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objtool: Decode unwind hint register depending on architecture
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1ccea77e 1// SPDX-License-Identifier: GPL-2.0-or-later
dcc914f4
JP
2/*
3 * Copyright (C) 2015-2017 Josh Poimboeuf <[email protected]>
dcc914f4
JP
4 */
5
6#include <string.h>
7#include <stdlib.h>
8
43a4525f 9#include "builtin.h"
0decf1f8
MH
10#include "cfi.h"
11#include "arch.h"
dcc914f4 12#include "check.h"
dcc914f4 13#include "special.h"
dcc914f4 14#include "warn.h"
0f1441b4 15#include "arch_elf.h"
dcc914f4 16
ee819aed 17#include <linux/objtool.h>
dcc914f4
JP
18#include <linux/hashtable.h>
19#include <linux/kernel.h>
1e7e4788 20#include <linux/static_call_types.h>
dcc914f4 21
e6da9567
JP
22#define FAKE_JUMP_OFFSET -1
23
dcc914f4
JP
24struct alternative {
25 struct list_head list;
26 struct instruction *insn;
764eef4b 27 bool skip_orig;
dcc914f4
JP
28};
29
a3608f59 30struct cfi_init_state initial_func_cfi;
dcc914f4 31
627fce14
JP
32struct instruction *find_insn(struct objtool_file *file,
33 struct section *sec, unsigned long offset)
dcc914f4
JP
34{
35 struct instruction *insn;
36
87ecb582 37 hash_for_each_possible(file->insn_hash, insn, hash, sec_offset_hash(sec, offset)) {
dcc914f4
JP
38 if (insn->sec == sec && insn->offset == offset)
39 return insn;
87ecb582 40 }
dcc914f4
JP
41
42 return NULL;
43}
44
45static struct instruction *next_insn_same_sec(struct objtool_file *file,
46 struct instruction *insn)
47{
48 struct instruction *next = list_next_entry(insn, list);
49
baa41469 50 if (!next || &next->list == &file->insn_list || next->sec != insn->sec)
dcc914f4
JP
51 return NULL;
52
53 return next;
54}
55
13810435
JP
56static struct instruction *next_insn_same_func(struct objtool_file *file,
57 struct instruction *insn)
58{
59 struct instruction *next = list_next_entry(insn, list);
60 struct symbol *func = insn->func;
61
62 if (!func)
63 return NULL;
64
65 if (&next->list != &file->insn_list && next->func == func)
66 return next;
67
68 /* Check if we're already in the subfunction: */
69 if (func == func->cfunc)
70 return NULL;
71
72 /* Move to the subfunction: */
73 return find_insn(file, func->cfunc->sec, func->cfunc->offset);
74}
75
1119d265
JP
76static struct instruction *prev_insn_same_sym(struct objtool_file *file,
77 struct instruction *insn)
78{
79 struct instruction *prev = list_prev_entry(insn, list);
80
81 if (&prev->list != &file->insn_list && prev->func == insn->func)
82 return prev;
83
84 return NULL;
85}
86
f0f70adb 87#define func_for_each_insn(file, func, insn) \
13810435
JP
88 for (insn = find_insn(file, func->sec, func->offset); \
89 insn; \
90 insn = next_insn_same_func(file, insn))
91
dbf4aeb0
PZ
92#define sym_for_each_insn(file, sym, insn) \
93 for (insn = find_insn(file, sym->sec, sym->offset); \
dcc914f4 94 insn && &insn->list != &file->insn_list && \
dbf4aeb0
PZ
95 insn->sec == sym->sec && \
96 insn->offset < sym->offset + sym->len; \
dcc914f4
JP
97 insn = list_next_entry(insn, list))
98
dbf4aeb0 99#define sym_for_each_insn_continue_reverse(file, sym, insn) \
dcc914f4
JP
100 for (insn = list_prev_entry(insn, list); \
101 &insn->list != &file->insn_list && \
dbf4aeb0 102 insn->sec == sym->sec && insn->offset >= sym->offset; \
dcc914f4
JP
103 insn = list_prev_entry(insn, list))
104
105#define sec_for_each_insn_from(file, insn) \
106 for (; insn; insn = next_insn_same_sec(file, insn))
107
baa41469
JP
108#define sec_for_each_insn_continue(file, insn) \
109 for (insn = next_insn_same_sec(file, insn); insn; \
110 insn = next_insn_same_sec(file, insn))
dcc914f4 111
0c1ddd33
JP
112static bool is_sibling_call(struct instruction *insn)
113{
114 /* An indirect jump is either a sibling call or a jump to a table. */
115 if (insn->type == INSN_JUMP_DYNAMIC)
116 return list_empty(&insn->alts);
117
a2296140 118 if (!is_static_jump(insn))
0c1ddd33
JP
119 return false;
120
121 /* add_jump_destinations() sets insn->call_dest for sibling calls. */
122 return !!insn->call_dest;
123}
124
dcc914f4
JP
125/*
126 * This checks to see if the given function is a "noreturn" function.
127 *
128 * For global functions which are outside the scope of this object file, we
129 * have to keep a manual list of them.
130 *
131 * For local functions, we have to detect them manually by simply looking for
132 * the lack of a return instruction.
dcc914f4 133 */
8e25c9f8
JP
134static bool __dead_end_function(struct objtool_file *file, struct symbol *func,
135 int recursion)
dcc914f4
JP
136{
137 int i;
138 struct instruction *insn;
139 bool empty = true;
140
141 /*
142 * Unfortunately these have to be hard coded because the noreturn
143 * attribute isn't provided in ELF data.
144 */
145 static const char * const global_noreturns[] = {
146 "__stack_chk_fail",
147 "panic",
148 "do_exit",
149 "do_task_dead",
150 "__module_put_and_exit",
151 "complete_and_exit",
dcc914f4
JP
152 "__reiserfs_panic",
153 "lbug_with_loc",
154 "fortify_panic",
b394d468 155 "usercopy_abort",
684fb246 156 "machine_real_restart",
4fa5ecda 157 "rewind_stack_do_exit",
33adf80f 158 "kunit_try_catch_throw",
dcc914f4
JP
159 };
160
c9bab22b
JP
161 if (!func)
162 return false;
163
dcc914f4 164 if (func->bind == STB_WEAK)
8e25c9f8 165 return false;
dcc914f4
JP
166
167 if (func->bind == STB_GLOBAL)
168 for (i = 0; i < ARRAY_SIZE(global_noreturns); i++)
169 if (!strcmp(func->name, global_noreturns[i]))
8e25c9f8 170 return true;
dcc914f4 171
13810435 172 if (!func->len)
8e25c9f8 173 return false;
dcc914f4 174
13810435
JP
175 insn = find_insn(file, func->sec, func->offset);
176 if (!insn->func)
8e25c9f8 177 return false;
13810435 178
f0f70adb 179 func_for_each_insn(file, func, insn) {
dcc914f4
JP
180 empty = false;
181
182 if (insn->type == INSN_RETURN)
8e25c9f8 183 return false;
dcc914f4
JP
184 }
185
186 if (empty)
8e25c9f8 187 return false;
dcc914f4
JP
188
189 /*
190 * A function can have a sibling call instead of a return. In that
191 * case, the function's dead-end status depends on whether the target
192 * of the sibling call returns.
193 */
f0f70adb 194 func_for_each_insn(file, func, insn) {
0c1ddd33 195 if (is_sibling_call(insn)) {
dcc914f4 196 struct instruction *dest = insn->jump_dest;
dcc914f4
JP
197
198 if (!dest)
199 /* sibling call to another file */
8e25c9f8 200 return false;
dcc914f4 201
0c1ddd33
JP
202 /* local sibling call */
203 if (recursion == 5) {
204 /*
205 * Infinite recursion: two functions have
206 * sibling calls to each other. This is a very
207 * rare case. It means they aren't dead ends.
208 */
209 return false;
dcc914f4 210 }
dcc914f4 211
0c1ddd33
JP
212 return __dead_end_function(file, dest->func, recursion+1);
213 }
dcc914f4
JP
214 }
215
8e25c9f8 216 return true;
dcc914f4
JP
217}
218
8e25c9f8 219static bool dead_end_function(struct objtool_file *file, struct symbol *func)
dcc914f4
JP
220{
221 return __dead_end_function(file, func, 0);
222}
223
e7c0219b 224static void init_cfi_state(struct cfi_state *cfi)
baa41469
JP
225{
226 int i;
227
dd88a0a0 228 for (i = 0; i < CFI_NUM_REGS; i++) {
e7c0219b
PZ
229 cfi->regs[i].base = CFI_UNDEFINED;
230 cfi->vals[i].base = CFI_UNDEFINED;
dd88a0a0 231 }
e7c0219b
PZ
232 cfi->cfa.base = CFI_UNDEFINED;
233 cfi->drap_reg = CFI_UNDEFINED;
234 cfi->drap_offset = -1;
235}
236
932f8e98 237static void init_insn_state(struct insn_state *state, struct section *sec)
e7c0219b
PZ
238{
239 memset(state, 0, sizeof(*state));
240 init_cfi_state(&state->cfi);
932f8e98
PZ
241
242 /*
243 * We need the full vmlinux for noinstr validation, otherwise we can
244 * not correctly determine insn->call_dest->sec (external symbols do
245 * not have a section).
246 */
247 if (vmlinux && sec)
248 state->noinstr = sec->noinstr;
baa41469
JP
249}
250
dcc914f4
JP
251/*
252 * Call the arch-specific instruction decoder for all the instructions and add
253 * them to the global instruction list.
254 */
255static int decode_instructions(struct objtool_file *file)
256{
257 struct section *sec;
258 struct symbol *func;
259 unsigned long offset;
260 struct instruction *insn;
1e11f3fd 261 unsigned long nr_insns = 0;
dcc914f4
JP
262 int ret;
263
baa41469 264 for_each_sec(file, sec) {
dcc914f4
JP
265
266 if (!(sec->sh.sh_flags & SHF_EXECINSTR))
267 continue;
268
627fce14
JP
269 if (strcmp(sec->name, ".altinstr_replacement") &&
270 strcmp(sec->name, ".altinstr_aux") &&
271 strncmp(sec->name, ".discard.", 9))
272 sec->text = true;
273
0cc9ac8d
TG
274 if (!strcmp(sec->name, ".noinstr.text") ||
275 !strcmp(sec->name, ".entry.text"))
c4a33939
PZ
276 sec->noinstr = true;
277
dcc914f4
JP
278 for (offset = 0; offset < sec->len; offset += insn->len) {
279 insn = malloc(sizeof(*insn));
baa41469
JP
280 if (!insn) {
281 WARN("malloc failed");
282 return -1;
283 }
dcc914f4 284 memset(insn, 0, sizeof(*insn));
dcc914f4 285 INIT_LIST_HEAD(&insn->alts);
65ea47dc 286 INIT_LIST_HEAD(&insn->stack_ops);
e7c0219b 287 init_cfi_state(&insn->cfi);
baa41469 288
dcc914f4
JP
289 insn->sec = sec;
290 insn->offset = offset;
291
292 ret = arch_decode_instruction(file->elf, sec, offset,
293 sec->len - offset,
294 &insn->len, &insn->type,
baa41469 295 &insn->immediate,
65ea47dc 296 &insn->stack_ops);
dcc914f4 297 if (ret)
b7037983 298 goto err;
dcc914f4 299
87ecb582 300 hash_add(file->insn_hash, &insn->hash, sec_offset_hash(sec, insn->offset));
dcc914f4 301 list_add_tail(&insn->list, &file->insn_list);
1e11f3fd 302 nr_insns++;
dcc914f4
JP
303 }
304
305 list_for_each_entry(func, &sec->symbol_list, list) {
e10cd8fe 306 if (func->type != STT_FUNC || func->alias != func)
dcc914f4
JP
307 continue;
308
309 if (!find_insn(file, sec, func->offset)) {
310 WARN("%s(): can't find starting instruction",
311 func->name);
312 return -1;
313 }
314
dbf4aeb0 315 sym_for_each_insn(file, func, insn)
e10cd8fe 316 insn->func = func;
dcc914f4
JP
317 }
318 }
319
1e11f3fd
PZ
320 if (stats)
321 printf("nr_insns: %lu\n", nr_insns);
322
dcc914f4 323 return 0;
b7037983
KB
324
325err:
326 free(insn);
327 return ret;
dcc914f4
JP
328}
329
6b5dd716
ST
330static struct instruction *find_last_insn(struct objtool_file *file,
331 struct section *sec)
332{
333 struct instruction *insn = NULL;
334 unsigned int offset;
335 unsigned int end = (sec->len > 10) ? sec->len - 10 : 0;
336
337 for (offset = sec->len - 1; offset >= end && !insn; offset--)
338 insn = find_insn(file, sec, offset);
339
340 return insn;
341}
342
dcc914f4 343/*
649ea4d5 344 * Mark "ud2" instructions and manually annotated dead ends.
dcc914f4
JP
345 */
346static int add_dead_ends(struct objtool_file *file)
347{
348 struct section *sec;
f1974222 349 struct reloc *reloc;
dcc914f4 350 struct instruction *insn;
dcc914f4 351
649ea4d5
JP
352 /*
353 * By default, "ud2" is a dead end unless otherwise annotated, because
354 * GCC 7 inserts it for certain divide-by-zero cases.
355 */
356 for_each_insn(file, insn)
357 if (insn->type == INSN_BUG)
358 insn->dead_end = true;
359
360 /*
361 * Check for manually annotated dead ends.
362 */
dcc914f4
JP
363 sec = find_section_by_name(file->elf, ".rela.discard.unreachable");
364 if (!sec)
649ea4d5 365 goto reachable;
dcc914f4 366
f1974222
MH
367 list_for_each_entry(reloc, &sec->reloc_list, list) {
368 if (reloc->sym->type != STT_SECTION) {
dcc914f4
JP
369 WARN("unexpected relocation symbol type in %s", sec->name);
370 return -1;
371 }
f1974222 372 insn = find_insn(file, reloc->sym->sec, reloc->addend);
dcc914f4
JP
373 if (insn)
374 insn = list_prev_entry(insn, list);
f1974222
MH
375 else if (reloc->addend == reloc->sym->sec->len) {
376 insn = find_last_insn(file, reloc->sym->sec);
6b5dd716 377 if (!insn) {
dcc914f4 378 WARN("can't find unreachable insn at %s+0x%x",
f1974222 379 reloc->sym->sec->name, reloc->addend);
dcc914f4
JP
380 return -1;
381 }
382 } else {
383 WARN("can't find unreachable insn at %s+0x%x",
f1974222 384 reloc->sym->sec->name, reloc->addend);
dcc914f4
JP
385 return -1;
386 }
387
388 insn->dead_end = true;
389 }
390
649ea4d5
JP
391reachable:
392 /*
393 * These manually annotated reachable checks are needed for GCC 4.4,
394 * where the Linux unreachable() macro isn't supported. In that case
395 * GCC doesn't know the "ud2" is fatal, so it generates code as if it's
396 * not a dead end.
397 */
398 sec = find_section_by_name(file->elf, ".rela.discard.reachable");
399 if (!sec)
400 return 0;
401
f1974222
MH
402 list_for_each_entry(reloc, &sec->reloc_list, list) {
403 if (reloc->sym->type != STT_SECTION) {
649ea4d5
JP
404 WARN("unexpected relocation symbol type in %s", sec->name);
405 return -1;
406 }
f1974222 407 insn = find_insn(file, reloc->sym->sec, reloc->addend);
649ea4d5
JP
408 if (insn)
409 insn = list_prev_entry(insn, list);
f1974222
MH
410 else if (reloc->addend == reloc->sym->sec->len) {
411 insn = find_last_insn(file, reloc->sym->sec);
6b5dd716 412 if (!insn) {
649ea4d5 413 WARN("can't find reachable insn at %s+0x%x",
f1974222 414 reloc->sym->sec->name, reloc->addend);
649ea4d5
JP
415 return -1;
416 }
417 } else {
418 WARN("can't find reachable insn at %s+0x%x",
f1974222 419 reloc->sym->sec->name, reloc->addend);
649ea4d5
JP
420 return -1;
421 }
422
423 insn->dead_end = false;
424 }
425
dcc914f4
JP
426 return 0;
427}
428
1e7e4788
JP
429static int create_static_call_sections(struct objtool_file *file)
430{
431 struct section *sec, *reloc_sec;
432 struct reloc *reloc;
433 struct static_call_site *site;
434 struct instruction *insn;
435 struct symbol *key_sym;
436 char *key_name, *tmp;
437 int idx;
438
439 sec = find_section_by_name(file->elf, ".static_call_sites");
440 if (sec) {
441 INIT_LIST_HEAD(&file->static_call_list);
442 WARN("file already has .static_call_sites section, skipping");
443 return 0;
444 }
445
446 if (list_empty(&file->static_call_list))
447 return 0;
448
449 idx = 0;
450 list_for_each_entry(insn, &file->static_call_list, static_call_node)
451 idx++;
452
453 sec = elf_create_section(file->elf, ".static_call_sites", SHF_WRITE,
454 sizeof(struct static_call_site), idx);
455 if (!sec)
456 return -1;
457
458 reloc_sec = elf_create_reloc_section(file->elf, sec, SHT_RELA);
459 if (!reloc_sec)
460 return -1;
461
462 idx = 0;
463 list_for_each_entry(insn, &file->static_call_list, static_call_node) {
464
465 site = (struct static_call_site *)sec->data->d_buf + idx;
466 memset(site, 0, sizeof(struct static_call_site));
467
468 /* populate reloc for 'addr' */
469 reloc = malloc(sizeof(*reloc));
470 if (!reloc) {
471 perror("malloc");
472 return -1;
473 }
474 memset(reloc, 0, sizeof(*reloc));
475 reloc->sym = insn->sec->sym;
476 reloc->addend = insn->offset;
477 reloc->type = R_X86_64_PC32;
478 reloc->offset = idx * sizeof(struct static_call_site);
479 reloc->sec = reloc_sec;
480 elf_add_reloc(file->elf, reloc);
481
482 /* find key symbol */
483 key_name = strdup(insn->call_dest->name);
484 if (!key_name) {
485 perror("strdup");
486 return -1;
487 }
488 if (strncmp(key_name, STATIC_CALL_TRAMP_PREFIX_STR,
489 STATIC_CALL_TRAMP_PREFIX_LEN)) {
490 WARN("static_call: trampoline name malformed: %s", key_name);
491 return -1;
492 }
493 tmp = key_name + STATIC_CALL_TRAMP_PREFIX_LEN - STATIC_CALL_KEY_PREFIX_LEN;
494 memcpy(tmp, STATIC_CALL_KEY_PREFIX_STR, STATIC_CALL_KEY_PREFIX_LEN);
495
496 key_sym = find_symbol_by_name(file->elf, tmp);
497 if (!key_sym) {
498 WARN("static_call: can't find static_call_key symbol: %s", tmp);
499 return -1;
500 }
501 free(key_name);
502
503 /* populate reloc for 'key' */
504 reloc = malloc(sizeof(*reloc));
505 if (!reloc) {
506 perror("malloc");
507 return -1;
508 }
509 memset(reloc, 0, sizeof(*reloc));
510 reloc->sym = key_sym;
5b06fd3b 511 reloc->addend = is_sibling_call(insn) ? STATIC_CALL_SITE_TAIL : 0;
1e7e4788
JP
512 reloc->type = R_X86_64_PC32;
513 reloc->offset = idx * sizeof(struct static_call_site) + 4;
514 reloc->sec = reloc_sec;
515 elf_add_reloc(file->elf, reloc);
516
517 idx++;
518 }
519
520 if (elf_rebuild_reloc_section(file->elf, reloc_sec))
521 return -1;
522
523 return 0;
524}
525
dcc914f4
JP
526/*
527 * Warnings shouldn't be reported for ignored functions.
528 */
529static void add_ignores(struct objtool_file *file)
530{
531 struct instruction *insn;
532 struct section *sec;
533 struct symbol *func;
f1974222 534 struct reloc *reloc;
dcc914f4 535
aaf5c623
PZ
536 sec = find_section_by_name(file->elf, ".rela.discard.func_stack_frame_non_standard");
537 if (!sec)
538 return;
dcc914f4 539
f1974222
MH
540 list_for_each_entry(reloc, &sec->reloc_list, list) {
541 switch (reloc->sym->type) {
aaf5c623 542 case STT_FUNC:
f1974222 543 func = reloc->sym;
aaf5c623
PZ
544 break;
545
546 case STT_SECTION:
f1974222 547 func = find_func_by_offset(reloc->sym->sec, reloc->addend);
7acfe531 548 if (!func)
dcc914f4 549 continue;
aaf5c623 550 break;
dcc914f4 551
aaf5c623 552 default:
f1974222 553 WARN("unexpected relocation symbol type in %s: %d", sec->name, reloc->sym->type);
aaf5c623 554 continue;
dcc914f4 555 }
aaf5c623 556
f0f70adb 557 func_for_each_insn(file, func, insn)
aaf5c623 558 insn->ignore = true;
dcc914f4
JP
559 }
560}
561
ea24213d
PZ
562/*
563 * This is a whitelist of functions that is allowed to be called with AC set.
564 * The list is meant to be minimal and only contains compiler instrumentation
565 * ABI and a few functions used to implement *_{to,from}_user() functions.
566 *
567 * These functions must not directly change AC, but may PUSHF/POPF.
568 */
569static const char *uaccess_safe_builtin[] = {
570 /* KASAN */
571 "kasan_report",
572 "check_memory_region",
573 /* KASAN out-of-line */
574 "__asan_loadN_noabort",
575 "__asan_load1_noabort",
576 "__asan_load2_noabort",
577 "__asan_load4_noabort",
578 "__asan_load8_noabort",
579 "__asan_load16_noabort",
580 "__asan_storeN_noabort",
581 "__asan_store1_noabort",
582 "__asan_store2_noabort",
583 "__asan_store4_noabort",
584 "__asan_store8_noabort",
585 "__asan_store16_noabort",
586 /* KASAN in-line */
587 "__asan_report_load_n_noabort",
588 "__asan_report_load1_noabort",
589 "__asan_report_load2_noabort",
590 "__asan_report_load4_noabort",
591 "__asan_report_load8_noabort",
592 "__asan_report_load16_noabort",
593 "__asan_report_store_n_noabort",
594 "__asan_report_store1_noabort",
595 "__asan_report_store2_noabort",
596 "__asan_report_store4_noabort",
597 "__asan_report_store8_noabort",
598 "__asan_report_store16_noabort",
5f5c9712 599 /* KCSAN */
9967683c 600 "__kcsan_check_access",
5f5c9712
ME
601 "kcsan_found_watchpoint",
602 "kcsan_setup_watchpoint",
9967683c 603 "kcsan_check_scoped_accesses",
50a19ad4
ME
604 "kcsan_disable_current",
605 "kcsan_enable_current_nowarn",
5f5c9712
ME
606 /* KCSAN/TSAN */
607 "__tsan_func_entry",
608 "__tsan_func_exit",
609 "__tsan_read_range",
610 "__tsan_write_range",
611 "__tsan_read1",
612 "__tsan_read2",
613 "__tsan_read4",
614 "__tsan_read8",
615 "__tsan_read16",
616 "__tsan_write1",
617 "__tsan_write2",
618 "__tsan_write4",
619 "__tsan_write8",
620 "__tsan_write16",
ea24213d
PZ
621 /* KCOV */
622 "write_comp_data",
ae033f08 623 "check_kcov_mode",
ea24213d
PZ
624 "__sanitizer_cov_trace_pc",
625 "__sanitizer_cov_trace_const_cmp1",
626 "__sanitizer_cov_trace_const_cmp2",
627 "__sanitizer_cov_trace_const_cmp4",
628 "__sanitizer_cov_trace_const_cmp8",
629 "__sanitizer_cov_trace_cmp1",
630 "__sanitizer_cov_trace_cmp2",
631 "__sanitizer_cov_trace_cmp4",
632 "__sanitizer_cov_trace_cmp8",
36b1c700 633 "__sanitizer_cov_trace_switch",
ea24213d
PZ
634 /* UBSAN */
635 "ubsan_type_mismatch_common",
636 "__ubsan_handle_type_mismatch",
637 "__ubsan_handle_type_mismatch_v1",
9a50dcaf 638 "__ubsan_handle_shift_out_of_bounds",
ea24213d
PZ
639 /* misc */
640 "csum_partial_copy_generic",
641 "__memcpy_mcsafe",
a7e47f26 642 "mcsafe_handle_tail",
ea24213d
PZ
643 "ftrace_likely_update", /* CONFIG_TRACE_BRANCH_PROFILING */
644 NULL
645};
646
647static void add_uaccess_safe(struct objtool_file *file)
648{
649 struct symbol *func;
650 const char **name;
651
652 if (!uaccess)
653 return;
654
655 for (name = uaccess_safe_builtin; *name; name++) {
656 func = find_symbol_by_name(file->elf, *name);
657 if (!func)
658 continue;
659
e10cd8fe 660 func->uaccess_safe = true;
dcc914f4
JP
661 }
662}
663
258c7605
JP
664/*
665 * FIXME: For now, just ignore any alternatives which add retpolines. This is
666 * a temporary hack, as it doesn't allow ORC to unwind from inside a retpoline.
667 * But it at least allows objtool to understand the control flow *around* the
668 * retpoline.
669 */
ff05ab23 670static int add_ignore_alternatives(struct objtool_file *file)
258c7605
JP
671{
672 struct section *sec;
f1974222 673 struct reloc *reloc;
258c7605
JP
674 struct instruction *insn;
675
ff05ab23 676 sec = find_section_by_name(file->elf, ".rela.discard.ignore_alts");
258c7605
JP
677 if (!sec)
678 return 0;
679
f1974222
MH
680 list_for_each_entry(reloc, &sec->reloc_list, list) {
681 if (reloc->sym->type != STT_SECTION) {
258c7605
JP
682 WARN("unexpected relocation symbol type in %s", sec->name);
683 return -1;
684 }
685
f1974222 686 insn = find_insn(file, reloc->sym->sec, reloc->addend);
258c7605 687 if (!insn) {
ff05ab23 688 WARN("bad .discard.ignore_alts entry");
258c7605
JP
689 return -1;
690 }
691
692 insn->ignore_alts = true;
693 }
694
695 return 0;
696}
697
dcc914f4
JP
698/*
699 * Find the destination instructions for all jumps.
700 */
701static int add_jump_destinations(struct objtool_file *file)
702{
703 struct instruction *insn;
f1974222 704 struct reloc *reloc;
dcc914f4
JP
705 struct section *dest_sec;
706 unsigned long dest_off;
707
708 for_each_insn(file, insn) {
a2296140 709 if (!is_static_jump(insn))
dcc914f4
JP
710 continue;
711
e6da9567 712 if (insn->ignore || insn->offset == FAKE_JUMP_OFFSET)
dcc914f4
JP
713 continue;
714
f1974222 715 reloc = find_reloc_by_dest_range(file->elf, insn->sec,
8b5fa6bc 716 insn->offset, insn->len);
f1974222 717 if (!reloc) {
dcc914f4 718 dest_sec = insn->sec;
bfb08f22 719 dest_off = arch_jump_destination(insn);
f1974222
MH
720 } else if (reloc->sym->type == STT_SECTION) {
721 dest_sec = reloc->sym->sec;
722 dest_off = arch_dest_reloc_offset(reloc->addend);
723 } else if (reloc->sym->sec->idx) {
724 dest_sec = reloc->sym->sec;
725 dest_off = reloc->sym->sym.st_value +
726 arch_dest_reloc_offset(reloc->addend);
727 } else if (strstr(reloc->sym->name, "_indirect_thunk_")) {
39b73533
JP
728 /*
729 * Retpoline jumps are really dynamic jumps in
730 * disguise, so convert them accordingly.
731 */
b68b9907
JP
732 if (insn->type == INSN_JUMP_UNCONDITIONAL)
733 insn->type = INSN_JUMP_DYNAMIC;
734 else
735 insn->type = INSN_JUMP_DYNAMIC_CONDITIONAL;
736
b5bc2231 737 insn->retpoline_safe = true;
39b73533 738 continue;
dcc914f4 739 } else {
0c1ddd33 740 /* external sibling call */
f1974222 741 insn->call_dest = reloc->sym;
5b06fd3b
PZ
742 if (insn->call_dest->static_call_tramp) {
743 list_add_tail(&insn->static_call_node,
744 &file->static_call_list);
745 }
dcc914f4
JP
746 continue;
747 }
748
749 insn->jump_dest = find_insn(file, dest_sec, dest_off);
750 if (!insn->jump_dest) {
751
752 /*
753 * This is a special case where an alt instruction
754 * jumps past the end of the section. These are
755 * handled later in handle_group_alt().
756 */
757 if (!strcmp(insn->sec->name, ".altinstr_replacement"))
758 continue;
759
760 WARN_FUNC("can't find jump dest instruction at %s+0x%lx",
761 insn->sec, insn->offset, dest_sec->name,
762 dest_off);
763 return -1;
764 }
cd77849a
JP
765
766 /*
54262aa2 767 * Cross-function jump.
cd77849a
JP
768 */
769 if (insn->func && insn->jump_dest->func &&
54262aa2
PZ
770 insn->func != insn->jump_dest->func) {
771
772 /*
773 * For GCC 8+, create parent/child links for any cold
774 * subfunctions. This is _mostly_ redundant with a
775 * similar initialization in read_symbols().
776 *
777 * If a function has aliases, we want the *first* such
778 * function in the symbol table to be the subfunction's
779 * parent. In that case we overwrite the
780 * initialization done in read_symbols().
781 *
782 * However this code can't completely replace the
783 * read_symbols() code because this doesn't detect the
784 * case where the parent function's only reference to a
e7c2bc37 785 * subfunction is through a jump table.
54262aa2
PZ
786 */
787 if (!strstr(insn->func->name, ".cold.") &&
788 strstr(insn->jump_dest->func->name, ".cold.")) {
789 insn->func->cfunc = insn->jump_dest->func;
790 insn->jump_dest->func->pfunc = insn->func;
791
792 } else if (insn->jump_dest->func->pfunc != insn->func->pfunc &&
793 insn->jump_dest->offset == insn->jump_dest->func->offset) {
794
0c1ddd33 795 /* internal sibling call */
54262aa2 796 insn->call_dest = insn->jump_dest->func;
5b06fd3b
PZ
797 if (insn->call_dest->static_call_tramp) {
798 list_add_tail(&insn->static_call_node,
799 &file->static_call_list);
800 }
54262aa2 801 }
cd77849a 802 }
dcc914f4
JP
803 }
804
805 return 0;
806}
807
8aa8eb2a
AC
808static void remove_insn_ops(struct instruction *insn)
809{
810 struct stack_op *op, *tmp;
811
812 list_for_each_entry_safe(op, tmp, &insn->stack_ops, list) {
813 list_del(&op->list);
814 free(op);
815 }
816}
817
dcc914f4
JP
818/*
819 * Find the destination instructions for all calls.
820 */
821static int add_call_destinations(struct objtool_file *file)
822{
823 struct instruction *insn;
824 unsigned long dest_off;
f1974222 825 struct reloc *reloc;
dcc914f4
JP
826
827 for_each_insn(file, insn) {
828 if (insn->type != INSN_CALL)
829 continue;
830
f1974222 831 reloc = find_reloc_by_dest_range(file->elf, insn->sec,
8b5fa6bc 832 insn->offset, insn->len);
f1974222 833 if (!reloc) {
bfb08f22 834 dest_off = arch_jump_destination(insn);
7acfe531
JP
835 insn->call_dest = find_func_by_offset(insn->sec, dest_off);
836 if (!insn->call_dest)
837 insn->call_dest = find_symbol_by_offset(insn->sec, dest_off);
a845c7cf 838
7acfe531
JP
839 if (insn->ignore)
840 continue;
841
842 if (!insn->call_dest) {
8aa8eb2a 843 WARN_FUNC("unannotated intra-function call", insn->sec, insn->offset);
dcc914f4
JP
844 return -1;
845 }
a845c7cf 846
7acfe531
JP
847 if (insn->func && insn->call_dest->type != STT_FUNC) {
848 WARN_FUNC("unsupported call to non-function",
849 insn->sec, insn->offset);
850 return -1;
851 }
852
f1974222
MH
853 } else if (reloc->sym->type == STT_SECTION) {
854 dest_off = arch_dest_reloc_offset(reloc->addend);
855 insn->call_dest = find_func_by_offset(reloc->sym->sec,
bfb08f22 856 dest_off);
7acfe531 857 if (!insn->call_dest) {
bfb08f22 858 WARN_FUNC("can't find call dest symbol at %s+0x%lx",
dcc914f4 859 insn->sec, insn->offset,
f1974222 860 reloc->sym->sec->name,
bfb08f22 861 dest_off);
dcc914f4
JP
862 return -1;
863 }
864 } else
f1974222 865 insn->call_dest = reloc->sym;
8aa8eb2a 866
0f1441b4
PZ
867 /*
868 * Many compilers cannot disable KCOV with a function attribute
869 * so they need a little help, NOP out any KCOV calls from noinstr
870 * text.
871 */
872 if (insn->sec->noinstr &&
873 !strncmp(insn->call_dest->name, "__sanitizer_cov_", 16)) {
d832c005
PZ
874 if (reloc) {
875 reloc->type = R_NONE;
876 elf_write_reloc(file->elf, reloc);
0f1441b4
PZ
877 }
878
879 elf_write_insn(file->elf, insn->sec,
880 insn->offset, insn->len,
881 arch_nop_insn(insn->len));
882 insn->type = INSN_NOP;
883 }
884
8aa8eb2a
AC
885 /*
886 * Whatever stack impact regular CALLs have, should be undone
887 * by the RETURN of the called function.
888 *
889 * Annotated intra-function calls retain the stack_ops but
890 * are converted to JUMP, see read_intra_function_calls().
891 */
892 remove_insn_ops(insn);
dcc914f4
JP
893 }
894
895 return 0;
896}
897
898/*
899 * The .alternatives section requires some extra special care, over and above
900 * what other special sections require:
901 *
902 * 1. Because alternatives are patched in-place, we need to insert a fake jump
903 * instruction at the end so that validate_branch() skips all the original
904 * replaced instructions when validating the new instruction path.
905 *
906 * 2. An added wrinkle is that the new instruction length might be zero. In
907 * that case the old instructions are replaced with noops. We simulate that
908 * by creating a fake jump as the only new instruction.
909 *
910 * 3. In some cases, the alternative section includes an instruction which
911 * conditionally jumps to the _end_ of the entry. We have to modify these
912 * jumps' destinations to point back to .text rather than the end of the
913 * entry in .altinstr_replacement.
dcc914f4
JP
914 */
915static int handle_group_alt(struct objtool_file *file,
916 struct special_alt *special_alt,
917 struct instruction *orig_insn,
918 struct instruction **new_insn)
919{
13fab06d 920 static unsigned int alt_group_next_index = 1;
17bc3391 921 struct instruction *last_orig_insn, *last_new_insn, *insn, *fake_jump = NULL;
13fab06d 922 unsigned int alt_group = alt_group_next_index++;
dcc914f4
JP
923 unsigned long dest_off;
924
925 last_orig_insn = NULL;
926 insn = orig_insn;
927 sec_for_each_insn_from(file, insn) {
928 if (insn->offset >= special_alt->orig_off + special_alt->orig_len)
929 break;
930
13fab06d 931 insn->alt_group = alt_group;
dcc914f4
JP
932 last_orig_insn = insn;
933 }
934
17bc3391
JP
935 if (next_insn_same_sec(file, last_orig_insn)) {
936 fake_jump = malloc(sizeof(*fake_jump));
937 if (!fake_jump) {
938 WARN("malloc failed");
939 return -1;
940 }
941 memset(fake_jump, 0, sizeof(*fake_jump));
942 INIT_LIST_HEAD(&fake_jump->alts);
65ea47dc 943 INIT_LIST_HEAD(&fake_jump->stack_ops);
e7c0219b 944 init_cfi_state(&fake_jump->cfi);
17bc3391
JP
945
946 fake_jump->sec = special_alt->new_sec;
e6da9567 947 fake_jump->offset = FAKE_JUMP_OFFSET;
17bc3391
JP
948 fake_jump->type = INSN_JUMP_UNCONDITIONAL;
949 fake_jump->jump_dest = list_next_entry(last_orig_insn, list);
e6da9567 950 fake_jump->func = orig_insn->func;
dcc914f4 951 }
dcc914f4
JP
952
953 if (!special_alt->new_len) {
17bc3391
JP
954 if (!fake_jump) {
955 WARN("%s: empty alternative at end of section",
956 special_alt->orig_sec->name);
957 return -1;
958 }
959
dcc914f4
JP
960 *new_insn = fake_jump;
961 return 0;
962 }
963
964 last_new_insn = NULL;
13fab06d 965 alt_group = alt_group_next_index++;
dcc914f4
JP
966 insn = *new_insn;
967 sec_for_each_insn_from(file, insn) {
45245f51
JT
968 struct reloc *alt_reloc;
969
dcc914f4
JP
970 if (insn->offset >= special_alt->new_off + special_alt->new_len)
971 break;
972
973 last_new_insn = insn;
974
a845c7cf 975 insn->ignore = orig_insn->ignore_alts;
a4d09dde 976 insn->func = orig_insn->func;
13fab06d 977 insn->alt_group = alt_group;
a845c7cf 978
dc419723
JP
979 /*
980 * Since alternative replacement code is copy/pasted by the
981 * kernel after applying relocations, generally such code can't
982 * have relative-address relocation references to outside the
983 * .altinstr_replacement section, unless the arch's
984 * alternatives code can adjust the relative offsets
985 * accordingly.
dc419723 986 */
45245f51
JT
987 alt_reloc = find_reloc_by_dest_range(file->elf, insn->sec,
988 insn->offset, insn->len);
989 if (alt_reloc &&
990 !arch_support_alt_relocation(special_alt, insn, alt_reloc)) {
dc419723
JP
991
992 WARN_FUNC("unsupported relocation in alternatives section",
993 insn->sec, insn->offset);
994 return -1;
995 }
996
a2296140 997 if (!is_static_jump(insn))
dcc914f4
JP
998 continue;
999
1000 if (!insn->immediate)
1001 continue;
1002
bfb08f22 1003 dest_off = arch_jump_destination(insn);
17bc3391
JP
1004 if (dest_off == special_alt->new_off + special_alt->new_len) {
1005 if (!fake_jump) {
1006 WARN("%s: alternative jump to end of section",
1007 special_alt->orig_sec->name);
1008 return -1;
1009 }
dcc914f4 1010 insn->jump_dest = fake_jump;
17bc3391 1011 }
dcc914f4
JP
1012
1013 if (!insn->jump_dest) {
1014 WARN_FUNC("can't find alternative jump destination",
1015 insn->sec, insn->offset);
1016 return -1;
1017 }
1018 }
1019
1020 if (!last_new_insn) {
1021 WARN_FUNC("can't find last new alternative instruction",
1022 special_alt->new_sec, special_alt->new_off);
1023 return -1;
1024 }
1025
17bc3391
JP
1026 if (fake_jump)
1027 list_add(&fake_jump->list, &last_new_insn->list);
dcc914f4
JP
1028
1029 return 0;
1030}
1031
1032/*
1033 * A jump table entry can either convert a nop to a jump or a jump to a nop.
1034 * If the original instruction is a jump, make the alt entry an effective nop
1035 * by just skipping the original instruction.
1036 */
1037static int handle_jump_alt(struct objtool_file *file,
1038 struct special_alt *special_alt,
1039 struct instruction *orig_insn,
1040 struct instruction **new_insn)
1041{
1042 if (orig_insn->type == INSN_NOP)
1043 return 0;
1044
1045 if (orig_insn->type != INSN_JUMP_UNCONDITIONAL) {
1046 WARN_FUNC("unsupported instruction at jump label",
1047 orig_insn->sec, orig_insn->offset);
1048 return -1;
1049 }
1050
1051 *new_insn = list_next_entry(orig_insn, list);
1052 return 0;
1053}
1054
1055/*
1056 * Read all the special sections which have alternate instructions which can be
1057 * patched in or redirected to at runtime. Each instruction having alternate
1058 * instruction(s) has them added to its insn->alts list, which will be
1059 * traversed in validate_branch().
1060 */
1061static int add_special_section_alts(struct objtool_file *file)
1062{
1063 struct list_head special_alts;
1064 struct instruction *orig_insn, *new_insn;
1065 struct special_alt *special_alt, *tmp;
1066 struct alternative *alt;
1067 int ret;
1068
1069 ret = special_get_alts(file->elf, &special_alts);
1070 if (ret)
1071 return ret;
1072
1073 list_for_each_entry_safe(special_alt, tmp, &special_alts, list) {
dcc914f4
JP
1074
1075 orig_insn = find_insn(file, special_alt->orig_sec,
1076 special_alt->orig_off);
1077 if (!orig_insn) {
1078 WARN_FUNC("special: can't find orig instruction",
1079 special_alt->orig_sec, special_alt->orig_off);
1080 ret = -1;
1081 goto out;
1082 }
1083
1084 new_insn = NULL;
1085 if (!special_alt->group || special_alt->new_len) {
1086 new_insn = find_insn(file, special_alt->new_sec,
1087 special_alt->new_off);
1088 if (!new_insn) {
1089 WARN_FUNC("special: can't find new instruction",
1090 special_alt->new_sec,
1091 special_alt->new_off);
1092 ret = -1;
1093 goto out;
1094 }
1095 }
1096
1097 if (special_alt->group) {
7170cf47
JT
1098 if (!special_alt->orig_len) {
1099 WARN_FUNC("empty alternative entry",
1100 orig_insn->sec, orig_insn->offset);
1101 continue;
1102 }
1103
dcc914f4
JP
1104 ret = handle_group_alt(file, special_alt, orig_insn,
1105 &new_insn);
1106 if (ret)
1107 goto out;
1108 } else if (special_alt->jump_or_nop) {
1109 ret = handle_jump_alt(file, special_alt, orig_insn,
1110 &new_insn);
1111 if (ret)
1112 goto out;
1113 }
1114
258c7605
JP
1115 alt = malloc(sizeof(*alt));
1116 if (!alt) {
1117 WARN("malloc failed");
1118 ret = -1;
1119 goto out;
1120 }
1121
dcc914f4 1122 alt->insn = new_insn;
764eef4b 1123 alt->skip_orig = special_alt->skip_orig;
ea24213d 1124 orig_insn->ignore_alts |= special_alt->skip_alt;
dcc914f4
JP
1125 list_add_tail(&alt->list, &orig_insn->alts);
1126
1127 list_del(&special_alt->list);
1128 free(special_alt);
1129 }
1130
1131out:
1132 return ret;
1133}
1134
e7c2bc37 1135static int add_jump_table(struct objtool_file *file, struct instruction *insn,
f1974222 1136 struct reloc *table)
dcc914f4 1137{
f1974222 1138 struct reloc *reloc = table;
e7c2bc37 1139 struct instruction *dest_insn;
dcc914f4 1140 struct alternative *alt;
fd35c88b
JP
1141 struct symbol *pfunc = insn->func->pfunc;
1142 unsigned int prev_offset = 0;
dcc914f4 1143
e7c2bc37 1144 /*
f1974222 1145 * Each @reloc is a switch table relocation which points to the target
e7c2bc37
JP
1146 * instruction.
1147 */
f1974222 1148 list_for_each_entry_from(reloc, &table->sec->reloc_list, list) {
bd98c813
JH
1149
1150 /* Check for the end of the table: */
f1974222 1151 if (reloc != table && reloc->jump_table_start)
dcc914f4
JP
1152 break;
1153
e7c2bc37 1154 /* Make sure the table entries are consecutive: */
f1974222 1155 if (prev_offset && reloc->offset != prev_offset + 8)
fd35c88b
JP
1156 break;
1157
1158 /* Detect function pointers from contiguous objects: */
f1974222
MH
1159 if (reloc->sym->sec == pfunc->sec &&
1160 reloc->addend == pfunc->offset)
fd35c88b
JP
1161 break;
1162
f1974222 1163 dest_insn = find_insn(file, reloc->sym->sec, reloc->addend);
e7c2bc37 1164 if (!dest_insn)
dcc914f4
JP
1165 break;
1166
e7c2bc37 1167 /* Make sure the destination is in the same function: */
e65050b9 1168 if (!dest_insn->func || dest_insn->func->pfunc != pfunc)
13810435 1169 break;
dcc914f4
JP
1170
1171 alt = malloc(sizeof(*alt));
1172 if (!alt) {
1173 WARN("malloc failed");
1174 return -1;
1175 }
1176
e7c2bc37 1177 alt->insn = dest_insn;
dcc914f4 1178 list_add_tail(&alt->list, &insn->alts);
f1974222 1179 prev_offset = reloc->offset;
fd35c88b
JP
1180 }
1181
1182 if (!prev_offset) {
1183 WARN_FUNC("can't find switch jump table",
1184 insn->sec, insn->offset);
1185 return -1;
dcc914f4
JP
1186 }
1187
1188 return 0;
1189}
1190
1191/*
d871f7b5
RG
1192 * find_jump_table() - Given a dynamic jump, find the switch jump table
1193 * associated with it.
dcc914f4 1194 */
f1974222 1195static struct reloc *find_jump_table(struct objtool_file *file,
dcc914f4
JP
1196 struct symbol *func,
1197 struct instruction *insn)
1198{
d871f7b5 1199 struct reloc *table_reloc;
113d4bc9 1200 struct instruction *dest_insn, *orig_insn = insn;
dcc914f4 1201
99ce7962
PZ
1202 /*
1203 * Backward search using the @first_jump_src links, these help avoid
1204 * much of the 'in between' code. Which avoids us getting confused by
1205 * it.
1206 */
7dec80cc 1207 for (;
1119d265
JP
1208 insn && insn->func && insn->func->pfunc == func;
1209 insn = insn->first_jump_src ?: prev_insn_same_sym(file, insn)) {
99ce7962 1210
7dec80cc 1211 if (insn != orig_insn && insn->type == INSN_JUMP_DYNAMIC)
dcc914f4
JP
1212 break;
1213
1214 /* allow small jumps within the range */
1215 if (insn->type == INSN_JUMP_UNCONDITIONAL &&
1216 insn->jump_dest &&
1217 (insn->jump_dest->offset <= insn->offset ||
1218 insn->jump_dest->offset > orig_insn->offset))
1219 break;
1220
d871f7b5 1221 table_reloc = arch_find_switch_table(file, insn);
f1974222 1222 if (!table_reloc)
e7c2bc37 1223 continue;
f1974222 1224 dest_insn = find_insn(file, table_reloc->sym->sec, table_reloc->addend);
113d4bc9
JP
1225 if (!dest_insn || !dest_insn->func || dest_insn->func->pfunc != func)
1226 continue;
7dec80cc 1227
f1974222 1228 return table_reloc;
dcc914f4
JP
1229 }
1230
1231 return NULL;
1232}
1233
bd98c813
JH
1234/*
1235 * First pass: Mark the head of each jump table so that in the next pass,
1236 * we know when a given jump table ends and the next one starts.
1237 */
1238static void mark_func_jump_tables(struct objtool_file *file,
1239 struct symbol *func)
dcc914f4 1240{
bd98c813 1241 struct instruction *insn, *last = NULL;
f1974222 1242 struct reloc *reloc;
dcc914f4 1243
f0f70adb 1244 func_for_each_insn(file, func, insn) {
99ce7962
PZ
1245 if (!last)
1246 last = insn;
1247
1248 /*
1249 * Store back-pointers for unconditional forward jumps such
e7c2bc37 1250 * that find_jump_table() can back-track using those and
99ce7962
PZ
1251 * avoid some potentially confusing code.
1252 */
1253 if (insn->type == INSN_JUMP_UNCONDITIONAL && insn->jump_dest &&
1254 insn->offset > last->offset &&
1255 insn->jump_dest->offset > insn->offset &&
1256 !insn->jump_dest->first_jump_src) {
1257
1258 insn->jump_dest->first_jump_src = insn;
1259 last = insn->jump_dest;
1260 }
1261
dcc914f4
JP
1262 if (insn->type != INSN_JUMP_DYNAMIC)
1263 continue;
1264
f1974222
MH
1265 reloc = find_jump_table(file, func, insn);
1266 if (reloc) {
1267 reloc->jump_table_start = true;
1268 insn->jump_table = reloc;
dcc914f4 1269 }
dcc914f4 1270 }
bd98c813
JH
1271}
1272
1273static int add_func_jump_tables(struct objtool_file *file,
1274 struct symbol *func)
1275{
1276 struct instruction *insn;
1277 int ret;
1278
f0f70adb 1279 func_for_each_insn(file, func, insn) {
bd98c813
JH
1280 if (!insn->jump_table)
1281 continue;
dcc914f4 1282
bd98c813 1283 ret = add_jump_table(file, insn, insn->jump_table);
dcc914f4
JP
1284 if (ret)
1285 return ret;
1286 }
1287
1288 return 0;
1289}
1290
1291/*
1292 * For some switch statements, gcc generates a jump table in the .rodata
1293 * section which contains a list of addresses within the function to jump to.
1294 * This finds these jump tables and adds them to the insn->alts lists.
1295 */
e7c2bc37 1296static int add_jump_table_alts(struct objtool_file *file)
dcc914f4
JP
1297{
1298 struct section *sec;
1299 struct symbol *func;
1300 int ret;
1301
4a60aa05 1302 if (!file->rodata)
dcc914f4
JP
1303 return 0;
1304
baa41469 1305 for_each_sec(file, sec) {
dcc914f4
JP
1306 list_for_each_entry(func, &sec->symbol_list, list) {
1307 if (func->type != STT_FUNC)
1308 continue;
1309
bd98c813 1310 mark_func_jump_tables(file, func);
e7c2bc37 1311 ret = add_func_jump_tables(file, func);
dcc914f4
JP
1312 if (ret)
1313 return ret;
1314 }
1315 }
1316
1317 return 0;
1318}
1319
39358a03
JP
1320static int read_unwind_hints(struct objtool_file *file)
1321{
f1974222
MH
1322 struct section *sec, *relocsec;
1323 struct reloc *reloc;
39358a03
JP
1324 struct unwind_hint *hint;
1325 struct instruction *insn;
1326 struct cfi_reg *cfa;
1327 int i;
1328
1329 sec = find_section_by_name(file->elf, ".discard.unwind_hints");
1330 if (!sec)
1331 return 0;
1332
f1974222
MH
1333 relocsec = sec->reloc;
1334 if (!relocsec) {
39358a03
JP
1335 WARN("missing .rela.discard.unwind_hints section");
1336 return -1;
1337 }
1338
1339 if (sec->len % sizeof(struct unwind_hint)) {
1340 WARN("struct unwind_hint size mismatch");
1341 return -1;
1342 }
1343
1344 file->hints = true;
1345
1346 for (i = 0; i < sec->len / sizeof(struct unwind_hint); i++) {
1347 hint = (struct unwind_hint *)sec->data->d_buf + i;
1348
f1974222
MH
1349 reloc = find_reloc_by_dest(file->elf, sec, i * sizeof(*hint));
1350 if (!reloc) {
1351 WARN("can't find reloc for unwind_hints[%d]", i);
39358a03
JP
1352 return -1;
1353 }
1354
f1974222 1355 insn = find_insn(file, reloc->sym->sec, reloc->addend);
39358a03
JP
1356 if (!insn) {
1357 WARN("can't find insn for unwind_hints[%d]", i);
1358 return -1;
1359 }
1360
e7c0219b 1361 cfa = &insn->cfi.cfa;
39358a03 1362
c536ed2f 1363 if (hint->type == UNWIND_HINT_TYPE_RET_OFFSET) {
e25eea89 1364 insn->ret_offset = hint->sp_offset;
39358a03
JP
1365 continue;
1366 }
1367
1368 insn->hint = true;
1369
edea9e6b 1370 if (arch_decode_hint_reg(insn, hint->sp_reg)) {
39358a03
JP
1371 WARN_FUNC("unsupported unwind_hint sp base reg %d",
1372 insn->sec, insn->offset, hint->sp_reg);
1373 return -1;
1374 }
1375
1376 cfa->offset = hint->sp_offset;
e7c0219b
PZ
1377 insn->cfi.type = hint->type;
1378 insn->cfi.end = hint->end;
39358a03
JP
1379 }
1380
1381 return 0;
1382}
1383
b5bc2231
PZ
1384static int read_retpoline_hints(struct objtool_file *file)
1385{
63474dc4 1386 struct section *sec;
b5bc2231 1387 struct instruction *insn;
f1974222 1388 struct reloc *reloc;
b5bc2231 1389
63474dc4 1390 sec = find_section_by_name(file->elf, ".rela.discard.retpoline_safe");
b5bc2231
PZ
1391 if (!sec)
1392 return 0;
1393
f1974222
MH
1394 list_for_each_entry(reloc, &sec->reloc_list, list) {
1395 if (reloc->sym->type != STT_SECTION) {
63474dc4 1396 WARN("unexpected relocation symbol type in %s", sec->name);
b5bc2231
PZ
1397 return -1;
1398 }
1399
f1974222 1400 insn = find_insn(file, reloc->sym->sec, reloc->addend);
b5bc2231 1401 if (!insn) {
63474dc4 1402 WARN("bad .discard.retpoline_safe entry");
b5bc2231
PZ
1403 return -1;
1404 }
1405
1406 if (insn->type != INSN_JUMP_DYNAMIC &&
1407 insn->type != INSN_CALL_DYNAMIC) {
63474dc4 1408 WARN_FUNC("retpoline_safe hint not an indirect jump/call",
b5bc2231
PZ
1409 insn->sec, insn->offset);
1410 return -1;
1411 }
1412
1413 insn->retpoline_safe = true;
1414 }
1415
1416 return 0;
1417}
1418
c4a33939
PZ
1419static int read_instr_hints(struct objtool_file *file)
1420{
1421 struct section *sec;
1422 struct instruction *insn;
f1974222 1423 struct reloc *reloc;
c4a33939
PZ
1424
1425 sec = find_section_by_name(file->elf, ".rela.discard.instr_end");
1426 if (!sec)
1427 return 0;
1428
f1974222
MH
1429 list_for_each_entry(reloc, &sec->reloc_list, list) {
1430 if (reloc->sym->type != STT_SECTION) {
c4a33939
PZ
1431 WARN("unexpected relocation symbol type in %s", sec->name);
1432 return -1;
1433 }
1434
f1974222 1435 insn = find_insn(file, reloc->sym->sec, reloc->addend);
c4a33939
PZ
1436 if (!insn) {
1437 WARN("bad .discard.instr_end entry");
1438 return -1;
1439 }
1440
1441 insn->instr--;
1442 }
1443
1444 sec = find_section_by_name(file->elf, ".rela.discard.instr_begin");
1445 if (!sec)
1446 return 0;
1447
f1974222
MH
1448 list_for_each_entry(reloc, &sec->reloc_list, list) {
1449 if (reloc->sym->type != STT_SECTION) {
c4a33939
PZ
1450 WARN("unexpected relocation symbol type in %s", sec->name);
1451 return -1;
1452 }
1453
f1974222 1454 insn = find_insn(file, reloc->sym->sec, reloc->addend);
c4a33939
PZ
1455 if (!insn) {
1456 WARN("bad .discard.instr_begin entry");
1457 return -1;
1458 }
1459
1460 insn->instr++;
1461 }
1462
1463 return 0;
1464}
1465
8aa8eb2a
AC
1466static int read_intra_function_calls(struct objtool_file *file)
1467{
1468 struct instruction *insn;
1469 struct section *sec;
f1974222 1470 struct reloc *reloc;
8aa8eb2a
AC
1471
1472 sec = find_section_by_name(file->elf, ".rela.discard.intra_function_calls");
1473 if (!sec)
1474 return 0;
1475
f1974222 1476 list_for_each_entry(reloc, &sec->reloc_list, list) {
8aa8eb2a
AC
1477 unsigned long dest_off;
1478
f1974222 1479 if (reloc->sym->type != STT_SECTION) {
8aa8eb2a
AC
1480 WARN("unexpected relocation symbol type in %s",
1481 sec->name);
1482 return -1;
1483 }
1484
f1974222 1485 insn = find_insn(file, reloc->sym->sec, reloc->addend);
8aa8eb2a
AC
1486 if (!insn) {
1487 WARN("bad .discard.intra_function_call entry");
1488 return -1;
1489 }
1490
1491 if (insn->type != INSN_CALL) {
1492 WARN_FUNC("intra_function_call not a direct call",
1493 insn->sec, insn->offset);
1494 return -1;
1495 }
1496
1497 /*
1498 * Treat intra-function CALLs as JMPs, but with a stack_op.
1499 * See add_call_destinations(), which strips stack_ops from
1500 * normal CALLs.
1501 */
1502 insn->type = INSN_JUMP_UNCONDITIONAL;
1503
1504 dest_off = insn->offset + insn->len + insn->immediate;
1505 insn->jump_dest = find_insn(file, insn->sec, dest_off);
1506 if (!insn->jump_dest) {
1507 WARN_FUNC("can't find call dest at %s+0x%lx",
1508 insn->sec, insn->offset,
1509 insn->sec->name, dest_off);
1510 return -1;
1511 }
1512 }
1513
1514 return 0;
1515}
1516
1e7e4788
JP
1517static int read_static_call_tramps(struct objtool_file *file)
1518{
1519 struct section *sec;
1520 struct symbol *func;
1521
1522 for_each_sec(file, sec) {
1523 list_for_each_entry(func, &sec->symbol_list, list) {
1524 if (func->bind == STB_GLOBAL &&
1525 !strncmp(func->name, STATIC_CALL_TRAMP_PREFIX_STR,
1526 strlen(STATIC_CALL_TRAMP_PREFIX_STR)))
1527 func->static_call_tramp = true;
1528 }
1529 }
1530
1531 return 0;
1532}
1533
4a60aa05
AX
1534static void mark_rodata(struct objtool_file *file)
1535{
1536 struct section *sec;
1537 bool found = false;
1538
1539 /*
87b512de
JP
1540 * Search for the following rodata sections, each of which can
1541 * potentially contain jump tables:
1542 *
1543 * - .rodata: can contain GCC switch tables
1544 * - .rodata.<func>: same, if -fdata-sections is being used
1545 * - .rodata..c_jump_table: contains C annotated jump tables
1546 *
1547 * .rodata.str1.* sections are ignored; they don't contain jump tables.
4a60aa05
AX
1548 */
1549 for_each_sec(file, sec) {
1ee44470
MS
1550 if (!strncmp(sec->name, ".rodata", 7) &&
1551 !strstr(sec->name, ".str1.")) {
4a60aa05
AX
1552 sec->rodata = true;
1553 found = true;
1554 }
1555 }
1556
1557 file->rodata = found;
1558}
1559
dcc914f4
JP
1560static int decode_sections(struct objtool_file *file)
1561{
1562 int ret;
1563
4a60aa05
AX
1564 mark_rodata(file);
1565
dcc914f4
JP
1566 ret = decode_instructions(file);
1567 if (ret)
1568 return ret;
1569
1570 ret = add_dead_ends(file);
1571 if (ret)
1572 return ret;
1573
1574 add_ignores(file);
ea24213d 1575 add_uaccess_safe(file);
dcc914f4 1576
ff05ab23 1577 ret = add_ignore_alternatives(file);
258c7605
JP
1578 if (ret)
1579 return ret;
1580
5b06fd3b
PZ
1581 ret = read_static_call_tramps(file);
1582 if (ret)
1583 return ret;
1584
dcc914f4
JP
1585 ret = add_jump_destinations(file);
1586 if (ret)
1587 return ret;
1588
a845c7cf 1589 ret = add_special_section_alts(file);
dcc914f4
JP
1590 if (ret)
1591 return ret;
1592
8aa8eb2a
AC
1593 ret = read_intra_function_calls(file);
1594 if (ret)
1595 return ret;
1596
a845c7cf 1597 ret = add_call_destinations(file);
dcc914f4
JP
1598 if (ret)
1599 return ret;
1600
e7c2bc37 1601 ret = add_jump_table_alts(file);
dcc914f4
JP
1602 if (ret)
1603 return ret;
1604
39358a03
JP
1605 ret = read_unwind_hints(file);
1606 if (ret)
1607 return ret;
1608
b5bc2231
PZ
1609 ret = read_retpoline_hints(file);
1610 if (ret)
1611 return ret;
1612
c4a33939
PZ
1613 ret = read_instr_hints(file);
1614 if (ret)
1615 return ret;
1616
dcc914f4
JP
1617 return 0;
1618}
1619
1620static bool is_fentry_call(struct instruction *insn)
1621{
87cf61fe 1622 if (insn->type == INSN_CALL && insn->call_dest &&
dcc914f4
JP
1623 insn->call_dest->type == STT_NOTYPE &&
1624 !strcmp(insn->call_dest->name, "__fentry__"))
1625 return true;
1626
1627 return false;
1628}
1629
e25eea89 1630static bool has_modified_stack_frame(struct instruction *insn, struct insn_state *state)
dcc914f4 1631{
e25eea89 1632 u8 ret_offset = insn->ret_offset;
e7c0219b 1633 struct cfi_state *cfi = &state->cfi;
baa41469
JP
1634 int i;
1635
e7c0219b 1636 if (cfi->cfa.base != initial_func_cfi.cfa.base || cfi->drap)
e25eea89
PZ
1637 return true;
1638
e7c0219b 1639 if (cfi->cfa.offset != initial_func_cfi.cfa.offset + ret_offset)
baa41469
JP
1640 return true;
1641
e7c0219b 1642 if (cfi->stack_size != initial_func_cfi.cfa.offset + ret_offset)
e25eea89
PZ
1643 return true;
1644
c721b3f8
AC
1645 /*
1646 * If there is a ret offset hint then don't check registers
1647 * because a callee-saved register might have been pushed on
1648 * the stack.
1649 */
1650 if (ret_offset)
1651 return false;
1652
e25eea89 1653 for (i = 0; i < CFI_NUM_REGS; i++) {
e7c0219b
PZ
1654 if (cfi->regs[i].base != initial_func_cfi.regs[i].base ||
1655 cfi->regs[i].offset != initial_func_cfi.regs[i].offset)
baa41469 1656 return true;
e25eea89 1657 }
baa41469
JP
1658
1659 return false;
1660}
1661
1662static bool has_valid_stack_frame(struct insn_state *state)
1663{
e7c0219b
PZ
1664 struct cfi_state *cfi = &state->cfi;
1665
1666 if (cfi->cfa.base == CFI_BP && cfi->regs[CFI_BP].base == CFI_CFA &&
1667 cfi->regs[CFI_BP].offset == -16)
baa41469
JP
1668 return true;
1669
e7c0219b 1670 if (cfi->drap && cfi->regs[CFI_BP].base == CFI_BP)
baa41469
JP
1671 return true;
1672
1673 return false;
dcc914f4
JP
1674}
1675
e7c0219b
PZ
1676static int update_cfi_state_regs(struct instruction *insn,
1677 struct cfi_state *cfi,
65ea47dc 1678 struct stack_op *op)
627fce14 1679{
e7c0219b 1680 struct cfi_reg *cfa = &cfi->cfa;
627fce14 1681
d8dd25a4 1682 if (cfa->base != CFI_SP && cfa->base != CFI_SP_INDIRECT)
627fce14
JP
1683 return 0;
1684
1685 /* push */
ea24213d 1686 if (op->dest.type == OP_DEST_PUSH || op->dest.type == OP_DEST_PUSHF)
627fce14
JP
1687 cfa->offset += 8;
1688
1689 /* pop */
ea24213d 1690 if (op->src.type == OP_SRC_POP || op->src.type == OP_SRC_POPF)
627fce14
JP
1691 cfa->offset -= 8;
1692
1693 /* add immediate to sp */
1694 if (op->dest.type == OP_DEST_REG && op->src.type == OP_SRC_ADD &&
1695 op->dest.reg == CFI_SP && op->src.reg == CFI_SP)
1696 cfa->offset -= op->src.offset;
1697
1698 return 0;
1699}
1700
e7c0219b 1701static void save_reg(struct cfi_state *cfi, unsigned char reg, int base, int offset)
dcc914f4 1702{
bf4d1a83 1703 if (arch_callee_saved_reg(reg) &&
e7c0219b
PZ
1704 cfi->regs[reg].base == CFI_UNDEFINED) {
1705 cfi->regs[reg].base = base;
1706 cfi->regs[reg].offset = offset;
baa41469 1707 }
dcc914f4
JP
1708}
1709
e7c0219b 1710static void restore_reg(struct cfi_state *cfi, unsigned char reg)
dcc914f4 1711{
e7c0219b
PZ
1712 cfi->regs[reg].base = initial_func_cfi.regs[reg].base;
1713 cfi->regs[reg].offset = initial_func_cfi.regs[reg].offset;
baa41469
JP
1714}
1715
1716/*
1717 * A note about DRAP stack alignment:
1718 *
1719 * GCC has the concept of a DRAP register, which is used to help keep track of
1720 * the stack pointer when aligning the stack. r10 or r13 is used as the DRAP
1721 * register. The typical DRAP pattern is:
1722 *
1723 * 4c 8d 54 24 08 lea 0x8(%rsp),%r10
1724 * 48 83 e4 c0 and $0xffffffffffffffc0,%rsp
1725 * 41 ff 72 f8 pushq -0x8(%r10)
1726 * 55 push %rbp
1727 * 48 89 e5 mov %rsp,%rbp
1728 * (more pushes)
1729 * 41 52 push %r10
1730 * ...
1731 * 41 5a pop %r10
1732 * (more pops)
1733 * 5d pop %rbp
1734 * 49 8d 62 f8 lea -0x8(%r10),%rsp
1735 * c3 retq
1736 *
1737 * There are some variations in the epilogues, like:
1738 *
1739 * 5b pop %rbx
1740 * 41 5a pop %r10
1741 * 41 5c pop %r12
1742 * 41 5d pop %r13
1743 * 41 5e pop %r14
1744 * c9 leaveq
1745 * 49 8d 62 f8 lea -0x8(%r10),%rsp
1746 * c3 retq
1747 *
1748 * and:
1749 *
1750 * 4c 8b 55 e8 mov -0x18(%rbp),%r10
1751 * 48 8b 5d e0 mov -0x20(%rbp),%rbx
1752 * 4c 8b 65 f0 mov -0x10(%rbp),%r12
1753 * 4c 8b 6d f8 mov -0x8(%rbp),%r13
1754 * c9 leaveq
1755 * 49 8d 62 f8 lea -0x8(%r10),%rsp
1756 * c3 retq
1757 *
1758 * Sometimes r13 is used as the DRAP register, in which case it's saved and
1759 * restored beforehand:
1760 *
1761 * 41 55 push %r13
1762 * 4c 8d 6c 24 10 lea 0x10(%rsp),%r13
1763 * 48 83 e4 f0 and $0xfffffffffffffff0,%rsp
1764 * ...
1765 * 49 8d 65 f0 lea -0x10(%r13),%rsp
1766 * 41 5d pop %r13
1767 * c3 retq
1768 */
e7c0219b 1769static int update_cfi_state(struct instruction *insn, struct cfi_state *cfi,
65ea47dc 1770 struct stack_op *op)
baa41469 1771{
e7c0219b
PZ
1772 struct cfi_reg *cfa = &cfi->cfa;
1773 struct cfi_reg *regs = cfi->regs;
baa41469
JP
1774
1775 /* stack operations don't make sense with an undefined CFA */
1776 if (cfa->base == CFI_UNDEFINED) {
1777 if (insn->func) {
1778 WARN_FUNC("undefined stack state", insn->sec, insn->offset);
1779 return -1;
1780 }
1781 return 0;
1782 }
1783
ee819aed
JT
1784 if (cfi->type == UNWIND_HINT_TYPE_REGS ||
1785 cfi->type == UNWIND_HINT_TYPE_REGS_PARTIAL)
e7c0219b 1786 return update_cfi_state_regs(insn, cfi, op);
627fce14 1787
baa41469
JP
1788 switch (op->dest.type) {
1789
1790 case OP_DEST_REG:
1791 switch (op->src.type) {
1792
1793 case OP_SRC_REG:
0d0970ee
JP
1794 if (op->src.reg == CFI_SP && op->dest.reg == CFI_BP &&
1795 cfa->base == CFI_SP &&
1796 regs[CFI_BP].base == CFI_CFA &&
1797 regs[CFI_BP].offset == -cfa->offset) {
1798
1799 /* mov %rsp, %rbp */
1800 cfa->base = op->dest.reg;
e7c0219b 1801 cfi->bp_scratch = false;
0d0970ee 1802 }
dd88a0a0 1803
0d0970ee 1804 else if (op->src.reg == CFI_SP &&
e7c0219b 1805 op->dest.reg == CFI_BP && cfi->drap) {
dd88a0a0 1806
0d0970ee
JP
1807 /* drap: mov %rsp, %rbp */
1808 regs[CFI_BP].base = CFI_BP;
e7c0219b
PZ
1809 regs[CFI_BP].offset = -cfi->stack_size;
1810 cfi->bp_scratch = false;
0d0970ee 1811 }
dd88a0a0 1812
0d0970ee
JP
1813 else if (op->src.reg == CFI_SP && cfa->base == CFI_SP) {
1814
1815 /*
1816 * mov %rsp, %reg
1817 *
1818 * This is needed for the rare case where GCC
1819 * does:
1820 *
1821 * mov %rsp, %rax
1822 * ...
1823 * mov %rax, %rsp
1824 */
e7c0219b
PZ
1825 cfi->vals[op->dest.reg].base = CFI_CFA;
1826 cfi->vals[op->dest.reg].offset = -cfi->stack_size;
dd88a0a0
JP
1827 }
1828
3c1f0583
JP
1829 else if (op->src.reg == CFI_BP && op->dest.reg == CFI_SP &&
1830 cfa->base == CFI_BP) {
1831
1832 /*
1833 * mov %rbp, %rsp
1834 *
1835 * Restore the original stack pointer (Clang).
1836 */
e7c0219b 1837 cfi->stack_size = -cfi->regs[CFI_BP].offset;
3c1f0583
JP
1838 }
1839
dd88a0a0
JP
1840 else if (op->dest.reg == cfa->base) {
1841
1842 /* mov %reg, %rsp */
1843 if (cfa->base == CFI_SP &&
e7c0219b 1844 cfi->vals[op->src.reg].base == CFI_CFA) {
dd88a0a0
JP
1845
1846 /*
1847 * This is needed for the rare case
1848 * where GCC does something dumb like:
1849 *
1850 * lea 0x8(%rsp), %rcx
1851 * ...
1852 * mov %rcx, %rsp
1853 */
e7c0219b
PZ
1854 cfa->offset = -cfi->vals[op->src.reg].offset;
1855 cfi->stack_size = cfa->offset;
dd88a0a0
JP
1856
1857 } else {
1858 cfa->base = CFI_UNDEFINED;
1859 cfa->offset = 0;
1860 }
baa41469
JP
1861 }
1862
1863 break;
1864
1865 case OP_SRC_ADD:
1866 if (op->dest.reg == CFI_SP && op->src.reg == CFI_SP) {
1867
1868 /* add imm, %rsp */
e7c0219b 1869 cfi->stack_size -= op->src.offset;
baa41469
JP
1870 if (cfa->base == CFI_SP)
1871 cfa->offset -= op->src.offset;
1872 break;
1873 }
1874
1875 if (op->dest.reg == CFI_SP && op->src.reg == CFI_BP) {
1876
1877 /* lea disp(%rbp), %rsp */
e7c0219b 1878 cfi->stack_size = -(op->src.offset + regs[CFI_BP].offset);
baa41469
JP
1879 break;
1880 }
1881
dd88a0a0 1882 if (op->src.reg == CFI_SP && cfa->base == CFI_SP) {
baa41469
JP
1883
1884 /* drap: lea disp(%rsp), %drap */
e7c0219b 1885 cfi->drap_reg = op->dest.reg;
dd88a0a0
JP
1886
1887 /*
1888 * lea disp(%rsp), %reg
1889 *
1890 * This is needed for the rare case where GCC
1891 * does something dumb like:
1892 *
1893 * lea 0x8(%rsp), %rcx
1894 * ...
1895 * mov %rcx, %rsp
1896 */
e7c0219b
PZ
1897 cfi->vals[op->dest.reg].base = CFI_CFA;
1898 cfi->vals[op->dest.reg].offset = \
1899 -cfi->stack_size + op->src.offset;
dd88a0a0 1900
baa41469
JP
1901 break;
1902 }
1903
e7c0219b
PZ
1904 if (cfi->drap && op->dest.reg == CFI_SP &&
1905 op->src.reg == cfi->drap_reg) {
baa41469
JP
1906
1907 /* drap: lea disp(%drap), %rsp */
1908 cfa->base = CFI_SP;
e7c0219b
PZ
1909 cfa->offset = cfi->stack_size = -op->src.offset;
1910 cfi->drap_reg = CFI_UNDEFINED;
1911 cfi->drap = false;
baa41469
JP
1912 break;
1913 }
1914
e7c0219b 1915 if (op->dest.reg == cfi->cfa.base) {
baa41469
JP
1916 WARN_FUNC("unsupported stack register modification",
1917 insn->sec, insn->offset);
1918 return -1;
1919 }
1920
1921 break;
1922
1923 case OP_SRC_AND:
1924 if (op->dest.reg != CFI_SP ||
e7c0219b
PZ
1925 (cfi->drap_reg != CFI_UNDEFINED && cfa->base != CFI_SP) ||
1926 (cfi->drap_reg == CFI_UNDEFINED && cfa->base != CFI_BP)) {
baa41469
JP
1927 WARN_FUNC("unsupported stack pointer realignment",
1928 insn->sec, insn->offset);
1929 return -1;
1930 }
1931
e7c0219b 1932 if (cfi->drap_reg != CFI_UNDEFINED) {
baa41469 1933 /* drap: and imm, %rsp */
e7c0219b
PZ
1934 cfa->base = cfi->drap_reg;
1935 cfa->offset = cfi->stack_size = 0;
1936 cfi->drap = true;
baa41469
JP
1937 }
1938
1939 /*
1940 * Older versions of GCC (4.8ish) realign the stack
1941 * without DRAP, with a frame pointer.
1942 */
1943
1944 break;
1945
1946 case OP_SRC_POP:
ea24213d 1947 case OP_SRC_POPF:
e7c0219b 1948 if (!cfi->drap && op->dest.reg == cfa->base) {
baa41469
JP
1949
1950 /* pop %rbp */
1951 cfa->base = CFI_SP;
1952 }
1953
e7c0219b
PZ
1954 if (cfi->drap && cfa->base == CFI_BP_INDIRECT &&
1955 op->dest.reg == cfi->drap_reg &&
1956 cfi->drap_offset == -cfi->stack_size) {
baa41469 1957
bf4d1a83 1958 /* drap: pop %drap */
e7c0219b 1959 cfa->base = cfi->drap_reg;
bf4d1a83 1960 cfa->offset = 0;
e7c0219b 1961 cfi->drap_offset = -1;
baa41469 1962
e7c0219b 1963 } else if (regs[op->dest.reg].offset == -cfi->stack_size) {
baa41469 1964
bf4d1a83 1965 /* pop %reg */
e7c0219b 1966 restore_reg(cfi, op->dest.reg);
baa41469
JP
1967 }
1968
e7c0219b 1969 cfi->stack_size -= 8;
baa41469
JP
1970 if (cfa->base == CFI_SP)
1971 cfa->offset -= 8;
1972
1973 break;
1974
1975 case OP_SRC_REG_INDIRECT:
e7c0219b
PZ
1976 if (cfi->drap && op->src.reg == CFI_BP &&
1977 op->src.offset == cfi->drap_offset) {
bf4d1a83
JP
1978
1979 /* drap: mov disp(%rbp), %drap */
e7c0219b 1980 cfa->base = cfi->drap_reg;
bf4d1a83 1981 cfa->offset = 0;
e7c0219b 1982 cfi->drap_offset = -1;
bf4d1a83
JP
1983 }
1984
e7c0219b 1985 if (cfi->drap && op->src.reg == CFI_BP &&
baa41469
JP
1986 op->src.offset == regs[op->dest.reg].offset) {
1987
1988 /* drap: mov disp(%rbp), %reg */
e7c0219b 1989 restore_reg(cfi, op->dest.reg);
baa41469
JP
1990
1991 } else if (op->src.reg == cfa->base &&
1992 op->src.offset == regs[op->dest.reg].offset + cfa->offset) {
1993
1994 /* mov disp(%rbp), %reg */
1995 /* mov disp(%rsp), %reg */
e7c0219b 1996 restore_reg(cfi, op->dest.reg);
baa41469
JP
1997 }
1998
1999 break;
2000
2001 default:
2002 WARN_FUNC("unknown stack-related instruction",
2003 insn->sec, insn->offset);
2004 return -1;
2005 }
2006
2007 break;
2008
2009 case OP_DEST_PUSH:
ea24213d 2010 case OP_DEST_PUSHF:
e7c0219b 2011 cfi->stack_size += 8;
baa41469
JP
2012 if (cfa->base == CFI_SP)
2013 cfa->offset += 8;
2014
2015 if (op->src.type != OP_SRC_REG)
2016 break;
2017
e7c0219b
PZ
2018 if (cfi->drap) {
2019 if (op->src.reg == cfa->base && op->src.reg == cfi->drap_reg) {
baa41469
JP
2020
2021 /* drap: push %drap */
2022 cfa->base = CFI_BP_INDIRECT;
e7c0219b 2023 cfa->offset = -cfi->stack_size;
baa41469 2024
bf4d1a83 2025 /* save drap so we know when to restore it */
e7c0219b 2026 cfi->drap_offset = -cfi->stack_size;
baa41469 2027
e7c0219b 2028 } else if (op->src.reg == CFI_BP && cfa->base == cfi->drap_reg) {
baa41469
JP
2029
2030 /* drap: push %rbp */
e7c0219b 2031 cfi->stack_size = 0;
baa41469
JP
2032
2033 } else if (regs[op->src.reg].base == CFI_UNDEFINED) {
2034
2035 /* drap: push %reg */
e7c0219b 2036 save_reg(cfi, op->src.reg, CFI_BP, -cfi->stack_size);
baa41469
JP
2037 }
2038
2039 } else {
2040
2041 /* push %reg */
e7c0219b 2042 save_reg(cfi, op->src.reg, CFI_CFA, -cfi->stack_size);
baa41469
JP
2043 }
2044
2045 /* detect when asm code uses rbp as a scratch register */
867ac9d7 2046 if (!no_fp && insn->func && op->src.reg == CFI_BP &&
baa41469 2047 cfa->base != CFI_BP)
e7c0219b 2048 cfi->bp_scratch = true;
baa41469
JP
2049 break;
2050
2051 case OP_DEST_REG_INDIRECT:
2052
e7c0219b
PZ
2053 if (cfi->drap) {
2054 if (op->src.reg == cfa->base && op->src.reg == cfi->drap_reg) {
baa41469
JP
2055
2056 /* drap: mov %drap, disp(%rbp) */
2057 cfa->base = CFI_BP_INDIRECT;
2058 cfa->offset = op->dest.offset;
2059
bf4d1a83 2060 /* save drap offset so we know when to restore it */
e7c0219b 2061 cfi->drap_offset = op->dest.offset;
baa41469
JP
2062 }
2063
2064 else if (regs[op->src.reg].base == CFI_UNDEFINED) {
2065
2066 /* drap: mov reg, disp(%rbp) */
e7c0219b 2067 save_reg(cfi, op->src.reg, CFI_BP, op->dest.offset);
baa41469
JP
2068 }
2069
2070 } else if (op->dest.reg == cfa->base) {
2071
2072 /* mov reg, disp(%rbp) */
2073 /* mov reg, disp(%rsp) */
e7c0219b
PZ
2074 save_reg(cfi, op->src.reg, CFI_CFA,
2075 op->dest.offset - cfi->cfa.offset);
baa41469
JP
2076 }
2077
2078 break;
2079
2080 case OP_DEST_LEAVE:
e7c0219b
PZ
2081 if ((!cfi->drap && cfa->base != CFI_BP) ||
2082 (cfi->drap && cfa->base != cfi->drap_reg)) {
baa41469
JP
2083 WARN_FUNC("leave instruction with modified stack frame",
2084 insn->sec, insn->offset);
2085 return -1;
2086 }
2087
2088 /* leave (mov %rbp, %rsp; pop %rbp) */
2089
e7c0219b
PZ
2090 cfi->stack_size = -cfi->regs[CFI_BP].offset - 8;
2091 restore_reg(cfi, CFI_BP);
baa41469 2092
e7c0219b 2093 if (!cfi->drap) {
baa41469
JP
2094 cfa->base = CFI_SP;
2095 cfa->offset -= 8;
2096 }
2097
2098 break;
2099
2100 case OP_DEST_MEM:
ea24213d 2101 if (op->src.type != OP_SRC_POP && op->src.type != OP_SRC_POPF) {
baa41469
JP
2102 WARN_FUNC("unknown stack-related memory operation",
2103 insn->sec, insn->offset);
2104 return -1;
2105 }
2106
2107 /* pop mem */
e7c0219b 2108 cfi->stack_size -= 8;
baa41469
JP
2109 if (cfa->base == CFI_SP)
2110 cfa->offset -= 8;
2111
2112 break;
2113
2114 default:
2115 WARN_FUNC("unknown stack-related instruction",
2116 insn->sec, insn->offset);
2117 return -1;
2118 }
2119
2120 return 0;
2121}
2122
65ea47dc
JT
2123static int handle_insn_ops(struct instruction *insn, struct insn_state *state)
2124{
2125 struct stack_op *op;
2126
2127 list_for_each_entry(op, &insn->stack_ops, list) {
ab3852ab 2128 struct cfi_state old_cfi = state->cfi;
65ea47dc
JT
2129 int res;
2130
e7c0219b 2131 res = update_cfi_state(insn, &state->cfi, op);
65ea47dc
JT
2132 if (res)
2133 return res;
2134
ab3852ab
PZ
2135 if (insn->alt_group && memcmp(&state->cfi, &old_cfi, sizeof(struct cfi_state))) {
2136 WARN_FUNC("alternative modifies stack", insn->sec, insn->offset);
2137 return -1;
2138 }
2139
65ea47dc
JT
2140 if (op->dest.type == OP_DEST_PUSHF) {
2141 if (!state->uaccess_stack) {
2142 state->uaccess_stack = 1;
2143 } else if (state->uaccess_stack >> 31) {
2144 WARN_FUNC("PUSHF stack exhausted",
2145 insn->sec, insn->offset);
2146 return 1;
2147 }
2148 state->uaccess_stack <<= 1;
2149 state->uaccess_stack |= state->uaccess;
2150 }
2151
2152 if (op->src.type == OP_SRC_POPF) {
2153 if (state->uaccess_stack) {
2154 state->uaccess = state->uaccess_stack & 1;
2155 state->uaccess_stack >>= 1;
2156 if (state->uaccess_stack == 1)
2157 state->uaccess_stack = 0;
2158 }
2159 }
2160 }
2161
2162 return 0;
2163}
2164
e7c0219b 2165static bool insn_cfi_match(struct instruction *insn, struct cfi_state *cfi2)
baa41469 2166{
e7c0219b 2167 struct cfi_state *cfi1 = &insn->cfi;
baa41469
JP
2168 int i;
2169
e7c0219b
PZ
2170 if (memcmp(&cfi1->cfa, &cfi2->cfa, sizeof(cfi1->cfa))) {
2171
baa41469
JP
2172 WARN_FUNC("stack state mismatch: cfa1=%d%+d cfa2=%d%+d",
2173 insn->sec, insn->offset,
e7c0219b
PZ
2174 cfi1->cfa.base, cfi1->cfa.offset,
2175 cfi2->cfa.base, cfi2->cfa.offset);
baa41469 2176
e7c0219b 2177 } else if (memcmp(&cfi1->regs, &cfi2->regs, sizeof(cfi1->regs))) {
baa41469 2178 for (i = 0; i < CFI_NUM_REGS; i++) {
e7c0219b 2179 if (!memcmp(&cfi1->regs[i], &cfi2->regs[i],
baa41469
JP
2180 sizeof(struct cfi_reg)))
2181 continue;
2182
2183 WARN_FUNC("stack state mismatch: reg1[%d]=%d%+d reg2[%d]=%d%+d",
2184 insn->sec, insn->offset,
e7c0219b
PZ
2185 i, cfi1->regs[i].base, cfi1->regs[i].offset,
2186 i, cfi2->regs[i].base, cfi2->regs[i].offset);
baa41469
JP
2187 break;
2188 }
2189
e7c0219b
PZ
2190 } else if (cfi1->type != cfi2->type) {
2191
627fce14 2192 WARN_FUNC("stack state mismatch: type1=%d type2=%d",
e7c0219b
PZ
2193 insn->sec, insn->offset, cfi1->type, cfi2->type);
2194
2195 } else if (cfi1->drap != cfi2->drap ||
2196 (cfi1->drap && cfi1->drap_reg != cfi2->drap_reg) ||
2197 (cfi1->drap && cfi1->drap_offset != cfi2->drap_offset)) {
627fce14 2198
bf4d1a83 2199 WARN_FUNC("stack state mismatch: drap1=%d(%d,%d) drap2=%d(%d,%d)",
baa41469 2200 insn->sec, insn->offset,
e7c0219b
PZ
2201 cfi1->drap, cfi1->drap_reg, cfi1->drap_offset,
2202 cfi2->drap, cfi2->drap_reg, cfi2->drap_offset);
baa41469
JP
2203
2204 } else
2205 return true;
2206
2207 return false;
dcc914f4
JP
2208}
2209
ea24213d
PZ
2210static inline bool func_uaccess_safe(struct symbol *func)
2211{
2212 if (func)
e10cd8fe 2213 return func->uaccess_safe;
ea24213d
PZ
2214
2215 return false;
2216}
2217
0c1ddd33 2218static inline const char *call_dest_name(struct instruction *insn)
ea24213d
PZ
2219{
2220 if (insn->call_dest)
2221 return insn->call_dest->name;
2222
2223 return "{dynamic}";
2224}
2225
6b643a07
PZ
2226static inline bool noinstr_call_dest(struct symbol *func)
2227{
2228 /*
2229 * We can't deal with indirect function calls at present;
2230 * assume they're instrumented.
2231 */
2232 if (!func)
2233 return false;
2234
2235 /*
2236 * If the symbol is from a noinstr section; we good.
2237 */
2238 if (func->sec->noinstr)
2239 return true;
2240
2241 /*
2242 * The __ubsan_handle_*() calls are like WARN(), they only happen when
2243 * something 'BAD' happened. At the risk of taking the machine down,
2244 * let them proceed to get the message out.
2245 */
2246 if (!strncmp(func->name, "__ubsan_handle_", 15))
2247 return true;
2248
2249 return false;
2250}
2251
ea24213d
PZ
2252static int validate_call(struct instruction *insn, struct insn_state *state)
2253{
c4a33939 2254 if (state->noinstr && state->instr <= 0 &&
6b643a07 2255 !noinstr_call_dest(insn->call_dest)) {
c4a33939
PZ
2256 WARN_FUNC("call to %s() leaves .noinstr.text section",
2257 insn->sec, insn->offset, call_dest_name(insn));
2258 return 1;
2259 }
2260
ea24213d
PZ
2261 if (state->uaccess && !func_uaccess_safe(insn->call_dest)) {
2262 WARN_FUNC("call to %s() with UACCESS enabled",
0c1ddd33 2263 insn->sec, insn->offset, call_dest_name(insn));
ea24213d
PZ
2264 return 1;
2265 }
2266
2f0f9e9a
PZ
2267 if (state->df) {
2268 WARN_FUNC("call to %s() with DF set",
0c1ddd33 2269 insn->sec, insn->offset, call_dest_name(insn));
2f0f9e9a
PZ
2270 return 1;
2271 }
2272
ea24213d
PZ
2273 return 0;
2274}
2275
54262aa2
PZ
2276static int validate_sibling_call(struct instruction *insn, struct insn_state *state)
2277{
e25eea89 2278 if (has_modified_stack_frame(insn, state)) {
54262aa2
PZ
2279 WARN_FUNC("sibling call from callable instruction with modified stack frame",
2280 insn->sec, insn->offset);
2281 return 1;
2282 }
2283
ea24213d 2284 return validate_call(insn, state);
54262aa2
PZ
2285}
2286
a92e92d1
PZ
2287static int validate_return(struct symbol *func, struct instruction *insn, struct insn_state *state)
2288{
c4a33939
PZ
2289 if (state->noinstr && state->instr > 0) {
2290 WARN_FUNC("return with instrumentation enabled",
2291 insn->sec, insn->offset);
2292 return 1;
2293 }
2294
a92e92d1
PZ
2295 if (state->uaccess && !func_uaccess_safe(func)) {
2296 WARN_FUNC("return with UACCESS enabled",
2297 insn->sec, insn->offset);
2298 return 1;
2299 }
2300
2301 if (!state->uaccess && func_uaccess_safe(func)) {
2302 WARN_FUNC("return with UACCESS disabled from a UACCESS-safe function",
2303 insn->sec, insn->offset);
2304 return 1;
2305 }
2306
2307 if (state->df) {
2308 WARN_FUNC("return with DF set",
2309 insn->sec, insn->offset);
2310 return 1;
2311 }
2312
e25eea89 2313 if (func && has_modified_stack_frame(insn, state)) {
a92e92d1
PZ
2314 WARN_FUNC("return with modified stack frame",
2315 insn->sec, insn->offset);
2316 return 1;
2317 }
2318
e7c0219b 2319 if (state->cfi.bp_scratch) {
b2966952
JP
2320 WARN_FUNC("BP used as a scratch register",
2321 insn->sec, insn->offset);
a92e92d1
PZ
2322 return 1;
2323 }
2324
2325 return 0;
2326}
2327
7117f16b
PZ
2328/*
2329 * Alternatives should not contain any ORC entries, this in turn means they
2330 * should not contain any CFI ops, which implies all instructions should have
2331 * the same same CFI state.
2332 *
2333 * It is possible to constuct alternatives that have unreachable holes that go
2334 * unreported (because they're NOPs), such holes would result in CFI_UNDEFINED
2335 * states which then results in ORC entries, which we just said we didn't want.
2336 *
2337 * Avoid them by copying the CFI entry of the first instruction into the whole
2338 * alternative.
2339 */
2340static void fill_alternative_cfi(struct objtool_file *file, struct instruction *insn)
2341{
2342 struct instruction *first_insn = insn;
2343 int alt_group = insn->alt_group;
2344
2345 sec_for_each_insn_continue(file, insn) {
2346 if (insn->alt_group != alt_group)
2347 break;
2348 insn->cfi = first_insn->cfi;
2349 }
2350}
2351
dcc914f4
JP
2352/*
2353 * Follow the branch starting at the given instruction, and recursively follow
2354 * any other branches (jumps). Meanwhile, track the frame pointer state at
2355 * each instruction and validate all the rules described in
2356 * tools/objtool/Documentation/stack-validation.txt.
2357 */
c705cecc 2358static int validate_branch(struct objtool_file *file, struct symbol *func,
b7460462 2359 struct instruction *insn, struct insn_state state)
dcc914f4
JP
2360{
2361 struct alternative *alt;
b7460462 2362 struct instruction *next_insn;
dcc914f4 2363 struct section *sec;
882a0db9 2364 u8 visited;
dcc914f4
JP
2365 int ret;
2366
dcc914f4 2367 sec = insn->sec;
dcc914f4 2368
dcc914f4 2369 while (1) {
39358a03
JP
2370 next_insn = next_insn_same_sec(file, insn);
2371
13810435 2372 if (file->c_file && func && insn->func && func != insn->func->pfunc) {
ee97638b
JP
2373 WARN("%s() falls through to next function %s()",
2374 func->name, insn->func->name);
2375 return 1;
dcc914f4
JP
2376 }
2377
4855022a
JP
2378 if (func && insn->ignore) {
2379 WARN_FUNC("BUG: why am I validating an ignored function?",
2380 sec, insn->offset);
12b25729 2381 return 1;
4855022a
JP
2382 }
2383
882a0db9 2384 visited = 1 << state.uaccess;
dcc914f4 2385 if (insn->visited) {
e7c0219b 2386 if (!insn->hint && !insn_cfi_match(insn, &state.cfi))
dcc914f4 2387 return 1;
dcc914f4 2388
882a0db9 2389 if (insn->visited & visited)
ea24213d 2390 return 0;
dcc914f4
JP
2391 }
2392
c4a33939
PZ
2393 if (state.noinstr)
2394 state.instr += insn->instr;
2395
c536ed2f 2396 if (insn->hint)
e7c0219b 2397 state.cfi = insn->cfi;
c536ed2f 2398 else
e7c0219b 2399 insn->cfi = state.cfi;
dcc914f4 2400
882a0db9 2401 insn->visited |= visited;
baa41469 2402
7117f16b 2403 if (!insn->ignore_alts && !list_empty(&insn->alts)) {
764eef4b
PZ
2404 bool skip_orig = false;
2405
a845c7cf 2406 list_for_each_entry(alt, &insn->alts, list) {
764eef4b
PZ
2407 if (alt->skip_orig)
2408 skip_orig = true;
2409
c705cecc 2410 ret = validate_branch(file, func, alt->insn, state);
7697eee3
PZ
2411 if (ret) {
2412 if (backtrace)
2413 BT_FUNC("(alt)", insn);
2414 return ret;
2415 }
a845c7cf 2416 }
764eef4b 2417
7117f16b
PZ
2418 if (insn->alt_group)
2419 fill_alternative_cfi(file, insn);
2420
764eef4b
PZ
2421 if (skip_orig)
2422 return 0;
dcc914f4
JP
2423 }
2424
60041bcd
PZ
2425 if (handle_insn_ops(insn, &state))
2426 return 1;
2427
dcc914f4
JP
2428 switch (insn->type) {
2429
dcc914f4 2430 case INSN_RETURN:
a92e92d1 2431 return validate_return(func, insn, &state);
dcc914f4
JP
2432
2433 case INSN_CALL:
ea24213d
PZ
2434 case INSN_CALL_DYNAMIC:
2435 ret = validate_call(insn, &state);
2436 if (ret)
2437 return ret;
dcc914f4 2438
c9bab22b
JP
2439 if (!no_fp && func && !is_fentry_call(insn) &&
2440 !has_valid_stack_frame(&state)) {
dcc914f4
JP
2441 WARN_FUNC("call without frame pointer save/setup",
2442 sec, insn->offset);
2443 return 1;
2444 }
c9bab22b
JP
2445
2446 if (dead_end_function(file, insn->call_dest))
2447 return 0;
2448
1e7e4788
JP
2449 if (insn->type == INSN_CALL && insn->call_dest->static_call_tramp) {
2450 list_add_tail(&insn->static_call_node,
2451 &file->static_call_list);
2452 }
2453
dcc914f4
JP
2454 break;
2455
2456 case INSN_JUMP_CONDITIONAL:
2457 case INSN_JUMP_UNCONDITIONAL:
0c1ddd33 2458 if (func && is_sibling_call(insn)) {
54262aa2 2459 ret = validate_sibling_call(insn, &state);
dcc914f4 2460 if (ret)
54262aa2 2461 return ret;
4855022a 2462
0c1ddd33 2463 } else if (insn->jump_dest) {
c705cecc
JP
2464 ret = validate_branch(file, func,
2465 insn->jump_dest, state);
7697eee3
PZ
2466 if (ret) {
2467 if (backtrace)
2468 BT_FUNC("(branch)", insn);
2469 return ret;
2470 }
4855022a 2471 }
dcc914f4
JP
2472
2473 if (insn->type == INSN_JUMP_UNCONDITIONAL)
2474 return 0;
2475
2476 break;
2477
2478 case INSN_JUMP_DYNAMIC:
b68b9907 2479 case INSN_JUMP_DYNAMIC_CONDITIONAL:
0c1ddd33 2480 if (func && is_sibling_call(insn)) {
54262aa2
PZ
2481 ret = validate_sibling_call(insn, &state);
2482 if (ret)
2483 return ret;
dcc914f4
JP
2484 }
2485
b68b9907
JP
2486 if (insn->type == INSN_JUMP_DYNAMIC)
2487 return 0;
2488
2489 break;
dcc914f4 2490
39358a03
JP
2491 case INSN_CONTEXT_SWITCH:
2492 if (func && (!next_insn || !next_insn->hint)) {
2493 WARN_FUNC("unsupported instruction in callable function",
2494 sec, insn->offset);
2495 return 1;
2496 }
2497 return 0;
2498
ea24213d
PZ
2499 case INSN_STAC:
2500 if (state.uaccess) {
2501 WARN_FUNC("recursive UACCESS enable", sec, insn->offset);
2502 return 1;
2503 }
2504
2505 state.uaccess = true;
2506 break;
2507
2508 case INSN_CLAC:
c705cecc 2509 if (!state.uaccess && func) {
ea24213d
PZ
2510 WARN_FUNC("redundant UACCESS disable", sec, insn->offset);
2511 return 1;
2512 }
2513
2514 if (func_uaccess_safe(func) && !state.uaccess_stack) {
2515 WARN_FUNC("UACCESS-safe disables UACCESS", sec, insn->offset);
2516 return 1;
2517 }
2518
2519 state.uaccess = false;
baa41469
JP
2520 break;
2521
2f0f9e9a
PZ
2522 case INSN_STD:
2523 if (state.df)
2524 WARN_FUNC("recursive STD", sec, insn->offset);
2525
2526 state.df = true;
2527 break;
2528
2529 case INSN_CLD:
c705cecc 2530 if (!state.df && func)
2f0f9e9a
PZ
2531 WARN_FUNC("redundant CLD", sec, insn->offset);
2532
2533 state.df = false;
baa41469
JP
2534 break;
2535
dcc914f4
JP
2536 default:
2537 break;
2538 }
2539
2540 if (insn->dead_end)
2541 return 0;
2542
00d96180 2543 if (!next_insn) {
e7c0219b 2544 if (state.cfi.cfa.base == CFI_UNDEFINED)
00d96180 2545 return 0;
dcc914f4
JP
2546 WARN("%s: unexpected end of section", sec->name);
2547 return 1;
2548 }
00d96180
JP
2549
2550 insn = next_insn;
dcc914f4
JP
2551 }
2552
2553 return 0;
2554}
2555
932f8e98 2556static int validate_unwind_hints(struct objtool_file *file, struct section *sec)
39358a03
JP
2557{
2558 struct instruction *insn;
39358a03 2559 struct insn_state state;
932f8e98 2560 int ret, warnings = 0;
39358a03
JP
2561
2562 if (!file->hints)
2563 return 0;
2564
932f8e98 2565 init_insn_state(&state, sec);
39358a03 2566
932f8e98
PZ
2567 if (sec) {
2568 insn = find_insn(file, sec, 0);
2569 if (!insn)
2570 return 0;
2571 } else {
2572 insn = list_first_entry(&file->insn_list, typeof(*insn), list);
2573 }
2574
2575 while (&insn->list != &file->insn_list && (!sec || insn->sec == sec)) {
39358a03 2576 if (insn->hint && !insn->visited) {
c705cecc 2577 ret = validate_branch(file, insn->func, insn, state);
7697eee3
PZ
2578 if (ret && backtrace)
2579 BT_FUNC("<=== (hint)", insn);
39358a03
JP
2580 warnings += ret;
2581 }
932f8e98
PZ
2582
2583 insn = list_next_entry(insn, list);
39358a03
JP
2584 }
2585
2586 return warnings;
2587}
2588
b5bc2231
PZ
2589static int validate_retpoline(struct objtool_file *file)
2590{
2591 struct instruction *insn;
2592 int warnings = 0;
2593
2594 for_each_insn(file, insn) {
2595 if (insn->type != INSN_JUMP_DYNAMIC &&
2596 insn->type != INSN_CALL_DYNAMIC)
2597 continue;
2598
2599 if (insn->retpoline_safe)
2600 continue;
2601
ca41b97e
PZ
2602 /*
2603 * .init.text code is ran before userspace and thus doesn't
2604 * strictly need retpolines, except for modules which are
2605 * loaded late, they very much do need retpoline in their
2606 * .init.text
2607 */
2608 if (!strcmp(insn->sec->name, ".init.text") && !module)
2609 continue;
2610
b5bc2231
PZ
2611 WARN_FUNC("indirect %s found in RETPOLINE build",
2612 insn->sec, insn->offset,
2613 insn->type == INSN_JUMP_DYNAMIC ? "jump" : "call");
2614
2615 warnings++;
2616 }
2617
2618 return warnings;
2619}
2620
dcc914f4
JP
2621static bool is_kasan_insn(struct instruction *insn)
2622{
2623 return (insn->type == INSN_CALL &&
2624 !strcmp(insn->call_dest->name, "__asan_handle_no_return"));
2625}
2626
2627static bool is_ubsan_insn(struct instruction *insn)
2628{
2629 return (insn->type == INSN_CALL &&
2630 !strcmp(insn->call_dest->name,
2631 "__ubsan_handle_builtin_unreachable"));
2632}
2633
baa41469 2634static bool ignore_unreachable_insn(struct instruction *insn)
dcc914f4
JP
2635{
2636 int i;
2637
baa41469
JP
2638 if (insn->ignore || insn->type == INSN_NOP)
2639 return true;
2640
2641 /*
2642 * Ignore any unused exceptions. This can happen when a whitelisted
2643 * function has an exception table entry.
0e2bb2bc
JP
2644 *
2645 * Also ignore alternative replacement instructions. This can happen
2646 * when a whitelisted function uses one of the ALTERNATIVE macros.
baa41469 2647 */
0e2bb2bc
JP
2648 if (!strcmp(insn->sec->name, ".fixup") ||
2649 !strcmp(insn->sec->name, ".altinstr_replacement") ||
2650 !strcmp(insn->sec->name, ".altinstr_aux"))
dcc914f4
JP
2651 return true;
2652
bd841d61
JP
2653 if (!insn->func)
2654 return false;
2655
2656 /*
2657 * CONFIG_UBSAN_TRAP inserts a UD2 when it sees
2658 * __builtin_unreachable(). The BUG() macro has an unreachable() after
2659 * the UD2, which causes GCC's undefined trap logic to emit another UD2
2660 * (or occasionally a JMP to UD2).
2661 */
2662 if (list_prev_entry(insn, list)->dead_end &&
2663 (insn->type == INSN_BUG ||
2664 (insn->type == INSN_JUMP_UNCONDITIONAL &&
2665 insn->jump_dest && insn->jump_dest->type == INSN_BUG)))
2666 return true;
2667
dcc914f4
JP
2668 /*
2669 * Check if this (or a subsequent) instruction is related to
2670 * CONFIG_UBSAN or CONFIG_KASAN.
2671 *
2672 * End the search at 5 instructions to avoid going into the weeds.
2673 */
2674 for (i = 0; i < 5; i++) {
2675
2676 if (is_kasan_insn(insn) || is_ubsan_insn(insn))
2677 return true;
2678
fe24e271
JP
2679 if (insn->type == INSN_JUMP_UNCONDITIONAL) {
2680 if (insn->jump_dest &&
2681 insn->jump_dest->func == insn->func) {
2682 insn = insn->jump_dest;
2683 continue;
2684 }
2685
2686 break;
dcc914f4
JP
2687 }
2688
baa41469 2689 if (insn->offset + insn->len >= insn->func->offset + insn->func->len)
dcc914f4 2690 break;
fe24e271 2691
dcc914f4
JP
2692 insn = list_next_entry(insn, list);
2693 }
2694
2695 return false;
2696}
2697
4b5e2e7f
PZ
2698static int validate_symbol(struct objtool_file *file, struct section *sec,
2699 struct symbol *sym, struct insn_state *state)
dcc914f4 2700{
dcc914f4 2701 struct instruction *insn;
4b5e2e7f
PZ
2702 int ret;
2703
2704 if (!sym->len) {
2705 WARN("%s() is missing an ELF size annotation", sym->name);
2706 return 1;
2707 }
2708
2709 if (sym->pfunc != sym || sym->alias != sym)
2710 return 0;
2711
2712 insn = find_insn(file, sec, sym->offset);
2713 if (!insn || insn->ignore || insn->visited)
2714 return 0;
2715
2716 state->uaccess = sym->uaccess_safe;
2717
2718 ret = validate_branch(file, insn->func, insn, *state);
2719 if (ret && backtrace)
2720 BT_FUNC("<=== (sym)", insn);
2721 return ret;
2722}
2723
2724static int validate_section(struct objtool_file *file, struct section *sec)
2725{
baa41469 2726 struct insn_state state;
4b5e2e7f
PZ
2727 struct symbol *func;
2728 int warnings = 0;
dcc914f4 2729
350994bf
PZ
2730 list_for_each_entry(func, &sec->symbol_list, list) {
2731 if (func->type != STT_FUNC)
2732 continue;
e10cd8fe 2733
932f8e98 2734 init_insn_state(&state, sec);
e7c0219b
PZ
2735 state.cfi.cfa = initial_func_cfi.cfa;
2736 memcpy(&state.cfi.regs, &initial_func_cfi.regs,
0699e551 2737 CFI_NUM_REGS * sizeof(struct cfi_reg));
e7c0219b 2738 state.cfi.stack_size = initial_func_cfi.cfa.offset;
0699e551 2739
4b5e2e7f 2740 warnings += validate_symbol(file, sec, func, &state);
dcc914f4
JP
2741 }
2742
dcc914f4
JP
2743 return warnings;
2744}
2745
c4a33939
PZ
2746static int validate_vmlinux_functions(struct objtool_file *file)
2747{
2748 struct section *sec;
932f8e98 2749 int warnings = 0;
c4a33939
PZ
2750
2751 sec = find_section_by_name(file->elf, ".noinstr.text");
0cc9ac8d
TG
2752 if (sec) {
2753 warnings += validate_section(file, sec);
2754 warnings += validate_unwind_hints(file, sec);
2755 }
c4a33939 2756
0cc9ac8d
TG
2757 sec = find_section_by_name(file->elf, ".entry.text");
2758 if (sec) {
2759 warnings += validate_section(file, sec);
2760 warnings += validate_unwind_hints(file, sec);
2761 }
932f8e98
PZ
2762
2763 return warnings;
c4a33939
PZ
2764}
2765
350994bf
PZ
2766static int validate_functions(struct objtool_file *file)
2767{
2768 struct section *sec;
2769 int warnings = 0;
2770
da837bd6
PZ
2771 for_each_sec(file, sec) {
2772 if (!(sec->sh.sh_flags & SHF_EXECINSTR))
2773 continue;
2774
350994bf 2775 warnings += validate_section(file, sec);
da837bd6 2776 }
350994bf
PZ
2777
2778 return warnings;
2779}
2780
baa41469 2781static int validate_reachable_instructions(struct objtool_file *file)
dcc914f4
JP
2782{
2783 struct instruction *insn;
baa41469
JP
2784
2785 if (file->ignore_unreachables)
2786 return 0;
dcc914f4
JP
2787
2788 for_each_insn(file, insn) {
baa41469
JP
2789 if (insn->visited || ignore_unreachable_insn(insn))
2790 continue;
2791
baa41469
JP
2792 WARN_FUNC("unreachable instruction", insn->sec, insn->offset);
2793 return 1;
dcc914f4
JP
2794 }
2795
baa41469 2796 return 0;
dcc914f4
JP
2797}
2798
d44becb9 2799int check(struct objtool_file *file)
dcc914f4 2800{
dcc914f4
JP
2801 int ret, warnings = 0;
2802
baa41469
JP
2803 arch_initial_func_cfi_state(&initial_func_cfi);
2804
6545eb03 2805 ret = decode_sections(file);
dcc914f4
JP
2806 if (ret < 0)
2807 goto out;
2808 warnings += ret;
2809
6545eb03 2810 if (list_empty(&file->insn_list))
dcc914f4 2811 goto out;
dcc914f4 2812
c4a33939 2813 if (vmlinux && !validate_dup) {
6545eb03 2814 ret = validate_vmlinux_functions(file);
c4a33939
PZ
2815 if (ret < 0)
2816 goto out;
2817
2818 warnings += ret;
2819 goto out;
2820 }
2821
b5bc2231 2822 if (retpoline) {
6545eb03 2823 ret = validate_retpoline(file);
b5bc2231
PZ
2824 if (ret < 0)
2825 return ret;
2826 warnings += ret;
2827 }
2828
6545eb03 2829 ret = validate_functions(file);
dcc914f4
JP
2830 if (ret < 0)
2831 goto out;
2832 warnings += ret;
2833
6545eb03 2834 ret = validate_unwind_hints(file, NULL);
39358a03
JP
2835 if (ret < 0)
2836 goto out;
2837 warnings += ret;
2838
baa41469 2839 if (!warnings) {
6545eb03 2840 ret = validate_reachable_instructions(file);
baa41469
JP
2841 if (ret < 0)
2842 goto out;
2843 warnings += ret;
2844 }
2845
6545eb03 2846 ret = create_static_call_sections(file);
1e7e4788
JP
2847 if (ret < 0)
2848 goto out;
2849 warnings += ret;
2850
dcc914f4 2851out:
644592d3
JP
2852 if (ret < 0) {
2853 /*
2854 * Fatal error. The binary is corrupt or otherwise broken in
2855 * some way, or objtool itself is broken. Fail the kernel
2856 * build.
2857 */
2858 return ret;
2859 }
2860
dcc914f4
JP
2861 return 0;
2862}
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