvm;
39cf099d11SDimitry Andric using namespace object;
40cf099d11SDimitry Andric
41e6d15924SDimitry Andric const EnumEntry<unsigned> llvm::object::ElfSymbolTypes[NumElfSymbolTypes] = {
42e6d15924SDimitry Andric {"None", "NOTYPE", ELF::STT_NOTYPE},
43e6d15924SDimitry Andric {"Object", "OBJECT", ELF::STT_OBJECT},
44e6d15924SDimitry Andric {"Function", "FUNC", ELF::STT_FUNC},
45e6d15924SDimitry Andric {"Section", "SECTION", ELF::STT_SECTION},
46e6d15924SDimitry Andric {"File", "FILE", ELF::STT_FILE},
47e6d15924SDimitry Andric {"Common", "COMMON", ELF::STT_COMMON},
48e6d15924SDimitry Andric {"TLS", "TLS", ELF::STT_TLS},
491d5ae102SDimitry Andric {"Unknown", "<unknown>: 7", 7},
501d5ae102SDimitry Andric {"Unknown", "<unknown>: 8", 8},
511d5ae102SDimitry Andric {"Unknown", "<unknown>: 9", 9},
521d5ae102SDimitry Andric {"GNU_IFunc", "IFUNC", ELF::STT_GNU_IFUNC},
531d5ae102SDimitry Andric {"OS Specific", "<OS specific>: 11", 11},
541d5ae102SDimitry Andric {"OS Specific", "<OS specific>: 12", 12},
551d5ae102SDimitry Andric {"Proc Specific", "<processor specific>: 13", 13},
561d5ae102SDimitry Andric {"Proc Specific", "<processor specific>: 14", 14},
571d5ae102SDimitry Andric {"Proc Specific", "<processor specific>: 15", 15}
581d5ae102SDimitry Andric };
59e6d15924SDimitry Andric
ELFObjectFileBase(unsigned int Type,MemoryBufferRef Source)6067c32a98SDimitry Andric ELFObjectFileBase::ELFObjectFileBase(unsigned int Type, MemoryBufferRef Source)
6167c32a98SDimitry Andric : ObjectFile(Type, Source) {}
6267c32a98SDimitry Andric
63044eb2f6SDimitry Andric template <class ELFT>
64044eb2f6SDimitry Andric static Expected<std::unique_ptr<ELFObjectFile<ELFT>>>
createPtr(MemoryBufferRef Object,bool InitContent)65b60736ecSDimitry Andric createPtr(MemoryBufferRef Object, bool InitContent) {
66b60736ecSDimitry Andric auto Ret = ELFObjectFile<ELFT>::create(Object, InitContent);
67044eb2f6SDimitry Andric if (Error E = Ret.takeError())
68044eb2f6SDimitry Andric return std::move(E);
691d5ae102SDimitry Andric return std::make_unique<ELFObjectFile<ELFT>>(std::move(*Ret));
70044eb2f6SDimitry Andric }
71044eb2f6SDimitry Andric
72044eb2f6SDimitry Andric Expected<std::unique_ptr<ObjectFile>>
createELFObjectFile(MemoryBufferRef Obj,bool InitContent)73b60736ecSDimitry Andric ObjectFile::createELFObjectFile(MemoryBufferRef Obj, bool InitContent) {
745ca98fd9SDimitry Andric std::pair<unsigned char, unsigned char> Ident =
7567c32a98SDimitry Andric getElfArchType(Obj.getBuffer());
764a16efa3SDimitry Andric std::size_t MaxAlignment =
777fa27ce4SDimitry Andric 1ULL << llvm::countr_zero(
78b60736ecSDimitry Andric reinterpret_cast<uintptr_t>(Obj.getBufferStart()));
794a16efa3SDimitry Andric
8085d8b2bbSDimitry Andric if (MaxAlignment < 2)
81044eb2f6SDimitry Andric return createError("Insufficient alignment");
8285d8b2bbSDimitry Andric
8385d8b2bbSDimitry Andric if (Ident.first == ELF::ELFCLASS32) {
8485d8b2bbSDimitry Andric if (Ident.second == ELF::ELFDATA2LSB)
85b60736ecSDimitry Andric return createPtr<ELF32LE>(Obj, InitContent);
8685d8b2bbSDimitry Andric else if (Ident.second == ELF::ELFDATA2MSB)
87b60736ecSDimitry Andric return createPtr<ELF32BE>(Obj, InitContent);
884a16efa3SDimitry Andric else
89044eb2f6SDimitry Andric return createError("Invalid ELF data");
9085d8b2bbSDimitry Andric } else if (Ident.first == ELF::ELFCLASS64) {
9185d8b2bbSDimitry Andric if (Ident.second == ELF::ELFDATA2LSB)
92b60736ecSDimitry Andric return createPtr<ELF64LE>(Obj, InitContent);
9385d8b2bbSDimitry Andric else if (Ident.second == ELF::ELFDATA2MSB)
94b60736ecSDimitry Andric return createPtr<ELF64BE>(Obj, InitContent);
954a16efa3SDimitry Andric else
96044eb2f6SDimitry Andric return createError("Invalid ELF data");
9763faed5bSDimitry Andric }
98044eb2f6SDimitry Andric return createError("Invalid ELF class");
99cf099d11SDimitry Andric }
100cf099d11SDimitry Andric
getMIPSFeatures() const10171d5a254SDimitry Andric SubtargetFeatures ELFObjectFileBase::getMIPSFeatures() const {
10201095a5dSDimitry Andric SubtargetFeatures Features;
103eb11fae6SDimitry Andric unsigned PlatformFlags = getPlatformFlags();
10401095a5dSDimitry Andric
10501095a5dSDimitry Andric switch (PlatformFlags & ELF::EF_MIPS_ARCH) {
10601095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_1:
10701095a5dSDimitry Andric break;
10801095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_2:
10901095a5dSDimitry Andric Features.AddFeature("mips2");
11001095a5dSDimitry Andric break;
11101095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_3:
11201095a5dSDimitry Andric Features.AddFeature("mips3");
11301095a5dSDimitry Andric break;
11401095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_4:
11501095a5dSDimitry Andric Features.AddFeature("mips4");
11601095a5dSDimitry Andric break;
11701095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_5:
11801095a5dSDimitry Andric Features.AddFeature("mips5");
11901095a5dSDimitry Andric break;
12001095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_32:
12101095a5dSDimitry Andric Features.AddFeature("mips32");
12201095a5dSDimitry Andric break;
12301095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_64:
12401095a5dSDimitry Andric Features.AddFeature("mips64");
12501095a5dSDimitry Andric break;
12601095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_32R2:
12701095a5dSDimitry Andric Features.AddFeature("mips32r2");
12801095a5dSDimitry Andric break;
12901095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_64R2:
13001095a5dSDimitry Andric Features.AddFeature("mips64r2");
13101095a5dSDimitry Andric break;
13201095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_32R6:
13301095a5dSDimitry Andric Features.AddFeature("mips32r6");
13401095a5dSDimitry Andric break;
13501095a5dSDimitry Andric case ELF::EF_MIPS_ARCH_64R6:
13601095a5dSDimitry Andric Features.AddFeature("mips64r6");
13701095a5dSDimitry Andric break;
13801095a5dSDimitry Andric default:
13901095a5dSDimitry Andric llvm_unreachable("Unknown EF_MIPS_ARCH value");
14001095a5dSDimitry Andric }
14101095a5dSDimitry Andric
14201095a5dSDimitry Andric switch (PlatformFlags & ELF::EF_MIPS_MACH) {
14301095a5dSDimitry Andric case ELF::EF_MIPS_MACH_NONE:
14401095a5dSDimitry Andric // No feature associated with this value.
14501095a5dSDimitry Andric break;
14601095a5dSDimitry Andric case ELF::EF_MIPS_MACH_OCTEON:
14701095a5dSDimitry Andric Features.AddFeature("cnmips");
14801095a5dSDimitry Andric break;
14901095a5dSDimitry Andric default:
15001095a5dSDimitry Andric llvm_unreachable("Unknown EF_MIPS_ARCH value");
15101095a5dSDimitry Andric }
15201095a5dSDimitry Andric
15301095a5dSDimitry Andric if (PlatformFlags & ELF::EF_MIPS_ARCH_ASE_M16)
15401095a5dSDimitry Andric Features.AddFeature("mips16");
15501095a5dSDimitry Andric if (PlatformFlags & ELF::EF_MIPS_MICROMIPS)
15601095a5dSDimitry Andric Features.AddFeature("micromips");
15701095a5dSDimitry Andric
15801095a5dSDimitry Andric return Features;
15901095a5dSDimitry Andric }
16071d5a254SDimitry Andric
getARMFeatures() const16171d5a254SDimitry Andric SubtargetFeatures ELFObjectFileBase::getARMFeatures() const {
16271d5a254SDimitry Andric SubtargetFeatures Features;
16371d5a254SDimitry Andric ARMAttributeParser Attributes;
164cfca06d7SDimitry Andric if (Error E = getBuildAttributes(Attributes)) {
165cfca06d7SDimitry Andric consumeError(std::move(E));
16671d5a254SDimitry Andric return SubtargetFeatures();
167cfca06d7SDimitry Andric }
16871d5a254SDimitry Andric
16971d5a254SDimitry Andric // both ARMv7-M and R have to support thumb hardware div
17071d5a254SDimitry Andric bool isV7 = false;
171e3b55780SDimitry Andric std::optional<unsigned> Attr =
172cfca06d7SDimitry Andric Attributes.getAttributeValue(ARMBuildAttrs::CPU_arch);
173145449b1SDimitry Andric if (Attr)
174e3b55780SDimitry Andric isV7 = *Attr == ARMBuildAttrs::v7;
17571d5a254SDimitry Andric
176cfca06d7SDimitry Andric Attr = Attributes.getAttributeValue(ARMBuildAttrs::CPU_arch_profile);
177145449b1SDimitry Andric if (Attr) {
178e3b55780SDimitry Andric switch (*Attr) {
17971d5a254SDimitry Andric case ARMBuildAttrs::ApplicationProfile:
18071d5a254SDimitry Andric Features.AddFeature("aclass");
18171d5a254SDimitry Andric break;
18271d5a254SDimitry Andric case ARMBuildAttrs::RealTimeProfile:
18371d5a254SDimitry Andric Features.AddFeature("rclass");
18471d5a254SDimitry Andric if (isV7)
18571d5a254SDimitry Andric Features.AddFeature("hwdiv");
18671d5a254SDimitry Andric break;
18771d5a254SDimitry Andric case ARMBuildAttrs::MicroControllerProfile:
18871d5a254SDimitry Andric Features.AddFeature("mclass");
18971d5a254SDimitry Andric if (isV7)
19071d5a254SDimitry Andric Features.AddFeature("hwdiv");
19171d5a254SDimitry Andric break;
19271d5a254SDimitry Andric }
19371d5a254SDimitry Andric }
19471d5a254SDimitry Andric
195cfca06d7SDimitry Andric Attr = Attributes.getAttributeValue(ARMBuildAttrs::THUMB_ISA_use);
196145449b1SDimitry Andric if (Attr) {
197e3b55780SDimitry Andric switch (*Attr) {
19871d5a254SDimitry Andric default:
19971d5a254SDimitry Andric break;
20071d5a254SDimitry Andric case ARMBuildAttrs::Not_Allowed:
20171d5a254SDimitry Andric Features.AddFeature("thumb", false);
20271d5a254SDimitry Andric Features.AddFeature("thumb2", false);
20371d5a254SDimitry Andric break;
20471d5a254SDimitry Andric case ARMBuildAttrs::AllowThumb32:
20571d5a254SDimitry Andric Features.AddFeature("thumb2");
20671d5a254SDimitry Andric break;
20771d5a254SDimitry Andric }
20871d5a254SDimitry Andric }
20971d5a254SDimitry Andric
210cfca06d7SDimitry Andric Attr = Attributes.getAttributeValue(ARMBuildAttrs::FP_arch);
211145449b1SDimitry Andric if (Attr) {
212e3b55780SDimitry Andric switch (*Attr) {
21371d5a254SDimitry Andric default:
21471d5a254SDimitry Andric break;
21571d5a254SDimitry Andric case ARMBuildAttrs::Not_Allowed:
2161d5ae102SDimitry Andric Features.AddFeature("vfp2sp", false);
217e6d15924SDimitry Andric Features.AddFeature("vfp3d16sp", false);
218e6d15924SDimitry Andric Features.AddFeature("vfp4d16sp", false);
21971d5a254SDimitry Andric break;
22071d5a254SDimitry Andric case ARMBuildAttrs::AllowFPv2:
22171d5a254SDimitry Andric Features.AddFeature("vfp2");
22271d5a254SDimitry Andric break;
22371d5a254SDimitry Andric case ARMBuildAttrs::AllowFPv3A:
22471d5a254SDimitry Andric case ARMBuildAttrs::AllowFPv3B:
22571d5a254SDimitry Andric Features.AddFeature("vfp3");
22671d5a254SDimitry Andric break;
22771d5a254SDimitry Andric case ARMBuildAttrs::AllowFPv4A:
22871d5a254SDimitry Andric case ARMBuildAttrs::AllowFPv4B:
22971d5a254SDimitry Andric Features.AddFeature("vfp4");
23071d5a254SDimitry Andric break;
23171d5a254SDimitry Andric }
23271d5a254SDimitry Andric }
23371d5a254SDimitry Andric
234cfca06d7SDimitry Andric Attr = Attributes.getAttributeValue(ARMBuildAttrs::Advanced_SIMD_arch);
235145449b1SDimitry Andric if (Attr) {
236e3b55780SDimitry Andric switch (*Attr) {
23771d5a254SDimitry Andric default:
23871d5a254SDimitry Andric break;
23971d5a254SDimitry Andric case ARMBuildAttrs::Not_Allowed:
24071d5a254SDimitry Andric Features.AddFeature("neon", false);
24171d5a254SDimitry Andric Features.AddFeature("fp16", false);
24271d5a254SDimitry Andric break;
24371d5a254SDimitry Andric case ARMBuildAttrs::AllowNeon:
24471d5a254SDimitry Andric Features.AddFeature("neon");
24571d5a254SDimitry Andric break;
24671d5a254SDimitry Andric case ARMBuildAttrs::AllowNeon2:
24771d5a254SDimitry Andric Features.AddFeature("neon");
24871d5a254SDimitry Andric Features.AddFeature("fp16");
24971d5a254SDimitry Andric break;
25071d5a254SDimitry Andric }
25171d5a254SDimitry Andric }
25271d5a254SDimitry Andric
253cfca06d7SDimitry Andric Attr = Attributes.getAttributeValue(ARMBuildAttrs::MVE_arch);
254145449b1SDimitry Andric if (Attr) {
255e3b55780SDimitry Andric switch (*Attr) {
256e6d15924SDimitry Andric default:
257e6d15924SDimitry Andric break;
258e6d15924SDimitry Andric case ARMBuildAttrs::Not_Allowed:
259e6d15924SDimitry Andric Features.AddFeature("mve", false);
260e6d15924SDimitry Andric Features.AddFeature("mve.fp", false);
261e6d15924SDimitry Andric break;
262e6d15924SDimitry Andric case ARMBuildAttrs::AllowMVEInteger:
263e6d15924SDimitry Andric Features.AddFeature("mve.fp", false);
264e6d15924SDimitry Andric Features.AddFeature("mve");
265e6d15924SDimitry Andric break;
266e6d15924SDimitry Andric case ARMBuildAttrs::AllowMVEIntegerAndFloat:
267e6d15924SDimitry Andric Features.AddFeature("mve.fp");
268e6d15924SDimitry Andric break;
269e6d15924SDimitry Andric }
270e6d15924SDimitry Andric }
271e6d15924SDimitry Andric
272cfca06d7SDimitry Andric Attr = Attributes.getAttributeValue(ARMBuildAttrs::DIV_use);
273145449b1SDimitry Andric if (Attr) {
274e3b55780SDimitry Andric switch (*Attr) {
27571d5a254SDimitry Andric default:
27671d5a254SDimitry Andric break;
27771d5a254SDimitry Andric case ARMBuildAttrs::DisallowDIV:
27871d5a254SDimitry Andric Features.AddFeature("hwdiv", false);
27971d5a254SDimitry Andric Features.AddFeature("hwdiv-arm", false);
28071d5a254SDimitry Andric break;
28171d5a254SDimitry Andric case ARMBuildAttrs::AllowDIVExt:
28271d5a254SDimitry Andric Features.AddFeature("hwdiv");
28371d5a254SDimitry Andric Features.AddFeature("hwdiv-arm");
28471d5a254SDimitry Andric break;
28571d5a254SDimitry Andric }
28671d5a254SDimitry Andric }
28771d5a254SDimitry Andric
28871d5a254SDimitry Andric return Features;
28971d5a254SDimitry Andric }
29071d5a254SDimitry Andric
hexagonAttrToFeatureString(unsigned Attr)291ac9a064cSDimitry Andric static std::optional<std::string> hexagonAttrToFeatureString(unsigned Attr) {
292ac9a064cSDimitry Andric switch (Attr) {
293ac9a064cSDimitry Andric case 5:
294ac9a064cSDimitry Andric return "v5";
295ac9a064cSDimitry Andric case 55:
296ac9a064cSDimitry Andric return "v55";
297ac9a064cSDimitry Andric case 60:
298ac9a064cSDimitry Andric return "v60";
299ac9a064cSDimitry Andric case 62:
300ac9a064cSDimitry Andric return "v62";
301ac9a064cSDimitry Andric case 65:
302ac9a064cSDimitry Andric return "v65";
303ac9a064cSDimitry Andric case 67:
304ac9a064cSDimitry Andric return "v67";
305ac9a064cSDimitry Andric case 68:
306ac9a064cSDimitry Andric return "v68";
307ac9a064cSDimitry Andric case 69:
308ac9a064cSDimitry Andric return "v69";
309ac9a064cSDimitry Andric case 71:
310ac9a064cSDimitry Andric return "v71";
311ac9a064cSDimitry Andric case 73:
312ac9a064cSDimitry Andric return "v73";
313ac9a064cSDimitry Andric default:
314ac9a064cSDimitry Andric return {};
315ac9a064cSDimitry Andric }
316ac9a064cSDimitry Andric }
317ac9a064cSDimitry Andric
getHexagonFeatures() const318ac9a064cSDimitry Andric SubtargetFeatures ELFObjectFileBase::getHexagonFeatures() const {
319ac9a064cSDimitry Andric SubtargetFeatures Features;
320ac9a064cSDimitry Andric HexagonAttributeParser Parser;
321ac9a064cSDimitry Andric if (Error E = getBuildAttributes(Parser)) {
322ac9a064cSDimitry Andric // Return no attributes if none can be read.
323ac9a064cSDimitry Andric // This behavior is important for backwards compatibility.
324ac9a064cSDimitry Andric consumeError(std::move(E));
325ac9a064cSDimitry Andric return Features;
326ac9a064cSDimitry Andric }
327ac9a064cSDimitry Andric std::optional<unsigned> Attr;
328ac9a064cSDimitry Andric
329ac9a064cSDimitry Andric if ((Attr = Parser.getAttributeValue(HexagonAttrs::ARCH))) {
330ac9a064cSDimitry Andric if (std::optional<std::string> FeatureString =
331ac9a064cSDimitry Andric hexagonAttrToFeatureString(*Attr))
332ac9a064cSDimitry Andric Features.AddFeature(*FeatureString);
333ac9a064cSDimitry Andric }
334ac9a064cSDimitry Andric
335ac9a064cSDimitry Andric if ((Attr = Parser.getAttributeValue(HexagonAttrs::HVXARCH))) {
336ac9a064cSDimitry Andric std::optional<std::string> FeatureString =
337ac9a064cSDimitry Andric hexagonAttrToFeatureString(*Attr);
338ac9a064cSDimitry Andric // There is no corresponding hvx arch for v5 and v55.
339ac9a064cSDimitry Andric if (FeatureString && *Attr >= 60)
340ac9a064cSDimitry Andric Features.AddFeature("hvx" + *FeatureString);
341ac9a064cSDimitry Andric }
342ac9a064cSDimitry Andric
343ac9a064cSDimitry Andric if ((Attr = Parser.getAttributeValue(HexagonAttrs::HVXIEEEFP)))
344ac9a064cSDimitry Andric if (*Attr)
345ac9a064cSDimitry Andric Features.AddFeature("hvx-ieee-fp");
346ac9a064cSDimitry Andric
347ac9a064cSDimitry Andric if ((Attr = Parser.getAttributeValue(HexagonAttrs::HVXQFLOAT)))
348ac9a064cSDimitry Andric if (*Attr)
349ac9a064cSDimitry Andric Features.AddFeature("hvx-qfloat");
350ac9a064cSDimitry Andric
351ac9a064cSDimitry Andric if ((Attr = Parser.getAttributeValue(HexagonAttrs::ZREG)))
352ac9a064cSDimitry Andric if (*Attr)
353ac9a064cSDimitry Andric Features.AddFeature("zreg");
354ac9a064cSDimitry Andric
355ac9a064cSDimitry Andric if ((Attr = Parser.getAttributeValue(HexagonAttrs::AUDIO)))
356ac9a064cSDimitry Andric if (*Attr)
357ac9a064cSDimitry Andric Features.AddFeature("audio");
358ac9a064cSDimitry Andric
359ac9a064cSDimitry Andric if ((Attr = Parser.getAttributeValue(HexagonAttrs::CABAC)))
360ac9a064cSDimitry Andric if (*Attr)
361ac9a064cSDimitry Andric Features.AddFeature("cabac");
362ac9a064cSDimitry Andric
363ac9a064cSDimitry Andric return Features;
364ac9a064cSDimitry Andric }
365ac9a064cSDimitry Andric
getRISCVFeatures() const366e3b55780SDimitry Andric Expected<SubtargetFeatures> ELFObjectFileBase::getRISCVFeatures() const {
367eb11fae6SDimitry Andric SubtargetFeatures Features;
368eb11fae6SDimitry Andric unsigned PlatformFlags = getPlatformFlags();
369eb11fae6SDimitry Andric
370eb11fae6SDimitry Andric if (PlatformFlags & ELF::EF_RISCV_RVC) {
371ac9a064cSDimitry Andric Features.AddFeature("zca");
372eb11fae6SDimitry Andric }
373eb11fae6SDimitry Andric
374cfca06d7SDimitry Andric RISCVAttributeParser Attributes;
375cfca06d7SDimitry Andric if (Error E = getBuildAttributes(Attributes)) {
376e3b55780SDimitry Andric return std::move(E);
377cfca06d7SDimitry Andric }
378cfca06d7SDimitry Andric
379e3b55780SDimitry Andric std::optional<StringRef> Attr =
380e3b55780SDimitry Andric Attributes.getAttributeString(RISCVAttrs::ARCH);
381145449b1SDimitry Andric if (Attr) {
3827fa27ce4SDimitry Andric auto ParseResult = RISCVISAInfo::parseNormalizedArchString(*Attr);
383e3b55780SDimitry Andric if (!ParseResult)
384e3b55780SDimitry Andric return ParseResult.takeError();
385e3b55780SDimitry Andric auto &ISAInfo = *ParseResult;
386e3b55780SDimitry Andric
387e3b55780SDimitry Andric if (ISAInfo->getXLen() == 32)
388cfca06d7SDimitry Andric Features.AddFeature("64bit", false);
389e3b55780SDimitry Andric else if (ISAInfo->getXLen() == 64)
390cfca06d7SDimitry Andric Features.AddFeature("64bit");
391e3b55780SDimitry Andric else
392e3b55780SDimitry Andric llvm_unreachable("XLEN should be 32 or 64.");
393cfca06d7SDimitry Andric
394aca2e42cSDimitry Andric Features.addFeaturesVector(ISAInfo->toFeatures());
395cfca06d7SDimitry Andric }
396cfca06d7SDimitry Andric
397eb11fae6SDimitry Andric return Features;
398eb11fae6SDimitry Andric }
399eb11fae6SDimitry Andric
getLoongArchFeatures() const400e3b55780SDimitry Andric SubtargetFeatures ELFObjectFileBase::getLoongArchFeatures() const {
401e3b55780SDimitry Andric SubtargetFeatures Features;
402e3b55780SDimitry Andric
403e3b55780SDimitry Andric switch (getPlatformFlags() & ELF::EF_LOONGARCH_ABI_MODIFIER_MASK) {
404e3b55780SDimitry Andric case ELF::EF_LOONGARCH_ABI_SOFT_FLOAT:
405e3b55780SDimitry Andric break;
406e3b55780SDimitry Andric case ELF::EF_LOONGARCH_ABI_DOUBLE_FLOAT:
407e3b55780SDimitry Andric Features.AddFeature("d");
408e3b55780SDimitry Andric // D implies F according to LoongArch ISA spec.
409e3b55780SDimitry Andric [[fallthrough]];
410e3b55780SDimitry Andric case ELF::EF_LOONGARCH_ABI_SINGLE_FLOAT:
411e3b55780SDimitry Andric Features.AddFeature("f");
412e3b55780SDimitry Andric break;
413e3b55780SDimitry Andric }
414e3b55780SDimitry Andric
415e3b55780SDimitry Andric return Features;
416e3b55780SDimitry Andric }
417e3b55780SDimitry Andric
getFeatures() const418e3b55780SDimitry Andric Expected<SubtargetFeatures> ELFObjectFileBase::getFeatures() const {
41971d5a254SDimitry Andric switch (getEMachine()) {
42071d5a254SDimitry Andric case ELF::EM_MIPS:
42171d5a254SDimitry Andric return getMIPSFeatures();
42271d5a254SDimitry Andric case ELF::EM_ARM:
42371d5a254SDimitry Andric return getARMFeatures();
424eb11fae6SDimitry Andric case ELF::EM_RISCV:
425eb11fae6SDimitry Andric return getRISCVFeatures();
426e3b55780SDimitry Andric case ELF::EM_LOONGARCH:
427e3b55780SDimitry Andric return getLoongArchFeatures();
428ac9a064cSDimitry Andric case ELF::EM_HEXAGON:
429ac9a064cSDimitry Andric return getHexagonFeatures();
43001095a5dSDimitry Andric default:
43101095a5dSDimitry Andric return SubtargetFeatures();
43201095a5dSDimitry Andric }
43301095a5dSDimitry Andric }
43401095a5dSDimitry Andric
tryGetCPUName() const435e3b55780SDimitry Andric std::optional<StringRef> ELFObjectFileBase::tryGetCPUName() const {
436b60736ecSDimitry Andric switch (getEMachine()) {
437b60736ecSDimitry Andric case ELF::EM_AMDGPU:
438b60736ecSDimitry Andric return getAMDGPUCPUName();
43999aabd70SDimitry Andric case ELF::EM_CUDA:
44099aabd70SDimitry Andric return getNVPTXCPUName();
4417fa27ce4SDimitry Andric case ELF::EM_PPC:
442145449b1SDimitry Andric case ELF::EM_PPC64:
443145449b1SDimitry Andric return StringRef("future");
444b60736ecSDimitry Andric default:
445e3b55780SDimitry Andric return std::nullopt;
446b60736ecSDimitry Andric }
447b60736ecSDimitry Andric }
448b60736ecSDimitry Andric
getAMDGPUCPUName() const449b60736ecSDimitry Andric StringRef ELFObjectFileBase::getAMDGPUCPUName() const {
450b60736ecSDimitry Andric assert(getEMachine() == ELF::EM_AMDGPU);
451b60736ecSDimitry Andric unsigned CPU = getPlatformFlags() & ELF::EF_AMDGPU_MACH;
452b60736ecSDimitry Andric
453b60736ecSDimitry Andric switch (CPU) {
454b60736ecSDimitry Andric // Radeon HD 2000/3000 Series (R600).
455b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_R600:
456b60736ecSDimitry Andric return "r600";
457b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_R630:
458b60736ecSDimitry Andric return "r630";
459b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_RS880:
460b60736ecSDimitry Andric return "rs880";
461b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_RV670:
462b60736ecSDimitry Andric return "rv670";
463b60736ecSDimitry Andric
464b60736ecSDimitry Andric // Radeon HD 4000 Series (R700).
465b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_RV710:
466b60736ecSDimitry Andric return "rv710";
467b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_RV730:
468b60736ecSDimitry Andric return "rv730";
469b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_RV770:
470b60736ecSDimitry Andric return "rv770";
471b60736ecSDimitry Andric
472b60736ecSDimitry Andric // Radeon HD 5000 Series (Evergreen).
473b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_CEDAR:
474b60736ecSDimitry Andric return "cedar";
475b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_CYPRESS:
476b60736ecSDimitry Andric return "cypress";
477b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_JUNIPER:
478b60736ecSDimitry Andric return "juniper";
479b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_REDWOOD:
480b60736ecSDimitry Andric return "redwood";
481b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_SUMO:
482b60736ecSDimitry Andric return "sumo";
483b60736ecSDimitry Andric
484b60736ecSDimitry Andric // Radeon HD 6000 Series (Northern Islands).
485b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_BARTS:
486b60736ecSDimitry Andric return "barts";
487b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_CAICOS:
488b60736ecSDimitry Andric return "caicos";
489b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_CAYMAN:
490b60736ecSDimitry Andric return "cayman";
491b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_R600_TURKS:
492b60736ecSDimitry Andric return "turks";
493b60736ecSDimitry Andric
494b60736ecSDimitry Andric // AMDGCN GFX6.
495b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX600:
496b60736ecSDimitry Andric return "gfx600";
497b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX601:
498b60736ecSDimitry Andric return "gfx601";
499b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX602:
500b60736ecSDimitry Andric return "gfx602";
501b60736ecSDimitry Andric
502b60736ecSDimitry Andric // AMDGCN GFX7.
503b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX700:
504b60736ecSDimitry Andric return "gfx700";
505b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX701:
506b60736ecSDimitry Andric return "gfx701";
507b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX702:
508b60736ecSDimitry Andric return "gfx702";
509b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX703:
510b60736ecSDimitry Andric return "gfx703";
511b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX704:
512b60736ecSDimitry Andric return "gfx704";
513b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX705:
514b60736ecSDimitry Andric return "gfx705";
515b60736ecSDimitry Andric
516b60736ecSDimitry Andric // AMDGCN GFX8.
517b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX801:
518b60736ecSDimitry Andric return "gfx801";
519b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX802:
520b60736ecSDimitry Andric return "gfx802";
521b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX803:
522b60736ecSDimitry Andric return "gfx803";
523b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX805:
524b60736ecSDimitry Andric return "gfx805";
525b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX810:
526b60736ecSDimitry Andric return "gfx810";
527b60736ecSDimitry Andric
528b60736ecSDimitry Andric // AMDGCN GFX9.
529b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX900:
530b60736ecSDimitry Andric return "gfx900";
531b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX902:
532b60736ecSDimitry Andric return "gfx902";
533b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX904:
534b60736ecSDimitry Andric return "gfx904";
535b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX906:
536b60736ecSDimitry Andric return "gfx906";
537b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX908:
538b60736ecSDimitry Andric return "gfx908";
539b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX909:
540b60736ecSDimitry Andric return "gfx909";
541344a3780SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX90A:
542344a3780SDimitry Andric return "gfx90a";
543b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX90C:
544b60736ecSDimitry Andric return "gfx90c";
545145449b1SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX940:
546145449b1SDimitry Andric return "gfx940";
5477fa27ce4SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX941:
5487fa27ce4SDimitry Andric return "gfx941";
5497fa27ce4SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX942:
5507fa27ce4SDimitry Andric return "gfx942";
551b60736ecSDimitry Andric
552b60736ecSDimitry Andric // AMDGCN GFX10.
553b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1010:
554b60736ecSDimitry Andric return "gfx1010";
555b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1011:
556b60736ecSDimitry Andric return "gfx1011";
557b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1012:
558b60736ecSDimitry Andric return "gfx1012";
559344a3780SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1013:
560344a3780SDimitry Andric return "gfx1013";
561b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1030:
562b60736ecSDimitry Andric return "gfx1030";
563b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1031:
564b60736ecSDimitry Andric return "gfx1031";
565b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1032:
566b60736ecSDimitry Andric return "gfx1032";
567b60736ecSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1033:
568b60736ecSDimitry Andric return "gfx1033";
569344a3780SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1034:
570344a3780SDimitry Andric return "gfx1034";
571344a3780SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1035:
572344a3780SDimitry Andric return "gfx1035";
573145449b1SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1036:
574145449b1SDimitry Andric return "gfx1036";
575145449b1SDimitry Andric
576145449b1SDimitry Andric // AMDGCN GFX11.
577145449b1SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1100:
578145449b1SDimitry Andric return "gfx1100";
579145449b1SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1101:
580145449b1SDimitry Andric return "gfx1101";
581145449b1SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1102:
582145449b1SDimitry Andric return "gfx1102";
583145449b1SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1103:
584145449b1SDimitry Andric return "gfx1103";
5857fa27ce4SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1150:
5867fa27ce4SDimitry Andric return "gfx1150";
5877fa27ce4SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1151:
5887fa27ce4SDimitry Andric return "gfx1151";
589ac9a064cSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1152:
590ac9a064cSDimitry Andric return "gfx1152";
591b1c73532SDimitry Andric
592b1c73532SDimitry Andric // AMDGCN GFX12.
593b1c73532SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1200:
594b1c73532SDimitry Andric return "gfx1200";
595b1c73532SDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX1201:
596b1c73532SDimitry Andric return "gfx1201";
597ac9a064cSDimitry Andric
598ac9a064cSDimitry Andric // Generic AMDGCN targets
599ac9a064cSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX9_GENERIC:
600ac9a064cSDimitry Andric return "gfx9-generic";
601ac9a064cSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX10_1_GENERIC:
602ac9a064cSDimitry Andric return "gfx10-1-generic";
603ac9a064cSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX10_3_GENERIC:
604ac9a064cSDimitry Andric return "gfx10-3-generic";
605ac9a064cSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX11_GENERIC:
606ac9a064cSDimitry Andric return "gfx11-generic";
607ac9a064cSDimitry Andric case ELF::EF_AMDGPU_MACH_AMDGCN_GFX12_GENERIC:
608ac9a064cSDimitry Andric return "gfx12-generic";
609b60736ecSDimitry Andric default:
610b60736ecSDimitry Andric llvm_unreachable("Unknown EF_AMDGPU_MACH value");
611b60736ecSDimitry Andric }
612b60736ecSDimitry Andric }
613b60736ecSDimitry Andric
getNVPTXCPUName() const61499aabd70SDimitry Andric StringRef ELFObjectFileBase::getNVPTXCPUName() const {
61599aabd70SDimitry Andric assert(getEMachine() == ELF::EM_CUDA);
61699aabd70SDimitry Andric unsigned SM = getPlatformFlags() & ELF::EF_CUDA_SM;
61799aabd70SDimitry Andric
61899aabd70SDimitry Andric switch (SM) {
61999aabd70SDimitry Andric // Fermi architecture.
62099aabd70SDimitry Andric case ELF::EF_CUDA_SM20:
62199aabd70SDimitry Andric return "sm_20";
62299aabd70SDimitry Andric case ELF::EF_CUDA_SM21:
62399aabd70SDimitry Andric return "sm_21";
62499aabd70SDimitry Andric
62599aabd70SDimitry Andric // Kepler architecture.
62699aabd70SDimitry Andric case ELF::EF_CUDA_SM30:
62799aabd70SDimitry Andric return "sm_30";
62899aabd70SDimitry Andric case ELF::EF_CUDA_SM32:
62999aabd70SDimitry Andric return "sm_32";
63099aabd70SDimitry Andric case ELF::EF_CUDA_SM35:
63199aabd70SDimitry Andric return "sm_35";
63299aabd70SDimitry Andric case ELF::EF_CUDA_SM37:
63399aabd70SDimitry Andric return "sm_37";
63499aabd70SDimitry Andric
63599aabd70SDimitry Andric // Maxwell architecture.
63699aabd70SDimitry Andric case ELF::EF_CUDA_SM50:
63799aabd70SDimitry Andric return "sm_50";
63899aabd70SDimitry Andric case ELF::EF_CUDA_SM52:
63999aabd70SDimitry Andric return "sm_52";
64099aabd70SDimitry Andric case ELF::EF_CUDA_SM53:
64199aabd70SDimitry Andric return "sm_53";
64299aabd70SDimitry Andric
64399aabd70SDimitry Andric // Pascal architecture.
64499aabd70SDimitry Andric case ELF::EF_CUDA_SM60:
64599aabd70SDimitry Andric return "sm_60";
64699aabd70SDimitry Andric case ELF::EF_CUDA_SM61:
64799aabd70SDimitry Andric return "sm_61";
64899aabd70SDimitry Andric case ELF::EF_CUDA_SM62:
64999aabd70SDimitry Andric return "sm_62";
65099aabd70SDimitry Andric
65199aabd70SDimitry Andric // Volta architecture.
65299aabd70SDimitry Andric case ELF::EF_CUDA_SM70:
65399aabd70SDimitry Andric return "sm_70";
65499aabd70SDimitry Andric case ELF::EF_CUDA_SM72:
65599aabd70SDimitry Andric return "sm_72";
65699aabd70SDimitry Andric
65799aabd70SDimitry Andric // Turing architecture.
65899aabd70SDimitry Andric case ELF::EF_CUDA_SM75:
65999aabd70SDimitry Andric return "sm_75";
66099aabd70SDimitry Andric
66199aabd70SDimitry Andric // Ampere architecture.
66299aabd70SDimitry Andric case ELF::EF_CUDA_SM80:
66399aabd70SDimitry Andric return "sm_80";
66499aabd70SDimitry Andric case ELF::EF_CUDA_SM86:
66599aabd70SDimitry Andric return "sm_86";
66699aabd70SDimitry Andric case ELF::EF_CUDA_SM87:
66799aabd70SDimitry Andric return "sm_87";
66899aabd70SDimitry Andric
66999aabd70SDimitry Andric // Ada architecture.
67099aabd70SDimitry Andric case ELF::EF_CUDA_SM89:
67199aabd70SDimitry Andric return "sm_89";
67299aabd70SDimitry Andric
67399aabd70SDimitry Andric // Hopper architecture.
67499aabd70SDimitry Andric case ELF::EF_CUDA_SM90:
67599aabd70SDimitry Andric return getPlatformFlags() & ELF::EF_CUDA_ACCELERATORS ? "sm_90a" : "sm_90";
67699aabd70SDimitry Andric default:
67799aabd70SDimitry Andric llvm_unreachable("Unknown EF_CUDA_SM value");
67899aabd70SDimitry Andric }
67999aabd70SDimitry Andric }
68099aabd70SDimitry Andric
68171d5a254SDimitry Andric // FIXME Encode from a tablegen description or target parser.
setARMSubArch(Triple & TheTriple) const68271d5a254SDimitry Andric void ELFObjectFileBase::setARMSubArch(Triple &TheTriple) const {
68371d5a254SDimitry Andric if (TheTriple.getSubArch() != Triple::NoSubArch)
68471d5a254SDimitry Andric return;
68571d5a254SDimitry Andric
68671d5a254SDimitry Andric ARMAttributeParser Attributes;
687cfca06d7SDimitry Andric if (Error E = getBuildAttributes(Attributes)) {
688cfca06d7SDimitry Andric // TODO Propagate Error.
689cfca06d7SDimitry Andric consumeError(std::move(E));
69071d5a254SDimitry Andric return;
691cfca06d7SDimitry Andric }
69271d5a254SDimitry Andric
69371d5a254SDimitry Andric std::string Triple;
69471d5a254SDimitry Andric // Default to ARM, but use the triple if it's been set.
695044eb2f6SDimitry Andric if (TheTriple.isThumb())
69671d5a254SDimitry Andric Triple = "thumb";
69771d5a254SDimitry Andric else
69871d5a254SDimitry Andric Triple = "arm";
69971d5a254SDimitry Andric
700e3b55780SDimitry Andric std::optional<unsigned> Attr =
701cfca06d7SDimitry Andric Attributes.getAttributeValue(ARMBuildAttrs::CPU_arch);
702145449b1SDimitry Andric if (Attr) {
703e3b55780SDimitry Andric switch (*Attr) {
70471d5a254SDimitry Andric case ARMBuildAttrs::v4:
70571d5a254SDimitry Andric Triple += "v4";
70671d5a254SDimitry Andric break;
70771d5a254SDimitry Andric case ARMBuildAttrs::v4T:
70871d5a254SDimitry Andric Triple += "v4t";
70971d5a254SDimitry Andric break;
71071d5a254SDimitry Andric case ARMBuildAttrs::v5T:
71171d5a254SDimitry Andric Triple += "v5t";
71271d5a254SDimitry Andric break;
71371d5a254SDimitry Andric case ARMBuildAttrs::v5TE:
71471d5a254SDimitry Andric Triple += "v5te";
71571d5a254SDimitry Andric break;
71671d5a254SDimitry Andric case ARMBuildAttrs::v5TEJ:
71771d5a254SDimitry Andric Triple += "v5tej";
71871d5a254SDimitry Andric break;
71971d5a254SDimitry Andric case ARMBuildAttrs::v6:
72071d5a254SDimitry Andric Triple += "v6";
72171d5a254SDimitry Andric break;
72271d5a254SDimitry Andric case ARMBuildAttrs::v6KZ:
72371d5a254SDimitry Andric Triple += "v6kz";
72471d5a254SDimitry Andric break;
72571d5a254SDimitry Andric case ARMBuildAttrs::v6T2:
72671d5a254SDimitry Andric Triple += "v6t2";
72771d5a254SDimitry Andric break;
72871d5a254SDimitry Andric case ARMBuildAttrs::v6K:
72971d5a254SDimitry Andric Triple += "v6k";
73071d5a254SDimitry Andric break;
731c0981da4SDimitry Andric case ARMBuildAttrs::v7: {
732e3b55780SDimitry Andric std::optional<unsigned> ArchProfileAttr =
733c0981da4SDimitry Andric Attributes.getAttributeValue(ARMBuildAttrs::CPU_arch_profile);
734145449b1SDimitry Andric if (ArchProfileAttr &&
735e3b55780SDimitry Andric *ArchProfileAttr == ARMBuildAttrs::MicroControllerProfile)
736c0981da4SDimitry Andric Triple += "v7m";
737c0981da4SDimitry Andric else
73871d5a254SDimitry Andric Triple += "v7";
73971d5a254SDimitry Andric break;
740c0981da4SDimitry Andric }
74171d5a254SDimitry Andric case ARMBuildAttrs::v6_M:
74271d5a254SDimitry Andric Triple += "v6m";
74371d5a254SDimitry Andric break;
74471d5a254SDimitry Andric case ARMBuildAttrs::v6S_M:
74571d5a254SDimitry Andric Triple += "v6sm";
74671d5a254SDimitry Andric break;
74771d5a254SDimitry Andric case ARMBuildAttrs::v7E_M:
74871d5a254SDimitry Andric Triple += "v7em";
74971d5a254SDimitry Andric break;
7501d5ae102SDimitry Andric case ARMBuildAttrs::v8_A:
7511d5ae102SDimitry Andric Triple += "v8a";
7521d5ae102SDimitry Andric break;
7531d5ae102SDimitry Andric case ARMBuildAttrs::v8_R:
7541d5ae102SDimitry Andric Triple += "v8r";
7551d5ae102SDimitry Andric break;
7561d5ae102SDimitry Andric case ARMBuildAttrs::v8_M_Base:
7571d5ae102SDimitry Andric Triple += "v8m.base";
7581d5ae102SDimitry Andric break;
7591d5ae102SDimitry Andric case ARMBuildAttrs::v8_M_Main:
7601d5ae102SDimitry Andric Triple += "v8m.main";
7611d5ae102SDimitry Andric break;
7621d5ae102SDimitry Andric case ARMBuildAttrs::v8_1_M_Main:
7631d5ae102SDimitry Andric Triple += "v8.1m.main";
7641d5ae102SDimitry Andric break;
765145449b1SDimitry Andric case ARMBuildAttrs::v9_A:
766145449b1SDimitry Andric Triple += "v9a";
767145449b1SDimitry Andric break;
76871d5a254SDimitry Andric }
76971d5a254SDimitry Andric }
77071d5a254SDimitry Andric if (!isLittleEndian())
77171d5a254SDimitry Andric Triple += "eb";
77271d5a254SDimitry Andric
77371d5a254SDimitry Andric TheTriple.setArchName(Triple);
77471d5a254SDimitry Andric }
775d8e91e46SDimitry Andric
getPltEntries() const7767fa27ce4SDimitry Andric std::vector<ELFPltEntry> ELFObjectFileBase::getPltEntries() const {
777d8e91e46SDimitry Andric std::string Err;
778d8e91e46SDimitry Andric const auto Triple = makeTriple();
779d8e91e46SDimitry Andric const auto *T = TargetRegistry::lookupTarget(Triple.str(), Err);
780d8e91e46SDimitry Andric if (!T)
781d8e91e46SDimitry Andric return {};
7827fa27ce4SDimitry Andric uint32_t JumpSlotReloc = 0, GlobDatReloc = 0;
783d8e91e46SDimitry Andric switch (Triple.getArch()) {
784d8e91e46SDimitry Andric case Triple::x86:
785d8e91e46SDimitry Andric JumpSlotReloc = ELF::R_386_JUMP_SLOT;
7867fa27ce4SDimitry Andric GlobDatReloc = ELF::R_386_GLOB_DAT;
787d8e91e46SDimitry Andric break;
788d8e91e46SDimitry Andric case Triple::x86_64:
789d8e91e46SDimitry Andric JumpSlotReloc = ELF::R_X86_64_JUMP_SLOT;
7907fa27ce4SDimitry Andric GlobDatReloc = ELF::R_X86_64_GLOB_DAT;
791d8e91e46SDimitry Andric break;
792d8e91e46SDimitry Andric case Triple::aarch64:
793344a3780SDimitry Andric case Triple::aarch64_be:
794d8e91e46SDimitry Andric JumpSlotReloc = ELF::R_AARCH64_JUMP_SLOT;
795d8e91e46SDimitry Andric break;
796d8e91e46SDimitry Andric default:
797d8e91e46SDimitry Andric return {};
798d8e91e46SDimitry Andric }
799d8e91e46SDimitry Andric std::unique_ptr<const MCInstrInfo> MII(T->createMCInstrInfo());
800d8e91e46SDimitry Andric std::unique_ptr<const MCInstrAnalysis> MIA(
801d8e91e46SDimitry Andric T->createMCInstrAnalysis(MII.get()));
802d8e91e46SDimitry Andric if (!MIA)
803d8e91e46SDimitry Andric return {};
8047fa27ce4SDimitry Andric std::vector<std::pair<uint64_t, uint64_t>> PltEntries;
8057fa27ce4SDimitry Andric std::optional<SectionRef> RelaPlt, RelaDyn;
8067fa27ce4SDimitry Andric uint64_t GotBaseVA = 0;
807d8e91e46SDimitry Andric for (const SectionRef &Section : sections()) {
8081d5ae102SDimitry Andric Expected<StringRef> NameOrErr = Section.getName();
8091d5ae102SDimitry Andric if (!NameOrErr) {
8101d5ae102SDimitry Andric consumeError(NameOrErr.takeError());
811d8e91e46SDimitry Andric continue;
8121d5ae102SDimitry Andric }
8131d5ae102SDimitry Andric StringRef Name = *NameOrErr;
8141d5ae102SDimitry Andric
8157fa27ce4SDimitry Andric if (Name == ".rela.plt" || Name == ".rel.plt") {
816d8e91e46SDimitry Andric RelaPlt = Section;
8177fa27ce4SDimitry Andric } else if (Name == ".rela.dyn" || Name == ".rel.dyn") {
8187fa27ce4SDimitry Andric RelaDyn = Section;
8197fa27ce4SDimitry Andric } else if (Name == ".got.plt") {
8207fa27ce4SDimitry Andric GotBaseVA = Section.getAddress();
8217fa27ce4SDimitry Andric } else if (Name == ".plt" || Name == ".plt.got") {
8227fa27ce4SDimitry Andric Expected<StringRef> PltContents = Section.getContents();
823e6d15924SDimitry Andric if (!PltContents) {
824e6d15924SDimitry Andric consumeError(PltContents.takeError());
825d8e91e46SDimitry Andric return {};
826e6d15924SDimitry Andric }
8277fa27ce4SDimitry Andric llvm::append_range(
8287fa27ce4SDimitry Andric PltEntries,
8297fa27ce4SDimitry Andric MIA->findPltEntries(Section.getAddress(),
8307fa27ce4SDimitry Andric arrayRefFromStringRef(*PltContents), Triple));
8317fa27ce4SDimitry Andric }
8327fa27ce4SDimitry Andric }
8337fa27ce4SDimitry Andric
834d8e91e46SDimitry Andric // Build a map from GOT entry virtual address to PLT entry virtual address.
835d8e91e46SDimitry Andric DenseMap<uint64_t, uint64_t> GotToPlt;
8367fa27ce4SDimitry Andric for (auto [Plt, GotPlt] : PltEntries) {
8377fa27ce4SDimitry Andric uint64_t GotPltEntry = GotPlt;
8387fa27ce4SDimitry Andric // An x86-32 PIC PLT uses jmp DWORD PTR [ebx-offset]. Add
8397fa27ce4SDimitry Andric // _GLOBAL_OFFSET_TABLE_ (EBX) to get the .got.plt (or .got) entry address.
8407fa27ce4SDimitry Andric // See X86MCTargetDesc.cpp:findPltEntries for the 1 << 32 bit.
8417fa27ce4SDimitry Andric if (GotPltEntry & (uint64_t(1) << 32) && getEMachine() == ELF::EM_386)
8427fa27ce4SDimitry Andric GotPltEntry = static_cast<int32_t>(GotPltEntry) + GotBaseVA;
8437fa27ce4SDimitry Andric GotToPlt.insert(std::make_pair(GotPltEntry, Plt));
8447fa27ce4SDimitry Andric }
8457fa27ce4SDimitry Andric
846d8e91e46SDimitry Andric // Find the relocations in the dynamic relocation table that point to
847d8e91e46SDimitry Andric // locations in the GOT for which we know the corresponding PLT entry.
8487fa27ce4SDimitry Andric std::vector<ELFPltEntry> Result;
8497fa27ce4SDimitry Andric auto handleRels = [&](iterator_range<relocation_iterator> Rels,
8507fa27ce4SDimitry Andric uint32_t RelType, StringRef PltSec) {
8517fa27ce4SDimitry Andric for (const auto &R : Rels) {
8527fa27ce4SDimitry Andric if (R.getType() != RelType)
853d8e91e46SDimitry Andric continue;
8547fa27ce4SDimitry Andric auto PltEntryIter = GotToPlt.find(R.getOffset());
855b60736ecSDimitry Andric if (PltEntryIter != GotToPlt.end()) {
8567fa27ce4SDimitry Andric symbol_iterator Sym = R.getSymbol();
857b60736ecSDimitry Andric if (Sym == symbol_end())
8587fa27ce4SDimitry Andric Result.push_back(
8597fa27ce4SDimitry Andric ELFPltEntry{PltSec, std::nullopt, PltEntryIter->second});
860b60736ecSDimitry Andric else
8617fa27ce4SDimitry Andric Result.push_back(ELFPltEntry{PltSec, Sym->getRawDataRefImpl(),
8627fa27ce4SDimitry Andric PltEntryIter->second});
863b60736ecSDimitry Andric }
864d8e91e46SDimitry Andric }
8657fa27ce4SDimitry Andric };
8667fa27ce4SDimitry Andric
8677fa27ce4SDimitry Andric if (RelaPlt)
8687fa27ce4SDimitry Andric handleRels(RelaPlt->relocations(), JumpSlotReloc, ".plt");
8697fa27ce4SDimitry Andric
8707fa27ce4SDimitry Andric // If a symbol needing a PLT entry also needs a GLOB_DAT relocation, GNU ld's
8717fa27ce4SDimitry Andric // x86 port places the PLT entry in the .plt.got section.
8727fa27ce4SDimitry Andric if (RelaDyn)
8737fa27ce4SDimitry Andric handleRels(RelaDyn->relocations(), GlobDatReloc, ".plt.got");
8747fa27ce4SDimitry Andric
875d8e91e46SDimitry Andric return Result;
876d8e91e46SDimitry Andric }
877c0981da4SDimitry Andric
878c0981da4SDimitry Andric template <class ELFT>
readBBAddrMapImpl(const ELFFile<ELFT> & EF,std::optional<unsigned> TextSectionIndex,std::vector<PGOAnalysisMap> * PGOAnalyses)879e3b55780SDimitry Andric Expected<std::vector<BBAddrMap>> static readBBAddrMapImpl(
880312c0ed1SDimitry Andric const ELFFile<ELFT> &EF, std::optional<unsigned> TextSectionIndex,
881312c0ed1SDimitry Andric std::vector<PGOAnalysisMap> *PGOAnalyses) {
882145449b1SDimitry Andric using Elf_Shdr = typename ELFT::Shdr;
8837fa27ce4SDimitry Andric bool IsRelocatable = EF.getHeader().e_type == ELF::ET_REL;
884145449b1SDimitry Andric std::vector<BBAddrMap> BBAddrMaps;
885312c0ed1SDimitry Andric if (PGOAnalyses)
886312c0ed1SDimitry Andric PGOAnalyses->clear();
8877fa27ce4SDimitry Andric
888145449b1SDimitry Andric const auto &Sections = cantFail(EF.sections());
8897fa27ce4SDimitry Andric auto IsMatch = [&](const Elf_Shdr &Sec) -> Expected<bool> {
890145449b1SDimitry Andric if (Sec.sh_type != ELF::SHT_LLVM_BB_ADDR_MAP &&
891145449b1SDimitry Andric Sec.sh_type != ELF::SHT_LLVM_BB_ADDR_MAP_V0)
8927fa27ce4SDimitry Andric return false;
8937fa27ce4SDimitry Andric if (!TextSectionIndex)
8947fa27ce4SDimitry Andric return true;
895145449b1SDimitry Andric Expected<const Elf_Shdr *> TextSecOrErr = EF.getSection(Sec.sh_link);
896145449b1SDimitry Andric if (!TextSecOrErr)
897145449b1SDimitry Andric return createError("unable to get the linked-to section for " +
898145449b1SDimitry Andric describe(EF, Sec) + ": " +
899145449b1SDimitry Andric toString(TextSecOrErr.takeError()));
900ac9a064cSDimitry Andric assert(*TextSecOrErr >= Sections.begin() &&
901ac9a064cSDimitry Andric "Text section pointer outside of bounds");
902ac9a064cSDimitry Andric if (*TextSectionIndex !=
903ac9a064cSDimitry Andric (unsigned)std::distance(Sections.begin(), *TextSecOrErr))
9047fa27ce4SDimitry Andric return false;
9057fa27ce4SDimitry Andric return true;
9067fa27ce4SDimitry Andric };
9077fa27ce4SDimitry Andric
9087fa27ce4SDimitry Andric Expected<MapVector<const Elf_Shdr *, const Elf_Shdr *>> SectionRelocMapOrErr =
9097fa27ce4SDimitry Andric EF.getSectionAndRelocations(IsMatch);
9107fa27ce4SDimitry Andric if (!SectionRelocMapOrErr)
9117fa27ce4SDimitry Andric return SectionRelocMapOrErr.takeError();
9127fa27ce4SDimitry Andric
9137fa27ce4SDimitry Andric for (auto const &[Sec, RelocSec] : *SectionRelocMapOrErr) {
9147fa27ce4SDimitry Andric if (IsRelocatable && !RelocSec)
9157fa27ce4SDimitry Andric return createError("unable to get relocation section for " +
9167fa27ce4SDimitry Andric describe(EF, *Sec));
9177fa27ce4SDimitry Andric Expected<std::vector<BBAddrMap>> BBAddrMapOrErr =
918312c0ed1SDimitry Andric EF.decodeBBAddrMap(*Sec, RelocSec, PGOAnalyses);
919312c0ed1SDimitry Andric if (!BBAddrMapOrErr) {
920312c0ed1SDimitry Andric if (PGOAnalyses)
921312c0ed1SDimitry Andric PGOAnalyses->clear();
9227fa27ce4SDimitry Andric return createError("unable to read " + describe(EF, *Sec) + ": " +
923145449b1SDimitry Andric toString(BBAddrMapOrErr.takeError()));
924312c0ed1SDimitry Andric }
925145449b1SDimitry Andric std::move(BBAddrMapOrErr->begin(), BBAddrMapOrErr->end(),
926145449b1SDimitry Andric std::back_inserter(BBAddrMaps));
927145449b1SDimitry Andric }
9284df029ccSDimitry Andric if (PGOAnalyses)
9294df029ccSDimitry Andric assert(PGOAnalyses->size() == BBAddrMaps.size() &&
9304df029ccSDimitry Andric "The same number of BBAddrMaps and PGOAnalysisMaps should be "
9314df029ccSDimitry Andric "returned when PGO information is requested");
932145449b1SDimitry Andric return BBAddrMaps;
933145449b1SDimitry Andric }
934145449b1SDimitry Andric
935145449b1SDimitry Andric template <class ELFT>
936c0981da4SDimitry Andric static Expected<std::vector<VersionEntry>>
readDynsymVersionsImpl(const ELFFile<ELFT> & EF,ELFObjectFileBase::elf_symbol_iterator_range Symbols)937c0981da4SDimitry Andric readDynsymVersionsImpl(const ELFFile<ELFT> &EF,
938c0981da4SDimitry Andric ELFObjectFileBase::elf_symbol_iterator_range Symbols) {
939c0981da4SDimitry Andric using Elf_Shdr = typename ELFT::Shdr;
940c0981da4SDimitry Andric const Elf_Shdr *VerSec = nullptr;
941c0981da4SDimitry Andric const Elf_Shdr *VerNeedSec = nullptr;
942c0981da4SDimitry Andric const Elf_Shdr *VerDefSec = nullptr;
943c0981da4SDimitry Andric // The user should ensure sections() can't fail here.
944c0981da4SDimitry Andric for (const Elf_Shdr &Sec : cantFail(EF.sections())) {
945c0981da4SDimitry Andric if (Sec.sh_type == ELF::SHT_GNU_versym)
946c0981da4SDimitry Andric VerSec = &Sec;
947c0981da4SDimitry Andric else if (Sec.sh_type == ELF::SHT_GNU_verdef)
948c0981da4SDimitry Andric VerDefSec = &Sec;
949c0981da4SDimitry Andric else if (Sec.sh_type == ELF::SHT_GNU_verneed)
950c0981da4SDimitry Andric VerNeedSec = &Sec;
951c0981da4SDimitry Andric }
952c0981da4SDimitry Andric if (!VerSec)
953c0981da4SDimitry Andric return std::vector<VersionEntry>();
954c0981da4SDimitry Andric
955e3b55780SDimitry Andric Expected<SmallVector<std::optional<VersionEntry>, 0>> MapOrErr =
956c0981da4SDimitry Andric EF.loadVersionMap(VerNeedSec, VerDefSec);
957c0981da4SDimitry Andric if (!MapOrErr)
958c0981da4SDimitry Andric return MapOrErr.takeError();
959c0981da4SDimitry Andric
960c0981da4SDimitry Andric std::vector<VersionEntry> Ret;
961c0981da4SDimitry Andric size_t I = 0;
962f65dcba8SDimitry Andric for (const ELFSymbolRef &Sym : Symbols) {
963c0981da4SDimitry Andric ++I;
964c0981da4SDimitry Andric Expected<const typename ELFT::Versym *> VerEntryOrErr =
965c0981da4SDimitry Andric EF.template getEntry<typename ELFT::Versym>(*VerSec, I);
966c0981da4SDimitry Andric if (!VerEntryOrErr)
967c0981da4SDimitry Andric return createError("unable to read an entry with index " + Twine(I) +
968c0981da4SDimitry Andric " from " + describe(EF, *VerSec) + ": " +
969c0981da4SDimitry Andric toString(VerEntryOrErr.takeError()));
970c0981da4SDimitry Andric
971f65dcba8SDimitry Andric Expected<uint32_t> FlagsOrErr = Sym.getFlags();
972c0981da4SDimitry Andric if (!FlagsOrErr)
973c0981da4SDimitry Andric return createError("unable to read flags for symbol with index " +
974c0981da4SDimitry Andric Twine(I) + ": " + toString(FlagsOrErr.takeError()));
975c0981da4SDimitry Andric
976c0981da4SDimitry Andric bool IsDefault;
977c0981da4SDimitry Andric Expected<StringRef> VerOrErr = EF.getSymbolVersionByIndex(
978c0981da4SDimitry Andric (*VerEntryOrErr)->vs_index, IsDefault, *MapOrErr,
979c0981da4SDimitry Andric (*FlagsOrErr) & SymbolRef::SF_Undefined);
980c0981da4SDimitry Andric if (!VerOrErr)
981c0981da4SDimitry Andric return createError("unable to get a version for entry " + Twine(I) +
982c0981da4SDimitry Andric " of " + describe(EF, *VerSec) + ": " +
983c0981da4SDimitry Andric toString(VerOrErr.takeError()));
984c0981da4SDimitry Andric
985c0981da4SDimitry Andric Ret.push_back({(*VerOrErr).str(), IsDefault});
986c0981da4SDimitry Andric }
987c0981da4SDimitry Andric
988c0981da4SDimitry Andric return Ret;
989c0981da4SDimitry Andric }
990c0981da4SDimitry Andric
991c0981da4SDimitry Andric Expected<std::vector<VersionEntry>>
readDynsymVersions() const992c0981da4SDimitry Andric ELFObjectFileBase::readDynsymVersions() const {
993c0981da4SDimitry Andric elf_symbol_iterator_range Symbols = getDynamicSymbolIterators();
994c0981da4SDimitry Andric if (const auto *Obj = dyn_cast<ELF32LEObjectFile>(this))
995c0981da4SDimitry Andric return readDynsymVersionsImpl(Obj->getELFFile(), Symbols);
996c0981da4SDimitry Andric if (const auto *Obj = dyn_cast<ELF32BEObjectFile>(this))
997c0981da4SDimitry Andric return readDynsymVersionsImpl(Obj->getELFFile(), Symbols);
998c0981da4SDimitry Andric if (const auto *Obj = dyn_cast<ELF64LEObjectFile>(this))
999c0981da4SDimitry Andric return readDynsymVersionsImpl(Obj->getELFFile(), Symbols);
1000c0981da4SDimitry Andric return readDynsymVersionsImpl(cast<ELF64BEObjectFile>(this)->getELFFile(),
1001c0981da4SDimitry Andric Symbols);
1002c0981da4SDimitry Andric }
1003145449b1SDimitry Andric
readBBAddrMap(std::optional<unsigned> TextSectionIndex,std::vector<PGOAnalysisMap> * PGOAnalyses) const1004e3b55780SDimitry Andric Expected<std::vector<BBAddrMap>> ELFObjectFileBase::readBBAddrMap(
1005312c0ed1SDimitry Andric std::optional<unsigned> TextSectionIndex,
1006312c0ed1SDimitry Andric std::vector<PGOAnalysisMap> *PGOAnalyses) const {
1007145449b1SDimitry Andric if (const auto *Obj = dyn_cast<ELF32LEObjectFile>(this))
1008312c0ed1SDimitry Andric return readBBAddrMapImpl(Obj->getELFFile(), TextSectionIndex, PGOAnalyses);
1009145449b1SDimitry Andric if (const auto *Obj = dyn_cast<ELF64LEObjectFile>(this))
1010312c0ed1SDimitry Andric return readBBAddrMapImpl(Obj->getELFFile(), TextSectionIndex, PGOAnalyses);
1011145449b1SDimitry Andric if (const auto *Obj = dyn_cast<ELF32BEObjectFile>(this))
1012312c0ed1SDimitry Andric return readBBAddrMapImpl(Obj->getELFFile(), TextSectionIndex, PGOAnalyses);
10137fa27ce4SDimitry Andric return readBBAddrMapImpl(cast<ELF64BEObjectFile>(this)->getELFFile(),
1014312c0ed1SDimitry Andric TextSectionIndex, PGOAnalyses);
1015145449b1SDimitry Andric }
1016ac9a064cSDimitry Andric
getCrelDecodeProblem(SectionRef Sec) const1017ac9a064cSDimitry Andric StringRef ELFObjectFileBase::getCrelDecodeProblem(SectionRef Sec) const {
1018ac9a064cSDimitry Andric auto Data = Sec.getRawDataRefImpl();
1019ac9a064cSDimitry Andric if (const auto *Obj = dyn_cast<ELF32LEObjectFile>(this))
1020ac9a064cSDimitry Andric return Obj->getCrelDecodeProblem(Data);
1021ac9a064cSDimitry Andric if (const auto *Obj = dyn_cast<ELF32BEObjectFile>(this))
1022ac9a064cSDimitry Andric return Obj->getCrelDecodeProblem(Data);
1023ac9a064cSDimitry Andric if (const auto *Obj = dyn_cast<ELF64LEObjectFile>(this))
1024ac9a064cSDimitry Andric return Obj->getCrelDecodeProblem(Data);
1025ac9a064cSDimitry Andric return cast<ELF64BEObjectFile>(this)->getCrelDecodeProblem(Data);
1026ac9a064cSDimitry Andric }
1027