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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
Rui Ueyamac1c282a2016-02-11 21:18:01 +000036TargetInfo *Target;
Rafael Espindola01205f72015-09-22 18:19:46 +000037
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
Igor Kudrin9b7e7db2015-11-26 09:49:44 +000045template <unsigned N> static void checkInt(int64_t V, uint32_t Type) {
46 if (isInt<N>(V))
47 return;
48 StringRef S = getELFRelocationTypeName(Config->EMachine, Type);
Rui Ueyama21923992016-02-01 23:28:21 +000049 error("Relocation " + S + " out of range");
Igor Kudrin9b7e7db2015-11-26 09:49:44 +000050}
51
52template <unsigned N> static void checkUInt(uint64_t V, uint32_t Type) {
53 if (isUInt<N>(V))
54 return;
55 StringRef S = getELFRelocationTypeName(Config->EMachine, Type);
Rui Ueyama21923992016-02-01 23:28:21 +000056 error("Relocation " + S + " out of range");
Igor Kudrin9b7e7db2015-11-26 09:49:44 +000057}
58
Igor Kudrinfea8ed52015-11-26 10:05:24 +000059template <unsigned N> static void checkIntUInt(uint64_t V, uint32_t Type) {
60 if (isInt<N>(V) || isUInt<N>(V))
61 return;
62 StringRef S = getELFRelocationTypeName(Config->EMachine, Type);
Rui Ueyama21923992016-02-01 23:28:21 +000063 error("Relocation " + S + " out of range");
Igor Kudrinfea8ed52015-11-26 10:05:24 +000064}
65
Igor Kudrin9b7e7db2015-11-26 09:49:44 +000066template <unsigned N> static void checkAlignment(uint64_t V, uint32_t Type) {
67 if ((V & (N - 1)) == 0)
68 return;
69 StringRef S = getELFRelocationTypeName(Config->EMachine, Type);
Rui Ueyama21923992016-02-01 23:28:21 +000070 error("Improper alignment for relocation " + S);
Igor Kudrin9b7e7db2015-11-26 09:49:44 +000071}
72
George Rimara07ff662015-12-21 10:12:06 +000073template <class ELFT> bool isGnuIFunc(const SymbolBody &S) {
Rafael Espindola4d4b06a2015-12-24 00:47:42 +000074 if (auto *SS = dyn_cast<DefinedElf<ELFT>>(&S))
George Rimara07ff662015-12-21 10:12:06 +000075 return SS->Sym.getType() == STT_GNU_IFUNC;
76 return false;
77}
78
Rui Ueyamaefc23de2015-10-14 21:30:32 +000079namespace {
80class X86TargetInfo final : public TargetInfo {
81public:
82 X86TargetInfo();
Rui Ueyamac516ae12016-01-29 02:33:45 +000083 void writeGotPltHeader(uint8_t *Buf) const override;
84 unsigned getDynRel(unsigned Type) const override;
Rui Ueyama724d6252016-01-29 01:49:32 +000085 unsigned getTlsGotRel(unsigned Type) const override;
Adhemerval Zanella74bcf032016-02-12 13:43:03 +000086 bool isTlsLocalDynamicRel(unsigned Type) const override;
87 bool isTlsGlobalDynamicRel(unsigned Type) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +000088 bool isTlsDynRel(unsigned Type, const SymbolBody &S) const override;
89 void writeGotPlt(uint8_t *Buf, uint64_t Plt) const override;
Rui Ueyama900e2d22016-01-29 03:51:49 +000090 void writePltZero(uint8_t *Buf) const override;
Rui Ueyama9398f862016-01-29 04:15:02 +000091 void writePlt(uint8_t *Buf, uint64_t GotEntryAddr, uint64_t PltEntryAddr,
92 int32_t Index, unsigned RelOff) const override;
Rafael Espindolafb1533b2016-02-22 21:23:29 +000093 bool needsCopyRelImpl(uint32_t Type) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +000094 bool needsDynRelative(unsigned Type) const override;
Rafael Espindolaa0a65f92016-02-09 15:11:01 +000095 bool needsGot(uint32_t Type, SymbolBody &S) const override;
Rafael Espindola795dc5a2016-02-24 18:24:23 +000096 bool needsPltImpl(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +000097 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
George Rimar48651482015-12-11 08:59:37 +000098 uint64_t SA, uint64_t ZA = 0,
99 uint8_t *PairedLoc = nullptr) const override;
Rui Ueyamabaf16512016-01-29 00:20:12 +0000100 bool canRelaxTls(unsigned Type, const SymbolBody *S) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +0000101 unsigned relaxTls(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
102 uint64_t SA, const SymbolBody *S) const override;
George Rimarbfb7bf72015-12-21 10:00:12 +0000103 bool isGotRelative(uint32_t Type) const override;
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000104 bool refersToGotEntry(uint32_t Type) const override;
George Rimar2558e122015-12-09 09:55:54 +0000105
106private:
107 void relocateTlsLdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
108 uint64_t SA) const;
109 void relocateTlsGdToIe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
110 uint64_t SA) const;
111 void relocateTlsGdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
112 uint64_t SA) const;
George Rimar6f17e092015-12-17 09:32:21 +0000113 void relocateTlsIeToLe(unsigned Type, uint8_t *Loc, uint8_t *BufEnd,
114 uint64_t P, uint64_t SA) const;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000115};
116
117class X86_64TargetInfo final : public TargetInfo {
118public:
119 X86_64TargetInfo();
George Rimar2960c982016-02-11 11:14:46 +0000120 unsigned getTlsGotRel(unsigned Type) const override;
Adhemerval Zanella74bcf032016-02-12 13:43:03 +0000121 bool isTlsLocalDynamicRel(unsigned Type) const override;
122 bool isTlsGlobalDynamicRel(unsigned Type) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +0000123 bool isTlsDynRel(unsigned Type, const SymbolBody &S) const override;
124 void writeGotPltHeader(uint8_t *Buf) const override;
125 void writeGotPlt(uint8_t *Buf, uint64_t Plt) const override;
Rui Ueyama900e2d22016-01-29 03:51:49 +0000126 void writePltZero(uint8_t *Buf) const override;
Rui Ueyama9398f862016-01-29 04:15:02 +0000127 void writePlt(uint8_t *Buf, uint64_t GotEntryAddr, uint64_t PltEntryAddr,
128 int32_t Index, unsigned RelOff) const override;
Rafael Espindolafb1533b2016-02-22 21:23:29 +0000129 bool needsCopyRelImpl(uint32_t Type) const override;
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000130 bool needsGot(uint32_t Type, SymbolBody &S) const override;
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000131 bool refersToGotEntry(uint32_t Type) const override;
132 bool needsPltImpl(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000133 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
George Rimar48651482015-12-11 08:59:37 +0000134 uint64_t SA, uint64_t ZA = 0,
135 uint8_t *PairedLoc = nullptr) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000136 bool isRelRelative(uint32_t Type) const override;
Rui Ueyamabaf16512016-01-29 00:20:12 +0000137 bool canRelaxTls(unsigned Type, const SymbolBody *S) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +0000138 bool isSizeRel(uint32_t Type) const override;
139 unsigned relaxTls(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
140 uint64_t SA, const SymbolBody *S) const override;
George Rimar6713cf82015-11-25 21:46:05 +0000141
142private:
143 void relocateTlsLdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
144 uint64_t SA) const;
145 void relocateTlsGdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
146 uint64_t SA) const;
George Rimar25411f252015-12-04 11:20:13 +0000147 void relocateTlsGdToIe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
148 uint64_t SA) const;
George Rimar6713cf82015-11-25 21:46:05 +0000149 void relocateTlsIeToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
150 uint64_t SA) const;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000151};
152
Davide Italiano8c3444362016-01-11 19:45:33 +0000153class PPCTargetInfo final : public TargetInfo {
154public:
155 PPCTargetInfo();
Davide Italiano8c3444362016-01-11 19:45:33 +0000156 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
157 uint64_t SA, uint64_t ZA = 0,
158 uint8_t *PairedLoc = nullptr) const override;
159 bool isRelRelative(uint32_t Type) const override;
160};
161
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000162class PPC64TargetInfo final : public TargetInfo {
163public:
164 PPC64TargetInfo();
Rui Ueyama9398f862016-01-29 04:15:02 +0000165 void writePlt(uint8_t *Buf, uint64_t GotEntryAddr, uint64_t PltEntryAddr,
166 int32_t Index, unsigned RelOff) const override;
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000167 bool needsGot(uint32_t Type, SymbolBody &S) const override;
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000168 bool needsPltImpl(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000169 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
George Rimar48651482015-12-11 08:59:37 +0000170 uint64_t SA, uint64_t ZA = 0,
171 uint8_t *PairedLoc = nullptr) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000172 bool isRelRelative(uint32_t Type) const override;
173};
174
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000175class AArch64TargetInfo final : public TargetInfo {
176public:
177 AArch64TargetInfo();
Rui Ueyamac516ae12016-01-29 02:33:45 +0000178 unsigned getDynRel(unsigned Type) const override;
Adhemerval Zanella74bcf032016-02-12 13:43:03 +0000179 bool isTlsGlobalDynamicRel(unsigned Type) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +0000180 void writeGotPlt(uint8_t *Buf, uint64_t Plt) const override;
Rui Ueyama900e2d22016-01-29 03:51:49 +0000181 void writePltZero(uint8_t *Buf) const override;
Rui Ueyama9398f862016-01-29 04:15:02 +0000182 void writePlt(uint8_t *Buf, uint64_t GotEntryAddr, uint64_t PltEntryAddr,
183 int32_t Index, unsigned RelOff) const override;
George Rimar2960c982016-02-11 11:14:46 +0000184 unsigned getTlsGotRel(unsigned Type) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +0000185 bool isTlsDynRel(unsigned Type, const SymbolBody &S) const override;
Rafael Espindola435c00f2016-02-23 20:19:44 +0000186 bool isRelRelative(uint32_t Type) const override;
Rafael Espindolafb1533b2016-02-22 21:23:29 +0000187 bool needsCopyRelImpl(uint32_t Type) const override;
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000188 bool needsGot(uint32_t Type, SymbolBody &S) const override;
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000189 bool needsPltImpl(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000190 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
George Rimar48651482015-12-11 08:59:37 +0000191 uint64_t SA, uint64_t ZA = 0,
192 uint8_t *PairedLoc = nullptr) const override;
Adhemerval Zanella74bcf032016-02-12 13:43:03 +0000193 unsigned relaxTls(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
194 uint64_t SA, const SymbolBody *S) const override;
195 bool canRelaxTls(unsigned Type, const SymbolBody *S) const override;
196
197private:
198 void relocateTlsGdToLe(unsigned Type, uint8_t *Loc, uint8_t *BufEnd,
199 uint64_t P, uint64_t SA) const;
200 void relocateTlsIeToLe(unsigned Type, uint8_t *Loc, uint8_t *BufEnd,
201 uint64_t P, uint64_t SA) const;
202
203 static const uint64_t TcbSize = 16;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000204};
205
Tom Stellard80efb162016-01-07 03:59:08 +0000206class AMDGPUTargetInfo final : public TargetInfo {
207public:
Rui Ueyama012eb782016-01-29 04:05:09 +0000208 AMDGPUTargetInfo() {}
Tom Stellard80efb162016-01-07 03:59:08 +0000209 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
210 uint64_t SA, uint64_t ZA = 0,
211 uint8_t *PairedLoc = nullptr) const override;
212};
213
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000214template <class ELFT> class MipsTargetInfo final : public TargetInfo {
215public:
216 MipsTargetInfo();
Rui Ueyamac516ae12016-01-29 02:33:45 +0000217 unsigned getDynRel(unsigned Type) const override;
Simon Atanasyan2287dc32016-02-10 19:57:19 +0000218 void writeGotPlt(uint8_t *Buf, uint64_t Plt) const override;
219 void writePltZero(uint8_t *Buf) const override;
220 void writePlt(uint8_t *Buf, uint64_t GotEntryAddr, uint64_t PltEntryAddr,
221 int32_t Index, unsigned RelOff) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +0000222 void writeGotHeader(uint8_t *Buf) const override;
Rafael Espindolafb1533b2016-02-22 21:23:29 +0000223 bool needsCopyRelImpl(uint32_t Type) const override;
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000224 bool needsGot(uint32_t Type, SymbolBody &S) const override;
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000225 bool needsPltImpl(uint32_t Type, const SymbolBody &S) const override;
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000226 void relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type, uint64_t P,
Simon Atanasyan62313912016-02-10 10:08:35 +0000227 uint64_t S, uint64_t ZA = 0,
George Rimar48651482015-12-11 08:59:37 +0000228 uint8_t *PairedLoc = nullptr) const override;
Rui Ueyamac516ae12016-01-29 02:33:45 +0000229 bool isHintRel(uint32_t Type) const override;
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +0000230 bool isRelRelative(uint32_t Type) const override;
Simon Atanasyand040a582016-02-25 16:19:15 +0000231 bool refersToGotEntry(uint32_t Type) const override;
Rui Ueyamaefc23de2015-10-14 21:30:32 +0000232};
233} // anonymous namespace
234
Rui Ueyama91004392015-10-13 16:08:15 +0000235TargetInfo *createTarget() {
236 switch (Config->EMachine) {
237 case EM_386:
238 return new X86TargetInfo();
239 case EM_AARCH64:
240 return new AArch64TargetInfo();
Tom Stellard80efb162016-01-07 03:59:08 +0000241 case EM_AMDGPU:
242 return new AMDGPUTargetInfo();
Rui Ueyama91004392015-10-13 16:08:15 +0000243 case EM_MIPS:
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000244 switch (Config->EKind) {
245 case ELF32LEKind:
246 return new MipsTargetInfo<ELF32LE>();
247 case ELF32BEKind:
248 return new MipsTargetInfo<ELF32BE>();
249 default:
Rui Ueyama64cfffd2016-01-28 18:40:06 +0000250 fatal("Unsupported MIPS target");
Simon Atanasyan9c2d7882015-10-14 14:24:46 +0000251 }
Davide Italiano8c3444362016-01-11 19:45:33 +0000252 case EM_PPC:
253 return new PPCTargetInfo();
Rui Ueyama91004392015-10-13 16:08:15 +0000254 case EM_PPC64:
255 return new PPC64TargetInfo();
256 case EM_X86_64:
257 return new X86_64TargetInfo();
258 }
Rui Ueyama64cfffd2016-01-28 18:40:06 +0000259 fatal("Unknown target machine");
Rui Ueyama91004392015-10-13 16:08:15 +0000260}
261
Rafael Espindola01205f72015-09-22 18:19:46 +0000262TargetInfo::~TargetInfo() {}
263
Rui Ueyamabaf16512016-01-29 00:20:12 +0000264bool TargetInfo::canRelaxTls(unsigned Type, const SymbolBody *S) const {
George Rimar77d1cb12015-11-24 09:00:06 +0000265 return false;
266}
267
Igor Kudrinf6f45472015-11-10 08:39:27 +0000268uint64_t TargetInfo::getVAStart() const { return Config->Shared ? 0 : VAStart; }
269
Rafael Espindolafb1533b2016-02-22 21:23:29 +0000270bool TargetInfo::needsCopyRelImpl(uint32_t Type) const { return false; }
271
272template <typename ELFT> static bool mayNeedCopy(const SymbolBody &S) {
273 if (Config->Shared)
274 return false;
275 auto *SS = dyn_cast<SharedSymbol<ELFT>>(&S);
276 if (!SS)
277 return false;
278 return SS->Sym.getType() == STT_OBJECT;
279}
280
Rafael Espindolaf7ae3592016-02-23 18:53:29 +0000281template <class ELFT>
Rui Ueyama02dfd492015-12-17 01:18:40 +0000282bool TargetInfo::needsCopyRel(uint32_t Type, const SymbolBody &S) const {
Rafael Espindolaf7ae3592016-02-23 18:53:29 +0000283 return mayNeedCopy<ELFT>(S) && needsCopyRelImpl(Type);
George Rimarbc590fe2015-10-28 16:48:58 +0000284}
285
Rui Ueyama012eb782016-01-29 04:05:09 +0000286bool TargetInfo::isTlsDynRel(unsigned Type, const SymbolBody &S) const {
287 return false;
288}
289
George Rimarbfb7bf72015-12-21 10:00:12 +0000290bool TargetInfo::isGotRelative(uint32_t Type) const { return false; }
Rui Ueyamac516ae12016-01-29 02:33:45 +0000291bool TargetInfo::isHintRel(uint32_t Type) const { return false; }
Rafael Espindolaae244002015-10-05 19:30:12 +0000292bool TargetInfo::isRelRelative(uint32_t Type) const { return true; }
Rui Ueyamac516ae12016-01-29 02:33:45 +0000293bool TargetInfo::isSizeRel(uint32_t Type) const { return false; }
George Rimar48651482015-12-11 08:59:37 +0000294
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000295bool TargetInfo::needsGot(uint32_t Type, SymbolBody &S) const { return false; }
Rui Ueyama012eb782016-01-29 04:05:09 +0000296
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000297bool TargetInfo::needsPltImpl(uint32_t Type, const SymbolBody &S) const {
298 return false;
299}
300
301bool TargetInfo::refersToGotEntry(uint32_t Type) const { return false; }
302
303template <class ELFT>
Rafael Espindola852860e2016-02-12 15:47:37 +0000304TargetInfo::PltNeed TargetInfo::needsPlt(uint32_t Type,
305 const SymbolBody &S) const {
Rafael Espindoladd7f4e32016-02-25 23:03:55 +0000306 if (isGnuIFunc<ELFT>(S))
307 return Plt_Explicit;
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000308 if (needsPltImpl(Type, S))
309 return Plt_Explicit;
310
311 // This handles a non PIC program call to function in a shared library.
312 // In an ideal world, we could just report an error saying the relocation
313 // can overflow at runtime.
314 // In the real world with glibc, crt1.o has a R_X86_64_PC32 pointing to
315 // libc.so.
316 //
317 // The general idea on how to handle such cases is to create a PLT entry
318 // and use that as the function value.
319 //
320 // For the static linking part, we just return true and everything else
321 // will use the the PLT entry as the address.
322 //
323 // The remaining problem is making sure pointer equality still works. We
324 // need the help of the dynamic linker for that. We let it know that we have
325 // a direct reference to a so symbol by creating an undefined symbol with a
326 // non zero st_value. Seeing that, the dynamic linker resolves the symbol to
327 // the value of the symbol we created. This is true even for got entries, so
328 // pointer equality is maintained. To avoid an infinite loop, the only entry
329 // that points to the real function is a dedicated got entry used by the
330 // plt. That is identified by special relocation types (R_X86_64_JUMP_SLOT,
331 // R_386_JMP_SLOT, etc).
332 if (auto *SS = dyn_cast<SharedSymbol<ELFT>>(&S))
333 if (SS->Sym.getType() == STT_FUNC && !refersToGotEntry(Type))
334 return Plt_Implicit;
335
Rafael Espindola852860e2016-02-12 15:47:37 +0000336 return Plt_No;
337}
Rui Ueyama012eb782016-01-29 04:05:09 +0000338
Adhemerval Zanella74bcf032016-02-12 13:43:03 +0000339bool TargetInfo::isTlsLocalDynamicRel(unsigned Type) const {
340 return false;
341}
342
343bool TargetInfo::isTlsGlobalDynamicRel(unsigned Type) const {
344 return false;
345}
346
Rui Ueyamac516ae12016-01-29 02:33:45 +0000347unsigned TargetInfo::relaxTls(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
348 uint64_t P, uint64_t SA,
349 const SymbolBody *S) const {
George Rimar6713cf82015-11-25 21:46:05 +0000350 return 0;
351}
George Rimar77d1cb12015-11-24 09:00:06 +0000352
Rafael Espindola7f074422015-09-22 21:35:51 +0000353X86TargetInfo::X86TargetInfo() {
Rui Ueyama724d6252016-01-29 01:49:32 +0000354 CopyRel = R_386_COPY;
355 GotRel = R_386_GLOB_DAT;
356 PltRel = R_386_JUMP_SLOT;
357 IRelativeRel = R_386_IRELATIVE;
358 RelativeRel = R_386_RELATIVE;
359 TlsGotRel = R_386_TLS_TPOFF;
Rui Ueyama724d6252016-01-29 01:49:32 +0000360 TlsModuleIndexRel = R_386_TLS_DTPMOD32;
361 TlsOffsetRel = R_386_TLS_DTPOFF32;
362 UseLazyBinding = true;
George Rimar77b77792015-11-25 22:15:01 +0000363 PltEntrySize = 16;
Rui Ueyama62515452016-01-29 03:00:32 +0000364 PltZeroSize = 16;
George Rimar77b77792015-11-25 22:15:01 +0000365}
366
Rui Ueyamac516ae12016-01-29 02:33:45 +0000367void X86TargetInfo::writeGotPltHeader(uint8_t *Buf) const {
George Rimar77b77792015-11-25 22:15:01 +0000368 write32le(Buf, Out<ELF32LE>::Dynamic->getVA());
369}
370
Rui Ueyamac516ae12016-01-29 02:33:45 +0000371void X86TargetInfo::writeGotPlt(uint8_t *Buf, uint64_t Plt) const {
Rui Ueyamacf375932016-01-29 23:58:03 +0000372 // Entries in .got.plt initially points back to the corresponding
373 // PLT entries with a fixed offset to skip the first instruction.
George Rimar77b77792015-11-25 22:15:01 +0000374 write32le(Buf, Plt + 6);
Rafael Espindola7f074422015-09-22 21:35:51 +0000375}
Rafael Espindola01205f72015-09-22 18:19:46 +0000376
Rui Ueyamac516ae12016-01-29 02:33:45 +0000377unsigned X86TargetInfo::getDynRel(unsigned Type) const {
George Rimard23970f2015-11-25 20:41:53 +0000378 if (Type == R_386_TLS_LE)
379 return R_386_TLS_TPOFF;
380 if (Type == R_386_TLS_LE_32)
381 return R_386_TLS_TPOFF32;
382 return Type;
383}
384
Rui Ueyama724d6252016-01-29 01:49:32 +0000385unsigned X86TargetInfo::getTlsGotRel(unsigned Type) const {
George Rimar6f17e092015-12-17 09:32:21 +0000386 if (Type == R_386_TLS_IE)
387 return Type;
Rui Ueyama724d6252016-01-29 01:49:32 +0000388 return TlsGotRel;
George Rimar6f17e092015-12-17 09:32:21 +0000389}
390
Adhemerval Zanella74bcf032016-02-12 13:43:03 +0000391bool X86TargetInfo::isTlsGlobalDynamicRel(unsigned Type) const {
392 return Type == R_386_TLS_GD;
393}
394
395bool X86TargetInfo::isTlsLocalDynamicRel(unsigned Type) const {
396 return Type == R_386_TLS_LDM;
397}
398
Rui Ueyamac516ae12016-01-29 02:33:45 +0000399bool X86TargetInfo::isTlsDynRel(unsigned Type, const SymbolBody &S) const {
George Rimar9db204a2015-12-02 09:58:20 +0000400 if (Type == R_386_TLS_LE || Type == R_386_TLS_LE_32 ||
401 Type == R_386_TLS_GOTIE)
George Rimard23970f2015-11-25 20:41:53 +0000402 return Config->Shared;
George Rimar6f17e092015-12-17 09:32:21 +0000403 if (Type == R_386_TLS_IE)
404 return canBePreempted(&S, true);
George Rimar2558e122015-12-09 09:55:54 +0000405 return Type == R_386_TLS_GD;
George Rimard23970f2015-11-25 20:41:53 +0000406}
407
Rui Ueyama900e2d22016-01-29 03:51:49 +0000408void X86TargetInfo::writePltZero(uint8_t *Buf) const {
George Rimar77b77792015-11-25 22:15:01 +0000409 // Executable files and shared object files have
410 // separate procedure linkage tables.
411 if (Config->Shared) {
412 const uint8_t V[] = {
Rui Ueyamaf53b1b72016-01-05 16:35:46 +0000413 0xff, 0xb3, 0x04, 0x00, 0x00, 0x00, // pushl 4(%ebx)
Rui Ueyamacf375932016-01-29 23:58:03 +0000414 0xff, 0xa3, 0x08, 0x00, 0x00, 0x00, // jmp *8(%ebx)
415 0x90, 0x90, 0x90, 0x90 // nop; nop; nop; nop
George Rimar77b77792015-11-25 22:15:01 +0000416 };
417 memcpy(Buf, V, sizeof(V));
418 return;
419 }
George Rimar648a2c32015-10-20 08:54:27 +0000420
George Rimar77b77792015-11-25 22:15:01 +0000421 const uint8_t PltData[] = {
422 0xff, 0x35, 0x00, 0x00, 0x00, 0x00, // pushl (GOT+4)
Rui Ueyamacf375932016-01-29 23:58:03 +0000423 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, // jmp *(GOT+8)
424 0x90, 0x90, 0x90, 0x90 // nop; nop; nop; nop
George Rimar77b77792015-11-25 22:15:01 +0000425 };
426 memcpy(Buf, PltData, sizeof(PltData));
Rui Ueyama900e2d22016-01-29 03:51:49 +0000427 uint32_t Got = Out<ELF32LE>::GotPlt->getVA();
Rui Ueyamacf375932016-01-29 23:58:03 +0000428 write32le(Buf + 2, Got + 4);
429 write32le(Buf + 8, Got + 8);
George Rimar77b77792015-11-25 22:15:01 +0000430}
431
Rui Ueyama9398f862016-01-29 04:15:02 +0000432void X86TargetInfo::writePlt(uint8_t *Buf, uint64_t GotEntryAddr,
433 uint64_t PltEntryAddr, int32_t Index,
434 unsigned RelOff) const {
George Rimar77b77792015-11-25 22:15:01 +0000435 const uint8_t Inst[] = {
436 0xff, 0x00, 0x00, 0x00, 0x00, 0x00, // jmp *foo_in_GOT|*foo@GOT(%ebx)
437 0x68, 0x00, 0x00, 0x00, 0x00, // pushl $reloc_offset
438 0xe9, 0x00, 0x00, 0x00, 0x00 // jmp .PLT0@PC
439 };
Rui Ueyama1500a902015-09-29 23:00:47 +0000440 memcpy(Buf, Inst, sizeof(Inst));
Rui Ueyama9398f862016-01-29 04:15:02 +0000441
George Rimar77b77792015-11-25 22:15:01 +0000442 // jmp *foo@GOT(%ebx) or jmp *foo_in_GOT
443 Buf[1] = Config->Shared ? 0xa3 : 0x25;
Rui Ueyama9398f862016-01-29 04:15:02 +0000444 uint32_t Got = UseLazyBinding ? Out<ELF32LE>::GotPlt->getVA()
445 : Out<ELF32LE>::Got->getVA();
446 write32le(Buf + 2, Config->Shared ? GotEntryAddr - Got : GotEntryAddr);
George Rimar77b77792015-11-25 22:15:01 +0000447 write32le(Buf + 7, RelOff);
Rui Ueyama62515452016-01-29 03:00:32 +0000448 write32le(Buf + 12, -Index * PltEntrySize - PltZeroSize - 16);
Rafael Espindola01205f72015-09-22 18:19:46 +0000449}
450
Rafael Espindolafb1533b2016-02-22 21:23:29 +0000451bool X86TargetInfo::needsCopyRelImpl(uint32_t Type) const {
452 return Type == R_386_32 || Type == R_386_16 || Type == R_386_8;
George Rimar70e25082015-11-25 11:27:40 +0000453}
454
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000455bool X86TargetInfo::needsGot(uint32_t Type, SymbolBody &S) const {
Rafael Espindola5e8b54a2016-02-22 23:16:05 +0000456 if (S.IsTls && Type == R_386_TLS_GD)
Rui Ueyamabaf16512016-01-29 00:20:12 +0000457 return Target->canRelaxTls(Type, &S) && canBePreempted(&S, true);
George Rimar6f17e092015-12-17 09:32:21 +0000458 if (Type == R_386_TLS_GOTIE || Type == R_386_TLS_IE)
Rui Ueyamabaf16512016-01-29 00:20:12 +0000459 return !canRelaxTls(Type, &S);
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000460 return Type == R_386_GOT32 || needsPlt<ELF32LE>(Type, S);
Rafael Espindola01205f72015-09-22 18:19:46 +0000461}
462
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000463bool X86TargetInfo::needsPltImpl(uint32_t Type, const SymbolBody &S) const {
Rafael Espindoladd7f4e32016-02-25 23:03:55 +0000464 return Type == R_386_PLT32 && canBePreempted(&S, true);
Rafael Espindola01205f72015-09-22 18:19:46 +0000465}
466
George Rimarbfb7bf72015-12-21 10:00:12 +0000467bool X86TargetInfo::isGotRelative(uint32_t Type) const {
468 // This relocation does not require got entry,
469 // but it is relative to got and needs it to be created.
470 // Here we request for that.
471 return Type == R_386_GOTOFF;
472}
473
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000474bool X86TargetInfo::refersToGotEntry(uint32_t Type) const {
475 return Type == R_386_GOT32;
476}
477
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000478void X86TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
George Rimar48651482015-12-11 08:59:37 +0000479 uint64_t P, uint64_t SA, uint64_t ZA,
Simon Atanasyan09b3e362015-12-01 21:24:45 +0000480 uint8_t *PairedLoc) const {
Rafael Espindolac4010882015-09-22 20:54:08 +0000481 switch (Type) {
Igor Kudrinb4a09272015-12-01 08:41:20 +0000482 case R_386_32:
483 add32le(Loc, SA);
484 break;
George Rimarffb67352016-01-19 11:00:48 +0000485 case R_386_GOT32: {
486 uint64_t V = SA - Out<ELF32LE>::Got->getVA() -
487 Out<ELF32LE>::Got->getNumEntries() * 4;
488 checkInt<32>(V, Type);
489 add32le(Loc, V);
490 break;
491 }
George Rimarbfb7bf72015-12-21 10:00:12 +0000492 case R_386_GOTOFF:
Rui Ueyama66072272015-10-15 19:52:27 +0000493 add32le(Loc, SA - Out<ELF32LE>::Got->getVA());
Rafael Espindola8acb95c2015-09-29 14:42:37 +0000494 break;
George Rimar13934772015-11-25 20:20:31 +0000495 case R_386_GOTPC:
496 add32le(Loc, SA + Out<ELF32LE>::Got->getVA() - P);
497 break;
Rafael Espindolac4010882015-09-22 20:54:08 +0000498 case R_386_PC32:
George Rimarb72a9c62015-12-10 09:03:39 +0000499 case R_386_PLT32:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000500 add32le(Loc, SA - P);
Rafael Espindolac4010882015-09-22 20:54:08 +0000501 break;
George Rimar9db204a2015-12-02 09:58:20 +0000502 case R_386_TLS_GD:
503 case R_386_TLS_LDM:
504 case R_386_TLS_TPOFF: {
505 uint64_t V = SA - Out<ELF32LE>::Got->getVA() -
506 Out<ELF32LE>::Got->getNumEntries() * 4;
507 checkInt<32>(V, Type);
508 write32le(Loc, V);
509 break;
510 }
George Rimar6f17e092015-12-17 09:32:21 +0000511 case R_386_TLS_IE:
George Rimar9db204a2015-12-02 09:58:20 +0000512 case R_386_TLS_LDO_32:
513 write32le(Loc, SA);
514 break;
George Rimard23970f2015-11-25 20:41:53 +0000515 case R_386_TLS_LE:
516 write32le(Loc, SA - Out<ELF32LE>::TlsPhdr->p_memsz);
517 break;
518 case R_386_TLS_LE_32:
519 write32le(Loc, Out<ELF32LE>::TlsPhdr->p_memsz - SA);
520 break;
Rafael Espindolac4010882015-09-22 20:54:08 +0000521 default:
Rui Ueyama64cfffd2016-01-28 18:40:06 +0000522 fatal("unrecognized reloc " + Twine(Type));
Rafael Espindolac4010882015-09-22 20:54:08 +0000523 }
524}
525
Rui Ueyamabaf16512016-01-29 00:20:12 +0000526bool X86TargetInfo::canRelaxTls(unsigned Type, const SymbolBody *S) const {
Rafael Espindola5e8b54a2016-02-22 23:16:05 +0000527 if (Config->Shared || (S && !S->IsTls))
George Rimar2558e122015-12-09 09:55:54 +0000528 return false;
529 return Type == R_386_TLS_LDO_32 || Type == R_386_TLS_LDM ||
530 Type == R_386_TLS_GD ||
George Rimar6f17e092015-12-17 09:32:21 +0000531 (Type == R_386_TLS_IE && !canBePreempted(S, true)) ||
George Rimar2558e122015-12-09 09:55:54 +0000532 (Type == R_386_TLS_GOTIE && !canBePreempted(S, true));
533}
534
Rui Ueyamac516ae12016-01-29 02:33:45 +0000535bool X86TargetInfo::needsDynRelative(unsigned Type) const {
George Rimar6f17e092015-12-17 09:32:21 +0000536 return Config->Shared && Type == R_386_TLS_IE;
537}
538
Rui Ueyamac516ae12016-01-29 02:33:45 +0000539unsigned X86TargetInfo::relaxTls(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
540 uint64_t P, uint64_t SA,
541 const SymbolBody *S) const {
George Rimar2558e122015-12-09 09:55:54 +0000542 switch (Type) {
543 case R_386_TLS_GD:
George Rimar237b2182016-01-22 18:02:28 +0000544 if (canBePreempted(S, true))
George Rimar2558e122015-12-09 09:55:54 +0000545 relocateTlsGdToIe(Loc, BufEnd, P, SA);
546 else
547 relocateTlsGdToLe(Loc, BufEnd, P, SA);
548 // The next relocation should be against __tls_get_addr, so skip it
549 return 1;
550 case R_386_TLS_GOTIE:
George Rimar6f17e092015-12-17 09:32:21 +0000551 case R_386_TLS_IE:
552 relocateTlsIeToLe(Type, Loc, BufEnd, P, SA);
George Rimar2558e122015-12-09 09:55:54 +0000553 return 0;
554 case R_386_TLS_LDM:
555 relocateTlsLdToLe(Loc, BufEnd, P, SA);
556 // The next relocation should be against __tls_get_addr, so skip it
557 return 1;
558 case R_386_TLS_LDO_32:
559 relocateOne(Loc, BufEnd, R_386_TLS_LE, P, SA);
560 return 0;
561 }
562 llvm_unreachable("Unknown TLS optimization");
563}
564
565// "Ulrich Drepper, ELF Handling For Thread-Local Storage" (5.1
566// IA-32 Linker Optimizations, http://www.akkadia.org/drepper/tls.pdf) shows
567// how GD can be optimized to IE:
568// leal x@tlsgd(, %ebx, 1),
569// call __tls_get_addr@plt
570// Is converted to:
571// movl %gs:0, %eax
572// addl x@gotntpoff(%ebx), %eax
573void X86TargetInfo::relocateTlsGdToIe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
574 uint64_t SA) const {
575 const uint8_t Inst[] = {
576 0x65, 0xa1, 0x00, 0x00, 0x00, 0x00, // movl %gs:0, %eax
577 0x03, 0x83, 0x00, 0x00, 0x00, 0x00 // addl 0(%ebx), %eax
578 };
579 memcpy(Loc - 3, Inst, sizeof(Inst));
580 relocateOne(Loc + 5, BufEnd, R_386_32, P,
581 SA - Out<ELF32LE>::Got->getVA() -
582 Out<ELF32LE>::Got->getNumEntries() * 4);
583}
584
585// GD can be optimized to LE:
586// leal x@tlsgd(, %ebx, 1),
587// call __tls_get_addr@plt
588// Can be converted to:
589// movl %gs:0,%eax
590// addl $x@ntpoff,%eax
591// But gold emits subl $foo@tpoff,%eax instead of addl.
592// These instructions are completely equal in behavior.
593// This method generates subl to be consistent with gold.
594void X86TargetInfo::relocateTlsGdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
595 uint64_t SA) const {
596 const uint8_t Inst[] = {
597 0x65, 0xa1, 0x00, 0x00, 0x00, 0x00, // movl %gs:0, %eax
598 0x81, 0xe8, 0x00, 0x00, 0x00, 0x00 // subl 0(%ebx), %eax
599 };
600 memcpy(Loc - 3, Inst, sizeof(Inst));
601 relocateOne(Loc + 5, BufEnd, R_386_32, P,
602 Out<ELF32LE>::TlsPhdr->p_memsz - SA);
603}
604
605// LD can be optimized to LE:
606// leal foo(%reg),%eax
607// call ___tls_get_addr
608// Is converted to:
609// movl %gs:0,%eax
610// nop
611// leal 0(%esi,1),%esi
612void X86TargetInfo::relocateTlsLdToLe(uint8_t *Loc, uint8_t *BufEnd, uint64_t P,
613 uint64_t SA) const {
614 const uint8_t Inst[] = {
615 0x65, 0xa1, 0x00, 0x00, 0x00, 0x00, // movl %gs:0,%eax
616 0x90, // nop
617 0x8d, 0x74, 0x26, 0x00 // leal 0(%esi,1),%esi
618 };
619 memcpy(Loc - 2, Inst, sizeof(Inst));
620}
621
George Rimar6f17e092015-12-17 09:32:21 +0000622// In some conditions, relocations can be optimized to avoid using GOT.
623// This function does that for Initial Exec to Local Exec case.
624// Read "ELF Handling For Thread-Local Storage, 5.1
625// IA-32 Linker Optimizations" (http://www.akkadia.org/drepper/tls.pdf)
George Rimar2558e122015-12-09 09:55:54 +0000626// by Ulrich Drepper for details.
George Rimar6f17e092015-12-17 09:32:21 +0000627void X86TargetInfo::relocateTlsIeToLe(unsigned Type, uint8_t *Loc,
628 uint8_t *BufEnd, uint64_t P,
George Rimar2558e122015-12-09 09:55:54 +0000629 uint64_t SA) const {
George Rimar6f17e092015-12-17 09:32:21 +0000630 // Ulrich's document section 6.2 says that @gotntpoff can
631 // be used with MOVL or ADDL instructions.
632 // @indntpoff is similar to @gotntpoff, but for use in
633 // position dependent code.
George Rimar2558e122015-12-09 09:55:54 +0000634 uint8_t *Inst = Loc - 2;
George Rimar6f17e092015-12-17 09:32:21 +0000635 uint8_t *Op = Loc - 1;
George Rimar2558e122015-12-09 09:55:54 +0000636 uint8_t Reg = (Loc[-1] >> 3) & 7;
637 bool IsMov = *Inst == 0x8b;
George Rimar6f17e092015-12-17 09:32:21 +0000638 if (Type == R_386_TLS_IE) {
639 // For R_386_TLS_IE relocation we perform the next transformations:
640 // MOVL foo@INDNTPOFF,%EAX is transformed to MOVL $foo,%EAX
641 // MOVL foo@INDNTPOFF,%REG is transformed to MOVL $foo,%REG
642 // ADDL foo@INDNTPOFF,%REG is transformed to ADDL $foo,%REG
643 // First one is special because when EAX is used the sequence is 5 bytes
644 // long, otherwise it is 6 bytes.
645 if (*Op == 0xa1) {
646 *Op = 0xb8;
647 } else {
648 *Inst = IsMov ? 0xc7 : 0x81;
649 *Op = 0xc0 | ((*Op >> 3) & 7);
650 }
651 } else {
652 // R_386_TLS_GOTIE relocation can be optimized to
653 // R_386_TLS_LE so that it does not use GOT.
654 // "MOVL foo@GOTTPOFF(%RIP), %REG" is transformed to "MOVL $foo, %REG".
655 // "ADDL foo@GOTNTPOFF(%RIP), %REG" is transformed to "LEAL foo(%REG), %REG"
656 // Note: gold converts to ADDL instead of LEAL.
657 *Inst = IsMov ? 0xc7 : 0x8d;
658 if (IsMov)
659 *Op = 0xc0 | ((*Op >> 3) & 7);
660 else
661 *Op = 0x80 | Reg | (Reg << 3);
662 }
George Rimar2558e122015-12-09 09:55:54 +0000663 relocateOne(Loc, BufEnd, R_386_TLS_LE, P, SA);
664}
665
Rafael Espindola7f074422015-09-22 21:35:51 +0000666X86_64TargetInfo::X86_64TargetInfo() {
Rui Ueyama724d6252016-01-29 01:49:32 +0000667 CopyRel = R_X86_64_COPY;
668 GotRel = R_X86_64_GLOB_DAT;
669 PltRel = R_X86_64_JUMP_SLOT;
670 RelativeRel = R_X86_64_RELATIVE;
671 IRelativeRel = R_X86_64_IRELATIVE;
672 TlsGotRel = R_X86_64_TPOFF64;
Rui Ueyama724d6252016-01-29 01:49:32 +0000673 TlsModuleIndexRel = R_X86_64_DTPMOD64;
674 TlsOffsetRel = R_X86_64_DTPOFF64;
675 UseLazyBinding = true;
George Rimar648a2c32015-10-20 08:54:27 +0000676 PltEntrySize = 16;
Rui Ueyama62515452016-01-29 03:00:32 +0000677 PltZeroSize = 16;
George Rimar648a2c32015-10-20 08:54:27 +0000678}
679
Rui Ueyamac516ae12016-01-29 02:33:45 +0000680void X86_64TargetInfo::writeGotPltHeader(uint8_t *Buf) const {
Igor Kudrin351b41d2015-11-16 17:44:08 +0000681 write64le(Buf, Out<ELF64LE>::Dynamic->getVA());
682}
683
Rui Ueyamac516ae12016-01-29 02:33:45 +0000684void X86_64TargetInfo::writeGotPlt(uint8_t *Buf, uint64_t Plt) const {
Rui Ueyamacf375932016-01-29 23:58:03 +0000685 // See comments in X86TargetInfo::writeGotPlt.
George Rimar648a2c32015-10-20 08:54:27 +0000686 write32le(Buf, Plt + 6);
687}
688
Rui Ueyama900e2d22016-01-29 03:51:49 +0000689void X86_64TargetInfo::writePltZero(uint8_t *Buf) const {
George Rimar648a2c32015-10-20 08:54:27 +0000690 const uint8_t PltData[] = {
691 0xff, 0x35, 0x00, 0x00, 0x00, 0x00, // pushq GOT+8(%rip)
692 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, // jmp *GOT+16(%rip)
693 0x0f, 0x1f, 0x40, 0x00 // nopl 0x0(rax)
694 };
695 memcpy(Buf, PltData, sizeof(PltData));
Rui Ueyama900e2d22016-01-29 03:51:49 +0000696 uint64_t Got = Out<ELF64LE>::GotPlt->getVA();
697 uint64_t Plt = Out<ELF64LE>::Plt->getVA();
698 write32le(Buf + 2, Got - Plt + 2); // GOT+8
699 write32le(Buf + 8, Got - Plt + 4); // GOT+16
Rafael Espindola7f074422015-09-22 21:35:51 +0000700}
Rafael Espindola01205f72015-09-22 18:19:46 +0000701
Rui Ueyama9398f862016-01-29 04:15:02 +0000702void X86_64TargetInfo::writePlt(uint8_t *Buf, uint64_t GotEntryAddr,
703 uint64_t PltEntryAddr, int32_t Index,
704 unsigned RelOff) const {
George Rimar648a2c32015-10-20 08:54:27 +0000705 const uint8_t Inst[] = {
706 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, // jmpq *got(%rip)
707 0x68, 0x00, 0x00, 0x00, 0x00, // pushq <relocation index>
708 0xe9, 0x00, 0x00, 0x00, 0x00 // jmpq plt[0]
709 };
Rui Ueyama1500a902015-09-29 23:00:47 +0000710 memcpy(Buf, Inst, sizeof(Inst));
Rafael Espindola01205f72015-09-22 18:19:46 +0000711
George Rimar648a2c32015-10-20 08:54:27 +0000712 write32le(Buf + 2, GotEntryAddr - PltEntryAddr - 6);
713 write32le(Buf + 7, Index);
Rui Ueyama62515452016-01-29 03:00:32 +0000714 write32le(Buf + 12, -Index * PltEntrySize - PltZeroSize - 16);
Rafael Espindola01205f72015-09-22 18:19:46 +0000715}
716
Rafael Espindolafb1533b2016-02-22 21:23:29 +0000717bool X86_64TargetInfo::needsCopyRelImpl(uint32_t Type) const {
718 return Type == R_X86_64_32S || Type == R_X86_64_32 || Type == R_X86_64_PC32 ||
719 Type == R_X86_64_64;
George Rimarbc590fe2015-10-28 16:48:58 +0000720}
721
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000722bool X86_64TargetInfo::refersToGotEntry(uint32_t Type) const {
723 return Type == R_X86_64_GOTPCREL;
724}
725
Rafael Espindolaa0a65f92016-02-09 15:11:01 +0000726bool X86_64TargetInfo::needsGot(uint32_t Type, SymbolBody &S) const {
George Rimar25411f252015-12-04 11:20:13 +0000727 if (Type == R_X86_64_TLSGD)
Rui Ueyamabaf16512016-01-29 00:20:12 +0000728 return Target->canRelaxTls(Type, &S) && canBePreempted(&S, true);
George Rimar77d1cb12015-11-24 09:00:06 +0000729 if (Type == R_X86_64_GOTTPOFF)
Rui Ueyamabaf16512016-01-29 00:20:12 +0000730 return !canRelaxTls(Type, &S);
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000731 return refersToGotEntry(Type) || needsPlt<ELF64LE>(Type, S);
Rafael Espindola01205f72015-09-22 18:19:46 +0000732}
733
George Rimar2960c982016-02-11 11:14:46 +0000734unsigned X86_64TargetInfo::getTlsGotRel(unsigned Type) const {
735 // No other types of TLS relocations requiring GOT should
736 // reach here.
737 assert(Type == R_X86_64_GOTTPOFF);
738 return R_X86_64_PC32;
739}
740
Adhemerval Zanella74bcf032016-02-12 13:43:03 +0000741bool X86_64TargetInfo::isTlsGlobalDynamicRel(unsigned Type) const {
742 return Type == R_X86_64_TLSGD;
743}
744
745bool X86_64TargetInfo::isTlsLocalDynamicRel(unsigned Type) const {
746 return Type == R_X86_64_TLSLD;
747}
748
Rui Ueyamac516ae12016-01-29 02:33:45 +0000749bool X86_64TargetInfo::isTlsDynRel(unsigned Type, const SymbolBody &S) const {
George Rimar25411f252015-12-04 11:20:13 +0000750 return Type == R_X86_64_GOTTPOFF || Type == R_X86_64_TLSGD;
George Rimard23970f2015-11-25 20:41:53 +0000751}
752
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000753bool X86_64TargetInfo::needsPltImpl(uint32_t Type, const SymbolBody &S) const {
Rafael Espindola01205f72015-09-22 18:19:46 +0000754 switch (Type) {
755 default:
Rafael Espindola852860e2016-02-12 15:47:37 +0000756 return Plt_No;
Rafael Espindola01205f72015-09-22 18:19:46 +0000757 case R_X86_64_PLT32:
Rafael Espindola852860e2016-02-12 15:47:37 +0000758 if (canBePreempted(&S, true))
Rafael Espindola795dc5a2016-02-24 18:24:23 +0000759 return true;
760 return false;
Rafael Espindola01205f72015-09-22 18:19:46 +0000761 }
762}
Rafael Espindolac4010882015-09-22 20:54:08 +0000763
Rafael Espindolaae244002015-10-05 19:30:12 +0000764bool X86_64TargetInfo::isRelRelative(uint32_t Type) const {
765 switch (Type) {
766 default:
767 return false;
Michael J. Spencera5d9d1f2015-11-11 01:27:58 +0000768 case R_X86_64_DTPOFF32:
Michael J. Spencerac2307b2015-11-11 01:28:11 +0000769 case R_X86_64_DTPOFF64:
Igor Kudrinb4a09272015-12-01 08:41:20 +0000770 case R_X86_64_PC8:
771 case R_X86_64_PC16:
772 case R_X86_64_PC32:
773 case R_X86_64_PC64:
774 case R_X86_64_PLT32:
Rafael Espindolaae244002015-10-05 19:30:12 +0000775 return true;
776 }
777}
778
Rui Ueyamac516ae12016-01-29 02:33:45 +0000779bool X86_64TargetInfo::isSizeRel(uint32_t Type) const {
Rui Ueyama3a7c2f62016-01-08 00:13:23 +0000780 return Type == R_X86_64_SIZE32 || Type == R_X86_64_SIZE64;
George Rimar48651482015-12-11 08:59:37 +0000781}
782
Rui Ueyamabaf16512016-01-29 00:20:12 +0000783bool X86_64TargetInfo::canRelaxTls(unsigned Type, const SymbolBody *S) const {
Rafael Espindola5e8b54a2016-02-22 23:16:05 +0000784 if (Config->Shared || (S && !S->IsTls))
George Rimar77d1cb12015-11-24 09:00:06 +0000785 return false;
George Rimar25411f252015-12-04 11:20:13 +0000786 return Type == R_X86_64_TLSGD || Type == R_X86_64_TLSLD ||
787 Type == R_X86_64_DTPOFF32 ||
George Rimar6713cf82015-11-25 21:46:05 +0000788 (Type == R_X86_64_GOTTPOFF && !canBePreempted(S, true));
789}
790
791// "Ulrich Drepper, ELF Handling For Thread-Local Storage" (5.5
792// x86-x64 linker optimizations, http://www.akkadia.org/drepper/tls.pdf) shows
793// how LD can be optimized to LE:
794// leaq bar@tlsld(%rip), %rdi
795// callq __tls_get_addr@PLT
796// leaq bar@dtpoff(%rax), %rcx
797// Is converted to:
798// .word 0x6666
799// .byte 0x66
800// mov %fs:0,%rax
801// leaq bar@tpoff(%rax), %rcx
802void X86_64TargetInfo::relocateTlsLdToLe(uint8_t *Loc, uint8_t *BufEnd,
803 uint64_t P, uint64_t SA) const {
804 const uint8_t Inst[] = {
805 0x66, 0x66, //.word 0x6666
806 0x66, //.byte 0x66
807 0x64, 0x48, 0x8b, 0x04, 0x25, 0x00, 0x00, 0x00, 0x00 // mov %fs:0,%rax
808 };
809 memcpy(Loc - 3, Inst, sizeof(Inst));
810}
811
812// "Ulrich Drepper, ELF Handling For Thread-Local Storage" (5.5
813// x86-x64 linker optimizations, http://www.akkadia.org/drepper/tls.pdf) shows
814// how GD can be optimized to LE:
815// .byte 0x66
816// leaq x@tlsgd(%rip), %rdi
817// .word 0x6666
818// rex64
819// call __tls_get_addr@plt
820// Is converted to:
821// mov %fs:0x0,%rax
822// lea x@tpoff,%rax
823void X86_64TargetInfo::relocateTlsGdToLe(uint8_t *Loc, uint8_t *BufEnd,
824 uint64_t P, uint64_t SA) const {
825 const uint8_t Inst[] = {
826 0x64, 0x48, 0x8b, 0x04, 0x25, 0x00, 0x00, 0x00, 0x00, // mov %fs:0x0,%rax
827 0x48, 0x8d, 0x80, 0x00, 0x00, 0x00, 0x00 // lea x@tpoff,%rax
828 };
829 memcpy(Loc - 4, Inst, sizeof(Inst));
830 relocateOne(Loc + 8, BufEnd, R_X86_64_TPOFF32, P, SA);
George Rimar77d1cb12015-11-24 09:00:06 +0000831}
832
George Rimar25411f252015-12-04 11:20:13 +0000833// "Ulrich Drepper, ELF Handling For Thread-Local Storage" (5.5
834// x86-x64 linker optimizations, http://www.akkadia.org/drepper/tls.pdf) shows
835// how GD can be optimized to IE:
836// .byte 0x66
837// leaq x@tlsgd(%rip), %rdi
838// .word 0x6666
839// rex64
840// call __tls_get_addr@plt
841// Is converted to:
842// mov %fs:0x0,%rax
843// addq x@tpoff,%rax
844void X86_64TargetInfo::relocateTlsGdToIe(uint8_t *Loc, uint8_t *BufEnd,
845 uint64_t P, uint64_t SA) const {
846 const uint8_t Inst[] = {
847 0x64, 0x48, 0x8b, 0x04, 0x25, 0x00, 0x00, 0x00, 0x00, // mov %fs:0x0,%rax
848 0x48, 0x03, 0x05, 0x00, 0x00, 0x00, 0x00 // addq x@tpoff,%rax
849 };
850 memcpy(Loc - 4, Inst, sizeof(Inst));
George Rimar2960c982016-02-11 11:14:46 +0000851 relocateOne(Loc + 8, BufEnd, R_X86_64_PC32, P + 12, SA);
George Rimar25411f252015-12-04 11:20:13 +0000852}
853
George Rimar77d1cb12015-11-24 09:00:06 +0000854// In some conditions, R_X86_64_GOTTPOFF relocation can be optimized to
George Rimarc55b4e22015-12-07 16:54:56 +0000855// R_X86_64_TPOFF32 so that it does not use GOT.
George Rimar77d1cb12015-11-24 09:00:06 +0000856// This function does that. Read "ELF Handling For Thread-Local Storage,
857// 5.5 x86-x64 linker optimizations" (http://www.akkadia.org/drepper/tls.pdf)
858// by Ulrich Drepper for details.
George Rimar6713cf82015-11-25 21:46:05 +0000859void X86_64TargetInfo::relocateTlsIeToLe(uint8_t *Loc, uint8_t *BufEnd,
860 uint64_t P, uint64_t SA) const {
George Rimar77d1cb12015-11-24 09:00:06 +0000861 // Ulrich's document section 6.5 says that @gottpoff(%rip) must be
862 // used in MOVQ or ADDQ instructions only.
863 // "MOVQ foo@GOTTPOFF(%RIP), %REG" is transformed to "MOVQ $foo, %REG".
864 // "ADDQ foo@GOTTPOFF(%RIP), %REG" is transformed to "LEAQ foo(%REG), %REG"
865 // (if the register is not RSP/R12) or "ADDQ $foo, %RSP".
866 // Opcodes info can be found at http://ref.x86asm.net/coder64.html#x48.
867 uint8_t *Prefix = Loc - 3;
868 uint8_t *Inst = Loc - 2;
869 uint8_t *RegSlot = Loc - 1;
870 uint8_t Reg = Loc[-1] >> 3;
871 bool IsMov = *Inst == 0x8b;
872 bool RspAdd = !IsMov && Reg == 4;
873 // r12 and rsp registers requires special handling.
874 // Problem is that for other registers, for example leaq 0xXXXXXXXX(%r11),%r11
875 // result out is 7 bytes: 4d 8d 9b XX XX XX XX,
876 // but leaq 0xXXXXXXXX(%r12),%r12 is 8 bytes: 4d 8d a4 24 XX XX XX XX.
877 // The same true for rsp. So we convert to addq for them, saving 1 byte that
878 // we dont have.
879 if (RspAdd)
880 *Inst = 0x81;
881 else
882 *Inst = IsMov ? 0xc7 : 0x8d;
883 if (*Prefix == 0x4c)
884 *Prefix = (IsMov || RspAdd) ? 0x49 : 0x4d;
885 *RegSlot = (IsMov || RspAdd) ? (0xc0 | Reg) : (0x80 | Reg | (Reg << 3));
886 relocateOne(Loc, BufEnd, R_X86_64_TPOFF32, P, SA);
887}
888
George Rimar6713cf82015-11-25 21:46:05 +0000889// This function applies a TLS relocation with an optimization as described
890// in the Ulrich's document. As a result of rewriting instructions at the
891// relocation target, relocations immediately follow the TLS relocation (which
892// would be applied to rewritten instructions) may have to be skipped.
893// This function returns a number of relocations that need to be skipped.
Rui Ueyamac516ae12016-01-29 02:33:45 +0000894unsigned X86_64TargetInfo::relaxTls(uint8_t *Loc, uint8_t *BufEnd,
895 uint32_t Type, uint64_t P, uint64_t SA,
896 const SymbolBody *S) const {
George Rimar6713cf82015-11-25 21:46:05 +0000897 switch (Type) {
Igor Kudrinb4a09272015-12-01 08:41:20 +0000898 case R_X86_64_DTPOFF32:
899 relocateOne(Loc, BufEnd, R_X86_64_TPOFF32, P, SA);
900 return 0;
George Rimar6713cf82015-11-25 21:46:05 +0000901 case R_X86_64_GOTTPOFF:
902 relocateTlsIeToLe(Loc, BufEnd, P, SA);
903 return 0;
George Rimar25411f252015-12-04 11:20:13 +0000904 case R_X86_64_TLSGD: {
George Rimar237b2182016-01-22 18:02:28 +0000905 if (canBePreempted(S, true))
George Rimar25411f252015-12-04 11:20:13 +0000906 relocateTlsGdToIe(Loc, BufEnd, P, SA);
907 else
908 relocateTlsGdToLe(Loc, BufEnd, P, SA);
George Rimar6713cf82015-11-25 21:46:05 +0000909 // The next relocation should be against __tls_get_addr, so skip it
910 return 1;
George Rimar25411f252015-12-04 11:20:13 +0000911 }
Igor Kudrinb4a09272015-12-01 08:41:20 +0000912 case R_X86_64_TLSLD:
913 relocateTlsLdToLe(Loc, BufEnd, P, SA);
914 // The next relocation should be against __tls_get_addr, so skip it
915 return 1;
George Rimar6713cf82015-11-25 21:46:05 +0000916 }
917 llvm_unreachable("Unknown TLS optimization");
918}
919
Rui Ueyama96f0e0b2015-10-23 02:40:46 +0000920void X86_64TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
George Rimar48651482015-12-11 08:59:37 +0000921 uint64_t P, uint64_t SA, uint64_t ZA,
Simon Atanasyan09b3e362015-12-01 21:24:45 +0000922 uint8_t *PairedLoc) const {
Rafael Espindolac4010882015-09-22 20:54:08 +0000923 switch (Type) {
Rui Ueyama3835b492015-10-23 16:13:27 +0000924 case R_X86_64_32:
Igor Kudrin9b7e7db2015-11-26 09:49:44 +0000925 checkUInt<32>(SA, Type);
926 write32le(Loc, SA);
927 break;
Rafael Espindolac4010882015-09-22 20:54:08 +0000928 case R_X86_64_32S:
Igor Kudrin9b7e7db2015-11-26 09:49:44 +0000929 checkInt<32>(SA, Type);
Rui Ueyama66072272015-10-15 19:52:27 +0000930 write32le(Loc, SA);
Rafael Espindolac4010882015-09-22 20:54:08 +0000931 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +0000932 case R_X86_64_64:
Rui Ueyamad41cb952016-02-10 22:00:21 +0000933 case R_X86_64_DTPOFF64:
Igor Kudrinb4a09272015-12-01 08:41:20 +0000934 write64le(Loc, SA);
935 break;
Michael J. Spencera5d9d1f2015-11-11 01:27:58 +0000936 case R_X86_64_DTPOFF32:
937 write32le(Loc, SA);
938 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +0000939 case R_X86_64_GOTPCREL:
940 case R_X86_64_PC32:
941 case R_X86_64_PLT32:
942 case R_X86_64_TLSGD:
943 case R_X86_64_TLSLD:
944 write32le(Loc, SA - P);
945 break;
George Rimar48651482015-12-11 08:59:37 +0000946 case R_X86_64_SIZE32:
947 write32le(Loc, ZA);
948 break;
949 case R_X86_64_SIZE64:
950 write64le(Loc, ZA);
951 break;
Rafael Espindolaac1c0f82015-11-05 15:22:26 +0000952 case R_X86_64_TPOFF32: {
Rafael Espindolaea7a1e902015-11-06 22:14:44 +0000953 uint64_t Val = SA - Out<ELF64LE>::TlsPhdr->p_memsz;
Igor Kudrin9b7e7db2015-11-26 09:49:44 +0000954 checkInt<32>(Val, Type);
Rafael Espindolaac1c0f82015-11-05 15:22:26 +0000955 write32le(Loc, Val);
Michael J. Spencerd77f0d22015-11-03 22:39:09 +0000956 break;
Rafael Espindolaac1c0f82015-11-05 15:22:26 +0000957 }
Rafael Espindolac4010882015-09-22 20:54:08 +0000958 default:
Rui Ueyama64cfffd2016-01-28 18:40:06 +0000959 fatal("unrecognized reloc " + Twine(Type));
Rafael Espindolac4010882015-09-22 20:54:08 +0000960 }
961}
962
Hal Finkel3c8cc672015-10-12 20:56:18 +0000963// Relocation masks following the #lo(value), #hi(value), #ha(value),
964// #higher(value), #highera(value), #highest(value), and #highesta(value)
965// macros defined in section 4.5.1. Relocation Types of the PPC-elf64abi
966// document.
Rui Ueyamac44e5a12015-10-23 16:54:58 +0000967static uint16_t applyPPCLo(uint64_t V) { return V; }
968static uint16_t applyPPCHi(uint64_t V) { return V >> 16; }
969static uint16_t applyPPCHa(uint64_t V) { return (V + 0x8000) >> 16; }
970static uint16_t applyPPCHigher(uint64_t V) { return V >> 32; }
971static uint16_t applyPPCHighera(uint64_t V) { return (V + 0x8000) >> 32; }
Hal Finkel3c8cc672015-10-12 20:56:18 +0000972static uint16_t applyPPCHighest(uint64_t V) { return V >> 48; }
Hal Finkel3c8cc672015-10-12 20:56:18 +0000973static uint16_t applyPPCHighesta(uint64_t V) { return (V + 0x8000) >> 48; }
974
Davide Italiano8c3444362016-01-11 19:45:33 +0000975PPCTargetInfo::PPCTargetInfo() {}
Davide Italiano8c3444362016-01-11 19:45:33 +0000976bool PPCTargetInfo::isRelRelative(uint32_t Type) const { return false; }
977
978void PPCTargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
979 uint64_t P, uint64_t SA, uint64_t ZA,
980 uint8_t *PairedLoc) const {
981 switch (Type) {
982 case R_PPC_ADDR16_HA:
983 write16be(Loc, applyPPCHa(SA));
984 break;
985 case R_PPC_ADDR16_LO:
986 write16be(Loc, applyPPCLo(SA));
987 break;
988 default:
Rui Ueyama64cfffd2016-01-28 18:40:06 +0000989 fatal("unrecognized reloc " + Twine(Type));
Davide Italiano8c3444362016-01-11 19:45:33 +0000990 }
991}
992
Rafael Espindolac4010882015-09-22 20:54:08 +0000993PPC64TargetInfo::PPC64TargetInfo() {
Rui Ueyama724d6252016-01-29 01:49:32 +0000994 GotRel = R_PPC64_GLOB_DAT;
995 RelativeRel = R_PPC64_RELATIVE;
Hal Finkel6c2a3b82015-10-08 21:51:31 +0000996 PltEntrySize = 32;
Hal Finkelc848b322015-10-12 19:34:29 +0000997
998 // We need 64K pages (at least under glibc/Linux, the loader won't
999 // set different permissions on a finer granularity than that).
Hal Finkele3c26262015-10-08 22:23:54 +00001000 PageSize = 65536;
Hal Finkel736c7412015-10-15 07:49:07 +00001001
1002 // The PPC64 ELF ABI v1 spec, says:
1003 //
1004 // It is normally desirable to put segments with different characteristics
1005 // in separate 256 Mbyte portions of the address space, to give the
1006 // operating system full paging flexibility in the 64-bit address space.
1007 //
1008 // And because the lowest non-zero 256M boundary is 0x10000000, PPC64 linkers
1009 // use 0x10000000 as the starting address.
1010 VAStart = 0x10000000;
Rafael Espindolac4010882015-09-22 20:54:08 +00001011}
Hal Finkel3c8cc672015-10-12 20:56:18 +00001012
Hal Finkel6f97c2b2015-10-16 21:55:40 +00001013uint64_t getPPC64TocBase() {
Hal Finkel3c8cc672015-10-12 20:56:18 +00001014 // The TOC consists of sections .got, .toc, .tocbss, .plt in that
1015 // order. The TOC starts where the first of these sections starts.
1016
1017 // FIXME: This obviously does not do the right thing when there is no .got
1018 // section, but there is a .toc or .tocbss section.
1019 uint64_t TocVA = Out<ELF64BE>::Got->getVA();
1020 if (!TocVA)
1021 TocVA = Out<ELF64BE>::Plt->getVA();
1022
1023 // Per the ppc64-elf-linux ABI, The TOC base is TOC value plus 0x8000
1024 // thus permitting a full 64 Kbytes segment. Note that the glibc startup
1025 // code (crt1.o) assumes that you can get from the TOC base to the
1026 // start of the .toc section with only a single (signed) 16-bit relocation.
1027 return TocVA + 0x8000;
1028}
1029
Rui Ueyama9398f862016-01-29 04:15:02 +00001030void PPC64TargetInfo::writePlt(uint8_t *Buf, uint64_t GotEntryAddr,
1031 uint64_t PltEntryAddr, int32_t Index,
1032 unsigned RelOff) const {
Hal Finkel3c8cc672015-10-12 20:56:18 +00001033 uint64_t Off = GotEntryAddr - getPPC64TocBase();
1034
1035 // FIXME: What we should do, in theory, is get the offset of the function
1036 // descriptor in the .opd section, and use that as the offset from %r2 (the
1037 // TOC-base pointer). Instead, we have the GOT-entry offset, and that will
1038 // be a pointer to the function descriptor in the .opd section. Using
1039 // this scheme is simpler, but requires an extra indirection per PLT dispatch.
1040
Hal Finkelfa92f682015-10-13 21:47:34 +00001041 write32be(Buf, 0xf8410028); // std %r2, 40(%r1)
Hal Finkel3c8cc672015-10-12 20:56:18 +00001042 write32be(Buf + 4, 0x3d620000 | applyPPCHa(Off)); // addis %r11, %r2, X@ha
1043 write32be(Buf + 8, 0xe98b0000 | applyPPCLo(Off)); // ld %r12, X@l(%r11)
1044 write32be(Buf + 12, 0xe96c0000); // ld %r11,0(%r12)
1045 write32be(Buf + 16, 0x7d6903a6); // mtctr %r11
1046 write32be(Buf + 20, 0xe84c0008); // ld %r2,8(%r12)
1047 write32be(Buf + 24, 0xe96c0010); // ld %r11,16(%r12)
1048 write32be(Buf + 28, 0x4e800420); // bctr
1049}
1050
Rafael Espindolaa0a65f92016-02-09 15:11:01 +00001051bool PPC64TargetInfo::needsGot(uint32_t Type, SymbolBody &S) const {
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001052 if (needsPlt<ELF64BE>(Type, S))
Hal Finkel3c8cc672015-10-12 20:56:18 +00001053 return true;
1054
1055 switch (Type) {
1056 default: return false;
1057 case R_PPC64_GOT16:
Hal Finkel3c8cc672015-10-12 20:56:18 +00001058 case R_PPC64_GOT16_DS:
Igor Kudrinb4a09272015-12-01 08:41:20 +00001059 case R_PPC64_GOT16_HA:
1060 case R_PPC64_GOT16_HI:
1061 case R_PPC64_GOT16_LO:
Hal Finkel3c8cc672015-10-12 20:56:18 +00001062 case R_PPC64_GOT16_LO_DS:
1063 return true;
1064 }
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +00001065}
Hal Finkel3c8cc672015-10-12 20:56:18 +00001066
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001067bool PPC64TargetInfo::needsPltImpl(uint32_t Type, const SymbolBody &S) const {
Hal Finkel3c8cc672015-10-12 20:56:18 +00001068 // These are function calls that need to be redirected through a PLT stub.
Rafael Espindola852860e2016-02-12 15:47:37 +00001069 if (Type == R_PPC64_REL24 && canBePreempted(&S, false))
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001070 return true;
1071 return false;
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +00001072}
Hal Finkel3c8cc672015-10-12 20:56:18 +00001073
Hal Finkelbe0823d2015-10-12 20:58:52 +00001074bool PPC64TargetInfo::isRelRelative(uint32_t Type) const {
1075 switch (Type) {
1076 default:
Hal Finkelbe0823d2015-10-12 20:58:52 +00001077 return true;
Hal Finkel00918622015-10-16 19:01:50 +00001078 case R_PPC64_ADDR64:
Igor Kudrinb4a09272015-12-01 08:41:20 +00001079 case R_PPC64_TOC:
Hal Finkel00918622015-10-16 19:01:50 +00001080 return false;
Hal Finkelbe0823d2015-10-12 20:58:52 +00001081 }
1082}
1083
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001084void PPC64TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
George Rimar48651482015-12-11 08:59:37 +00001085 uint64_t P, uint64_t SA, uint64_t ZA,
Simon Atanasyan09b3e362015-12-01 21:24:45 +00001086 uint8_t *PairedLoc) const {
Hal Finkel3c8cc672015-10-12 20:56:18 +00001087 uint64_t TB = getPPC64TocBase();
1088
Hal Finkel3c8cc672015-10-12 20:56:18 +00001089 // For a TOC-relative relocation, adjust the addend and proceed in terms of
1090 // the corresponding ADDR16 relocation type.
Rafael Espindola3efa4e92015-09-22 21:12:55 +00001091 switch (Type) {
Rafael Espindola826941a2015-10-15 18:19:39 +00001092 case R_PPC64_TOC16: Type = R_PPC64_ADDR16; SA -= TB; break;
1093 case R_PPC64_TOC16_DS: Type = R_PPC64_ADDR16_DS; SA -= TB; break;
Igor Kudrinb4a09272015-12-01 08:41:20 +00001094 case R_PPC64_TOC16_HA: Type = R_PPC64_ADDR16_HA; SA -= TB; break;
1095 case R_PPC64_TOC16_HI: Type = R_PPC64_ADDR16_HI; SA -= TB; break;
Rafael Espindola826941a2015-10-15 18:19:39 +00001096 case R_PPC64_TOC16_LO: Type = R_PPC64_ADDR16_LO; SA -= TB; break;
1097 case R_PPC64_TOC16_LO_DS: Type = R_PPC64_ADDR16_LO_DS; SA -= TB; break;
Hal Finkel3c8cc672015-10-12 20:56:18 +00001098 default: break;
1099 }
1100
Hal Finkel3c8cc672015-10-12 20:56:18 +00001101 switch (Type) {
Igor Kudrinb4a09272015-12-01 08:41:20 +00001102 case R_PPC64_ADDR14: {
1103 checkAlignment<4>(SA, Type);
1104 // Preserve the AA/LK bits in the branch instruction
1105 uint8_t AALK = Loc[3];
1106 write16be(Loc + 2, (AALK & 3) | (SA & 0xfffc));
1107 break;
1108 }
Hal Finkel3c8cc672015-10-12 20:56:18 +00001109 case R_PPC64_ADDR16:
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001110 checkInt<16>(SA, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001111 write16be(Loc, SA);
Rafael Espindola3efa4e92015-09-22 21:12:55 +00001112 break;
Hal Finkel3c8cc672015-10-12 20:56:18 +00001113 case R_PPC64_ADDR16_DS:
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001114 checkInt<16>(SA, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001115 write16be(Loc, (read16be(Loc) & 3) | (SA & ~3));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001116 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +00001117 case R_PPC64_ADDR16_HA:
1118 write16be(Loc, applyPPCHa(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001119 break;
1120 case R_PPC64_ADDR16_HI:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001121 write16be(Loc, applyPPCHi(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001122 break;
Hal Finkel3c8cc672015-10-12 20:56:18 +00001123 case R_PPC64_ADDR16_HIGHER:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001124 write16be(Loc, applyPPCHigher(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001125 break;
1126 case R_PPC64_ADDR16_HIGHERA:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001127 write16be(Loc, applyPPCHighera(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001128 break;
1129 case R_PPC64_ADDR16_HIGHEST:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001130 write16be(Loc, applyPPCHighest(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001131 break;
1132 case R_PPC64_ADDR16_HIGHESTA:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001133 write16be(Loc, applyPPCHighesta(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001134 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +00001135 case R_PPC64_ADDR16_LO:
1136 write16be(Loc, applyPPCLo(SA));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001137 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +00001138 case R_PPC64_ADDR16_LO_DS:
1139 write16be(Loc, (read16be(Loc) & 3) | (applyPPCLo(SA) & ~3));
Hal Finkel3c8cc672015-10-12 20:56:18 +00001140 break;
1141 case R_PPC64_ADDR32:
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001142 checkInt<32>(SA, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001143 write32be(Loc, SA);
Hal Finkel3c8cc672015-10-12 20:56:18 +00001144 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +00001145 case R_PPC64_ADDR64:
1146 write64be(Loc, SA);
1147 break;
1148 case R_PPC64_REL16_HA:
1149 write16be(Loc, applyPPCHa(SA - P));
1150 break;
1151 case R_PPC64_REL16_HI:
1152 write16be(Loc, applyPPCHi(SA - P));
1153 break;
1154 case R_PPC64_REL16_LO:
1155 write16be(Loc, applyPPCLo(SA - P));
1156 break;
Hal Finkel3c8cc672015-10-12 20:56:18 +00001157 case R_PPC64_REL24: {
Hal Finkel82281982015-10-17 00:48:20 +00001158 // If we have an undefined weak symbol, we might get here with a symbol
1159 // address of zero. That could overflow, but the code must be unreachable,
1160 // so don't bother doing anything at all.
1161 if (!SA)
1162 break;
1163
Hal Finkeldaedc122015-10-12 23:16:53 +00001164 uint64_t PltStart = Out<ELF64BE>::Plt->getVA();
1165 uint64_t PltEnd = PltStart + Out<ELF64BE>::Plt->getSize();
Rui Ueyama9e82fa22015-10-15 19:39:36 +00001166 bool InPlt = PltStart <= SA && SA < PltEnd;
Hal Finkeldaedc122015-10-12 23:16:53 +00001167
1168 if (!InPlt && Out<ELF64BE>::Opd) {
1169 // If this is a local call, and we currently have the address of a
1170 // function-descriptor, get the underlying code address instead.
1171 uint64_t OpdStart = Out<ELF64BE>::Opd->getVA();
1172 uint64_t OpdEnd = OpdStart + Out<ELF64BE>::Opd->getSize();
Rui Ueyama9e82fa22015-10-15 19:39:36 +00001173 bool InOpd = OpdStart <= SA && SA < OpdEnd;
Hal Finkeldaedc122015-10-12 23:16:53 +00001174
1175 if (InOpd)
Rui Ueyama9e82fa22015-10-15 19:39:36 +00001176 SA = read64be(&Out<ELF64BE>::OpdBuf[SA - OpdStart]);
Hal Finkeldaedc122015-10-12 23:16:53 +00001177 }
1178
Hal Finkel3c8cc672015-10-12 20:56:18 +00001179 uint32_t Mask = 0x03FFFFFC;
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001180 checkInt<24>(SA - P, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001181 write32be(Loc, (read32be(Loc) & ~Mask) | ((SA - P) & Mask));
Hal Finkel87bbd5f2015-10-12 21:19:18 +00001182
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001183 uint32_t Nop = 0x60000000;
1184 if (InPlt && Loc + 8 <= BufEnd && read32be(Loc + 4) == Nop)
1185 write32be(Loc + 4, 0xe8410028); // ld %r2, 40(%r1)
Hal Finkel3c8cc672015-10-12 20:56:18 +00001186 break;
1187 }
1188 case R_PPC64_REL32:
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001189 checkInt<32>(SA - P, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001190 write32be(Loc, SA - P);
Hal Finkel3c8cc672015-10-12 20:56:18 +00001191 break;
1192 case R_PPC64_REL64:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001193 write64be(Loc, SA - P);
Hal Finkel3c8cc672015-10-12 20:56:18 +00001194 break;
Hal Finkel6f97c2b2015-10-16 21:55:40 +00001195 case R_PPC64_TOC:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001196 write64be(Loc, SA);
Rafael Espindola3efa4e92015-09-22 21:12:55 +00001197 break;
1198 default:
Rui Ueyama64cfffd2016-01-28 18:40:06 +00001199 fatal("unrecognized reloc " + Twine(Type));
Rafael Espindola3efa4e92015-09-22 21:12:55 +00001200 }
1201}
Rafael Espindola1d6063e2015-09-22 21:24:52 +00001202
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001203AArch64TargetInfo::AArch64TargetInfo() {
Rui Ueyama724d6252016-01-29 01:49:32 +00001204 CopyRel = R_AARCH64_COPY;
Adhemerval Zanella668ad0f2016-02-23 16:54:40 +00001205 RelativeRel = R_AARCH64_RELATIVE;
Rui Ueyama724d6252016-01-29 01:49:32 +00001206 IRelativeRel = R_AARCH64_IRELATIVE;
1207 GotRel = R_AARCH64_GLOB_DAT;
1208 PltRel = R_AARCH64_JUMP_SLOT;
1209 TlsGotRel = R_AARCH64_TLS_TPREL64;
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001210 TlsModuleIndexRel = R_AARCH64_TLS_DTPMOD64;
1211 TlsOffsetRel = R_AARCH64_TLS_DTPREL64;
Rui Ueyama724d6252016-01-29 01:49:32 +00001212 UseLazyBinding = true;
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001213 PltEntrySize = 16;
Rui Ueyama62515452016-01-29 03:00:32 +00001214 PltZeroSize = 32;
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001215}
George Rimar648a2c32015-10-20 08:54:27 +00001216
Rafael Espindolaa4e35f72016-02-24 16:15:13 +00001217bool AArch64TargetInfo::isRelRelative(uint32_t Type) const {
Rafael Espindola9a3bb542016-02-24 19:58:50 +00001218 return Type == R_AARCH64_PREL32 || Type == R_AARCH64_ADR_PREL_PG_HI21 ||
Rafael Espindola40afcb52016-02-24 20:18:06 +00001219 Type == R_AARCH64_LDST8_ABS_LO12_NC ||
Rafael Espindola57ca2702016-02-24 20:52:58 +00001220 Type == R_AARCH64_LDST32_ABS_LO12_NC ||
Rafael Espindola47ed5422016-02-24 21:48:06 +00001221 Type == R_AARCH64_LDST64_ABS_LO12_NC ||
Rafael Espindolaa598a3a2016-02-24 22:07:12 +00001222 Type == R_AARCH64_ADD_ABS_LO12_NC || Type == R_AARCH64_CALL26;
Rafael Espindolaa4e35f72016-02-24 16:15:13 +00001223}
Rafael Espindola435c00f2016-02-23 20:19:44 +00001224
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001225bool AArch64TargetInfo::isTlsGlobalDynamicRel(unsigned Type) const {
1226 return Type == R_AARCH64_TLSDESC_ADR_PAGE21 ||
1227 Type == R_AARCH64_TLSDESC_LD64_LO12_NC ||
1228 Type == R_AARCH64_TLSDESC_ADD_LO12_NC ||
1229 Type == R_AARCH64_TLSDESC_CALL;
1230}
1231
Rui Ueyamac516ae12016-01-29 02:33:45 +00001232unsigned AArch64TargetInfo::getDynRel(unsigned Type) const {
Igor Kudrincfe47f52015-12-05 06:20:24 +00001233 if (Type == R_AARCH64_ABS32 || Type == R_AARCH64_ABS64)
1234 return Type;
1235 StringRef S = getELFRelocationTypeName(EM_AARCH64, Type);
Rui Ueyama21923992016-02-01 23:28:21 +00001236 error("Relocation " + S + " cannot be used when making a shared object; "
Igor Kudrincfe47f52015-12-05 06:20:24 +00001237 "recompile with -fPIC.");
Rui Ueyama21923992016-02-01 23:28:21 +00001238 // Keep it going with a dummy value so that we can find more reloc errors.
1239 return R_AARCH64_ABS32;
Igor Kudrincfe47f52015-12-05 06:20:24 +00001240}
1241
Rui Ueyamac516ae12016-01-29 02:33:45 +00001242void AArch64TargetInfo::writeGotPlt(uint8_t *Buf, uint64_t Plt) const {
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001243 write64le(Buf, Out<ELF64LE>::Plt->getVA());
1244}
1245
Rui Ueyama900e2d22016-01-29 03:51:49 +00001246void AArch64TargetInfo::writePltZero(uint8_t *Buf) const {
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001247 const uint8_t PltData[] = {
1248 0xf0, 0x7b, 0xbf, 0xa9, // stp x16, x30, [sp,#-16]!
1249 0x10, 0x00, 0x00, 0x90, // adrp x16, Page(&(.plt.got[2]))
1250 0x11, 0x02, 0x40, 0xf9, // ldr x17, [x16, Offset(&(.plt.got[2]))]
1251 0x10, 0x02, 0x00, 0x91, // add x16, x16, Offset(&(.plt.got[2]))
1252 0x20, 0x02, 0x1f, 0xd6, // br x17
1253 0x1f, 0x20, 0x03, 0xd5, // nop
1254 0x1f, 0x20, 0x03, 0xd5, // nop
1255 0x1f, 0x20, 0x03, 0xd5 // nop
1256 };
1257 memcpy(Buf, PltData, sizeof(PltData));
1258
Rui Ueyama900e2d22016-01-29 03:51:49 +00001259 uint64_t Got = Out<ELF64LE>::GotPlt->getVA();
1260 uint64_t Plt = Out<ELF64LE>::Plt->getVA();
1261 relocateOne(Buf + 4, Buf + 8, R_AARCH64_ADR_PREL_PG_HI21, Plt + 4, Got + 16);
1262 relocateOne(Buf + 8, Buf + 12, R_AARCH64_LDST64_ABS_LO12_NC, Plt + 8,
1263 Got + 16);
1264 relocateOne(Buf + 12, Buf + 16, R_AARCH64_ADD_ABS_LO12_NC, Plt + 12,
1265 Got + 16);
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001266}
1267
Rui Ueyama9398f862016-01-29 04:15:02 +00001268void AArch64TargetInfo::writePlt(uint8_t *Buf, uint64_t GotEntryAddr,
1269 uint64_t PltEntryAddr, int32_t Index,
1270 unsigned RelOff) const {
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001271 const uint8_t Inst[] = {
1272 0x10, 0x00, 0x00, 0x90, // adrp x16, Page(&(.plt.got[n]))
1273 0x11, 0x02, 0x40, 0xf9, // ldr x17, [x16, Offset(&(.plt.got[n]))]
1274 0x10, 0x02, 0x00, 0x91, // add x16, x16, Offset(&(.plt.got[n]))
1275 0x20, 0x02, 0x1f, 0xd6 // br x17
1276 };
1277 memcpy(Buf, Inst, sizeof(Inst));
1278
1279 relocateOne(Buf, Buf + 4, R_AARCH64_ADR_PREL_PG_HI21, PltEntryAddr,
1280 GotEntryAddr);
1281 relocateOne(Buf + 4, Buf + 8, R_AARCH64_LDST64_ABS_LO12_NC, PltEntryAddr + 4,
1282 GotEntryAddr);
1283 relocateOne(Buf + 8, Buf + 12, R_AARCH64_ADD_ABS_LO12_NC, PltEntryAddr + 8,
1284 GotEntryAddr);
1285}
1286
Rui Ueyama724d6252016-01-29 01:49:32 +00001287unsigned AArch64TargetInfo::getTlsGotRel(unsigned Type) const {
George Rimar2960c982016-02-11 11:14:46 +00001288 assert(Type == R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21 ||
1289 Type == R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC);
George Rimar3d737e42016-01-13 13:04:46 +00001290 return Type;
George Rimar3d737e42016-01-13 13:04:46 +00001291}
1292
Rui Ueyamac516ae12016-01-29 02:33:45 +00001293bool AArch64TargetInfo::isTlsDynRel(unsigned Type, const SymbolBody &S) const {
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001294 return Type == R_AARCH64_TLSDESC_ADR_PAGE21 ||
1295 Type == R_AARCH64_TLSDESC_LD64_LO12_NC ||
1296 Type == R_AARCH64_TLSDESC_ADD_LO12_NC ||
1297 Type == R_AARCH64_TLSDESC_CALL ||
1298 Type == R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21 ||
George Rimar3d737e42016-01-13 13:04:46 +00001299 Type == R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC;
1300}
1301
Rafael Espindolafb1533b2016-02-22 21:23:29 +00001302bool AArch64TargetInfo::needsCopyRelImpl(uint32_t Type) const {
Igor Kudrin9606d192015-12-03 08:05:35 +00001303 switch (Type) {
1304 default:
1305 return false;
1306 case R_AARCH64_ABS16:
1307 case R_AARCH64_ABS32:
1308 case R_AARCH64_ABS64:
1309 case R_AARCH64_ADD_ABS_LO12_NC:
1310 case R_AARCH64_ADR_PREL_LO21:
1311 case R_AARCH64_ADR_PREL_PG_HI21:
1312 case R_AARCH64_LDST8_ABS_LO12_NC:
Davide Italiano2dfc5fd2016-01-15 01:49:51 +00001313 case R_AARCH64_LDST16_ABS_LO12_NC:
Igor Kudrin9606d192015-12-03 08:05:35 +00001314 case R_AARCH64_LDST32_ABS_LO12_NC:
1315 case R_AARCH64_LDST64_ABS_LO12_NC:
Davide Italiano0d4fbae2016-01-14 01:30:21 +00001316 case R_AARCH64_LDST128_ABS_LO12_NC:
Rafael Espindolafb1533b2016-02-22 21:23:29 +00001317 return true;
Igor Kudrin9606d192015-12-03 08:05:35 +00001318 }
1319}
1320
Rafael Espindolaa0a65f92016-02-09 15:11:01 +00001321bool AArch64TargetInfo::needsGot(uint32_t Type, SymbolBody &S) const {
George Rimar3d737e42016-01-13 13:04:46 +00001322 switch (Type) {
1323 case R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC:
1324 case R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21:
1325 case R_AARCH64_ADR_GOT_PAGE:
1326 case R_AARCH64_LD64_GOT_LO12_NC:
1327 return true;
1328 default:
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001329 return needsPlt<ELF64LE>(Type, S);
George Rimar3d737e42016-01-13 13:04:46 +00001330 }
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +00001331}
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001332
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001333bool AArch64TargetInfo::needsPltImpl(uint32_t Type, const SymbolBody &S) const {
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001334 switch (Type) {
1335 default:
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001336 return false;
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001337 case R_AARCH64_CALL26:
George Rimar4102bfb2016-01-11 14:22:00 +00001338 case R_AARCH64_CONDBR19:
Igor Kudrinb4a09272015-12-01 08:41:20 +00001339 case R_AARCH64_JUMP26:
George Rimar1395dbd2016-01-11 14:27:05 +00001340 case R_AARCH64_TSTBR14:
Rafael Espindola852860e2016-02-12 15:47:37 +00001341 if (canBePreempted(&S, true))
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001342 return true;
1343 return false;
Igor Kudrindb7de9f2015-11-17 18:01:30 +00001344 }
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +00001345}
Davide Italiano1d750a62015-09-27 08:45:38 +00001346
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001347static void updateAArch64Addr(uint8_t *L, uint64_t Imm) {
Davide Italiano1f31a2c2015-10-02 22:00:42 +00001348 uint32_t ImmLo = (Imm & 0x3) << 29;
1349 uint32_t ImmHi = ((Imm & 0x1FFFFC) >> 2) << 5;
1350 uint64_t Mask = (0x3 << 29) | (0x7FFFF << 5);
Rui Ueyama87bc41b2015-10-06 18:54:43 +00001351 write32le(L, (read32le(L) & ~Mask) | ImmLo | ImmHi);
Davide Italiano1f31a2c2015-10-02 22:00:42 +00001352}
1353
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001354static inline void updateAArch64Add(uint8_t *L, uint64_t Imm) {
1355 or32le(L, (Imm & 0xFFF) << 10);
1356}
1357
Davide Italiano318ca222015-10-02 22:13:51 +00001358// Page(Expr) is the page address of the expression Expr, defined
1359// as (Expr & ~0xFFF). (This applies even if the machine page size
Davide Italianod9b5be42015-10-02 22:17:09 +00001360// supported by the platform has a different value.)
Davide Italianoef4be6b2015-10-06 19:01:32 +00001361static uint64_t getAArch64Page(uint64_t Expr) {
Davide Italiano318ca222015-10-02 22:13:51 +00001362 return Expr & (~static_cast<uint64_t>(0xFFF));
Davide Italiano1f31a2c2015-10-02 22:00:42 +00001363}
1364
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001365void AArch64TargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd,
Simon Atanasyan09b3e362015-12-01 21:24:45 +00001366 uint32_t Type, uint64_t P, uint64_t SA,
George Rimar48651482015-12-11 08:59:37 +00001367 uint64_t ZA, uint8_t *PairedLoc) const {
Davide Italiano1d750a62015-09-27 08:45:38 +00001368 switch (Type) {
Davide Italianodf88f962015-10-04 00:59:16 +00001369 case R_AARCH64_ABS16:
Igor Kudrinfea8ed52015-11-26 10:05:24 +00001370 checkIntUInt<16>(SA, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001371 write16le(Loc, SA);
Davide Italianodf88f962015-10-04 00:59:16 +00001372 break;
1373 case R_AARCH64_ABS32:
Igor Kudrinfea8ed52015-11-26 10:05:24 +00001374 checkIntUInt<32>(SA, Type);
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001375 write32le(Loc, SA);
Davide Italianodf88f962015-10-04 00:59:16 +00001376 break;
1377 case R_AARCH64_ABS64:
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001378 write64le(Loc, SA);
Davide Italianodf88f962015-10-04 00:59:16 +00001379 break;
Davide Italiano0b6974b2015-10-03 19:56:07 +00001380 case R_AARCH64_ADD_ABS_LO12_NC:
Davide Italianoa7165742015-10-16 21:06:55 +00001381 // This relocation stores 12 bits and there's no instruction
1382 // to do it. Instead, we do a 32 bits store of the value
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001383 // of r_addend bitwise-or'ed Loc. This assumes that the addend
1384 // bits in Loc are zero.
1385 or32le(Loc, (SA & 0xFFF) << 10);
Davide Italiano0b6974b2015-10-03 19:56:07 +00001386 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +00001387 case R_AARCH64_ADR_GOT_PAGE: {
1388 uint64_t X = getAArch64Page(SA) - getAArch64Page(P);
1389 checkInt<33>(X, Type);
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001390 updateAArch64Addr(Loc, (X >> 12) & 0x1FFFFF); // X[32:12]
Igor Kudrinb4a09272015-12-01 08:41:20 +00001391 break;
1392 }
Rui Ueyamaee8c53b2015-10-06 19:57:01 +00001393 case R_AARCH64_ADR_PREL_LO21: {
Rafael Espindola826941a2015-10-15 18:19:39 +00001394 uint64_t X = SA - P;
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001395 checkInt<21>(X, Type);
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001396 updateAArch64Addr(Loc, X & 0x1FFFFF);
Davide Italiano1d750a62015-09-27 08:45:38 +00001397 break;
Rui Ueyamaee8c53b2015-10-06 19:57:01 +00001398 }
George Rimar3d737e42016-01-13 13:04:46 +00001399 case R_AARCH64_ADR_PREL_PG_HI21:
1400 case R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21: {
Rafael Espindola826941a2015-10-15 18:19:39 +00001401 uint64_t X = getAArch64Page(SA) - getAArch64Page(P);
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001402 checkInt<33>(X, Type);
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001403 updateAArch64Addr(Loc, (X >> 12) & 0x1FFFFF); // X[32:12]
Davide Italiano1f31a2c2015-10-02 22:00:42 +00001404 break;
Rui Ueyamaee8c53b2015-10-06 19:57:01 +00001405 }
Igor Kudrinb4a09272015-12-01 08:41:20 +00001406 case R_AARCH64_CALL26:
1407 case R_AARCH64_JUMP26: {
Igor Kudrinb34115b2015-11-13 03:26:59 +00001408 uint64_t X = SA - P;
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001409 checkInt<28>(X, Type);
Igor Kudrinb34115b2015-11-13 03:26:59 +00001410 or32le(Loc, (X & 0x0FFFFFFC) >> 2);
1411 break;
1412 }
George Rimar4102bfb2016-01-11 14:22:00 +00001413 case R_AARCH64_CONDBR19: {
1414 uint64_t X = SA - P;
1415 checkInt<21>(X, Type);
1416 or32le(Loc, (X & 0x1FFFFC) << 3);
1417 break;
1418 }
Igor Kudrin5d2bffd2015-11-24 06:48:31 +00001419 case R_AARCH64_LD64_GOT_LO12_NC:
George Rimar3d737e42016-01-13 13:04:46 +00001420 case R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC:
Igor Kudrin9b7e7db2015-11-26 09:49:44 +00001421 checkAlignment<8>(SA, Type);
Igor Kudrin5d2bffd2015-11-24 06:48:31 +00001422 or32le(Loc, (SA & 0xFF8) << 7);
1423 break;
Davide Italiano0d4fbae2016-01-14 01:30:21 +00001424 case R_AARCH64_LDST128_ABS_LO12_NC:
1425 or32le(Loc, (SA & 0x0FF8) << 6);
1426 break;
Davide Italiano2dfc5fd2016-01-15 01:49:51 +00001427 case R_AARCH64_LDST16_ABS_LO12_NC:
1428 or32le(Loc, (SA & 0x0FFC) << 9);
1429 break;
Davide Italianodc67f9b2015-11-20 21:35:38 +00001430 case R_AARCH64_LDST8_ABS_LO12_NC:
Davide Italianodc67f9b2015-11-20 21:35:38 +00001431 or32le(Loc, (SA & 0xFFF) << 10);
1432 break;
Igor Kudrinb4a09272015-12-01 08:41:20 +00001433 case R_AARCH64_LDST32_ABS_LO12_NC:
1434 or32le(Loc, (SA & 0xFFC) << 8);
1435 break;
1436 case R_AARCH64_LDST64_ABS_LO12_NC:
1437 or32le(Loc, (SA & 0xFF8) << 7);
1438 break;
Davide Italiano3300b792015-10-29 19:55:59 +00001439 case R_AARCH64_PREL16:
Igor Kudrinfea8ed52015-11-26 10:05:24 +00001440 checkIntUInt<16>(SA - P, Type);
Davide Italiano3300b792015-10-29 19:55:59 +00001441 write16le(Loc, SA - P);
1442 break;
1443 case R_AARCH64_PREL32:
Igor Kudrinfea8ed52015-11-26 10:05:24 +00001444 checkIntUInt<32>(SA - P, Type);
Davide Italiano3300b792015-10-29 19:55:59 +00001445 write32le(Loc, SA - P);
1446 break;
Davide Italianob12d6682015-10-28 16:14:18 +00001447 case R_AARCH64_PREL64:
Davide Italianob12d6682015-10-28 16:14:18 +00001448 write64le(Loc, SA - P);
1449 break;
George Rimar1395dbd2016-01-11 14:27:05 +00001450 case R_AARCH64_TSTBR14: {
1451 uint64_t X = SA - P;
1452 checkInt<16>(X, Type);
1453 or32le(Loc, (X & 0xFFFC) << 3);
1454 break;
1455 }
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001456 case R_AARCH64_TLSLE_ADD_TPREL_HI12: {
1457 uint64_t V = llvm::alignTo(TcbSize, Out<ELF64LE>::TlsPhdr->p_align) + SA;
1458 checkInt<24>(V, Type);
1459 updateAArch64Add(Loc, (V & 0xFFF000) >> 12);
1460 break;
1461 }
1462 case R_AARCH64_TLSLE_ADD_TPREL_LO12_NC: {
1463 uint64_t V = llvm::alignTo(TcbSize, Out<ELF64LE>::TlsPhdr->p_align) + SA;
1464 updateAArch64Add(Loc, V & 0xFFF);
1465 break;
1466 }
Davide Italiano1d750a62015-09-27 08:45:38 +00001467 default:
Rui Ueyama64cfffd2016-01-28 18:40:06 +00001468 fatal("unrecognized reloc " + Twine(Type));
Davide Italiano1d750a62015-09-27 08:45:38 +00001469 }
1470}
Simon Atanasyan49829a12015-09-29 05:34:03 +00001471
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001472bool AArch64TargetInfo::canRelaxTls(unsigned Type, const SymbolBody *S) const {
Rafael Espindola5e8b54a2016-02-22 23:16:05 +00001473 if (Config->Shared || (S && !S->IsTls))
Adhemerval Zanella74bcf032016-02-12 13:43:03 +00001474 return false;
1475
1476 // Global-Dynamic relocs can be relaxed to Initial-Exec if the target is
1477 // an executable. And if the target is local it can also be fully relaxed to
1478 // Local-Exec.
1479 if (isTlsGlobalDynamicRel(Type))
1480 return !canBePreempted(S, true);
1481
1482 // Initial-Exec relocs can be relaxed to Local-Exec if the target is a local
1483 // symbol.
1484 if (Type == R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21 ||
1485 Type == R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC)
1486 return !canBePreempted(S, true);
1487
1488 return false;
1489}
1490
1491unsigned AArch64TargetInfo::relaxTls(uint8_t *Loc, uint8_t *BufEnd,
1492 uint32_t Type, uint64_t P, uint64_t SA,
1493 const SymbolBody *S) const {
1494 switch (Type) {
1495 case R_AARCH64_TLSDESC_ADR_PAGE21:
1496 case R_AARCH64_TLSDESC_LD64_LO12_NC:
1497 case R_AARCH64_TLSDESC_ADD_LO12_NC:
1498 case R_AARCH64_TLSDESC_CALL: {
1499 if (canBePreempted(S, true))
1500 fatal("Unsupported TLS optimization");
1501 uint64_t X = S ? S->getVA<ELF64LE>() : SA;
1502 relocateTlsGdToLe(Type, Loc, BufEnd, P, X);
1503 return 0;
1504 }
1505 case R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21:
1506 case R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC:
1507 relocateTlsIeToLe(Type, Loc, BufEnd, P, S->getVA<ELF64LE>());
1508 return 0;
1509 }
1510 llvm_unreachable("Unknown TLS optimization");
1511}
1512
1513// Global-Dynamic relocations can be relaxed to Local-Exec if both binary is
1514// an executable and target is final (can notbe preempted).
1515void AArch64TargetInfo::relocateTlsGdToLe(unsigned Type, uint8_t *Loc,
1516 uint8_t *BufEnd, uint64_t P,
1517 uint64_t SA) const {
1518 // TLSDESC Global-Dynamic relocation are in the form:
1519 // adrp x0, :tlsdesc:v [R_AARCH64_TLSDESC_ADR_PAGE21]
1520 // ldr x1, [x0, #:tlsdesc_lo12:v [R_AARCH64_TLSDESC_LD64_LO12_NC]
1521 // add x0, x0, :tlsdesc_los:v [_AARCH64_TLSDESC_ADD_LO12_NC]
1522 // .tlsdesccall [R_AARCH64_TLSDESC_CALL]
1523 // And it can optimized to:
1524 // movz x0, #0x0, lsl #16
1525 // movk x0, #0x10
1526 // nop
1527 // nop
1528
1529 uint64_t TPOff = llvm::alignTo(TcbSize, Out<ELF64LE>::TlsPhdr->p_align);
1530 uint64_t X = SA + TPOff;
1531 checkUInt<32>(X, Type);
1532
1533 uint32_t NewInst;
1534 switch (Type) {
1535 case R_AARCH64_TLSDESC_ADD_LO12_NC:
1536 case R_AARCH64_TLSDESC_CALL:
1537 // nop
1538 NewInst = 0xd503201f;
1539 break;
1540 case R_AARCH64_TLSDESC_ADR_PAGE21:
1541 // movz
1542 NewInst = 0xd2a00000 | (((X >> 16) & 0xffff) << 5);
1543 break;
1544 case R_AARCH64_TLSDESC_LD64_LO12_NC:
1545 // movk
1546 NewInst = 0xf2800000 | ((X & 0xffff) << 5);
1547 break;
1548 default:
1549 llvm_unreachable("Unsupported Relocation for TLS GD to LE relax");
1550 }
1551 write32le(Loc, NewInst);
1552}
1553
1554// Initial-Exec relocations can be relaxed to Local-Exec if symbol is final
1555// (can not be preempted).
1556void AArch64TargetInfo::relocateTlsIeToLe(unsigned Type, uint8_t *Loc,
1557 uint8_t *BufEnd, uint64_t P,
1558 uint64_t SA) const {
1559 uint64_t TPOff = llvm::alignTo(TcbSize, Out<ELF64LE>::TlsPhdr->p_align);
1560 uint64_t X = SA + TPOff;
1561 checkUInt<32>(X, Type);
1562
1563 uint32_t Inst = read32le (Loc);
1564 uint32_t NewInst;
1565 if (Type == R_AARCH64_TLSIE_ADR_GOTTPREL_PAGE21) {
1566 // Generate movz.
1567 unsigned RegNo = (Inst & 0x1f);
1568 NewInst = (0xd2a00000 | RegNo) | (((X >> 16) & 0xffff) << 5);
1569 } else if (Type == R_AARCH64_TLSIE_LD64_GOTTPREL_LO12_NC) {
1570 // Generate movk
1571 unsigned RegNo = (Inst & 0x1f);
1572 NewInst = (0xf2800000 | RegNo) | ((X & 0xffff) << 5);
1573 } else {
1574 llvm_unreachable("Invalid Relocation for TLS IE to LE Relax");
1575 }
1576 write32le(Loc, NewInst);
1577}
1578
1579
Rui Ueyama1300e6b2016-01-07 20:34:16 +00001580// Implementing relocations for AMDGPU is low priority since most
1581// programs don't use relocations now. Thus, this function is not
1582// actually called (relocateOne is called for each relocation).
1583// That's why the AMDGPU port works without implementing this function.
Tom Stellard80efb162016-01-07 03:59:08 +00001584void AMDGPUTargetInfo::relocateOne(uint8_t *Loc, uint8_t *BufEnd, uint32_t Type,
1585 uint64_t P, uint64_t SA, uint64_t ZA,
1586 uint8_t *PairedLoc) const {
1587 llvm_unreachable("not implemented");
1588}
1589
Simon Atanasyan9c2d7882015-10-14 14:24:46 +00001590template <class ELFT> MipsTargetInfo<ELFT>::MipsTargetInfo() {
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001591 GotHeaderEntriesNum = 2;
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001592 GotPltHeaderEntriesNum = 2;
Simon Atanasyaneae66c02016-02-10 10:08:39 +00001593 PageSize = 65536;
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001594 PltEntrySize = 16;
1595 PltZeroSize = 32;
1596 UseLazyBinding = true;
Simon Atanasyaneae66c02016-02-10 10:08:39 +00001597 CopyRel = R_MIPS_COPY;
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001598 PltRel = R_MIPS_JUMP_SLOT;
Rui Ueyama724d6252016-01-29 01:49:32 +00001599 RelativeRel = R_MIPS_REL32;
Simon Atanasyanca558ea2016-01-14 21:34:50 +00001600}
1601
1602template <class ELFT>
Rui Ueyamac516ae12016-01-29 02:33:45 +00001603unsigned MipsTargetInfo<ELFT>::getDynRel(unsigned Type) const {
Simon Atanasyanca558ea2016-01-14 21:34:50 +00001604 if (Type == R_MIPS_32 || Type == R_MIPS_64)
1605 return R_MIPS_REL32;
1606 StringRef S = getELFRelocationTypeName(EM_MIPS, Type);
Rui Ueyama21923992016-02-01 23:28:21 +00001607 error("Relocation " + S + " cannot be used when making a shared object; "
Simon Atanasyanca558ea2016-01-14 21:34:50 +00001608 "recompile with -fPIC.");
Rui Ueyama21923992016-02-01 23:28:21 +00001609 // Keep it going with a dummy value so that we can find more reloc errors.
1610 return R_MIPS_32;
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001611}
1612
1613template <class ELFT>
Rui Ueyamac516ae12016-01-29 02:33:45 +00001614void MipsTargetInfo<ELFT>::writeGotHeader(uint8_t *Buf) const {
Rui Ueyama24e39522015-12-03 20:57:45 +00001615 typedef typename ELFFile<ELFT>::Elf_Off Elf_Off;
Rui Ueyama8364c622016-01-29 22:55:38 +00001616 typedef typename ELFFile<ELFT>::uintX_t uintX_t;
1617
1618 // Set the MSB of the second GOT slot. This is not required by any
1619 // MIPS ABI documentation, though.
1620 //
1621 // There is a comment in glibc saying that "The MSB of got[1] of a
1622 // gnu object is set to identify gnu objects," and in GNU gold it
1623 // says "the second entry will be used by some runtime loaders".
1624 // But how this field is being used is unclear.
1625 //
1626 // We are not really willing to mimic other linkers behaviors
1627 // without understanding why they do that, but because all files
1628 // generated by GNU tools have this special GOT value, and because
1629 // we've been doing this for years, it is probably a safe bet to
1630 // keep doing this for now. We really need to revisit this to see
1631 // if we had to do this.
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001632 auto *P = reinterpret_cast<Elf_Off *>(Buf);
Rui Ueyama8364c622016-01-29 22:55:38 +00001633 P[1] = uintX_t(1) << (ELFT::Is64Bits ? 63 : 31);
Simon Atanasyan49829a12015-09-29 05:34:03 +00001634}
1635
Simon Atanasyan9c2d7882015-10-14 14:24:46 +00001636template <class ELFT>
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001637void MipsTargetInfo<ELFT>::writeGotPlt(uint8_t *Buf, uint64_t Plt) const {
1638 write32<ELFT::TargetEndianness>(Buf, Out<ELFT>::Plt->getVA());
Rafael Espindola3ef3a4c2015-09-29 23:22:16 +00001639}
Simon Atanasyan49829a12015-09-29 05:34:03 +00001640
Simon Atanasyan35031192015-12-15 06:06:34 +00001641static uint16_t mipsHigh(uint64_t V) { return (V + 0x8000) >> 16; }
Simon Atanasyan2cd670d2015-12-13 06:49:01 +00001642
Simon Atanasyane364e2e2016-02-04 12:31:39 +00001643template <endianness E, uint8_t BSIZE, uint8_t SHIFT>
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001644static void applyMipsPcReloc(uint8_t *Loc, uint32_t Type, uint64_t P,
Simon Atanasyan62313912016-02-10 10:08:35 +00001645 uint64_t S) {
Simon Atanasyane364e2e2016-02-04 12:31:39 +00001646 uint32_t Mask = 0xffffffff >> (32 - BSIZE);
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001647 uint32_t Instr = read32<E>(Loc);
Simon Atanasyane364e2e2016-02-04 12:31:39 +00001648 int64_t A = SignExtend64<BSIZE + SHIFT>((Instr & Mask) << SHIFT);
1649 if (SHIFT > 0)
Simon Atanasyan62313912016-02-10 10:08:35 +00001650 checkAlignment<(1 << SHIFT)>(S + A, Type);
1651 int64_t V = S + A - P;
Simon Atanasyane364e2e2016-02-04 12:31:39 +00001652 checkInt<BSIZE + SHIFT>(V, Type);
1653 write32<E>(Loc, (Instr & ~Mask) | ((V >> SHIFT) & Mask));
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001654}
1655
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001656template <endianness E>
1657static void applyMipsHi16Reloc(uint8_t *Loc, uint64_t S, int64_t A) {
1658 uint32_t Instr = read32<E>(Loc);
1659 write32<E>(Loc, (Instr & 0xffff0000) | mipsHigh(S + A));
1660}
1661
1662template <class ELFT>
1663void MipsTargetInfo<ELFT>::writePltZero(uint8_t *Buf) const {
1664 const endianness E = ELFT::TargetEndianness;
1665 write32<E>(Buf, 0x3c1c0000); // lui $28, %hi(&GOTPLT[0])
1666 write32<E>(Buf + 4, 0x8f990000); // lw $25, %lo(&GOTPLT[0])($28)
1667 write32<E>(Buf + 8, 0x279c0000); // addiu $28, $28, %lo(&GOTPLT[0])
1668 write32<E>(Buf + 12, 0x031cc023); // subu $24, $24, $28
1669 write32<E>(Buf + 16, 0x03e07825); // move $15, $31
1670 write32<E>(Buf + 20, 0x0018c082); // srl $24, $24, 2
1671 write32<E>(Buf + 24, 0x0320f809); // jalr $25
1672 write32<E>(Buf + 28, 0x2718fffe); // subu $24, $24, 2
1673 uint64_t Got = Out<ELFT>::GotPlt->getVA();
1674 uint64_t Plt = Out<ELFT>::Plt->getVA();
1675 applyMipsHi16Reloc<E>(Buf, Got, 0);
1676 relocateOne(Buf + 4, Buf + 8, R_MIPS_LO16, Plt + 4, Got);
1677 relocateOne(Buf + 8, Buf + 12, R_MIPS_LO16, Plt + 8, Got);
1678}
1679
1680template <class ELFT>
1681void MipsTargetInfo<ELFT>::writePlt(uint8_t *Buf, uint64_t GotEntryAddr,
1682 uint64_t PltEntryAddr, int32_t Index,
1683 unsigned RelOff) const {
1684 const endianness E = ELFT::TargetEndianness;
1685 write32<E>(Buf, 0x3c0f0000); // lui $15, %hi(.got.plt entry)
1686 write32<E>(Buf + 4, 0x8df90000); // l[wd] $25, %lo(.got.plt entry)($15)
1687 write32<E>(Buf + 8, 0x03200008); // jr $25
1688 write32<E>(Buf + 12, 0x25f80000); // addiu $24, $15, %lo(.got.plt entry)
1689 applyMipsHi16Reloc<E>(Buf, GotEntryAddr, 0);
1690 relocateOne(Buf + 4, Buf + 8, R_MIPS_LO16, PltEntryAddr + 4, GotEntryAddr);
1691 relocateOne(Buf + 12, Buf + 16, R_MIPS_LO16, PltEntryAddr + 8, GotEntryAddr);
1692}
1693
1694template <class ELFT>
Rafael Espindolafb1533b2016-02-22 21:23:29 +00001695bool MipsTargetInfo<ELFT>::needsCopyRelImpl(uint32_t Type) const {
Simon Atanasyan49bc69b2016-02-25 05:03:52 +00001696 return !isRelRelative(Type);
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001697}
1698
1699template <class ELFT>
1700bool MipsTargetInfo<ELFT>::needsGot(uint32_t Type, SymbolBody &S) const {
Simon Atanasyand040a582016-02-25 16:19:15 +00001701 return needsPlt<ELFT>(Type, S) || refersToGotEntry(Type);
1702}
1703
1704template <class ELFT>
1705bool MipsTargetInfo<ELFT>::refersToGotEntry(uint32_t Type) const {
1706 return Type == R_MIPS_GOT16 || Type == R_MIPS_CALL16;
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001707}
1708
1709template <class ELFT>
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001710bool MipsTargetInfo<ELFT>::needsPltImpl(uint32_t Type,
1711 const SymbolBody &S) const {
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001712 if (Type == R_MIPS_26 && canBePreempted(&S, false))
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001713 return true;
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001714 return false;
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001715}
1716
Simon Atanasyan9c2d7882015-10-14 14:24:46 +00001717template <class ELFT>
Rui Ueyama96f0e0b2015-10-23 02:40:46 +00001718void MipsTargetInfo<ELFT>::relocateOne(uint8_t *Loc, uint8_t *BufEnd,
Simon Atanasyan62313912016-02-10 10:08:35 +00001719 uint32_t Type, uint64_t P, uint64_t S,
George Rimar48651482015-12-11 08:59:37 +00001720 uint64_t ZA, uint8_t *PairedLoc) const {
Rafael Espindolae7e57b22015-11-09 21:43:00 +00001721 const endianness E = ELFT::TargetEndianness;
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001722 switch (Type) {
1723 case R_MIPS_32:
Simon Atanasyan62313912016-02-10 10:08:35 +00001724 add32<E>(Loc, S);
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001725 break;
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001726 case R_MIPS_26: {
1727 uint32_t Instr = read32<E>(Loc);
1728 // FIXME (simon): If the relocation target symbol is not a PLT entry
1729 // we should use another expression for calculation:
1730 // ((A << 2) | (P & 0xf0000000)) >> 2
1731 S += SignExtend64<28>((Instr & 0x3ffffff) << 2);
1732 write32<E>(Loc, (Instr & ~0x3ffffff) | (S >> 2));
1733 break;
1734 }
Rui Ueyama7ee3cf72015-12-03 20:59:51 +00001735 case R_MIPS_CALL16:
1736 case R_MIPS_GOT16: {
Simon Atanasyan62313912016-02-10 10:08:35 +00001737 int64_t V = S - getMipsGpAddr<ELFT>();
Rui Ueyama7ee3cf72015-12-03 20:59:51 +00001738 if (Type == R_MIPS_GOT16)
1739 checkInt<16>(V, Type);
1740 write32<E>(Loc, (read32<E>(Loc) & 0xffff0000) | (V & 0xffff));
1741 break;
1742 }
Simon Atanasyan57830b62015-12-25 13:02:13 +00001743 case R_MIPS_GPREL16: {
1744 uint32_t Instr = read32<E>(Loc);
Simon Atanasyan62313912016-02-10 10:08:35 +00001745 int64_t V = S + SignExtend64<16>(Instr & 0xffff) - getMipsGpAddr<ELFT>();
Simon Atanasyan57830b62015-12-25 13:02:13 +00001746 checkInt<16>(V, Type);
1747 write32<E>(Loc, (Instr & 0xffff0000) | (V & 0xffff));
1748 break;
1749 }
1750 case R_MIPS_GPREL32:
Simon Atanasyan62313912016-02-10 10:08:35 +00001751 write32<E>(Loc, S + int32_t(read32<E>(Loc)) - getMipsGpAddr<ELFT>());
Simon Atanasyan57830b62015-12-25 13:02:13 +00001752 break;
Simon Atanasyan09b3e362015-12-01 21:24:45 +00001753 case R_MIPS_HI16: {
1754 uint32_t Instr = read32<E>(Loc);
1755 if (PairedLoc) {
1756 uint64_t AHL = ((Instr & 0xffff) << 16) +
Rui Ueyama24e39522015-12-03 20:57:45 +00001757 SignExtend64<16>(read32<E>(PairedLoc) & 0xffff);
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001758 applyMipsHi16Reloc<E>(Loc, S, AHL);
Simon Atanasyan09b3e362015-12-01 21:24:45 +00001759 } else {
1760 warning("Can't find matching R_MIPS_LO16 relocation for R_MIPS_HI16");
Simon Atanasyan2287dc32016-02-10 19:57:19 +00001761 applyMipsHi16Reloc<E>(Loc, S, 0);
Simon Atanasyan09b3e362015-12-01 21:24:45 +00001762 }
1763 break;
1764 }
Simon Atanasyane4361852015-12-13 06:49:14 +00001765 case R_MIPS_JALR:
1766 // Ignore this optimization relocation for now
1767 break;
Simon Atanasyan09b3e362015-12-01 21:24:45 +00001768 case R_MIPS_LO16: {
1769 uint32_t Instr = read32<E>(Loc);
Rui Ueyama24e39522015-12-03 20:57:45 +00001770 int64_t AHL = SignExtend64<16>(Instr & 0xffff);
Simon Atanasyan62313912016-02-10 10:08:35 +00001771 write32<E>(Loc, (Instr & 0xffff0000) | ((S + AHL) & 0xffff));
Simon Atanasyan09b3e362015-12-01 21:24:45 +00001772 break;
1773 }
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001774 case R_MIPS_PC16:
Simon Atanasyan62313912016-02-10 10:08:35 +00001775 applyMipsPcReloc<E, 16, 2>(Loc, Type, P, S);
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001776 break;
1777 case R_MIPS_PC19_S2:
Simon Atanasyan62313912016-02-10 10:08:35 +00001778 applyMipsPcReloc<E, 19, 2>(Loc, Type, P, S);
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001779 break;
1780 case R_MIPS_PC21_S2:
Simon Atanasyan62313912016-02-10 10:08:35 +00001781 applyMipsPcReloc<E, 21, 2>(Loc, Type, P, S);
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001782 break;
1783 case R_MIPS_PC26_S2:
Simon Atanasyan62313912016-02-10 10:08:35 +00001784 applyMipsPcReloc<E, 26, 2>(Loc, Type, P, S);
Simon Atanasyane364e2e2016-02-04 12:31:39 +00001785 break;
1786 case R_MIPS_PC32:
Simon Atanasyan62313912016-02-10 10:08:35 +00001787 applyMipsPcReloc<E, 32, 0>(Loc, Type, P, S);
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001788 break;
1789 case R_MIPS_PCHI16: {
1790 uint32_t Instr = read32<E>(Loc);
1791 if (PairedLoc) {
1792 uint64_t AHL = ((Instr & 0xffff) << 16) +
1793 SignExtend64<16>(read32<E>(PairedLoc) & 0xffff);
Simon Atanasyan62313912016-02-10 10:08:35 +00001794 write32<E>(Loc, (Instr & 0xffff0000) | mipsHigh(S + AHL - P));
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001795 } else {
1796 warning("Can't find matching R_MIPS_PCLO16 relocation for R_MIPS_PCHI16");
Simon Atanasyan62313912016-02-10 10:08:35 +00001797 write32<E>(Loc, (Instr & 0xffff0000) | mipsHigh(S - P));
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001798 }
1799 break;
1800 }
1801 case R_MIPS_PCLO16: {
1802 uint32_t Instr = read32<E>(Loc);
1803 int64_t AHL = SignExtend64<16>(Instr & 0xffff);
Simon Atanasyan62313912016-02-10 10:08:35 +00001804 write32<E>(Loc, (Instr & 0xffff0000) | ((S + AHL - P) & 0xffff));
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001805 break;
1806 }
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001807 default:
Rui Ueyama64cfffd2016-01-28 18:40:06 +00001808 fatal("unrecognized reloc " + Twine(Type));
Simon Atanasyan3b732ac2015-10-12 15:10:02 +00001809 }
1810}
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001811
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001812template <class ELFT>
Rui Ueyamac516ae12016-01-29 02:33:45 +00001813bool MipsTargetInfo<ELFT>::isHintRel(uint32_t Type) const {
Simon Atanasyan682aeea2016-01-14 20:42:09 +00001814 return Type == R_MIPS_JALR;
1815}
1816
1817template <class ELFT>
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001818bool MipsTargetInfo<ELFT>::isRelRelative(uint32_t Type) const {
1819 switch (Type) {
1820 default:
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001821 return true;
Simon Atanasyan49bc69b2016-02-25 05:03:52 +00001822 case R_MIPS_26:
1823 case R_MIPS_32:
1824 case R_MIPS_64:
1825 case R_MIPS_HI16:
1826 case R_MIPS_LO16:
1827 return false;
Simon Atanasyan0fc0acf2015-12-21 17:36:40 +00001828 }
1829}
1830
Rui Ueyama3f11c8c2015-12-24 08:41:12 +00001831// _gp is a MIPS-specific ABI-defined symbol which points to
1832// a location that is relative to GOT. This function returns
1833// the value for the symbol.
Rui Ueyama24e39522015-12-03 20:57:45 +00001834template <class ELFT> typename ELFFile<ELFT>::uintX_t getMipsGpAddr() {
Rui Ueyama3f11c8c2015-12-24 08:41:12 +00001835 unsigned GPOffset = 0x7ff0;
1836 if (uint64_t V = Out<ELFT>::Got->getVA())
1837 return V + GPOffset;
1838 return 0;
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001839}
1840
Rui Ueyama3c8d0492016-01-29 23:59:15 +00001841template bool isGnuIFunc<ELF32LE>(const SymbolBody &S);
1842template bool isGnuIFunc<ELF32BE>(const SymbolBody &S);
1843template bool isGnuIFunc<ELF64LE>(const SymbolBody &S);
1844template bool isGnuIFunc<ELF64BE>(const SymbolBody &S);
1845
Igor Kudrin15cd9ff2015-11-06 07:43:03 +00001846template uint32_t getMipsGpAddr<ELF32LE>();
1847template uint32_t getMipsGpAddr<ELF32BE>();
1848template uint64_t getMipsGpAddr<ELF64LE>();
1849template uint64_t getMipsGpAddr<ELF64BE>();
Rafael Espindolaf7ae3592016-02-23 18:53:29 +00001850
1851template bool TargetInfo::needsCopyRel<ELF32LE>(uint32_t,
1852 const SymbolBody &) const;
1853template bool TargetInfo::needsCopyRel<ELF32BE>(uint32_t,
1854 const SymbolBody &) const;
1855template bool TargetInfo::needsCopyRel<ELF64LE>(uint32_t,
1856 const SymbolBody &) const;
1857template bool TargetInfo::needsCopyRel<ELF64BE>(uint32_t,
1858 const SymbolBody &) const;
Rafael Espindola795dc5a2016-02-24 18:24:23 +00001859
1860template TargetInfo::PltNeed
1861TargetInfo::needsPlt<ELF32LE>(uint32_t, const SymbolBody &) const;
1862template TargetInfo::PltNeed
1863TargetInfo::needsPlt<ELF32BE>(uint32_t, const SymbolBody &) const;
1864template TargetInfo::PltNeed
1865TargetInfo::needsPlt<ELF64LE>(uint32_t, const SymbolBody &) const;
1866template TargetInfo::PltNeed
1867TargetInfo::needsPlt<ELF64BE>(uint32_t, const SymbolBody &) const;
Rafael Espindola01205f72015-09-22 18:19:46 +00001868}
1869}