elf_writer_quick.cc revision c6dfdacea2fd9e268f70328805b0366cdd6b7b9e
1/*
2 * Copyright (C) 2012 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 *      http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "elf_writer_quick.h"
18
19#include "base/logging.h"
20#include "base/unix_file/fd_file.h"
21#include "buffered_output_stream.h"
22#include "driver/compiler_driver.h"
23#include "file_output_stream.h"
24#include "globals.h"
25#include "oat.h"
26#include "oat_writer.h"
27#include "utils.h"
28
29namespace art {
30
31ElfWriterQuick::ElfWriterQuick(const CompilerDriver& driver, File* elf_file)
32  : ElfWriter(driver, elf_file) {}
33
34ElfWriterQuick::~ElfWriterQuick() {}
35
36bool ElfWriterQuick::Create(File* elf_file,
37                            OatWriter& oat_writer,
38                            const std::vector<const DexFile*>& dex_files,
39                            const std::string& android_root,
40                            bool is_host,
41                            const CompilerDriver& driver) {
42  ElfWriterQuick elf_writer(driver, elf_file);
43  return elf_writer.Write(oat_writer, dex_files, android_root, is_host);
44}
45
46bool ElfWriterQuick::Write(OatWriter& oat_writer,
47                           const std::vector<const DexFile*>& dex_files_unused,
48                           const std::string& android_root_unused,
49                           bool is_host_unused) {
50  const bool debug = false;
51  // +-------------------------+
52  // | Elf32_Ehdr              |
53  // +-------------------------+
54  // | Elf32_Phdr PHDR         |
55  // | Elf32_Phdr LOAD R       | .dynsym .dynstr .hash .rodata
56  // | Elf32_Phdr LOAD R X     | .text
57  // | Elf32_Phdr LOAD RW      | .dynamic
58  // | Elf32_Phdr DYNAMIC      | .dynamic
59  // +-------------------------+
60  // | .dynsym                 |
61  // | Elf32_Sym  STN_UNDEF    |
62  // | Elf32_Sym  oatdata      |
63  // | Elf32_Sym  oatexec      |
64  // | Elf32_Sym  oatlastword  |
65  // +-------------------------+
66  // | .dynstr                 |
67  // | \0                      |
68  // | oatdata\0               |
69  // | oatexec\0               |
70  // | oatlastword\0           |
71  // | boot.oat\0              |
72  // +-------------------------+
73  // | .hash                   |
74  // | Elf32_Word nbucket = 1  |
75  // | Elf32_Word nchain  = 3  |
76  // | Elf32_Word bucket[0] = 0|
77  // | Elf32_Word chain[0]  = 1|
78  // | Elf32_Word chain[1]  = 2|
79  // | Elf32_Word chain[2]  = 3|
80  // +-------------------------+
81  // | .rodata                 |
82  // | oatdata..oatexec-4      |
83  // +-------------------------+
84  // | .text                   |
85  // | oatexec..oatlastword    |
86  // +-------------------------+
87  // | .dynamic                |
88  // | Elf32_Dyn DT_SONAME     |
89  // | Elf32_Dyn DT_HASH       |
90  // | Elf32_Dyn DT_SYMTAB     |
91  // | Elf32_Dyn DT_SYMENT     |
92  // | Elf32_Dyn DT_STRTAB     |
93  // | Elf32_Dyn DT_STRSZ      |
94  // | Elf32_Dyn DT_NULL       |
95  // +-------------------------+
96  // | .shstrtab               |
97  // | \0                      |
98  // | .dynamic\0              |
99  // | .dynsym\0               |
100  // | .dynstr\0               |
101  // | .hash\0                 |
102  // | .rodata\0               |
103  // | .text\0                 |
104  // | .shstrtab\0             |
105  // +-------------------------+
106  // | Elf32_Shdr NULL         |
107  // | Elf32_Shdr .dynsym      |
108  // | Elf32_Shdr .dynstr      |
109  // | Elf32_Shdr .hash        |
110  // | Elf32_Shdr .text        |
111  // | Elf32_Shdr .rodata      |
112  // | Elf32_Shdr .dynamic     |
113  // | Elf32_Shdr .shstrtab    |
114  // +-------------------------+
115
116  // phase 1: computing offsets
117  uint32_t expected_offset = 0;
118
119  // Elf32_Ehdr
120  expected_offset += sizeof(llvm::ELF::Elf32_Ehdr);
121
122  // PHDR
123  uint32_t phdr_alignment = sizeof(llvm::ELF::Elf32_Word);
124  uint32_t phdr_offset = expected_offset;
125  const uint8_t PH_PHDR     = 0;
126  const uint8_t PH_LOAD_R__ = 1;
127  const uint8_t PH_LOAD_R_X = 2;
128  const uint8_t PH_LOAD_RW_ = 3;
129  const uint8_t PH_DYNAMIC  = 4;
130  const uint8_t PH_NUM      = 5;
131  uint32_t phdr_size = sizeof(llvm::ELF::Elf32_Phdr) * PH_NUM;
132  expected_offset += phdr_size;
133  if (debug) {
134    LOG(INFO) << "phdr_offset=" << phdr_offset << std::hex << " " << phdr_offset;
135    LOG(INFO) << "phdr_size=" << phdr_size << std::hex << " " << phdr_size;
136  }
137
138  // .dynsym
139  uint32_t dynsym_alignment = sizeof(llvm::ELF::Elf32_Word);
140  uint32_t dynsym_offset = expected_offset = RoundUp(expected_offset, dynsym_alignment);
141  const uint8_t SYM_UNDEF       = 0;  // aka STN_UNDEF
142  const uint8_t SYM_OATDATA     = 1;
143  const uint8_t SYM_OATEXEC     = 2;
144  const uint8_t SYM_OATLASTWORD = 3;
145  const uint8_t SYM_NUM         = 4;
146  uint32_t dynsym_size = sizeof(llvm::ELF::Elf32_Sym) * SYM_NUM;
147  expected_offset += dynsym_size;
148  if (debug) {
149    LOG(INFO) << "dynsym_offset=" << dynsym_offset << std::hex << " " << dynsym_offset;
150    LOG(INFO) << "dynsym_size=" << dynsym_size << std::hex << " " << dynsym_size;
151  }
152
153  // .dynstr
154  uint32_t dynstr_alignment = 1;
155  uint32_t dynstr_offset = expected_offset = RoundUp(expected_offset, dynstr_alignment);
156  std::string dynstr;
157  dynstr += '\0';
158  uint32_t dynstr_oatdata_offset = dynstr.size();
159  dynstr += "oatdata";
160  dynstr += '\0';
161  uint32_t dynstr_oatexec_offset = dynstr.size();
162  dynstr += "oatexec";
163  dynstr += '\0';
164  uint32_t dynstr_oatlastword_offset = dynstr.size();
165  dynstr += "oatlastword";
166  dynstr += '\0';
167  uint32_t dynstr_soname_offset = dynstr.size();
168  std::string file_name(elf_file_->GetPath());
169  size_t directory_separator_pos = file_name.rfind('/');
170  if (directory_separator_pos != std::string::npos) {
171    file_name = file_name.substr(directory_separator_pos + 1);
172  }
173  dynstr += file_name;
174  dynstr += '\0';
175  uint32_t dynstr_size = dynstr.size();
176  expected_offset += dynstr_size;
177  if (debug) {
178    LOG(INFO) << "dynstr_offset=" << dynstr_offset << std::hex << " " << dynstr_offset;
179    LOG(INFO) << "dynstr_size=" << dynstr_size << std::hex << " " << dynstr_size;
180  }
181
182  // .hash
183  uint32_t hash_alignment = sizeof(llvm::ELF::Elf32_Word);  // Even for 64-bit
184  uint32_t hash_offset = expected_offset = RoundUp(expected_offset, hash_alignment);
185  const uint8_t HASH_NBUCKET = 0;
186  const uint8_t HASH_NCHAIN  = 1;
187  const uint8_t HASH_BUCKET0 = 2;
188  const uint8_t HASH_NUM     = HASH_BUCKET0 + 1 + SYM_NUM;
189  uint32_t hash_size = sizeof(llvm::ELF::Elf32_Word) * HASH_NUM;
190  expected_offset += hash_size;
191  if (debug) {
192    LOG(INFO) << "hash_offset=" << hash_offset << std::hex << " " << hash_offset;
193    LOG(INFO) << "hash_size=" << hash_size << std::hex << " " << hash_size;
194  }
195
196  // .rodata
197  uint32_t oat_data_alignment = kPageSize;
198  uint32_t oat_data_offset = expected_offset = RoundUp(expected_offset, oat_data_alignment);
199  const OatHeader& oat_header = oat_writer.GetOatHeader();
200  CHECK(oat_header.IsValid());
201  uint32_t oat_data_size = oat_header.GetExecutableOffset();
202  expected_offset += oat_data_size;
203  if (debug) {
204    LOG(INFO) << "oat_data_offset=" << oat_data_offset << std::hex << " " << oat_data_offset;
205    LOG(INFO) << "oat_data_size=" << oat_data_size << std::hex << " " << oat_data_size;
206  }
207
208  // .text
209  uint32_t oat_exec_alignment = kPageSize;
210  CHECK_ALIGNED(expected_offset, kPageSize);
211  uint32_t oat_exec_offset = expected_offset = RoundUp(expected_offset, oat_exec_alignment);
212  uint32_t oat_exec_size = oat_writer.GetSize() - oat_data_size;
213  expected_offset += oat_exec_size;
214  CHECK_EQ(oat_data_offset + oat_writer.GetSize(), expected_offset);
215  if (debug) {
216    LOG(INFO) << "oat_exec_offset=" << oat_exec_offset << std::hex << " " << oat_exec_offset;
217    LOG(INFO) << "oat_exec_size=" << oat_exec_size << std::hex << " " << oat_exec_size;
218  }
219
220  // .dynamic
221  // alignment would naturally be sizeof(llvm::ELF::Elf32_Word), but we want this in a new segment
222  uint32_t dynamic_alignment = kPageSize;
223  uint32_t dynamic_offset = expected_offset = RoundUp(expected_offset, dynamic_alignment);
224  const uint8_t DH_SONAME = 0;
225  const uint8_t DH_HASH   = 1;
226  const uint8_t DH_SYMTAB = 2;
227  const uint8_t DH_SYMENT = 3;
228  const uint8_t DH_STRTAB = 4;
229  const uint8_t DH_STRSZ  = 5;
230  const uint8_t DH_NULL   = 6;
231  const uint8_t DH_NUM    = 7;
232  uint32_t dynamic_size = sizeof(llvm::ELF::Elf32_Dyn) * DH_NUM;
233  expected_offset += dynamic_size;
234  if (debug) {
235    LOG(INFO) << "dynamic_offset=" << dynamic_offset << std::hex << " " << dynamic_offset;
236    LOG(INFO) << "dynamic_size=" << dynamic_size << std::hex << " " << dynamic_size;
237  }
238
239  // .shstrtab
240  uint32_t shstrtab_alignment = 1;
241  uint32_t shstrtab_offset = expected_offset = RoundUp(expected_offset, shstrtab_alignment);
242  std::string shstrtab;
243  shstrtab += '\0';
244  uint32_t shstrtab_dynamic_offset = shstrtab.size();
245  CHECK_EQ(1U, shstrtab_dynamic_offset);
246  shstrtab += ".dynamic";
247  shstrtab += '\0';
248  uint32_t shstrtab_dynsym_offset = shstrtab.size();
249  shstrtab += ".dynsym";
250  shstrtab += '\0';
251  uint32_t shstrtab_dynstr_offset = shstrtab.size();
252  shstrtab += ".dynstr";
253  shstrtab += '\0';
254  uint32_t shstrtab_hash_offset = shstrtab.size();
255  shstrtab += ".hash";
256  shstrtab += '\0';
257  uint32_t shstrtab_rodata_offset = shstrtab.size();
258  shstrtab += ".rodata";
259  shstrtab += '\0';
260  uint32_t shstrtab_text_offset = shstrtab.size();
261  shstrtab += ".text";
262  shstrtab += '\0';
263  uint32_t shstrtab_shstrtab_offset = shstrtab.size();
264  shstrtab += ".shstrtab";
265  shstrtab += '\0';
266  uint32_t shstrtab_size = shstrtab.size();
267  expected_offset += shstrtab_size;
268  if (debug) {
269    LOG(INFO) << "shstrtab_offset=" << shstrtab_offset << std::hex << " " << shstrtab_offset;
270    LOG(INFO) << "shstrtab_size=" << shstrtab_size << std::hex << " " << shstrtab_size;
271  }
272
273  // section headers (after all sections)
274  uint32_t shdr_alignment = sizeof(llvm::ELF::Elf32_Word);
275  uint32_t shdr_offset = expected_offset = RoundUp(expected_offset, shdr_alignment);
276  const uint8_t SH_NULL     = 0;
277  const uint8_t SH_DYNSYM   = 1;
278  const uint8_t SH_DYNSTR   = 2;
279  const uint8_t SH_HASH     = 3;
280  const uint8_t SH_RODATA   = 4;
281  const uint8_t SH_TEXT     = 5;
282  const uint8_t SH_DYNAMIC  = 6;
283  const uint8_t SH_SHSTRTAB = 7;
284  const uint8_t SH_NUM      = 8;
285  uint32_t shdr_size = sizeof(llvm::ELF::Elf32_Shdr) * SH_NUM;
286  expected_offset += shdr_size;
287  if (debug) {
288    LOG(INFO) << "shdr_offset=" << shdr_offset << std::hex << " " << shdr_offset;
289    LOG(INFO) << "shdr_size=" << shdr_size << std::hex << " " << shdr_size;
290  }
291
292  // phase 2: initializing data
293
294  // Elf32_Ehdr
295  llvm::ELF::Elf32_Ehdr elf_header;
296  memset(&elf_header, 0, sizeof(elf_header));
297  elf_header.e_ident[llvm::ELF::EI_MAG0]       = llvm::ELF::ElfMagic[0];
298  elf_header.e_ident[llvm::ELF::EI_MAG1]       = llvm::ELF::ElfMagic[1];
299  elf_header.e_ident[llvm::ELF::EI_MAG2]       = llvm::ELF::ElfMagic[2];
300  elf_header.e_ident[llvm::ELF::EI_MAG3]       = llvm::ELF::ElfMagic[3];
301  elf_header.e_ident[llvm::ELF::EI_CLASS]      = llvm::ELF::ELFCLASS32;
302  elf_header.e_ident[llvm::ELF::EI_DATA]       = llvm::ELF::ELFDATA2LSB;
303  elf_header.e_ident[llvm::ELF::EI_VERSION]    = llvm::ELF::EV_CURRENT;
304  elf_header.e_ident[llvm::ELF::EI_OSABI]      = llvm::ELF::ELFOSABI_LINUX;
305  elf_header.e_ident[llvm::ELF::EI_ABIVERSION] = 0;
306  elf_header.e_type = llvm::ELF::ET_DYN;
307  switch (compiler_driver_->GetInstructionSet()) {
308    case kThumb2: {
309      elf_header.e_machine = llvm::ELF::EM_ARM;
310      elf_header.e_flags = llvm::ELF::EF_ARM_EABI_VER5;
311      break;
312    }
313    case kX86: {
314      elf_header.e_machine = llvm::ELF::EM_386;
315      elf_header.e_flags = 0;
316      break;
317    }
318    case kMips: {
319      elf_header.e_machine = llvm::ELF::EM_MIPS;
320      elf_header.e_flags = (llvm::ELF::EF_MIPS_NOREORDER |
321                            llvm::ELF::EF_MIPS_PIC       |
322                            llvm::ELF::EF_MIPS_CPIC      |
323                            llvm::ELF::EF_MIPS_ABI_O32   |
324                            llvm::ELF::EF_MIPS_ARCH_32R2);
325      break;
326    }
327    case kArm:
328    default: {
329      LOG(FATAL) << "Unknown instruction set: " << compiler_driver_->GetInstructionSet();
330      break;
331    }
332  }
333  elf_header.e_version = 1;
334  elf_header.e_entry = 0;
335  elf_header.e_phoff = phdr_offset;
336  elf_header.e_shoff = shdr_offset;
337  elf_header.e_ehsize = sizeof(llvm::ELF::Elf32_Ehdr);
338  elf_header.e_phentsize = sizeof(llvm::ELF::Elf32_Phdr);
339  elf_header.e_phnum = PH_NUM;
340  elf_header.e_shentsize = sizeof(llvm::ELF::Elf32_Shdr);
341  elf_header.e_shnum = SH_NUM;
342  elf_header.e_shstrndx = SH_SHSTRTAB;
343
344  // PHDR
345  llvm::ELF::Elf32_Phdr program_headers[PH_NUM];
346  memset(&program_headers, 0, sizeof(program_headers));
347
348  program_headers[PH_PHDR].p_type    = llvm::ELF::PT_PHDR;
349  program_headers[PH_PHDR].p_offset  = phdr_offset;
350  program_headers[PH_PHDR].p_vaddr   = phdr_offset;
351  program_headers[PH_PHDR].p_paddr   = phdr_offset;
352  program_headers[PH_PHDR].p_filesz  = sizeof(program_headers);
353  program_headers[PH_PHDR].p_memsz   = sizeof(program_headers);
354  program_headers[PH_PHDR].p_flags   = llvm::ELF::PF_R;
355  program_headers[PH_PHDR].p_align   = phdr_alignment;
356
357  program_headers[PH_LOAD_R__].p_type    = llvm::ELF::PT_LOAD;
358  program_headers[PH_LOAD_R__].p_offset  = 0;
359  program_headers[PH_LOAD_R__].p_vaddr   = 0;
360  program_headers[PH_LOAD_R__].p_paddr   = 0;
361  program_headers[PH_LOAD_R__].p_filesz  = oat_data_offset + oat_data_size;
362  program_headers[PH_LOAD_R__].p_memsz   = oat_data_offset + oat_data_size;
363  program_headers[PH_LOAD_R__].p_flags   = llvm::ELF::PF_R;
364  program_headers[PH_LOAD_R__].p_align   = oat_data_alignment;
365
366  program_headers[PH_LOAD_R_X].p_type    = llvm::ELF::PT_LOAD;
367  program_headers[PH_LOAD_R_X].p_offset  = oat_exec_offset;
368  program_headers[PH_LOAD_R_X].p_vaddr   = oat_exec_offset;
369  program_headers[PH_LOAD_R_X].p_paddr   = oat_exec_offset;
370  program_headers[PH_LOAD_R_X].p_filesz  = oat_exec_size;
371  program_headers[PH_LOAD_R_X].p_memsz   = oat_exec_size;
372  program_headers[PH_LOAD_R_X].p_flags   = llvm::ELF::PF_R | llvm::ELF::PF_X;
373  program_headers[PH_LOAD_R_X].p_align   = oat_exec_alignment;
374
375  // TODO: PF_W for DYNAMIC is considered processor specific, do we need it?
376  program_headers[PH_LOAD_RW_].p_type    = llvm::ELF::PT_LOAD;
377  program_headers[PH_LOAD_RW_].p_offset  = dynamic_offset;
378  program_headers[PH_LOAD_RW_].p_vaddr   = dynamic_offset;
379  program_headers[PH_LOAD_RW_].p_paddr   = dynamic_offset;
380  program_headers[PH_LOAD_RW_].p_filesz  = dynamic_size;
381  program_headers[PH_LOAD_RW_].p_memsz   = dynamic_size;
382  program_headers[PH_LOAD_RW_].p_flags   = llvm::ELF::PF_R | llvm::ELF::PF_W;
383  program_headers[PH_LOAD_RW_].p_align   = dynamic_alignment;
384
385  // TODO: PF_W for DYNAMIC is considered processor specific, do we need it?
386  program_headers[PH_DYNAMIC].p_type    = llvm::ELF::PT_DYNAMIC;
387  program_headers[PH_DYNAMIC].p_offset  = dynamic_offset;
388  program_headers[PH_DYNAMIC].p_vaddr   = dynamic_offset;
389  program_headers[PH_DYNAMIC].p_paddr   = dynamic_offset;
390  program_headers[PH_DYNAMIC].p_filesz  = dynamic_size;
391  program_headers[PH_DYNAMIC].p_memsz   = dynamic_size;
392  program_headers[PH_DYNAMIC].p_flags   = llvm::ELF::PF_R | llvm::ELF::PF_W;
393  program_headers[PH_DYNAMIC].p_align   = dynamic_alignment;
394
395  // .dynsym
396  llvm::ELF::Elf32_Sym dynsym[SYM_NUM];
397  memset(&dynsym, 0, sizeof(dynsym));
398
399  dynsym[SYM_UNDEF].st_name  = 0;
400  dynsym[SYM_UNDEF].st_value = 0;
401  dynsym[SYM_UNDEF].st_size  = 0;
402  dynsym[SYM_UNDEF].st_info  = 0;
403  dynsym[SYM_UNDEF].st_other = 0;
404  dynsym[SYM_UNDEF].st_shndx = 0;
405
406  dynsym[SYM_OATDATA].st_name  = dynstr_oatdata_offset;
407  dynsym[SYM_OATDATA].st_value = oat_data_offset;
408  dynsym[SYM_OATDATA].st_size  = oat_data_size;
409  dynsym[SYM_OATDATA].setBindingAndType(llvm::ELF::STB_GLOBAL, llvm::ELF::STT_OBJECT);
410  dynsym[SYM_OATDATA].st_other = llvm::ELF::STV_DEFAULT;
411  dynsym[SYM_OATDATA].st_shndx = SH_RODATA;
412
413  dynsym[SYM_OATEXEC].st_name  = dynstr_oatexec_offset;
414  dynsym[SYM_OATEXEC].st_value = oat_exec_offset;
415  dynsym[SYM_OATEXEC].st_size  = oat_exec_size;
416  dynsym[SYM_OATEXEC].setBindingAndType(llvm::ELF::STB_GLOBAL, llvm::ELF::STT_OBJECT);
417  dynsym[SYM_OATEXEC].st_other = llvm::ELF::STV_DEFAULT;
418  dynsym[SYM_OATEXEC].st_shndx = SH_TEXT;
419
420  dynsym[SYM_OATLASTWORD].st_name  = dynstr_oatlastword_offset;
421  dynsym[SYM_OATLASTWORD].st_value = oat_exec_offset + oat_exec_size - 4;
422  dynsym[SYM_OATLASTWORD].st_size  = 4;
423  dynsym[SYM_OATLASTWORD].setBindingAndType(llvm::ELF::STB_GLOBAL, llvm::ELF::STT_OBJECT);
424  dynsym[SYM_OATLASTWORD].st_other = llvm::ELF::STV_DEFAULT;
425  dynsym[SYM_OATLASTWORD].st_shndx = SH_TEXT;
426
427  // .dynstr initialized above as dynstr
428
429  // .hash
430  llvm::ELF::Elf32_Word hash[HASH_NUM];  // Note this is Elf32_Word even on 64-bit
431  hash[HASH_NBUCKET] = 1;
432  hash[HASH_NCHAIN]  = SYM_NUM;
433  hash[HASH_BUCKET0] = SYM_OATDATA;
434  hash[HASH_BUCKET0 + 1 + SYM_UNDEF]       = SYM_UNDEF;
435  hash[HASH_BUCKET0 + 1 + SYM_OATDATA]     = SYM_OATEXEC;
436  hash[HASH_BUCKET0 + 1 + SYM_OATEXEC]     = SYM_OATLASTWORD;
437  hash[HASH_BUCKET0 + 1 + SYM_OATLASTWORD] = SYM_UNDEF;
438
439  // .rodata and .text content come from oat_contents
440
441  // .dynamic
442  llvm::ELF::Elf32_Dyn dynamic_headers[DH_NUM];
443  memset(&dynamic_headers, 0, sizeof(dynamic_headers));
444
445  dynamic_headers[DH_SONAME].d_tag = llvm::ELF::DT_SONAME;
446  dynamic_headers[DH_SONAME].d_un.d_val = dynstr_soname_offset;
447
448  dynamic_headers[DH_HASH].d_tag = llvm::ELF::DT_HASH;
449  dynamic_headers[DH_HASH].d_un.d_ptr = hash_offset;
450
451  dynamic_headers[DH_SYMTAB].d_tag = llvm::ELF::DT_SYMTAB;
452  dynamic_headers[DH_SYMTAB].d_un.d_ptr = dynsym_offset;
453
454  dynamic_headers[DH_SYMENT].d_tag = llvm::ELF::DT_SYMENT;
455  dynamic_headers[DH_SYMENT].d_un.d_val = sizeof(llvm::ELF::Elf32_Sym);
456
457  dynamic_headers[DH_STRTAB].d_tag = llvm::ELF::DT_STRTAB;
458  dynamic_headers[DH_STRTAB].d_un.d_ptr = dynstr_offset;
459
460  dynamic_headers[DH_STRSZ].d_tag = llvm::ELF::DT_STRSZ;
461  dynamic_headers[DH_STRSZ].d_un.d_val = dynstr_size;
462
463  dynamic_headers[DH_NULL].d_tag = llvm::ELF::DT_NULL;
464  dynamic_headers[DH_NULL].d_un.d_val = 0;
465
466  // .shstrtab initialized above as shstrtab
467
468  // section headers (after all sections)
469  llvm::ELF::Elf32_Shdr section_headers[SH_NUM];
470  memset(&section_headers, 0, sizeof(section_headers));
471
472  section_headers[SH_NULL].sh_name      = 0;
473  section_headers[SH_NULL].sh_type      = llvm::ELF::SHT_NULL;
474  section_headers[SH_NULL].sh_flags     = 0;
475  section_headers[SH_NULL].sh_addr      = 0;
476  section_headers[SH_NULL].sh_offset    = 0;
477  section_headers[SH_NULL].sh_size      = 0;
478  section_headers[SH_NULL].sh_link      = 0;
479  section_headers[SH_NULL].sh_info      = 0;
480  section_headers[SH_NULL].sh_addralign = 0;
481  section_headers[SH_NULL].sh_entsize   = 0;
482
483  section_headers[SH_DYNSYM].sh_name      = shstrtab_dynsym_offset;
484  section_headers[SH_DYNSYM].sh_type      = llvm::ELF::SHT_DYNSYM;
485  section_headers[SH_DYNSYM].sh_flags     = llvm::ELF::SHF_ALLOC;
486  section_headers[SH_DYNSYM].sh_addr      = dynsym_offset;
487  section_headers[SH_DYNSYM].sh_offset    = dynsym_offset;
488  section_headers[SH_DYNSYM].sh_size      = dynsym_size;
489  section_headers[SH_DYNSYM].sh_link      = SH_DYNSTR;
490  section_headers[SH_DYNSYM].sh_info      = 1;  // 1 because we have not STB_LOCAL symbols
491  section_headers[SH_DYNSYM].sh_addralign = dynsym_alignment;
492  section_headers[SH_DYNSYM].sh_entsize   = sizeof(llvm::ELF::Elf32_Sym);
493
494  section_headers[SH_DYNSTR].sh_name      = shstrtab_dynstr_offset;
495  section_headers[SH_DYNSTR].sh_type      = llvm::ELF::SHT_STRTAB;
496  section_headers[SH_DYNSTR].sh_flags     = llvm::ELF::SHF_ALLOC;
497  section_headers[SH_DYNSTR].sh_addr      = dynstr_offset;
498  section_headers[SH_DYNSTR].sh_offset    = dynstr_offset;
499  section_headers[SH_DYNSTR].sh_size      = dynstr_size;
500  section_headers[SH_DYNSTR].sh_link      = 0;
501  section_headers[SH_DYNSTR].sh_info      = 0;
502  section_headers[SH_DYNSTR].sh_addralign = dynstr_alignment;
503  section_headers[SH_DYNSTR].sh_entsize   = 0;
504
505  section_headers[SH_HASH].sh_name      = shstrtab_hash_offset;
506  section_headers[SH_HASH].sh_type      = llvm::ELF::SHT_HASH;
507  section_headers[SH_HASH].sh_flags     = llvm::ELF::SHF_ALLOC;
508  section_headers[SH_HASH].sh_addr      = hash_offset;
509  section_headers[SH_HASH].sh_offset    = hash_offset;
510  section_headers[SH_HASH].sh_size      = hash_size;
511  section_headers[SH_HASH].sh_link      = SH_DYNSYM;
512  section_headers[SH_HASH].sh_info      = 0;
513  section_headers[SH_HASH].sh_addralign = hash_alignment;
514  section_headers[SH_HASH].sh_entsize   = sizeof(llvm::ELF::Elf32_Word);  // This is Elf32_Word even on 64-bit
515
516  section_headers[SH_RODATA].sh_name      = shstrtab_rodata_offset;
517  section_headers[SH_RODATA].sh_type      = llvm::ELF::SHT_PROGBITS;
518  section_headers[SH_RODATA].sh_flags     = llvm::ELF::SHF_ALLOC;
519  section_headers[SH_RODATA].sh_addr      = oat_data_offset;
520  section_headers[SH_RODATA].sh_offset    = oat_data_offset;
521  section_headers[SH_RODATA].sh_size      = oat_data_size;
522  section_headers[SH_RODATA].sh_link      = 0;
523  section_headers[SH_RODATA].sh_info      = 0;
524  section_headers[SH_RODATA].sh_addralign = oat_data_alignment;
525  section_headers[SH_RODATA].sh_entsize   = 0;
526
527  section_headers[SH_TEXT].sh_name      = shstrtab_text_offset;
528  section_headers[SH_TEXT].sh_type      = llvm::ELF::SHT_PROGBITS;
529  section_headers[SH_TEXT].sh_flags     = llvm::ELF::SHF_ALLOC | llvm::ELF::SHF_EXECINSTR;
530  section_headers[SH_TEXT].sh_addr      = oat_exec_offset;
531  section_headers[SH_TEXT].sh_offset    = oat_exec_offset;
532  section_headers[SH_TEXT].sh_size      = oat_exec_size;
533  section_headers[SH_TEXT].sh_link      = 0;
534  section_headers[SH_TEXT].sh_info      = 0;
535  section_headers[SH_TEXT].sh_addralign = oat_exec_alignment;
536  section_headers[SH_TEXT].sh_entsize   = 0;
537
538  // TODO: SHF_WRITE for .dynamic is considered processor specific, do we need it?
539  section_headers[SH_DYNAMIC].sh_name      = shstrtab_dynamic_offset;
540  section_headers[SH_DYNAMIC].sh_type      = llvm::ELF::SHT_DYNAMIC;
541  section_headers[SH_DYNAMIC].sh_flags     = llvm::ELF::SHF_WRITE | llvm::ELF::SHF_ALLOC;
542  section_headers[SH_DYNAMIC].sh_addr      = dynamic_offset;
543  section_headers[SH_DYNAMIC].sh_offset    = dynamic_offset;
544  section_headers[SH_DYNAMIC].sh_size      = dynamic_size;
545  section_headers[SH_DYNAMIC].sh_link      = SH_DYNSTR;
546  section_headers[SH_DYNAMIC].sh_info      = 0;
547  section_headers[SH_DYNAMIC].sh_addralign = dynamic_alignment;
548  section_headers[SH_DYNAMIC].sh_entsize   = sizeof(llvm::ELF::Elf32_Dyn);
549
550  section_headers[SH_SHSTRTAB].sh_name      = shstrtab_shstrtab_offset;
551  section_headers[SH_SHSTRTAB].sh_type      = llvm::ELF::SHT_STRTAB;
552  section_headers[SH_SHSTRTAB].sh_flags     = 0;
553  section_headers[SH_SHSTRTAB].sh_addr      = shstrtab_offset;
554  section_headers[SH_SHSTRTAB].sh_offset    = shstrtab_offset;
555  section_headers[SH_SHSTRTAB].sh_size      = shstrtab_size;
556  section_headers[SH_SHSTRTAB].sh_link      = 0;
557  section_headers[SH_SHSTRTAB].sh_info      = 0;
558  section_headers[SH_SHSTRTAB].sh_addralign = shstrtab_alignment;
559  section_headers[SH_SHSTRTAB].sh_entsize   = 0;
560
561  // phase 3: writing file
562
563  // Elf32_Ehdr
564  if (!elf_file_->WriteFully(&elf_header, sizeof(elf_header))) {
565    PLOG(ERROR) << "Failed to write ELF header for " << elf_file_->GetPath();
566    return false;
567  }
568
569  // PHDR
570  if (static_cast<off_t>(phdr_offset) != lseek(elf_file_->Fd(), 0, SEEK_CUR)) {
571    PLOG(ERROR) << "Failed to be at expected ELF program header offset phdr_offset "
572                << " for " << elf_file_->GetPath();
573    return false;
574  }
575  if (!elf_file_->WriteFully(program_headers, sizeof(program_headers))) {
576    PLOG(ERROR) << "Failed to write ELF program headers for " << elf_file_->GetPath();
577    return false;
578  }
579
580  // .dynsym
581  DCHECK_LE(phdr_offset + phdr_size, dynsym_offset);
582  if (static_cast<off_t>(dynsym_offset) != lseek(elf_file_->Fd(), dynsym_offset, SEEK_SET)) {
583    PLOG(ERROR) << "Failed to seek to .dynsym offset location " << dynsym_offset
584                << " for " << elf_file_->GetPath();
585    return false;
586  }
587  if (!elf_file_->WriteFully(dynsym, sizeof(dynsym))) {
588    PLOG(ERROR) << "Failed to write .dynsym for " << elf_file_->GetPath();
589    return false;
590  }
591
592  // .dynstr
593  DCHECK_LE(dynsym_offset + dynsym_size, dynstr_offset);
594  if (static_cast<off_t>(dynstr_offset) != lseek(elf_file_->Fd(), dynstr_offset, SEEK_SET)) {
595    PLOG(ERROR) << "Failed to seek to .dynstr offset " << dynstr_offset
596                << " for " << elf_file_->GetPath();
597    return false;
598  }
599  if (!elf_file_->WriteFully(&dynstr[0], dynsym_size)) {
600    PLOG(ERROR) << "Failed to write .dynsym for " << elf_file_->GetPath();
601    return false;
602  }
603
604  // .hash
605  DCHECK_LE(dynstr_offset + dynstr_size, hash_offset);
606  if (static_cast<off_t>(hash_offset) != lseek(elf_file_->Fd(), hash_offset, SEEK_SET)) {
607    PLOG(ERROR) << "Failed to seek to .hash offset " << hash_offset
608                << " for " << elf_file_->GetPath();
609    return false;
610  }
611  if (!elf_file_->WriteFully(hash, sizeof(hash))) {
612    PLOG(ERROR) << "Failed to write .dynsym for " << elf_file_->GetPath();
613    return false;
614  }
615
616  // .rodata .text
617  DCHECK_LE(hash_offset + hash_size, oat_data_offset);
618  if (static_cast<off_t>(oat_data_offset) != lseek(elf_file_->Fd(), oat_data_offset, SEEK_SET)) {
619    PLOG(ERROR) << "Failed to seek to .rodata offset " << oat_data_offset
620                << " for " << elf_file_->GetPath();
621    return false;
622  }
623  BufferedOutputStream output_stream(new FileOutputStream(elf_file_));
624  if (!oat_writer.Write(output_stream)) {
625    PLOG(ERROR) << "Failed to write .rodata and .text for " << elf_file_->GetPath();
626    return false;
627  }
628
629  // .dynamic
630  DCHECK_LE(oat_data_offset + oat_writer.GetSize(), dynamic_offset);
631  if (static_cast<off_t>(dynamic_offset) != lseek(elf_file_->Fd(), dynamic_offset, SEEK_SET)) {
632    PLOG(ERROR) << "Failed to seek to .dynamic offset " << dynamic_offset
633                << " for " << elf_file_->GetPath();
634    return false;
635  }
636  if (!elf_file_->WriteFully(&dynamic_headers[0], dynamic_size)) {
637    PLOG(ERROR) << "Failed to write .dynamic for " << elf_file_->GetPath();
638    return false;
639  }
640
641  // .shstrtab
642  DCHECK_LE(dynamic_offset + dynamic_size, shstrtab_offset);
643  if (static_cast<off_t>(shstrtab_offset) != lseek(elf_file_->Fd(), shstrtab_offset, SEEK_SET)) {
644    PLOG(ERROR) << "Failed to seek to .shstrtab offset " << shstrtab_offset
645                << " for " << elf_file_->GetPath();
646    return false;
647  }
648  if (!elf_file_->WriteFully(&shstrtab[0], shstrtab_size)) {
649    PLOG(ERROR) << "Failed to write .shstrtab for " << elf_file_->GetPath();
650    return false;
651  }
652
653  // section headers (after all sections)
654  DCHECK_LE(shstrtab_offset + shstrtab_size, shdr_offset);
655  if (static_cast<off_t>(shdr_offset) != lseek(elf_file_->Fd(), shdr_offset, SEEK_SET)) {
656    PLOG(ERROR) << "Failed to seek to ELF section headers offset " << shdr_offset
657                << " for " << elf_file_->GetPath();
658    return false;
659  }
660  if (!elf_file_->WriteFully(section_headers, sizeof(section_headers))) {
661    PLOG(ERROR) << "Failed to write ELF section headers for " << elf_file_->GetPath();
662    return false;
663  }
664
665  VLOG(compiler) << "ELF file written successfully: " << elf_file_->GetPath();
666  return true;
667}
668
669}  // namespace art
670