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Rui Ueyama0fcdc732016-05-24 20:24:43 +00001//===- Relocations.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//===----------------------------------------------------------------------===//
9//
George Rimar95912d02016-06-08 12:29:29 +000010// This file contains platform-independent functions to process relocations.
Rui Ueyama0fcdc732016-05-24 20:24:43 +000011// I'll describe the overview of this file here.
12//
13// Simple relocations are easy to handle for the linker. For example,
14// for R_X86_64_PC64 relocs, the linker just has to fix up locations
15// with the relative offsets to the target symbols. It would just be
16// reading records from relocation sections and applying them to output.
17//
18// But not all relocations are that easy to handle. For example, for
19// R_386_GOTOFF relocs, the linker has to create new GOT entries for
20// symbols if they don't exist, and fix up locations with GOT entry
21// offsets from the beginning of GOT section. So there is more than
22// fixing addresses in relocation processing.
23//
24// ELF defines a large number of complex relocations.
25//
26// The functions in this file analyze relocations and do whatever needs
27// to be done. It includes, but not limited to, the following.
28//
29// - create GOT/PLT entries
30// - create new relocations in .dynsym to let the dynamic linker resolve
31// them at runtime (since ELF supports dynamic linking, not all
32// relocations can be resolved at link-time)
33// - create COPY relocs and reserve space in .bss
34// - replace expensive relocs (in terms of runtime cost) with cheap ones
35// - error out infeasible combinations such as PIC and non-relative relocs
36//
37// Note that the functions in this file don't actually apply relocations
38// because it doesn't know about the output file nor the output file buffer.
39// It instead stores Relocation objects to InputSection's Relocations
40// vector to let it apply later in InputSection::writeTo.
41//
42//===----------------------------------------------------------------------===//
43
44#include "Relocations.h"
45#include "Config.h"
Peter Smith3a52eb02017-02-01 10:26:03 +000046#include "Memory.h"
Rui Ueyama0fcdc732016-05-24 20:24:43 +000047#include "OutputSections.h"
Eugene Leviant41ca3272016-11-10 09:48:29 +000048#include "Strings.h"
Rui Ueyama0fcdc732016-05-24 20:24:43 +000049#include "SymbolTable.h"
Eugene Leviant41ca3272016-11-10 09:48:29 +000050#include "SyntheticSections.h"
Rui Ueyama0fcdc732016-05-24 20:24:43 +000051#include "Target.h"
Peter Smithfb05cd92016-07-08 16:10:27 +000052#include "Thunks.h"
Rui Ueyama0fcdc732016-05-24 20:24:43 +000053
54#include "llvm/Support/Endian.h"
55#include "llvm/Support/raw_ostream.h"
Peter Smith3a52eb02017-02-01 10:26:03 +000056#include <algorithm>
Rui Ueyama0fcdc732016-05-24 20:24:43 +000057
58using namespace llvm;
59using namespace llvm::ELF;
60using namespace llvm::object;
61using namespace llvm::support::endian;
62
63namespace lld {
64namespace elf {
65
66static bool refersToGotEntry(RelExpr Expr) {
Sean Silva2eed7592016-12-01 05:43:48 +000067 return isRelExprOneOf<R_GOT, R_GOT_OFF, R_MIPS_GOT_LOCAL_PAGE, R_MIPS_GOT_OFF,
68 R_MIPS_GOT_OFF32, R_MIPS_TLSGD, R_MIPS_TLSLD,
69 R_GOT_PAGE_PC, R_GOT_PC, R_GOT_FROM_END, R_TLSGD,
70 R_TLSGD_PC, R_TLSDESC, R_TLSDESC_PAGE>(Expr);
Rui Ueyama0fcdc732016-05-24 20:24:43 +000071}
72
Simon Atanasyan9a9a3162016-05-28 04:49:57 +000073static bool isPreemptible(const SymbolBody &Body, uint32_t Type) {
74 // In case of MIPS GP-relative relocations always resolve to a definition
75 // in a regular input file, ignoring the one-definition rule. So we,
76 // for example, should not attempt to create a dynamic relocation even
77 // if the target symbol is preemptible. There are two two MIPS GP-relative
78 // relocations R_MIPS_GPREL16 and R_MIPS_GPREL32. But only R_MIPS_GPREL16
79 // can be against a preemptible symbol.
Simon Atanasyana26a1572016-06-10 12:26:09 +000080 // To get MIPS relocation type we apply 0xff mask. In case of O32 ABI all
Simon Atanasyan9a9a3162016-05-28 04:49:57 +000081 // relocation types occupy eight bit. In case of N64 ABI we extract first
82 // relocation from 3-in-1 packet because only the first relocation can
83 // be against a real symbol.
Simon Atanasyana26a1572016-06-10 12:26:09 +000084 if (Config->EMachine == EM_MIPS && (Type & 0xff) == R_MIPS_GPREL16)
Simon Atanasyan9a9a3162016-05-28 04:49:57 +000085 return false;
86 return Body.isPreemptible();
87}
88
Peter Smithfde62132016-09-23 13:54:48 +000089// This function is similar to the `handleTlsRelocation`. ARM and MIPS do not
90// support any relaxations for TLS relocations so by factoring out ARM and MIPS
91// handling in to the separate function we can simplify the code and do not
92// pollute `handleTlsRelocation` by ARM and MIPS `ifs` statements.
Simon Atanasyan725dc142016-11-16 21:01:02 +000093template <class ELFT, class GOT>
94static unsigned handleNoRelaxTlsRelocation(
95 GOT *Got, uint32_t Type, SymbolBody &Body, InputSectionBase<ELFT> &C,
96 typename ELFT::uint Offset, typename ELFT::uint Addend, RelExpr Expr) {
Peter Smithde3e7382016-11-29 16:23:50 +000097 typedef typename ELFT::uint uintX_t;
98 auto addModuleReloc = [](SymbolBody &Body, GOT *Got, uintX_t Off, bool LD) {
99 // The Dynamic TLS Module Index Relocation can be statically resolved to 1
100 // if we know that we are linking an executable. For ARM we resolve the
101 // relocation when writing the Got. MIPS has a custom Got implementation
102 // that writes the Module index in directly.
103 if (!Body.isPreemptible() && !Config->Pic && Config->EMachine == EM_ARM)
104 Got->Relocations.push_back(
105 {R_ABS, Target->TlsModuleIndexRel, Off, 0, &Body});
106 else {
107 SymbolBody *Dest = LD ? nullptr : &Body;
108 In<ELFT>::RelaDyn->addReloc(
109 {Target->TlsModuleIndexRel, Got, Off, false, Dest, 0});
110 }
111 };
Peter Smithfde62132016-09-23 13:54:48 +0000112 if (Expr == R_MIPS_TLSLD || Expr == R_TLSLD_PC) {
Simon Atanasyan725dc142016-11-16 21:01:02 +0000113 if (Got->addTlsIndex() && (Config->Pic || Config->EMachine == EM_ARM))
Peter Smithde3e7382016-11-29 16:23:50 +0000114 addModuleReloc(Body, Got, Got->getTlsIndexOff(), true);
Rafael Espindola664c6522016-09-07 20:37:34 +0000115 C.Relocations.push_back({Expr, Type, Offset, Addend, &Body});
Simon Atanasyan002e2442016-06-23 15:26:31 +0000116 return 1;
117 }
118 if (Target->isTlsGlobalDynamicRel(Type)) {
Simon Atanasyan725dc142016-11-16 21:01:02 +0000119 if (Got->addDynTlsEntry(Body) &&
Peter Smithfde62132016-09-23 13:54:48 +0000120 (Body.isPreemptible() || Config->EMachine == EM_ARM)) {
Simon Atanasyan725dc142016-11-16 21:01:02 +0000121 uintX_t Off = Got->getGlobalDynOffset(Body);
Peter Smithde3e7382016-11-29 16:23:50 +0000122 addModuleReloc(Body, Got, Off, false);
Peter Smithfde62132016-09-23 13:54:48 +0000123 if (Body.isPreemptible())
Simon Atanasyan725dc142016-11-16 21:01:02 +0000124 In<ELFT>::RelaDyn->addReloc({Target->TlsOffsetRel, Got,
Eugene Levianta96d9022016-11-16 10:02:27 +0000125 Off + (uintX_t)sizeof(uintX_t), false,
126 &Body, 0});
Simon Atanasyan002e2442016-06-23 15:26:31 +0000127 }
Rafael Espindola664c6522016-09-07 20:37:34 +0000128 C.Relocations.push_back({Expr, Type, Offset, Addend, &Body});
Simon Atanasyan002e2442016-06-23 15:26:31 +0000129 return 1;
130 }
131 return 0;
132}
133
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000134// Returns the number of relocations processed.
135template <class ELFT>
136static unsigned handleTlsRelocation(uint32_t Type, SymbolBody &Body,
137 InputSectionBase<ELFT> &C,
138 typename ELFT::uint Offset,
139 typename ELFT::uint Addend, RelExpr Expr) {
Rafael Espindola1854a8e2016-10-26 12:36:56 +0000140 if (!(C.Flags & SHF_ALLOC))
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000141 return 0;
142
143 if (!Body.isTls())
144 return 0;
145
146 typedef typename ELFT::uint uintX_t;
Rafael Espindolae37d13b2016-06-02 19:49:53 +0000147
Simon Atanasyan725dc142016-11-16 21:01:02 +0000148 if (Config->EMachine == EM_ARM)
149 return handleNoRelaxTlsRelocation<ELFT>(In<ELFT>::Got, Type, Body, C,
150 Offset, Addend, Expr);
151 if (Config->EMachine == EM_MIPS)
152 return handleNoRelaxTlsRelocation<ELFT>(In<ELFT>::MipsGot, Type, Body, C,
153 Offset, Addend, Expr);
Simon Atanasyan002e2442016-06-23 15:26:31 +0000154
Rafael Espindola09d5daa2016-12-13 16:59:19 +0000155 bool IsPreemptible = isPreemptible(Body, Type);
Peter Smithd6486032016-10-20 09:59:26 +0000156 if ((Expr == R_TLSDESC || Expr == R_TLSDESC_PAGE || Expr == R_TLSDESC_CALL) &&
Rafael Espindolae37d13b2016-06-02 19:49:53 +0000157 Config->Shared) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000158 if (In<ELFT>::Got->addDynTlsEntry(Body)) {
159 uintX_t Off = In<ELFT>::Got->getGlobalDynOffset(Body);
Adhemerval Zanella86513f02016-12-19 11:58:01 +0000160 In<ELFT>::RelaDyn->addReloc({Target->TlsDescRel, In<ELFT>::Got, Off,
Rafael Espindola29982b02016-12-19 16:50:20 +0000161 !IsPreemptible, &Body, 0});
Rafael Espindolae37d13b2016-06-02 19:49:53 +0000162 }
Peter Smithd6486032016-10-20 09:59:26 +0000163 if (Expr != R_TLSDESC_CALL)
Rafael Espindola664c6522016-09-07 20:37:34 +0000164 C.Relocations.push_back({Expr, Type, Offset, Addend, &Body});
Rafael Espindolae37d13b2016-06-02 19:49:53 +0000165 return 1;
166 }
167
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000168 if (Expr == R_TLSLD_PC || Expr == R_TLSLD) {
169 // Local-Dynamic relocs can be relaxed to Local-Exec.
170 if (!Config->Shared) {
171 C.Relocations.push_back(
Rafael Espindola664c6522016-09-07 20:37:34 +0000172 {R_RELAX_TLS_LD_TO_LE, Type, Offset, Addend, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000173 return 2;
174 }
Eugene Leviantad4439e2016-11-11 11:33:32 +0000175 if (In<ELFT>::Got->addTlsIndex())
Eugene Levianta96d9022016-11-16 10:02:27 +0000176 In<ELFT>::RelaDyn->addReloc({Target->TlsModuleIndexRel, In<ELFT>::Got,
177 In<ELFT>::Got->getTlsIndexOff(), false,
178 nullptr, 0});
Rafael Espindola664c6522016-09-07 20:37:34 +0000179 C.Relocations.push_back({Expr, Type, Offset, Addend, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000180 return 1;
181 }
182
183 // Local-Dynamic relocs can be relaxed to Local-Exec.
184 if (Target->isTlsLocalDynamicRel(Type) && !Config->Shared) {
185 C.Relocations.push_back(
Rafael Espindola664c6522016-09-07 20:37:34 +0000186 {R_RELAX_TLS_LD_TO_LE, Type, Offset, Addend, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000187 return 1;
188 }
189
Peter Smithd6486032016-10-20 09:59:26 +0000190 if (Expr == R_TLSDESC_PAGE || Expr == R_TLSDESC || Expr == R_TLSDESC_CALL ||
Rafael Espindolae37d13b2016-06-02 19:49:53 +0000191 Target->isTlsGlobalDynamicRel(Type)) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000192 if (Config->Shared) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000193 if (In<ELFT>::Got->addDynTlsEntry(Body)) {
194 uintX_t Off = In<ELFT>::Got->getGlobalDynOffset(Body);
Eugene Levianta96d9022016-11-16 10:02:27 +0000195 In<ELFT>::RelaDyn->addReloc(
Eugene Leviantad4439e2016-11-11 11:33:32 +0000196 {Target->TlsModuleIndexRel, In<ELFT>::Got, Off, false, &Body, 0});
Rafael Espindolaa8777c22016-06-08 21:31:59 +0000197
198 // If the symbol is preemptible we need the dynamic linker to write
199 // the offset too.
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000200 uintX_t OffsetOff = Off + (uintX_t)sizeof(uintX_t);
Rafael Espindola09d5daa2016-12-13 16:59:19 +0000201 if (IsPreemptible)
Eugene Levianta96d9022016-11-16 10:02:27 +0000202 In<ELFT>::RelaDyn->addReloc({Target->TlsOffsetRel, In<ELFT>::Got,
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000203 OffsetOff, false, &Body, 0});
204 else
205 In<ELFT>::Got->Relocations.push_back(
206 {R_ABS, Target->TlsOffsetRel, OffsetOff, 0, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000207 }
Rafael Espindola664c6522016-09-07 20:37:34 +0000208 C.Relocations.push_back({Expr, Type, Offset, Addend, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000209 return 1;
210 }
211
212 // Global-Dynamic relocs can be relaxed to Initial-Exec or Local-Exec
213 // depending on the symbol being locally defined or not.
Rafael Espindola09d5daa2016-12-13 16:59:19 +0000214 if (IsPreemptible) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000215 C.Relocations.push_back(
Rafael Espindola69f54022016-06-04 23:22:34 +0000216 {Target->adjustRelaxExpr(Type, nullptr, R_RELAX_TLS_GD_TO_IE), Type,
Rafael Espindola664c6522016-09-07 20:37:34 +0000217 Offset, Addend, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000218 if (!Body.isInGot()) {
Eugene Leviantad4439e2016-11-11 11:33:32 +0000219 In<ELFT>::Got->addEntry(Body);
Eugene Levianta96d9022016-11-16 10:02:27 +0000220 In<ELFT>::RelaDyn->addReloc({Target->TlsGotRel, In<ELFT>::Got,
221 Body.getGotOffset<ELFT>(), false, &Body,
222 0});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000223 }
Rafael Espindolae1979ae2016-06-04 23:33:31 +0000224 return Target->TlsGdRelaxSkip;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000225 }
226 C.Relocations.push_back(
Rafael Espindola664c6522016-09-07 20:37:34 +0000227 {Target->adjustRelaxExpr(Type, nullptr, R_RELAX_TLS_GD_TO_LE), Type,
Rafael Espindola69f54022016-06-04 23:22:34 +0000228 Offset, Addend, &Body});
Rafael Espindolaf807d472016-06-04 23:04:39 +0000229 return Target->TlsGdRelaxSkip;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000230 }
231
232 // Initial-Exec relocs can be relaxed to Local-Exec if the symbol is locally
233 // defined.
Rafael Espindola09d5daa2016-12-13 16:59:19 +0000234 if (Target->isTlsInitialExecRel(Type) && !Config->Shared && !IsPreemptible) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000235 C.Relocations.push_back(
Rafael Espindola664c6522016-09-07 20:37:34 +0000236 {R_RELAX_TLS_IE_TO_LE, Type, Offset, Addend, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000237 return 1;
238 }
239 return 0;
240}
241
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000242template <endianness E> static int16_t readSignedLo16(const uint8_t *Loc) {
243 return read32<E>(Loc) & 0xffff;
244}
245
246template <class RelTy>
247static uint32_t getMipsPairType(const RelTy *Rel, const SymbolBody &Sym) {
248 switch (Rel->getType(Config->Mips64EL)) {
249 case R_MIPS_HI16:
250 return R_MIPS_LO16;
251 case R_MIPS_GOT16:
252 return Sym.isLocal() ? R_MIPS_LO16 : R_MIPS_NONE;
253 case R_MIPS_PCHI16:
254 return R_MIPS_PCLO16;
255 case R_MICROMIPS_HI16:
256 return R_MICROMIPS_LO16;
257 default:
258 return R_MIPS_NONE;
259 }
260}
261
262template <class ELFT, class RelTy>
263static int32_t findMipsPairedAddend(const uint8_t *Buf, const uint8_t *BufLoc,
264 SymbolBody &Sym, const RelTy *Rel,
265 const RelTy *End) {
266 uint32_t SymIndex = Rel->getSymbol(Config->Mips64EL);
267 uint32_t Type = getMipsPairType(Rel, Sym);
268
269 // Some MIPS relocations use addend calculated from addend of the relocation
270 // itself and addend of paired relocation. ABI requires to compute such
271 // combined addend in case of REL relocation record format only.
272 // See p. 4-17 at ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
273 if (RelTy::IsRela || Type == R_MIPS_NONE)
274 return 0;
275
276 for (const RelTy *RI = Rel; RI != End; ++RI) {
277 if (RI->getType(Config->Mips64EL) != Type)
278 continue;
279 if (RI->getSymbol(Config->Mips64EL) != SymIndex)
280 continue;
281 const endianness E = ELFT::TargetEndianness;
282 return ((read32<E>(BufLoc) & 0xffff) << 16) +
283 readSignedLo16<E>(Buf + RI->r_offset);
284 }
Rui Ueyama3fc0f7e2016-11-23 18:07:33 +0000285 warn("can't find matching " + toString(Type) + " relocation for " +
286 toString(Rel->getType(Config->Mips64EL)));
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000287 return 0;
288}
289
290// True if non-preemptable symbol always has the same value regardless of where
291// the DSO is loaded.
292template <class ELFT> static bool isAbsolute(const SymbolBody &Body) {
293 if (Body.isUndefined())
294 return !Body.isLocal() && Body.symbol()->isWeak();
295 if (const auto *DR = dyn_cast<DefinedRegular<ELFT>>(&Body))
296 return DR->Section == nullptr; // Absolute symbol.
297 return false;
298}
299
Rafael Espindolad598c812016-10-27 17:28:56 +0000300template <class ELFT> static bool isAbsoluteValue(const SymbolBody &Body) {
301 return isAbsolute<ELFT>(Body) || Body.isTls();
302}
303
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000304static bool needsPlt(RelExpr Expr) {
Peter Smith3a52eb02017-02-01 10:26:03 +0000305 return isRelExprOneOf<R_PLT_PC, R_PPC_PLT_OPD, R_PLT, R_PLT_PAGE_PC>(Expr);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000306}
307
308// True if this expression is of the form Sym - X, where X is a position in the
309// file (PC, or GOT for example).
310static bool isRelExpr(RelExpr Expr) {
Sean Silva2eed7592016-12-01 05:43:48 +0000311 return isRelExprOneOf<R_PC, R_GOTREL, R_GOTREL_FROM_END, R_MIPS_GOTREL,
Peter Smith3a52eb02017-02-01 10:26:03 +0000312 R_PAGE_PC, R_RELAX_GOT_PC>(Expr);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000313}
314
315template <class ELFT>
316static bool isStaticLinkTimeConstant(RelExpr E, uint32_t Type,
George Rimar463984d2016-11-15 08:07:14 +0000317 const SymbolBody &Body,
318 InputSectionBase<ELFT> &S,
319 typename ELFT::uint RelOff) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000320 // These expressions always compute a constant
Sean Silva2eed7592016-12-01 05:43:48 +0000321 if (isRelExprOneOf<R_SIZE, R_GOT_FROM_END, R_GOT_OFF, R_MIPS_GOT_LOCAL_PAGE,
322 R_MIPS_GOT_OFF, R_MIPS_GOT_OFF32, R_MIPS_TLSGD,
323 R_GOT_PAGE_PC, R_GOT_PC, R_PLT_PC, R_TLSGD_PC, R_TLSGD,
Peter Smith3a52eb02017-02-01 10:26:03 +0000324 R_PPC_PLT_OPD, R_TLSDESC_CALL, R_TLSDESC_PAGE, R_HINT>(E))
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000325 return true;
326
327 // These never do, except if the entire file is position dependent or if
328 // only the low bits are used.
Rafael Espindolae37d13b2016-06-02 19:49:53 +0000329 if (E == R_GOT || E == R_PLT || E == R_TLSDESC)
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000330 return Target->usesOnlyLowPageBits(Type) || !Config->Pic;
331
Simon Atanasyan9a9a3162016-05-28 04:49:57 +0000332 if (isPreemptible(Body, Type))
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000333 return false;
334
335 if (!Config->Pic)
336 return true;
337
Rafael Espindolad598c812016-10-27 17:28:56 +0000338 bool AbsVal = isAbsoluteValue<ELFT>(Body);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000339 bool RelE = isRelExpr(E);
340 if (AbsVal && !RelE)
341 return true;
342 if (!AbsVal && RelE)
343 return true;
344
345 // Relative relocation to an absolute value. This is normally unrepresentable,
346 // but if the relocation refers to a weak undefined symbol, we allow it to
347 // resolve to the image base. This is a little strange, but it allows us to
348 // link function calls to such symbols. Normally such a call will be guarded
349 // with a comparison, which will load a zero from the GOT.
Simon Atanasyan6a4eb752016-12-08 06:19:47 +0000350 // Another special case is MIPS _gp_disp symbol which represents offset
351 // between start of a function and '_gp' value and defined as absolute just
352 // to simplify the code.
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000353 if (AbsVal && RelE) {
354 if (Body.isUndefined() && !Body.isLocal() && Body.symbol()->isWeak())
355 return true;
Simon Atanasyan6a4eb752016-12-08 06:19:47 +0000356 if (&Body == ElfSym<ELFT>::MipsGpDisp)
357 return true;
Rui Ueyamada06bfb2016-11-25 18:51:53 +0000358 error(S.getLocation(RelOff) + ": relocation " + toString(Type) +
Rui Ueyamaa3ac1732016-11-24 20:24:18 +0000359 " cannot refer to absolute symbol '" + toString(Body) +
Rui Ueyama3fc0f7e2016-11-23 18:07:33 +0000360 "' defined in " + toString(Body.File));
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000361 return true;
362 }
363
364 return Target->usesOnlyLowPageBits(Type);
365}
366
367static RelExpr toPlt(RelExpr Expr) {
368 if (Expr == R_PPC_OPD)
369 return R_PPC_PLT_OPD;
370 if (Expr == R_PC)
371 return R_PLT_PC;
Rafael Espindola12dc4462016-06-04 19:11:14 +0000372 if (Expr == R_PAGE_PC)
373 return R_PLT_PAGE_PC;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000374 if (Expr == R_ABS)
375 return R_PLT;
376 return Expr;
377}
378
379static RelExpr fromPlt(RelExpr Expr) {
380 // We decided not to use a plt. Optimize a reference to the plt to a
381 // reference to the symbol itself.
382 if (Expr == R_PLT_PC)
383 return R_PC;
384 if (Expr == R_PPC_PLT_OPD)
385 return R_PPC_OPD;
386 if (Expr == R_PLT)
387 return R_ABS;
388 return Expr;
389}
390
391template <class ELFT> static uint32_t getAlignment(SharedSymbol<ELFT> *SS) {
392 typedef typename ELFT::uint uintX_t;
393
Rui Ueyama434b5612016-07-17 03:11:46 +0000394 uintX_t SecAlign = SS->file()->getSection(SS->Sym)->sh_addralign;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000395 uintX_t SymValue = SS->Sym.st_value;
396 int TrailingZeros =
397 std::min(countTrailingZeros(SecAlign), countTrailingZeros(SymValue));
398 return 1 << TrailingZeros;
399}
400
Peter Collingbournefeb66292017-01-10 01:21:50 +0000401template <class ELFT> static bool isReadOnly(SharedSymbol<ELFT> *SS) {
402 typedef typename ELFT::uint uintX_t;
403 typedef typename ELFT::Phdr Elf_Phdr;
404
405 // Determine if the symbol is read-only by scanning the DSO's program headers.
406 uintX_t Value = SS->Sym.st_value;
407 for (const Elf_Phdr &Phdr : check(SS->file()->getObj().program_headers()))
408 if ((Phdr.p_type == ELF::PT_LOAD || Phdr.p_type == ELF::PT_GNU_RELRO) &&
409 !(Phdr.p_flags & ELF::PF_W) && Value >= Phdr.p_vaddr &&
410 Value < Phdr.p_vaddr + Phdr.p_memsz)
411 return true;
412 return false;
413}
414
415// Reserve space in .bss or .bss.rel.ro for copy relocation.
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000416template <class ELFT> static void addCopyRelSymbol(SharedSymbol<ELFT> *SS) {
417 typedef typename ELFT::uint uintX_t;
418 typedef typename ELFT::Sym Elf_Sym;
419
420 // Copy relocation against zero-sized symbol doesn't make sense.
421 uintX_t SymSize = SS->template getSize<ELFT>();
422 if (SymSize == 0)
Rui Ueyamaa3ac1732016-11-24 20:24:18 +0000423 fatal("cannot create a copy relocation for symbol " + toString(*SS));
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000424
Peter Collingbournefeb66292017-01-10 01:21:50 +0000425 // See if this symbol is in a read-only segment. If so, preserve the symbol's
426 // memory protection by reserving space in the .bss.rel.ro section.
427 bool IsReadOnly = isReadOnly(SS);
428 OutputSection<ELFT> *CopySec =
429 IsReadOnly ? Out<ELFT>::BssRelRo : Out<ELFT>::Bss;
430
Rui Ueyama424b4082016-06-17 01:18:46 +0000431 uintX_t Alignment = getAlignment(SS);
Peter Collingbournefeb66292017-01-10 01:21:50 +0000432 uintX_t Off = alignTo(CopySec->Size, Alignment);
433 CopySec->Size = Off + SymSize;
434 CopySec->updateAlignment(Alignment);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000435 uintX_t Shndx = SS->Sym.st_shndx;
436 uintX_t Value = SS->Sym.st_value;
437 // Look through the DSO's dynamic symbol table for aliases and create a
438 // dynamic symbol for each one. This causes the copy relocation to correctly
439 // interpose any aliases.
Rafael Espindola8e232572016-11-03 20:48:57 +0000440 for (const Elf_Sym &S : SS->file()->getGlobalSymbols()) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000441 if (S.st_shndx != Shndx || S.st_value != Value)
442 continue;
443 auto *Alias = dyn_cast_or_null<SharedSymbol<ELFT>>(
Rui Ueyama434b5612016-07-17 03:11:46 +0000444 Symtab<ELFT>::X->find(check(S.getName(SS->file()->getStringTable()))));
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000445 if (!Alias)
446 continue;
Peter Collingbournefeb66292017-01-10 01:21:50 +0000447 Alias->CopyIsInBssRelRo = IsReadOnly;
448 Alias->CopyOffset = Off;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000449 Alias->NeedsCopyOrPltAddr = true;
450 Alias->symbol()->IsUsedInRegularObj = true;
451 }
Peter Collingbournefeb66292017-01-10 01:21:50 +0000452 In<ELFT>::RelaDyn->addReloc({Target->CopyRel, CopySec, Off, false, SS, 0});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000453}
454
455template <class ELFT>
456static RelExpr adjustExpr(const elf::ObjectFile<ELFT> &File, SymbolBody &Body,
George Rimar5c33b912016-05-25 14:31:37 +0000457 bool IsWrite, RelExpr Expr, uint32_t Type,
George Rimar463984d2016-11-15 08:07:14 +0000458 const uint8_t *Data, InputSectionBase<ELFT> &S,
459 typename ELFT::uint RelOff) {
Simon Atanasyan9a9a3162016-05-28 04:49:57 +0000460 bool Preemptible = isPreemptible(Body, Type);
George Rimar5c33b912016-05-25 14:31:37 +0000461 if (Body.isGnuIFunc()) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000462 Expr = toPlt(Expr);
George Rimar5c33b912016-05-25 14:31:37 +0000463 } else if (!Preemptible) {
464 if (needsPlt(Expr))
465 Expr = fromPlt(Expr);
Rafael Espindolad598c812016-10-27 17:28:56 +0000466 if (Expr == R_GOT_PC && !isAbsoluteValue<ELFT>(Body))
Rafael Espindolaf2956a32016-06-17 15:01:50 +0000467 Expr = Target->adjustRelaxExpr(Type, Data, Expr);
George Rimar5c33b912016-05-25 14:31:37 +0000468 }
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000469
George Rimar463984d2016-11-15 08:07:14 +0000470 if (IsWrite || isStaticLinkTimeConstant<ELFT>(Expr, Type, Body, S, RelOff))
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000471 return Expr;
472
473 // This relocation would require the dynamic linker to write a value to read
474 // only memory. We can hack around it if we are producing an executable and
475 // the refered symbol can be preemepted to refer to the executable.
476 if (Config->Shared || (Config->Pic && !isRelExpr(Expr))) {
Rui Ueyamada06bfb2016-11-25 18:51:53 +0000477 error(S.getLocation(RelOff) + ": can't create dynamic relocation " +
Rui Ueyama3fc0f7e2016-11-23 18:07:33 +0000478 toString(Type) + " against " +
Rui Ueyamaa3ac1732016-11-24 20:24:18 +0000479 (Body.getName().empty() ? "local symbol in readonly segment"
480 : "symbol '" + toString(Body) + "'") +
Rui Ueyama3fc0f7e2016-11-23 18:07:33 +0000481 " defined in " + toString(Body.File));
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000482 return Expr;
483 }
484 if (Body.getVisibility() != STV_DEFAULT) {
Rui Ueyamada06bfb2016-11-25 18:51:53 +0000485 error(S.getLocation(RelOff) + ": cannot preempt symbol '" + toString(Body) +
486 "' defined in " + toString(Body.File));
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000487 return Expr;
488 }
489 if (Body.isObject()) {
490 // Produce a copy relocation.
491 auto *B = cast<SharedSymbol<ELFT>>(&Body);
492 if (!B->needsCopy())
493 addCopyRelSymbol(B);
494 return Expr;
495 }
496 if (Body.isFunc()) {
497 // This handles a non PIC program call to function in a shared library. In
498 // an ideal world, we could just report an error saying the relocation can
499 // overflow at runtime. In the real world with glibc, crt1.o has a
500 // R_X86_64_PC32 pointing to libc.so.
501 //
502 // The general idea on how to handle such cases is to create a PLT entry and
503 // use that as the function value.
504 //
505 // For the static linking part, we just return a plt expr and everything
506 // else will use the the PLT entry as the address.
507 //
508 // The remaining problem is making sure pointer equality still works. We
509 // need the help of the dynamic linker for that. We let it know that we have
510 // a direct reference to a so symbol by creating an undefined symbol with a
511 // non zero st_value. Seeing that, the dynamic linker resolves the symbol to
512 // the value of the symbol we created. This is true even for got entries, so
513 // pointer equality is maintained. To avoid an infinite loop, the only entry
514 // that points to the real function is a dedicated got entry used by the
515 // plt. That is identified by special relocation types (R_X86_64_JUMP_SLOT,
516 // R_386_JMP_SLOT, etc).
517 Body.NeedsCopyOrPltAddr = true;
518 return toPlt(Expr);
519 }
Rui Ueyamaa3ac1732016-11-24 20:24:18 +0000520 error("symbol '" + toString(Body) + "' defined in " + toString(Body.File) +
George Rimar76f429b2016-11-16 17:24:06 +0000521 " is missing type");
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000522
523 return Expr;
524}
525
526template <class ELFT, class RelTy>
527static typename ELFT::uint computeAddend(const elf::ObjectFile<ELFT> &File,
528 const uint8_t *SectionData,
529 const RelTy *End, const RelTy &RI,
530 RelExpr Expr, SymbolBody &Body) {
531 typedef typename ELFT::uint uintX_t;
532
533 uint32_t Type = RI.getType(Config->Mips64EL);
534 uintX_t Addend = getAddend<ELFT>(RI);
535 const uint8_t *BufLoc = SectionData + RI.r_offset;
536 if (!RelTy::IsRela)
537 Addend += Target->getImplicitAddend(BufLoc, Type);
538 if (Config->EMachine == EM_MIPS) {
539 Addend += findMipsPairedAddend<ELFT>(SectionData, BufLoc, Body, &RI, End);
540 if (Type == R_MIPS_LO16 && Expr == R_PC)
541 // R_MIPS_LO16 expression has R_PC type iif the target is _gp_disp
542 // symbol. In that case we should use the following formula for
543 // calculation "AHL + GP - P + 4". Let's add 4 right here.
544 // For details see p. 4-19 at
545 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
546 Addend += 4;
Simon Atanasyan725dc142016-11-16 21:01:02 +0000547 if (Expr == R_MIPS_GOTREL && Body.isLocal())
548 Addend += File.MipsGp0;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000549 }
550 if (Config->Pic && Config->EMachine == EM_PPC64 && Type == R_PPC64_TOC)
551 Addend += getPPC64TocBase();
552 return Addend;
553}
554
Eugene Leviantb380b242016-10-26 11:07:09 +0000555template <class ELFT>
556static void reportUndefined(SymbolBody &Sym, InputSectionBase<ELFT> &S,
557 typename ELFT::uint Offset) {
Rafael Espindola403b0932017-01-27 15:52:08 +0000558 bool CanBeExternal = Sym.symbol()->computeBinding() != STB_LOCAL &&
559 Sym.getVisibility() == STV_DEFAULT;
560 if (Config->UnresolvedSymbols == UnresolvedPolicy::IgnoreAll ||
561 (Config->UnresolvedSymbols == UnresolvedPolicy::Ignore && CanBeExternal))
Eugene Leviant89837592016-10-06 09:45:04 +0000562 return;
563
Rui Ueyamaa3ac1732016-11-24 20:24:18 +0000564 std::string Msg =
Rui Ueyamada06bfb2016-11-25 18:51:53 +0000565 S.getLocation(Offset) + ": undefined symbol '" + toString(Sym) + "'";
Eugene Leviant89837592016-10-06 09:45:04 +0000566
Rafael Espindola403b0932017-01-27 15:52:08 +0000567 if (Config->UnresolvedSymbols == UnresolvedPolicy::WarnAll ||
568 (Config->UnresolvedSymbols == UnresolvedPolicy::Warn && CanBeExternal))
Eugene Leviant89837592016-10-06 09:45:04 +0000569 warn(Msg);
570 else
571 error(Msg);
572}
573
Simon Atanasyan9e0297b2016-11-05 22:58:01 +0000574template <class RelTy>
575static std::pair<uint32_t, uint32_t>
576mergeMipsN32RelTypes(uint32_t Type, uint32_t Offset, RelTy *I, RelTy *E) {
577 // MIPS N32 ABI treats series of successive relocations with the same offset
578 // as a single relocation. The similar approach used by N64 ABI, but this ABI
579 // packs all relocations into the single relocation record. Here we emulate
580 // this for the N32 ABI. Iterate over relocation with the same offset and put
581 // theirs types into the single bit-set.
582 uint32_t Processed = 0;
583 for (; I != E && Offset == I->r_offset; ++I) {
584 ++Processed;
585 Type |= I->getType(Config->Mips64EL) << (8 * Processed);
586 }
587 return std::make_pair(Type, Processed);
588}
589
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000590// The reason we have to do this early scan is as follows
591// * To mmap the output file, we need to know the size
592// * For that, we need to know how many dynamic relocs we will have.
593// It might be possible to avoid this by outputting the file with write:
594// * Write the allocated output sections, computing addresses.
595// * Apply relocations, recording which ones require a dynamic reloc.
596// * Write the dynamic relocations.
597// * Write the rest of the file.
598// This would have some drawbacks. For example, we would only know if .rela.dyn
599// is needed after applying relocations. If it is, it will go after rw and rx
600// sections. Given that it is ro, we will need an extra PT_LOAD. This
601// complicates things for the dynamic linker and means we would have to reserve
602// space for the extra PT_LOAD even if we end up not using it.
603template <class ELFT, class RelTy>
Rui Ueyama2487f192016-05-25 03:40:02 +0000604static void scanRelocs(InputSectionBase<ELFT> &C, ArrayRef<RelTy> Rels) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000605 typedef typename ELFT::uint uintX_t;
606
Rafael Espindola1854a8e2016-10-26 12:36:56 +0000607 bool IsWrite = C.Flags & SHF_WRITE;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000608
609 auto AddDyn = [=](const DynamicReloc<ELFT> &Reloc) {
Eugene Levianta96d9022016-11-16 10:02:27 +0000610 In<ELFT>::RelaDyn->addReloc(Reloc);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000611 };
612
Vitaly Buka029d7302016-11-15 07:32:51 +0000613 const elf::ObjectFile<ELFT> *File = C.getFile();
Rafael Espindolac7e1e032016-09-12 13:13:53 +0000614 ArrayRef<uint8_t> SectionData = C.Data;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000615 const uint8_t *Buf = SectionData.begin();
Rafael Espindola5b7a79f2016-07-20 11:47:50 +0000616
Rafael Espindola3abe3aa2016-07-21 21:15:32 +0000617 ArrayRef<EhSectionPiece> Pieces;
618 if (auto *Eh = dyn_cast<EhInputSection<ELFT>>(&C))
619 Pieces = Eh->Pieces;
620
621 ArrayRef<EhSectionPiece>::iterator PieceI = Pieces.begin();
622 ArrayRef<EhSectionPiece>::iterator PieceE = Pieces.end();
Rafael Espindola5b7a79f2016-07-20 11:47:50 +0000623
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000624 for (auto I = Rels.begin(), E = Rels.end(); I != E; ++I) {
625 const RelTy &RI = *I;
Vitaly Buka029d7302016-11-15 07:32:51 +0000626 SymbolBody &Body = File->getRelocTargetSym(RI);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000627 uint32_t Type = RI.getType(Config->Mips64EL);
628
Simon Atanasyan9e0297b2016-11-05 22:58:01 +0000629 if (Config->MipsN32Abi) {
630 uint32_t Processed;
631 std::tie(Type, Processed) =
632 mergeMipsN32RelTypes(Type, RI.r_offset, I + 1, E);
633 I += Processed;
634 }
635
George Rimara4c7e742016-10-20 08:36:42 +0000636 // We only report undefined symbols if they are referenced somewhere in the
637 // code.
Eugene Leviant89837592016-10-06 09:45:04 +0000638 if (!Body.isLocal() && Body.isUndefined() && !Body.symbol()->isWeak())
Eugene Leviantb380b242016-10-26 11:07:09 +0000639 reportUndefined(Body, C, RI.r_offset);
Eugene Leviant89837592016-10-06 09:45:04 +0000640
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000641 RelExpr Expr = Target->getRelExpr(Type, Body);
Rafael Espindola678844e2016-06-17 15:42:36 +0000642 bool Preemptible = isPreemptible(Body, Type);
George Rimar463984d2016-11-15 08:07:14 +0000643 Expr = adjustExpr(*File, Body, IsWrite, Expr, Type, Buf + RI.r_offset, C,
644 RI.r_offset);
Rui Ueyamaf373dd72016-11-24 01:43:21 +0000645 if (ErrorCount)
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000646 continue;
647
Rui Ueyama809d8e22016-06-23 04:33:42 +0000648 // Skip a relocation that points to a dead piece
Rafael Espindola5b7a79f2016-07-20 11:47:50 +0000649 // in a eh_frame section.
650 while (PieceI != PieceE &&
651 (PieceI->InputOff + PieceI->size() <= RI.r_offset))
652 ++PieceI;
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000653
654 // Compute the offset of this section in the output section. We do it here
655 // to try to compute it only once.
656 uintX_t Offset;
657 if (PieceI != PieceE) {
658 assert(PieceI->InputOff <= RI.r_offset && "Relocation not in any piece");
Rafael Espindola113860b2016-10-20 10:55:58 +0000659 if (PieceI->OutputOff == -1)
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000660 continue;
661 Offset = PieceI->OutputOff + RI.r_offset - PieceI->InputOff;
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000662 } else {
George Rimar3e6833b2016-08-19 15:46:28 +0000663 Offset = RI.r_offset;
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000664 }
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000665
666 // This relocation does not require got entry, but it is relative to got and
667 // needs it to be created. Here we request for that.
Rafael Espindola79202c32016-08-31 23:24:11 +0000668 if (Expr == R_GOTONLY_PC || Expr == R_GOTONLY_PC_FROM_END ||
669 Expr == R_GOTREL || Expr == R_GOTREL_FROM_END || Expr == R_PPC_TOC)
Eugene Leviantad4439e2016-11-11 11:33:32 +0000670 In<ELFT>::Got->HasGotOffRel = true;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000671
Vitaly Buka029d7302016-11-15 07:32:51 +0000672 uintX_t Addend = computeAddend(*File, Buf, E, RI, Expr, Body);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000673
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000674 if (unsigned Processed =
675 handleTlsRelocation<ELFT>(Type, Body, C, Offset, Addend, Expr)) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000676 I += (Processed - 1);
677 continue;
678 }
679
Peter Smithd6486032016-10-20 09:59:26 +0000680 // Ignore "hint" and TLS Descriptor call relocation because they are
681 // only markers for relaxation.
Sean Silva2eed7592016-12-01 05:43:48 +0000682 if (isRelExprOneOf<R_HINT, R_TLSDESC_CALL>(Expr))
Rafael Espindolae37d13b2016-06-02 19:49:53 +0000683 continue;
684
Sean Silva2eed7592016-12-01 05:43:48 +0000685 if (needsPlt(Expr) ||
Sean Silva2eed7592016-12-01 05:43:48 +0000686 refersToGotEntry(Expr) || !isPreemptible(Body, Type)) {
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000687 // If the relocation points to something in the file, we can process it.
George Rimar463984d2016-11-15 08:07:14 +0000688 bool Constant =
689 isStaticLinkTimeConstant<ELFT>(Expr, Type, Body, C, RI.r_offset);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000690
691 // If the output being produced is position independent, the final value
692 // is still not known. In that case we still need some help from the
693 // dynamic linker. We can however do better than just copying the incoming
694 // relocation. We can process some of it and and just ask the dynamic
695 // linker to add the load address.
696 if (!Constant)
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000697 AddDyn({Target->RelativeRel, &C, Offset, true, &Body, Addend});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000698
699 // If the produced value is a constant, we just remember to write it
700 // when outputting this section. We also have to do it if the format
701 // uses Elf_Rel, since in that case the written value is the addend.
702 if (Constant || !RelTy::IsRela)
Rafael Espindola664c6522016-09-07 20:37:34 +0000703 C.Relocations.push_back({Expr, Type, Offset, Addend, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000704 } else {
705 // We don't know anything about the finaly symbol. Just ask the dynamic
706 // linker to handle the relocation for us.
Eugene Leviantab024a32016-11-25 08:56:36 +0000707 if (!Target->isPicRel(Type))
Rui Ueyamada06bfb2016-11-25 18:51:53 +0000708 error(C.getLocation(Offset) + ": relocation " + toString(Type) +
Eugene Leviantab024a32016-11-25 08:56:36 +0000709 " cannot be used against shared object; recompile with -fPIC.");
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000710 AddDyn({Target->getDynRel(Type), &C, Offset, false, &Body, Addend});
Eugene Leviantab024a32016-11-25 08:56:36 +0000711
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000712 // MIPS ABI turns using of GOT and dynamic relocations inside out.
713 // While regular ABI uses dynamic relocations to fill up GOT entries
714 // MIPS ABI requires dynamic linker to fills up GOT entries using
715 // specially sorted dynamic symbol table. This affects even dynamic
716 // relocations against symbols which do not require GOT entries
717 // creation explicitly, i.e. do not have any GOT-relocations. So if
718 // a preemptible symbol has a dynamic relocation we anyway have
719 // to create a GOT entry for it.
720 // If a non-preemptible symbol has a dynamic relocation against it,
721 // dynamic linker takes it st_value, adds offset and writes down
722 // result of the dynamic relocation. In case of preemptible symbol
723 // dynamic linker performs symbol resolution, writes the symbol value
724 // to the GOT entry and reads the GOT entry when it needs to perform
725 // a dynamic relocation.
726 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf p.4-19
Simon Atanasyan41325112016-06-19 21:39:37 +0000727 if (Config->EMachine == EM_MIPS)
Simon Atanasyan725dc142016-11-16 21:01:02 +0000728 In<ELFT>::MipsGot->addEntry(Body, Addend, Expr);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000729 continue;
730 }
731
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000732 // At this point we are done with the relocated position. Some relocations
733 // also require us to create a got or plt entry.
734
735 // If a relocation needs PLT, we create a PLT and a GOT slot for the symbol.
736 if (needsPlt(Expr)) {
737 if (Body.isInPlt())
738 continue;
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000739
Peter Smithbaffdb82016-12-08 12:58:55 +0000740 if (Body.isGnuIFunc() && !Preemptible) {
741 In<ELFT>::Iplt->addEntry(Body);
742 In<ELFT>::IgotPlt->addEntry(Body);
743 In<ELFT>::RelaIplt->addReloc({Target->IRelativeRel, In<ELFT>::IgotPlt,
744 Body.getGotPltOffset<ELFT>(),
745 !Preemptible, &Body, 0});
746 } else {
747 In<ELFT>::Plt->addEntry(Body);
748 In<ELFT>::GotPlt->addEntry(Body);
749 In<ELFT>::RelaPlt->addReloc({Target->PltRel, In<ELFT>::GotPlt,
750 Body.getGotPltOffset<ELFT>(), !Preemptible,
751 &Body, 0});
752 }
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000753 continue;
754 }
755
756 if (refersToGotEntry(Expr)) {
Simon Atanasyan41325112016-06-19 21:39:37 +0000757 if (Config->EMachine == EM_MIPS) {
Simon Atanasyanaf52f6a2016-09-08 09:07:12 +0000758 // MIPS ABI has special rules to process GOT entries and doesn't
759 // require relocation entries for them. A special case is TLS
760 // relocations. In that case dynamic loader applies dynamic
761 // relocations to initialize TLS GOT entries.
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000762 // See "Global Offset Table" in Chapter 5 in the following document
763 // for detailed description:
764 // ftp://www.linux-mips.org/pub/linux/mips/doc/ABI/mipsabi.pdf
Simon Atanasyan725dc142016-11-16 21:01:02 +0000765 In<ELFT>::MipsGot->addEntry(Body, Addend, Expr);
Simon Atanasyan919a58c2016-09-08 09:07:19 +0000766 if (Body.isTls() && Body.isPreemptible())
Simon Atanasyan725dc142016-11-16 21:01:02 +0000767 AddDyn({Target->TlsGotRel, In<ELFT>::MipsGot,
768 Body.getGotOffset<ELFT>(), false, &Body, 0});
Simon Atanasyan41325112016-06-19 21:39:37 +0000769 continue;
770 }
771
772 if (Body.isInGot())
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000773 continue;
774
Eugene Leviantad4439e2016-11-11 11:33:32 +0000775 In<ELFT>::Got->addEntry(Body);
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000776 uintX_t Off = Body.getGotOffset<ELFT>();
777 uint32_t DynType;
Peter Smithde3e7382016-11-29 16:23:50 +0000778 RelExpr GotRE = R_ABS;
779 if (Body.isTls()) {
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000780 DynType = Target->TlsGotRel;
Peter Smithde3e7382016-11-29 16:23:50 +0000781 GotRE = R_TLS;
782 } else if (!Preemptible && Config->Pic && !isAbsolute<ELFT>(Body))
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000783 DynType = Target->RelativeRel;
784 else
785 DynType = Target->GotRel;
786
Rafael Espindolaf4ff80c2016-12-02 01:57:24 +0000787 // FIXME: this logic is almost duplicated above.
788 bool Constant = !Preemptible && !(Config->Pic && !isAbsolute<ELFT>(Body));
789 if (!Constant)
Rafael Espindolaf1e24532016-11-29 03:45:36 +0000790 AddDyn({DynType, In<ELFT>::Got, Off, !Preemptible, &Body, 0});
Rafael Espindolae004d4b2016-12-06 12:19:24 +0000791 if (Constant || (!RelTy::IsRela && !Preemptible))
Peter Smithde3e7382016-11-29 16:23:50 +0000792 In<ELFT>::Got->Relocations.push_back({GotRE, DynType, Off, 0, &Body});
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000793 continue;
794 }
795 }
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000796}
797
Rafael Espindola9f0c4bb2016-11-10 14:53:24 +0000798template <class ELFT> void scanRelocations(InputSectionBase<ELFT> &S) {
799 if (S.AreRelocsRela)
800 scanRelocs(S, S.relas());
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000801 else
Rafael Espindola9f0c4bb2016-11-10 14:53:24 +0000802 scanRelocs(S, S.rels());
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000803}
804
Peter Smith3a52eb02017-02-01 10:26:03 +0000805// Insert the Thunks for OutputSection OS into their designated place
806// in the Sections vector, and recalculate the InputSection output section
807// offsets.
808// This may invalidate any output section offsets stored outside of InputSection
809template <class ELFT>
810static void mergeThunks(OutputSection<ELFT> *OS,
811 std::vector<ThunkSection<ELFT> *> &Thunks) {
812 // Order Thunks in ascending OutSecOff
813 auto ThunkCmp = [](const ThunkSection<ELFT> *A, const ThunkSection<ELFT> *B) {
814 return A->OutSecOff < B->OutSecOff;
815 };
816 std::stable_sort(Thunks.begin(), Thunks.end(), ThunkCmp);
817
818 // Merge sorted vectors of Thunks and InputSections by OutSecOff
819 std::vector<InputSection<ELFT> *> Tmp;
820 Tmp.reserve(OS->Sections.size() + Thunks.size());
821 auto MergeCmp = [](const InputSection<ELFT> *A, const InputSection<ELFT> *B) {
822 // std::merge requires a strict weak ordering.
823 if (A->OutSecOff < B->OutSecOff)
824 return true;
825 if (A->OutSecOff == B->OutSecOff)
826 // Check if Thunk is immediately before any specific Target InputSection
827 // for example Mips LA25 Thunks.
828 if (auto *TA = dyn_cast<ThunkSection<ELFT>>(A))
829 if (TA && TA->getTargetInputSection() == B)
830 return true;
831 return false;
832 };
833 std::merge(OS->Sections.begin(), OS->Sections.end(), Thunks.begin(),
834 Thunks.end(), std::back_inserter(Tmp), MergeCmp);
835 OS->Sections = std::move(Tmp);
836 OS->Size = 0;
837 OS->assignOffsets();
838}
839
840// Process all relocations from the InputSections that have been assigned
841// to OutputSections and redirect through Thunks if needed.
842//
843// createThunks must be called after scanRelocs has created the Relocations for
844// each InputSection. It must be called before the static symbol table is
845// finalized. If any Thunks are added to an OutputSection the output section
846// offsets of the InputSections will change.
847//
848// FIXME: All Thunks are assumed to be in range of the relocation. Range
849// extension Thunks are not yet supported.
Peter Smithee6d7182017-01-18 09:57:14 +0000850template <class ELFT>
851void createThunks(ArrayRef<OutputSectionBase *> OutputSections) {
Peter Smith3a52eb02017-02-01 10:26:03 +0000852 // Track Symbols that already have a Thunk
853 DenseMap<SymbolBody *, Thunk<ELFT> *> ThunkedSymbols;
854 // Track InputSections that have a ThunkSection placed in front
855 DenseMap<InputSection<ELFT> *, ThunkSection<ELFT> *> ThunkedSections;
856 // Track the ThunksSections that need to be inserted into an OutputSection
857 std::map<OutputSection<ELFT> *, std::vector<ThunkSection<ELFT> *>>
858 ThunkSections;
859
860 // Find or create a Thunk for Body for relocation Type
861 auto GetThunk = [&](SymbolBody &Body, uint32_t Type) {
862 auto res = ThunkedSymbols.insert({&Body, nullptr});
863 if (res.second == true)
864 res.first->second = addThunk<ELFT>(Type, Body);
865 return std::make_pair(res.first->second, res.second);
866 };
867
868 // Find or create a ThunkSection to be placed immediately before IS
869 auto GetISThunkSec = [&](InputSection<ELFT> *IS, OutputSection<ELFT> *OS) {
870 ThunkSection<ELFT> *TS = ThunkedSections.lookup(IS);
871 if (TS)
872 return TS;
873 auto *TOS = cast<OutputSection<ELFT>>(IS->OutSec);
874 TS = make<ThunkSection<ELFT>>(TOS, IS->OutSecOff);
875 ThunkSections[OS].push_back(TS);
876 ThunkedSections[IS] = TS;
877 return TS;
878 };
879 // Find or create a ThunkSection to be placed as last executable section in
880 // OS.
881 auto GetOSThunkSec = [&](ThunkSection<ELFT> *&TS, OutputSection<ELFT> *OS) {
882 if (TS == nullptr) {
883 uint32_t Off = 0;
884 for (auto *IS : OS->Sections) {
885 Off = IS->OutSecOff + IS->getSize();
886 if ((IS->Flags & SHF_EXECINSTR) == 0)
887 break;
888 }
889 TS = make<ThunkSection<ELFT>>(OS, Off);
890 ThunkSections[OS].push_back(TS);
891 }
892 return TS;
893 };
894 // Create all the Thunks and insert them into synthetic ThunkSections. The
895 // ThunkSections are later inserted back into the OutputSection.
896
897 // We separate the creation of ThunkSections from the insertion of the
898 // ThunkSections back into the OutputSection as ThunkSections are not always
899 // inserted into the same OutputSection as the caller.
Peter Smithee6d7182017-01-18 09:57:14 +0000900 for (OutputSectionBase *Base : OutputSections) {
Peter Smith94b999b2017-01-20 15:25:45 +0000901 auto *OS = dyn_cast<OutputSection<ELFT>>(Base);
902 if (OS == nullptr)
903 continue;
Peter Smith3a52eb02017-02-01 10:26:03 +0000904
905 ThunkSection<ELFT> *OSTS = nullptr;
Peter Smith94b999b2017-01-20 15:25:45 +0000906 for (InputSection<ELFT> *IS : OS->Sections) {
Peter Smith3a52eb02017-02-01 10:26:03 +0000907 for (Relocation &Rel : IS->Relocations) {
908 SymbolBody &Body = *Rel.Sym;
909 if (Target->needsThunk(Rel.Expr, Rel.Type, IS->getFile(), Body)) {
910 Thunk<ELFT> *T;
911 bool IsNew;
912 std::tie(T, IsNew) = GetThunk(Body, Rel.Type);
913 if (IsNew) {
914 // Find or create a ThunkSection for the new Thunk
915 ThunkSection<ELFT> *TS;
916 if (auto *TIS = T->getTargetInputSection())
917 TS = GetISThunkSec(TIS, OS);
918 else
919 TS = GetOSThunkSec(OSTS, OS);
920 TS->addThunk(T);
921 }
922 // Redirect relocation to Thunk, we never go via the PLT to a Thunk
923 Rel.Sym = T->ThunkSym;
924 Rel.Expr = fromPlt(Rel.Expr);
925 }
Peter Smithee6d7182017-01-18 09:57:14 +0000926 }
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000927 }
928 }
Peter Smith3a52eb02017-02-01 10:26:03 +0000929
930 // Merge all created synthetic ThunkSections back into OutputSection
931 for (auto &KV : ThunkSections)
932 mergeThunks<ELFT>(KV.first, KV.second);
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000933}
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000934
Rafael Espindola9f0c4bb2016-11-10 14:53:24 +0000935template void scanRelocations<ELF32LE>(InputSectionBase<ELF32LE> &);
936template void scanRelocations<ELF32BE>(InputSectionBase<ELF32BE> &);
937template void scanRelocations<ELF64LE>(InputSectionBase<ELF64LE> &);
938template void scanRelocations<ELF64BE>(InputSectionBase<ELF64BE> &);
Rafael Espindola0f7ceda2016-07-20 17:58:07 +0000939
Peter Smithee6d7182017-01-18 09:57:14 +0000940template void createThunks<ELF32LE>(ArrayRef<OutputSectionBase *>);
941template void createThunks<ELF32BE>(ArrayRef<OutputSectionBase *>);
942template void createThunks<ELF64LE>(ArrayRef<OutputSectionBase *>);
943template void createThunks<ELF64BE>(ArrayRef<OutputSectionBase *>);
Rui Ueyama0fcdc732016-05-24 20:24:43 +0000944}
945}