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Rafael Espindola01205f72015-09-22 18:19:46 +00001//===- Target.cpp ---------------------------------------------------------===//
2//
3// The LLVM Linker
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Rui Ueyama34f29242015-10-13 19:51:57 +00009//
Rui Ueyama66072272015-10-15 19:52:27 +000010// Machine-specific things, such as applying relocations, creation of
11// GOT or PLT entries, etc., are handled in this file.
12//
13// Refer the ELF spec for the single letter varaibles, S, A or P, used
14// in this file. SA is S+A.
Rui Ueyama34f29242015-10-13 19:51:57 +000015//
16//===----------------------------------------------------------------------===//
Rafael Espindola01205f72015-09-22 18:19:46 +000017
18#include "Target.h"
Rafael Espindolac4010882015-09-22 20:54:08 +000019#include "Error.h"
Rui Ueyamaaf21d922015-10-08 20:06:07 +000020#include "OutputSections.h"
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +000021#include "Symbols.h"
Rafael Espindola01205f72015-09-22 18:19:46 +000022
23#include "llvm/ADT/ArrayRef.h"
Rafael Espindolac4010882015-09-22 20:54:08 +000024#include "llvm/Object/ELF.h"
Rafael Espindola01205f72015-09-22 18:19:46 +000025#include "llvm/Support/Endian.h"
26#include "llvm/Support/ELF.h"
27
28using namespace llvm;
Rafael Espindolac4010882015-09-22 20:54:08 +000029using namespace llvm::object;
Rafael Espindola0872ea32015-09-24 14:16:02 +000030using namespace llvm::support::endian;
Rafael Espindola01205f72015-09-22 18:19:46 +000031using namespace llvm::ELF;
32
33namespace lld {
34namespace elf2 {
35
36std::unique_ptr<TargetInfo> Target;
37
Rafael Espindolae7e57b22015-11-09 21:43:00 +000038template <endianness E> static void add32(void *P, int32_t V) {
39 write32<E>(P, read32<E>(P) + V);
40}
Igor Kudrin15cd9ff2015-11-06 07:43:03 +000041
Rafael Espindolae7e57b22015-11-09 21:43:00 +000042static void add32le(uint8_t *P, int32_t V) { add32<support::little>(P, V); }
43static void or32le(uint8_t *P, int32_t V) { write32le(P, read32le(P) | V); }
Rui Ueyamaefc23de2015-10-14 21:30:32 +000044
45namespace {
46class X86TargetInfo final : public TargetInfo {
47public:
48 X86TargetInfo();
George Rimard23970f2015-11-25 20:41:53 +000049 unsigned getDynReloc(unsigned Type) const override;
50 bool isTlsDynReloc(unsigned Type) const override;
George Rimar648a2c32015-10-20 08:54:27 +000051 void writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const override;
52 void writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
53 uint64_t PltEntryAddr) const override;
George Rimardbb2f612015-11-25 22:03:16 +000054 void writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
55 uint64_t PltEntryAddr, int32_t Index) const override;
George Rimar70e25082015-11-25 11:27:40 +000056 bool relocNeedsCopy(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +000057 bool relocNeedsGot(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +000058 bool relocNeedsPlt(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +000059 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
Rui Ueyama66072272015-10-15 19:52:27 +000060 uint64_t SA) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +000061};
62
63class X86_64TargetInfo final : public TargetInfo {
64public:
65 X86_64TargetInfo();
Igor Kudrine7ad0932015-11-17 17:47:53 +000066 unsigned getPltRefReloc(unsigned Type) const override;
George Rimard23970f2015-11-25 20:41:53 +000067 bool isTlsDynReloc(unsigned Type) const override;
Igor Kudrin351b41d2015-11-16 17:44:08 +000068 void writeGotPltHeaderEntries(uint8_t *Buf) const override;
George Rimar648a2c32015-10-20 08:54:27 +000069 void writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const override;
70 void writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
71 uint64_t PltEntryAddr) const override;
George Rimardbb2f612015-11-25 22:03:16 +000072 void writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
73 uint64_t PltEntryAddr, int32_t Index) const override;
George Rimarbc590fe2015-10-28 16:48:58 +000074 bool relocNeedsCopy(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +000075 bool relocNeedsGot(uint32_t Type, const SymbolBody &S) const override;
76 bool relocNeedsPlt(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +000077 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
Rui Ueyama66072272015-10-15 19:52:27 +000078 uint64_t SA) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +000079 bool isRelRelative(uint32_t Type) const override;
George Rimar6713cf82015-11-25 21:46:05 +000080 bool isTlsOptimized(unsigned Type, const SymbolBody *S) const override;
81 unsigned relocateTlsOptimize(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
82 uint64_t P, uint64_t SA) const override;
83
84private:
85 void relocateTlsLdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
86 uint64_t SA) const;
87 void relocateTlsGdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
88 uint64_t SA) const;
89 void relocateTlsIeToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
90 uint64_t SA) const;
Rui Ueyamaefc23de2015-10-14 21:30:32 +000091};
92
93class PPC64TargetInfo final : public TargetInfo {
94public:
95 PPC64TargetInfo();
George Rimar648a2c32015-10-20 08:54:27 +000096 void writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const override;
97 void writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
98 uint64_t PltEntryAddr) const override;
George Rimardbb2f612015-11-25 22:03:16 +000099 void writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
100 uint64_t PltEntryAddr, int32_t Index) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000101 bool relocNeedsGot(uint32_t Type, const SymbolBody &S) const override;
102 bool relocNeedsPlt(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000103 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
Rui Ueyama66072272015-10-15 19:52:27 +0000104 uint64_t SA) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000105 bool isRelRelative(uint32_t Type) const override;
106};
107
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000108class AArch64TargetInfo final : public TargetInfo {
109public:
110 AArch64TargetInfo();
Igor Kudrin5d2bffd2015-11-24 06:48:31 +0000111 unsigned getGotRefReloc(unsigned Type) const override;
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000112 unsigned getPltRefReloc(unsigned Type) const override;
George Rimar648a2c32015-10-20 08:54:27 +0000113 void writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const override;
114 void writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
115 uint64_t PltEntryAddr) const override;
George Rimardbb2f612015-11-25 22:03:16 +0000116 void writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
117 uint64_t PltEntryAddr, int32_t Index) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000118 bool relocNeedsGot(uint32_t Type, const SymbolBody &S) const override;
119 bool relocNeedsPlt(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000120 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
Rui Ueyama66072272015-10-15 19:52:27 +0000121 uint64_t SA) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000122};
123
124template <class ELFT> class MipsTargetInfo final : public TargetInfo {
125public:
126 MipsTargetInfo();
Simon Atanasyan96306bb2015-11-25 20:58:52 +0000127 unsigned getGotRefReloc(unsigned Type) const override;
Igor Kudrin15cd9ff2015-11-06 07:43:03 +0000128 void writeGotHeaderEntries(uint8_t *Buf) const override;
George Rimar648a2c32015-10-20 08:54:27 +0000129 void writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const override;
130 void writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
131 uint64_t PltEntryAddr) const override;
George Rimardbb2f612015-11-25 22:03:16 +0000132 void writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
133 uint64_t PltEntryAddr, int32_t Index) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000134 bool relocNeedsGot(uint32_t Type, const SymbolBody &S) const override;
135 bool relocNeedsPlt(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000136 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
Rui Ueyama66072272015-10-15 19:52:27 +0000137 uint64_t SA) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000138};
139} // anonymous namespace
140
Rui Ueyama91004392015-10-13 16:08:15 +0000141TargetInfo *createTarget() {
142 switch (Config->EMachine) {
143 case EM_386:
144 return new X86TargetInfo();
145 case EM_AARCH64:
146 return new AArch64TargetInfo();
147 case EM_MIPS:
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000148 switch (Config->EKind) {
149 case ELF32LEKind:
150 return new MipsTargetInfo<ELF32LE>();
151 case ELF32BEKind:
152 return new MipsTargetInfo<ELF32BE>();
153 default:
154 error("Unsupported MIPS target");
155 }
Rui Ueyama91004392015-10-13 16:08:15 +0000156 case EM_PPC64:
157 return new PPC64TargetInfo();
158 case EM_X86_64:
159 return new X86_64TargetInfo();
160 }
161 error("Unknown target machine");
162}
163
Rafael Espindola01205f72015-09-22 18:19:46 +0000164TargetInfo::~TargetInfo() {}
165
George Rimar6713cf82015-11-25 21:46:05 +0000166bool TargetInfo::isTlsOptimized(unsigned Type, const SymbolBody *S) const {
George Rimar77d1cb12015-11-24 09:00:06 +0000167 return false;
168}
169
Igor Kudrinf6f45472015-11-10 08:39:27 +0000170uint64_t TargetInfo::getVAStart() const { return Config->Shared ? 0 : VAStart; }
171
George Rimarbc590fe2015-10-28 16:48:58 +0000172bool TargetInfo::relocNeedsCopy(uint32_t Type, const SymbolBody &S) const {
173 return false;
174}
175
Igor Kudrin5d2bffd2015-11-24 06:48:31 +0000176unsigned TargetInfo::getGotRefReloc(unsigned Type) const { return GotRefReloc; }
177
Igor Kudrine7ad0932015-11-17 17:47:53 +0000178unsigned TargetInfo::getPltRefReloc(unsigned Type) const { return PCRelReloc; }
Rafael Espindola227556e2015-10-14 16:15:46 +0000179
Rafael Espindolaae244002015-10-05 19:30:12 +0000180bool TargetInfo::isRelRelative(uint32_t Type) const { return true; }
181
George Rimar6713cf82015-11-25 21:46:05 +0000182unsigned TargetInfo::relocateTlsOptimize(uint8_t *Loc, uint8_t *BufEnd,
183 uint32_t Type, uint64_t P,
184 uint64_t SA) const {
185 return 0;
186}
George Rimar77d1cb12015-11-24 09:00:06 +0000187
Igor Kudrin15cd9ff2015-11-06 07:43:03 +0000188void TargetInfo::writeGotHeaderEntries(uint8_t *Buf) const {}
189
Igor Kudrin351b41d2015-11-16 17:44:08 +0000190void TargetInfo::writeGotPltHeaderEntries(uint8_t *Buf) const {}
191
Rafael Espindola7f074422015-09-22 21:35:51 +0000192X86TargetInfo::X86TargetInfo() {
George Rimar70e25082015-11-25 11:27:40 +0000193 CopyReloc = R_386_COPY;
Rafael Espindola7f074422015-09-22 21:35:51 +0000194 PCRelReloc = R_386_PC32;
195 GotReloc = R_386_GLOB_DAT;
Rafael Espindola8acb95c2015-09-29 14:42:37 +0000196 GotRefReloc = R_386_GOT32;
George Rimar648a2c32015-10-20 08:54:27 +0000197 PltReloc = R_386_JUMP_SLOT;
Rafael Espindola7f074422015-09-22 21:35:51 +0000198}
Rafael Espindola01205f72015-09-22 18:19:46 +0000199
George Rimard23970f2015-11-25 20:41:53 +0000200unsigned X86TargetInfo::getDynReloc(unsigned Type) const {
201 if (Type == R_386_TLS_LE)
202 return R_386_TLS_TPOFF;
203 if (Type == R_386_TLS_LE_32)
204 return R_386_TLS_TPOFF32;
205 return Type;
206}
207
208bool X86TargetInfo::isTlsDynReloc(unsigned Type) const {
209 if (Type == R_386_TLS_LE || Type == R_386_TLS_LE_32)
210 return Config->Shared;
211 return false;
212}
213
George Rimardbb2f612015-11-25 22:03:16 +0000214void X86TargetInfo::writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const {}
George Rimar648a2c32015-10-20 08:54:27 +0000215void X86TargetInfo::writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
George Rimardbb2f612015-11-25 22:03:16 +0000216 uint64_t PltEntryAddr) const {}
George Rimar648a2c32015-10-20 08:54:27 +0000217
George Rimardbb2f612015-11-25 22:03:16 +0000218void X86TargetInfo::writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
219 uint64_t PltEntryAddr, int32_t Index) const {
220 // jmpl *val; nop; nop
221 const uint8_t Inst[] = {0xff, 0x25, 0, 0, 0, 0, 0x90, 0x90};
Rui Ueyama1500a902015-09-29 23:00:47 +0000222 memcpy(Buf, Inst, sizeof(Inst));
George Rimardbb2f612015-11-25 22:03:16 +0000223 assert(isUInt<32>(GotEntryAddr));
224 write32le(Buf + 2, GotEntryAddr);
Rafael Espindola01205f72015-09-22 18:19:46 +0000225}
226
George Rimar70e25082015-11-25 11:27:40 +0000227bool X86TargetInfo::relocNeedsCopy(uint32_t Type, const SymbolBody &S) const {
228 if (Type == R_386_32 || Type == R_386_16 || Type == R_386_8)
229 if (auto *SS = dyn_cast<SharedSymbol<ELF32LE>>(&S))
230 return SS->Sym.getType() == STT_OBJECT;
231 return false;
232}
233
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000234bool X86TargetInfo::relocNeedsGot(uint32_t Type, const SymbolBody &S) const {
Rui Ueyama5ba3ac42015-09-30 01:40:08 +0000235 return Type == R_386_GOT32 || relocNeedsPlt(Type, S);
Rafael Espindola01205f72015-09-22 18:19:46 +0000236}
237
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000238bool X86TargetInfo::relocNeedsPlt(uint32_t Type, const SymbolBody &S) const {
George Rimar730c2782015-10-07 18:46:13 +0000239 return Type == R_386_PLT32 || (Type == R_386_PC32 && S.isShared());
Rafael Espindola01205f72015-09-22 18:19:46 +0000240}
241
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000242void X86TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
243 uint64_t P, uint64_t SA) const {
Rafael Espindolac4010882015-09-22 20:54:08 +0000244 switch (Type) {
Rafael Espindola8acb95c2015-09-29 14:42:37 +0000245 case R_386_GOT32:
Rui Ueyama66072272015-10-15 19:52:27 +0000246 add32le(Loc, SA - Out<ELF32LE>::Got->getVA());
Rafael Espindola8acb95c2015-09-29 14:42:37 +0000247 break;
George Rimar13934772015-11-25 20:20:31 +0000248 case R_386_GOTPC:
249 add32le(Loc, SA + Out<ELF32LE>::Got->getVA() - P);
250 break;
Rafael Espindolac4010882015-09-22 20:54:08 +0000251 case R_386_PC32:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000252 add32le(Loc, SA - P);
Rafael Espindolac4010882015-09-22 20:54:08 +0000253 break;
254 case R_386_32:
Rui Ueyama66072272015-10-15 19:52:27 +0000255 add32le(Loc, SA);
Rafael Espindolac4010882015-09-22 20:54:08 +0000256 break;
George Rimard23970f2015-11-25 20:41:53 +0000257 case R_386_TLS_LE:
258 write32le(Loc, SA - Out<ELF32LE>::TlsPhdr->p_memsz);
259 break;
260 case R_386_TLS_LE_32:
261 write32le(Loc, Out<ELF32LE>::TlsPhdr->p_memsz - SA);
262 break;
Rafael Espindolac4010882015-09-22 20:54:08 +0000263 default:
Rui Ueyama1c42afc2015-10-12 15:49:06 +0000264 error("unrecognized reloc " + Twine(Type));
Rafael Espindolac4010882015-09-22 20:54:08 +0000265 }
266}
267
Rafael Espindola7f074422015-09-22 21:35:51 +0000268X86_64TargetInfo::X86_64TargetInfo() {
George Rimarbc590fe2015-10-28 16:48:58 +0000269 CopyReloc = R_X86_64_COPY;
Rafael Espindola7f074422015-09-22 21:35:51 +0000270 PCRelReloc = R_X86_64_PC32;
271 GotReloc = R_X86_64_GLOB_DAT;
Rafael Espindola8acb95c2015-09-29 14:42:37 +0000272 GotRefReloc = R_X86_64_PC32;
George Rimar648a2c32015-10-20 08:54:27 +0000273 PltReloc = R_X86_64_JUMP_SLOT;
Rafael Espindolaae244002015-10-05 19:30:12 +0000274 RelativeReloc = R_X86_64_RELATIVE;
George Rimar687138c2015-11-13 16:28:53 +0000275 TlsGotReloc = R_X86_64_TPOFF64;
Michael J. Spencer1e225612015-11-11 01:00:24 +0000276 TlsLocalDynamicReloc = R_X86_64_TLSLD;
Michael J. Spencer627ae702015-11-13 00:28:34 +0000277 TlsGlobalDynamicReloc = R_X86_64_TLSGD;
Michael J. Spencer1e225612015-11-11 01:00:24 +0000278 TlsModuleIndexReloc = R_X86_64_DTPMOD64;
Michael J. Spencer627ae702015-11-13 00:28:34 +0000279 TlsOffsetReloc = R_X86_64_DTPOFF64;
George Rimar648a2c32015-10-20 08:54:27 +0000280 LazyRelocations = true;
281 PltEntrySize = 16;
282 PltZeroEntrySize = 16;
283}
284
Igor Kudrin351b41d2015-11-16 17:44:08 +0000285void X86_64TargetInfo::writeGotPltHeaderEntries(uint8_t *Buf) const {
286 write64le(Buf, Out<ELF64LE>::Dynamic->getVA());
287}
288
George Rimar648a2c32015-10-20 08:54:27 +0000289void X86_64TargetInfo::writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const {
290 // Skip 6 bytes of "jmpq *got(%rip)"
291 write32le(Buf, Plt + 6);
292}
293
294void X86_64TargetInfo::writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
295 uint64_t PltEntryAddr) const {
296 const uint8_t PltData[] = {
297 0xff, 0x35, 0x00, 0x00, 0x00, 0x00, // pushq GOT+8(%rip)
298 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, // jmp *GOT+16(%rip)
299 0x0f, 0x1f, 0x40, 0x00 // nopl 0x0(rax)
300 };
301 memcpy(Buf, PltData, sizeof(PltData));
302 write32le(Buf + 2, GotEntryAddr - PltEntryAddr + 2); // GOT+8
303 write32le(Buf + 8, GotEntryAddr - PltEntryAddr + 4); // GOT+16
Rafael Espindola7f074422015-09-22 21:35:51 +0000304}
Rafael Espindola01205f72015-09-22 18:19:46 +0000305
George Rimardbb2f612015-11-25 22:03:16 +0000306void X86_64TargetInfo::writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
307 uint64_t PltEntryAddr,
308 int32_t Index) const {
George Rimar648a2c32015-10-20 08:54:27 +0000309 const uint8_t Inst[] = {
310 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, // jmpq *got(%rip)
311 0x68, 0x00, 0x00, 0x00, 0x00, // pushq <relocation index>
312 0xe9, 0x00, 0x00, 0x00, 0x00 // jmpq plt[0]
313 };
Rui Ueyama1500a902015-09-29 23:00:47 +0000314 memcpy(Buf, Inst, sizeof(Inst));
Rafael Espindola01205f72015-09-22 18:19:46 +0000315
George Rimar648a2c32015-10-20 08:54:27 +0000316 write32le(Buf + 2, GotEntryAddr - PltEntryAddr - 6);
317 write32le(Buf + 7, Index);
318 write32le(Buf + 12, -Index * PltEntrySize - PltZeroEntrySize - 16);
Rafael Espindola01205f72015-09-22 18:19:46 +0000319}
320
George Rimarbc590fe2015-10-28 16:48:58 +0000321bool X86_64TargetInfo::relocNeedsCopy(uint32_t Type,
322 const SymbolBody &S) const {
323 if (Type == R_X86_64_32S || Type == R_X86_64_32 || Type == R_X86_64_PC32 ||
324 Type == R_X86_64_64)
325 if (auto *SS = dyn_cast<SharedSymbol<ELF64LE>>(&S))
326 return SS->Sym.getType() == STT_OBJECT;
327 return false;
328}
329
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000330bool X86_64TargetInfo::relocNeedsGot(uint32_t Type, const SymbolBody &S) const {
George Rimar77d1cb12015-11-24 09:00:06 +0000331 if (Type == R_X86_64_GOTTPOFF)
George Rimar6713cf82015-11-25 21:46:05 +0000332 return !isTlsOptimized(Type, &S);
George Rimar687138c2015-11-13 16:28:53 +0000333 return Type == R_X86_64_GOTTPOFF || Type == R_X86_64_GOTPCREL ||
334 relocNeedsPlt(Type, S);
Rafael Espindola01205f72015-09-22 18:19:46 +0000335}
336
George Rimard23970f2015-11-25 20:41:53 +0000337bool X86_64TargetInfo::isTlsDynReloc(unsigned Type) const {
338 return Type == R_X86_64_GOTTPOFF;
339}
340
Igor Kudrine7ad0932015-11-17 17:47:53 +0000341unsigned X86_64TargetInfo::getPltRefReloc(unsigned Type) const {
George Rimar52687212015-10-28 18:33:08 +0000342 if (Type == R_X86_64_PLT32)
Rafael Espindola227556e2015-10-14 16:15:46 +0000343 return R_X86_64_PC32;
George Rimar52687212015-10-28 18:33:08 +0000344 return Type;
Rafael Espindola227556e2015-10-14 16:15:46 +0000345}
346
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000347bool X86_64TargetInfo::relocNeedsPlt(uint32_t Type, const SymbolBody &S) const {
George Rimarbc590fe2015-10-28 16:48:58 +0000348 if (relocNeedsCopy(Type, S))
349 return false;
350
Rafael Espindola01205f72015-09-22 18:19:46 +0000351 switch (Type) {
352 default:
353 return false;
Rafael Espindola227556e2015-10-14 16:15:46 +0000354 case R_X86_64_32:
George Rimar52687212015-10-28 18:33:08 +0000355 case R_X86_64_64:
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000356 case R_X86_64_PC32:
357 // This relocation is defined to have a value of (S + A - P).
Rafael Espindola3c412e12015-09-30 12:30:58 +0000358 // The problems start when a non PIC program calls a function in a shared
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000359 // library.
Rafael Espindola9a0db7c2015-09-29 23:23:53 +0000360 // In an ideal world, we could just report an error saying the relocation
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000361 // can overflow at runtime.
Rafael Espindola3c412e12015-09-30 12:30:58 +0000362 // In the real world with glibc, crt1.o has a R_X86_64_PC32 pointing to
363 // libc.so.
364 //
365 // The general idea on how to handle such cases is to create a PLT entry
366 // and use that as the function value.
367 //
368 // For the static linking part, we just return true and everything else
369 // will use the the PLT entry as the address.
370 //
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000371 // The remaining (unimplemented) problem is making sure pointer equality
Rafael Espindola3c412e12015-09-30 12:30:58 +0000372 // still works. We need the help of the dynamic linker for that. We
373 // let it know that we have a direct reference to a so symbol by creating
374 // an undefined symbol with a non zero st_value. Seeing that, the
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000375 // dynamic linker resolves the symbol to the value of the symbol we created.
376 // This is true even for got entries, so pointer equality is maintained.
377 // To avoid an infinite loop, the only entry that points to the
Rafael Espindola3c412e12015-09-30 12:30:58 +0000378 // real function is a dedicated got entry used by the plt. That is
379 // identified by special relocation types (R_X86_64_JUMP_SLOT,
380 // R_386_JMP_SLOT, etc).
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000381 return S.isShared();
Rafael Espindola01205f72015-09-22 18:19:46 +0000382 case R_X86_64_PLT32:
George Rimar8911d852015-10-16 23:52:24 +0000383 return canBePreempted(&S, true);
Rafael Espindola01205f72015-09-22 18:19:46 +0000384 }
385}
Rafael Espindolac4010882015-09-22 20:54:08 +0000386
Rafael Espindolaae244002015-10-05 19:30:12 +0000387bool X86_64TargetInfo::isRelRelative(uint32_t Type) const {
388 switch (Type) {
389 default:
390 return false;
391 case R_X86_64_PC64:
392 case R_X86_64_PC32:
393 case R_X86_64_PC16:
394 case R_X86_64_PC8:
Rafael Espindola69535df2015-10-19 05:20:01 +0000395 case R_X86_64_PLT32:
Michael J. Spencera5d9d1f2015-11-11 01:27:58 +0000396 case R_X86_64_DTPOFF32:
Michael J. Spencerac2307b2015-11-11 01:28:11 +0000397 case R_X86_64_DTPOFF64:
Rafael Espindolaae244002015-10-05 19:30:12 +0000398 return true;
399 }
400}
401
George Rimar77d1cb12015-11-24 09:00:06 +0000402bool X86_64TargetInfo::isTlsOptimized(unsigned Type,
George Rimar6713cf82015-11-25 21:46:05 +0000403 const SymbolBody *S) const {
404 if (Config->Shared || (S && !S->isTLS()))
George Rimar77d1cb12015-11-24 09:00:06 +0000405 return false;
George Rimar6713cf82015-11-25 21:46:05 +0000406 return Type == R_X86_64_TLSLD || Type == R_X86_64_DTPOFF32 ||
407 (Type == R_X86_64_TLSGD && !canBePreempted(S, true)) ||
408 (Type == R_X86_64_GOTTPOFF && !canBePreempted(S, true));
409}
410
411// "Ulrich Drepper, ELF Handling For Thread-Local Storage" (5.5
412// x86-x64 linker optimizations, http://www.akkadia.org/drepper/tls.pdf) shows
413// how LD can be optimized to LE:
414// leaq bar@tlsld(%rip), %rdi
415// callq __tls_get_addr@PLT
416// leaq bar@dtpoff(%rax), %rcx
417// Is converted to:
418// .word 0x6666
419// .byte 0x66
420// mov %fs:0,%rax
421// leaq bar@tpoff(%rax), %rcx
422void X86_64TargetInfo::relocateTlsLdToLe(uint8_t *Loc, uint8_t *BufEnd,
423 uint64_t P, uint64_t SA) const {
424 const uint8_t Inst[] = {
425 0x66, 0x66, //.word 0x6666
426 0x66, //.byte 0x66
427 0x64, 0x48, 0x8b, 0x04, 0x25, 0x00, 0x00, 0x00, 0x00 // mov %fs:0,%rax
428 };
429 memcpy(Loc - 3, Inst, sizeof(Inst));
430}
431
432// "Ulrich Drepper, ELF Handling For Thread-Local Storage" (5.5
433// x86-x64 linker optimizations, http://www.akkadia.org/drepper/tls.pdf) shows
434// how GD can be optimized to LE:
435// .byte 0x66
436// leaq x@tlsgd(%rip), %rdi
437// .word 0x6666
438// rex64
439// call __tls_get_addr@plt
440// Is converted to:
441// mov %fs:0x0,%rax
442// lea x@tpoff,%rax
443void X86_64TargetInfo::relocateTlsGdToLe(uint8_t *Loc, uint8_t *BufEnd,
444 uint64_t P, uint64_t SA) const {
445 const uint8_t Inst[] = {
446 0x64, 0x48, 0x8b, 0x04, 0x25, 0x00, 0x00, 0x00, 0x00, // mov %fs:0x0,%rax
447 0x48, 0x8d, 0x80, 0x00, 0x00, 0x00, 0x00 // lea x@tpoff,%rax
448 };
449 memcpy(Loc - 4, Inst, sizeof(Inst));
450 relocateOne(Loc + 8, BufEnd, R_X86_64_TPOFF32, P, SA);
George Rimar77d1cb12015-11-24 09:00:06 +0000451}
452
453// In some conditions, R_X86_64_GOTTPOFF relocation can be optimized to
454// R_X86_64_TPOFF32 so that R_X86_64_TPOFF32 so that it does not use GOT.
455// This function does that. Read "ELF Handling For Thread-Local Storage,
456// 5.5 x86-x64 linker optimizations" (http://www.akkadia.org/drepper/tls.pdf)
457// by Ulrich Drepper for details.
George Rimar6713cf82015-11-25 21:46:05 +0000458void X86_64TargetInfo::relocateTlsIeToLe(uint8_t *Loc, uint8_t *BufEnd,
459 uint64_t P, uint64_t SA) const {
George Rimar77d1cb12015-11-24 09:00:06 +0000460 // Ulrich's document section 6.5 says that @gottpoff(%rip) must be
461 // used in MOVQ or ADDQ instructions only.
462 // "MOVQ foo@GOTTPOFF(%RIP), %REG" is transformed to "MOVQ $foo, %REG".
463 // "ADDQ foo@GOTTPOFF(%RIP), %REG" is transformed to "LEAQ foo(%REG), %REG"
464 // (if the register is not RSP/R12) or "ADDQ $foo, %RSP".
465 // Opcodes info can be found at http://ref.x86asm.net/coder64.html#x48.
466 uint8_t *Prefix = Loc - 3;
467 uint8_t *Inst = Loc - 2;
468 uint8_t *RegSlot = Loc - 1;
469 uint8_t Reg = Loc[-1] >> 3;
470 bool IsMov = *Inst == 0x8b;
471 bool RspAdd = !IsMov && Reg == 4;
472 // r12 and rsp registers requires special handling.
473 // Problem is that for other registers, for example leaq 0xXXXXXXXX(%r11),%r11
474 // result out is 7 bytes: 4d 8d 9b XX XX XX XX,
475 // but leaq 0xXXXXXXXX(%r12),%r12 is 8 bytes: 4d 8d a4 24 XX XX XX XX.
476 // The same true for rsp. So we convert to addq for them, saving 1 byte that
477 // we dont have.
478 if (RspAdd)
479 *Inst = 0x81;
480 else
481 *Inst = IsMov ? 0xc7 : 0x8d;
482 if (*Prefix == 0x4c)
483 *Prefix = (IsMov || RspAdd) ? 0x49 : 0x4d;
484 *RegSlot = (IsMov || RspAdd) ? (0xc0 | Reg) : (0x80 | Reg | (Reg << 3));
485 relocateOne(Loc, BufEnd, R_X86_64_TPOFF32, P, SA);
486}
487
George Rimar6713cf82015-11-25 21:46:05 +0000488// This function applies a TLS relocation with an optimization as described
489// in the Ulrich's document. As a result of rewriting instructions at the
490// relocation target, relocations immediately follow the TLS relocation (which
491// would be applied to rewritten instructions) may have to be skipped.
492// This function returns a number of relocations that need to be skipped.
493unsigned X86_64TargetInfo::relocateTlsOptimize(uint8_t *Loc, uint8_t *BufEnd,
494 uint32_t Type, uint64_t P,
495 uint64_t SA) const {
496 switch (Type) {
497 case R_X86_64_GOTTPOFF:
498 relocateTlsIeToLe(Loc, BufEnd, P, SA);
499 return 0;
500 case R_X86_64_TLSLD:
501 relocateTlsLdToLe(Loc, BufEnd, P, SA);
502 // The next relocation should be against __tls_get_addr, so skip it
503 return 1;
504 case R_X86_64_TLSGD:
505 relocateTlsGdToLe(Loc, BufEnd, P, SA);
506 // The next relocation should be against __tls_get_addr, so skip it
507 return 1;
508 case R_X86_64_DTPOFF32:
509 relocateOne(Loc, BufEnd, R_X86_64_TPOFF32, P, SA);
510 return 0;
511 }
512 llvm_unreachable("Unknown TLS optimization");
513}
514
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000515void X86_64TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
516 uint64_t P, uint64_t SA) const {
Rafael Espindolac4010882015-09-22 20:54:08 +0000517 switch (Type) {
518 case R_X86_64_PC32:
Rafael Espindolacdfecff2015-09-23 20:08:25 +0000519 case R_X86_64_GOTPCREL:
Rafael Espindola5045e442015-10-18 03:13:46 +0000520 case R_X86_64_PLT32:
Michael J. Spencer1e225612015-11-11 01:00:24 +0000521 case R_X86_64_TLSLD:
Michael J. Spencer627ae702015-11-13 00:28:34 +0000522 case R_X86_64_TLSGD:
George Rimar687138c2015-11-13 16:28:53 +0000523 case R_X86_64_TPOFF64:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000524 write32le(Loc, SA - P);
Rafael Espindolac4010882015-09-22 20:54:08 +0000525 break;
526 case R_X86_64_64:
Michael J. Spencerac2307b2015-11-11 01:28:11 +0000527 case R_X86_64_DTPOFF64:
Rui Ueyama66072272015-10-15 19:52:27 +0000528 write64le(Loc, SA);
Rafael Espindolac4010882015-09-22 20:54:08 +0000529 break;
Rui Ueyama3835b492015-10-23 16:13:27 +0000530 case R_X86_64_32:
Rafael Espindolac4010882015-09-22 20:54:08 +0000531 case R_X86_64_32S:
Rui Ueyama66072272015-10-15 19:52:27 +0000532 if (Type == R_X86_64_32 && !isUInt<32>(SA))
Rafael Espindolac4010882015-09-22 20:54:08 +0000533 error("R_X86_64_32 out of range");
Rui Ueyama66072272015-10-15 19:52:27 +0000534 else if (!isInt<32>(SA))
Rafael Espindolac4010882015-09-22 20:54:08 +0000535 error("R_X86_64_32S out of range");
Rui Ueyama66072272015-10-15 19:52:27 +0000536 write32le(Loc, SA);
Rafael Espindolac4010882015-09-22 20:54:08 +0000537 break;
Michael J. Spencera5d9d1f2015-11-11 01:27:58 +0000538 case R_X86_64_DTPOFF32:
539 write32le(Loc, SA);
540 break;
Rafael Espindolaac1c0f82015-11-05 15:22:26 +0000541 case R_X86_64_TPOFF32: {
Rafael Espindolaea7a1e902015-11-06 22:14:44 +0000542 uint64_t Val = SA - Out<ELF64LE>::TlsPhdr->p_memsz;
Rafael Espindolaac1c0f82015-11-05 15:22:26 +0000543 if (!isInt<32>(Val))
544 error("R_X86_64_TPOFF32 out of range");
545 write32le(Loc, Val);
Michael J. Spencerd77f0d22015-11-03 22:39:09 +0000546 break;
Rafael Espindolaac1c0f82015-11-05 15:22:26 +0000547 }
Rafael Espindolac4010882015-09-22 20:54:08 +0000548 default:
Rui Ueyama1c42afc2015-10-12 15:49:06 +0000549 error("unrecognized reloc " + Twine(Type));
Rafael Espindolac4010882015-09-22 20:54:08 +0000550 }
551}
552
Hal Finkel3c8cc672015-10-12 20:56:18 +0000553// Relocation masks following the #lo(value), #hi(value), #ha(value),
554// #higher(value), #highera(value), #highest(value), and #highesta(value)
555// macros defined in section 4.5.1. Relocation Types of the PPC-elf64abi
556// document.
Rui Ueyamac44e5a12015-10-23 16:54:58 +0000557static uint16_t applyPPCLo(uint64_t V) { return V; }
558static uint16_t applyPPCHi(uint64_t V) { return V >> 16; }
559static uint16_t applyPPCHa(uint64_t V) { return (V + 0x8000) >> 16; }
560static uint16_t applyPPCHigher(uint64_t V) { return V >> 32; }
561static uint16_t applyPPCHighera(uint64_t V) { return (V + 0x8000) >> 32; }
Hal Finkel3c8cc672015-10-12 20:56:18 +0000562static uint16_t applyPPCHighest(uint64_t V) { return V >> 48; }
Hal Finkel3c8cc672015-10-12 20:56:18 +0000563static uint16_t applyPPCHighesta(uint64_t V) { return (V + 0x8000) >> 48; }
564
Rafael Espindolac4010882015-09-22 20:54:08 +0000565PPC64TargetInfo::PPC64TargetInfo() {
Hal Finkel3c8cc672015-10-12 20:56:18 +0000566 PCRelReloc = R_PPC64_REL24;
567 GotReloc = R_PPC64_GLOB_DAT;
568 GotRefReloc = R_PPC64_REL64;
Hal Finkelbe0823d2015-10-12 20:58:52 +0000569 RelativeReloc = R_PPC64_RELATIVE;
Hal Finkel6c2a3b82015-10-08 21:51:31 +0000570 PltEntrySize = 32;
Hal Finkelc848b322015-10-12 19:34:29 +0000571
572 // We need 64K pages (at least under glibc/Linux, the loader won't
573 // set different permissions on a finer granularity than that).
Hal Finkele3c26262015-10-08 22:23:54 +0000574 PageSize = 65536;
Hal Finkel736c7412015-10-15 07:49:07 +0000575
576 // The PPC64 ELF ABI v1 spec, says:
577 //
578 // It is normally desirable to put segments with different characteristics
579 // in separate 256 Mbyte portions of the address space, to give the
580 // operating system full paging flexibility in the 64-bit address space.
581 //
582 // And because the lowest non-zero 256M boundary is 0x10000000, PPC64 linkers
583 // use 0x10000000 as the starting address.
584 VAStart = 0x10000000;
Rafael Espindolac4010882015-09-22 20:54:08 +0000585}
Hal Finkel3c8cc672015-10-12 20:56:18 +0000586
Hal Finkel6f97c2b2015-10-16 21:55:40 +0000587uint64_t getPPC64TocBase() {
Hal Finkel3c8cc672015-10-12 20:56:18 +0000588 // The TOC consists of sections .got, .toc, .tocbss, .plt in that
589 // order. The TOC starts where the first of these sections starts.
590
591 // FIXME: This obviously does not do the right thing when there is no .got
592 // section, but there is a .toc or .tocbss section.
593 uint64_t TocVA = Out<ELF64BE>::Got->getVA();
594 if (!TocVA)
595 TocVA = Out<ELF64BE>::Plt->getVA();
596
597 // Per the ppc64-elf-linux ABI, The TOC base is TOC value plus 0x8000
598 // thus permitting a full 64 Kbytes segment. Note that the glibc startup
599 // code (crt1.o) assumes that you can get from the TOC base to the
600 // start of the .toc section with only a single (signed) 16-bit relocation.
601 return TocVA + 0x8000;
602}
603
George Rimar648a2c32015-10-20 08:54:27 +0000604void PPC64TargetInfo::writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const {}
605void PPC64TargetInfo::writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
606 uint64_t PltEntryAddr) const {}
George Rimardbb2f612015-11-25 22:03:16 +0000607void PPC64TargetInfo::writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
608 uint64_t PltEntryAddr, int32_t Index) const {
Hal Finkel3c8cc672015-10-12 20:56:18 +0000609 uint64_t Off = GotEntryAddr - getPPC64TocBase();
610
611 // FIXME: What we should do, in theory, is get the offset of the function
612 // descriptor in the .opd section, and use that as the offset from %r2 (the
613 // TOC-base pointer). Instead, we have the GOT-entry offset, and that will
614 // be a pointer to the function descriptor in the .opd section. Using
615 // this scheme is simpler, but requires an extra indirection per PLT dispatch.
616
Hal Finkelfa92f682015-10-13 21:47:34 +0000617 write32be(Buf, 0xf8410028); // std %r2, 40(%r1)
Hal Finkel3c8cc672015-10-12 20:56:18 +0000618 write32be(Buf + 4, 0x3d620000 | applyPPCHa(Off)); // addis %r11, %r2, X@ha
619 write32be(Buf + 8, 0xe98b0000 | applyPPCLo(Off)); // ld %r12, X@l(%r11)
620 write32be(Buf + 12, 0xe96c0000); // ld %r11,0(%r12)
621 write32be(Buf + 16, 0x7d6903a6); // mtctr %r11
622 write32be(Buf + 20, 0xe84c0008); // ld %r2,8(%r12)
623 write32be(Buf + 24, 0xe96c0010); // ld %r11,16(%r12)
624 write32be(Buf + 28, 0x4e800420); // bctr
625}
626
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000627bool PPC64TargetInfo::relocNeedsGot(uint32_t Type, const SymbolBody &S) const {
Hal Finkel3c8cc672015-10-12 20:56:18 +0000628 if (relocNeedsPlt(Type, S))
629 return true;
630
631 switch (Type) {
632 default: return false;
633 case R_PPC64_GOT16:
634 case R_PPC64_GOT16_LO:
635 case R_PPC64_GOT16_HI:
636 case R_PPC64_GOT16_HA:
637 case R_PPC64_GOT16_DS:
638 case R_PPC64_GOT16_LO_DS:
639 return true;
640 }
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000641}
Hal Finkel3c8cc672015-10-12 20:56:18 +0000642
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000643bool PPC64TargetInfo::relocNeedsPlt(uint32_t Type, const SymbolBody &S) const {
Hal Finkel3c8cc672015-10-12 20:56:18 +0000644 // These are function calls that need to be redirected through a PLT stub.
Hal Finkel82281982015-10-17 00:48:20 +0000645 return Type == R_PPC64_REL24 && canBePreempted(&S, false);
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000646}
Hal Finkel3c8cc672015-10-12 20:56:18 +0000647
Hal Finkelbe0823d2015-10-12 20:58:52 +0000648bool PPC64TargetInfo::isRelRelative(uint32_t Type) const {
649 switch (Type) {
650 default:
Hal Finkelbe0823d2015-10-12 20:58:52 +0000651 return true;
Hal Finkel00918622015-10-16 19:01:50 +0000652 case R_PPC64_TOC:
653 case R_PPC64_ADDR64:
654 return false;
Hal Finkelbe0823d2015-10-12 20:58:52 +0000655 }
656}
657
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000658void PPC64TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
659 uint64_t P, uint64_t SA) const {
Hal Finkel3c8cc672015-10-12 20:56:18 +0000660 uint64_t TB = getPPC64TocBase();
661
Hal Finkel3c8cc672015-10-12 20:56:18 +0000662 // For a TOC-relative relocation, adjust the addend and proceed in terms of
663 // the corresponding ADDR16 relocation type.
Rafael Espindola3efa4e92015-09-22 21:12:55 +0000664 switch (Type) {
Rafael Espindola826941a2015-10-15 18:19:39 +0000665 case R_PPC64_TOC16: Type = R_PPC64_ADDR16; SA -= TB; break;
666 case R_PPC64_TOC16_DS: Type = R_PPC64_ADDR16_DS; SA -= TB; break;
667 case R_PPC64_TOC16_LO: Type = R_PPC64_ADDR16_LO; SA -= TB; break;
668 case R_PPC64_TOC16_LO_DS: Type = R_PPC64_ADDR16_LO_DS; SA -= TB; break;
669 case R_PPC64_TOC16_HI: Type = R_PPC64_ADDR16_HI; SA -= TB; break;
670 case R_PPC64_TOC16_HA: Type = R_PPC64_ADDR16_HA; SA -= TB; break;
Hal Finkel3c8cc672015-10-12 20:56:18 +0000671 default: break;
672 }
673
Hal Finkel3c8cc672015-10-12 20:56:18 +0000674 switch (Type) {
675 case R_PPC64_ADDR16:
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000676 if (!isInt<16>(SA))
Hal Finkel33e17a72015-10-15 16:17:30 +0000677 error("Relocation R_PPC64_ADDR16 overflow");
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000678 write16be(Loc, SA);
Rafael Espindola3efa4e92015-09-22 21:12:55 +0000679 break;
Hal Finkel3c8cc672015-10-12 20:56:18 +0000680 case R_PPC64_ADDR16_DS:
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000681 if (!isInt<16>(SA))
Hal Finkel3c8cc672015-10-12 20:56:18 +0000682 error("Relocation R_PPC64_ADDR16_DS overflow");
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000683 write16be(Loc, (read16be(Loc) & 3) | (SA & ~3));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000684 break;
685 case R_PPC64_ADDR16_LO:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000686 write16be(Loc, applyPPCLo(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000687 break;
688 case R_PPC64_ADDR16_LO_DS:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000689 write16be(Loc, (read16be(Loc) & 3) | (applyPPCLo(SA) & ~3));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000690 break;
691 case R_PPC64_ADDR16_HI:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000692 write16be(Loc, applyPPCHi(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000693 break;
694 case R_PPC64_ADDR16_HA:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000695 write16be(Loc, applyPPCHa(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000696 break;
697 case R_PPC64_ADDR16_HIGHER:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000698 write16be(Loc, applyPPCHigher(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000699 break;
700 case R_PPC64_ADDR16_HIGHERA:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000701 write16be(Loc, applyPPCHighera(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000702 break;
703 case R_PPC64_ADDR16_HIGHEST:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000704 write16be(Loc, applyPPCHighest(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000705 break;
706 case R_PPC64_ADDR16_HIGHESTA:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000707 write16be(Loc, applyPPCHighesta(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000708 break;
709 case R_PPC64_ADDR14: {
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000710 if ((SA & 3) != 0)
Hal Finkel3c8cc672015-10-12 20:56:18 +0000711 error("Improper alignment for relocation R_PPC64_ADDR14");
712
713 // Preserve the AA/LK bits in the branch instruction
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000714 uint8_t AALK = Loc[3];
715 write16be(Loc + 2, (AALK & 3) | (SA & 0xfffc));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000716 break;
717 }
718 case R_PPC64_REL16_LO:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000719 write16be(Loc, applyPPCLo(SA - P));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000720 break;
721 case R_PPC64_REL16_HI:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000722 write16be(Loc, applyPPCHi(SA - P));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000723 break;
724 case R_PPC64_REL16_HA:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000725 write16be(Loc, applyPPCHa(SA - P));
Hal Finkel3c8cc672015-10-12 20:56:18 +0000726 break;
727 case R_PPC64_ADDR32:
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000728 if (!isInt<32>(SA))
Hal Finkel3c8cc672015-10-12 20:56:18 +0000729 error("Relocation R_PPC64_ADDR32 overflow");
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000730 write32be(Loc, SA);
Hal Finkel3c8cc672015-10-12 20:56:18 +0000731 break;
732 case R_PPC64_REL24: {
Hal Finkel82281982015-10-17 00:48:20 +0000733 // If we have an undefined weak symbol, we might get here with a symbol
734 // address of zero. That could overflow, but the code must be unreachable,
735 // so don't bother doing anything at all.
736 if (!SA)
737 break;
738
Hal Finkeldaedc122015-10-12 23:16:53 +0000739 uint64_t PltStart = Out<ELF64BE>::Plt->getVA();
740 uint64_t PltEnd = PltStart + Out<ELF64BE>::Plt->getSize();
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000741 bool InPlt = PltStart <= SA && SA < PltEnd;
Hal Finkeldaedc122015-10-12 23:16:53 +0000742
743 if (!InPlt && Out<ELF64BE>::Opd) {
744 // If this is a local call, and we currently have the address of a
745 // function-descriptor, get the underlying code address instead.
746 uint64_t OpdStart = Out<ELF64BE>::Opd->getVA();
747 uint64_t OpdEnd = OpdStart + Out<ELF64BE>::Opd->getSize();
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000748 bool InOpd = OpdStart <= SA && SA < OpdEnd;
Hal Finkeldaedc122015-10-12 23:16:53 +0000749
750 if (InOpd)
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000751 SA = read64be(&Out<ELF64BE>::OpdBuf[SA - OpdStart]);
Hal Finkeldaedc122015-10-12 23:16:53 +0000752 }
753
Hal Finkel3c8cc672015-10-12 20:56:18 +0000754 uint32_t Mask = 0x03FFFFFC;
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000755 if (!isInt<24>(SA - P))
Hal Finkel3c8cc672015-10-12 20:56:18 +0000756 error("Relocation R_PPC64_REL24 overflow");
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000757 write32be(Loc, (read32be(Loc) & ~Mask) | ((SA - P) & Mask));
Hal Finkel87bbd5f2015-10-12 21:19:18 +0000758
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000759 uint32_t Nop = 0x60000000;
760 if (InPlt && Loc + 8 <= BufEnd && read32be(Loc + 4) == Nop)
761 write32be(Loc + 4, 0xe8410028); // ld %r2, 40(%r1)
Hal Finkel3c8cc672015-10-12 20:56:18 +0000762 break;
763 }
764 case R_PPC64_REL32:
Rui Ueyama9e82fa22015-10-15 19:39:36 +0000765 if (!isInt<32>(SA - P))
Hal Finkel3c8cc672015-10-12 20:56:18 +0000766 error("Relocation R_PPC64_REL32 overflow");
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000767 write32be(Loc, SA - P);
Hal Finkel3c8cc672015-10-12 20:56:18 +0000768 break;
769 case R_PPC64_REL64:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000770 write64be(Loc, SA - P);
Hal Finkel3c8cc672015-10-12 20:56:18 +0000771 break;
772 case R_PPC64_ADDR64:
Hal Finkel6f97c2b2015-10-16 21:55:40 +0000773 case R_PPC64_TOC:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000774 write64be(Loc, SA);
Rafael Espindola3efa4e92015-09-22 21:12:55 +0000775 break;
776 default:
Rui Ueyama1c42afc2015-10-12 15:49:06 +0000777 error("unrecognized reloc " + Twine(Type));
Rafael Espindola3efa4e92015-09-22 21:12:55 +0000778 }
779}
Rafael Espindola1d6063e2015-09-22 21:24:52 +0000780
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000781AArch64TargetInfo::AArch64TargetInfo() {
Igor Kudrin5d2bffd2015-11-24 06:48:31 +0000782 GotReloc = R_AARCH64_GLOB_DAT;
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000783 PltReloc = R_AARCH64_JUMP_SLOT;
784 LazyRelocations = true;
785 PltEntrySize = 16;
786 PltZeroEntrySize = 32;
787}
George Rimar648a2c32015-10-20 08:54:27 +0000788
Igor Kudrin5d2bffd2015-11-24 06:48:31 +0000789unsigned AArch64TargetInfo::getGotRefReloc(unsigned Type) const { return Type; }
790
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000791unsigned AArch64TargetInfo::getPltRefReloc(unsigned Type) const { return Type; }
792
793void AArch64TargetInfo::writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const {
794 write64le(Buf, Out<ELF64LE>::Plt->getVA());
795}
796
George Rimar648a2c32015-10-20 08:54:27 +0000797void AArch64TargetInfo::writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000798 uint64_t PltEntryAddr) const {
799 const uint8_t PltData[] = {
800 0xf0, 0x7b, 0xbf, 0xa9, // stp x16, x30, [sp,#-16]!
801 0x10, 0x00, 0x00, 0x90, // adrp x16, Page(&(.plt.got[2]))
802 0x11, 0x02, 0x40, 0xf9, // ldr x17, [x16, Offset(&(.plt.got[2]))]
803 0x10, 0x02, 0x00, 0x91, // add x16, x16, Offset(&(.plt.got[2]))
804 0x20, 0x02, 0x1f, 0xd6, // br x17
805 0x1f, 0x20, 0x03, 0xd5, // nop
806 0x1f, 0x20, 0x03, 0xd5, // nop
807 0x1f, 0x20, 0x03, 0xd5 // nop
808 };
809 memcpy(Buf, PltData, sizeof(PltData));
810
811 relocateOne(Buf + 4, Buf + 8, R_AARCH64_ADR_PREL_PG_HI21, PltEntryAddr + 4,
812 GotEntryAddr + 16);
813 relocateOne(Buf + 8, Buf + 12, R_AARCH64_LDST64_ABS_LO12_NC, PltEntryAddr + 8,
814 GotEntryAddr + 16);
815 relocateOne(Buf + 12, Buf + 16, R_AARCH64_ADD_ABS_LO12_NC, PltEntryAddr + 12,
816 GotEntryAddr + 16);
817}
818
George Rimardbb2f612015-11-25 22:03:16 +0000819void AArch64TargetInfo::writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
820 uint64_t PltEntryAddr,
821 int32_t Index) const {
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000822 const uint8_t Inst[] = {
823 0x10, 0x00, 0x00, 0x90, // adrp x16, Page(&(.plt.got[n]))
824 0x11, 0x02, 0x40, 0xf9, // ldr x17, [x16, Offset(&(.plt.got[n]))]
825 0x10, 0x02, 0x00, 0x91, // add x16, x16, Offset(&(.plt.got[n]))
826 0x20, 0x02, 0x1f, 0xd6 // br x17
827 };
828 memcpy(Buf, Inst, sizeof(Inst));
829
830 relocateOne(Buf, Buf + 4, R_AARCH64_ADR_PREL_PG_HI21, PltEntryAddr,
831 GotEntryAddr);
832 relocateOne(Buf + 4, Buf + 8, R_AARCH64_LDST64_ABS_LO12_NC, PltEntryAddr + 4,
833 GotEntryAddr);
834 relocateOne(Buf + 8, Buf + 12, R_AARCH64_ADD_ABS_LO12_NC, PltEntryAddr + 8,
835 GotEntryAddr);
836}
837
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000838bool AArch64TargetInfo::relocNeedsGot(uint32_t Type,
839 const SymbolBody &S) const {
Igor Kudrin5d2bffd2015-11-24 06:48:31 +0000840 return Type == R_AARCH64_ADR_GOT_PAGE || Type == R_AARCH64_LD64_GOT_LO12_NC ||
841 relocNeedsPlt(Type, S);
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000842}
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000843
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000844bool AArch64TargetInfo::relocNeedsPlt(uint32_t Type,
845 const SymbolBody &S) const {
Igor Kudrindb7de9f2015-11-17 18:01:30 +0000846 switch (Type) {
847 default:
848 return false;
849 case R_AARCH64_JUMP26:
850 case R_AARCH64_CALL26:
851 return canBePreempted(&S, true);
852 }
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000853}
Davide Italiano1d750a62015-09-27 08:45:38 +0000854
Davide Italianoef4be6b2015-10-06 19:01:32 +0000855static void updateAArch64Adr(uint8_t *L, uint64_t Imm) {
Davide Italiano1f31a2c2015-10-02 22:00:42 +0000856 uint32_t ImmLo = (Imm & 0x3) << 29;
857 uint32_t ImmHi = ((Imm & 0x1FFFFC) >> 2) << 5;
858 uint64_t Mask = (0x3 << 29) | (0x7FFFF << 5);
Rui Ueyama87bc41b2015-10-06 18:54:43 +0000859 write32le(L, (read32le(L) & ~Mask) | ImmLo | ImmHi);
Davide Italiano1f31a2c2015-10-02 22:00:42 +0000860}
861
Davide Italiano318ca222015-10-02 22:13:51 +0000862// Page(Expr) is the page address of the expression Expr, defined
863// as (Expr & ~0xFFF). (This applies even if the machine page size
Davide Italianod9b5be42015-10-02 22:17:09 +0000864// supported by the platform has a different value.)
Davide Italianoef4be6b2015-10-06 19:01:32 +0000865static uint64_t getAArch64Page(uint64_t Expr) {
Davide Italiano318ca222015-10-02 22:13:51 +0000866 return Expr & (~static_cast<uint64_t>(0xFFF));
Davide Italiano1f31a2c2015-10-02 22:00:42 +0000867}
868
Igor Kudrinee252de2015-11-23 17:16:09 +0000869template <unsigned N>
870static void checkAArch64OutOfRange(int64_t X, uint32_t Type) {
871 if (!isInt<N>(X))
872 error("Relocation " + getELFRelocationTypeName(EM_AARCH64, Type) +
873 " out of range");
874}
875
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000876void AArch64TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd,
877 uint32_t Type, uint64_t P,
878 uint64_t SA) const {
Davide Italiano1d750a62015-09-27 08:45:38 +0000879 switch (Type) {
Davide Italianodf88f962015-10-04 00:59:16 +0000880 case R_AARCH64_ABS16:
Igor Kudrinee252de2015-11-23 17:16:09 +0000881 checkAArch64OutOfRange<16>(SA, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000882 write16le(Loc, SA);
Davide Italianodf88f962015-10-04 00:59:16 +0000883 break;
884 case R_AARCH64_ABS32:
Igor Kudrinee252de2015-11-23 17:16:09 +0000885 checkAArch64OutOfRange<32>(SA, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000886 write32le(Loc, SA);
Davide Italianodf88f962015-10-04 00:59:16 +0000887 break;
888 case R_AARCH64_ABS64:
Rui Ueyamaee8c53b2015-10-06 19:57:01 +0000889 // No overflow check needed.
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000890 write64le(Loc, SA);
Davide Italianodf88f962015-10-04 00:59:16 +0000891 break;
Davide Italiano0b6974b2015-10-03 19:56:07 +0000892 case R_AARCH64_ADD_ABS_LO12_NC:
Rui Ueyamaee8c53b2015-10-06 19:57:01 +0000893 // No overflow check needed.
Davide Italianoa7165742015-10-16 21:06:55 +0000894 // This relocation stores 12 bits and there's no instruction
895 // to do it. Instead, we do a 32 bits store of the value
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000896 // of r_addend bitwise-or'ed Loc. This assumes that the addend
897 // bits in Loc are zero.
898 or32le(Loc, (SA & 0xFFF) << 10);
Davide Italiano0b6974b2015-10-03 19:56:07 +0000899 break;
Rui Ueyamaee8c53b2015-10-06 19:57:01 +0000900 case R_AARCH64_ADR_PREL_LO21: {
Rafael Espindola826941a2015-10-15 18:19:39 +0000901 uint64_t X = SA - P;
Igor Kudrinee252de2015-11-23 17:16:09 +0000902 checkAArch64OutOfRange<21>(X, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000903 updateAArch64Adr(Loc, X & 0x1FFFFF);
Davide Italiano1d750a62015-09-27 08:45:38 +0000904 break;
Rui Ueyamaee8c53b2015-10-06 19:57:01 +0000905 }
Igor Kudrin5d2bffd2015-11-24 06:48:31 +0000906 case R_AARCH64_ADR_GOT_PAGE:
Rui Ueyamaee8c53b2015-10-06 19:57:01 +0000907 case R_AARCH64_ADR_PREL_PG_HI21: {
Rafael Espindola826941a2015-10-15 18:19:39 +0000908 uint64_t X = getAArch64Page(SA) - getAArch64Page(P);
Igor Kudrinee252de2015-11-23 17:16:09 +0000909 checkAArch64OutOfRange<33>(X, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000910 updateAArch64Adr(Loc, (X >> 12) & 0x1FFFFF); // X[32:12]
Davide Italiano1f31a2c2015-10-02 22:00:42 +0000911 break;
Rui Ueyamaee8c53b2015-10-06 19:57:01 +0000912 }
Igor Kudrinb34115b2015-11-13 03:26:59 +0000913 case R_AARCH64_JUMP26:
914 case R_AARCH64_CALL26: {
915 uint64_t X = SA - P;
Igor Kudrinee252de2015-11-23 17:16:09 +0000916 checkAArch64OutOfRange<28>(X, Type);
Igor Kudrinb34115b2015-11-13 03:26:59 +0000917 or32le(Loc, (X & 0x0FFFFFFC) >> 2);
918 break;
919 }
Davide Italianodc67f9b2015-11-20 21:35:38 +0000920 case R_AARCH64_LDST32_ABS_LO12_NC:
921 // No overflow check needed.
922 or32le(Loc, (SA & 0xFFC) << 8);
923 break;
Igor Kudrin5d2bffd2015-11-24 06:48:31 +0000924 case R_AARCH64_LD64_GOT_LO12_NC:
925 if (SA & 0x7)
926 error("Relocation R_AARCH64_LD64_GOT_LO12_NC not aligned");
927 // No overflow check needed.
928 or32le(Loc, (SA & 0xFF8) << 7);
929 break;
Davide Italianobbcc7f62015-11-08 04:45:26 +0000930 case R_AARCH64_LDST64_ABS_LO12_NC:
931 // No overflow check needed.
932 or32le(Loc, (SA & 0xFF8) << 7);
933 break;
Davide Italianodc67f9b2015-11-20 21:35:38 +0000934 case R_AARCH64_LDST8_ABS_LO12_NC:
935 // No overflow check needed.
936 or32le(Loc, (SA & 0xFFF) << 10);
937 break;
Davide Italiano3300b792015-10-29 19:55:59 +0000938 case R_AARCH64_PREL16:
Igor Kudrinee252de2015-11-23 17:16:09 +0000939 checkAArch64OutOfRange<16>(SA - P, Type);
Davide Italiano3300b792015-10-29 19:55:59 +0000940 write16le(Loc, SA - P);
941 break;
942 case R_AARCH64_PREL32:
Igor Kudrinee252de2015-11-23 17:16:09 +0000943 checkAArch64OutOfRange<32>(SA - P, Type);
Davide Italiano3300b792015-10-29 19:55:59 +0000944 write32le(Loc, SA - P);
945 break;
Davide Italianob12d6682015-10-28 16:14:18 +0000946 case R_AARCH64_PREL64:
947 // No overflow check needed.
948 write64le(Loc, SA - P);
949 break;
Davide Italiano1d750a62015-09-27 08:45:38 +0000950 default:
Rui Ueyama1c42afc2015-10-12 15:49:06 +0000951 error("unrecognized reloc " + Twine(Type));
Davide Italiano1d750a62015-09-27 08:45:38 +0000952 }
953}
Simon Atanasyan49829a12015-09-29 05:34:03 +0000954
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000955template <class ELFT> MipsTargetInfo<ELFT>::MipsTargetInfo() {
Hal Finkele3c26262015-10-08 22:23:54 +0000956 PageSize = 65536;
Igor Kudrin15cd9ff2015-11-06 07:43:03 +0000957 GotRefReloc = R_MIPS_GOT16;
958 GotHeaderEntriesNum = 2;
959}
960
961template <class ELFT>
Simon Atanasyan96306bb2015-11-25 20:58:52 +0000962unsigned MipsTargetInfo<ELFT>::getGotRefReloc(unsigned Type) const {
963 return Type;
964}
965
966template <class ELFT>
Igor Kudrin15cd9ff2015-11-06 07:43:03 +0000967void MipsTargetInfo<ELFT>::writeGotHeaderEntries(uint8_t *Buf) const {
968 typedef typename llvm::object::ELFFile<ELFT>::Elf_Off Elf_Off;
969 auto *P = reinterpret_cast<Elf_Off *>(Buf);
970 // Module pointer
971 P[1] = ELFT::Is64Bits ? 0x8000000000000000 : 0x80000000;
Simon Atanasyan49829a12015-09-29 05:34:03 +0000972}
973
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000974template <class ELFT>
George Rimar648a2c32015-10-20 08:54:27 +0000975void MipsTargetInfo<ELFT>::writeGotPltEntry(uint8_t *Buf, uint64_t Plt) const {}
976template <class ELFT>
977void MipsTargetInfo<ELFT>::writePltZeroEntry(uint8_t *Buf, uint64_t GotEntryAddr,
978 uint64_t PltEntryAddr) const {}
979template <class ELFT>
George Rimardbb2f612015-11-25 22:03:16 +0000980void MipsTargetInfo<ELFT>::writePltEntry(uint8_t *Buf, uint64_t GotEntryAddr,
981 uint64_t PltEntryAddr, int32_t Index) const {}
Simon Atanasyan49829a12015-09-29 05:34:03 +0000982
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000983template <class ELFT>
984bool MipsTargetInfo<ELFT>::relocNeedsGot(uint32_t Type,
985 const SymbolBody &S) const {
Simon Atanasyan96306bb2015-11-25 20:58:52 +0000986 return Type == R_MIPS_GOT16 || Type == R_MIPS_CALL16;
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000987}
Simon Atanasyan49829a12015-09-29 05:34:03 +0000988
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000989template <class ELFT>
990bool MipsTargetInfo<ELFT>::relocNeedsPlt(uint32_t Type,
991 const SymbolBody &S) const {
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +0000992 return false;
993}
Simon Atanasyan49829a12015-09-29 05:34:03 +0000994
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000995template <class ELFT>
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000996void MipsTargetInfo<ELFT>::relocateOne(uint8_t *Loc, uint8_t *BufEnd,
997 uint32_t Type, uint64_t P,
998 uint64_t SA) const {
Rafael Espindolae7e57b22015-11-09 21:43:00 +0000999 const endianness E = ELFT::TargetEndianness;
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001000 switch (Type) {
1001 case R_MIPS_32:
Rafael Espindolae7e57b22015-11-09 21:43:00 +00001002 add32<E>(Loc, SA);
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001003 break;
Simon Atanasyan96306bb2015-11-25 20:58:52 +00001004 case R_MIPS_CALL16:
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001005 case R_MIPS_GOT16: {
1006 int64_t V = SA - getMipsGpAddr<ELFT>();
Simon Atanasyan96306bb2015-11-25 20:58:52 +00001007 if (Type == R_MIPS_GOT16 && !isInt<16>(V))
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001008 error("Relocation R_MIPS_GOT16 out of range");
Rafael Espindolae7e57b22015-11-09 21:43:00 +00001009 write32<E>(Loc, (read32<E>(Loc) & 0xffff0000) | (V & 0xffff));
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001010 break;
1011 }
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001012 default:
Rui Ueyama1c42afc2015-10-12 15:49:06 +00001013 error("unrecognized reloc " + Twine(Type));
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001014 }
1015}
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001016
1017template <class ELFT>
1018typename llvm::object::ELFFile<ELFT>::uintX_t getMipsGpAddr() {
1019 const unsigned GPOffset = 0x7ff0;
1020 return Out<ELFT>::Got->getVA() ? (Out<ELFT>::Got->getVA() + GPOffset) : 0;
1021}
1022
1023template uint32_t getMipsGpAddr<ELF32LE>();
1024template uint32_t getMipsGpAddr<ELF32BE>();
1025template uint64_t getMipsGpAddr<ELF64LE>();
1026template uint64_t getMipsGpAddr<ELF64BE>();
Rafael Espindola01205f72015-09-22 18:19:46 +00001027}
1028}