* lisp/emacs-lisp/cl-lib.el: Set more meaningful version number.
[bpt/emacs.git] / src / unexelf.c
CommitLineData
acaf905b 1/* Copyright (C) 1985-1988, 1990, 1992, 1999-2012
8cabe764 2 Free Software Foundation, Inc.
d427b66a 3
3b7ad313 4This file is part of GNU Emacs.
e40c4104 5
9ec0b715 6GNU Emacs is free software: you can redistribute it and/or modify
3b7ad313 7it under the terms of the GNU General Public License as published by
9ec0b715
GM
8the Free Software Foundation, either version 3 of the License, or
9(at your option) any later version.
e40c4104 10
3b7ad313
EN
11GNU Emacs is distributed in the hope that it will be useful,
12but WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14GNU General Public License for more details.
15
16You should have received a copy of the GNU General Public License
9ec0b715 17along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
d427b66a 18
9ec0b715 19/*
d427b66a
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20In other words, you are welcome to use, share and improve this program.
21You are forbidden to forbid anyone else to use, share and improve
22what you give them. Help stamp out software-hoarding! */
23
24
25/*
26 * unexec.c - Convert a running program into an a.out file.
27 *
28 * Author: Spencer W. Thomas
826ba17e
AS
29 * Computer Science Dept.
30 * University of Utah
d427b66a
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31 * Date: Tue Mar 2 1982
32 * Modified heavily since then.
33 *
34 * Synopsis:
dd5ecd6b 35 * unexec (const char *new_name, const char *old_name);
d427b66a
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36 *
37 * Takes a snapshot of the program and makes an a.out format file in the
38 * file named by the string argument new_name.
89b95605
RS
39 * If old_name is non-NULL, the symbol table will be taken from the given file.
40 * On some machines, an existing old_name file is required.
d427b66a 41 *
d427b66a
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42 */
43
44/* Even more heavily modified by james@bigtex.cactus.org of Dell Computer Co.
45 * ELF support added.
46 *
47 * Basic theory: the data space of the running process needs to be
48 * dumped to the output file. Normally we would just enlarge the size
49 * of .data, scooting everything down. But we can't do that in ELF,
50 * because there is often something between the .data space and the
51 * .bss space.
52 *
53 * In the temacs dump below, notice that the Global Offset Table
54 * (.got) and the Dynamic link data (.dynamic) come between .data1 and
55 * .bss. It does not work to overlap .data with these fields.
56 *
57 * The solution is to create a new .data segment. This segment is
58 * filled with data from the current process. Since the contents of
59 * various sections refer to sections by index, the new .data segment
60 * is made the last in the table to avoid changing any existing index.
61
62 * This is an example of how the section headers are changed. "Addr"
63 * is a process virtual address. "Offset" is a file offset.
64
65raid:/nfs/raid/src/dist-18.56/src> dump -h temacs
66
67temacs:
68
69 **** SECTION HEADER TABLE ****
7da3d06f
DL
70 [No] Type Flags Addr Offset Size Name
71 Link Info Adralgn Entsize
d427b66a 72
7da3d06f
DL
73 [1] 1 2 0x80480d4 0xd4 0x13 .interp
74 0 0 0x1 0
d427b66a 75
7da3d06f
DL
76 [2] 5 2 0x80480e8 0xe8 0x388 .hash
77 3 0 0x4 0x4
d427b66a 78
7da3d06f
DL
79 [3] 11 2 0x8048470 0x470 0x7f0 .dynsym
80 4 1 0x4 0x10
d427b66a 81
7da3d06f
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82 [4] 3 2 0x8048c60 0xc60 0x3ad .dynstr
83 0 0 0x1 0
d427b66a 84
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DL
85 [5] 9 2 0x8049010 0x1010 0x338 .rel.plt
86 3 7 0x4 0x8
d427b66a 87
7da3d06f
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88 [6] 1 6 0x8049348 0x1348 0x3 .init
89 0 0 0x4 0
d427b66a 90
7da3d06f
DL
91 [7] 1 6 0x804934c 0x134c 0x680 .plt
92 0 0 0x4 0x4
d427b66a 93
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DL
94 [8] 1 6 0x80499cc 0x19cc 0x3c56f .text
95 0 0 0x4 0
d427b66a 96
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97 [9] 1 6 0x8085f3c 0x3df3c 0x3 .fini
98 0 0 0x4 0
d427b66a 99
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100 [10] 1 2 0x8085f40 0x3df40 0x69c .rodata
101 0 0 0x4 0
d427b66a 102
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103 [11] 1 2 0x80865dc 0x3e5dc 0xd51 .rodata1
104 0 0 0x4 0
d427b66a 105
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106 [12] 1 3 0x8088330 0x3f330 0x20afc .data
107 0 0 0x4 0
d427b66a 108
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109 [13] 1 3 0x80a8e2c 0x5fe2c 0x89d .data1
110 0 0 0x4 0
d427b66a 111
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112 [14] 1 3 0x80a96cc 0x606cc 0x1a8 .got
113 0 0 0x4 0x4
d427b66a 114
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115 [15] 6 3 0x80a9874 0x60874 0x80 .dynamic
116 4 0 0x4 0x8
d427b66a 117
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118 [16] 8 3 0x80a98f4 0x608f4 0x449c .bss
119 0 0 0x4 0
d427b66a 120
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121 [17] 2 0 0 0x608f4 0x9b90 .symtab
122 18 371 0x4 0x10
d427b66a 123
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124 [18] 3 0 0 0x6a484 0x8526 .strtab
125 0 0 0x1 0
d427b66a 126
7da3d06f
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127 [19] 3 0 0 0x729aa 0x93 .shstrtab
128 0 0 0x1 0
d427b66a 129
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130 [20] 1 0 0 0x72a3d 0x68b7 .comment
131 0 0 0x1 0
d427b66a 132
7da3d06f 133 raid:/nfs/raid/src/dist-18.56/src> dump -h xemacs
d427b66a 134
7da3d06f 135 xemacs:
d427b66a 136
7da3d06f
DL
137 **** SECTION HEADER TABLE ****
138 [No] Type Flags Addr Offset Size Name
139 Link Info Adralgn Entsize
d427b66a 140
7da3d06f
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141 [1] 1 2 0x80480d4 0xd4 0x13 .interp
142 0 0 0x1 0
d427b66a 143
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144 [2] 5 2 0x80480e8 0xe8 0x388 .hash
145 3 0 0x4 0x4
d427b66a 146
7da3d06f
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147 [3] 11 2 0x8048470 0x470 0x7f0 .dynsym
148 4 1 0x4 0x10
d427b66a 149
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150 [4] 3 2 0x8048c60 0xc60 0x3ad .dynstr
151 0 0 0x1 0
d427b66a 152
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153 [5] 9 2 0x8049010 0x1010 0x338 .rel.plt
154 3 7 0x4 0x8
d427b66a 155
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156 [6] 1 6 0x8049348 0x1348 0x3 .init
157 0 0 0x4 0
d427b66a 158
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159 [7] 1 6 0x804934c 0x134c 0x680 .plt
160 0 0 0x4 0x4
d427b66a 161
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162 [8] 1 6 0x80499cc 0x19cc 0x3c56f .text
163 0 0 0x4 0
d427b66a 164
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165 [9] 1 6 0x8085f3c 0x3df3c 0x3 .fini
166 0 0 0x4 0
d427b66a 167
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168 [10] 1 2 0x8085f40 0x3df40 0x69c .rodata
169 0 0 0x4 0
d427b66a 170
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171 [11] 1 2 0x80865dc 0x3e5dc 0xd51 .rodata1
172 0 0 0x4 0
d427b66a 173
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174 [12] 1 3 0x8088330 0x3f330 0x20afc .data
175 0 0 0x4 0
d427b66a 176
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177 [13] 1 3 0x80a8e2c 0x5fe2c 0x89d .data1
178 0 0 0x4 0
d427b66a 179
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180 [14] 1 3 0x80a96cc 0x606cc 0x1a8 .got
181 0 0 0x4 0x4
d427b66a 182
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183 [15] 6 3 0x80a9874 0x60874 0x80 .dynamic
184 4 0 0x4 0x8
d427b66a 185
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186 [16] 8 3 0x80c6800 0x7d800 0 .bss
187 0 0 0x4 0
d427b66a 188
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189 [17] 2 0 0 0x7d800 0x9b90 .symtab
190 18 371 0x4 0x10
d427b66a 191
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192 [18] 3 0 0 0x87390 0x8526 .strtab
193 0 0 0x1 0
d427b66a 194
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195 [19] 3 0 0 0x8f8b6 0x93 .shstrtab
196 0 0 0x1 0
d427b66a 197
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198 [20] 1 0 0 0x8f949 0x68b7 .comment
199 0 0 0x1 0
d427b66a 200
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201 [21] 1 3 0x80a98f4 0x608f4 0x1cf0c .data
202 0 0 0x4 0
d427b66a 203
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204 * This is an example of how the file header is changed. "Shoff" is
205 * the section header offset within the file. Since that table is
206 * after the new .data section, it is moved. "Shnum" is the number of
207 * sections, which we increment.
208 *
209 * "Phoff" is the file offset to the program header. "Phentsize" and
210 * "Shentsz" are the program and section header entries sizes respectively.
211 * These can be larger than the apparent struct sizes.
d427b66a 212
7da3d06f 213 raid:/nfs/raid/src/dist-18.56/src> dump -f temacs
d427b66a 214
7da3d06f 215 temacs:
d427b66a 216
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DL
217 **** ELF HEADER ****
218 Class Data Type Machine Version
219 Entry Phoff Shoff Flags Ehsize
220 Phentsize Phnum Shentsz Shnum Shstrndx
d427b66a 221
7da3d06f
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222 1 1 2 3 1
223 0x80499cc 0x34 0x792f4 0 0x34
224 0x20 5 0x28 21 19
d427b66a 225
7da3d06f 226 raid:/nfs/raid/src/dist-18.56/src> dump -f xemacs
d427b66a 227
7da3d06f 228 xemacs:
d427b66a 229
7da3d06f
DL
230 **** ELF HEADER ****
231 Class Data Type Machine Version
232 Entry Phoff Shoff Flags Ehsize
233 Phentsize Phnum Shentsz Shnum Shstrndx
d427b66a 234
7da3d06f
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235 1 1 2 3 1
236 0x80499cc 0x34 0x96200 0 0x34
237 0x20 5 0x28 22 19
d427b66a 238
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239 * These are the program headers. "Offset" is the file offset to the
240 * segment. "Vaddr" is the memory load address. "Filesz" is the
241 * segment size as it appears in the file, and "Memsz" is the size in
242 * memory. Below, the third segment is the code and the fourth is the
243 * data: the difference between Filesz and Memsz is .bss
d427b66a 244
7da3d06f 245 raid:/nfs/raid/src/dist-18.56/src> dump -o temacs
d427b66a 246
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247 temacs:
248 ***** PROGRAM EXECUTION HEADER *****
249 Type Offset Vaddr Paddr
250 Filesz Memsz Flags Align
d427b66a 251
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252 6 0x34 0x8048034 0
253 0xa0 0xa0 5 0
d427b66a 254
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255 3 0xd4 0 0
256 0x13 0 4 0
d427b66a 257
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258 1 0x34 0x8048034 0
259 0x3f2f9 0x3f2f9 5 0x1000
d427b66a 260
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261 1 0x3f330 0x8088330 0
262 0x215c4 0x25a60 7 0x1000
d427b66a 263
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264 2 0x60874 0x80a9874 0
265 0x80 0 7 0
d427b66a 266
7da3d06f 267 raid:/nfs/raid/src/dist-18.56/src> dump -o xemacs
d427b66a 268
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269 xemacs:
270 ***** PROGRAM EXECUTION HEADER *****
271 Type Offset Vaddr Paddr
272 Filesz Memsz Flags Align
d427b66a 273
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274 6 0x34 0x8048034 0
275 0xa0 0xa0 5 0
d427b66a 276
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277 3 0xd4 0 0
278 0x13 0 4 0
d427b66a 279
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280 1 0x34 0x8048034 0
281 0x3f2f9 0x3f2f9 5 0x1000
d427b66a 282
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283 1 0x3f330 0x8088330 0
284 0x3e4d0 0x3e4d0 7 0x1000
d427b66a 285
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286 2 0x60874 0x80a9874 0
287 0x80 0 7 0
d427b66a
JB
288
289
290 */
e40c4104 291\f
994a65f3
RM
292/* Modified by wtien@urbana.mcd.mot.com of Motorola Inc.
293 *
e40c4104 294 * The above mechanism does not work if the unexeced ELF file is being
994a65f3 295 * re-layout by other applications (such as `strip'). All the applications
e40c4104 296 * that re-layout the internal of ELF will layout all sections in ascending
994a65f3
RM
297 * order of their file offsets. After the re-layout, the data2 section will
298 * still be the LAST section in the section header vector, but its file offset
e40c4104 299 * is now being pushed far away down, and causes part of it not to be mapped
994a65f3 300 * in (ie. not covered by the load segment entry in PHDR vector), therefore
e40c4104
RS
301 * causes the new binary to fail.
302 *
303 * The solution is to modify the unexec algorithm to insert the new data2
304 * section header right before the new bss section header, so their file
994a65f3
RM
305 * offsets will be in the ascending order. Since some of the section's (all
306 * sections AFTER the bss section) indexes are now changed, we also need to
307 * modify some fields to make them point to the right sections. This is done
e40c4104 308 * by macro PATCH_INDEX. All the fields that need to be patched are:
994a65f3 309 *
e40c4104
RS
310 * 1. ELF header e_shstrndx field.
311 * 2. section header sh_link and sh_info field.
312 * 3. symbol table entry st_shndx field.
313 *
314 * The above example now should look like:
315
316 **** SECTION HEADER TABLE ****
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317 [No] Type Flags Addr Offset Size Name
318 Link Info Adralgn Entsize
e40c4104 319
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320 [1] 1 2 0x80480d4 0xd4 0x13 .interp
321 0 0 0x1 0
d427b66a 322
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323 [2] 5 2 0x80480e8 0xe8 0x388 .hash
324 3 0 0x4 0x4
e40c4104 325
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326 [3] 11 2 0x8048470 0x470 0x7f0 .dynsym
327 4 1 0x4 0x10
e40c4104 328
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329 [4] 3 2 0x8048c60 0xc60 0x3ad .dynstr
330 0 0 0x1 0
e40c4104 331
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DL
332 [5] 9 2 0x8049010 0x1010 0x338 .rel.plt
333 3 7 0x4 0x8
e40c4104 334
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335 [6] 1 6 0x8049348 0x1348 0x3 .init
336 0 0 0x4 0
e40c4104 337
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338 [7] 1 6 0x804934c 0x134c 0x680 .plt
339 0 0 0x4 0x4
e40c4104 340
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341 [8] 1 6 0x80499cc 0x19cc 0x3c56f .text
342 0 0 0x4 0
e40c4104 343
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344 [9] 1 6 0x8085f3c 0x3df3c 0x3 .fini
345 0 0 0x4 0
e40c4104 346
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347 [10] 1 2 0x8085f40 0x3df40 0x69c .rodata
348 0 0 0x4 0
e40c4104 349
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350 [11] 1 2 0x80865dc 0x3e5dc 0xd51 .rodata1
351 0 0 0x4 0
e40c4104 352
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353 [12] 1 3 0x8088330 0x3f330 0x20afc .data
354 0 0 0x4 0
e40c4104 355
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356 [13] 1 3 0x80a8e2c 0x5fe2c 0x89d .data1
357 0 0 0x4 0
e40c4104 358
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359 [14] 1 3 0x80a96cc 0x606cc 0x1a8 .got
360 0 0 0x4 0x4
e40c4104 361
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362 [15] 6 3 0x80a9874 0x60874 0x80 .dynamic
363 4 0 0x4 0x8
e40c4104 364
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365 [16] 1 3 0x80a98f4 0x608f4 0x1cf0c .data
366 0 0 0x4 0
e40c4104 367
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368 [17] 8 3 0x80c6800 0x7d800 0 .bss
369 0 0 0x4 0
e40c4104 370
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371 [18] 2 0 0 0x7d800 0x9b90 .symtab
372 19 371 0x4 0x10
e40c4104 373
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374 [19] 3 0 0 0x87390 0x8526 .strtab
375 0 0 0x1 0
e40c4104 376
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377 [20] 3 0 0 0x8f8b6 0x93 .shstrtab
378 0 0 0x1 0
e40c4104 379
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380 [21] 1 0 0 0x8f949 0x68b7 .comment
381 0 0 0x1 0
e40c4104
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382
383 */
384\f
d9d54213
RS
385/* We do not use mmap because that fails with NFS.
386 Instead we read the whole file, modify it, and write it out. */
387
1b963cdd 388#include <config.h>
ce701a33
PE
389#include <unexec.h>
390
fa8459a3 391extern void fatal (const char *msgid, ...);
1b963cdd 392
d427b66a 393#include <sys/types.h>
ee2079f1 394#include <stdint.h>
d427b66a
JB
395#include <stdio.h>
396#include <sys/stat.h>
397#include <memory.h>
d427b66a
JB
398#include <errno.h>
399#include <unistd.h>
400#include <fcntl.h>
cb1ee811 401#if !defined (__NetBSD__) && !defined (__OpenBSD__)
d427b66a 402#include <elf.h>
edfd76ce 403#endif /* not __NetBSD__ and not __OpenBSD__ */
d427b66a 404#include <sys/mman.h>
d2b5bbda 405#if defined (_SYSTYPE_SYSV)
9240b21d
RS
406#include <sys/elf_mips.h>
407#include <sym.h>
d2b5bbda 408#endif /* _SYSTYPE_SYSV */
bc597cc7 409#if __sgi
52da6a59 410#include <syms.h> /* for HDRR declaration */
bc597cc7 411#endif /* __sgi */
4dbcac31 412
aff37336
SS
413#ifndef MAP_ANON
414#ifdef MAP_ANONYMOUS
415#define MAP_ANON MAP_ANONYMOUS
416#else
417#define MAP_ANON 0
418#endif
419#endif
420
421#ifndef MAP_FAILED
422#define MAP_FAILED ((void *) -1)
423#endif
424
cb1ee811 425#if defined (__alpha__) && !defined (__NetBSD__) && !defined (__OpenBSD__)
eabb24d0
RS
426/* Declare COFF debugging symbol table. This used to be in
427 /usr/include/sym.h, but this file is no longer included in Red Hat
428 5.0 and presumably in any other glibc 2.x based distribution. */
429typedef struct {
430 short magic;
431 short vstamp;
432 int ilineMax;
433 int idnMax;
434 int ipdMax;
435 int isymMax;
436 int ioptMax;
437 int iauxMax;
438 int issMax;
439 int issExtMax;
440 int ifdMax;
441 int crfd;
442 int iextMax;
443 long cbLine;
444 long cbLineOffset;
445 long cbDnOffset;
446 long cbPdOffset;
447 long cbSymOffset;
448 long cbOptOffset;
449 long cbAuxOffset;
450 long cbSsOffset;
451 long cbSsExtOffset;
452 long cbFdOffset;
453 long cbRfdOffset;
454 long cbExtOffset;
7da3d06f 455} HDRR, *pHDRR;
5e617bc2 456#define cbHDRR sizeof (HDRR)
eabb24d0 457#define hdrNil ((pHDRR)0)
265b2695
RS
458#endif
459
e5d0f709
RS
460#ifdef __NetBSD__
461/*
462 * NetBSD does not have normal-looking user-land ELF support.
463 */
3af5762e 464# if defined __alpha__ || defined __sparc_v9__
e5d0f709
RS
465# define ELFSIZE 64
466# else
467# define ELFSIZE 32
468# endif
469# include <sys/exec_elf.h>
470
0007072a
KR
471# ifndef PT_LOAD
472# define PT_LOAD Elf_pt_load
f4db570c
GM
473# if 0 /* was in pkgsrc patches for 20.7 */
474# define SHT_PROGBITS Elf_sht_progbits
475# endif
0007072a
KR
476# define SHT_SYMTAB Elf_sht_symtab
477# define SHT_DYNSYM Elf_sht_dynsym
478# define SHT_NULL Elf_sht_null
479# define SHT_NOBITS Elf_sht_nobits
480# define SHT_REL Elf_sht_rel
481# define SHT_RELA Elf_sht_rela
482
483# define SHN_UNDEF Elf_eshn_undefined
484# define SHN_ABS Elf_eshn_absolute
485# define SHN_COMMON Elf_eshn_common
f4db570c 486# endif /* !PT_LOAD */
e5d0f709 487
e5d0f709
RS
488# ifdef __alpha__
489# include <sys/exec_ecoff.h>
490# define HDRR struct ecoff_symhdr
491# define pHDRR HDRR *
f4db570c 492# endif /* __alpha__ */
e5d0f709 493
6b7d4ae4 494#ifdef __mips__ /* was in pkgsrc patches for 20.7 */
f4db570c
GM
495# define SHT_MIPS_DEBUG DT_MIPS_FLAGS
496# define HDRR struct Elf_Shdr
497#endif /* __mips__ */
6b7d4ae4 498#endif /* __NetBSD__ */
f4db570c 499
cb1ee811
RS
500#ifdef __OpenBSD__
501# include <sys/exec_elf.h>
502#endif
503
265b2695
RS
504#if __GNU_LIBRARY__ - 0 >= 6
505# include <link.h> /* get ElfW etc */
506#endif
507
508#ifndef ElfW
261cb4bb 509# define ElfBitsW(bits, type) Elf##bits##_##type
4973679b
PE
510# ifndef ELFSIZE
511# ifdef _LP64
512# define ELFSIZE 64
513# else
514# define ELFSIZE 32
515# endif
1b963cdd
DL
516# endif
517 /* This macro expands `bits' before invoking ElfBitsW. */
518# define ElfExpandBitsW(bits, type) ElfBitsW (bits, type)
519# define ElfW(type) ElfExpandBitsW (ELFSIZE, type)
d427b66a
JB
520#endif
521
522/* Get the address of a particular section or program header entry,
523 * accounting for the size of the entries.
524 */
bc597cc7 525/*
ea083293
RS
526 On PPC Reference Platform running Solaris 2.5.1
527 the plt section is also of type NOBI like the bss section.
528 (not really stored) and therefore sections after the bss
529 section start at the plt offset. The plt section is always
530 the one just before the bss section.
531 Thus, we modify the test from
532 if (NEW_SECTION_H (nn).sh_offset >= new_data2_offset)
533 to
bc597cc7 534 if (NEW_SECTION_H (nn).sh_offset >=
ea083293
RS
535 OLD_SECTION_H (old_bss_index-1).sh_offset)
536 This is just a hack. We should put the new data section
537 before the .plt section.
538 And we should not have this routine at all but use
539 the libelf library to read the old file and create the new
540 file.
541 The changed code is minimal and depends on prep set in m/prep.h
542 Erik Deumens
543 Quantum Theory Project
544 University of Florida
545 deumens@qtp.ufl.edu
546 Apr 23, 1996
547 */
d427b66a
JB
548
549#define OLD_SECTION_H(n) \
5e617bc2 550 (*(ElfW (Shdr) *) ((byte *) old_section_h + old_file_h->e_shentsize * (n)))
d427b66a 551#define NEW_SECTION_H(n) \
5e617bc2 552 (*(ElfW (Shdr) *) ((byte *) new_section_h + new_file_h->e_shentsize * (n)))
d427b66a 553#define NEW_PROGRAM_H(n) \
5e617bc2 554 (*(ElfW (Phdr) *) ((byte *) new_program_h + new_file_h->e_phentsize * (n)))
d427b66a 555
e40c4104
RS
556#define PATCH_INDEX(n) \
557 do { \
d7cb42c3 558 if ((int) (n) >= old_bss_index) \
e40c4104 559 (n)++; } while (0)
d427b66a
JB
560typedef unsigned char byte;
561
e40c4104
RS
562/* Round X up to a multiple of Y. */
563
5e617bc2
JB
564static ElfW (Addr)
565round_up (ElfW (Addr) x, ElfW (Addr) y)
e40c4104
RS
566{
567 int rem = x % y;
568 if (rem == 0)
569 return x;
570 return x - rem + y;
571}
572
52da6a59
GM
573/* Return the index of the section named NAME.
574 SECTION_NAMES, FILE_NAME and FILE_H give information
575 about the file we are looking in.
576
577 If we don't find the section NAME, that is a fatal error
578 if NOERROR is 0; we return -1 if NOERROR is nonzero. */
579
580static int
dd5ecd6b 581find_section (const char *name, const char *section_names, const char *file_name,
5e617bc2 582 ElfW (Ehdr) *old_file_h, ElfW (Shdr) *old_section_h, int noerror)
52da6a59
GM
583{
584 int idx;
585
586 for (idx = 1; idx < old_file_h->e_shnum; idx++)
587 {
588#ifdef DEBUG
589 fprintf (stderr, "Looking for %s - found %s\n", name,
590 section_names + OLD_SECTION_H (idx).sh_name);
591#endif
592 if (!strcmp (section_names + OLD_SECTION_H (idx).sh_name,
593 name))
594 break;
595 }
596 if (idx == old_file_h->e_shnum)
597 {
598 if (noerror)
599 return -1;
600 else
f4db570c 601 fatal ("Can't find %s in %s.\n", name, file_name);
52da6a59
GM
602 }
603
604 return idx;
605}
606
d427b66a
JB
607/* ****************************************************************
608 * unexec
609 *
610 * driving logic.
611 *
612 * In ELF, this works by replacing the old .bss section with a new
613 * .data section, and inserting an empty .bss immediately afterwards.
614 *
615 */
616void
dd5ecd6b 617unexec (const char *new_name, const char *old_name)
d427b66a 618{
d427b66a
JB
619 int new_file, old_file, new_file_size;
620
b3967b18
PE
621#if defined (emacs) || !defined (DEBUG)
622 void *new_break;
623#endif
624
d9d54213 625 /* Pointers to the base of the image of the two files. */
d427b66a
JB
626 caddr_t old_base, new_base;
627
aff37336
SS
628#if MAP_ANON == 0
629 int mmap_fd;
630#else
631# define mmap_fd -1
632#endif
633
d9d54213
RS
634 /* Pointers to the file, program and section headers for the old and
635 new files. */
5e617bc2
JB
636 ElfW (Ehdr) *old_file_h, *new_file_h;
637 ElfW (Phdr) *old_program_h, *new_program_h;
638 ElfW (Shdr) *old_section_h, *new_section_h;
d427b66a 639
d9d54213 640 /* Point to the section name table in the old file. */
d427b66a
JB
641 char *old_section_names;
642
5e617bc2
JB
643 ElfW (Addr) old_bss_addr, new_bss_addr;
644 ElfW (Word) old_bss_size, new_data2_size;
645 ElfW (Off) new_data2_offset;
646 ElfW (Addr) new_data2_addr;
647 ElfW (Off) old_bss_offset;
648 ElfW (Word) new_data2_incr;
d427b66a 649
52da6a59 650 int n, nn;
825dad89 651 int old_bss_index, old_sbss_index, old_plt_index;
52da6a59 652 int old_data_index, new_data2_index;
de6dbc14 653#if defined _SYSTYPE_SYSV || defined __sgi
52da6a59 654 int old_mdebug_index;
de6dbc14 655#endif
d427b66a 656 struct stat stat_buf;
86928dfb 657 int old_file_size;
d427b66a 658
6fb8339c 659 /* Open the old file, allocate a buffer of the right size, and read
d9d54213 660 in the file contents. */
d427b66a
JB
661
662 old_file = open (old_name, O_RDONLY);
663
664 if (old_file < 0)
665 fatal ("Can't open %s for reading: errno %d\n", old_name, errno);
666
667 if (fstat (old_file, &stat_buf) == -1)
d7cb42c3 668 fatal ("Can't fstat (%s): errno %d\n", old_name, errno);
d427b66a 669
aff37336
SS
670#if MAP_ANON == 0
671 mmap_fd = open ("/dev/zero", O_RDONLY);
672 if (mmap_fd < 0)
1ec324f3 673 fatal ("Can't open /dev/zero for reading: errno %d\n", errno, 0);
aff37336
SS
674#endif
675
86928dfb
GM
676 /* We cannot use malloc here because that may use sbrk. If it does,
677 we'd dump our temporary buffers with Emacs, and we'd have to be
678 extra careful to use the correct value of sbrk(0) after
679 allocating all buffers in the code below, which we aren't. */
680 old_file_size = stat_buf.st_size;
681 old_base = mmap (NULL, old_file_size, PROT_READ | PROT_WRITE,
aff37336
SS
682 MAP_ANON | MAP_PRIVATE, mmap_fd, 0);
683 if (old_base == MAP_FAILED)
1ec324f3 684 fatal ("Can't allocate buffer for %s\n", old_name, 0);
d427b66a 685
6fb8339c
EZ
686 if (read (old_file, old_base, stat_buf.st_size) != stat_buf.st_size)
687 fatal ("Didn't read all of %s: errno %d\n", old_name, errno);
688
d427b66a
JB
689 /* Get pointers to headers & section names */
690
5e617bc2
JB
691 old_file_h = (ElfW (Ehdr) *) old_base;
692 old_program_h = (ElfW (Phdr) *) ((byte *) old_base + old_file_h->e_phoff);
693 old_section_h = (ElfW (Shdr) *) ((byte *) old_base + old_file_h->e_shoff);
d427b66a 694 old_section_names = (char *) old_base
d7cb42c3 695 + OLD_SECTION_H (old_file_h->e_shstrndx).sh_offset;
d427b66a 696
52da6a59
GM
697 /* Find the mdebug section, if any. */
698
de6dbc14 699#if defined _SYSTYPE_SYSV || defined __sgi
52da6a59
GM
700 old_mdebug_index = find_section (".mdebug", old_section_names,
701 old_name, old_file_h, old_section_h, 1);
de6dbc14 702#endif
52da6a59 703
d427b66a 704 /* Find the old .bss section. Figure out parameters of the new
d9d54213 705 data2 and bss sections. */
d427b66a 706
52da6a59
GM
707 old_bss_index = find_section (".bss", old_section_names,
708 old_name, old_file_h, old_section_h, 0);
d427b66a 709
52da6a59
GM
710 old_sbss_index = find_section (".sbss", old_section_names,
711 old_name, old_file_h, old_section_h, 1);
1b963cdd 712 if (old_sbss_index != -1)
825dad89 713 if (OLD_SECTION_H (old_sbss_index).sh_type != SHT_NOBITS)
1b963cdd 714 old_sbss_index = -1;
52da6a59 715
825dad89
AS
716 /* PowerPC64 has .plt in the BSS section. */
717 old_plt_index = find_section (".plt", old_section_names,
718 old_name, old_file_h, old_section_h, 1);
719 if (old_plt_index != -1)
720 if (OLD_SECTION_H (old_plt_index).sh_type != SHT_NOBITS)
721 old_plt_index = -1;
722
723 if (old_sbss_index == -1 && old_plt_index == -1)
9240b21d 724 {
52da6a59
GM
725 old_bss_addr = OLD_SECTION_H (old_bss_index).sh_addr;
726 old_bss_size = OLD_SECTION_H (old_bss_index).sh_size;
826ba17e 727 old_bss_offset = OLD_SECTION_H (old_bss_index).sh_offset;
9240b21d
RS
728 new_data2_index = old_bss_index;
729 }
825dad89
AS
730 else if (old_plt_index != -1
731 && (old_sbss_index == -1
732 || (OLD_SECTION_H (old_sbss_index).sh_addr
733 > OLD_SECTION_H (old_plt_index).sh_addr)))
734 {
735 old_bss_addr = OLD_SECTION_H (old_plt_index).sh_addr;
736 old_bss_size = OLD_SECTION_H (old_bss_index).sh_size
737 + OLD_SECTION_H (old_plt_index).sh_size;
738 if (old_sbss_index != -1)
739 old_bss_size += OLD_SECTION_H (old_sbss_index).sh_size;
826ba17e 740 old_bss_offset = OLD_SECTION_H (old_plt_index).sh_offset;
825dad89
AS
741 new_data2_index = old_plt_index;
742 }
9240b21d
RS
743 else
744 {
52da6a59
GM
745 old_bss_addr = OLD_SECTION_H (old_sbss_index).sh_addr;
746 old_bss_size = OLD_SECTION_H (old_bss_index).sh_size
747 + OLD_SECTION_H (old_sbss_index).sh_size;
826ba17e 748 old_bss_offset = OLD_SECTION_H (old_sbss_index).sh_offset;
9240b21d
RS
749 new_data2_index = old_sbss_index;
750 }
751
52da6a59
GM
752 /* Find the old .data section. Figure out parameters of
753 the new data2 and bss sections. */
754
755 old_data_index = find_section (".data", old_section_names,
756 old_name, old_file_h, old_section_h, 0);
bc597cc7 757
cb1ee811 758#if defined (emacs) || !defined (DEBUG)
b3967b18 759 new_break = sbrk (0);
5e617bc2 760 new_bss_addr = (ElfW (Addr)) new_break;
d427b66a
JB
761#else
762 new_bss_addr = old_bss_addr + old_bss_size + 0x1234;
763#endif
764 new_data2_addr = old_bss_addr;
765 new_data2_size = new_bss_addr - old_bss_addr;
826ba17e
AS
766 new_data2_offset = OLD_SECTION_H (old_data_index).sh_offset
767 + (new_data2_addr - OLD_SECTION_H (old_data_index).sh_addr);
768 /* This is the amount by which the sections following the bss sections
769 must be shifted in the image. It can differ from new_data2_size if
770 the end of the old .data section (and thus the offset of the .bss
771 section) was unaligned. */
772 new_data2_incr = new_data2_size + (new_data2_offset - old_bss_offset);
d427b66a
JB
773
774#ifdef DEBUG
775 fprintf (stderr, "old_bss_index %d\n", old_bss_index);
d283640e
KH
776 fprintf (stderr, "old_bss_addr %x\n", old_bss_addr);
777 fprintf (stderr, "old_bss_size %x\n", old_bss_size);
826ba17e 778 fprintf (stderr, "old_bss_offset %x\n", old_bss_offset);
d283640e
KH
779 fprintf (stderr, "new_bss_addr %x\n", new_bss_addr);
780 fprintf (stderr, "new_data2_addr %x\n", new_data2_addr);
781 fprintf (stderr, "new_data2_size %x\n", new_data2_size);
782 fprintf (stderr, "new_data2_offset %x\n", new_data2_offset);
826ba17e 783 fprintf (stderr, "new_data2_incr %x\n", new_data2_incr);
d427b66a
JB
784#endif
785
ee2079f1 786 if ((uintptr_t) new_bss_addr < (uintptr_t) old_bss_addr + old_bss_size)
d427b66a
JB
787 fatal (".bss shrank when undumping???\n", 0, 0);
788
6fb8339c 789 /* Set the output file to the right size. Allocate a buffer to hold
d9d54213
RS
790 the image of the new file. Set pointers to various interesting
791 objects. stat_buf still has old_file data. */
d427b66a
JB
792
793 new_file = open (new_name, O_RDWR | O_CREAT, 0666);
794 if (new_file < 0)
d7cb42c3 795 fatal ("Can't creat (%s): errno %d\n", new_name, errno);
d427b66a 796
826ba17e 797 new_file_size = stat_buf.st_size + old_file_h->e_shentsize + new_data2_incr;
d427b66a
JB
798
799 if (ftruncate (new_file, new_file_size))
d7cb42c3 800 fatal ("Can't ftruncate (%s): errno %d\n", new_name, errno);
d427b66a 801
86928dfb 802 new_base = mmap (NULL, new_file_size, PROT_READ | PROT_WRITE,
aff37336
SS
803 MAP_ANON | MAP_PRIVATE, mmap_fd, 0);
804 if (new_base == MAP_FAILED)
1ec324f3 805 fatal ("Can't allocate buffer for %s\n", old_name, 0);
6fb8339c 806
5e617bc2
JB
807 new_file_h = (ElfW (Ehdr) *) new_base;
808 new_program_h = (ElfW (Phdr) *) ((byte *) new_base + old_file_h->e_phoff);
809 new_section_h = (ElfW (Shdr) *)
826ba17e 810 ((byte *) new_base + old_file_h->e_shoff + new_data2_incr);
d427b66a
JB
811
812 /* Make our new file, program and section headers as copies of the
d9d54213 813 originals. */
d427b66a
JB
814
815 memcpy (new_file_h, old_file_h, old_file_h->e_ehsize);
816 memcpy (new_program_h, old_program_h,
817 old_file_h->e_phnum * old_file_h->e_phentsize);
e40c4104
RS
818
819 /* Modify the e_shstrndx if necessary. */
820 PATCH_INDEX (new_file_h->e_shstrndx);
d427b66a
JB
821
822 /* Fix up file header. We'll add one section. Section header is
d9d54213 823 further away now. */
d427b66a 824
826ba17e 825 new_file_h->e_shoff += new_data2_incr;
d427b66a
JB
826 new_file_h->e_shnum += 1;
827
828#ifdef DEBUG
d283640e 829 fprintf (stderr, "Old section offset %x\n", old_file_h->e_shoff);
d427b66a 830 fprintf (stderr, "Old section count %d\n", old_file_h->e_shnum);
d283640e 831 fprintf (stderr, "New section offset %x\n", new_file_h->e_shoff);
d427b66a
JB
832 fprintf (stderr, "New section count %d\n", new_file_h->e_shnum);
833#endif
834
835 /* Fix up a new program header. Extend the writable data segment so
d9d54213
RS
836 that the bss area is covered too. Find that segment by looking
837 for a segment that ends just before the .bss area. Make sure
838 that no segments are above the new .data2. Put a loop at the end
839 to adjust the offset and address of any segment that is above
840 data2, just in case we decide to allow this later. */
d427b66a
JB
841
842 for (n = new_file_h->e_phnum - 1; n >= 0; n--)
843 {
e40c4104 844 /* Compute maximum of all requirements for alignment of section. */
5e617bc2 845 ElfW (Word) alignment = (NEW_PROGRAM_H (n)).p_align;
e40c4104
RS
846 if ((OLD_SECTION_H (old_bss_index)).sh_addralign > alignment)
847 alignment = OLD_SECTION_H (old_bss_index).sh_addralign;
848
52da6a59 849#ifdef __sgi
bc597cc7
KH
850 /* According to r02kar@x4u2.desy.de (Karsten Kuenne)
851 and oliva@gnu.org (Alexandre Oliva), on IRIX 5.2, we
852 always get "Program segment above .bss" when dumping
853 when the executable doesn't have an sbss section. */
854 if (old_sbss_index != -1)
52da6a59 855#endif /* __sgi */
9240b21d 856 if (NEW_PROGRAM_H (n).p_vaddr + NEW_PROGRAM_H (n).p_filesz
bc597cc7
KH
857 > (old_sbss_index == -1
858 ? old_bss_addr
859 : round_up (old_bss_addr, alignment)))
860 fatal ("Program segment above .bss in %s\n", old_name, 0);
d427b66a 861
d7cb42c3 862 if (NEW_PROGRAM_H (n).p_type == PT_LOAD
e40c4104
RS
863 && (round_up ((NEW_PROGRAM_H (n)).p_vaddr
864 + (NEW_PROGRAM_H (n)).p_filesz,
865 alignment)
866 == round_up (old_bss_addr, alignment)))
d427b66a
JB
867 break;
868 }
869 if (n < 0)
870 fatal ("Couldn't find segment next to .bss in %s\n", old_name, 0);
871
c1937d6a
AS
872 /* Make sure that the size includes any padding before the old .bss
873 section. */
874 NEW_PROGRAM_H (n).p_filesz = new_bss_addr - NEW_PROGRAM_H (n).p_vaddr;
d7cb42c3 875 NEW_PROGRAM_H (n).p_memsz = NEW_PROGRAM_H (n).p_filesz;
d427b66a
JB
876
877#if 0 /* Maybe allow section after data2 - does this ever happen? */
878 for (n = new_file_h->e_phnum - 1; n >= 0; n--)
879 {
d7cb42c3
RS
880 if (NEW_PROGRAM_H (n).p_vaddr
881 && NEW_PROGRAM_H (n).p_vaddr >= new_data2_addr)
882 NEW_PROGRAM_H (n).p_vaddr += new_data2_size - old_bss_size;
d427b66a 883
d7cb42c3 884 if (NEW_PROGRAM_H (n).p_offset >= new_data2_offset)
826ba17e 885 NEW_PROGRAM_H (n).p_offset += new_data2_incr;
d427b66a
JB
886 }
887#endif
888
889 /* Fix up section headers based on new .data2 section. Any section
d9d54213
RS
890 whose offset or virtual address is after the new .data2 section
891 gets its value adjusted. .bss size becomes zero and new address
892 is set. data2 section header gets added by copying the existing
893 .data header and modifying the offset, address and size. */
d427b66a 894
994a65f3 895 /* Walk through all section headers, insert the new data2 section right
e40c4104 896 before the new bss section. */
d7cb42c3 897 for (n = 1, nn = 1; n < (int) old_file_h->e_shnum; n++, nn++)
d427b66a
JB
898 {
899 caddr_t src;
9240b21d
RS
900 /* If it is (s)bss section, insert the new data2 section before it. */
901 /* new_data2_index is the index of either old_sbss or old_bss, that was
902 chosen as a section for new_data2. */
bc597cc7 903 if (n == new_data2_index)
e40c4104
RS
904 {
905 /* Steal the data section header for this data2 section. */
d7cb42c3 906 memcpy (&NEW_SECTION_H (nn), &OLD_SECTION_H (old_data_index),
e40c4104 907 new_file_h->e_shentsize);
994a65f3 908
d7cb42c3
RS
909 NEW_SECTION_H (nn).sh_addr = new_data2_addr;
910 NEW_SECTION_H (nn).sh_offset = new_data2_offset;
911 NEW_SECTION_H (nn).sh_size = new_data2_size;
e40c4104
RS
912 /* Use the bss section's alignment. This will assure that the
913 new data2 section always be placed in the same spot as the old
914 bss section by any other application. */
d7cb42c3 915 NEW_SECTION_H (nn).sh_addralign = OLD_SECTION_H (n).sh_addralign;
e40c4104
RS
916
917 /* Now copy over what we have in the memory now. */
994a65f3
RM
918 memcpy (NEW_SECTION_H (nn).sh_offset + new_base,
919 (caddr_t) OLD_SECTION_H (n).sh_addr,
e40c4104
RS
920 new_data2_size);
921 nn++;
922 }
994a65f3
RM
923
924 memcpy (&NEW_SECTION_H (nn), &OLD_SECTION_H (n),
e40c4104 925 old_file_h->e_shentsize);
7da3d06f 926
9240b21d 927 if (n == old_bss_index
9240b21d
RS
928 /* The new bss and sbss section's size is zero, and its file offset
929 and virtual address should be off by NEW_DATA2_SIZE. */
825dad89 930 || n == old_sbss_index || n == old_plt_index
9240b21d 931 )
e40c4104 932 {
bc597cc7 933 /* NN should be `old_s?bss_index + 1' at this point. */
826ba17e
AS
934 NEW_SECTION_H (nn).sh_offset = new_data2_offset + new_data2_size;
935 NEW_SECTION_H (nn).sh_addr = new_data2_addr + new_data2_size;
e40c4104 936 /* Let the new bss section address alignment be the same as the
994a65f3 937 section address alignment followed the old bss section, so
e40c4104 938 this section will be placed in exactly the same place. */
d7cb42c3
RS
939 NEW_SECTION_H (nn).sh_addralign = OLD_SECTION_H (nn).sh_addralign;
940 NEW_SECTION_H (nn).sh_size = 0;
e40c4104 941 }
85b2e0ee
RS
942 else
943 {
ad537856 944 /* Any section that was originally placed after the .bss
826ba17e 945 section should now be off by NEW_DATA2_INCR. If a
ad537856
RS
946 section overlaps the .bss section, consider it to be
947 placed after the .bss section. Overlap can occur if the
948 section just before .bss has less-strict alignment; this
949 was observed between .symtab and .bss on Solaris 2.5.1
bcda200f 950 (sparc) with GCC snapshot 960602.
f2a77c3a 951
bcda200f
YM
952> dump -h temacs
953
954temacs:
955
956 **** SECTION HEADER TABLE ****
957[No] Type Flags Addr Offset Size Name
958 Link Info Adralgn Entsize
959
960[22] 1 3 0x335150 0x315150 0x4 .data.rel.local
b3967b18 961 0 0 0x4 0
bcda200f
YM
962
963[23] 8 3 0x335158 0x315158 0x42720 .bss
b3967b18 964 0 0 0x8 0
bcda200f
YM
965
966[24] 2 0 0 0x315154 0x1c9d0 .symtab
b3967b18 967 25 1709 0x4 0x10
bcda200f
YM
968 */
969
970 if (NEW_SECTION_H (nn).sh_offset >= old_bss_offset
971 || (NEW_SECTION_H (nn).sh_offset + NEW_SECTION_H (nn).sh_size
972 > new_data2_offset))
826ba17e 973 NEW_SECTION_H (nn).sh_offset += new_data2_incr;
f2a77c3a 974
85b2e0ee
RS
975 /* Any section that was originally placed after the section
976 header table should now be off by the size of one section
977 header table entry. */
978 if (NEW_SECTION_H (nn).sh_offset > new_file_h->e_shoff)
979 NEW_SECTION_H (nn).sh_offset += new_file_h->e_shentsize;
980 }
981
e40c4104 982 /* If any section hdr refers to the section after the new .data
994a65f3 983 section, make it refer to next one because we have inserted
8917361f 984 a new section in between. */
994a65f3 985
d7cb42c3 986 PATCH_INDEX (NEW_SECTION_H (nn).sh_link);
8917361f
RS
987 /* For symbol tables, info is a symbol table index,
988 so don't change it. */
989 if (NEW_SECTION_H (nn).sh_type != SHT_SYMTAB
990 && NEW_SECTION_H (nn).sh_type != SHT_DYNSYM)
991 PATCH_INDEX (NEW_SECTION_H (nn).sh_info);
7da3d06f 992
1b963cdd
DL
993 if (old_sbss_index != -1)
994 if (!strcmp (old_section_names + NEW_SECTION_H (nn).sh_name, ".sbss"))
995 {
7da3d06f 996 NEW_SECTION_H (nn).sh_offset =
1b963cdd
DL
997 round_up (NEW_SECTION_H (nn).sh_offset,
998 NEW_SECTION_H (nn).sh_addralign);
999 NEW_SECTION_H (nn).sh_type = SHT_PROGBITS;
1000 }
8917361f
RS
1001
1002 /* Now, start to copy the content of sections. */
d7cb42c3
RS
1003 if (NEW_SECTION_H (nn).sh_type == SHT_NULL
1004 || NEW_SECTION_H (nn).sh_type == SHT_NOBITS)
d427b66a 1005 continue;
994a65f3 1006
e40c4104 1007 /* Write out the sections. .data and .data1 (and data2, called
8917361f
RS
1008 ".data" in the strings table) get copied from the current process
1009 instead of the old file. */
d7cb42c3 1010 if (!strcmp (old_section_names + NEW_SECTION_H (n).sh_name, ".data")
9240b21d
RS
1011 || !strcmp ((old_section_names + NEW_SECTION_H (n).sh_name),
1012 ".sdata")
1013 || !strcmp ((old_section_names + NEW_SECTION_H (n).sh_name),
1014 ".lit4")
1015 || !strcmp ((old_section_names + NEW_SECTION_H (n).sh_name),
1016 ".lit8")
d4e3d7f2
RS
1017 /* The conditional bit below was in Oliva's original code
1018 (1999-08-25) and seems to have been dropped by mistake
1019 subsequently. It prevents a crash at startup under X in
0b381c7e 1020 `IRIX64 6.5 6.5.17m', whether compiled on that release or
7da3d06f
DL
1021 an earlier one. It causes no trouble on the other ELF
1022 platforms I could test (Irix 6.5.15m, Solaris 8, Debian
1023 Potato x86, Debian Woody SPARC); however, it's reported
1024 to cause crashes under some version of GNU/Linux. It's
1025 not yet clear what's changed in that Irix version to
1026 cause the problem, or why the fix sometimes fails under
1027 GNU/Linux. There's probably no good reason to have
1028 something Irix-specific here, but this will have to do
1029 for now. IRIX6_5 is the most specific macro we have to
1030 test. -- fx 2002-10-01
1031
1032 The issue _looks_ as though it's gone away on 6.5.18m,
1033 but maybe it's still lurking, to be triggered by some
1034 change in the binary. It appears to concern the dynamic
1035 loader, but I never got anywhere with an SGI support call
1036 seeking clues. -- fx 2002-11-29. */
d4e3d7f2
RS
1037#ifdef IRIX6_5
1038 || !strcmp ((old_section_names + NEW_SECTION_H (n).sh_name),
1039 ".got")
1040#endif
bc597cc7
KH
1041 || !strcmp ((old_section_names + NEW_SECTION_H (n).sh_name),
1042 ".sdata1")
d7cb42c3 1043 || !strcmp ((old_section_names + NEW_SECTION_H (n).sh_name),
1b963cdd 1044 ".data1")
6108b49c 1045 || !strcmp ((old_section_names + NEW_SECTION_H (n).sh_name),
1b963cdd 1046 ".sbss"))
d7cb42c3 1047 src = (caddr_t) OLD_SECTION_H (n).sh_addr;
d427b66a 1048 else
d7cb42c3 1049 src = old_base + OLD_SECTION_H (n).sh_offset;
994a65f3 1050
d7cb42c3
RS
1051 memcpy (NEW_SECTION_H (nn).sh_offset + new_base, src,
1052 NEW_SECTION_H (nn).sh_size);
e40c4104 1053
590bd467 1054#if defined __alpha__ && !defined __OpenBSD__
265b2695
RS
1055 /* Update Alpha COFF symbol table: */
1056 if (strcmp (old_section_names + OLD_SECTION_H (n).sh_name, ".mdebug")
1057 == 0)
1058 {
1059 pHDRR symhdr = (pHDRR) (NEW_SECTION_H (nn).sh_offset + new_base);
1060
1061 symhdr->cbLineOffset += new_data2_size;
1062 symhdr->cbDnOffset += new_data2_size;
1063 symhdr->cbPdOffset += new_data2_size;
1064 symhdr->cbSymOffset += new_data2_size;
1065 symhdr->cbOptOffset += new_data2_size;
1066 symhdr->cbAuxOffset += new_data2_size;
1067 symhdr->cbSsOffset += new_data2_size;
1068 symhdr->cbSsExtOffset += new_data2_size;
1069 symhdr->cbFdOffset += new_data2_size;
1070 symhdr->cbRfdOffset += new_data2_size;
1071 symhdr->cbExtOffset += new_data2_size;
1072 }
590bd467 1073#endif /* __alpha__ && !__OpenBSD__ */
265b2695 1074
d2b5bbda 1075#if defined (_SYSTYPE_SYSV)
52da6a59 1076 if (NEW_SECTION_H (nn).sh_type == SHT_MIPS_DEBUG
7da3d06f 1077 && old_mdebug_index != -1)
826ba17e 1078 {
5e617bc2
JB
1079 int diff = NEW_SECTION_H (nn).sh_offset
1080 - OLD_SECTION_H (old_mdebug_index).sh_offset;
9240b21d
RS
1081 HDRR *phdr = (HDRR *)(NEW_SECTION_H (nn).sh_offset + new_base);
1082
1083 if (diff)
1084 {
1085 phdr->cbLineOffset += diff;
1086 phdr->cbDnOffset += diff;
1087 phdr->cbPdOffset += diff;
1088 phdr->cbSymOffset += diff;
1089 phdr->cbOptOffset += diff;
1090 phdr->cbAuxOffset += diff;
1091 phdr->cbSsOffset += diff;
1092 phdr->cbSsExtOffset += diff;
1093 phdr->cbFdOffset += diff;
1094 phdr->cbRfdOffset += diff;
1095 phdr->cbExtOffset += diff;
1096 }
1097 }
d2b5bbda 1098#endif /* _SYSTYPE_SYSV */
bc597cc7
KH
1099
1100#if __sgi
7da3d06f 1101 /* Adjust the HDRR offsets in .mdebug and copy the
bc597cc7
KH
1102 line data if it's in its usual 'hole' in the object.
1103 Makes the new file debuggable with dbx.
1104 patches up two problems: the absolute file offsets
1105 in the HDRR record of .mdebug (see /usr/include/syms.h), and
1106 the ld bug that gets the line table in a hole in the
1107 elf file rather than in the .mdebug section proper.
1108 David Anderson. davea@sgi.com Jan 16,1994. */
1109 if (n == old_mdebug_index)
1110 {
1111#define MDEBUGADJUST(__ct,__fileaddr) \
1112 if (n_phdrr->__ct > 0) \
1113 { \
1114 n_phdrr->__fileaddr += movement; \
1115 }
1116
1117 HDRR * o_phdrr = (HDRR *)((byte *)old_base + OLD_SECTION_H (n).sh_offset);
1118 HDRR * n_phdrr = (HDRR *)((byte *)new_base + NEW_SECTION_H (nn).sh_offset);
1119 unsigned movement = new_data2_size;
1120
1121 MDEBUGADJUST (idnMax, cbDnOffset);
1122 MDEBUGADJUST (ipdMax, cbPdOffset);
1123 MDEBUGADJUST (isymMax, cbSymOffset);
1124 MDEBUGADJUST (ioptMax, cbOptOffset);
1125 MDEBUGADJUST (iauxMax, cbAuxOffset);
1126 MDEBUGADJUST (issMax, cbSsOffset);
1127 MDEBUGADJUST (issExtMax, cbSsExtOffset);
1128 MDEBUGADJUST (ifdMax, cbFdOffset);
1129 MDEBUGADJUST (crfd, cbRfdOffset);
1130 MDEBUGADJUST (iextMax, cbExtOffset);
1131 /* The Line Section, being possible off in a hole of the object,
1132 requires special handling. */
1133 if (n_phdrr->cbLine > 0)
1134 {
1135 if (o_phdrr->cbLineOffset > (OLD_SECTION_H (n).sh_offset
1136 + OLD_SECTION_H (n).sh_size))
1137 {
1138 /* line data is in a hole in elf. do special copy and adjust
1139 for this ld mistake.
1140 */
1141 n_phdrr->cbLineOffset += movement;
1142
1143 memcpy (n_phdrr->cbLineOffset + new_base,
1144 o_phdrr->cbLineOffset + old_base, n_phdrr->cbLine);
1145 }
1146 else
1147 {
1148 /* somehow line data is in .mdebug as it is supposed to be. */
1149 MDEBUGADJUST (cbLine, cbLineOffset);
1150 }
1151 }
1152 }
1153#endif /* __sgi */
1154
8917361f 1155 /* If it is the symbol table, its st_shndx field needs to be patched. */
d7cb42c3
RS
1156 if (NEW_SECTION_H (nn).sh_type == SHT_SYMTAB
1157 || NEW_SECTION_H (nn).sh_type == SHT_DYNSYM)
e40c4104 1158 {
5e617bc2 1159 ElfW (Shdr) *spt = &NEW_SECTION_H (nn);
e40c4104 1160 unsigned int num = spt->sh_size / spt->sh_entsize;
5e617bc2 1161 ElfW (Sym) * sym = (ElfW (Sym) *) (NEW_SECTION_H (nn).sh_offset +
e40c4104
RS
1162 new_base);
1163 for (; num--; sym++)
1164 {
1165 if ((sym->st_shndx == SHN_UNDEF)
1166 || (sym->st_shndx == SHN_ABS)
1167 || (sym->st_shndx == SHN_COMMON))
1168 continue;
994a65f3 1169
d7cb42c3 1170 PATCH_INDEX (sym->st_shndx);
e40c4104
RS
1171 }
1172 }
d427b66a
JB
1173 }
1174
8917361f 1175 /* Update the symbol values of _edata and _end. */
8bf761ce
RS
1176 for (n = new_file_h->e_shnum - 1; n; n--)
1177 {
1178 byte *symnames;
5e617bc2 1179 ElfW (Sym) *symp, *symendp;
8bf761ce
RS
1180
1181 if (NEW_SECTION_H (n).sh_type != SHT_DYNSYM
1182 && NEW_SECTION_H (n).sh_type != SHT_SYMTAB)
1183 continue;
1184
8c1e9afe
KH
1185 symnames = ((byte *) new_base
1186 + NEW_SECTION_H (NEW_SECTION_H (n).sh_link).sh_offset);
5e617bc2
JB
1187 symp = (ElfW (Sym) *) (NEW_SECTION_H (n).sh_offset + new_base);
1188 symendp = (ElfW (Sym) *) ((byte *)symp + NEW_SECTION_H (n).sh_size);
8bf761ce
RS
1189
1190 for (; symp < symendp; symp ++)
bcda200f
YM
1191 {
1192 if (strcmp ((char *) (symnames + symp->st_name), "_end") == 0
1193 || strcmp ((char *) (symnames + symp->st_name), "end") == 0
1194 || strcmp ((char *) (symnames + symp->st_name), "_edata") == 0
1195 || strcmp ((char *) (symnames + symp->st_name), "edata") == 0)
1196 memcpy (&symp->st_value, &new_bss_addr, sizeof (new_bss_addr));
1197
1198 /* Strictly speaking, #ifdef below is not necessary. But we
1199 keep it to indicate that this kind of change may also be
1200 necessary for other unexecs to support GNUstep. */
1201#ifdef NS_IMPL_GNUSTEP
1202 /* ObjC runtime modifies the values of some data structures
1203 such as classes and selectors in the .data section after
1204 loading. As the dump process copies the .data section
1205 from the current process, that causes problems when the
1206 modified classes are reinitialized in the dumped
1207 executable. We copy such data from the old file, not
1208 from the current process. */
1209 if (strncmp ((char *) (symnames + symp->st_name),
1210 "_OBJC_", sizeof ("_OBJC_") - 1) == 0)
1211 {
1212 caddr_t old, new;
1213
1214 new = ((symp->st_value - NEW_SECTION_H (symp->st_shndx).sh_addr)
1215 + NEW_SECTION_H (symp->st_shndx).sh_offset + new_base);
1216 /* "Unpatch" index. */
1217 nn = symp->st_shndx;
1218 if (nn > old_bss_index)
1219 nn--;
b34d7317
YM
1220 if (nn == old_bss_index)
1221 memset (new, 0, symp->st_size);
1222 else
1223 {
1224 old = ((symp->st_value
1225 - NEW_SECTION_H (symp->st_shndx).sh_addr)
1226 + OLD_SECTION_H (nn).sh_offset + old_base);
1227 memcpy (new, old, symp->st_size);
1228 }
bcda200f
YM
1229 }
1230#endif
1231 }
8bf761ce
RS
1232 }
1233
48240339
KH
1234 /* This loop seeks out relocation sections for the data section, so
1235 that it can undo relocations performed by the runtime linker. */
1236 for (n = new_file_h->e_shnum - 1; n; n--)
1237 {
5e617bc2 1238 ElfW (Shdr) section = NEW_SECTION_H (n);
642ffd98
RS
1239
1240 /* Cause a compilation error if anyone uses n instead of nn below. */
9ae71512
PE
1241 #define n ((void) 0);
1242 n /* Prevent 'macro "n" is not used' warnings. */
642ffd98 1243
7da3d06f 1244 switch (section.sh_type)
642ffd98
RS
1245 {
1246 default:
1247 break;
1248 case SHT_REL:
1249 case SHT_RELA:
1250 /* This code handles two different size structs, but there should
1251 be no harm in that provided that r_offset is always the first
1252 member. */
1253 nn = section.sh_info;
1254 if (!strcmp (old_section_names + NEW_SECTION_H (nn).sh_name, ".data")
1255 || !strcmp ((old_section_names + NEW_SECTION_H (nn).sh_name),
1256 ".sdata")
1257 || !strcmp ((old_section_names + NEW_SECTION_H (nn).sh_name),
1258 ".lit4")
1259 || !strcmp ((old_section_names + NEW_SECTION_H (nn).sh_name),
1260 ".lit8")
d4e3d7f2
RS
1261#ifdef IRIX6_5 /* see above */
1262 || !strcmp ((old_section_names + NEW_SECTION_H (nn).sh_name),
1263 ".got")
1264#endif
642ffd98
RS
1265 || !strcmp ((old_section_names + NEW_SECTION_H (nn).sh_name),
1266 ".sdata1")
1267 || !strcmp ((old_section_names + NEW_SECTION_H (nn).sh_name),
1268 ".data1"))
1269 {
5e617bc2 1270 ElfW (Addr) offset = (NEW_SECTION_H (nn).sh_addr
642ffd98
RS
1271 - NEW_SECTION_H (nn).sh_offset);
1272 caddr_t reloc = old_base + section.sh_offset, end;
1273 for (end = reloc + section.sh_size; reloc < end;
1274 reloc += section.sh_entsize)
1275 {
5e617bc2 1276 ElfW (Addr) addr = ((ElfW (Rel) *) reloc)->r_offset - offset;
265b2695 1277#ifdef __alpha__
642ffd98
RS
1278 /* The Alpha ELF binutils currently have a bug that
1279 sometimes results in relocs that contain all
1280 zeroes. Work around this for now... */
5e617bc2 1281 if (((ElfW (Rel) *) reloc)->r_offset == 0)
265b2695
RS
1282 continue;
1283#endif
5e617bc2 1284 memcpy (new_base + addr, old_base + addr, sizeof (ElfW (Addr)));
642ffd98
RS
1285 }
1286 }
1287 break;
1288 }
9ae71512
PE
1289
1290 #undef n
48240339 1291 }
48240339 1292
d9d54213 1293 /* Write out new_file, and free the buffers. */
04f903c0
KH
1294
1295 if (write (new_file, new_base, new_file_size) != new_file_size)
7da3d06f 1296 fatal ("Didn't write %d bytes to %s: errno %d\n",
4470a277 1297 new_file_size, new_name, errno);
86928dfb
GM
1298 munmap (old_base, old_file_size);
1299 munmap (new_base, new_file_size);
6fb8339c 1300
d9d54213 1301 /* Close the files and make the new file executable. */
d427b66a 1302
aff37336
SS
1303#if MAP_ANON == 0
1304 close (mmap_fd);
1305#endif
1306
d427b66a 1307 if (close (old_file))
d7cb42c3 1308 fatal ("Can't close (%s): errno %d\n", old_name, errno);
d427b66a 1309
d9d54213
RS
1310 if (close (new_file))
1311 fatal ("Can't close (%s): errno %d\n", new_name, errno);
d427b66a
JB
1312
1313 if (stat (new_name, &stat_buf) == -1)
d7cb42c3 1314 fatal ("Can't stat (%s): errno %d\n", new_name, errno);
d427b66a
JB
1315
1316 n = umask (777);
1317 umask (n);
1318 stat_buf.st_mode |= 0111 & ~n;
1319 if (chmod (new_name, stat_buf.st_mode) == -1)
d7cb42c3 1320 fatal ("Can't chmod (%s): errno %d\n", new_name, errno);
d427b66a 1321}