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Jim Grosbach06594e12012-01-16 23:50:58 +00001//===-- RuntimeDyldELF.cpp - Run-time dynamic linker for MC-JIT -*- C++ -*-===//
Eli Bendersky4c647582012-01-16 08:56:09 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// Implementation of ELF support for the MC-JIT runtime dynamic linker.
11//
12//===----------------------------------------------------------------------===//
13
Andrew Kayloradc70562012-10-02 21:18:39 +000014#include "RuntimeDyldELF.h"
Keno Fischer02628de2015-04-14 02:10:35 +000015#include "RuntimeDyldCheckerImpl.h"
Eli Bendersky4c647582012-01-16 08:56:09 +000016#include "llvm/ADT/IntervalMap.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000017#include "llvm/ADT/STLExtras.h"
18#include "llvm/ADT/StringRef.h"
Eli Bendersky4c647582012-01-16 08:56:09 +000019#include "llvm/ADT/Triple.h"
Lang Hamesb5c7b1f2014-11-26 16:54:40 +000020#include "llvm/MC/MCStreamer.h"
Michael J. Spencer126973b2013-08-08 22:27:13 +000021#include "llvm/Object/ELFObjectFile.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000022#include "llvm/Object/ObjectFile.h"
23#include "llvm/Support/ELF.h"
Alexey Samsonova8d2f812014-08-27 23:06:08 +000024#include "llvm/Support/Endian.h"
Lang Hames173c69f2014-01-08 04:09:09 +000025#include "llvm/Support/MemoryBuffer.h"
Lang Hamesb5c7b1f2014-11-26 16:54:40 +000026#include "llvm/Support/TargetRegistry.h"
Lang Hames173c69f2014-01-08 04:09:09 +000027
Eli Bendersky4c647582012-01-16 08:56:09 +000028using namespace llvm;
29using namespace llvm::object;
30
Chandler Carruthf58e3762014-04-22 03:04:17 +000031#define DEBUG_TYPE "dyld"
32
Rafael Espindoladb4ed0b2014-06-13 02:24:39 +000033static inline std::error_code check(std::error_code Err) {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +000034 if (Err) {
35 report_fatal_error(Err.message());
36 }
37 return Err;
38}
39
Lang Hamesb5c7b1f2014-11-26 16:54:40 +000040namespace {
41
Juergen Ributzka7608dc02014-03-21 20:28:42 +000042template <class ELFT> class DyldELFObject : public ELFObjectFile<ELFT> {
Rafael Espindola035b4162013-04-17 21:20:55 +000043 LLVM_ELF_IMPORT_TYPES_ELFT(ELFT)
Preston Gurdcc31af92012-04-16 22:12:58 +000044
Michael J. Spencer1a791612013-01-15 07:44:25 +000045 typedef Elf_Shdr_Impl<ELFT> Elf_Shdr;
46 typedef Elf_Sym_Impl<ELFT> Elf_Sym;
Juergen Ributzka7608dc02014-03-21 20:28:42 +000047 typedef Elf_Rel_Impl<ELFT, false> Elf_Rel;
48 typedef Elf_Rel_Impl<ELFT, true> Elf_Rela;
Preston Gurdcc31af92012-04-16 22:12:58 +000049
Michael J. Spencer1a791612013-01-15 07:44:25 +000050 typedef Elf_Ehdr_Impl<ELFT> Elf_Ehdr;
Preston Gurdcc31af92012-04-16 22:12:58 +000051
Juergen Ributzka7608dc02014-03-21 20:28:42 +000052 typedef typename ELFDataTypeTypedefHelper<ELFT>::value_type addr_type;
Preston Gurdcc31af92012-04-16 22:12:58 +000053
Preston Gurdcc31af92012-04-16 22:12:58 +000054public:
Rafael Espindola48af1c22014-08-19 18:44:46 +000055 DyldELFObject(MemoryBufferRef Wrapper, std::error_code &ec);
Preston Gurdcc31af92012-04-16 22:12:58 +000056
57 void updateSectionAddress(const SectionRef &Sec, uint64_t Addr);
Lang Hamesb5c7b1f2014-11-26 16:54:40 +000058
59 void updateSymbolAddress(const SymbolRef &SymRef, uint64_t Addr);
Preston Gurdcc31af92012-04-16 22:12:58 +000060
Andrew Kaylor5c010902012-07-27 17:52:42 +000061 // Methods for type inquiry through isa, cast and dyn_cast
Preston Gurdcc31af92012-04-16 22:12:58 +000062 static inline bool classof(const Binary *v) {
Juergen Ributzka7608dc02014-03-21 20:28:42 +000063 return (isa<ELFObjectFile<ELFT>>(v) &&
64 classof(cast<ELFObjectFile<ELFT>>(v)));
Preston Gurdcc31af92012-04-16 22:12:58 +000065 }
Juergen Ributzka7608dc02014-03-21 20:28:42 +000066 static inline bool classof(const ELFObjectFile<ELFT> *v) {
Preston Gurdcc31af92012-04-16 22:12:58 +000067 return v->isDyldType();
68 }
Lang Hamesb5c7b1f2014-11-26 16:54:40 +000069
Preston Gurdcc31af92012-04-16 22:12:58 +000070};
71
Preston Gurdcc31af92012-04-16 22:12:58 +000072
Preston Gurdcc31af92012-04-16 22:12:58 +000073
Andrew Kayloradc70562012-10-02 21:18:39 +000074// The MemoryBuffer passed into this constructor is just a wrapper around the
75// actual memory. Ultimately, the Binary parent class will take ownership of
76// this MemoryBuffer object but not the underlying memory.
Juergen Ributzka7608dc02014-03-21 20:28:42 +000077template <class ELFT>
Rafael Espindola48af1c22014-08-19 18:44:46 +000078DyldELFObject<ELFT>::DyldELFObject(MemoryBufferRef Wrapper, std::error_code &EC)
79 : ELFObjectFile<ELFT>(Wrapper, EC) {
Preston Gurdcc31af92012-04-16 22:12:58 +000080 this->isDyldELFObject = true;
81}
82
Juergen Ributzka7608dc02014-03-21 20:28:42 +000083template <class ELFT>
Michael J. Spencer1a791612013-01-15 07:44:25 +000084void DyldELFObject<ELFT>::updateSectionAddress(const SectionRef &Sec,
85 uint64_t Addr) {
Preston Gurdcc31af92012-04-16 22:12:58 +000086 DataRefImpl ShdrRef = Sec.getRawDataRefImpl();
Juergen Ributzka7608dc02014-03-21 20:28:42 +000087 Elf_Shdr *shdr =
88 const_cast<Elf_Shdr *>(reinterpret_cast<const Elf_Shdr *>(ShdrRef.p));
Preston Gurdcc31af92012-04-16 22:12:58 +000089
90 // This assumes the address passed in matches the target address bitness
91 // The template-based type cast handles everything else.
92 shdr->sh_addr = static_cast<addr_type>(Addr);
93}
94
Juergen Ributzka7608dc02014-03-21 20:28:42 +000095template <class ELFT>
Michael J. Spencer1a791612013-01-15 07:44:25 +000096void DyldELFObject<ELFT>::updateSymbolAddress(const SymbolRef &SymRef,
97 uint64_t Addr) {
Preston Gurdcc31af92012-04-16 22:12:58 +000098
Juergen Ributzka7608dc02014-03-21 20:28:42 +000099 Elf_Sym *sym = const_cast<Elf_Sym *>(
100 ELFObjectFile<ELFT>::getSymbol(SymRef.getRawDataRefImpl()));
Preston Gurdcc31af92012-04-16 22:12:58 +0000101
102 // This assumes the address passed in matches the target address bitness
103 // The template-based type cast handles everything else.
104 sym->st_value = static_cast<addr_type>(Addr);
105}
106
NAKAMURA Takumi73dc2e42015-05-22 10:11:07 +0000107class LoadedELFObjectInfo
108 : public RuntimeDyld::LoadedObjectInfoHelper<LoadedELFObjectInfo> {
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000109public:
110 LoadedELFObjectInfo(RuntimeDyldImpl &RTDyld, unsigned BeginIdx,
111 unsigned EndIdx)
NAKAMURA Takumi73dc2e42015-05-22 10:11:07 +0000112 : LoadedObjectInfoHelper(RTDyld, BeginIdx, EndIdx) {}
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000113
114 OwningBinary<ObjectFile>
115 getObjectForDebug(const ObjectFile &Obj) const override;
116};
117
118template <typename ELFT>
119std::unique_ptr<DyldELFObject<ELFT>>
120createRTDyldELFObject(MemoryBufferRef Buffer,
121 const LoadedELFObjectInfo &L,
122 std::error_code &ec) {
123 typedef typename ELFFile<ELFT>::Elf_Shdr Elf_Shdr;
124 typedef typename ELFDataTypeTypedefHelper<ELFT>::value_type addr_type;
125
126 std::unique_ptr<DyldELFObject<ELFT>> Obj =
127 llvm::make_unique<DyldELFObject<ELFT>>(Buffer, ec);
128
129 // Iterate over all sections in the object.
130 for (const auto &Sec : Obj->sections()) {
131 StringRef SectionName;
132 Sec.getName(SectionName);
133 if (SectionName != "") {
134 DataRefImpl ShdrRef = Sec.getRawDataRefImpl();
135 Elf_Shdr *shdr = const_cast<Elf_Shdr *>(
136 reinterpret_cast<const Elf_Shdr *>(ShdrRef.p));
137
138 if (uint64_t SecLoadAddr = L.getSectionLoadAddress(SectionName)) {
139 // This assumes that the address passed in matches the target address
140 // bitness. The template-based type cast handles everything else.
141 shdr->sh_addr = static_cast<addr_type>(SecLoadAddr);
142 }
143 }
144 }
145
146 return Obj;
147}
148
149OwningBinary<ObjectFile> createELFDebugObject(const ObjectFile &Obj,
150 const LoadedELFObjectInfo &L) {
151 assert(Obj.isELF() && "Not an ELF object file.");
152
153 std::unique_ptr<MemoryBuffer> Buffer =
154 MemoryBuffer::getMemBufferCopy(Obj.getData(), Obj.getFileName());
155
156 std::error_code ec;
157
158 std::unique_ptr<ObjectFile> DebugObj;
159 if (Obj.getBytesInAddress() == 4 && Obj.isLittleEndian()) {
Rafael Espindolaac729b42015-06-02 12:05:27 +0000160 typedef ELFType<support::little, false> ELF32LE;
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000161 DebugObj = createRTDyldELFObject<ELF32LE>(Buffer->getMemBufferRef(), L, ec);
162 } else if (Obj.getBytesInAddress() == 4 && !Obj.isLittleEndian()) {
Rafael Espindolaac729b42015-06-02 12:05:27 +0000163 typedef ELFType<support::big, false> ELF32BE;
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000164 DebugObj = createRTDyldELFObject<ELF32BE>(Buffer->getMemBufferRef(), L, ec);
165 } else if (Obj.getBytesInAddress() == 8 && !Obj.isLittleEndian()) {
Rafael Espindolaac729b42015-06-02 12:05:27 +0000166 typedef ELFType<support::big, true> ELF64BE;
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000167 DebugObj = createRTDyldELFObject<ELF64BE>(Buffer->getMemBufferRef(), L, ec);
168 } else if (Obj.getBytesInAddress() == 8 && Obj.isLittleEndian()) {
Rafael Espindolaac729b42015-06-02 12:05:27 +0000169 typedef ELFType<support::little, true> ELF64LE;
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000170 DebugObj = createRTDyldELFObject<ELF64LE>(Buffer->getMemBufferRef(), L, ec);
171 } else
172 llvm_unreachable("Unexpected ELF format");
173
174 assert(!ec && "Could not construct copy ELF object file");
175
176 return OwningBinary<ObjectFile>(std::move(DebugObj), std::move(Buffer));
177}
178
179OwningBinary<ObjectFile>
180LoadedELFObjectInfo::getObjectForDebug(const ObjectFile &Obj) const {
181 return createELFDebugObject(Obj, *this);
182}
183
Preston Gurdcc31af92012-04-16 22:12:58 +0000184} // namespace
185
Eli Bendersky4c647582012-01-16 08:56:09 +0000186namespace llvm {
187
Lang Hames633fe142015-03-30 03:37:06 +0000188RuntimeDyldELF::RuntimeDyldELF(RuntimeDyld::MemoryManager &MemMgr,
189 RuntimeDyld::SymbolResolver &Resolver)
Keno Fischer02628de2015-04-14 02:10:35 +0000190 : RuntimeDyldImpl(MemMgr, Resolver), GOTSectionID(0), CurrentGOTIndex(0) {}
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000191RuntimeDyldELF::~RuntimeDyldELF() {}
192
Andrew Kaylor7bb13442013-10-11 21:25:48 +0000193void RuntimeDyldELF::registerEHFrames() {
Andrew Kaylor7bb13442013-10-11 21:25:48 +0000194 for (int i = 0, e = UnregisteredEHFrameSections.size(); i != e; ++i) {
195 SID EHFrameSID = UnregisteredEHFrameSections[i];
196 uint8_t *EHFrameAddr = Sections[EHFrameSID].Address;
197 uint64_t EHFrameLoadAddr = Sections[EHFrameSID].LoadAddress;
198 size_t EHFrameSize = Sections[EHFrameSID].Size;
Lang Hames633fe142015-03-30 03:37:06 +0000199 MemMgr.registerEHFrames(EHFrameAddr, EHFrameLoadAddr, EHFrameSize);
Andrew Kaylorc442a762013-10-16 00:14:21 +0000200 RegisteredEHFrameSections.push_back(EHFrameSID);
Rafael Espindolafa5942b2013-05-05 20:43:10 +0000201 }
Andrew Kaylor7bb13442013-10-11 21:25:48 +0000202 UnregisteredEHFrameSections.clear();
Rafael Espindolafa5942b2013-05-05 20:43:10 +0000203}
204
Andrew Kaylorc442a762013-10-16 00:14:21 +0000205void RuntimeDyldELF::deregisterEHFrames() {
Andrew Kaylorc442a762013-10-16 00:14:21 +0000206 for (int i = 0, e = RegisteredEHFrameSections.size(); i != e; ++i) {
207 SID EHFrameSID = RegisteredEHFrameSections[i];
208 uint8_t *EHFrameAddr = Sections[EHFrameSID].Address;
209 uint64_t EHFrameLoadAddr = Sections[EHFrameSID].LoadAddress;
210 size_t EHFrameSize = Sections[EHFrameSID].Size;
Lang Hames633fe142015-03-30 03:37:06 +0000211 MemMgr.deregisterEHFrames(EHFrameAddr, EHFrameLoadAddr, EHFrameSize);
Andrew Kaylorc442a762013-10-16 00:14:21 +0000212 }
213 RegisteredEHFrameSections.clear();
214}
215
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000216std::unique_ptr<RuntimeDyld::LoadedObjectInfo>
217RuntimeDyldELF::loadObject(const object::ObjectFile &O) {
218 unsigned SectionStartIdx, SectionEndIdx;
219 std::tie(SectionStartIdx, SectionEndIdx) = loadObjectImpl(O);
220 return llvm::make_unique<LoadedELFObjectInfo>(*this, SectionStartIdx,
221 SectionEndIdx);
Lang Hames173c69f2014-01-08 04:09:09 +0000222}
223
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000224void RuntimeDyldELF::resolveX86_64Relocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000225 uint64_t Offset, uint64_t Value,
226 uint32_t Type, int64_t Addend,
Andrew Kaylor4612fed2013-08-19 23:27:43 +0000227 uint64_t SymOffset) {
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000228 switch (Type) {
229 default:
230 llvm_unreachable("Relocation type not implemented yet!");
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000231 break;
Eli Bendersky4c647582012-01-16 08:56:09 +0000232 case ELF::R_X86_64_64: {
Alexey Samsonova8d2f812014-08-27 23:06:08 +0000233 support::ulittle64_t::ref(Section.Address + Offset) = Value + Addend;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000234 DEBUG(dbgs() << "Writing " << format("%p", (Value + Addend)) << " at "
Alexey Samsonova8d2f812014-08-27 23:06:08 +0000235 << format("%p\n", Section.Address + Offset));
Eli Bendersky4c647582012-01-16 08:56:09 +0000236 break;
237 }
238 case ELF::R_X86_64_32:
239 case ELF::R_X86_64_32S: {
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000240 Value += Addend;
Andrew Kaylor8e87a752012-07-27 20:30:12 +0000241 assert((Type == ELF::R_X86_64_32 && (Value <= UINT32_MAX)) ||
Michael J. Spencerbae14ce2013-01-04 20:36:28 +0000242 (Type == ELF::R_X86_64_32S &&
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000243 ((int64_t)Value <= INT32_MAX && (int64_t)Value >= INT32_MIN)));
Eli Bendersky4c647582012-01-16 08:56:09 +0000244 uint32_t TruncatedAddr = (Value & 0xFFFFFFFF);
Alexey Samsonova8d2f812014-08-27 23:06:08 +0000245 support::ulittle32_t::ref(Section.Address + Offset) = TruncatedAddr;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000246 DEBUG(dbgs() << "Writing " << format("%p", TruncatedAddr) << " at "
Alexey Samsonova8d2f812014-08-27 23:06:08 +0000247 << format("%p\n", Section.Address + Offset));
Eli Bendersky4c647582012-01-16 08:56:09 +0000248 break;
249 }
250 case ELF::R_X86_64_PC32: {
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000251 uint64_t FinalAddress = Section.LoadAddress + Offset;
Keno Fischer02628de2015-04-14 02:10:35 +0000252 int64_t RealOffset = Value + Addend - FinalAddress;
David Majnemerdd9eafb2015-05-15 20:32:25 +0000253 assert(isInt<32>(RealOffset));
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000254 int32_t TruncOffset = (RealOffset & 0xFFFFFFFF);
Alexey Samsonova8d2f812014-08-27 23:06:08 +0000255 support::ulittle32_t::ref(Section.Address + Offset) = TruncOffset;
Eli Bendersky4c647582012-01-16 08:56:09 +0000256 break;
257 }
Andrew Kaylor4612fed2013-08-19 23:27:43 +0000258 case ELF::R_X86_64_PC64: {
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000259 uint64_t FinalAddress = Section.LoadAddress + Offset;
Keno Fischer02628de2015-04-14 02:10:35 +0000260 int64_t RealOffset = Value + Addend - FinalAddress;
Keno Fischer02628de2015-04-14 02:10:35 +0000261 support::ulittle64_t::ref(Section.Address + Offset) = RealOffset;
Andrew Kaylor4612fed2013-08-19 23:27:43 +0000262 break;
263 }
Eli Bendersky4c647582012-01-16 08:56:09 +0000264 }
265}
266
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000267void RuntimeDyldELF::resolveX86Relocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000268 uint64_t Offset, uint32_t Value,
269 uint32_t Type, int32_t Addend) {
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000270 switch (Type) {
Eli Bendersky4c647582012-01-16 08:56:09 +0000271 case ELF::R_386_32: {
Keno Fischere6892c82015-05-01 20:21:45 +0000272 support::ulittle32_t::ref(Section.Address + Offset) = Value + Addend;
Eli Bendersky4c647582012-01-16 08:56:09 +0000273 break;
274 }
275 case ELF::R_386_PC32: {
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000276 uint32_t FinalAddress = ((Section.LoadAddress + Offset) & 0xFFFFFFFF);
Keno Fischere6892c82015-05-01 20:21:45 +0000277 uint32_t RealOffset = Value + Addend - FinalAddress;
Alexey Samsonova8d2f812014-08-27 23:06:08 +0000278 support::ulittle32_t::ref(Section.Address + Offset) = RealOffset;
Eli Bendersky4c647582012-01-16 08:56:09 +0000279 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000280 }
281 default:
282 // There are other relocation types, but it appears these are the
283 // only ones currently used by the LLVM ELF object writer
284 llvm_unreachable("Relocation type not implemented yet!");
285 break;
Eli Bendersky4c647582012-01-16 08:56:09 +0000286 }
287}
288
Tim Northoverfa1b2f82013-05-04 20:13:59 +0000289void RuntimeDyldELF::resolveAArch64Relocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000290 uint64_t Offset, uint64_t Value,
291 uint32_t Type, int64_t Addend) {
292 uint32_t *TargetPtr = reinterpret_cast<uint32_t *>(Section.Address + Offset);
Tim Northoverfa1b2f82013-05-04 20:13:59 +0000293 uint64_t FinalAddress = Section.LoadAddress + Offset;
294
295 DEBUG(dbgs() << "resolveAArch64Relocation, LocalAddress: 0x"
296 << format("%llx", Section.Address + Offset)
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000297 << " FinalAddress: 0x" << format("%llx", FinalAddress)
298 << " Value: 0x" << format("%llx", Value) << " Type: 0x"
299 << format("%x", Type) << " Addend: 0x" << format("%llx", Addend)
Tim Northoverfa1b2f82013-05-04 20:13:59 +0000300 << "\n");
301
302 switch (Type) {
303 default:
304 llvm_unreachable("Relocation type not implemented yet!");
305 break;
Tim Northoverb23d8db2013-05-04 20:14:14 +0000306 case ELF::R_AARCH64_ABS64: {
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000307 uint64_t *TargetPtr =
308 reinterpret_cast<uint64_t *>(Section.Address + Offset);
Tim Northoverb23d8db2013-05-04 20:14:14 +0000309 *TargetPtr = Value + Addend;
310 break;
311 }
Tim Northover5959ea32013-05-19 15:39:03 +0000312 case ELF::R_AARCH64_PREL32: {
Tim Northoverfa1b2f82013-05-04 20:13:59 +0000313 uint64_t Result = Value + Addend - FinalAddress;
Michael J. Spencer126973b2013-08-08 22:27:13 +0000314 assert(static_cast<int64_t>(Result) >= INT32_MIN &&
Tim Northoverfa1b2f82013-05-04 20:13:59 +0000315 static_cast<int64_t>(Result) <= UINT32_MAX);
316 *TargetPtr = static_cast<uint32_t>(Result & 0xffffffffU);
317 break;
318 }
Tim Northover37cde972013-05-04 20:14:09 +0000319 case ELF::R_AARCH64_CALL26: // fallthrough
320 case ELF::R_AARCH64_JUMP26: {
321 // Operation: S+A-P. Set Call or B immediate value to bits fff_fffc of the
322 // calculation.
323 uint64_t BranchImm = Value + Addend - FinalAddress;
324
325 // "Check that -2^27 <= result < 2^27".
David Majnemerdd9eafb2015-05-15 20:32:25 +0000326 assert(isInt<28>(BranchImm));
Tim Northover5959ea32013-05-19 15:39:03 +0000327
328 // AArch64 code is emitted with .rela relocations. The data already in any
329 // bits affected by the relocation on entry is garbage.
330 *TargetPtr &= 0xfc000000U;
Tim Northover37cde972013-05-04 20:14:09 +0000331 // Immediate goes in bits 25:0 of B and BL.
332 *TargetPtr |= static_cast<uint32_t>(BranchImm & 0xffffffcU) >> 2;
333 break;
334 }
Tim Northover4d01c1e2013-05-04 20:14:04 +0000335 case ELF::R_AARCH64_MOVW_UABS_G3: {
336 uint64_t Result = Value + Addend;
Tim Northover5959ea32013-05-19 15:39:03 +0000337
338 // AArch64 code is emitted with .rela relocations. The data already in any
339 // bits affected by the relocation on entry is garbage.
Tim Northoverca8a0072013-07-25 12:42:52 +0000340 *TargetPtr &= 0xffe0001fU;
Tim Northover4d01c1e2013-05-04 20:14:04 +0000341 // Immediate goes in bits 20:5 of MOVZ/MOVK instruction
342 *TargetPtr |= Result >> (48 - 5);
Tim Northover8625fd82013-07-01 19:23:10 +0000343 // Shift must be "lsl #48", in bits 22:21
344 assert((*TargetPtr >> 21 & 0x3) == 3 && "invalid shift for relocation");
Tim Northover4d01c1e2013-05-04 20:14:04 +0000345 break;
346 }
347 case ELF::R_AARCH64_MOVW_UABS_G2_NC: {
348 uint64_t Result = Value + Addend;
Tim Northover5959ea32013-05-19 15:39:03 +0000349
Tim Northover5959ea32013-05-19 15:39:03 +0000350 // AArch64 code is emitted with .rela relocations. The data already in any
351 // bits affected by the relocation on entry is garbage.
Tim Northoverca8a0072013-07-25 12:42:52 +0000352 *TargetPtr &= 0xffe0001fU;
Tim Northover4d01c1e2013-05-04 20:14:04 +0000353 // Immediate goes in bits 20:5 of MOVZ/MOVK instruction
354 *TargetPtr |= ((Result & 0xffff00000000ULL) >> (32 - 5));
Tim Northover8625fd82013-07-01 19:23:10 +0000355 // Shift must be "lsl #32", in bits 22:21
356 assert((*TargetPtr >> 21 & 0x3) == 2 && "invalid shift for relocation");
Tim Northover4d01c1e2013-05-04 20:14:04 +0000357 break;
358 }
359 case ELF::R_AARCH64_MOVW_UABS_G1_NC: {
360 uint64_t Result = Value + Addend;
Tim Northover5959ea32013-05-19 15:39:03 +0000361
362 // AArch64 code is emitted with .rela relocations. The data already in any
363 // bits affected by the relocation on entry is garbage.
Tim Northoverca8a0072013-07-25 12:42:52 +0000364 *TargetPtr &= 0xffe0001fU;
Tim Northover4d01c1e2013-05-04 20:14:04 +0000365 // Immediate goes in bits 20:5 of MOVZ/MOVK instruction
366 *TargetPtr |= ((Result & 0xffff0000U) >> (16 - 5));
Tim Northover8625fd82013-07-01 19:23:10 +0000367 // Shift must be "lsl #16", in bits 22:2
368 assert((*TargetPtr >> 21 & 0x3) == 1 && "invalid shift for relocation");
Tim Northover4d01c1e2013-05-04 20:14:04 +0000369 break;
370 }
371 case ELF::R_AARCH64_MOVW_UABS_G0_NC: {
372 uint64_t Result = Value + Addend;
Tim Northover5959ea32013-05-19 15:39:03 +0000373
374 // AArch64 code is emitted with .rela relocations. The data already in any
375 // bits affected by the relocation on entry is garbage.
Tim Northoverca8a0072013-07-25 12:42:52 +0000376 *TargetPtr &= 0xffe0001fU;
Tim Northover4d01c1e2013-05-04 20:14:04 +0000377 // Immediate goes in bits 20:5 of MOVZ/MOVK instruction
378 *TargetPtr |= ((Result & 0xffffU) << 5);
Tim Northover8625fd82013-07-01 19:23:10 +0000379 // Shift must be "lsl #0", in bits 22:21.
380 assert((*TargetPtr >> 21 & 0x3) == 0 && "invalid shift for relocation");
Tim Northover4d01c1e2013-05-04 20:14:04 +0000381 break;
382 }
Bradley Smith9d808492014-02-11 12:59:09 +0000383 case ELF::R_AARCH64_ADR_PREL_PG_HI21: {
384 // Operation: Page(S+A) - Page(P)
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000385 uint64_t Result =
386 ((Value + Addend) & ~0xfffULL) - (FinalAddress & ~0xfffULL);
Bradley Smith9d808492014-02-11 12:59:09 +0000387
388 // Check that -2^32 <= X < 2^32
David Majnemerdd9eafb2015-05-15 20:32:25 +0000389 assert(isInt<33>(Result) && "overflow check failed for relocation");
Bradley Smith9d808492014-02-11 12:59:09 +0000390
391 // AArch64 code is emitted with .rela relocations. The data already in any
392 // bits affected by the relocation on entry is garbage.
393 *TargetPtr &= 0x9f00001fU;
394 // Immediate goes in bits 30:29 + 5:23 of ADRP instruction, taken
395 // from bits 32:12 of X.
396 *TargetPtr |= ((Result & 0x3000U) << (29 - 12));
397 *TargetPtr |= ((Result & 0x1ffffc000ULL) >> (14 - 5));
398 break;
399 }
400 case ELF::R_AARCH64_LDST32_ABS_LO12_NC: {
401 // Operation: S + A
402 uint64_t Result = Value + Addend;
403
404 // AArch64 code is emitted with .rela relocations. The data already in any
405 // bits affected by the relocation on entry is garbage.
406 *TargetPtr &= 0xffc003ffU;
407 // Immediate goes in bits 21:10 of LD/ST instruction, taken
408 // from bits 11:2 of X
409 *TargetPtr |= ((Result & 0xffc) << (10 - 2));
410 break;
411 }
412 case ELF::R_AARCH64_LDST64_ABS_LO12_NC: {
413 // Operation: S + A
414 uint64_t Result = Value + Addend;
415
416 // AArch64 code is emitted with .rela relocations. The data already in any
417 // bits affected by the relocation on entry is garbage.
418 *TargetPtr &= 0xffc003ffU;
419 // Immediate goes in bits 21:10 of LD/ST instruction, taken
420 // from bits 11:3 of X
421 *TargetPtr |= ((Result & 0xff8) << (10 - 3));
422 break;
423 }
Tim Northoverfa1b2f82013-05-04 20:13:59 +0000424 }
425}
426
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000427void RuntimeDyldELF::resolveARMRelocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000428 uint64_t Offset, uint32_t Value,
429 uint32_t Type, int32_t Addend) {
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000430 // TODO: Add Thumb relocations.
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000431 uint32_t *TargetPtr = (uint32_t *)(Section.Address + Offset);
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000432 uint32_t FinalAddress = ((Section.LoadAddress + Offset) & 0xFFFFFFFF);
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000433 Value += Addend;
434
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000435 DEBUG(dbgs() << "resolveARMRelocation, LocalAddress: "
436 << Section.Address + Offset
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000437 << " FinalAddress: " << format("%p", FinalAddress) << " Value: "
438 << format("%x", Value) << " Type: " << format("%x", Type)
439 << " Addend: " << format("%x", Addend) << "\n");
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000440
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000441 switch (Type) {
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000442 default:
443 llvm_unreachable("Not implemented relocation type!");
444
Renato Golin8cea6e82014-01-29 11:50:56 +0000445 case ELF::R_ARM_NONE:
446 break;
Renato Golin8cea6e82014-01-29 11:50:56 +0000447 case ELF::R_ARM_PREL31:
Tim Northover3b684d82013-05-28 19:48:19 +0000448 case ELF::R_ARM_TARGET1:
449 case ELF::R_ARM_ABS32:
Keno Fischere6892c82015-05-01 20:21:45 +0000450 *TargetPtr = Value;
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000451 break;
Keno Fischere6892c82015-05-01 20:21:45 +0000452 // Write first 16 bit of 32 bit value to the mov instruction.
453 // Last 4 bit should be shifted.
Tim Northover3b684d82013-05-28 19:48:19 +0000454 case ELF::R_ARM_MOVW_ABS_NC:
Pavel Labath3b8f3ad2015-04-16 08:58:15 +0000455 case ELF::R_ARM_MOVT_ABS:
Keno Fischere6892c82015-05-01 20:21:45 +0000456 if (Type == ELF::R_ARM_MOVW_ABS_NC)
457 Value = Value & 0xFFFF;
458 else if (Type == ELF::R_ARM_MOVT_ABS)
459 Value = (Value >> 16) & 0xFFFF;
460 *TargetPtr &= ~0x000F0FFF;
461 *TargetPtr |= Value & 0xFFF;
Pavel Labath3b8f3ad2015-04-16 08:58:15 +0000462 *TargetPtr |= ((Value >> 12) & 0xF) << 16;
463 break;
Keno Fischere6892c82015-05-01 20:21:45 +0000464 // Write 24 bit relative value to the branch instruction.
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000465 case ELF::R_ARM_PC24: // Fall through.
466 case ELF::R_ARM_CALL: // Fall through.
Keno Fischere6892c82015-05-01 20:21:45 +0000467 case ELF::R_ARM_JUMP24:
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000468 int32_t RelValue = static_cast<int32_t>(Value - FinalAddress - 8);
469 RelValue = (RelValue & 0x03FFFFFC) >> 2;
Tim Northover3b684d82013-05-28 19:48:19 +0000470 assert((*TargetPtr & 0xFFFFFF) == 0xFFFFFE);
Danil Malyshev70d22cc2012-03-30 16:45:19 +0000471 *TargetPtr &= 0xFF000000;
472 *TargetPtr |= RelValue;
473 break;
474 }
Eli Bendersky4c647582012-01-16 08:56:09 +0000475}
476
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000477void RuntimeDyldELF::resolveMIPSRelocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000478 uint64_t Offset, uint32_t Value,
479 uint32_t Type, int32_t Addend) {
Daniel Sanders8b2354d2015-06-03 10:27:28 +0000480 uint8_t *TargetPtr = Section.Address + Offset;
Akira Hatanaka111174b2012-08-17 21:28:04 +0000481 Value += Addend;
482
Daniel Sanders8b2354d2015-06-03 10:27:28 +0000483 DEBUG(dbgs() << "resolveMIPSRelocation, LocalAddress: "
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000484 << Section.Address + Offset << " FinalAddress: "
485 << format("%p", Section.LoadAddress + Offset) << " Value: "
486 << format("%x", Value) << " Type: " << format("%x", Type)
487 << " Addend: " << format("%x", Addend) << "\n");
Akira Hatanaka111174b2012-08-17 21:28:04 +0000488
Daniel Sanders8b2354d2015-06-03 10:27:28 +0000489 uint32_t Insn = readBytesUnaligned(TargetPtr, 4);
490
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000491 switch (Type) {
Akira Hatanaka111174b2012-08-17 21:28:04 +0000492 default:
493 llvm_unreachable("Not implemented relocation type!");
494 break;
495 case ELF::R_MIPS_32:
Daniel Sanders8b2354d2015-06-03 10:27:28 +0000496 writeBytesUnaligned(Value, TargetPtr, 4);
Akira Hatanaka111174b2012-08-17 21:28:04 +0000497 break;
498 case ELF::R_MIPS_26:
Daniel Sanders8b2354d2015-06-03 10:27:28 +0000499 Insn &= 0xfc000000;
500 Insn |= (Value & 0x0fffffff) >> 2;
501 writeBytesUnaligned(Insn, TargetPtr, 4);
Akira Hatanaka111174b2012-08-17 21:28:04 +0000502 break;
503 case ELF::R_MIPS_HI16:
504 // Get the higher 16-bits. Also add 1 if bit 15 is 1.
Daniel Sanders8b2354d2015-06-03 10:27:28 +0000505 Insn &= 0xffff0000;
506 Insn |= ((Value + 0x8000) >> 16) & 0xffff;
507 writeBytesUnaligned(Insn, TargetPtr, 4);
Akira Hatanaka2e236242013-07-24 01:58:40 +0000508 break;
509 case ELF::R_MIPS_LO16:
Daniel Sanders8b2354d2015-06-03 10:27:28 +0000510 Insn &= 0xffff0000;
511 Insn |= Value & 0xffff;
512 writeBytesUnaligned(Insn, TargetPtr, 4);
513 break;
514 case ELF::R_MIPS_PC32:
515 uint32_t FinalAddress = (Section.LoadAddress + Offset);
516 writeBytesUnaligned(Value + Addend - FinalAddress, (uint8_t *)TargetPtr, 4);
Akira Hatanaka111174b2012-08-17 21:28:04 +0000517 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000518 }
Akira Hatanaka111174b2012-08-17 21:28:04 +0000519}
520
Petar Jovanovic97202832015-05-28 13:48:41 +0000521void RuntimeDyldELF::setMipsABI(const ObjectFile &Obj) {
Alexei Starovoitova38e1982015-06-10 03:06:06 +0000522 if (Arch == Triple::UnknownArch ||
523 !StringRef(Triple::getArchTypePrefix(Arch)).equals("mips")) {
Petar Jovanovic97202832015-05-28 13:48:41 +0000524 IsMipsO32ABI = false;
525 IsMipsN64ABI = false;
526 return;
527 }
528 unsigned AbiVariant;
529 Obj.getPlatformFlags(AbiVariant);
530 IsMipsO32ABI = AbiVariant & ELF::EF_MIPS_ABI_O32;
531 IsMipsN64ABI = Obj.getFileFormatName().equals("ELF64-mips");
532 if (AbiVariant & ELF::EF_MIPS_ABI2)
533 llvm_unreachable("Mips N32 ABI is not supported yet");
534}
535
536void RuntimeDyldELF::resolveMIPS64Relocation(const SectionEntry &Section,
537 uint64_t Offset, uint64_t Value,
538 uint32_t Type, int64_t Addend,
539 uint64_t SymOffset,
540 SID SectionID) {
541 uint32_t r_type = Type & 0xff;
542 uint32_t r_type2 = (Type >> 8) & 0xff;
543 uint32_t r_type3 = (Type >> 16) & 0xff;
544
545 // RelType is used to keep information for which relocation type we are
546 // applying relocation.
547 uint32_t RelType = r_type;
548 int64_t CalculatedValue = evaluateMIPS64Relocation(Section, Offset, Value,
549 RelType, Addend,
550 SymOffset, SectionID);
551 if (r_type2 != ELF::R_MIPS_NONE) {
552 RelType = r_type2;
553 CalculatedValue = evaluateMIPS64Relocation(Section, Offset, 0, RelType,
554 CalculatedValue, SymOffset,
555 SectionID);
556 }
557 if (r_type3 != ELF::R_MIPS_NONE) {
558 RelType = r_type3;
559 CalculatedValue = evaluateMIPS64Relocation(Section, Offset, 0, RelType,
560 CalculatedValue, SymOffset,
561 SectionID);
562 }
563 applyMIPS64Relocation(Section.Address + Offset, CalculatedValue, RelType);
564}
565
566int64_t
567RuntimeDyldELF::evaluateMIPS64Relocation(const SectionEntry &Section,
568 uint64_t Offset, uint64_t Value,
569 uint32_t Type, int64_t Addend,
570 uint64_t SymOffset, SID SectionID) {
571
572 DEBUG(dbgs() << "evaluateMIPS64Relocation, LocalAddress: 0x"
573 << format("%llx", Section.Address + Offset)
574 << " FinalAddress: 0x"
575 << format("%llx", Section.LoadAddress + Offset)
576 << " Value: 0x" << format("%llx", Value) << " Type: 0x"
577 << format("%x", Type) << " Addend: 0x" << format("%llx", Addend)
578 << " SymOffset: " << format("%x", SymOffset)
579 << "\n");
580
581 switch (Type) {
582 default:
583 llvm_unreachable("Not implemented relocation type!");
584 break;
585 case ELF::R_MIPS_JALR:
586 case ELF::R_MIPS_NONE:
587 break;
588 case ELF::R_MIPS_32:
589 case ELF::R_MIPS_64:
590 return Value + Addend;
591 case ELF::R_MIPS_26:
592 return ((Value + Addend) >> 2) & 0x3ffffff;
593 case ELF::R_MIPS_GPREL16: {
594 uint64_t GOTAddr = getSectionLoadAddress(SectionToGOTMap[SectionID]);
595 return Value + Addend - (GOTAddr + 0x7ff0);
596 }
597 case ELF::R_MIPS_SUB:
598 return Value - Addend;
599 case ELF::R_MIPS_HI16:
600 // Get the higher 16-bits. Also add 1 if bit 15 is 1.
601 return ((Value + Addend + 0x8000) >> 16) & 0xffff;
602 case ELF::R_MIPS_LO16:
603 return (Value + Addend) & 0xffff;
604 case ELF::R_MIPS_CALL16:
605 case ELF::R_MIPS_GOT_DISP:
606 case ELF::R_MIPS_GOT_PAGE: {
607 uint8_t *LocalGOTAddr =
608 getSectionAddress(SectionToGOTMap[SectionID]) + SymOffset;
609 uint64_t GOTEntry = readBytesUnaligned(LocalGOTAddr, 8);
610
611 Value += Addend;
612 if (Type == ELF::R_MIPS_GOT_PAGE)
613 Value = (Value + 0x8000) & ~0xffff;
614
615 if (GOTEntry)
616 assert(GOTEntry == Value &&
617 "GOT entry has two different addresses.");
618 else
619 writeBytesUnaligned(Value, LocalGOTAddr, 8);
620
621 return (SymOffset - 0x7ff0) & 0xffff;
622 }
623 case ELF::R_MIPS_GOT_OFST: {
624 int64_t page = (Value + Addend + 0x8000) & ~0xffff;
625 return (Value + Addend - page) & 0xffff;
626 }
627 case ELF::R_MIPS_GPREL32: {
628 uint64_t GOTAddr = getSectionLoadAddress(SectionToGOTMap[SectionID]);
629 return Value + Addend - (GOTAddr + 0x7ff0);
630 }
631 case ELF::R_MIPS_PC16: {
632 uint64_t FinalAddress = (Section.LoadAddress + Offset);
Petar Jovanovicb7915a12015-06-23 13:54:42 +0000633 return ((Value + Addend - FinalAddress) >> 2) & 0xffff;
Petar Jovanovic97202832015-05-28 13:48:41 +0000634 }
Petar Jovanoviccf197f02015-06-08 14:10:23 +0000635 case ELF::R_MIPS_PC32: {
636 uint64_t FinalAddress = (Section.LoadAddress + Offset);
637 return Value + Addend - FinalAddress;
638 }
Petar Jovanovic97202832015-05-28 13:48:41 +0000639 case ELF::R_MIPS_PC18_S3: {
640 uint64_t FinalAddress = (Section.LoadAddress + Offset);
641 return ((Value + Addend - ((FinalAddress | 7) ^ 7)) >> 3) & 0x3ffff;
642 }
643 case ELF::R_MIPS_PC19_S2: {
644 uint64_t FinalAddress = (Section.LoadAddress + Offset);
645 return ((Value + Addend - FinalAddress) >> 2) & 0x7ffff;
646 }
647 case ELF::R_MIPS_PC21_S2: {
648 uint64_t FinalAddress = (Section.LoadAddress + Offset);
649 return ((Value + Addend - FinalAddress) >> 2) & 0x1fffff;
650 }
651 case ELF::R_MIPS_PC26_S2: {
652 uint64_t FinalAddress = (Section.LoadAddress + Offset);
653 return ((Value + Addend - FinalAddress) >> 2) & 0x3ffffff;
654 }
655 case ELF::R_MIPS_PCHI16: {
656 uint64_t FinalAddress = (Section.LoadAddress + Offset);
657 return ((Value + Addend - FinalAddress + 0x8000) >> 16) & 0xffff;
658 }
659 case ELF::R_MIPS_PCLO16: {
660 uint64_t FinalAddress = (Section.LoadAddress + Offset);
661 return (Value + Addend - FinalAddress) & 0xffff;
662 }
663 }
664 return 0;
665}
666
667void RuntimeDyldELF::applyMIPS64Relocation(uint8_t *TargetPtr,
668 int64_t CalculatedValue,
669 uint32_t Type) {
670 uint32_t Insn = readBytesUnaligned(TargetPtr, 4);
671
672 switch (Type) {
673 default:
674 break;
675 case ELF::R_MIPS_32:
676 case ELF::R_MIPS_GPREL32:
Petar Jovanoviccf197f02015-06-08 14:10:23 +0000677 case ELF::R_MIPS_PC32:
Petar Jovanovic97202832015-05-28 13:48:41 +0000678 writeBytesUnaligned(CalculatedValue & 0xffffffff, TargetPtr, 4);
679 break;
680 case ELF::R_MIPS_64:
681 case ELF::R_MIPS_SUB:
682 writeBytesUnaligned(CalculatedValue, TargetPtr, 8);
683 break;
684 case ELF::R_MIPS_26:
685 case ELF::R_MIPS_PC26_S2:
686 Insn = (Insn & 0xfc000000) | CalculatedValue;
687 writeBytesUnaligned(Insn, TargetPtr, 4);
688 break;
689 case ELF::R_MIPS_GPREL16:
690 Insn = (Insn & 0xffff0000) | (CalculatedValue & 0xffff);
691 writeBytesUnaligned(Insn, TargetPtr, 4);
692 break;
693 case ELF::R_MIPS_HI16:
694 case ELF::R_MIPS_LO16:
695 case ELF::R_MIPS_PCHI16:
696 case ELF::R_MIPS_PCLO16:
697 case ELF::R_MIPS_PC16:
698 case ELF::R_MIPS_CALL16:
699 case ELF::R_MIPS_GOT_DISP:
700 case ELF::R_MIPS_GOT_PAGE:
701 case ELF::R_MIPS_GOT_OFST:
702 Insn = (Insn & 0xffff0000) | CalculatedValue;
703 writeBytesUnaligned(Insn, TargetPtr, 4);
704 break;
705 case ELF::R_MIPS_PC18_S3:
706 Insn = (Insn & 0xfffc0000) | CalculatedValue;
707 writeBytesUnaligned(Insn, TargetPtr, 4);
708 break;
709 case ELF::R_MIPS_PC19_S2:
710 Insn = (Insn & 0xfff80000) | CalculatedValue;
711 writeBytesUnaligned(Insn, TargetPtr, 4);
712 break;
713 case ELF::R_MIPS_PC21_S2:
714 Insn = (Insn & 0xffe00000) | CalculatedValue;
715 writeBytesUnaligned(Insn, TargetPtr, 4);
716 break;
717 }
718}
719
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +0000720// Return the .TOC. section and offset.
Rafael Espindola3dc0d052015-06-19 20:58:43 +0000721void RuntimeDyldELF::findPPC64TOCSection(const ELFObjectFileBase &Obj,
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +0000722 ObjSectionToIDMap &LocalSections,
723 RelocationValueRef &Rel) {
724 // Set a default SectionID in case we do not find a TOC section below.
725 // This may happen for references to TOC base base (sym@toc, .odp
726 // relocation) without a .toc directive. In this case just use the
727 // first section (which is usually the .odp) since the code won't
728 // reference the .toc base directly.
729 Rel.SymbolName = NULL;
730 Rel.SectionID = 0;
731
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000732 // The TOC consists of sections .got, .toc, .tocbss, .plt in that
733 // order. The TOC starts where the first of these sections starts.
Davide Italiano2e9df172015-06-02 01:52:28 +0000734 for (auto &Section: Obj.sections()) {
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +0000735 StringRef SectionName;
Davide Italiano2e9df172015-06-02 01:52:28 +0000736 check(Section.getName(SectionName));
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +0000737
738 if (SectionName == ".got"
739 || SectionName == ".toc"
740 || SectionName == ".tocbss"
741 || SectionName == ".plt") {
Davide Italiano2e9df172015-06-02 01:52:28 +0000742 Rel.SectionID = findOrEmitSection(Obj, Section, false, LocalSections);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000743 break;
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +0000744 }
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000745 }
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +0000746
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000747 // Per the ppc64-elf-linux ABI, The TOC base is TOC value plus 0x8000
748 // thus permitting a full 64 Kbytes segment.
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +0000749 Rel.Addend = 0x8000;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000750}
751
752// Returns the sections and offset associated with the ODP entry referenced
753// by Symbol.
Rafael Espindola3dc0d052015-06-19 20:58:43 +0000754void RuntimeDyldELF::findOPDEntrySection(const ELFObjectFileBase &Obj,
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000755 ObjSectionToIDMap &LocalSections,
756 RelocationValueRef &Rel) {
757 // Get the ELF symbol value (st_value) to compare with Relocation offset in
758 // .opd entries
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000759 for (section_iterator si = Obj.section_begin(), se = Obj.section_end();
Rafael Espindola5e812af2014-01-30 02:49:50 +0000760 si != se; ++si) {
Rafael Espindolaa61f1e92013-06-03 19:37:34 +0000761 section_iterator RelSecI = si->getRelocatedSection();
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000762 if (RelSecI == Obj.section_end())
Rafael Espindolaa61f1e92013-06-03 19:37:34 +0000763 continue;
764
765 StringRef RelSectionName;
766 check(RelSecI->getName(RelSectionName));
767 if (RelSectionName != ".opd")
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000768 continue;
769
Rafael Espindolab5155a52014-02-10 20:24:04 +0000770 for (relocation_iterator i = si->relocation_begin(),
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000771 e = si->relocation_end();
772 i != e;) {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000773 // The R_PPC64_ADDR64 relocation indicates the first field
774 // of a .opd entry
775 uint64_t TypeFunc;
776 check(i->getType(TypeFunc));
777 if (TypeFunc != ELF::R_PPC64_ADDR64) {
Rafael Espindola5e812af2014-01-30 02:49:50 +0000778 ++i;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000779 continue;
780 }
781
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000782 uint64_t TargetSymbolOffset;
Rafael Espindola806f0062013-06-05 01:33:53 +0000783 symbol_iterator TargetSymbol = i->getSymbol();
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000784 check(i->getOffset(TargetSymbolOffset));
Rafael Espindola3dc0d052015-06-19 20:58:43 +0000785 ErrorOr<int64_t> AddendOrErr =
786 Obj.getRelocationAddend(i->getRawDataRefImpl());
787 Check(AddendOrErr.getError());
788 int64_t Addend = *AddendOrErr;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000789
Rafael Espindola5e812af2014-01-30 02:49:50 +0000790 ++i;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000791 if (i == e)
792 break;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000793
794 // Just check if following relocation is a R_PPC64_TOC
795 uint64_t TypeTOC;
796 check(i->getType(TypeTOC));
797 if (TypeTOC != ELF::R_PPC64_TOC)
798 continue;
799
800 // Finally compares the Symbol value and the target symbol offset
801 // to check if this .opd entry refers to the symbol the relocation
802 // points to.
Andrew Kaylor4612fed2013-08-19 23:27:43 +0000803 if (Rel.Addend != (int64_t)TargetSymbolOffset)
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000804 continue;
805
Lang Hamesb5c7b1f2014-11-26 16:54:40 +0000806 section_iterator tsi(Obj.section_end());
Rafael Espindola806f0062013-06-05 01:33:53 +0000807 check(TargetSymbol->getSection(tsi));
Rafael Espindola80291272014-10-08 15:28:58 +0000808 bool IsCode = tsi->isText();
Lang Hames9b2dc932014-02-18 21:46:39 +0000809 Rel.SectionID = findOrEmitSection(Obj, (*tsi), IsCode, LocalSections);
Rafael Espindola0d15f732013-05-09 03:39:05 +0000810 Rel.Addend = (intptr_t)Addend;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000811 return;
812 }
813 }
814 llvm_unreachable("Attempting to get address of ODP entry!");
815}
816
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000817// Relocation masks following the #lo(value), #hi(value), #ha(value),
818// #higher(value), #highera(value), #highest(value), and #highesta(value)
819// macros defined in section 4.5.1. Relocation Types of the PPC-elf64abi
820// document.
821
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000822static inline uint16_t applyPPClo(uint64_t value) { return value & 0xffff; }
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000823
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000824static inline uint16_t applyPPChi(uint64_t value) {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000825 return (value >> 16) & 0xffff;
826}
827
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000828static inline uint16_t applyPPCha (uint64_t value) {
829 return ((value + 0x8000) >> 16) & 0xffff;
830}
831
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000832static inline uint16_t applyPPChigher(uint64_t value) {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000833 return (value >> 32) & 0xffff;
834}
835
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000836static inline uint16_t applyPPChighera (uint64_t value) {
837 return ((value + 0x8000) >> 32) & 0xffff;
838}
839
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000840static inline uint16_t applyPPChighest(uint64_t value) {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000841 return (value >> 48) & 0xffff;
842}
843
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000844static inline uint16_t applyPPChighesta (uint64_t value) {
845 return ((value + 0x8000) >> 48) & 0xffff;
846}
847
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000848void RuntimeDyldELF::resolvePPC64Relocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000849 uint64_t Offset, uint64_t Value,
850 uint32_t Type, int64_t Addend) {
851 uint8_t *LocalAddress = Section.Address + Offset;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000852 switch (Type) {
853 default:
854 llvm_unreachable("Relocation type not implemented yet!");
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000855 break;
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000856 case ELF::R_PPC64_ADDR16:
857 writeInt16BE(LocalAddress, applyPPClo(Value + Addend));
858 break;
859 case ELF::R_PPC64_ADDR16_DS:
860 writeInt16BE(LocalAddress, applyPPClo(Value + Addend) & ~3);
861 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000862 case ELF::R_PPC64_ADDR16_LO:
863 writeInt16BE(LocalAddress, applyPPClo(Value + Addend));
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000864 break;
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000865 case ELF::R_PPC64_ADDR16_LO_DS:
866 writeInt16BE(LocalAddress, applyPPClo(Value + Addend) & ~3);
867 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000868 case ELF::R_PPC64_ADDR16_HI:
869 writeInt16BE(LocalAddress, applyPPChi(Value + Addend));
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000870 break;
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000871 case ELF::R_PPC64_ADDR16_HA:
872 writeInt16BE(LocalAddress, applyPPCha(Value + Addend));
873 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000874 case ELF::R_PPC64_ADDR16_HIGHER:
875 writeInt16BE(LocalAddress, applyPPChigher(Value + Addend));
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000876 break;
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000877 case ELF::R_PPC64_ADDR16_HIGHERA:
878 writeInt16BE(LocalAddress, applyPPChighera(Value + Addend));
879 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000880 case ELF::R_PPC64_ADDR16_HIGHEST:
881 writeInt16BE(LocalAddress, applyPPChighest(Value + Addend));
882 break;
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000883 case ELF::R_PPC64_ADDR16_HIGHESTA:
884 writeInt16BE(LocalAddress, applyPPChighesta(Value + Addend));
885 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000886 case ELF::R_PPC64_ADDR14: {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000887 assert(((Value + Addend) & 3) == 0);
888 // Preserve the AA/LK bits in the branch instruction
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000889 uint8_t aalk = *(LocalAddress + 3);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000890 writeInt16BE(LocalAddress + 2, (aalk & 3) | ((Value + Addend) & 0xfffc));
891 } break;
Ulrich Weiganddbc8e1a2014-06-20 17:51:47 +0000892 case ELF::R_PPC64_REL16_LO: {
893 uint64_t FinalAddress = (Section.LoadAddress + Offset);
894 uint64_t Delta = Value - FinalAddress + Addend;
895 writeInt16BE(LocalAddress, applyPPClo(Delta));
896 } break;
897 case ELF::R_PPC64_REL16_HI: {
898 uint64_t FinalAddress = (Section.LoadAddress + Offset);
899 uint64_t Delta = Value - FinalAddress + Addend;
900 writeInt16BE(LocalAddress, applyPPChi(Delta));
901 } break;
902 case ELF::R_PPC64_REL16_HA: {
903 uint64_t FinalAddress = (Section.LoadAddress + Offset);
904 uint64_t Delta = Value - FinalAddress + Addend;
905 writeInt16BE(LocalAddress, applyPPCha(Delta));
906 } break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000907 case ELF::R_PPC64_ADDR32: {
Adhemerval Zanella9b0b7812013-01-04 19:08:13 +0000908 int32_t Result = static_cast<int32_t>(Value + Addend);
909 if (SignExtend32<32>(Result) != Result)
Adhemerval Zanella1ae22482013-01-09 17:08:15 +0000910 llvm_unreachable("Relocation R_PPC64_ADDR32 overflow");
Adhemerval Zanella9b0b7812013-01-04 19:08:13 +0000911 writeInt32BE(LocalAddress, Result);
912 } break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000913 case ELF::R_PPC64_REL24: {
Andrew Kaylorfb05a502012-11-02 19:45:23 +0000914 uint64_t FinalAddress = (Section.LoadAddress + Offset);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000915 int32_t delta = static_cast<int32_t>(Value - FinalAddress + Addend);
916 if (SignExtend32<24>(delta) != delta)
917 llvm_unreachable("Relocation R_PPC64_REL24 overflow");
918 // Generates a 'bl <address>' instruction
919 writeInt32BE(LocalAddress, 0x48000001 | (delta & 0x03FFFFFC));
920 } break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000921 case ELF::R_PPC64_REL32: {
Adhemerval Zanella1ae22482013-01-09 17:08:15 +0000922 uint64_t FinalAddress = (Section.LoadAddress + Offset);
923 int32_t delta = static_cast<int32_t>(Value - FinalAddress + Addend);
924 if (SignExtend32<32>(delta) != delta)
925 llvm_unreachable("Relocation R_PPC64_REL32 overflow");
926 writeInt32BE(LocalAddress, delta);
927 } break;
Adhemerval Zanellae8bd03d2013-05-06 17:21:23 +0000928 case ELF::R_PPC64_REL64: {
929 uint64_t FinalAddress = (Section.LoadAddress + Offset);
930 uint64_t Delta = Value - FinalAddress + Addend;
931 writeInt64BE(LocalAddress, Delta);
932 } break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000933 case ELF::R_PPC64_ADDR64:
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000934 writeInt64BE(LocalAddress, Value + Addend);
935 break;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +0000936 }
937}
938
Richard Sandifordca044082013-05-03 14:15:35 +0000939void RuntimeDyldELF::resolveSystemZRelocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +0000940 uint64_t Offset, uint64_t Value,
941 uint32_t Type, int64_t Addend) {
Richard Sandifordca044082013-05-03 14:15:35 +0000942 uint8_t *LocalAddress = Section.Address + Offset;
943 switch (Type) {
944 default:
945 llvm_unreachable("Relocation type not implemented yet!");
946 break;
947 case ELF::R_390_PC16DBL:
948 case ELF::R_390_PLT16DBL: {
949 int64_t Delta = (Value + Addend) - (Section.LoadAddress + Offset);
950 assert(int16_t(Delta / 2) * 2 == Delta && "R_390_PC16DBL overflow");
951 writeInt16BE(LocalAddress, Delta / 2);
952 break;
953 }
954 case ELF::R_390_PC32DBL:
955 case ELF::R_390_PLT32DBL: {
956 int64_t Delta = (Value + Addend) - (Section.LoadAddress + Offset);
957 assert(int32_t(Delta / 2) * 2 == Delta && "R_390_PC32DBL overflow");
958 writeInt32BE(LocalAddress, Delta / 2);
959 break;
960 }
961 case ELF::R_390_PC32: {
962 int64_t Delta = (Value + Addend) - (Section.LoadAddress + Offset);
963 assert(int32_t(Delta) == Delta && "R_390_PC32 overflow");
964 writeInt32BE(LocalAddress, Delta);
965 break;
966 }
967 case ELF::R_390_64:
968 writeInt64BE(LocalAddress, Value + Addend);
969 break;
970 }
971}
972
Andrew Kaylor5f3a9982013-08-19 19:38:06 +0000973// The target location for the relocation is described by RE.SectionID and
974// RE.Offset. RE.SectionID can be used to find the SectionEntry. Each
975// SectionEntry has three members describing its location.
976// SectionEntry::Address is the address at which the section has been loaded
977// into memory in the current (host) process. SectionEntry::LoadAddress is the
978// address that the section will have in the target process.
979// SectionEntry::ObjAddress is the address of the bits for this section in the
980// original emitted object image (also in the current address space).
981//
982// Relocations will be applied as if the section were loaded at
983// SectionEntry::LoadAddress, but they will be applied at an address based
984// on SectionEntry::Address. SectionEntry::ObjAddress will be used to refer to
985// Target memory contents if they are required for value calculations.
986//
987// The Value parameter here is the load address of the symbol for the
988// relocation to be applied. For relocations which refer to symbols in the
989// current object Value will be the LoadAddress of the section in which
990// the symbol resides (RE.Addend provides additional information about the
991// symbol location). For external symbols, Value will be the address of the
992// symbol in the target address space.
Rafael Espindolaf1f1c622013-04-29 17:24:34 +0000993void RuntimeDyldELF::resolveRelocation(const RelocationEntry &RE,
Andrew Kaylor5f3a9982013-08-19 19:38:06 +0000994 uint64_t Value) {
Rafael Espindolaf1f1c622013-04-29 17:24:34 +0000995 const SectionEntry &Section = Sections[RE.SectionID];
Andrew Kaylor4612fed2013-08-19 23:27:43 +0000996 return resolveRelocation(Section, RE.Offset, Value, RE.RelType, RE.Addend,
Petar Jovanovic97202832015-05-28 13:48:41 +0000997 RE.SymOffset, RE.SectionID);
Rafael Espindolaf1f1c622013-04-29 17:24:34 +0000998}
999
Andrew Kaylorfb05a502012-11-02 19:45:23 +00001000void RuntimeDyldELF::resolveRelocation(const SectionEntry &Section,
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001001 uint64_t Offset, uint64_t Value,
1002 uint32_t Type, int64_t Addend,
Petar Jovanovic97202832015-05-28 13:48:41 +00001003 uint64_t SymOffset, SID SectionID) {
Eli Bendersky4c647582012-01-16 08:56:09 +00001004 switch (Arch) {
1005 case Triple::x86_64:
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001006 resolveX86_64Relocation(Section, Offset, Value, Type, Addend, SymOffset);
Eli Bendersky4c647582012-01-16 08:56:09 +00001007 break;
1008 case Triple::x86:
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001009 resolveX86Relocation(Section, Offset, (uint32_t)(Value & 0xffffffffL), Type,
Danil Malyshev70d22cc2012-03-30 16:45:19 +00001010 (uint32_t)(Addend & 0xffffffffL));
Eli Bendersky4c647582012-01-16 08:56:09 +00001011 break;
Tim Northoverfa1b2f82013-05-04 20:13:59 +00001012 case Triple::aarch64:
Christian Pirker99974c72014-03-26 14:57:32 +00001013 case Triple::aarch64_be:
Tim Northoverfa1b2f82013-05-04 20:13:59 +00001014 resolveAArch64Relocation(Section, Offset, Value, Type, Addend);
1015 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001016 case Triple::arm: // Fall through.
Christian Pirker2a111602014-03-28 14:35:30 +00001017 case Triple::armeb:
Danil Malyshev70d22cc2012-03-30 16:45:19 +00001018 case Triple::thumb:
Christian Pirker2a111602014-03-28 14:35:30 +00001019 case Triple::thumbeb:
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001020 resolveARMRelocation(Section, Offset, (uint32_t)(Value & 0xffffffffL), Type,
Danil Malyshev70d22cc2012-03-30 16:45:19 +00001021 (uint32_t)(Addend & 0xffffffffL));
Eli Bendersky4c647582012-01-16 08:56:09 +00001022 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001023 case Triple::mips: // Fall through.
Akira Hatanaka111174b2012-08-17 21:28:04 +00001024 case Triple::mipsel:
Petar Jovanovic97202832015-05-28 13:48:41 +00001025 case Triple::mips64:
1026 case Triple::mips64el:
1027 if (IsMipsO32ABI)
1028 resolveMIPSRelocation(Section, Offset, (uint32_t)(Value & 0xffffffffL),
1029 Type, (uint32_t)(Addend & 0xffffffffL));
1030 else if (IsMipsN64ABI)
1031 resolveMIPS64Relocation(Section, Offset, Value, Type, Addend, SymOffset,
1032 SectionID);
1033 else
1034 llvm_unreachable("Mips ABI not handled");
Akira Hatanaka111174b2012-08-17 21:28:04 +00001035 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001036 case Triple::ppc64: // Fall through.
Bill Schmidt0a9170d2013-07-26 01:35:43 +00001037 case Triple::ppc64le:
Andrew Kaylorfb05a502012-11-02 19:45:23 +00001038 resolvePPC64Relocation(Section, Offset, Value, Type, Addend);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001039 break;
Richard Sandifordca044082013-05-03 14:15:35 +00001040 case Triple::systemz:
1041 resolveSystemZRelocation(Section, Offset, Value, Type, Addend);
1042 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001043 default:
1044 llvm_unreachable("Unsupported CPU type!");
Eli Bendersky4c647582012-01-16 08:56:09 +00001045 }
1046}
1047
Keno Fischere6892c82015-05-01 20:21:45 +00001048void *RuntimeDyldELF::computePlaceholderAddress(unsigned SectionID, uint64_t Offset) const {
1049 return (void*)(Sections[SectionID].ObjAddress + Offset);
1050}
1051
1052void RuntimeDyldELF::processSimpleRelocation(unsigned SectionID, uint64_t Offset, unsigned RelType, RelocationValueRef Value) {
1053 RelocationEntry RE(SectionID, Offset, RelType, Value.Addend, Value.Offset);
1054 if (Value.SymbolName)
1055 addRelocationForSymbol(RE, Value.SymbolName);
1056 else
1057 addRelocationForSection(RE, Value.SectionID);
1058}
1059
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001060relocation_iterator RuntimeDyldELF::processRelocationRef(
Rafael Espindola3dc0d052015-06-19 20:58:43 +00001061 unsigned SectionID, relocation_iterator RelI, const ObjectFile &O,
1062 ObjSectionToIDMap &ObjSectionToID, StubMap &Stubs) {
1063 const auto &Obj = cast<ELFObjectFileBase>(O);
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001064 uint64_t RelType;
Juergen Ributzka046709f2014-03-21 07:26:41 +00001065 Check(RelI->getType(RelType));
Rafael Espindola3dc0d052015-06-19 20:58:43 +00001066 int64_t Addend = 0;
1067 if (Obj.hasRelocationAddend(RelI->getRawDataRefImpl()))
1068 Addend = *Obj.getRelocationAddend(RelI->getRawDataRefImpl());
Rafael Espindolaeef7ffe2015-06-26 11:39:57 +00001069 elf_symbol_iterator Symbol = RelI->getSymbol();
Eli Bendersky667b8792012-05-01 10:41:12 +00001070
1071 // Obtain the symbol name which is referenced in the relocation
1072 StringRef TargetName;
Lang Hamesb5c7b1f2014-11-26 16:54:40 +00001073 if (Symbol != Obj.symbol_end())
Rafael Espindola75954472013-06-05 02:55:01 +00001074 Symbol->getName(TargetName);
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001075 DEBUG(dbgs() << "\t\tRelType: " << RelType << " Addend: " << Addend
1076 << " TargetName: " << TargetName << "\n");
Eli Bendersky667b8792012-05-01 10:41:12 +00001077 RelocationValueRef Value;
1078 // First search for the symbol in the local symbol table
Rafael Espindola75954472013-06-05 02:55:01 +00001079 SymbolRef::Type SymType = SymbolRef::ST_Unknown;
Lang Hamesa5cd9502014-11-27 05:40:13 +00001080
1081 // Search for the symbol in the global symbol table
Lang Hames6bfd3982015-01-16 23:13:56 +00001082 RTDyldSymbolTable::const_iterator gsi = GlobalSymbolTable.end();
Lang Hamesb5c7b1f2014-11-26 16:54:40 +00001083 if (Symbol != Obj.symbol_end()) {
Lang Hamesa5cd9502014-11-27 05:40:13 +00001084 gsi = GlobalSymbolTable.find(TargetName.data());
Rafael Espindola75954472013-06-05 02:55:01 +00001085 Symbol->getType(SymType);
1086 }
Lang Hamesa5cd9502014-11-27 05:40:13 +00001087 if (gsi != GlobalSymbolTable.end()) {
Lang Hames6bfd3982015-01-16 23:13:56 +00001088 const auto &SymInfo = gsi->second;
1089 Value.SectionID = SymInfo.getSectionID();
1090 Value.Offset = SymInfo.getOffset();
1091 Value.Addend = SymInfo.getOffset() + Addend;
Danil Malyshev70d22cc2012-03-30 16:45:19 +00001092 } else {
Lang Hamesa5cd9502014-11-27 05:40:13 +00001093 switch (SymType) {
1094 case SymbolRef::ST_Debug: {
1095 // TODO: Now ELF SymbolRef::ST_Debug = STT_SECTION, it's not obviously
1096 // and can be changed by another developers. Maybe best way is add
1097 // a new symbol type ST_Section to SymbolRef and use it.
1098 section_iterator si(Obj.section_end());
1099 Symbol->getSection(si);
1100 if (si == Obj.section_end())
1101 llvm_unreachable("Symbol section not found, bad object file format!");
1102 DEBUG(dbgs() << "\t\tThis is section symbol\n");
1103 bool isCode = si->isText();
1104 Value.SectionID = findOrEmitSection(Obj, (*si), isCode, ObjSectionToID);
1105 Value.Addend = Addend;
1106 break;
1107 }
1108 case SymbolRef::ST_Data:
1109 case SymbolRef::ST_Unknown: {
1110 Value.SymbolName = TargetName.data();
1111 Value.Addend = Addend;
Richard Mittonad6d3492013-08-16 18:54:26 +00001112
Lang Hamesa5cd9502014-11-27 05:40:13 +00001113 // Absolute relocations will have a zero symbol ID (STN_UNDEF), which
1114 // will manifest here as a NULL symbol name.
1115 // We can set this as a valid (but empty) symbol name, and rely
1116 // on addRelocationForSymbol to handle this.
1117 if (!Value.SymbolName)
1118 Value.SymbolName = "";
1119 break;
1120 }
1121 default:
1122 llvm_unreachable("Unresolved symbol type!");
1123 break;
Danil Malyshev70d22cc2012-03-30 16:45:19 +00001124 }
Eli Bendersky4c647582012-01-16 08:56:09 +00001125 }
Lang Hamesa5cd9502014-11-27 05:40:13 +00001126
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001127 uint64_t Offset;
Juergen Ributzka046709f2014-03-21 07:26:41 +00001128 Check(RelI->getOffset(Offset));
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001129
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001130 DEBUG(dbgs() << "\t\tSectionID: " << SectionID << " Offset: " << Offset
Danil Malyshev70d22cc2012-03-30 16:45:19 +00001131 << "\n");
Tim Northovere19bed72014-07-23 12:32:47 +00001132 if ((Arch == Triple::aarch64 || Arch == Triple::aarch64_be) &&
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001133 (RelType == ELF::R_AARCH64_CALL26 || RelType == ELF::R_AARCH64_JUMP26)) {
Tim Northover37cde972013-05-04 20:14:09 +00001134 // This is an AArch64 branch relocation, need to use a stub function.
1135 DEBUG(dbgs() << "\t\tThis is an AArch64 branch relocation.");
1136 SectionEntry &Section = Sections[SectionID];
1137
1138 // Look for an existing stub.
1139 StubMap::const_iterator i = Stubs.find(Value);
1140 if (i != Stubs.end()) {
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001141 resolveRelocation(Section, Offset, (uint64_t)Section.Address + i->second,
1142 RelType, 0);
Tim Northover37cde972013-05-04 20:14:09 +00001143 DEBUG(dbgs() << " Stub function found\n");
1144 } else {
1145 // Create a new stub function.
1146 DEBUG(dbgs() << " Create a new stub function\n");
1147 Stubs[Value] = Section.StubOffset;
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001148 uint8_t *StubTargetAddr =
1149 createStubFunction(Section.Address + Section.StubOffset);
Tim Northover37cde972013-05-04 20:14:09 +00001150
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001151 RelocationEntry REmovz_g3(SectionID, StubTargetAddr - Section.Address,
Lang Hames9a891052014-09-07 04:13:13 +00001152 ELF::R_AARCH64_MOVW_UABS_G3, Value.Addend);
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001153 RelocationEntry REmovk_g2(SectionID, StubTargetAddr - Section.Address + 4,
Lang Hames9a891052014-09-07 04:13:13 +00001154 ELF::R_AARCH64_MOVW_UABS_G2_NC, Value.Addend);
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001155 RelocationEntry REmovk_g1(SectionID, StubTargetAddr - Section.Address + 8,
Lang Hames9a891052014-09-07 04:13:13 +00001156 ELF::R_AARCH64_MOVW_UABS_G1_NC, Value.Addend);
Tim Northover37cde972013-05-04 20:14:09 +00001157 RelocationEntry REmovk_g0(SectionID,
1158 StubTargetAddr - Section.Address + 12,
1159 ELF::R_AARCH64_MOVW_UABS_G0_NC, Value.Addend);
1160
1161 if (Value.SymbolName) {
1162 addRelocationForSymbol(REmovz_g3, Value.SymbolName);
1163 addRelocationForSymbol(REmovk_g2, Value.SymbolName);
1164 addRelocationForSymbol(REmovk_g1, Value.SymbolName);
1165 addRelocationForSymbol(REmovk_g0, Value.SymbolName);
1166 } else {
1167 addRelocationForSection(REmovz_g3, Value.SectionID);
1168 addRelocationForSection(REmovk_g2, Value.SectionID);
1169 addRelocationForSection(REmovk_g1, Value.SectionID);
1170 addRelocationForSection(REmovk_g0, Value.SectionID);
1171 }
1172 resolveRelocation(Section, Offset,
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001173 (uint64_t)Section.Address + Section.StubOffset, RelType,
1174 0);
Tim Northover37cde972013-05-04 20:14:09 +00001175 Section.StubOffset += getMaxStubSize();
1176 }
Keno Fischere6892c82015-05-01 20:21:45 +00001177 } else if (Arch == Triple::arm) {
1178 if (RelType == ELF::R_ARM_PC24 || RelType == ELF::R_ARM_CALL ||
1179 RelType == ELF::R_ARM_JUMP24) {
1180 // This is an ARM branch relocation, need to use a stub function.
1181 DEBUG(dbgs() << "\t\tThis is an ARM branch relocation.");
1182 SectionEntry &Section = Sections[SectionID];
Eli Bendersky4c647582012-01-16 08:56:09 +00001183
Keno Fischere6892c82015-05-01 20:21:45 +00001184 // Look for an existing stub.
1185 StubMap::const_iterator i = Stubs.find(Value);
1186 if (i != Stubs.end()) {
1187 resolveRelocation(Section, Offset, (uint64_t)Section.Address + i->second,
1188 RelType, 0);
1189 DEBUG(dbgs() << " Stub function found\n");
Pavel Labath3b8f3ad2015-04-16 08:58:15 +00001190 } else {
Keno Fischere6892c82015-05-01 20:21:45 +00001191 // Create a new stub function.
1192 DEBUG(dbgs() << " Create a new stub function\n");
1193 Stubs[Value] = Section.StubOffset;
1194 uint8_t *StubTargetAddr =
1195 createStubFunction(Section.Address + Section.StubOffset);
1196 RelocationEntry RE(SectionID, StubTargetAddr - Section.Address,
1197 ELF::R_ARM_ABS32, Value.Addend);
1198 if (Value.SymbolName)
1199 addRelocationForSymbol(RE, Value.SymbolName);
1200 else
1201 addRelocationForSection(RE, Value.SectionID);
Pavel Labath3b8f3ad2015-04-16 08:58:15 +00001202
Keno Fischere6892c82015-05-01 20:21:45 +00001203 resolveRelocation(Section, Offset,
1204 (uint64_t)Section.Address + Section.StubOffset, RelType,
1205 0);
1206 Section.StubOffset += getMaxStubSize();
1207 }
1208 } else {
1209 uint32_t *Placeholder =
1210 reinterpret_cast<uint32_t*>(computePlaceholderAddress(SectionID, Offset));
1211 if (RelType == ELF::R_ARM_PREL31 || RelType == ELF::R_ARM_TARGET1 ||
1212 RelType == ELF::R_ARM_ABS32) {
1213 Value.Addend += *Placeholder;
1214 } else if (RelType == ELF::R_ARM_MOVW_ABS_NC || RelType == ELF::R_ARM_MOVT_ABS) {
1215 // See ELF for ARM documentation
1216 Value.Addend += (int16_t)((*Placeholder & 0xFFF) | (((*Placeholder >> 16) & 0xF) << 12));
1217 }
1218 processSimpleRelocation(SectionID, Offset, RelType, Value);
1219 }
Petar Jovanovic97202832015-05-28 13:48:41 +00001220 } else if (IsMipsO32ABI) {
Daniel Sanders8b2354d2015-06-03 10:27:28 +00001221 uint8_t *Placeholder = reinterpret_cast<uint8_t *>(
1222 computePlaceholderAddress(SectionID, Offset));
1223 uint32_t Opcode = readBytesUnaligned(Placeholder, 4);
Keno Fischere6892c82015-05-01 20:21:45 +00001224 if (RelType == ELF::R_MIPS_26) {
1225 // This is an Mips branch relocation, need to use a stub function.
1226 DEBUG(dbgs() << "\t\tThis is a Mips branch relocation.");
1227 SectionEntry &Section = Sections[SectionID];
1228
1229 // Extract the addend from the instruction.
1230 // We shift up by two since the Value will be down shifted again
1231 // when applying the relocation.
Daniel Sanders8b2354d2015-06-03 10:27:28 +00001232 uint32_t Addend = (Opcode & 0x03ffffff) << 2;
Keno Fischere6892c82015-05-01 20:21:45 +00001233
1234 Value.Addend += Addend;
1235
1236 // Look up for existing stub.
1237 StubMap::const_iterator i = Stubs.find(Value);
1238 if (i != Stubs.end()) {
1239 RelocationEntry RE(SectionID, Offset, RelType, i->second);
1240 addRelocationForSection(RE, SectionID);
1241 DEBUG(dbgs() << " Stub function found\n");
1242 } else {
1243 // Create a new stub function.
1244 DEBUG(dbgs() << " Create a new stub function\n");
1245 Stubs[Value] = Section.StubOffset;
1246 uint8_t *StubTargetAddr =
1247 createStubFunction(Section.Address + Section.StubOffset);
1248
1249 // Creating Hi and Lo relocations for the filled stub instructions.
1250 RelocationEntry REHi(SectionID, StubTargetAddr - Section.Address,
1251 ELF::R_MIPS_HI16, Value.Addend);
1252 RelocationEntry RELo(SectionID, StubTargetAddr - Section.Address + 4,
1253 ELF::R_MIPS_LO16, Value.Addend);
1254
1255 if (Value.SymbolName) {
1256 addRelocationForSymbol(REHi, Value.SymbolName);
1257 addRelocationForSymbol(RELo, Value.SymbolName);
1258 }
1259 else {
1260 addRelocationForSection(REHi, Value.SectionID);
1261 addRelocationForSection(RELo, Value.SectionID);
1262 }
1263
1264 RelocationEntry RE(SectionID, Offset, RelType, Section.StubOffset);
1265 addRelocationForSection(RE, SectionID);
1266 Section.StubOffset += getMaxStubSize();
1267 }
1268 } else {
1269 if (RelType == ELF::R_MIPS_HI16)
Daniel Sanders8b2354d2015-06-03 10:27:28 +00001270 Value.Addend += (Opcode & 0x0000ffff) << 16;
Keno Fischere6892c82015-05-01 20:21:45 +00001271 else if (RelType == ELF::R_MIPS_LO16)
Daniel Sanders8b2354d2015-06-03 10:27:28 +00001272 Value.Addend += (Opcode & 0x0000ffff);
Keno Fischere6892c82015-05-01 20:21:45 +00001273 else if (RelType == ELF::R_MIPS_32)
Daniel Sanders8b2354d2015-06-03 10:27:28 +00001274 Value.Addend += Opcode;
Keno Fischere6892c82015-05-01 20:21:45 +00001275 processSimpleRelocation(SectionID, Offset, RelType, Value);
Akira Hatanaka111174b2012-08-17 21:28:04 +00001276 }
Petar Jovanovic97202832015-05-28 13:48:41 +00001277 } else if (IsMipsN64ABI) {
1278 uint32_t r_type = RelType & 0xff;
1279 RelocationEntry RE(SectionID, Offset, RelType, Value.Addend);
1280 if (r_type == ELF::R_MIPS_CALL16 || r_type == ELF::R_MIPS_GOT_PAGE
1281 || r_type == ELF::R_MIPS_GOT_DISP) {
1282 StringMap<uint64_t>::iterator i = GOTSymbolOffsets.find(TargetName);
1283 if (i != GOTSymbolOffsets.end())
1284 RE.SymOffset = i->second;
1285 else {
1286 RE.SymOffset = allocateGOTEntries(SectionID, 1);
1287 GOTSymbolOffsets[TargetName] = RE.SymOffset;
1288 }
1289 }
1290 if (Value.SymbolName)
1291 addRelocationForSymbol(RE, Value.SymbolName);
1292 else
1293 addRelocationForSection(RE, Value.SectionID);
Bill Schmidt0a9170d2013-07-26 01:35:43 +00001294 } else if (Arch == Triple::ppc64 || Arch == Triple::ppc64le) {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001295 if (RelType == ELF::R_PPC64_REL24) {
Ulrich Weigand752b5c92014-07-20 23:53:14 +00001296 // Determine ABI variant in use for this object.
1297 unsigned AbiVariant;
Lang Hamesb5c7b1f2014-11-26 16:54:40 +00001298 Obj.getPlatformFlags(AbiVariant);
Ulrich Weigand752b5c92014-07-20 23:53:14 +00001299 AbiVariant &= ELF::EF_PPC64_ABI;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001300 // A PPC branch relocation will need a stub function if the target is
1301 // an external symbol (Symbol::ST_Unknown) or if the target address
1302 // is not within the signed 24-bits branch address.
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001303 SectionEntry &Section = Sections[SectionID];
1304 uint8_t *Target = Section.Address + Offset;
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001305 bool RangeOverflow = false;
1306 if (SymType != SymbolRef::ST_Unknown) {
Ulrich Weigand752b5c92014-07-20 23:53:14 +00001307 if (AbiVariant != 2) {
1308 // In the ELFv1 ABI, a function call may point to the .opd entry,
1309 // so the final symbol value is calculated based on the relocation
1310 // values in the .opd section.
1311 findOPDEntrySection(Obj, ObjSectionToID, Value);
1312 } else {
1313 // In the ELFv2 ABI, a function symbol may provide a local entry
1314 // point, which must be used for direct calls.
Rafael Espindolaeef7ffe2015-06-26 11:39:57 +00001315 uint8_t SymOther = Symbol->getOther();
Ulrich Weigand752b5c92014-07-20 23:53:14 +00001316 Value.Addend += ELF::decodePPC64LocalEntryOffset(SymOther);
1317 }
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001318 uint8_t *RelocTarget = Sections[Value.SectionID].Address + Value.Addend;
1319 int32_t delta = static_cast<int32_t>(Target - RelocTarget);
1320 // If it is within 24-bits branch range, just set the branch target
1321 if (SignExtend32<24>(delta) == delta) {
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001322 RelocationEntry RE(SectionID, Offset, RelType, Value.Addend);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001323 if (Value.SymbolName)
1324 addRelocationForSymbol(RE, Value.SymbolName);
1325 else
1326 addRelocationForSection(RE, Value.SectionID);
1327 } else {
1328 RangeOverflow = true;
1329 }
1330 }
David Blaikiedc3f01e2015-03-09 01:57:13 +00001331 if (SymType == SymbolRef::ST_Unknown || RangeOverflow) {
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001332 // It is an external symbol (SymbolRef::ST_Unknown) or within a range
1333 // larger than 24-bits.
1334 StubMap::const_iterator i = Stubs.find(Value);
1335 if (i != Stubs.end()) {
1336 // Symbol function stub already created, just relocate to it
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001337 resolveRelocation(Section, Offset,
Andrew Kaylorfb05a502012-11-02 19:45:23 +00001338 (uint64_t)Section.Address + i->second, RelType, 0);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001339 DEBUG(dbgs() << " Stub function found\n");
1340 } else {
1341 // Create a new stub function.
1342 DEBUG(dbgs() << " Create a new stub function\n");
1343 Stubs[Value] = Section.StubOffset;
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001344 uint8_t *StubTargetAddr =
Ulrich Weigand752b5c92014-07-20 23:53:14 +00001345 createStubFunction(Section.Address + Section.StubOffset,
1346 AbiVariant);
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001347 RelocationEntry RE(SectionID, StubTargetAddr - Section.Address,
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001348 ELF::R_PPC64_ADDR64, Value.Addend);
1349
1350 // Generates the 64-bits address loads as exemplified in section
Ulrich Weigand32626012014-06-20 18:17:56 +00001351 // 4.5.1 in PPC64 ELF ABI. Note that the relocations need to
1352 // apply to the low part of the instructions, so we have to update
1353 // the offset according to the target endianness.
1354 uint64_t StubRelocOffset = StubTargetAddr - Section.Address;
1355 if (!IsTargetLittleEndian)
1356 StubRelocOffset += 2;
1357
1358 RelocationEntry REhst(SectionID, StubRelocOffset + 0,
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001359 ELF::R_PPC64_ADDR16_HIGHEST, Value.Addend);
Ulrich Weigand32626012014-06-20 18:17:56 +00001360 RelocationEntry REhr(SectionID, StubRelocOffset + 4,
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001361 ELF::R_PPC64_ADDR16_HIGHER, Value.Addend);
Ulrich Weigand32626012014-06-20 18:17:56 +00001362 RelocationEntry REh(SectionID, StubRelocOffset + 12,
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001363 ELF::R_PPC64_ADDR16_HI, Value.Addend);
Ulrich Weigand32626012014-06-20 18:17:56 +00001364 RelocationEntry REl(SectionID, StubRelocOffset + 16,
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001365 ELF::R_PPC64_ADDR16_LO, Value.Addend);
1366
1367 if (Value.SymbolName) {
1368 addRelocationForSymbol(REhst, Value.SymbolName);
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001369 addRelocationForSymbol(REhr, Value.SymbolName);
1370 addRelocationForSymbol(REh, Value.SymbolName);
1371 addRelocationForSymbol(REl, Value.SymbolName);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001372 } else {
1373 addRelocationForSection(REhst, Value.SectionID);
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001374 addRelocationForSection(REhr, Value.SectionID);
1375 addRelocationForSection(REh, Value.SectionID);
1376 addRelocationForSection(REl, Value.SectionID);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001377 }
1378
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001379 resolveRelocation(Section, Offset,
Andrew Kaylorfb05a502012-11-02 19:45:23 +00001380 (uint64_t)Section.Address + Section.StubOffset,
1381 RelType, 0);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001382 Section.StubOffset += getMaxStubSize();
1383 }
Ulrich Weigand752b5c92014-07-20 23:53:14 +00001384 if (SymType == SymbolRef::ST_Unknown) {
Ulrich Weigandfa84ac92014-03-11 15:26:27 +00001385 // Restore the TOC for external calls
Ulrich Weigand752b5c92014-07-20 23:53:14 +00001386 if (AbiVariant == 2)
1387 writeInt32BE(Target + 4, 0xE8410018); // ld r2,28(r1)
1388 else
1389 writeInt32BE(Target + 4, 0xE8410028); // ld r2,40(r1)
1390 }
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001391 }
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +00001392 } else if (RelType == ELF::R_PPC64_TOC16 ||
1393 RelType == ELF::R_PPC64_TOC16_DS ||
1394 RelType == ELF::R_PPC64_TOC16_LO ||
1395 RelType == ELF::R_PPC64_TOC16_LO_DS ||
1396 RelType == ELF::R_PPC64_TOC16_HI ||
1397 RelType == ELF::R_PPC64_TOC16_HA) {
1398 // These relocations are supposed to subtract the TOC address from
1399 // the final value. This does not fit cleanly into the RuntimeDyld
1400 // scheme, since there may be *two* sections involved in determining
1401 // the relocation value (the section of the symbol refered to by the
1402 // relocation, and the TOC section associated with the current module).
1403 //
1404 // Fortunately, these relocations are currently only ever generated
1405 // refering to symbols that themselves reside in the TOC, which means
1406 // that the two sections are actually the same. Thus they cancel out
1407 // and we can immediately resolve the relocation right now.
1408 switch (RelType) {
1409 case ELF::R_PPC64_TOC16: RelType = ELF::R_PPC64_ADDR16; break;
1410 case ELF::R_PPC64_TOC16_DS: RelType = ELF::R_PPC64_ADDR16_DS; break;
1411 case ELF::R_PPC64_TOC16_LO: RelType = ELF::R_PPC64_ADDR16_LO; break;
1412 case ELF::R_PPC64_TOC16_LO_DS: RelType = ELF::R_PPC64_ADDR16_LO_DS; break;
1413 case ELF::R_PPC64_TOC16_HI: RelType = ELF::R_PPC64_ADDR16_HI; break;
1414 case ELF::R_PPC64_TOC16_HA: RelType = ELF::R_PPC64_ADDR16_HA; break;
1415 default: llvm_unreachable("Wrong relocation type.");
1416 }
1417
1418 RelocationValueRef TOCValue;
1419 findPPC64TOCSection(Obj, ObjSectionToID, TOCValue);
1420 if (Value.SymbolName || Value.SectionID != TOCValue.SectionID)
1421 llvm_unreachable("Unsupported TOC relocation.");
1422 Value.Addend -= TOCValue.Addend;
1423 resolveRelocation(Sections[SectionID], Offset, Value.Addend, RelType, 0);
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001424 } else {
Ulrich Weigand8f1f87c2014-06-27 10:32:14 +00001425 // There are two ways to refer to the TOC address directly: either
1426 // via a ELF::R_PPC64_TOC relocation (where both symbol and addend are
1427 // ignored), or via any relocation that refers to the magic ".TOC."
1428 // symbols (in which case the addend is respected).
1429 if (RelType == ELF::R_PPC64_TOC) {
1430 RelType = ELF::R_PPC64_ADDR64;
1431 findPPC64TOCSection(Obj, ObjSectionToID, Value);
1432 } else if (TargetName == ".TOC.") {
1433 findPPC64TOCSection(Obj, ObjSectionToID, Value);
1434 Value.Addend += Addend;
1435 }
1436
Rafael Espindola4d4a48d2013-04-29 14:44:23 +00001437 RelocationEntry RE(SectionID, Offset, RelType, Value.Addend);
Richard Mittonad6d3492013-08-16 18:54:26 +00001438
1439 if (Value.SymbolName)
Adhemerval Zanella5fc11b32012-10-25 13:13:48 +00001440 addRelocationForSymbol(RE, Value.SymbolName);
1441 else
1442 addRelocationForSection(RE, Value.SectionID);
1443 }
Richard Sandifordca044082013-05-03 14:15:35 +00001444 } else if (Arch == Triple::systemz &&
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001445 (RelType == ELF::R_390_PLT32DBL || RelType == ELF::R_390_GOTENT)) {
Richard Sandifordca044082013-05-03 14:15:35 +00001446 // Create function stubs for both PLT and GOT references, regardless of
1447 // whether the GOT reference is to data or code. The stub contains the
1448 // full address of the symbol, as needed by GOT references, and the
1449 // executable part only adds an overhead of 8 bytes.
1450 //
1451 // We could try to conserve space by allocating the code and data
1452 // parts of the stub separately. However, as things stand, we allocate
1453 // a stub for every relocation, so using a GOT in JIT code should be
1454 // no less space efficient than using an explicit constant pool.
1455 DEBUG(dbgs() << "\t\tThis is a SystemZ indirect relocation.");
1456 SectionEntry &Section = Sections[SectionID];
1457
1458 // Look for an existing stub.
1459 StubMap::const_iterator i = Stubs.find(Value);
1460 uintptr_t StubAddress;
1461 if (i != Stubs.end()) {
1462 StubAddress = uintptr_t(Section.Address) + i->second;
1463 DEBUG(dbgs() << " Stub function found\n");
1464 } else {
1465 // Create a new stub function.
1466 DEBUG(dbgs() << " Create a new stub function\n");
1467
1468 uintptr_t BaseAddress = uintptr_t(Section.Address);
1469 uintptr_t StubAlignment = getStubAlignment();
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001470 StubAddress = (BaseAddress + Section.StubOffset + StubAlignment - 1) &
1471 -StubAlignment;
Richard Sandifordca044082013-05-03 14:15:35 +00001472 unsigned StubOffset = StubAddress - BaseAddress;
1473
1474 Stubs[Value] = StubOffset;
1475 createStubFunction((uint8_t *)StubAddress);
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001476 RelocationEntry RE(SectionID, StubOffset + 8, ELF::R_390_64,
Lang Hames40e200e2014-08-25 23:33:48 +00001477 Value.Offset);
Richard Sandifordca044082013-05-03 14:15:35 +00001478 if (Value.SymbolName)
1479 addRelocationForSymbol(RE, Value.SymbolName);
1480 else
1481 addRelocationForSection(RE, Value.SectionID);
1482 Section.StubOffset = StubOffset + getMaxStubSize();
1483 }
1484
1485 if (RelType == ELF::R_390_GOTENT)
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001486 resolveRelocation(Section, Offset, StubAddress + 8, ELF::R_390_PC32DBL,
1487 Addend);
Richard Sandifordca044082013-05-03 14:15:35 +00001488 else
1489 resolveRelocation(Section, Offset, StubAddress, RelType, Addend);
Keno Fischere6892c82015-05-01 20:21:45 +00001490 } else if (Arch == Triple::x86_64) {
1491 if (RelType == ELF::R_X86_64_PLT32) {
1492 // The way the PLT relocations normally work is that the linker allocates
1493 // the
1494 // PLT and this relocation makes a PC-relative call into the PLT. The PLT
1495 // entry will then jump to an address provided by the GOT. On first call,
1496 // the
1497 // GOT address will point back into PLT code that resolves the symbol. After
1498 // the first call, the GOT entry points to the actual function.
1499 //
1500 // For local functions we're ignoring all of that here and just replacing
1501 // the PLT32 relocation type with PC32, which will translate the relocation
1502 // into a PC-relative call directly to the function. For external symbols we
1503 // can't be sure the function will be within 2^32 bytes of the call site, so
1504 // we need to create a stub, which calls into the GOT. This case is
1505 // equivalent to the usual PLT implementation except that we use the stub
1506 // mechanism in RuntimeDyld (which puts stubs at the end of the section)
1507 // rather than allocating a PLT section.
1508 if (Value.SymbolName) {
1509 // This is a call to an external function.
1510 // Look for an existing stub.
1511 SectionEntry &Section = Sections[SectionID];
1512 StubMap::const_iterator i = Stubs.find(Value);
1513 uintptr_t StubAddress;
1514 if (i != Stubs.end()) {
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001515 StubAddress = uintptr_t(Section.Address) + i->second;
1516 DEBUG(dbgs() << " Stub function found\n");
Keno Fischere6892c82015-05-01 20:21:45 +00001517 } else {
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001518 // Create a new stub function (equivalent to a PLT entry).
1519 DEBUG(dbgs() << " Create a new stub function\n");
1520
1521 uintptr_t BaseAddress = uintptr_t(Section.Address);
1522 uintptr_t StubAlignment = getStubAlignment();
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001523 StubAddress = (BaseAddress + Section.StubOffset + StubAlignment - 1) &
Keno Fischere6892c82015-05-01 20:21:45 +00001524 -StubAlignment;
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001525 unsigned StubOffset = StubAddress - BaseAddress;
1526 Stubs[Value] = StubOffset;
1527 createStubFunction((uint8_t *)StubAddress);
1528
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001529 // Bump our stub offset counter
1530 Section.StubOffset = StubOffset + getMaxStubSize();
Keno Fischer02628de2015-04-14 02:10:35 +00001531
1532 // Allocate a GOT Entry
1533 uint64_t GOTOffset = allocateGOTEntries(SectionID, 1);
1534
1535 // The load of the GOT address has an addend of -4
1536 resolveGOTOffsetRelocation(SectionID, StubOffset + 2, GOTOffset - 4);
1537
1538 // Fill in the value of the symbol we're targeting into the GOT
1539 addRelocationForSymbol(computeGOTOffsetRE(SectionID,GOTOffset,0,ELF::R_X86_64_64),
Keno Fischere6892c82015-05-01 20:21:45 +00001540 Value.SymbolName);
1541 }
1542
1543 // Make the target call a call into the stub table.
1544 resolveRelocation(Section, Offset, StubAddress, ELF::R_X86_64_PC32,
1545 Addend);
1546 } else {
1547 RelocationEntry RE(SectionID, Offset, ELF::R_X86_64_PC32, Value.Addend,
1548 Value.Offset);
1549 addRelocationForSection(RE, Value.SectionID);
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001550 }
Keno Fischere6892c82015-05-01 20:21:45 +00001551 } else if (RelType == ELF::R_X86_64_GOTPCREL) {
1552 uint64_t GOTOffset = allocateGOTEntries(SectionID, 1);
1553 resolveGOTOffsetRelocation(SectionID, Offset, GOTOffset + Addend);
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001554
Keno Fischere6892c82015-05-01 20:21:45 +00001555 // Fill in the value of the symbol we're targeting into the GOT
1556 RelocationEntry RE = computeGOTOffsetRE(SectionID, GOTOffset, Value.Offset, ELF::R_X86_64_64);
1557 if (Value.SymbolName)
1558 addRelocationForSymbol(RE, Value.SymbolName);
1559 else
1560 addRelocationForSection(RE, Value.SectionID);
1561 } else if (RelType == ELF::R_X86_64_PC32) {
1562 Value.Addend += support::ulittle32_t::ref(computePlaceholderAddress(SectionID, Offset));
1563 processSimpleRelocation(SectionID, Offset, RelType, Value);
1564 } else if (RelType == ELF::R_X86_64_PC64) {
1565 Value.Addend += support::ulittle64_t::ref(computePlaceholderAddress(SectionID, Offset));
1566 processSimpleRelocation(SectionID, Offset, RelType, Value);
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001567 } else {
Keno Fischere6892c82015-05-01 20:21:45 +00001568 processSimpleRelocation(SectionID, Offset, RelType, Value);
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001569 }
Eli Bendersky667b8792012-05-01 10:41:12 +00001570 } else {
Keno Fischere6892c82015-05-01 20:21:45 +00001571 if (Arch == Triple::x86) {
1572 Value.Addend += support::ulittle32_t::ref(computePlaceholderAddress(SectionID, Offset));
1573 }
1574 processSimpleRelocation(SectionID, Offset, RelType, Value);
Eli Bendersky667b8792012-05-01 10:41:12 +00001575 }
Juergen Ributzka046709f2014-03-21 07:26:41 +00001576 return ++RelI;
Jim Grosbacheff0a402012-01-16 22:26:39 +00001577}
1578
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001579size_t RuntimeDyldELF::getGOTEntrySize() {
1580 // We don't use the GOT in all of these cases, but it's essentially free
1581 // to put them all here.
1582 size_t Result = 0;
1583 switch (Arch) {
1584 case Triple::x86_64:
1585 case Triple::aarch64:
James Molloybd2ffa02014-04-30 10:15:41 +00001586 case Triple::aarch64_be:
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001587 case Triple::ppc64:
1588 case Triple::ppc64le:
1589 case Triple::systemz:
1590 Result = sizeof(uint64_t);
1591 break;
1592 case Triple::x86:
1593 case Triple::arm:
1594 case Triple::thumb:
Petar Jovanovic97202832015-05-28 13:48:41 +00001595 Result = sizeof(uint32_t);
1596 break;
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001597 case Triple::mips:
1598 case Triple::mipsel:
Petar Jovanovic97202832015-05-28 13:48:41 +00001599 case Triple::mips64:
1600 case Triple::mips64el:
1601 if (IsMipsO32ABI)
1602 Result = sizeof(uint32_t);
1603 else if (IsMipsN64ABI)
1604 Result = sizeof(uint64_t);
1605 else
1606 llvm_unreachable("Mips ABI not handled");
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001607 break;
Juergen Ributzka7608dc02014-03-21 20:28:42 +00001608 default:
1609 llvm_unreachable("Unsupported CPU type!");
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001610 }
1611 return Result;
1612}
1613
Keno Fischer02628de2015-04-14 02:10:35 +00001614uint64_t RuntimeDyldELF::allocateGOTEntries(unsigned SectionID, unsigned no)
1615{
1616 (void)SectionID; // The GOT Section is the same for all section in the object file
1617 if (GOTSectionID == 0) {
1618 GOTSectionID = Sections.size();
1619 // Reserve a section id. We'll allocate the section later
1620 // once we know the total size
1621 Sections.push_back(SectionEntry(".got", 0, 0, 0));
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001622 }
Keno Fischer02628de2015-04-14 02:10:35 +00001623 uint64_t StartOffset = CurrentGOTIndex * getGOTEntrySize();
1624 CurrentGOTIndex += no;
1625 return StartOffset;
1626}
Andrew Kaylor480dcb32013-10-05 01:52:09 +00001627
Keno Fischer02628de2015-04-14 02:10:35 +00001628void RuntimeDyldELF::resolveGOTOffsetRelocation(unsigned SectionID, uint64_t Offset, uint64_t GOTOffset)
1629{
1630 // Fill in the relative address of the GOT Entry into the stub
1631 RelocationEntry GOTRE(SectionID, Offset, ELF::R_X86_64_PC32, GOTOffset);
1632 addRelocationForSection(GOTRE, GOTSectionID);
1633}
1634
1635RelocationEntry RuntimeDyldELF::computeGOTOffsetRE(unsigned SectionID, uint64_t GOTOffset, uint64_t SymbolOffset,
1636 uint32_t Type)
1637{
1638 (void)SectionID; // The GOT Section is the same for all section in the object file
1639 return RelocationEntry(GOTSectionID, GOTOffset, Type, SymbolOffset);
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001640}
1641
Lang Hamesb5c7b1f2014-11-26 16:54:40 +00001642void RuntimeDyldELF::finalizeLoad(const ObjectFile &Obj,
Lang Hames36072da2014-05-12 21:39:59 +00001643 ObjSectionToIDMap &SectionMap) {
Andrew Kaylor7bb13442013-10-11 21:25:48 +00001644 // If necessary, allocate the global offset table
Keno Fischer02628de2015-04-14 02:10:35 +00001645 if (GOTSectionID != 0) {
Lang Hames633fe142015-03-30 03:37:06 +00001646 // Allocate memory for the section
Keno Fischer02628de2015-04-14 02:10:35 +00001647 size_t TotalSize = CurrentGOTIndex * getGOTEntrySize();
Lang Hames633fe142015-03-30 03:37:06 +00001648 uint8_t *Addr = MemMgr.allocateDataSection(TotalSize, getGOTEntrySize(),
Keno Fischer02628de2015-04-14 02:10:35 +00001649 GOTSectionID, ".got", false);
Lang Hames633fe142015-03-30 03:37:06 +00001650 if (!Addr)
1651 report_fatal_error("Unable to allocate memory for GOT!");
Andrew Kaylor480dcb32013-10-05 01:52:09 +00001652
Keno Fischer02628de2015-04-14 02:10:35 +00001653 Sections[GOTSectionID] = SectionEntry(".got", Addr, TotalSize, 0);
1654
1655 if (Checker)
1656 Checker->registerSection(Obj.getFileName(), GOTSectionID);
1657
Lang Hames633fe142015-03-30 03:37:06 +00001658 // For now, initialize all GOT entries to zero. We'll fill them in as
1659 // needed when GOT-based relocations are applied.
1660 memset(Addr, 0, TotalSize);
Petar Jovanovic97202832015-05-28 13:48:41 +00001661 if (IsMipsN64ABI) {
1662 // To correctly resolve Mips GOT relocations, we need a mapping from
1663 // object's sections to GOTs.
1664 for (section_iterator SI = Obj.section_begin(), SE = Obj.section_end();
1665 SI != SE; ++SI) {
1666 if (SI->relocation_begin() != SI->relocation_end()) {
1667 section_iterator RelocatedSection = SI->getRelocatedSection();
1668 ObjSectionToIDMap::iterator i = SectionMap.find(*RelocatedSection);
1669 assert (i != SectionMap.end());
1670 SectionToGOTMap[i->second] = GOTSectionID;
1671 }
1672 }
1673 GOTSymbolOffsets.clear();
1674 }
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001675 }
Andrew Kaylor7bb13442013-10-11 21:25:48 +00001676
1677 // Look for and record the EH frame section.
1678 ObjSectionToIDMap::iterator i, e;
1679 for (i = SectionMap.begin(), e = SectionMap.end(); i != e; ++i) {
1680 const SectionRef &Section = i->first;
1681 StringRef Name;
1682 Section.getName(Name);
1683 if (Name == ".eh_frame") {
1684 UnregisteredEHFrameSections.push_back(i->second);
1685 break;
1686 }
1687 }
Keno Fischer02628de2015-04-14 02:10:35 +00001688
1689 GOTSectionID = 0;
1690 CurrentGOTIndex = 0;
Andrew Kaylor4612fed2013-08-19 23:27:43 +00001691}
1692
Lang Hamesb5c7b1f2014-11-26 16:54:40 +00001693bool RuntimeDyldELF::isCompatibleFile(const object::ObjectFile &Obj) const {
1694 return Obj.isELF();
Lang Hames173c69f2014-01-08 04:09:09 +00001695}
1696
Eli Bendersky4c647582012-01-16 08:56:09 +00001697} // namespace llvm