blob: 5f31d8a746d2ae1f9965637c61cfc88b88d30ec9 [file] [log] [blame]
Tom Rini4549e782018-05-06 18:27:01 -04001// SPDX-License-Identifier: GPL-2.0+ OR BSD-2-Clause
Scott Wood8137af12013-12-14 11:47:32 +08002/*
3 * Copyright 2013 Freescale Semiconductor, Inc.
4 *
Scott Wood8137af12013-12-14 11:47:32 +08005 * 64-bit and little-endian target only until we need to support a different
6 * arch that needs this.
7 */
8
9#include <elf.h>
10#include <errno.h>
11#include <inttypes.h>
12#include <stdarg.h>
13#include <stdbool.h>
14#include <stdio.h>
15#include <stdlib.h>
16#include <string.h>
Jonathan Gray43db3e32016-12-11 14:51:13 +110017#include "compiler.h"
Scott Wood8137af12013-12-14 11:47:32 +080018
19#ifndef R_AARCH64_RELATIVE
20#define R_AARCH64_RELATIVE 1027
21#endif
22
Michal Simek4c9e2d62022-06-24 14:14:59 +020023static int ei_class;
24
Michal Simek30fb8d22022-06-24 14:15:00 +020025static uint64_t rela_start, rela_end, text_base, dyn_start;
Michal Simekd8b04442022-06-24 14:14:59 +020026
Scott Wood8137af12013-12-14 11:47:32 +080027static const bool debug_en;
28
29static void debug(const char *fmt, ...)
30{
31 va_list args;
32
xypron.glpk@gmx.ded27e35f2017-05-03 22:40:11 +020033 if (debug_en) {
34 va_start(args, fmt);
Scott Wood8137af12013-12-14 11:47:32 +080035 vprintf(fmt, args);
xypron.glpk@gmx.ded27e35f2017-05-03 22:40:11 +020036 va_end(args);
37 }
Scott Wood8137af12013-12-14 11:47:32 +080038}
39
40static bool supported_rela(Elf64_Rela *rela)
41{
42 uint64_t mask = 0xffffffffULL; /* would be different on 32-bit */
43 uint32_t type = rela->r_info & mask;
44
45 switch (type) {
Scott Wood8137af12013-12-14 11:47:32 +080046 case R_AARCH64_RELATIVE:
47 return true;
Scott Wood8137af12013-12-14 11:47:32 +080048 default:
49 fprintf(stderr, "warning: unsupported relocation type %"
50 PRIu32 " at %" PRIx64 "\n",
51 type, rela->r_offset);
52
53 return false;
54 }
55}
56
Michal Simek4c9e2d62022-06-24 14:14:59 +020057static int decode_elf64(FILE *felf, char **argv)
Scott Wood8137af12013-12-14 11:47:32 +080058{
Michal Simek4c9e2d62022-06-24 14:14:59 +020059 size_t size;
60 Elf64_Ehdr header;
Samuel Holland5e0e1a82022-07-15 01:40:25 -050061 uint64_t section_header_base, section_header_size;
62 uint64_t sh_addr, sh_offset, sh_size;
63 Elf64_Half sh_index, sh_num;
Michal Simek4c9e2d62022-06-24 14:14:59 +020064 Elf64_Shdr *sh_table; /* Elf symbol table */
65 int ret, i, machine;
66 char *sh_str;
67
68 debug("64bit version\n");
69
70 /* Make sure we are at start */
71 rewind(felf);
72
73 size = fread(&header, 1, sizeof(header), felf);
74 if (size != sizeof(header)) {
75 fclose(felf);
76 return 25;
77 }
78
Samuel Holland5e0e1a82022-07-15 01:40:25 -050079 machine = le16_to_cpu(header.e_machine);
Michal Simek4c9e2d62022-06-24 14:14:59 +020080 debug("Machine\t%d\n", machine);
81
Michal Simeka1405d92022-06-24 14:15:00 +020082 if (machine != EM_AARCH64) {
83 fprintf(stderr, "%s: Not supported machine type\n", argv[0]);
84 return 30;
85 }
86
Samuel Holland5e0e1a82022-07-15 01:40:25 -050087 text_base = le64_to_cpu(header.e_entry);
88 section_header_base = le64_to_cpu(header.e_shoff);
89 section_header_size = le16_to_cpu(header.e_shentsize) *
90 le16_to_cpu(header.e_shnum);
Michal Simek4c9e2d62022-06-24 14:14:59 +020091
92 sh_table = malloc(section_header_size);
93 if (!sh_table) {
94 fprintf(stderr, "%s: Cannot allocate space for section header\n",
95 argv[0]);
96 fclose(felf);
97 return 26;
98 }
99
100 ret = fseek(felf, section_header_base, SEEK_SET);
101 if (ret) {
102 fprintf(stderr, "%s: Can't set pointer to section header: %x/%lx\n",
103 argv[0], ret, section_header_base);
104 free(sh_table);
105 fclose(felf);
106 return 26;
107 }
108
109 size = fread(sh_table, 1, section_header_size, felf);
110 if (size != section_header_size) {
111 fprintf(stderr, "%s: Can't read section header: %lx/%lx\n",
112 argv[0], size, section_header_size);
113 free(sh_table);
114 fclose(felf);
115 return 27;
116 }
117
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500118 sh_index = le16_to_cpu(header.e_shstrndx);
119 sh_size = le64_to_cpu(sh_table[sh_index].sh_size);
120 debug("e_shstrndx %x, sh_size %lx\n", sh_index, sh_size);
Michal Simek4c9e2d62022-06-24 14:14:59 +0200121
122 sh_str = malloc(sh_size);
123 if (!sh_str) {
124 fprintf(stderr, "malloc failed\n");
125 free(sh_table);
126 fclose(felf);
127 return 28;
128 }
129
130 /*
131 * Specifies the byte offset from the beginning of the file
132 * to the first byte in the section.
133 */
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500134 sh_offset = le64_to_cpu(sh_table[sh_index].sh_offset);
135 sh_num = le16_to_cpu(header.e_shnum);
Michal Simek4c9e2d62022-06-24 14:14:59 +0200136
137 ret = fseek(felf, sh_offset, SEEK_SET);
138 if (ret) {
139 fprintf(stderr, "Setting up sh_offset failed\n");
140 free(sh_str);
141 free(sh_table);
142 fclose(felf);
143 return 29;
144 }
145
146 size = fread(sh_str, 1, sh_size, felf);
147 if (size != sh_size) {
148 fprintf(stderr, "%s: Can't read section: %lx/%lx\n",
149 argv[0], size, sh_size);
150 free(sh_str);
151 free(sh_table);
152 fclose(felf);
153 return 30;
154 }
155
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500156 for (i = 0; i < sh_num; i++) {
157 char *sh_name = sh_str + le32_to_cpu(sh_table[i].sh_name);
158
159 debug("%s\n", sh_name);
160
161 sh_addr = le64_to_cpu(sh_table[i].sh_addr);
162 sh_offset = le64_to_cpu(sh_table[i].sh_offset);
163 sh_size = le64_to_cpu(sh_table[i].sh_size);
164
165 if (!strcmp(".rela.dyn", sh_name)) {
Michal Simek4c9e2d62022-06-24 14:14:59 +0200166 debug("Found section\t\".rela_dyn\"\n");
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500167 debug(" at addr\t0x%08x\n", sh_addr);
168 debug(" at offset\t0x%08x\n", sh_offset);
169 debug(" of size\t0x%08x\n", sh_size);
170 rela_start = sh_addr;
171 rela_end = rela_start + sh_size;
Michal Simek4c9e2d62022-06-24 14:14:59 +0200172 break;
173 }
174 }
175
176 /* Clean up */
177 free(sh_str);
178 free(sh_table);
179 fclose(felf);
180
181 debug("text_base\t0x%08lx\n", text_base);
182 debug("rela_start\t0x%08lx\n", rela_start);
183 debug("rela_end\t0x%08lx\n", rela_end);
184
185 if (!rela_start)
186 return 1;
187
188 return 0;
189}
190
Michal Simek30fb8d22022-06-24 14:15:00 +0200191static int decode_elf32(FILE *felf, char **argv)
192{
193 size_t size;
194 Elf32_Ehdr header;
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500195 uint64_t section_header_base, section_header_size;
196 uint32_t sh_addr, sh_offset, sh_size;
197 Elf32_Half sh_index, sh_num;
Michal Simek30fb8d22022-06-24 14:15:00 +0200198 Elf32_Shdr *sh_table; /* Elf symbol table */
199 int ret, i, machine;
200 char *sh_str;
201
202 debug("32bit version\n");
203
204 /* Make sure we are at start */
205 rewind(felf);
206
207 size = fread(&header, 1, sizeof(header), felf);
208 if (size != sizeof(header)) {
209 fclose(felf);
210 return 25;
211 }
212
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500213 machine = le16_to_cpu(header.e_machine);
Michal Simek30fb8d22022-06-24 14:15:00 +0200214 debug("Machine %d\n", machine);
215
216 if (machine != EM_MICROBLAZE) {
217 fprintf(stderr, "%s: Not supported machine type\n", argv[0]);
218 return 30;
219 }
220
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500221 text_base = le32_to_cpu(header.e_entry);
222 section_header_base = le32_to_cpu(header.e_shoff);
223 section_header_size = le16_to_cpu(header.e_shentsize) *
224 le16_to_cpu(header.e_shnum);
Michal Simek30fb8d22022-06-24 14:15:00 +0200225
226 sh_table = malloc(section_header_size);
227 if (!sh_table) {
228 fprintf(stderr, "%s: Cannot allocate space for section header\n",
229 argv[0]);
230 fclose(felf);
231 return 26;
232 }
233
234 ret = fseek(felf, section_header_base, SEEK_SET);
235 if (ret) {
236 fprintf(stderr, "%s: Can't set pointer to section header: %x/%lx\n",
237 argv[0], ret, section_header_base);
238 free(sh_table);
239 fclose(felf);
240 return 26;
241 }
242
243 size = fread(sh_table, 1, section_header_size, felf);
244 if (size != section_header_size) {
245 fprintf(stderr, "%s: Can't read section header: %lx/%lx\n",
246 argv[0], size, section_header_size);
247 free(sh_table);
248 fclose(felf);
249 return 27;
250 }
251
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500252 sh_index = le16_to_cpu(header.e_shstrndx);
253 sh_size = le32_to_cpu(sh_table[sh_index].sh_size);
254 debug("e_shstrndx %x, sh_size %lx\n", sh_index, sh_size);
Michal Simek30fb8d22022-06-24 14:15:00 +0200255
256 sh_str = malloc(sh_size);
257 if (!sh_str) {
258 fprintf(stderr, "malloc failed\n");
259 free(sh_table);
260 fclose(felf);
261 return 28;
262 }
263
264 /*
265 * Specifies the byte offset from the beginning of the file
266 * to the first byte in the section.
267 */
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500268 sh_offset = le32_to_cpu(sh_table[sh_index].sh_offset);
269 sh_num = le16_to_cpu(header.e_shnum);
Michal Simek30fb8d22022-06-24 14:15:00 +0200270
271 ret = fseek(felf, sh_offset, SEEK_SET);
272 if (ret) {
273 fprintf(stderr, "Setting up sh_offset failed\n");
274 free(sh_str);
275 free(sh_table);
276 fclose(felf);
277 return 29;
278 }
279
280 size = fread(sh_str, 1, sh_size, felf);
281 if (size != sh_size) {
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500282 fprintf(stderr, "%s: Can't read section: %lx/%x\n",
Michal Simek30fb8d22022-06-24 14:15:00 +0200283 argv[0], size, sh_size);
284 free(sh_str);
285 free(sh_table);
286 fclose(felf);
287 return 30;
288 }
289
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500290 for (i = 0; i < sh_num; i++) {
291 char *sh_name = sh_str + le32_to_cpu(sh_table[i].sh_name);
292
293 debug("%s\n", sh_name);
294
295 sh_addr = le64_to_cpu(sh_table[i].sh_addr);
296 sh_offset = le64_to_cpu(sh_table[i].sh_offset);
297 sh_size = le64_to_cpu(sh_table[i].sh_size);
298
299 if (!strcmp(".rela.dyn", sh_name)) {
Michal Simek30fb8d22022-06-24 14:15:00 +0200300 debug("Found section\t\".rela_dyn\"\n");
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500301 debug(" at addr\t0x%08x\n", sh_addr);
302 debug(" at offset\t0x%08x\n", sh_offset);
303 debug(" of size\t0x%08x\n", sh_size);
304 rela_start = sh_addr;
305 rela_end = rela_start + sh_size;
Michal Simek30fb8d22022-06-24 14:15:00 +0200306 }
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500307 if (!strcmp(".dynsym", sh_name)) {
Michal Simek30fb8d22022-06-24 14:15:00 +0200308 debug("Found section\t\".dynsym\"\n");
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500309 debug(" at addr\t0x%08x\n", sh_addr);
310 debug(" at offset\t0x%08x\n", sh_offset);
311 debug(" of size\t0x%08x\n", sh_size);
312 dyn_start = sh_addr;
Michal Simek30fb8d22022-06-24 14:15:00 +0200313 }
314 }
315
316 /* Clean up */
317 free(sh_str);
318 free(sh_table);
319 fclose(felf);
320
321 debug("text_base\t0x%08lx\n", text_base);
322 debug("rela_start\t0x%08lx\n", rela_start);
323 debug("rela_end\t0x%08lx\n", rela_end);
324 debug("dyn_start\t0x%08lx\n", dyn_start);
325
326 if (!rela_start)
327 return 1;
328
329 return 0;
330}
331
Michal Simek4c9e2d62022-06-24 14:14:59 +0200332static int decode_elf(char **argv)
333{
334 FILE *felf;
335 size_t size;
336 unsigned char e_ident[EI_NIDENT];
337
338 felf = fopen(argv[2], "r+b");
339 if (!felf) {
340 fprintf(stderr, "%s: Cannot open %s: %s\n",
341 argv[0], argv[5], strerror(errno));
342 return 2;
343 }
344
345 size = fread(e_ident, 1, EI_NIDENT, felf);
346 if (size != EI_NIDENT) {
347 fclose(felf);
348 return 25;
349 }
350
351 /* Check if this is really ELF file */
352 if (e_ident[0] != 0x7f &&
353 e_ident[1] != 'E' &&
354 e_ident[2] != 'L' &&
355 e_ident[3] != 'F') {
356 fclose(felf);
357 return 1;
358 }
359
360 ei_class = e_ident[4];
361 debug("EI_CLASS(1=32bit, 2=64bit) %d\n", ei_class);
362
363 if (ei_class == 2)
364 return decode_elf64(felf, argv);
365
Michal Simek30fb8d22022-06-24 14:15:00 +0200366 return decode_elf32(felf, argv);
Scott Wood8137af12013-12-14 11:47:32 +0800367}
368
Michal Simek582ffb52022-06-24 14:15:00 +0200369static int rela_elf64(char **argv, FILE *f)
Scott Wood8137af12013-12-14 11:47:32 +0800370{
Michal Simek582ffb52022-06-24 14:15:00 +0200371 int i, num;
Alistair Delva9d3d9812021-10-20 21:31:32 +0000372
373 if ((rela_end - rela_start) % sizeof(Elf64_Rela)) {
374 fprintf(stderr, "%s: rela size isn't a multiple of Elf64_Rela\n", argv[0]);
375 return 3;
376 }
377
Scott Wood8137af12013-12-14 11:47:32 +0800378 num = (rela_end - rela_start) / sizeof(Elf64_Rela);
379
380 for (i = 0; i < num; i++) {
381 Elf64_Rela rela, swrela;
382 uint64_t pos = rela_start + sizeof(Elf64_Rela) * i;
383 uint64_t addr;
384
385 if (fseek(f, pos, SEEK_SET) < 0) {
386 fprintf(stderr, "%s: %s: seek to %" PRIx64
387 " failed: %s\n",
388 argv[0], argv[1], pos, strerror(errno));
389 }
390
391 if (fread(&rela, sizeof(rela), 1, f) != 1) {
392 fprintf(stderr, "%s: %s: read rela failed at %"
393 PRIx64 "\n",
394 argv[0], argv[1], pos);
395 return 4;
396 }
397
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500398 swrela.r_offset = le64_to_cpu(rela.r_offset);
399 swrela.r_info = le64_to_cpu(rela.r_info);
400 swrela.r_addend = le64_to_cpu(rela.r_addend);
Scott Wood8137af12013-12-14 11:47:32 +0800401
402 if (!supported_rela(&swrela))
403 continue;
404
405 debug("Rela %" PRIx64 " %" PRIu64 " %" PRIx64 "\n",
406 swrela.r_offset, swrela.r_info, swrela.r_addend);
407
408 if (swrela.r_offset < text_base) {
409 fprintf(stderr, "%s: %s: bad rela at %" PRIx64 "\n",
410 argv[0], argv[1], pos);
411 return 4;
412 }
413
414 addr = swrela.r_offset - text_base;
415
416 if (fseek(f, addr, SEEK_SET) < 0) {
417 fprintf(stderr, "%s: %s: seek to %"
418 PRIx64 " failed: %s\n",
419 argv[0], argv[1], addr, strerror(errno));
420 }
421
422 if (fwrite(&rela.r_addend, sizeof(rela.r_addend), 1, f) != 1) {
423 fprintf(stderr, "%s: %s: write failed at %" PRIx64 "\n",
424 argv[0], argv[1], addr);
425 return 4;
426 }
427 }
428
Michal Simek582ffb52022-06-24 14:15:00 +0200429 return 0;
430}
431
Michal Simek034944b2022-06-24 14:15:00 +0200432static bool supported_rela32(Elf32_Rela *rela, uint32_t *type)
433{
434 uint32_t mask = 0xffULL; /* would be different on 32-bit */
435 *type = rela->r_info & mask;
436
437 debug("Type:\t");
438
439 switch (*type) {
440 case R_MICROBLAZE_32:
441 debug("R_MICROBLAZE_32\n");
442 return true;
443 case R_MICROBLAZE_GLOB_DAT:
444 debug("R_MICROBLAZE_GLOB_DAT\n");
445 return true;
446 case R_MICROBLAZE_NONE:
447 debug("R_MICROBLAZE_NONE - ignoring - do nothing\n");
448 return false;
449 case R_MICROBLAZE_REL:
450 debug("R_MICROBLAZE_REL\n");
451 return true;
452 default:
453 fprintf(stderr, "warning: unsupported relocation type %"
454 PRIu32 " at %" PRIx32 "\n", *type, rela->r_offset);
455
456 return false;
457 }
458}
459
460static int rela_elf32(char **argv, FILE *f)
461{
462 int i, num, index;
463 uint32_t value, type;
464
465 if ((rela_end - rela_start) % sizeof(Elf32_Rela)) {
466 fprintf(stderr, "%s: rela size isn't a multiple of Elf32_Rela\n", argv[0]);
467 return 3;
468 }
469
470 num = (rela_end - rela_start) / sizeof(Elf32_Rela);
471
472 debug("Number of entries: %u\n", num);
473
474 for (i = 0; i < num; i++) {
475 Elf32_Rela rela, swrela;
476 Elf32_Sym symbols;
477 uint32_t pos = rela_start + sizeof(Elf32_Rela) * i;
478 uint32_t addr, pos_dyn;
479
480 debug("\nPossition:\t%d/0x%x\n", i, pos);
481
482 if (fseek(f, pos, SEEK_SET) < 0) {
483 fprintf(stderr, "%s: %s: seek to %" PRIx32
484 " failed: %s\n",
485 argv[0], argv[1], pos, strerror(errno));
486 }
487
488 if (fread(&rela, sizeof(rela), 1, f) != 1) {
489 fprintf(stderr, "%s: %s: read rela failed at %"
490 PRIx32 "\n",
491 argv[0], argv[1], pos);
492 return 4;
493 }
494
495 debug("Rela:\toffset:\t%" PRIx32 " r_info:\t%"
496 PRIu32 " r_addend:\t%" PRIx32 "\n",
497 rela.r_offset, rela.r_info, rela.r_addend);
498
Samuel Holland5e0e1a82022-07-15 01:40:25 -0500499 swrela.r_offset = le32_to_cpu(rela.r_offset);
500 swrela.r_info = le32_to_cpu(rela.r_info);
501 swrela.r_addend = le32_to_cpu(rela.r_addend);
Michal Simek034944b2022-06-24 14:15:00 +0200502
503 debug("SWRela:\toffset:\t%" PRIx32 " r_info:\t%"
504 PRIu32 " r_addend:\t%" PRIx32 "\n",
505 swrela.r_offset, swrela.r_info, swrela.r_addend);
506
507 if (!supported_rela32(&swrela, &type))
508 continue;
509
510 if (swrela.r_offset < text_base) {
511 fprintf(stderr, "%s: %s: bad rela at %" PRIx32 "\n",
512 argv[0], argv[1], pos);
513 return 4;
514 }
515
516 addr = swrela.r_offset - text_base;
517
518 debug("Addr:\t0x%" PRIx32 "\n", addr);
519
520 switch (type) {
521 case R_MICROBLAZE_REL:
522 if (fseek(f, addr, SEEK_SET) < 0) {
523 fprintf(stderr, "%s: %s: seek to %"
524 PRIx32 " failed: %s\n",
525 argv[0], argv[1], addr, strerror(errno));
526 return 5;
527 }
528
529 debug("Write addend\n");
530
531 if (fwrite(&rela.r_addend, sizeof(rela.r_addend), 1, f) != 1) {
532 fprintf(stderr, "%s: %s: write failed at %" PRIx32 "\n",
533 argv[0], argv[1], addr);
534 return 4;
535 }
536 break;
537 case R_MICROBLAZE_32:
538 case R_MICROBLAZE_GLOB_DAT:
539 /* global symbols read it and add reloc offset */
540 index = swrela.r_info >> 8;
541 pos_dyn = dyn_start + sizeof(Elf32_Sym) * index;
542
543 debug("Index:\t%d\n", index);
544 debug("Pos_dyn:\t0x%x\n", pos_dyn);
545
546 if (fseek(f, pos_dyn, SEEK_SET) < 0) {
547 fprintf(stderr, "%s: %s: seek to %"
548 PRIx32 " failed: %s\n",
549 argv[0], argv[1], pos_dyn, strerror(errno));
550 return 5;
551 }
552
553 if (fread(&symbols, sizeof(symbols), 1, f) != 1) {
554 fprintf(stderr, "%s: %s: read symbols failed at %"
555 PRIx32 "\n",
556 argv[0], argv[1], pos_dyn);
557 return 4;
558 }
559
560 debug("Symbol description:\n");
561 debug(" st_name:\t0x%x\n", symbols.st_name);
562 debug(" st_value:\t0x%x\n", symbols.st_value);
563 debug(" st_size:\t0x%x\n", symbols.st_size);
564
565 value = swrela.r_addend + symbols.st_value;
566
567 debug("Value:\t0x%x\n", value);
568
569 if (fseek(f, addr, SEEK_SET) < 0) {
570 fprintf(stderr, "%s: %s: seek to %"
571 PRIx32 " failed: %s\n",
572 argv[0], argv[1], addr, strerror(errno));
573 return 5;
574 }
575
576 if (fwrite(&value, sizeof(rela.r_addend), 1, f) != 1) {
577 fprintf(stderr, "%s: %s: write failed at %" PRIx32 "\n",
578 argv[0], argv[1], addr);
579 return 4;
580 }
581
582 break;
583 case R_MICROBLAZE_NONE:
584 debug("R_MICROBLAZE_NONE - skip\n");
585 break;
586 default:
587 fprintf(stderr, "warning: unsupported relocation type %"
588 PRIu32 " at %" PRIx32 "\n",
589 type, rela.r_offset);
590 }
591 }
592
593 return 0;
594}
595
Michal Simek582ffb52022-06-24 14:15:00 +0200596int main(int argc, char **argv)
597{
598 FILE *f;
599 int ret;
600 uint64_t file_size;
601
602 if (argc != 3) {
603 fprintf(stderr, "Statically apply ELF rela relocations\n");
604 fprintf(stderr, "Usage: %s <bin file> <u-boot ELF>\n",
605 argv[0]);
606 return 1;
607 }
608
609 ret = decode_elf(argv);
610 if (ret) {
611 fprintf(stderr, "ELF decoding failed\n");
612 return ret;
613 }
614
615 if (rela_start > rela_end || rela_start < text_base) {
616 fprintf(stderr, "%s: bad rela bounds\n", argv[0]);
617 return 3;
618 }
619
620 rela_start -= text_base;
621 rela_end -= text_base;
Michal Simek30fb8d22022-06-24 14:15:00 +0200622 dyn_start -= text_base;
Michal Simek582ffb52022-06-24 14:15:00 +0200623
624 f = fopen(argv[1], "r+b");
625 if (!f) {
626 fprintf(stderr, "%s: Cannot open %s: %s\n",
627 argv[0], argv[1], strerror(errno));
628 return 2;
629 }
630
631 fseek(f, 0, SEEK_END);
632 file_size = ftell(f);
633 rewind(f);
634
635 if (rela_end > file_size) {
636 // Most likely compiler inserted some section that didn't get
637 // objcopy-ed into the final binary
638 rela_end = file_size;
639 }
640
641 if (ei_class == 2)
642 ret = rela_elf64(argv, f);
Michal Simek034944b2022-06-24 14:15:00 +0200643 else
644 ret = rela_elf32(argv, f);
Michal Simek582ffb52022-06-24 14:15:00 +0200645
Scott Wood8137af12013-12-14 11:47:32 +0800646 if (fclose(f) < 0) {
647 fprintf(stderr, "%s: %s: close failed: %s\n",
648 argv[0], argv[1], strerror(errno));
649 return 4;
650 }
651
Michal Simek582ffb52022-06-24 14:15:00 +0200652 return ret;
Scott Wood8137af12013-12-14 11:47:32 +0800653}