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Dmitriy Ivanov87a06172015-02-06 10:56:28 -08001// Copyright 2014 The Chromium Authors. All rights reserved.
2// Use of this source code is governed by a BSD-style license that can be
3// found in the LICENSE file.
4
5// Implementation notes:
6//
7// We need to remove a piece from the ELF shared library. However, we also
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -08008// want to avoid fixing DWARF cfi data and relative relocation addresses.
9// So after packing we shift offets and starting address of the RX segment
10// while preserving code/data vaddrs location.
11// This requires some fixups for symtab/hash/gnu_hash dynamic section addresses.
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080012
13#include "elf_file.h"
14
15#include <stdlib.h>
16#include <sys/types.h>
17#include <unistd.h>
18#include <algorithm>
19#include <string>
20#include <vector>
21
22#include "debug.h"
23#include "elf_traits.h"
24#include "libelf.h"
25#include "packer.h"
26
27namespace relocation_packer {
28
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080029// Out-of-band dynamic tags used to indicate the offset and size of the
30// android packed relocations section.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -080031static constexpr int32_t DT_ANDROID_REL = DT_LOOS + 2;
32static constexpr int32_t DT_ANDROID_RELSZ = DT_LOOS + 3;
33
34static constexpr int32_t DT_ANDROID_RELA = DT_LOOS + 4;
35static constexpr int32_t DT_ANDROID_RELASZ = DT_LOOS + 5;
36
37static constexpr uint32_t SHT_ANDROID_REL = SHT_LOOS + 1;
38static constexpr uint32_t SHT_ANDROID_RELA = SHT_LOOS + 2;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080039
Dmitriy Ivanovb2939692015-04-27 18:53:27 -070040static const size_t kPageSize = 4096;
41
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080042// Alignment to preserve, in bytes. This must be at least as large as the
43// largest d_align and sh_addralign values found in the loaded file.
44// Out of caution for RELRO page alignment, we preserve to a complete target
45// page. See http://www.airs.com/blog/archives/189.
Dmitriy Ivanovb2939692015-04-27 18:53:27 -070046static const size_t kPreserveAlignment = kPageSize;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080047
48// Get section data. Checks that the section has exactly one data entry,
49// so that the section size and the data size are the same. True in
50// practice for all sections we resize when packing or unpacking. Done
51// by ensuring that a call to elf_getdata(section, data) returns NULL as
52// the next data entry.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -080053static Elf_Data* GetSectionData(Elf_Scn* section) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080054 Elf_Data* data = elf_getdata(section, NULL);
55 CHECK(data && elf_getdata(section, data) == NULL);
56 return data;
57}
58
59// Rewrite section data. Allocates new data and makes it the data element's
60// buffer. Relies on program exit to free allocated data.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -080061static void RewriteSectionData(Elf_Scn* section,
62 const void* section_data,
63 size_t size) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080064 Elf_Data* data = GetSectionData(section);
65 CHECK(size == data->d_size);
66 uint8_t* area = new uint8_t[size];
67 memcpy(area, section_data, size);
68 data->d_buf = area;
69}
70
71// Verbose ELF header logging.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -080072template <typename Ehdr>
73static void VerboseLogElfHeader(const Ehdr* elf_header) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080074 VLOG(1) << "e_phoff = " << elf_header->e_phoff;
75 VLOG(1) << "e_shoff = " << elf_header->e_shoff;
76 VLOG(1) << "e_ehsize = " << elf_header->e_ehsize;
77 VLOG(1) << "e_phentsize = " << elf_header->e_phentsize;
78 VLOG(1) << "e_phnum = " << elf_header->e_phnum;
79 VLOG(1) << "e_shnum = " << elf_header->e_shnum;
80 VLOG(1) << "e_shstrndx = " << elf_header->e_shstrndx;
81}
82
83// Verbose ELF program header logging.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -080084template <typename Phdr>
85static void VerboseLogProgramHeader(size_t program_header_index,
86 const Phdr* program_header) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -080087 std::string type;
88 switch (program_header->p_type) {
89 case PT_NULL: type = "NULL"; break;
90 case PT_LOAD: type = "LOAD"; break;
91 case PT_DYNAMIC: type = "DYNAMIC"; break;
92 case PT_INTERP: type = "INTERP"; break;
93 case PT_PHDR: type = "PHDR"; break;
94 case PT_GNU_RELRO: type = "GNU_RELRO"; break;
95 case PT_GNU_STACK: type = "GNU_STACK"; break;
96 case PT_ARM_EXIDX: type = "EXIDX"; break;
97 default: type = "(OTHER)"; break;
98 }
99 VLOG(1) << "phdr[" << program_header_index << "] : " << type;
100 VLOG(1) << " p_offset = " << program_header->p_offset;
101 VLOG(1) << " p_vaddr = " << program_header->p_vaddr;
102 VLOG(1) << " p_paddr = " << program_header->p_paddr;
103 VLOG(1) << " p_filesz = " << program_header->p_filesz;
104 VLOG(1) << " p_memsz = " << program_header->p_memsz;
105 VLOG(1) << " p_flags = " << program_header->p_flags;
106 VLOG(1) << " p_align = " << program_header->p_align;
107}
108
109// Verbose ELF section header logging.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800110template <typename Shdr>
111static void VerboseLogSectionHeader(const std::string& section_name,
112 const Shdr* section_header) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800113 VLOG(1) << "section " << section_name;
114 VLOG(1) << " sh_addr = " << section_header->sh_addr;
115 VLOG(1) << " sh_offset = " << section_header->sh_offset;
116 VLOG(1) << " sh_size = " << section_header->sh_size;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800117 VLOG(1) << " sh_entsize = " << section_header->sh_entsize;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800118 VLOG(1) << " sh_addralign = " << section_header->sh_addralign;
119}
120
121// Verbose ELF section data logging.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800122static void VerboseLogSectionData(const Elf_Data* data) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800123 VLOG(1) << " data";
124 VLOG(1) << " d_buf = " << data->d_buf;
125 VLOG(1) << " d_off = " << data->d_off;
126 VLOG(1) << " d_size = " << data->d_size;
127 VLOG(1) << " d_align = " << data->d_align;
128}
129
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800130// Load the complete ELF file into a memory image in libelf, and identify
131// the .rel.dyn or .rela.dyn, .dynamic, and .android.rel.dyn or
132// .android.rela.dyn sections. No-op if the ELF file has already been loaded.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800133template <typename ELF>
134bool ElfFile<ELF>::Load() {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800135 if (elf_)
136 return true;
137
138 Elf* elf = elf_begin(fd_, ELF_C_RDWR, NULL);
139 CHECK(elf);
140
141 if (elf_kind(elf) != ELF_K_ELF) {
142 LOG(ERROR) << "File not in ELF format";
143 return false;
144 }
145
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800146 auto elf_header = ELF::getehdr(elf);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800147 if (!elf_header) {
148 LOG(ERROR) << "Failed to load ELF header: " << elf_errmsg(elf_errno());
149 return false;
150 }
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800151
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800152 if (elf_header->e_type != ET_DYN) {
153 LOG(ERROR) << "ELF file is not a shared object";
154 return false;
155 }
156
157 // Require that our endianness matches that of the target, and that both
158 // are little-endian. Safe for all current build/target combinations.
159 const int endian = elf_header->e_ident[EI_DATA];
160 CHECK(endian == ELFDATA2LSB);
161 CHECK(__BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__);
162
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800163 const int file_class = elf_header->e_ident[EI_CLASS];
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800164 VLOG(1) << "endian = " << endian << ", file class = " << file_class;
165 VerboseLogElfHeader(elf_header);
166
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800167 auto elf_program_header = ELF::getphdr(elf);
168 CHECK(elf_program_header != nullptr);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800169
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800170 const typename ELF::Phdr* dynamic_program_header = NULL;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800171 for (size_t i = 0; i < elf_header->e_phnum; ++i) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800172 auto program_header = &elf_program_header[i];
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800173 VerboseLogProgramHeader(i, program_header);
174
175 if (program_header->p_type == PT_DYNAMIC) {
176 CHECK(dynamic_program_header == NULL);
177 dynamic_program_header = program_header;
178 }
179 }
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800180 CHECK(dynamic_program_header != nullptr);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800181
182 size_t string_index;
183 elf_getshdrstrndx(elf, &string_index);
184
185 // Notes of the dynamic relocations, packed relocations, and .dynamic
186 // sections. Found while iterating sections, and later stored in class
187 // attributes.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800188 Elf_Scn* found_relocations_section = nullptr;
189 Elf_Scn* found_dynamic_section = nullptr;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800190
191 // Notes of relocation section types seen. We require one or the other of
192 // these; both is unsupported.
193 bool has_rel_relocations = false;
194 bool has_rela_relocations = false;
Dmitriy Ivanovf15ceeb2015-04-21 15:03:04 -0700195 bool has_android_relocations = false;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800196
197 Elf_Scn* section = NULL;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800198 while ((section = elf_nextscn(elf, section)) != nullptr) {
199 auto section_header = ELF::getshdr(section);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800200 std::string name = elf_strptr(elf, string_index, section_header->sh_name);
201 VerboseLogSectionHeader(name, section_header);
202
203 // Note relocation section types.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800204 if (section_header->sh_type == SHT_REL || section_header->sh_type == SHT_ANDROID_REL) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800205 has_rel_relocations = true;
206 }
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800207 if (section_header->sh_type == SHT_RELA || section_header->sh_type == SHT_ANDROID_RELA) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800208 has_rela_relocations = true;
209 }
210
211 // Note special sections as we encounter them.
212 if ((name == ".rel.dyn" || name == ".rela.dyn") &&
213 section_header->sh_size > 0) {
214 found_relocations_section = section;
Dmitriy Ivanovf15ceeb2015-04-21 15:03:04 -0700215
216 // Note if relocation section is already packed
217 has_android_relocations =
218 section_header->sh_type == SHT_ANDROID_REL ||
219 section_header->sh_type == SHT_ANDROID_RELA;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800220 }
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800221
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800222 if (section_header->sh_offset == dynamic_program_header->p_offset) {
223 found_dynamic_section = section;
224 }
225
226 // Ensure we preserve alignment, repeated later for the data block(s).
227 CHECK(section_header->sh_addralign <= kPreserveAlignment);
228
229 Elf_Data* data = NULL;
230 while ((data = elf_getdata(section, data)) != NULL) {
231 CHECK(data->d_align <= kPreserveAlignment);
232 VerboseLogSectionData(data);
233 }
234 }
235
236 // Loading failed if we did not find the required special sections.
237 if (!found_relocations_section) {
238 LOG(ERROR) << "Missing or empty .rel.dyn or .rela.dyn section";
239 return false;
240 }
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800241 if (!found_dynamic_section) {
242 LOG(ERROR) << "Missing .dynamic section";
243 return false;
244 }
245
246 // Loading failed if we could not identify the relocations type.
247 if (!has_rel_relocations && !has_rela_relocations) {
248 LOG(ERROR) << "No relocations sections found";
249 return false;
250 }
251 if (has_rel_relocations && has_rela_relocations) {
252 LOG(ERROR) << "Multiple relocations sections with different types found, "
253 << "not currently supported";
254 return false;
255 }
256
257 elf_ = elf;
258 relocations_section_ = found_relocations_section;
259 dynamic_section_ = found_dynamic_section;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800260 relocations_type_ = has_rel_relocations ? REL : RELA;
Dmitriy Ivanovf15ceeb2015-04-21 15:03:04 -0700261 has_android_relocations_ = has_android_relocations;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800262 return true;
263}
264
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800265// Helper for ResizeSection(). Adjust the main ELF header for the hole.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800266template <typename ELF>
267static void AdjustElfHeaderForHole(typename ELF::Ehdr* elf_header,
268 typename ELF::Off hole_start,
269 ssize_t hole_size) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800270 if (elf_header->e_phoff > hole_start) {
271 elf_header->e_phoff += hole_size;
272 VLOG(1) << "e_phoff adjusted to " << elf_header->e_phoff;
273 }
274 if (elf_header->e_shoff > hole_start) {
275 elf_header->e_shoff += hole_size;
276 VLOG(1) << "e_shoff adjusted to " << elf_header->e_shoff;
277 }
278}
279
280// Helper for ResizeSection(). Adjust all section headers for the hole.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800281template <typename ELF>
282static void AdjustSectionHeadersForHole(Elf* elf,
283 typename ELF::Off hole_start,
284 ssize_t hole_size) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800285 size_t string_index;
286 elf_getshdrstrndx(elf, &string_index);
287
288 Elf_Scn* section = NULL;
289 while ((section = elf_nextscn(elf, section)) != NULL) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800290 auto section_header = ELF::getshdr(section);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800291 std::string name = elf_strptr(elf, string_index, section_header->sh_name);
292
293 if (section_header->sh_offset > hole_start) {
294 section_header->sh_offset += hole_size;
295 VLOG(1) << "section " << name
296 << " sh_offset adjusted to " << section_header->sh_offset;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800297 } else {
298 section_header->sh_addr -= hole_size;
299 VLOG(1) << "section " << name
300 << " sh_addr adjusted to " << section_header->sh_addr;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800301 }
302 }
303}
304
305// Helper for ResizeSection(). Adjust the offsets of any program headers
306// that have offsets currently beyond the hole start.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800307template <typename ELF>
308static void AdjustProgramHeaderOffsets(typename ELF::Phdr* program_headers,
309 size_t count,
310 typename ELF::Off hole_start,
311 ssize_t hole_size) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800312 for (size_t i = 0; i < count; ++i) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800313 typename ELF::Phdr* program_header = &program_headers[i];
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800314
Dmitriy Ivanov4637f3d2015-05-04 11:11:23 -0700315 // Do not adjust PT_GNU_STACK - it confuses gdb and results
316 // in incorrect unwinding if the executable is stripped after
317 // packing.
318 if (program_header->p_type == PT_GNU_STACK) {
319 continue;
320 }
321
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800322 if (program_header->p_offset > hole_start) {
323 // The hole start is past this segment, so adjust offset.
324 program_header->p_offset += hole_size;
325 VLOG(1) << "phdr[" << i
326 << "] p_offset adjusted to "<< program_header->p_offset;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800327 } else {
328 program_header->p_vaddr -= hole_size;
329 program_header->p_paddr -= hole_size;
Dmitriy Ivanovb2939692015-04-27 18:53:27 -0700330 if (program_header->p_align > kPageSize) {
331 program_header->p_align = kPageSize;
332 }
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800333 VLOG(1) << "phdr[" << i
334 << "] p_vaddr adjusted to "<< program_header->p_vaddr
Dmitriy Ivanovb2939692015-04-27 18:53:27 -0700335 << "; p_paddr adjusted to "<< program_header->p_paddr
336 << "; p_align adjusted to "<< program_header->p_align;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800337 }
338 }
339}
340
341// Helper for ResizeSection(). Find the first loadable segment in the
342// file. We expect it to map from file offset zero.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800343template <typename ELF>
344static typename ELF::Phdr* FindLoadSegmentForHole(typename ELF::Phdr* program_headers,
345 size_t count,
346 typename ELF::Off hole_start) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800347 for (size_t i = 0; i < count; ++i) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800348 typename ELF::Phdr* program_header = &program_headers[i];
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800349
350 if (program_header->p_type == PT_LOAD &&
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800351 program_header->p_offset <= hole_start &&
352 (program_header->p_offset + program_header->p_filesz) >= hole_start ) {
353 return program_header;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800354 }
355 }
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800356 LOG(FATAL) << "Cannot locate a LOAD segment with hole_start=0x" << std::hex << hole_start;
357 NOTREACHED();
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800358
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800359 return nullptr;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800360}
361
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800362// Helper for ResizeSection(). Rewrite program headers.
363template <typename ELF>
364static void RewriteProgramHeadersForHole(Elf* elf,
365 typename ELF::Off hole_start,
366 ssize_t hole_size) {
367 const typename ELF::Ehdr* elf_header = ELF::getehdr(elf);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800368 CHECK(elf_header);
369
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800370 typename ELF::Phdr* elf_program_header = ELF::getphdr(elf);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800371 CHECK(elf_program_header);
372
373 const size_t program_header_count = elf_header->e_phnum;
374
375 // Locate the segment that we can overwrite to form the new LOAD entry,
376 // and the segment that we are going to split into two parts.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800377 typename ELF::Phdr* target_load_header =
378 FindLoadSegmentForHole<ELF>(elf_program_header, program_header_count, hole_start);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800379
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800380 VLOG(1) << "phdr[" << target_load_header - elf_program_header << "] adjust";
381 // Adjust PT_LOAD program header memsz and filesz
382 target_load_header->p_filesz += hole_size;
383 target_load_header->p_memsz += hole_size;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800384
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800385 // Adjust the offsets and p_vaddrs
386 AdjustProgramHeaderOffsets<ELF>(elf_program_header,
387 program_header_count,
388 hole_start,
389 hole_size);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800390}
391
392// Helper for ResizeSection(). Locate and return the dynamic section.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800393template <typename ELF>
394static Elf_Scn* GetDynamicSection(Elf* elf) {
395 const typename ELF::Ehdr* elf_header = ELF::getehdr(elf);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800396 CHECK(elf_header);
397
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800398 const typename ELF::Phdr* elf_program_header = ELF::getphdr(elf);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800399 CHECK(elf_program_header);
400
401 // Find the program header that describes the dynamic section.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800402 const typename ELF::Phdr* dynamic_program_header = NULL;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800403 for (size_t i = 0; i < elf_header->e_phnum; ++i) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800404 const typename ELF::Phdr* program_header = &elf_program_header[i];
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800405
406 if (program_header->p_type == PT_DYNAMIC) {
407 dynamic_program_header = program_header;
408 }
409 }
410 CHECK(dynamic_program_header);
411
412 // Now find the section with the same offset as this program header.
413 Elf_Scn* dynamic_section = NULL;
414 Elf_Scn* section = NULL;
415 while ((section = elf_nextscn(elf, section)) != NULL) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800416 typename ELF::Shdr* section_header = ELF::getshdr(section);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800417
418 if (section_header->sh_offset == dynamic_program_header->p_offset) {
419 dynamic_section = section;
420 }
421 }
422 CHECK(dynamic_section != NULL);
423
424 return dynamic_section;
425}
426
427// Helper for ResizeSection(). Adjust the .dynamic section for the hole.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800428template <typename ELF>
429void ElfFile<ELF>::AdjustDynamicSectionForHole(Elf_Scn* dynamic_section,
430 typename ELF::Off hole_start,
431 ssize_t hole_size,
432 relocations_type_t relocations_type) {
433 CHECK(relocations_type != NONE);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800434 Elf_Data* data = GetSectionData(dynamic_section);
435
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800436 auto dynamic_base = reinterpret_cast<typename ELF::Dyn*>(data->d_buf);
437 std::vector<typename ELF::Dyn> dynamics(
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800438 dynamic_base,
439 dynamic_base + data->d_size / sizeof(dynamics[0]));
440
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800441 if (hole_size > 0) { // expanding
442 hole_start += hole_size;
443 }
444
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800445 for (size_t i = 0; i < dynamics.size(); ++i) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800446 typename ELF::Dyn* dynamic = &dynamics[i];
447 const typename ELF::Sword tag = dynamic->d_tag;
448
449 // Any tags that hold offsets are adjustment candidates.
450 const bool is_adjustable = (tag == DT_PLTGOT ||
451 tag == DT_HASH ||
452 tag == DT_GNU_HASH ||
453 tag == DT_STRTAB ||
454 tag == DT_SYMTAB ||
455 tag == DT_RELA ||
456 tag == DT_INIT ||
457 tag == DT_FINI ||
458 tag == DT_REL ||
459 tag == DT_JMPREL ||
460 tag == DT_INIT_ARRAY ||
461 tag == DT_FINI_ARRAY ||
Dmitriy Ivanovbb25bbe2015-04-20 17:41:28 -0700462 tag == DT_VERSYM ||
463 tag == DT_VERNEED ||
464 tag == DT_VERDEF ||
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800465 tag == DT_ANDROID_REL||
466 tag == DT_ANDROID_RELA);
467
468 if (is_adjustable && dynamic->d_un.d_ptr <= hole_start) {
469 dynamic->d_un.d_ptr -= hole_size;
470 VLOG(1) << "dynamic[" << i << "] " << dynamic->d_tag
471 << " d_ptr adjusted to " << dynamic->d_un.d_ptr;
472 }
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800473
474 // DT_RELSZ or DT_RELASZ indicate the overall size of relocations.
475 // Only one will be present. Adjust by hole size.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800476 if (tag == DT_RELSZ || tag == DT_RELASZ || tag == DT_ANDROID_RELSZ || tag == DT_ANDROID_RELASZ) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800477 dynamic->d_un.d_val += hole_size;
478 VLOG(1) << "dynamic[" << i << "] " << dynamic->d_tag
479 << " d_val adjusted to " << dynamic->d_un.d_val;
480 }
481
Dmitriy Ivanov18c935c2015-04-29 19:34:51 -0700482 // Special case: DT_MIPS_RLD_MAP2 stores the difference between dynamic
483 // entry address and the address of the _r_debug (used by GDB)
484 // since the dynamic section and target address are on the
485 // different sides of the hole it needs to be adjusted accordingly
486 if (tag == DT_MIPS_RLD_MAP2) {
487 dynamic->d_un.d_val += hole_size;
488 VLOG(1) << "dynamic[" << i << "] " << dynamic->d_tag
489 << " d_val adjusted to " << dynamic->d_un.d_val;
490 }
491
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800492 // Ignore DT_RELCOUNT and DT_RELACOUNT: (1) nobody uses them and
493 // technically (2) the relative relocation count is not changed.
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800494
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800495 // DT_RELENT and DT_RELAENT don't change, ignore them as well.
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800496 }
497
498 void* section_data = &dynamics[0];
499 size_t bytes = dynamics.size() * sizeof(dynamics[0]);
500 RewriteSectionData(dynamic_section, section_data, bytes);
501}
502
503// Resize a section. If the new size is larger than the current size, open
504// up a hole by increasing file offsets that come after the hole. If smaller
505// than the current size, remove the hole by decreasing those offsets.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800506template <typename ELF>
507void ElfFile<ELF>::ResizeSection(Elf* elf, Elf_Scn* section, size_t new_size,
508 typename ELF::Word new_sh_type,
509 relocations_type_t relocations_type) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800510
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800511 size_t string_index;
512 elf_getshdrstrndx(elf, &string_index);
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800513 auto section_header = ELF::getshdr(section);
514 std::string name = elf_strptr(elf, string_index, section_header->sh_name);
515
516 if (section_header->sh_size == new_size) {
517 return;
518 }
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800519
520 // Require that the section size and the data size are the same. True
521 // in practice for all sections we resize when packing or unpacking.
522 Elf_Data* data = GetSectionData(section);
523 CHECK(data->d_off == 0 && data->d_size == section_header->sh_size);
524
525 // Require that the section is not zero-length (that is, has allocated
526 // data that we can validly expand).
527 CHECK(data->d_size && data->d_buf);
528
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800529 const auto hole_start = section_header->sh_offset;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800530 const ssize_t hole_size = new_size - data->d_size;
531
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800532 VLOG_IF(1, (hole_size > 0)) << "expand section (" << name << ") size: " <<
533 data->d_size << " -> " << (data->d_size + hole_size);
534 VLOG_IF(1, (hole_size < 0)) << "shrink section (" << name << ") size: " <<
535 data->d_size << " -> " << (data->d_size + hole_size);
536
537 // libelf overrides sh_entsize for known sh_types, so it does not matter what we set
538 // for SHT_REL/SHT_RELA.
539 typename ELF::Xword new_entsize =
540 (new_sh_type == SHT_ANDROID_REL || new_sh_type == SHT_ANDROID_RELA) ? 1 : 0;
541
542 VLOG(1) << "Update section (" << name << ") entry size: " <<
543 section_header->sh_entsize << " -> " << new_entsize;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800544
545 // Resize the data and the section header.
546 data->d_size += hole_size;
547 section_header->sh_size += hole_size;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800548 section_header->sh_entsize = new_entsize;
549 section_header->sh_type = new_sh_type;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800550
551 // Add the hole size to all offsets in the ELF file that are after the
552 // start of the hole. If the hole size is positive we are expanding the
553 // section to create a new hole; if negative, we are closing up a hole.
554
555 // Start with the main ELF header.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800556 typename ELF::Ehdr* elf_header = ELF::getehdr(elf);
557 AdjustElfHeaderForHole<ELF>(elf_header, hole_start, hole_size);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800558
559 // Adjust all section headers.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800560 AdjustSectionHeadersForHole<ELF>(elf, hole_start, hole_size);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800561
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800562 // Rewrite the program headers to either split or coalesce segments,
563 // and adjust dynamic entries to match.
564 RewriteProgramHeadersForHole<ELF>(elf, hole_start, hole_size);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800565
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800566 Elf_Scn* dynamic_section = GetDynamicSection<ELF>(elf);
567 AdjustDynamicSectionForHole(dynamic_section, hole_start, hole_size, relocations_type);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800568}
569
570// Find the first slot in a dynamics array with the given tag. The array
571// always ends with a free (unused) element, and which we exclude from the
572// search. Returns dynamics->size() if not found.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800573template <typename ELF>
574static size_t FindDynamicEntry(typename ELF::Sword tag,
575 std::vector<typename ELF::Dyn>* dynamics) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800576 // Loop until the penultimate entry. We exclude the end sentinel.
577 for (size_t i = 0; i < dynamics->size() - 1; ++i) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800578 if (dynamics->at(i).d_tag == tag) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800579 return i;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800580 }
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800581 }
582
583 // The tag was not found.
584 return dynamics->size();
585}
586
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800587// Replace dynamic entry.
588template <typename ELF>
589static void ReplaceDynamicEntry(typename ELF::Sword tag,
590 const typename ELF::Dyn& dyn,
591 std::vector<typename ELF::Dyn>* dynamics) {
592 const size_t slot = FindDynamicEntry<ELF>(tag, dynamics);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800593 if (slot == dynamics->size()) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800594 LOG(FATAL) << "Dynamic slot is not found for tag=" << tag;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800595 }
596
597 // Replace this entry with the one supplied.
598 dynamics->at(slot) = dyn;
599 VLOG(1) << "dynamic[" << slot << "] overwritten with " << dyn.d_tag;
600}
601
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800602// Remove relative entries from dynamic relocations and write as packed
603// data into android packed relocations.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800604template <typename ELF>
605bool ElfFile<ELF>::PackRelocations() {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800606 // Load the ELF file into libelf.
607 if (!Load()) {
608 LOG(ERROR) << "Failed to load as ELF";
609 return false;
610 }
611
612 // Retrieve the current dynamic relocations section data.
613 Elf_Data* data = GetSectionData(relocations_section_);
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800614 // we always pack rela, because packed format is pretty much the same
615 std::vector<typename ELF::Rela> relocations;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800616
617 if (relocations_type_ == REL) {
618 // Convert data to a vector of relocations.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800619 const typename ELF::Rel* relocations_base = reinterpret_cast<typename ELF::Rel*>(data->d_buf);
620 ConvertRelArrayToRelaVector(relocations_base,
621 data->d_size / sizeof(typename ELF::Rel), &relocations);
Dmitriy Ivanovbb25bbe2015-04-20 17:41:28 -0700622 VLOG(1) << "Relocations : REL";
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800623 } else if (relocations_type_ == RELA) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800624 // Convert data to a vector of relocations with addends.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800625 const typename ELF::Rela* relocations_base = reinterpret_cast<typename ELF::Rela*>(data->d_buf);
626 relocations = std::vector<typename ELF::Rela>(
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800627 relocations_base,
628 relocations_base + data->d_size / sizeof(relocations[0]));
629
Dmitriy Ivanovbb25bbe2015-04-20 17:41:28 -0700630 VLOG(1) << "Relocations : RELA";
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800631 } else {
632 NOTREACHED();
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800633 }
634
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800635 return PackTypedRelocations(&relocations);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800636}
637
638// Helper for PackRelocations(). Rel type is one of ELF::Rel or ELF::Rela.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800639template <typename ELF>
640bool ElfFile<ELF>::PackTypedRelocations(std::vector<typename ELF::Rela>* relocations) {
641 typedef typename ELF::Rela Rela;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800642
Dmitriy Ivanovf15ceeb2015-04-21 15:03:04 -0700643 if (has_android_relocations_) {
Dmitriy Ivanovb0b93382015-04-24 12:39:14 -0700644 LOG(INFO) << "Relocation table is already packed";
645 return true;
Dmitriy Ivanovf15ceeb2015-04-21 15:03:04 -0700646 }
647
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800648 // If no relocations then we have nothing packable. Perhaps
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800649 // the shared object has already been packed?
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800650 if (relocations->empty()) {
Dmitriy Ivanovf15ceeb2015-04-21 15:03:04 -0700651 LOG(ERROR) << "No relocations found";
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800652 return false;
653 }
654
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800655 const size_t rel_size =
656 relocations_type_ == RELA ? sizeof(typename ELF::Rela) : sizeof(typename ELF::Rel);
657 const size_t initial_bytes = relocations->size() * rel_size;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800658
Dmitriy Ivanovbb25bbe2015-04-20 17:41:28 -0700659 VLOG(1) << "Unpacked : " << initial_bytes << " bytes";
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800660 std::vector<uint8_t> packed;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800661 RelocationPacker<ELF> packer;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800662
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800663 // Pack relocations: dry run to estimate memory savings.
664 packer.PackRelocations(*relocations, &packed);
665 const size_t packed_bytes_estimate = packed.size() * sizeof(packed[0]);
Dmitriy Ivanovbb25bbe2015-04-20 17:41:28 -0700666 VLOG(1) << "Packed (no padding): " << packed_bytes_estimate << " bytes";
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800667
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800668 if (packed.empty()) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800669 LOG(INFO) << "Too few relocations to pack";
Dmitriy Ivanovbb25bbe2015-04-20 17:41:28 -0700670 return true;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800671 }
672
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800673 // Pre-calculate the size of the hole we will close up when we rewrite
674 // dynamic relocations. We have to adjust relocation addresses to
675 // account for this.
676 typename ELF::Shdr* section_header = ELF::getshdr(relocations_section_);
677 ssize_t hole_size = initial_bytes - packed_bytes_estimate;
678
679 // hole_size needs to be page_aligned.
680 hole_size -= hole_size % kPreserveAlignment;
681
682 LOG(INFO) << "Compaction : " << hole_size << " bytes";
683
684 // Adjusting for alignment may have removed any packing benefit.
685 if (hole_size == 0) {
686 LOG(INFO) << "Too few relocations to pack after alignment";
Dmitriy Ivanovbb25bbe2015-04-20 17:41:28 -0700687 return true;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800688 }
689
690 if (hole_size <= 0) {
691 LOG(INFO) << "Packing relocations saves no space";
Dmitriy Ivanovadfcb972015-04-23 13:47:39 -0700692 return true;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800693 }
694
695 size_t data_padding_bytes = is_padding_relocations_ ?
696 initial_bytes - packed_bytes_estimate :
697 initial_bytes - hole_size - packed_bytes_estimate;
698
699 // pad data
700 std::vector<uint8_t> padding(data_padding_bytes, 0);
701 packed.insert(packed.end(), padding.begin(), padding.end());
702
703 const void* packed_data = &packed[0];
704
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800705 // Run a loopback self-test as a check that packing is lossless.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800706 std::vector<Rela> unpacked;
707 packer.UnpackRelocations(packed, &unpacked);
708 CHECK(unpacked.size() == relocations->size());
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800709 CHECK(!memcmp(&unpacked[0],
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800710 &relocations->at(0),
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800711 unpacked.size() * sizeof(unpacked[0])));
712
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800713 // Rewrite the current dynamic relocations section with packed one then shrink it to size.
714 const size_t bytes = packed.size() * sizeof(packed[0]);
715 ResizeSection(elf_, relocations_section_, bytes,
716 relocations_type_ == REL ? SHT_ANDROID_REL : SHT_ANDROID_RELA, relocations_type_);
717 RewriteSectionData(relocations_section_, packed_data, bytes);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800718
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800719 // TODO (dimitry): fix string table and replace .rel.dyn/plt with .android.rel.dyn/plt
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800720
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800721 // Rewrite .dynamic and rename relocation tags describing the packed android
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800722 // relocations.
723 Elf_Data* data = GetSectionData(dynamic_section_);
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800724 const typename ELF::Dyn* dynamic_base = reinterpret_cast<typename ELF::Dyn*>(data->d_buf);
725 std::vector<typename ELF::Dyn> dynamics(
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800726 dynamic_base,
727 dynamic_base + data->d_size / sizeof(dynamics[0]));
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800728 section_header = ELF::getshdr(relocations_section_);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800729 {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800730 typename ELF::Dyn dyn;
731 dyn.d_tag = relocations_type_ == REL ? DT_ANDROID_REL : DT_ANDROID_RELA;
732 dyn.d_un.d_ptr = section_header->sh_addr;
733 ReplaceDynamicEntry<ELF>(relocations_type_ == REL ? DT_REL : DT_RELA, dyn, &dynamics);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800734 }
735 {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800736 typename ELF::Dyn dyn;
737 dyn.d_tag = relocations_type_ == REL ? DT_ANDROID_RELSZ : DT_ANDROID_RELASZ;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800738 dyn.d_un.d_val = section_header->sh_size;
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800739 ReplaceDynamicEntry<ELF>(relocations_type_ == REL ? DT_RELSZ : DT_RELASZ, dyn, &dynamics);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800740 }
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800741
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800742 const void* dynamics_data = &dynamics[0];
743 const size_t dynamics_bytes = dynamics.size() * sizeof(dynamics[0]);
744 RewriteSectionData(dynamic_section_, dynamics_data, dynamics_bytes);
745
746 Flush();
747 return true;
748}
749
750// Find packed relative relocations in the packed android relocations
751// section, unpack them, and rewrite the dynamic relocations section to
752// contain unpacked data.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800753template <typename ELF>
754bool ElfFile<ELF>::UnpackRelocations() {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800755 // Load the ELF file into libelf.
756 if (!Load()) {
757 LOG(ERROR) << "Failed to load as ELF";
758 return false;
759 }
760
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800761 typename ELF::Shdr* section_header = ELF::getshdr(relocations_section_);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800762 // Retrieve the current packed android relocations section data.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800763 Elf_Data* data = GetSectionData(relocations_section_);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800764
765 // Convert data to a vector of bytes.
766 const uint8_t* packed_base = reinterpret_cast<uint8_t*>(data->d_buf);
767 std::vector<uint8_t> packed(
768 packed_base,
769 packed_base + data->d_size / sizeof(packed[0]));
770
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800771 if ((section_header->sh_type == SHT_ANDROID_RELA || section_header->sh_type == SHT_ANDROID_REL) &&
772 packed.size() > 3 &&
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800773 packed[0] == 'A' &&
774 packed[1] == 'P' &&
Dmitriy Ivanovf15ceeb2015-04-21 15:03:04 -0700775 packed[2] == 'S' &&
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800776 packed[3] == '2') {
777 LOG(INFO) << "Relocations : " << (relocations_type_ == REL ? "REL" : "RELA");
778 } else {
779 LOG(ERROR) << "Packed relocations not found (not packed?)";
780 return false;
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800781 }
782
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800783 return UnpackTypedRelocations(packed);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800784}
785
786// Helper for UnpackRelocations(). Rel type is one of ELF::Rel or ELF::Rela.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800787template <typename ELF>
788bool ElfFile<ELF>::UnpackTypedRelocations(const std::vector<uint8_t>& packed) {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800789 // Unpack the data to re-materialize the relative relocations.
790 const size_t packed_bytes = packed.size() * sizeof(packed[0]);
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800791 LOG(INFO) << "Packed : " << packed_bytes << " bytes";
792 std::vector<typename ELF::Rela> unpacked_relocations;
793 RelocationPacker<ELF> packer;
794 packer.UnpackRelocations(packed, &unpacked_relocations);
795
796 const size_t relocation_entry_size =
797 relocations_type_ == REL ? sizeof(typename ELF::Rel) : sizeof(typename ELF::Rela);
798 const size_t unpacked_bytes = unpacked_relocations.size() * relocation_entry_size;
799 LOG(INFO) << "Unpacked : " << unpacked_bytes << " bytes";
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800800
801 // Retrieve the current dynamic relocations section data.
802 Elf_Data* data = GetSectionData(relocations_section_);
803
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800804 LOG(INFO) << "Relocations : " << unpacked_relocations.size() << " entries";
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800805
806 // If we found the same number of null relocation entries in the dynamic
807 // relocations section as we hold as unpacked relative relocations, then
808 // this is a padded file.
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800809
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800810 const bool is_padded = packed_bytes == unpacked_bytes;
811
812 // Unless padded, pre-apply relative relocations to account for the
813 // hole, and pre-adjust all relocation offsets accordingly.
814 typename ELF::Shdr* section_header = ELF::getshdr(relocations_section_);
815
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800816 if (!is_padded) {
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800817 LOG(INFO) << "Expansion : " << unpacked_bytes - packed_bytes << " bytes";
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800818 }
819
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800820 // Rewrite the current dynamic relocations section with unpacked version of
821 // relocations.
822 const void* section_data = nullptr;
823 std::vector<typename ELF::Rel> unpacked_rel_relocations;
824 if (relocations_type_ == RELA) {
825 section_data = &unpacked_relocations[0];
826 } else if (relocations_type_ == REL) {
827 ConvertRelaVectorToRelVector(unpacked_relocations, &unpacked_rel_relocations);
828 section_data = &unpacked_rel_relocations[0];
829 } else {
830 NOTREACHED();
831 }
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800832
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800833 ResizeSection(elf_, relocations_section_, unpacked_bytes,
834 relocations_type_ == REL ? SHT_REL : SHT_RELA, relocations_type_);
835 RewriteSectionData(relocations_section_, section_data, unpacked_bytes);
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800836
837 // Rewrite .dynamic to remove two tags describing packed android relocations.
838 data = GetSectionData(dynamic_section_);
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800839 const typename ELF::Dyn* dynamic_base = reinterpret_cast<typename ELF::Dyn*>(data->d_buf);
840 std::vector<typename ELF::Dyn> dynamics(
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800841 dynamic_base,
842 dynamic_base + data->d_size / sizeof(dynamics[0]));
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800843 {
844 typename ELF::Dyn dyn;
845 dyn.d_tag = relocations_type_ == REL ? DT_REL : DT_RELA;
846 dyn.d_un.d_ptr = section_header->sh_addr;
847 ReplaceDynamicEntry<ELF>(relocations_type_ == REL ? DT_ANDROID_REL : DT_ANDROID_RELA,
848 dyn, &dynamics);
849 }
850
851 {
852 typename ELF::Dyn dyn;
853 dyn.d_tag = relocations_type_ == REL ? DT_RELSZ : DT_RELASZ;
854 dyn.d_un.d_val = section_header->sh_size;
855 ReplaceDynamicEntry<ELF>(relocations_type_ == REL ? DT_ANDROID_RELSZ : DT_ANDROID_RELASZ,
856 dyn, &dynamics);
857 }
858
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800859 const void* dynamics_data = &dynamics[0];
860 const size_t dynamics_bytes = dynamics.size() * sizeof(dynamics[0]);
861 RewriteSectionData(dynamic_section_, dynamics_data, dynamics_bytes);
862
863 Flush();
864 return true;
865}
866
867// Flush rewritten shared object file data.
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800868template <typename ELF>
869void ElfFile<ELF>::Flush() {
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800870 // Flag all ELF data held in memory as needing to be written back to the
871 // file, and tell libelf that we have controlled the file layout.
872 elf_flagelf(elf_, ELF_C_SET, ELF_F_DIRTY);
873 elf_flagelf(elf_, ELF_C_SET, ELF_F_LAYOUT);
874
875 // Write ELF data back to disk.
876 const off_t file_bytes = elf_update(elf_, ELF_C_WRITE);
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800877 if (file_bytes == -1) {
878 LOG(ERROR) << "elf_update failed: " << elf_errmsg(elf_errno());
879 }
880
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800881 CHECK(file_bytes > 0);
882 VLOG(1) << "elf_update returned: " << file_bytes;
883
884 // Clean up libelf, and truncate the output file to the number of bytes
885 // written by elf_update().
886 elf_end(elf_);
887 elf_ = NULL;
888 const int truncate = ftruncate(fd_, file_bytes);
889 CHECK(truncate == 0);
890}
891
Dmitriy Ivanovf8ff6b12015-01-27 19:32:56 -0800892template <typename ELF>
893void ElfFile<ELF>::ConvertRelArrayToRelaVector(const typename ELF::Rel* rel_array,
894 size_t rel_array_size,
895 std::vector<typename ELF::Rela>* rela_vector) {
896 for (size_t i = 0; i<rel_array_size; ++i) {
897 typename ELF::Rela rela;
898 rela.r_offset = rel_array[i].r_offset;
899 rela.r_info = rel_array[i].r_info;
900 rela.r_addend = 0;
901 rela_vector->push_back(rela);
902 }
903}
904
905template <typename ELF>
906void ElfFile<ELF>::ConvertRelaVectorToRelVector(const std::vector<typename ELF::Rela>& rela_vector,
907 std::vector<typename ELF::Rel>* rel_vector) {
908 for (auto rela : rela_vector) {
909 typename ELF::Rel rel;
910 rel.r_offset = rela.r_offset;
911 rel.r_info = rela.r_info;
912 CHECK(rela.r_addend == 0);
913 rel_vector->push_back(rel);
914 }
915}
916
917template class ElfFile<ELF32_traits>;
918template class ElfFile<ELF64_traits>;
919
Dmitriy Ivanov87a06172015-02-06 10:56:28 -0800920} // namespace relocation_packer