1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * Copyright (C) 2015-2017 Josh Poimboeuf <jpoimboe@redhat.com>
4 */
5
6 #include <string.h>
7 #include <stdlib.h>
8 #include <inttypes.h>
9 #include <sys/mman.h>
10
11 #include <objtool/builtin.h>
12 #include <objtool/cfi.h>
13 #include <objtool/arch.h>
14 #include <objtool/check.h>
15 #include <objtool/special.h>
16 #include <objtool/warn.h>
17 #include <objtool/endianness.h>
18
19 #include <linux/objtool_types.h>
20 #include <linux/hashtable.h>
21 #include <linux/kernel.h>
22 #include <linux/static_call_types.h>
23
24 struct alternative {
25 struct alternative *next;
26 struct instruction *insn;
27 bool skip_orig;
28 };
29
30 static unsigned long nr_cfi, nr_cfi_reused, nr_cfi_cache;
31
32 static struct cfi_init_state initial_func_cfi;
33 static struct cfi_state init_cfi;
34 static struct cfi_state func_cfi;
35 static struct cfi_state force_undefined_cfi;
36
find_insn(struct objtool_file * file,struct section * sec,unsigned long offset)37 struct instruction *find_insn(struct objtool_file *file,
38 struct section *sec, unsigned long offset)
39 {
40 struct instruction *insn;
41
42 hash_for_each_possible(file->insn_hash, insn, hash, sec_offset_hash(sec, offset)) {
43 if (insn->sec == sec && insn->offset == offset)
44 return insn;
45 }
46
47 return NULL;
48 }
49
next_insn_same_sec(struct objtool_file * file,struct instruction * insn)50 struct instruction *next_insn_same_sec(struct objtool_file *file,
51 struct instruction *insn)
52 {
53 if (insn->idx == INSN_CHUNK_MAX)
54 return find_insn(file, insn->sec, insn->offset + insn->len);
55
56 insn++;
57 if (!insn->len)
58 return NULL;
59
60 return insn;
61 }
62
next_insn_same_func(struct objtool_file * file,struct instruction * insn)63 static struct instruction *next_insn_same_func(struct objtool_file *file,
64 struct instruction *insn)
65 {
66 struct instruction *next = next_insn_same_sec(file, insn);
67 struct symbol *func = insn_func(insn);
68
69 if (!func)
70 return NULL;
71
72 if (next && insn_func(next) == func)
73 return next;
74
75 /* Check if we're already in the subfunction: */
76 if (func == func->cfunc)
77 return NULL;
78
79 /* Move to the subfunction: */
80 return find_insn(file, func->cfunc->sec, func->cfunc->offset);
81 }
82
prev_insn_same_sec(struct objtool_file * file,struct instruction * insn)83 static struct instruction *prev_insn_same_sec(struct objtool_file *file,
84 struct instruction *insn)
85 {
86 if (insn->idx == 0) {
87 if (insn->prev_len)
88 return find_insn(file, insn->sec, insn->offset - insn->prev_len);
89 return NULL;
90 }
91
92 return insn - 1;
93 }
94
prev_insn_same_sym(struct objtool_file * file,struct instruction * insn)95 static struct instruction *prev_insn_same_sym(struct objtool_file *file,
96 struct instruction *insn)
97 {
98 struct instruction *prev = prev_insn_same_sec(file, insn);
99
100 if (prev && insn_func(prev) == insn_func(insn))
101 return prev;
102
103 return NULL;
104 }
105
106 #define for_each_insn(file, insn) \
107 for (struct section *__sec, *__fake = (struct section *)1; \
108 __fake; __fake = NULL) \
109 for_each_sec(file, __sec) \
110 sec_for_each_insn(file, __sec, insn)
111
112 #define func_for_each_insn(file, func, insn) \
113 for (insn = find_insn(file, func->sec, func->offset); \
114 insn; \
115 insn = next_insn_same_func(file, insn))
116
117 #define sym_for_each_insn(file, sym, insn) \
118 for (insn = find_insn(file, sym->sec, sym->offset); \
119 insn && insn->offset < sym->offset + sym->len; \
120 insn = next_insn_same_sec(file, insn))
121
122 #define sym_for_each_insn_continue_reverse(file, sym, insn) \
123 for (insn = prev_insn_same_sec(file, insn); \
124 insn && insn->offset >= sym->offset; \
125 insn = prev_insn_same_sec(file, insn))
126
127 #define sec_for_each_insn_from(file, insn) \
128 for (; insn; insn = next_insn_same_sec(file, insn))
129
130 #define sec_for_each_insn_continue(file, insn) \
131 for (insn = next_insn_same_sec(file, insn); insn; \
132 insn = next_insn_same_sec(file, insn))
133
insn_call_dest(struct instruction * insn)134 static inline struct symbol *insn_call_dest(struct instruction *insn)
135 {
136 if (insn->type == INSN_JUMP_DYNAMIC ||
137 insn->type == INSN_CALL_DYNAMIC)
138 return NULL;
139
140 return insn->_call_dest;
141 }
142
insn_jump_table(struct instruction * insn)143 static inline struct reloc *insn_jump_table(struct instruction *insn)
144 {
145 if (insn->type == INSN_JUMP_DYNAMIC ||
146 insn->type == INSN_CALL_DYNAMIC)
147 return insn->_jump_table;
148
149 return NULL;
150 }
151
is_jump_table_jump(struct instruction * insn)152 static bool is_jump_table_jump(struct instruction *insn)
153 {
154 struct alt_group *alt_group = insn->alt_group;
155
156 if (insn_jump_table(insn))
157 return true;
158
159 /* Retpoline alternative for a jump table? */
160 return alt_group && alt_group->orig_group &&
161 insn_jump_table(alt_group->orig_group->first_insn);
162 }
163
is_sibling_call(struct instruction * insn)164 static bool is_sibling_call(struct instruction *insn)
165 {
166 /*
167 * Assume only STT_FUNC calls have jump-tables.
168 */
169 if (insn_func(insn)) {
170 /* An indirect jump is either a sibling call or a jump to a table. */
171 if (insn->type == INSN_JUMP_DYNAMIC)
172 return !is_jump_table_jump(insn);
173 }
174
175 /* add_jump_destinations() sets insn_call_dest(insn) for sibling calls. */
176 return (is_static_jump(insn) && insn_call_dest(insn));
177 }
178
179 /*
180 * This checks to see if the given function is a "noreturn" function.
181 *
182 * For global functions which are outside the scope of this object file, we
183 * have to keep a manual list of them.
184 *
185 * For local functions, we have to detect them manually by simply looking for
186 * the lack of a return instruction.
187 */
__dead_end_function(struct objtool_file * file,struct symbol * func,int recursion)188 static bool __dead_end_function(struct objtool_file *file, struct symbol *func,
189 int recursion)
190 {
191 int i;
192 struct instruction *insn;
193 bool empty = true;
194
195 #define NORETURN(func) __stringify(func),
196 static const char * const global_noreturns[] = {
197 #include "noreturns.h"
198 };
199 #undef NORETURN
200
201 if (!func)
202 return false;
203
204 if (func->bind == STB_GLOBAL || func->bind == STB_WEAK)
205 for (i = 0; i < ARRAY_SIZE(global_noreturns); i++)
206 if (!strcmp(func->name, global_noreturns[i]))
207 return true;
208
209 if (func->bind == STB_WEAK)
210 return false;
211
212 if (!func->len)
213 return false;
214
215 insn = find_insn(file, func->sec, func->offset);
216 if (!insn || !insn_func(insn))
217 return false;
218
219 func_for_each_insn(file, func, insn) {
220 empty = false;
221
222 if (insn->type == INSN_RETURN)
223 return false;
224 }
225
226 if (empty)
227 return false;
228
229 /*
230 * A function can have a sibling call instead of a return. In that
231 * case, the function's dead-end status depends on whether the target
232 * of the sibling call returns.
233 */
234 func_for_each_insn(file, func, insn) {
235 if (is_sibling_call(insn)) {
236 struct instruction *dest = insn->jump_dest;
237
238 if (!dest)
239 /* sibling call to another file */
240 return false;
241
242 /* local sibling call */
243 if (recursion == 5) {
244 /*
245 * Infinite recursion: two functions have
246 * sibling calls to each other. This is a very
247 * rare case. It means they aren't dead ends.
248 */
249 return false;
250 }
251
252 return __dead_end_function(file, insn_func(dest), recursion+1);
253 }
254 }
255
256 return true;
257 }
258
dead_end_function(struct objtool_file * file,struct symbol * func)259 static bool dead_end_function(struct objtool_file *file, struct symbol *func)
260 {
261 return __dead_end_function(file, func, 0);
262 }
263
init_cfi_state(struct cfi_state * cfi)264 static void init_cfi_state(struct cfi_state *cfi)
265 {
266 int i;
267
268 for (i = 0; i < CFI_NUM_REGS; i++) {
269 cfi->regs[i].base = CFI_UNDEFINED;
270 cfi->vals[i].base = CFI_UNDEFINED;
271 }
272 cfi->cfa.base = CFI_UNDEFINED;
273 cfi->drap_reg = CFI_UNDEFINED;
274 cfi->drap_offset = -1;
275 }
276
init_insn_state(struct objtool_file * file,struct insn_state * state,struct section * sec)277 static void init_insn_state(struct objtool_file *file, struct insn_state *state,
278 struct section *sec)
279 {
280 memset(state, 0, sizeof(*state));
281 init_cfi_state(&state->cfi);
282
283 /*
284 * We need the full vmlinux for noinstr validation, otherwise we can
285 * not correctly determine insn_call_dest(insn)->sec (external symbols
286 * do not have a section).
287 */
288 if (opts.link && opts.noinstr && sec)
289 state->noinstr = sec->noinstr;
290 }
291
cfi_alloc(void)292 static struct cfi_state *cfi_alloc(void)
293 {
294 struct cfi_state *cfi = calloc(sizeof(struct cfi_state), 1);
295 if (!cfi) {
296 WARN("calloc failed");
297 exit(1);
298 }
299 nr_cfi++;
300 return cfi;
301 }
302
303 static int cfi_bits;
304 static struct hlist_head *cfi_hash;
305
cficmp(struct cfi_state * cfi1,struct cfi_state * cfi2)306 static inline bool cficmp(struct cfi_state *cfi1, struct cfi_state *cfi2)
307 {
308 return memcmp((void *)cfi1 + sizeof(cfi1->hash),
309 (void *)cfi2 + sizeof(cfi2->hash),
310 sizeof(struct cfi_state) - sizeof(struct hlist_node));
311 }
312
cfi_key(struct cfi_state * cfi)313 static inline u32 cfi_key(struct cfi_state *cfi)
314 {
315 return jhash((void *)cfi + sizeof(cfi->hash),
316 sizeof(*cfi) - sizeof(cfi->hash), 0);
317 }
318
cfi_hash_find_or_add(struct cfi_state * cfi)319 static struct cfi_state *cfi_hash_find_or_add(struct cfi_state *cfi)
320 {
321 struct hlist_head *head = &cfi_hash[hash_min(cfi_key(cfi), cfi_bits)];
322 struct cfi_state *obj;
323
324 hlist_for_each_entry(obj, head, hash) {
325 if (!cficmp(cfi, obj)) {
326 nr_cfi_cache++;
327 return obj;
328 }
329 }
330
331 obj = cfi_alloc();
332 *obj = *cfi;
333 hlist_add_head(&obj->hash, head);
334
335 return obj;
336 }
337
cfi_hash_add(struct cfi_state * cfi)338 static void cfi_hash_add(struct cfi_state *cfi)
339 {
340 struct hlist_head *head = &cfi_hash[hash_min(cfi_key(cfi), cfi_bits)];
341
342 hlist_add_head(&cfi->hash, head);
343 }
344
cfi_hash_alloc(unsigned long size)345 static void *cfi_hash_alloc(unsigned long size)
346 {
347 cfi_bits = max(10, ilog2(size));
348 cfi_hash = mmap(NULL, sizeof(struct hlist_head) << cfi_bits,
349 PROT_READ|PROT_WRITE,
350 MAP_PRIVATE|MAP_ANON, -1, 0);
351 if (cfi_hash == (void *)-1L) {
352 WARN("mmap fail cfi_hash");
353 cfi_hash = NULL;
354 } else if (opts.stats) {
355 printf("cfi_bits: %d\n", cfi_bits);
356 }
357
358 return cfi_hash;
359 }
360
361 static unsigned long nr_insns;
362 static unsigned long nr_insns_visited;
363
364 /*
365 * Call the arch-specific instruction decoder for all the instructions and add
366 * them to the global instruction list.
367 */
decode_instructions(struct objtool_file * file)368 static int decode_instructions(struct objtool_file *file)
369 {
370 struct section *sec;
371 struct symbol *func;
372 unsigned long offset;
373 struct instruction *insn;
374 int ret;
375
376 for_each_sec(file, sec) {
377 struct instruction *insns = NULL;
378 u8 prev_len = 0;
379 u8 idx = 0;
380
381 if (!(sec->sh.sh_flags & SHF_EXECINSTR))
382 continue;
383
384 if (strcmp(sec->name, ".altinstr_replacement") &&
385 strcmp(sec->name, ".altinstr_aux") &&
386 strncmp(sec->name, ".discard.", 9))
387 sec->text = true;
388
389 if (!strcmp(sec->name, ".noinstr.text") ||
390 !strcmp(sec->name, ".entry.text") ||
391 !strcmp(sec->name, ".cpuidle.text") ||
392 !strncmp(sec->name, ".text..__x86.", 13))
393 sec->noinstr = true;
394
395 /*
396 * .init.text code is ran before userspace and thus doesn't
397 * strictly need retpolines, except for modules which are
398 * loaded late, they very much do need retpoline in their
399 * .init.text
400 */
401 if (!strcmp(sec->name, ".init.text") && !opts.module)
402 sec->init = true;
403
404 for (offset = 0; offset < sec->sh.sh_size; offset += insn->len) {
405 if (!insns || idx == INSN_CHUNK_MAX) {
406 insns = calloc(sizeof(*insn), INSN_CHUNK_SIZE);
407 if (!insns) {
408 WARN("malloc failed");
409 return -1;
410 }
411 idx = 0;
412 } else {
413 idx++;
414 }
415 insn = &insns[idx];
416 insn->idx = idx;
417
418 INIT_LIST_HEAD(&insn->call_node);
419 insn->sec = sec;
420 insn->offset = offset;
421 insn->prev_len = prev_len;
422
423 ret = arch_decode_instruction(file, sec, offset,
424 sec->sh.sh_size - offset,
425 insn);
426 if (ret)
427 return ret;
428
429 prev_len = insn->len;
430
431 /*
432 * By default, "ud2" is a dead end unless otherwise
433 * annotated, because GCC 7 inserts it for certain
434 * divide-by-zero cases.
435 */
436 if (insn->type == INSN_BUG)
437 insn->dead_end = true;
438
439 hash_add(file->insn_hash, &insn->hash, sec_offset_hash(sec, insn->offset));
440 nr_insns++;
441 }
442
443 // printf("%s: last chunk used: %d\n", sec->name, (int)idx);
444
445 sec_for_each_sym(sec, func) {
446 if (func->type != STT_NOTYPE && func->type != STT_FUNC)
447 continue;
448
449 if (func->offset == sec->sh.sh_size) {
450 /* Heuristic: likely an "end" symbol */
451 if (func->type == STT_NOTYPE)
452 continue;
453 WARN("%s(): STT_FUNC at end of section",
454 func->name);
455 return -1;
456 }
457
458 if (func->embedded_insn || func->alias != func)
459 continue;
460
461 if (!find_insn(file, sec, func->offset)) {
462 WARN("%s(): can't find starting instruction",
463 func->name);
464 return -1;
465 }
466
467 sym_for_each_insn(file, func, insn) {
468 insn->sym = func;
469 if (func->type == STT_FUNC &&
470 insn->type == INSN_ENDBR &&
471 list_empty(&insn->call_node)) {
472 if (insn->offset == func->offset) {
473 list_add_tail(&insn->call_node, &file->endbr_list);
474 file->nr_endbr++;
475 } else {
476 file->nr_endbr_int++;
477 }
478 }
479 }
480 }
481 }
482
483 if (opts.stats)
484 printf("nr_insns: %lu\n", nr_insns);
485
486 return 0;
487 }
488
489 /*
490 * Read the pv_ops[] .data table to find the static initialized values.
491 */
add_pv_ops(struct objtool_file * file,const char * symname)492 static int add_pv_ops(struct objtool_file *file, const char *symname)
493 {
494 struct symbol *sym, *func;
495 unsigned long off, end;
496 struct reloc *reloc;
497 int idx;
498
499 sym = find_symbol_by_name(file->elf, symname);
500 if (!sym)
501 return 0;
502
503 off = sym->offset;
504 end = off + sym->len;
505 for (;;) {
506 reloc = find_reloc_by_dest_range(file->elf, sym->sec, off, end - off);
507 if (!reloc)
508 break;
509
510 func = reloc->sym;
511 if (func->type == STT_SECTION)
512 func = find_symbol_by_offset(reloc->sym->sec,
513 reloc_addend(reloc));
514
515 idx = (reloc_offset(reloc) - sym->offset) / sizeof(unsigned long);
516
517 objtool_pv_add(file, idx, func);
518
519 off = reloc_offset(reloc) + 1;
520 if (off > end)
521 break;
522 }
523
524 return 0;
525 }
526
527 /*
528 * Allocate and initialize file->pv_ops[].
529 */
init_pv_ops(struct objtool_file * file)530 static int init_pv_ops(struct objtool_file *file)
531 {
532 static const char *pv_ops_tables[] = {
533 "pv_ops",
534 "xen_cpu_ops",
535 "xen_irq_ops",
536 "xen_mmu_ops",
537 NULL,
538 };
539 const char *pv_ops;
540 struct symbol *sym;
541 int idx, nr;
542
543 if (!opts.noinstr)
544 return 0;
545
546 file->pv_ops = NULL;
547
548 sym = find_symbol_by_name(file->elf, "pv_ops");
549 if (!sym)
550 return 0;
551
552 nr = sym->len / sizeof(unsigned long);
553 file->pv_ops = calloc(sizeof(struct pv_state), nr);
554 if (!file->pv_ops)
555 return -1;
556
557 for (idx = 0; idx < nr; idx++)
558 INIT_LIST_HEAD(&file->pv_ops[idx].targets);
559
560 for (idx = 0; (pv_ops = pv_ops_tables[idx]); idx++)
561 add_pv_ops(file, pv_ops);
562
563 return 0;
564 }
565
find_last_insn(struct objtool_file * file,struct section * sec)566 static struct instruction *find_last_insn(struct objtool_file *file,
567 struct section *sec)
568 {
569 struct instruction *insn = NULL;
570 unsigned int offset;
571 unsigned int end = (sec->sh.sh_size > 10) ? sec->sh.sh_size - 10 : 0;
572
573 for (offset = sec->sh.sh_size - 1; offset >= end && !insn; offset--)
574 insn = find_insn(file, sec, offset);
575
576 return insn;
577 }
578
579 /*
580 * Mark "ud2" instructions and manually annotated dead ends.
581 */
add_dead_ends(struct objtool_file * file)582 static int add_dead_ends(struct objtool_file *file)
583 {
584 struct section *rsec;
585 struct reloc *reloc;
586 struct instruction *insn;
587 s64 addend;
588
589 /*
590 * Check for manually annotated dead ends.
591 */
592 rsec = find_section_by_name(file->elf, ".rela.discard.unreachable");
593 if (!rsec)
594 goto reachable;
595
596 for_each_reloc(rsec, reloc) {
597
598 if (reloc->sym->type != STT_SECTION) {
599 WARN("unexpected relocation symbol type in %s", rsec->name);
600 return -1;
601 }
602
603 addend = reloc_addend(reloc);
604
605 insn = find_insn(file, reloc->sym->sec, addend);
606 if (insn)
607 insn = prev_insn_same_sec(file, insn);
608 else if (addend == reloc->sym->sec->sh.sh_size) {
609 insn = find_last_insn(file, reloc->sym->sec);
610 if (!insn) {
611 WARN("can't find unreachable insn at %s+0x%" PRIx64,
612 reloc->sym->sec->name, addend);
613 return -1;
614 }
615 } else {
616 WARN("can't find unreachable insn at %s+0x%" PRIx64,
617 reloc->sym->sec->name, addend);
618 return -1;
619 }
620
621 insn->dead_end = true;
622 }
623
624 reachable:
625 /*
626 * These manually annotated reachable checks are needed for GCC 4.4,
627 * where the Linux unreachable() macro isn't supported. In that case
628 * GCC doesn't know the "ud2" is fatal, so it generates code as if it's
629 * not a dead end.
630 */
631 rsec = find_section_by_name(file->elf, ".rela.discard.reachable");
632 if (!rsec)
633 return 0;
634
635 for_each_reloc(rsec, reloc) {
636
637 if (reloc->sym->type != STT_SECTION) {
638 WARN("unexpected relocation symbol type in %s", rsec->name);
639 return -1;
640 }
641
642 addend = reloc_addend(reloc);
643
644 insn = find_insn(file, reloc->sym->sec, addend);
645 if (insn)
646 insn = prev_insn_same_sec(file, insn);
647 else if (addend == reloc->sym->sec->sh.sh_size) {
648 insn = find_last_insn(file, reloc->sym->sec);
649 if (!insn) {
650 WARN("can't find reachable insn at %s+0x%" PRIx64,
651 reloc->sym->sec->name, addend);
652 return -1;
653 }
654 } else {
655 WARN("can't find reachable insn at %s+0x%" PRIx64,
656 reloc->sym->sec->name, addend);
657 return -1;
658 }
659
660 insn->dead_end = false;
661 }
662
663 return 0;
664 }
665
create_static_call_sections(struct objtool_file * file)666 static int create_static_call_sections(struct objtool_file *file)
667 {
668 struct static_call_site *site;
669 struct section *sec;
670 struct instruction *insn;
671 struct symbol *key_sym;
672 char *key_name, *tmp;
673 int idx;
674
675 sec = find_section_by_name(file->elf, ".static_call_sites");
676 if (sec) {
677 INIT_LIST_HEAD(&file->static_call_list);
678 WARN("file already has .static_call_sites section, skipping");
679 return 0;
680 }
681
682 if (list_empty(&file->static_call_list))
683 return 0;
684
685 idx = 0;
686 list_for_each_entry(insn, &file->static_call_list, call_node)
687 idx++;
688
689 sec = elf_create_section_pair(file->elf, ".static_call_sites",
690 sizeof(*site), idx, idx * 2);
691 if (!sec)
692 return -1;
693
694 /* Allow modules to modify the low bits of static_call_site::key */
695 sec->sh.sh_flags |= SHF_WRITE;
696
697 idx = 0;
698 list_for_each_entry(insn, &file->static_call_list, call_node) {
699
700 /* populate reloc for 'addr' */
701 if (!elf_init_reloc_text_sym(file->elf, sec,
702 idx * sizeof(*site), idx * 2,
703 insn->sec, insn->offset))
704 return -1;
705
706 /* find key symbol */
707 key_name = strdup(insn_call_dest(insn)->name);
708 if (!key_name) {
709 perror("strdup");
710 return -1;
711 }
712 if (strncmp(key_name, STATIC_CALL_TRAMP_PREFIX_STR,
713 STATIC_CALL_TRAMP_PREFIX_LEN)) {
714 WARN("static_call: trampoline name malformed: %s", key_name);
715 free(key_name);
716 return -1;
717 }
718 tmp = key_name + STATIC_CALL_TRAMP_PREFIX_LEN - STATIC_CALL_KEY_PREFIX_LEN;
719 memcpy(tmp, STATIC_CALL_KEY_PREFIX_STR, STATIC_CALL_KEY_PREFIX_LEN);
720
721 key_sym = find_symbol_by_name(file->elf, tmp);
722 if (!key_sym) {
723 if (!opts.module) {
724 WARN("static_call: can't find static_call_key symbol: %s", tmp);
725 free(key_name);
726 return -1;
727 }
728
729 /*
730 * For modules(), the key might not be exported, which
731 * means the module can make static calls but isn't
732 * allowed to change them.
733 *
734 * In that case we temporarily set the key to be the
735 * trampoline address. This is fixed up in
736 * static_call_add_module().
737 */
738 key_sym = insn_call_dest(insn);
739 }
740 free(key_name);
741
742 /* populate reloc for 'key' */
743 if (!elf_init_reloc_data_sym(file->elf, sec,
744 idx * sizeof(*site) + 4,
745 (idx * 2) + 1, key_sym,
746 is_sibling_call(insn) * STATIC_CALL_SITE_TAIL))
747 return -1;
748
749 idx++;
750 }
751
752 return 0;
753 }
754
create_retpoline_sites_sections(struct objtool_file * file)755 static int create_retpoline_sites_sections(struct objtool_file *file)
756 {
757 struct instruction *insn;
758 struct section *sec;
759 int idx;
760
761 sec = find_section_by_name(file->elf, ".retpoline_sites");
762 if (sec) {
763 WARN("file already has .retpoline_sites, skipping");
764 return 0;
765 }
766
767 idx = 0;
768 list_for_each_entry(insn, &file->retpoline_call_list, call_node)
769 idx++;
770
771 if (!idx)
772 return 0;
773
774 sec = elf_create_section_pair(file->elf, ".retpoline_sites",
775 sizeof(int), idx, idx);
776 if (!sec)
777 return -1;
778
779 idx = 0;
780 list_for_each_entry(insn, &file->retpoline_call_list, call_node) {
781
782 if (!elf_init_reloc_text_sym(file->elf, sec,
783 idx * sizeof(int), idx,
784 insn->sec, insn->offset))
785 return -1;
786
787 idx++;
788 }
789
790 return 0;
791 }
792
create_return_sites_sections(struct objtool_file * file)793 static int create_return_sites_sections(struct objtool_file *file)
794 {
795 struct instruction *insn;
796 struct section *sec;
797 int idx;
798
799 sec = find_section_by_name(file->elf, ".return_sites");
800 if (sec) {
801 WARN("file already has .return_sites, skipping");
802 return 0;
803 }
804
805 idx = 0;
806 list_for_each_entry(insn, &file->return_thunk_list, call_node)
807 idx++;
808
809 if (!idx)
810 return 0;
811
812 sec = elf_create_section_pair(file->elf, ".return_sites",
813 sizeof(int), idx, idx);
814 if (!sec)
815 return -1;
816
817 idx = 0;
818 list_for_each_entry(insn, &file->return_thunk_list, call_node) {
819
820 if (!elf_init_reloc_text_sym(file->elf, sec,
821 idx * sizeof(int), idx,
822 insn->sec, insn->offset))
823 return -1;
824
825 idx++;
826 }
827
828 return 0;
829 }
830
create_ibt_endbr_seal_sections(struct objtool_file * file)831 static int create_ibt_endbr_seal_sections(struct objtool_file *file)
832 {
833 struct instruction *insn;
834 struct section *sec;
835 int idx;
836
837 sec = find_section_by_name(file->elf, ".ibt_endbr_seal");
838 if (sec) {
839 WARN("file already has .ibt_endbr_seal, skipping");
840 return 0;
841 }
842
843 idx = 0;
844 list_for_each_entry(insn, &file->endbr_list, call_node)
845 idx++;
846
847 if (opts.stats) {
848 printf("ibt: ENDBR at function start: %d\n", file->nr_endbr);
849 printf("ibt: ENDBR inside functions: %d\n", file->nr_endbr_int);
850 printf("ibt: superfluous ENDBR: %d\n", idx);
851 }
852
853 if (!idx)
854 return 0;
855
856 sec = elf_create_section_pair(file->elf, ".ibt_endbr_seal",
857 sizeof(int), idx, idx);
858 if (!sec)
859 return -1;
860
861 idx = 0;
862 list_for_each_entry(insn, &file->endbr_list, call_node) {
863
864 int *site = (int *)sec->data->d_buf + idx;
865 struct symbol *sym = insn->sym;
866 *site = 0;
867
868 if (opts.module && sym && sym->type == STT_FUNC &&
869 insn->offset == sym->offset &&
870 (!strcmp(sym->name, "init_module") ||
871 !strcmp(sym->name, "cleanup_module")))
872 WARN("%s(): not an indirect call target", sym->name);
873
874 if (!elf_init_reloc_text_sym(file->elf, sec,
875 idx * sizeof(int), idx,
876 insn->sec, insn->offset))
877 return -1;
878
879 idx++;
880 }
881
882 return 0;
883 }
884
create_cfi_sections(struct objtool_file * file)885 static int create_cfi_sections(struct objtool_file *file)
886 {
887 struct section *sec;
888 struct symbol *sym;
889 int idx;
890
891 sec = find_section_by_name(file->elf, ".cfi_sites");
892 if (sec) {
893 INIT_LIST_HEAD(&file->call_list);
894 WARN("file already has .cfi_sites section, skipping");
895 return 0;
896 }
897
898 idx = 0;
899 for_each_sym(file, sym) {
900 if (sym->type != STT_FUNC)
901 continue;
902
903 if (strncmp(sym->name, "__cfi_", 6))
904 continue;
905
906 idx++;
907 }
908
909 sec = elf_create_section_pair(file->elf, ".cfi_sites",
910 sizeof(unsigned int), idx, idx);
911 if (!sec)
912 return -1;
913
914 idx = 0;
915 for_each_sym(file, sym) {
916 if (sym->type != STT_FUNC)
917 continue;
918
919 if (strncmp(sym->name, "__cfi_", 6))
920 continue;
921
922 if (!elf_init_reloc_text_sym(file->elf, sec,
923 idx * sizeof(unsigned int), idx,
924 sym->sec, sym->offset))
925 return -1;
926
927 idx++;
928 }
929
930 return 0;
931 }
932
create_mcount_loc_sections(struct objtool_file * file)933 static int create_mcount_loc_sections(struct objtool_file *file)
934 {
935 size_t addr_size = elf_addr_size(file->elf);
936 struct instruction *insn;
937 struct section *sec;
938 int idx;
939
940 sec = find_section_by_name(file->elf, "__mcount_loc");
941 if (sec) {
942 INIT_LIST_HEAD(&file->mcount_loc_list);
943 WARN("file already has __mcount_loc section, skipping");
944 return 0;
945 }
946
947 if (list_empty(&file->mcount_loc_list))
948 return 0;
949
950 idx = 0;
951 list_for_each_entry(insn, &file->mcount_loc_list, call_node)
952 idx++;
953
954 sec = elf_create_section_pair(file->elf, "__mcount_loc", addr_size,
955 idx, idx);
956 if (!sec)
957 return -1;
958
959 sec->sh.sh_addralign = addr_size;
960
961 idx = 0;
962 list_for_each_entry(insn, &file->mcount_loc_list, call_node) {
963
964 struct reloc *reloc;
965
966 reloc = elf_init_reloc_text_sym(file->elf, sec, idx * addr_size, idx,
967 insn->sec, insn->offset);
968 if (!reloc)
969 return -1;
970
971 set_reloc_type(file->elf, reloc, addr_size == 8 ? R_ABS64 : R_ABS32);
972
973 idx++;
974 }
975
976 return 0;
977 }
978
create_direct_call_sections(struct objtool_file * file)979 static int create_direct_call_sections(struct objtool_file *file)
980 {
981 struct instruction *insn;
982 struct section *sec;
983 int idx;
984
985 sec = find_section_by_name(file->elf, ".call_sites");
986 if (sec) {
987 INIT_LIST_HEAD(&file->call_list);
988 WARN("file already has .call_sites section, skipping");
989 return 0;
990 }
991
992 if (list_empty(&file->call_list))
993 return 0;
994
995 idx = 0;
996 list_for_each_entry(insn, &file->call_list, call_node)
997 idx++;
998
999 sec = elf_create_section_pair(file->elf, ".call_sites",
1000 sizeof(unsigned int), idx, idx);
1001 if (!sec)
1002 return -1;
1003
1004 idx = 0;
1005 list_for_each_entry(insn, &file->call_list, call_node) {
1006
1007 if (!elf_init_reloc_text_sym(file->elf, sec,
1008 idx * sizeof(unsigned int), idx,
1009 insn->sec, insn->offset))
1010 return -1;
1011
1012 idx++;
1013 }
1014
1015 return 0;
1016 }
1017
1018 /*
1019 * Warnings shouldn't be reported for ignored functions.
1020 */
add_ignores(struct objtool_file * file)1021 static void add_ignores(struct objtool_file *file)
1022 {
1023 struct instruction *insn;
1024 struct section *rsec;
1025 struct symbol *func;
1026 struct reloc *reloc;
1027
1028 rsec = find_section_by_name(file->elf, ".rela.discard.func_stack_frame_non_standard");
1029 if (!rsec)
1030 return;
1031
1032 for_each_reloc(rsec, reloc) {
1033 switch (reloc->sym->type) {
1034 case STT_FUNC:
1035 func = reloc->sym;
1036 break;
1037
1038 case STT_SECTION:
1039 func = find_func_by_offset(reloc->sym->sec, reloc_addend(reloc));
1040 if (!func)
1041 continue;
1042 break;
1043
1044 default:
1045 WARN("unexpected relocation symbol type in %s: %d",
1046 rsec->name, reloc->sym->type);
1047 continue;
1048 }
1049
1050 func_for_each_insn(file, func, insn)
1051 insn->ignore = true;
1052 }
1053 }
1054
1055 /*
1056 * This is a whitelist of functions that is allowed to be called with AC set.
1057 * The list is meant to be minimal and only contains compiler instrumentation
1058 * ABI and a few functions used to implement *_{to,from}_user() functions.
1059 *
1060 * These functions must not directly change AC, but may PUSHF/POPF.
1061 */
1062 static const char *uaccess_safe_builtin[] = {
1063 /* KASAN */
1064 "kasan_report",
1065 "kasan_check_range",
1066 /* KASAN out-of-line */
1067 "__asan_loadN_noabort",
1068 "__asan_load1_noabort",
1069 "__asan_load2_noabort",
1070 "__asan_load4_noabort",
1071 "__asan_load8_noabort",
1072 "__asan_load16_noabort",
1073 "__asan_storeN_noabort",
1074 "__asan_store1_noabort",
1075 "__asan_store2_noabort",
1076 "__asan_store4_noabort",
1077 "__asan_store8_noabort",
1078 "__asan_store16_noabort",
1079 "__kasan_check_read",
1080 "__kasan_check_write",
1081 /* KASAN in-line */
1082 "__asan_report_load_n_noabort",
1083 "__asan_report_load1_noabort",
1084 "__asan_report_load2_noabort",
1085 "__asan_report_load4_noabort",
1086 "__asan_report_load8_noabort",
1087 "__asan_report_load16_noabort",
1088 "__asan_report_store_n_noabort",
1089 "__asan_report_store1_noabort",
1090 "__asan_report_store2_noabort",
1091 "__asan_report_store4_noabort",
1092 "__asan_report_store8_noabort",
1093 "__asan_report_store16_noabort",
1094 /* KCSAN */
1095 "__kcsan_check_access",
1096 "__kcsan_mb",
1097 "__kcsan_wmb",
1098 "__kcsan_rmb",
1099 "__kcsan_release",
1100 "kcsan_found_watchpoint",
1101 "kcsan_setup_watchpoint",
1102 "kcsan_check_scoped_accesses",
1103 "kcsan_disable_current",
1104 "kcsan_enable_current_nowarn",
1105 /* KCSAN/TSAN */
1106 "__tsan_func_entry",
1107 "__tsan_func_exit",
1108 "__tsan_read_range",
1109 "__tsan_write_range",
1110 "__tsan_read1",
1111 "__tsan_read2",
1112 "__tsan_read4",
1113 "__tsan_read8",
1114 "__tsan_read16",
1115 "__tsan_write1",
1116 "__tsan_write2",
1117 "__tsan_write4",
1118 "__tsan_write8",
1119 "__tsan_write16",
1120 "__tsan_read_write1",
1121 "__tsan_read_write2",
1122 "__tsan_read_write4",
1123 "__tsan_read_write8",
1124 "__tsan_read_write16",
1125 "__tsan_volatile_read1",
1126 "__tsan_volatile_read2",
1127 "__tsan_volatile_read4",
1128 "__tsan_volatile_read8",
1129 "__tsan_volatile_read16",
1130 "__tsan_volatile_write1",
1131 "__tsan_volatile_write2",
1132 "__tsan_volatile_write4",
1133 "__tsan_volatile_write8",
1134 "__tsan_volatile_write16",
1135 "__tsan_atomic8_load",
1136 "__tsan_atomic16_load",
1137 "__tsan_atomic32_load",
1138 "__tsan_atomic64_load",
1139 "__tsan_atomic8_store",
1140 "__tsan_atomic16_store",
1141 "__tsan_atomic32_store",
1142 "__tsan_atomic64_store",
1143 "__tsan_atomic8_exchange",
1144 "__tsan_atomic16_exchange",
1145 "__tsan_atomic32_exchange",
1146 "__tsan_atomic64_exchange",
1147 "__tsan_atomic8_fetch_add",
1148 "__tsan_atomic16_fetch_add",
1149 "__tsan_atomic32_fetch_add",
1150 "__tsan_atomic64_fetch_add",
1151 "__tsan_atomic8_fetch_sub",
1152 "__tsan_atomic16_fetch_sub",
1153 "__tsan_atomic32_fetch_sub",
1154 "__tsan_atomic64_fetch_sub",
1155 "__tsan_atomic8_fetch_and",
1156 "__tsan_atomic16_fetch_and",
1157 "__tsan_atomic32_fetch_and",
1158 "__tsan_atomic64_fetch_and",
1159 "__tsan_atomic8_fetch_or",
1160 "__tsan_atomic16_fetch_or",
1161 "__tsan_atomic32_fetch_or",
1162 "__tsan_atomic64_fetch_or",
1163 "__tsan_atomic8_fetch_xor",
1164 "__tsan_atomic16_fetch_xor",
1165 "__tsan_atomic32_fetch_xor",
1166 "__tsan_atomic64_fetch_xor",
1167 "__tsan_atomic8_fetch_nand",
1168 "__tsan_atomic16_fetch_nand",
1169 "__tsan_atomic32_fetch_nand",
1170 "__tsan_atomic64_fetch_nand",
1171 "__tsan_atomic8_compare_exchange_strong",
1172 "__tsan_atomic16_compare_exchange_strong",
1173 "__tsan_atomic32_compare_exchange_strong",
1174 "__tsan_atomic64_compare_exchange_strong",
1175 "__tsan_atomic8_compare_exchange_weak",
1176 "__tsan_atomic16_compare_exchange_weak",
1177 "__tsan_atomic32_compare_exchange_weak",
1178 "__tsan_atomic64_compare_exchange_weak",
1179 "__tsan_atomic8_compare_exchange_val",
1180 "__tsan_atomic16_compare_exchange_val",
1181 "__tsan_atomic32_compare_exchange_val",
1182 "__tsan_atomic64_compare_exchange_val",
1183 "__tsan_atomic_thread_fence",
1184 "__tsan_atomic_signal_fence",
1185 "__tsan_unaligned_read16",
1186 "__tsan_unaligned_write16",
1187 /* KCOV */
1188 "write_comp_data",
1189 "check_kcov_mode",
1190 "__sanitizer_cov_trace_pc",
1191 "__sanitizer_cov_trace_const_cmp1",
1192 "__sanitizer_cov_trace_const_cmp2",
1193 "__sanitizer_cov_trace_const_cmp4",
1194 "__sanitizer_cov_trace_const_cmp8",
1195 "__sanitizer_cov_trace_cmp1",
1196 "__sanitizer_cov_trace_cmp2",
1197 "__sanitizer_cov_trace_cmp4",
1198 "__sanitizer_cov_trace_cmp8",
1199 "__sanitizer_cov_trace_switch",
1200 /* KMSAN */
1201 "kmsan_copy_to_user",
1202 "kmsan_report",
1203 "kmsan_unpoison_entry_regs",
1204 "kmsan_unpoison_memory",
1205 "__msan_chain_origin",
1206 "__msan_get_context_state",
1207 "__msan_instrument_asm_store",
1208 "__msan_metadata_ptr_for_load_1",
1209 "__msan_metadata_ptr_for_load_2",
1210 "__msan_metadata_ptr_for_load_4",
1211 "__msan_metadata_ptr_for_load_8",
1212 "__msan_metadata_ptr_for_load_n",
1213 "__msan_metadata_ptr_for_store_1",
1214 "__msan_metadata_ptr_for_store_2",
1215 "__msan_metadata_ptr_for_store_4",
1216 "__msan_metadata_ptr_for_store_8",
1217 "__msan_metadata_ptr_for_store_n",
1218 "__msan_poison_alloca",
1219 "__msan_warning",
1220 /* UBSAN */
1221 "ubsan_type_mismatch_common",
1222 "__ubsan_handle_type_mismatch",
1223 "__ubsan_handle_type_mismatch_v1",
1224 "__ubsan_handle_shift_out_of_bounds",
1225 "__ubsan_handle_load_invalid_value",
1226 /* STACKLEAK */
1227 "stackleak_track_stack",
1228 /* TRACE_BRANCH_PROFILING */
1229 "ftrace_likely_update",
1230 /* STACKPROTECTOR */
1231 "__stack_chk_fail",
1232 /* misc */
1233 "csum_partial_copy_generic",
1234 "copy_mc_fragile",
1235 "copy_mc_fragile_handle_tail",
1236 "copy_mc_enhanced_fast_string",
1237 "rep_stos_alternative",
1238 "rep_movs_alternative",
1239 "__copy_user_nocache",
1240 NULL
1241 };
1242
add_uaccess_safe(struct objtool_file * file)1243 static void add_uaccess_safe(struct objtool_file *file)
1244 {
1245 struct symbol *func;
1246 const char **name;
1247
1248 if (!opts.uaccess)
1249 return;
1250
1251 for (name = uaccess_safe_builtin; *name; name++) {
1252 func = find_symbol_by_name(file->elf, *name);
1253 if (!func)
1254 continue;
1255
1256 func->uaccess_safe = true;
1257 }
1258 }
1259
1260 /*
1261 * FIXME: For now, just ignore any alternatives which add retpolines. This is
1262 * a temporary hack, as it doesn't allow ORC to unwind from inside a retpoline.
1263 * But it at least allows objtool to understand the control flow *around* the
1264 * retpoline.
1265 */
add_ignore_alternatives(struct objtool_file * file)1266 static int add_ignore_alternatives(struct objtool_file *file)
1267 {
1268 struct section *rsec;
1269 struct reloc *reloc;
1270 struct instruction *insn;
1271
1272 rsec = find_section_by_name(file->elf, ".rela.discard.ignore_alts");
1273 if (!rsec)
1274 return 0;
1275
1276 for_each_reloc(rsec, reloc) {
1277 if (reloc->sym->type != STT_SECTION) {
1278 WARN("unexpected relocation symbol type in %s", rsec->name);
1279 return -1;
1280 }
1281
1282 insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
1283 if (!insn) {
1284 WARN("bad .discard.ignore_alts entry");
1285 return -1;
1286 }
1287
1288 insn->ignore_alts = true;
1289 }
1290
1291 return 0;
1292 }
1293
1294 /*
1295 * Symbols that replace INSN_CALL_DYNAMIC, every (tail) call to such a symbol
1296 * will be added to the .retpoline_sites section.
1297 */
arch_is_retpoline(struct symbol * sym)1298 __weak bool arch_is_retpoline(struct symbol *sym)
1299 {
1300 return false;
1301 }
1302
1303 /*
1304 * Symbols that replace INSN_RETURN, every (tail) call to such a symbol
1305 * will be added to the .return_sites section.
1306 */
arch_is_rethunk(struct symbol * sym)1307 __weak bool arch_is_rethunk(struct symbol *sym)
1308 {
1309 return false;
1310 }
1311
1312 /*
1313 * Symbols that are embedded inside other instructions, because sometimes crazy
1314 * code exists. These are mostly ignored for validation purposes.
1315 */
arch_is_embedded_insn(struct symbol * sym)1316 __weak bool arch_is_embedded_insn(struct symbol *sym)
1317 {
1318 return false;
1319 }
1320
insn_reloc(struct objtool_file * file,struct instruction * insn)1321 static struct reloc *insn_reloc(struct objtool_file *file, struct instruction *insn)
1322 {
1323 struct reloc *reloc;
1324
1325 if (insn->no_reloc)
1326 return NULL;
1327
1328 if (!file)
1329 return NULL;
1330
1331 reloc = find_reloc_by_dest_range(file->elf, insn->sec,
1332 insn->offset, insn->len);
1333 if (!reloc) {
1334 insn->no_reloc = 1;
1335 return NULL;
1336 }
1337
1338 return reloc;
1339 }
1340
remove_insn_ops(struct instruction * insn)1341 static void remove_insn_ops(struct instruction *insn)
1342 {
1343 struct stack_op *op, *next;
1344
1345 for (op = insn->stack_ops; op; op = next) {
1346 next = op->next;
1347 free(op);
1348 }
1349 insn->stack_ops = NULL;
1350 }
1351
annotate_call_site(struct objtool_file * file,struct instruction * insn,bool sibling)1352 static void annotate_call_site(struct objtool_file *file,
1353 struct instruction *insn, bool sibling)
1354 {
1355 struct reloc *reloc = insn_reloc(file, insn);
1356 struct symbol *sym = insn_call_dest(insn);
1357
1358 if (!sym)
1359 sym = reloc->sym;
1360
1361 /*
1362 * Alternative replacement code is just template code which is
1363 * sometimes copied to the original instruction. For now, don't
1364 * annotate it. (In the future we might consider annotating the
1365 * original instruction if/when it ever makes sense to do so.)
1366 */
1367 if (!strcmp(insn->sec->name, ".altinstr_replacement"))
1368 return;
1369
1370 if (sym->static_call_tramp) {
1371 list_add_tail(&insn->call_node, &file->static_call_list);
1372 return;
1373 }
1374
1375 if (sym->retpoline_thunk) {
1376 list_add_tail(&insn->call_node, &file->retpoline_call_list);
1377 return;
1378 }
1379
1380 /*
1381 * Many compilers cannot disable KCOV or sanitizer calls with a function
1382 * attribute so they need a little help, NOP out any such calls from
1383 * noinstr text.
1384 */
1385 if (opts.hack_noinstr && insn->sec->noinstr && sym->profiling_func) {
1386 if (reloc)
1387 set_reloc_type(file->elf, reloc, R_NONE);
1388
1389 elf_write_insn(file->elf, insn->sec,
1390 insn->offset, insn->len,
1391 sibling ? arch_ret_insn(insn->len)
1392 : arch_nop_insn(insn->len));
1393
1394 insn->type = sibling ? INSN_RETURN : INSN_NOP;
1395
1396 if (sibling) {
1397 /*
1398 * We've replaced the tail-call JMP insn by two new
1399 * insn: RET; INT3, except we only have a single struct
1400 * insn here. Mark it retpoline_safe to avoid the SLS
1401 * warning, instead of adding another insn.
1402 */
1403 insn->retpoline_safe = true;
1404 }
1405
1406 return;
1407 }
1408
1409 if (opts.mcount && sym->fentry) {
1410 if (sibling)
1411 WARN_INSN(insn, "tail call to __fentry__ !?!?");
1412 if (opts.mnop) {
1413 if (reloc)
1414 set_reloc_type(file->elf, reloc, R_NONE);
1415
1416 elf_write_insn(file->elf, insn->sec,
1417 insn->offset, insn->len,
1418 arch_nop_insn(insn->len));
1419
1420 insn->type = INSN_NOP;
1421 }
1422
1423 list_add_tail(&insn->call_node, &file->mcount_loc_list);
1424 return;
1425 }
1426
1427 if (insn->type == INSN_CALL && !insn->sec->init)
1428 list_add_tail(&insn->call_node, &file->call_list);
1429
1430 if (!sibling && dead_end_function(file, sym))
1431 insn->dead_end = true;
1432 }
1433
add_call_dest(struct objtool_file * file,struct instruction * insn,struct symbol * dest,bool sibling)1434 static void add_call_dest(struct objtool_file *file, struct instruction *insn,
1435 struct symbol *dest, bool sibling)
1436 {
1437 insn->_call_dest = dest;
1438 if (!dest)
1439 return;
1440
1441 /*
1442 * Whatever stack impact regular CALLs have, should be undone
1443 * by the RETURN of the called function.
1444 *
1445 * Annotated intra-function calls retain the stack_ops but
1446 * are converted to JUMP, see read_intra_function_calls().
1447 */
1448 remove_insn_ops(insn);
1449
1450 annotate_call_site(file, insn, sibling);
1451 }
1452
add_retpoline_call(struct objtool_file * file,struct instruction * insn)1453 static void add_retpoline_call(struct objtool_file *file, struct instruction *insn)
1454 {
1455 /*
1456 * Retpoline calls/jumps are really dynamic calls/jumps in disguise,
1457 * so convert them accordingly.
1458 */
1459 switch (insn->type) {
1460 case INSN_CALL:
1461 insn->type = INSN_CALL_DYNAMIC;
1462 break;
1463 case INSN_JUMP_UNCONDITIONAL:
1464 insn->type = INSN_JUMP_DYNAMIC;
1465 break;
1466 case INSN_JUMP_CONDITIONAL:
1467 insn->type = INSN_JUMP_DYNAMIC_CONDITIONAL;
1468 break;
1469 default:
1470 return;
1471 }
1472
1473 insn->retpoline_safe = true;
1474
1475 /*
1476 * Whatever stack impact regular CALLs have, should be undone
1477 * by the RETURN of the called function.
1478 *
1479 * Annotated intra-function calls retain the stack_ops but
1480 * are converted to JUMP, see read_intra_function_calls().
1481 */
1482 remove_insn_ops(insn);
1483
1484 annotate_call_site(file, insn, false);
1485 }
1486
add_return_call(struct objtool_file * file,struct instruction * insn,bool add)1487 static void add_return_call(struct objtool_file *file, struct instruction *insn, bool add)
1488 {
1489 /*
1490 * Return thunk tail calls are really just returns in disguise,
1491 * so convert them accordingly.
1492 */
1493 insn->type = INSN_RETURN;
1494 insn->retpoline_safe = true;
1495
1496 if (add)
1497 list_add_tail(&insn->call_node, &file->return_thunk_list);
1498 }
1499
is_first_func_insn(struct objtool_file * file,struct instruction * insn,struct symbol * sym)1500 static bool is_first_func_insn(struct objtool_file *file,
1501 struct instruction *insn, struct symbol *sym)
1502 {
1503 if (insn->offset == sym->offset)
1504 return true;
1505
1506 /* Allow direct CALL/JMP past ENDBR */
1507 if (opts.ibt) {
1508 struct instruction *prev = prev_insn_same_sym(file, insn);
1509
1510 if (prev && prev->type == INSN_ENDBR &&
1511 insn->offset == sym->offset + prev->len)
1512 return true;
1513 }
1514
1515 return false;
1516 }
1517
1518 /*
1519 * A sibling call is a tail-call to another symbol -- to differentiate from a
1520 * recursive tail-call which is to the same symbol.
1521 */
jump_is_sibling_call(struct objtool_file * file,struct instruction * from,struct instruction * to)1522 static bool jump_is_sibling_call(struct objtool_file *file,
1523 struct instruction *from, struct instruction *to)
1524 {
1525 struct symbol *fs = from->sym;
1526 struct symbol *ts = to->sym;
1527
1528 /* Not a sibling call if from/to a symbol hole */
1529 if (!fs || !ts)
1530 return false;
1531
1532 /* Not a sibling call if not targeting the start of a symbol. */
1533 if (!is_first_func_insn(file, to, ts))
1534 return false;
1535
1536 /* Disallow sibling calls into STT_NOTYPE */
1537 if (ts->type == STT_NOTYPE)
1538 return false;
1539
1540 /* Must not be self to be a sibling */
1541 return fs->pfunc != ts->pfunc;
1542 }
1543
1544 /*
1545 * Find the destination instructions for all jumps.
1546 */
add_jump_destinations(struct objtool_file * file)1547 static int add_jump_destinations(struct objtool_file *file)
1548 {
1549 struct instruction *insn, *jump_dest;
1550 struct reloc *reloc;
1551 struct section *dest_sec;
1552 unsigned long dest_off;
1553
1554 for_each_insn(file, insn) {
1555 struct symbol *func = insn_func(insn);
1556
1557 if (insn->jump_dest) {
1558 /*
1559 * handle_group_alt() may have previously set
1560 * 'jump_dest' for some alternatives.
1561 */
1562 continue;
1563 }
1564 if (!is_static_jump(insn))
1565 continue;
1566
1567 reloc = insn_reloc(file, insn);
1568 if (!reloc) {
1569 dest_sec = insn->sec;
1570 dest_off = arch_jump_destination(insn);
1571 } else if (reloc->sym->type == STT_SECTION) {
1572 dest_sec = reloc->sym->sec;
1573 dest_off = arch_dest_reloc_offset(reloc_addend(reloc));
1574 } else if (reloc->sym->retpoline_thunk) {
1575 add_retpoline_call(file, insn);
1576 continue;
1577 } else if (reloc->sym->return_thunk) {
1578 add_return_call(file, insn, true);
1579 continue;
1580 } else if (func) {
1581 /*
1582 * External sibling call or internal sibling call with
1583 * STT_FUNC reloc.
1584 */
1585 add_call_dest(file, insn, reloc->sym, true);
1586 continue;
1587 } else if (reloc->sym->sec->idx) {
1588 dest_sec = reloc->sym->sec;
1589 dest_off = reloc->sym->sym.st_value +
1590 arch_dest_reloc_offset(reloc_addend(reloc));
1591 } else {
1592 /* non-func asm code jumping to another file */
1593 continue;
1594 }
1595
1596 jump_dest = find_insn(file, dest_sec, dest_off);
1597 if (!jump_dest) {
1598 struct symbol *sym = find_symbol_by_offset(dest_sec, dest_off);
1599
1600 /*
1601 * This is a special case for retbleed_untrain_ret().
1602 * It jumps to __x86_return_thunk(), but objtool
1603 * can't find the thunk's starting RET
1604 * instruction, because the RET is also in the
1605 * middle of another instruction. Objtool only
1606 * knows about the outer instruction.
1607 */
1608 if (sym && sym->embedded_insn) {
1609 add_return_call(file, insn, false);
1610 continue;
1611 }
1612
1613 /*
1614 * GCOV/KCOV dead code can jump to the end of the
1615 * function/section.
1616 */
1617 if (file->ignore_unreachables && func &&
1618 dest_sec == insn->sec &&
1619 dest_off == func->offset + func->len)
1620 continue;
1621
1622 WARN_INSN(insn, "can't find jump dest instruction at %s+0x%lx",
1623 dest_sec->name, dest_off);
1624 return -1;
1625 }
1626
1627 /*
1628 * Cross-function jump.
1629 */
1630 if (func && insn_func(jump_dest) && func != insn_func(jump_dest)) {
1631
1632 /*
1633 * For GCC 8+, create parent/child links for any cold
1634 * subfunctions. This is _mostly_ redundant with a
1635 * similar initialization in read_symbols().
1636 *
1637 * If a function has aliases, we want the *first* such
1638 * function in the symbol table to be the subfunction's
1639 * parent. In that case we overwrite the
1640 * initialization done in read_symbols().
1641 *
1642 * However this code can't completely replace the
1643 * read_symbols() code because this doesn't detect the
1644 * case where the parent function's only reference to a
1645 * subfunction is through a jump table.
1646 */
1647 if (!strstr(func->name, ".cold") &&
1648 strstr(insn_func(jump_dest)->name, ".cold")) {
1649 func->cfunc = insn_func(jump_dest);
1650 insn_func(jump_dest)->pfunc = func;
1651 }
1652 }
1653
1654 if (jump_is_sibling_call(file, insn, jump_dest)) {
1655 /*
1656 * Internal sibling call without reloc or with
1657 * STT_SECTION reloc.
1658 */
1659 add_call_dest(file, insn, insn_func(jump_dest), true);
1660 continue;
1661 }
1662
1663 insn->jump_dest = jump_dest;
1664 }
1665
1666 return 0;
1667 }
1668
find_call_destination(struct section * sec,unsigned long offset)1669 static struct symbol *find_call_destination(struct section *sec, unsigned long offset)
1670 {
1671 struct symbol *call_dest;
1672
1673 call_dest = find_func_by_offset(sec, offset);
1674 if (!call_dest)
1675 call_dest = find_symbol_by_offset(sec, offset);
1676
1677 return call_dest;
1678 }
1679
1680 /*
1681 * Find the destination instructions for all calls.
1682 */
add_call_destinations(struct objtool_file * file)1683 static int add_call_destinations(struct objtool_file *file)
1684 {
1685 struct instruction *insn;
1686 unsigned long dest_off;
1687 struct symbol *dest;
1688 struct reloc *reloc;
1689
1690 for_each_insn(file, insn) {
1691 if (insn->type != INSN_CALL)
1692 continue;
1693
1694 reloc = insn_reloc(file, insn);
1695 if (!reloc) {
1696 dest_off = arch_jump_destination(insn);
1697 dest = find_call_destination(insn->sec, dest_off);
1698
1699 add_call_dest(file, insn, dest, false);
1700
1701 if (insn->ignore)
1702 continue;
1703
1704 if (!insn_call_dest(insn)) {
1705 WARN_INSN(insn, "unannotated intra-function call");
1706 return -1;
1707 }
1708
1709 if (insn_func(insn) && insn_call_dest(insn)->type != STT_FUNC) {
1710 WARN_INSN(insn, "unsupported call to non-function");
1711 return -1;
1712 }
1713
1714 } else if (reloc->sym->type == STT_SECTION) {
1715 dest_off = arch_dest_reloc_offset(reloc_addend(reloc));
1716 dest = find_call_destination(reloc->sym->sec, dest_off);
1717 if (!dest) {
1718 WARN_INSN(insn, "can't find call dest symbol at %s+0x%lx",
1719 reloc->sym->sec->name, dest_off);
1720 return -1;
1721 }
1722
1723 add_call_dest(file, insn, dest, false);
1724
1725 } else if (reloc->sym->retpoline_thunk) {
1726 add_retpoline_call(file, insn);
1727
1728 } else
1729 add_call_dest(file, insn, reloc->sym, false);
1730 }
1731
1732 return 0;
1733 }
1734
1735 /*
1736 * The .alternatives section requires some extra special care over and above
1737 * other special sections because alternatives are patched in place.
1738 */
handle_group_alt(struct objtool_file * file,struct special_alt * special_alt,struct instruction * orig_insn,struct instruction ** new_insn)1739 static int handle_group_alt(struct objtool_file *file,
1740 struct special_alt *special_alt,
1741 struct instruction *orig_insn,
1742 struct instruction **new_insn)
1743 {
1744 struct instruction *last_new_insn = NULL, *insn, *nop = NULL;
1745 struct alt_group *orig_alt_group, *new_alt_group;
1746 unsigned long dest_off;
1747
1748 orig_alt_group = orig_insn->alt_group;
1749 if (!orig_alt_group) {
1750 struct instruction *last_orig_insn = NULL;
1751
1752 orig_alt_group = malloc(sizeof(*orig_alt_group));
1753 if (!orig_alt_group) {
1754 WARN("malloc failed");
1755 return -1;
1756 }
1757 orig_alt_group->cfi = calloc(special_alt->orig_len,
1758 sizeof(struct cfi_state *));
1759 if (!orig_alt_group->cfi) {
1760 WARN("calloc failed");
1761 return -1;
1762 }
1763
1764 insn = orig_insn;
1765 sec_for_each_insn_from(file, insn) {
1766 if (insn->offset >= special_alt->orig_off + special_alt->orig_len)
1767 break;
1768
1769 insn->alt_group = orig_alt_group;
1770 last_orig_insn = insn;
1771 }
1772 orig_alt_group->orig_group = NULL;
1773 orig_alt_group->first_insn = orig_insn;
1774 orig_alt_group->last_insn = last_orig_insn;
1775 orig_alt_group->nop = NULL;
1776 } else {
1777 if (orig_alt_group->last_insn->offset + orig_alt_group->last_insn->len -
1778 orig_alt_group->first_insn->offset != special_alt->orig_len) {
1779 WARN_INSN(orig_insn, "weirdly overlapping alternative! %ld != %d",
1780 orig_alt_group->last_insn->offset +
1781 orig_alt_group->last_insn->len -
1782 orig_alt_group->first_insn->offset,
1783 special_alt->orig_len);
1784 return -1;
1785 }
1786 }
1787
1788 new_alt_group = malloc(sizeof(*new_alt_group));
1789 if (!new_alt_group) {
1790 WARN("malloc failed");
1791 return -1;
1792 }
1793
1794 if (special_alt->new_len < special_alt->orig_len) {
1795 /*
1796 * Insert a fake nop at the end to make the replacement
1797 * alt_group the same size as the original. This is needed to
1798 * allow propagate_alt_cfi() to do its magic. When the last
1799 * instruction affects the stack, the instruction after it (the
1800 * nop) will propagate the new state to the shared CFI array.
1801 */
1802 nop = malloc(sizeof(*nop));
1803 if (!nop) {
1804 WARN("malloc failed");
1805 return -1;
1806 }
1807 memset(nop, 0, sizeof(*nop));
1808
1809 nop->sec = special_alt->new_sec;
1810 nop->offset = special_alt->new_off + special_alt->new_len;
1811 nop->len = special_alt->orig_len - special_alt->new_len;
1812 nop->type = INSN_NOP;
1813 nop->sym = orig_insn->sym;
1814 nop->alt_group = new_alt_group;
1815 nop->ignore = orig_insn->ignore_alts;
1816 }
1817
1818 if (!special_alt->new_len) {
1819 *new_insn = nop;
1820 goto end;
1821 }
1822
1823 insn = *new_insn;
1824 sec_for_each_insn_from(file, insn) {
1825 struct reloc *alt_reloc;
1826
1827 if (insn->offset >= special_alt->new_off + special_alt->new_len)
1828 break;
1829
1830 last_new_insn = insn;
1831
1832 insn->ignore = orig_insn->ignore_alts;
1833 insn->sym = orig_insn->sym;
1834 insn->alt_group = new_alt_group;
1835
1836 /*
1837 * Since alternative replacement code is copy/pasted by the
1838 * kernel after applying relocations, generally such code can't
1839 * have relative-address relocation references to outside the
1840 * .altinstr_replacement section, unless the arch's
1841 * alternatives code can adjust the relative offsets
1842 * accordingly.
1843 */
1844 alt_reloc = insn_reloc(file, insn);
1845 if (alt_reloc && arch_pc_relative_reloc(alt_reloc) &&
1846 !arch_support_alt_relocation(special_alt, insn, alt_reloc)) {
1847
1848 WARN_INSN(insn, "unsupported relocation in alternatives section");
1849 return -1;
1850 }
1851
1852 if (!is_static_jump(insn))
1853 continue;
1854
1855 if (!insn->immediate)
1856 continue;
1857
1858 dest_off = arch_jump_destination(insn);
1859 if (dest_off == special_alt->new_off + special_alt->new_len) {
1860 insn->jump_dest = next_insn_same_sec(file, orig_alt_group->last_insn);
1861 if (!insn->jump_dest) {
1862 WARN_INSN(insn, "can't find alternative jump destination");
1863 return -1;
1864 }
1865 }
1866 }
1867
1868 if (!last_new_insn) {
1869 WARN_FUNC("can't find last new alternative instruction",
1870 special_alt->new_sec, special_alt->new_off);
1871 return -1;
1872 }
1873
1874 end:
1875 new_alt_group->orig_group = orig_alt_group;
1876 new_alt_group->first_insn = *new_insn;
1877 new_alt_group->last_insn = last_new_insn;
1878 new_alt_group->nop = nop;
1879 new_alt_group->cfi = orig_alt_group->cfi;
1880 return 0;
1881 }
1882
1883 /*
1884 * A jump table entry can either convert a nop to a jump or a jump to a nop.
1885 * If the original instruction is a jump, make the alt entry an effective nop
1886 * by just skipping the original instruction.
1887 */
handle_jump_alt(struct objtool_file * file,struct special_alt * special_alt,struct instruction * orig_insn,struct instruction ** new_insn)1888 static int handle_jump_alt(struct objtool_file *file,
1889 struct special_alt *special_alt,
1890 struct instruction *orig_insn,
1891 struct instruction **new_insn)
1892 {
1893 if (orig_insn->type != INSN_JUMP_UNCONDITIONAL &&
1894 orig_insn->type != INSN_NOP) {
1895
1896 WARN_INSN(orig_insn, "unsupported instruction at jump label");
1897 return -1;
1898 }
1899
1900 if (opts.hack_jump_label && special_alt->key_addend & 2) {
1901 struct reloc *reloc = insn_reloc(file, orig_insn);
1902
1903 if (reloc)
1904 set_reloc_type(file->elf, reloc, R_NONE);
1905 elf_write_insn(file->elf, orig_insn->sec,
1906 orig_insn->offset, orig_insn->len,
1907 arch_nop_insn(orig_insn->len));
1908 orig_insn->type = INSN_NOP;
1909 }
1910
1911 if (orig_insn->type == INSN_NOP) {
1912 if (orig_insn->len == 2)
1913 file->jl_nop_short++;
1914 else
1915 file->jl_nop_long++;
1916
1917 return 0;
1918 }
1919
1920 if (orig_insn->len == 2)
1921 file->jl_short++;
1922 else
1923 file->jl_long++;
1924
1925 *new_insn = next_insn_same_sec(file, orig_insn);
1926 return 0;
1927 }
1928
1929 /*
1930 * Read all the special sections which have alternate instructions which can be
1931 * patched in or redirected to at runtime. Each instruction having alternate
1932 * instruction(s) has them added to its insn->alts list, which will be
1933 * traversed in validate_branch().
1934 */
add_special_section_alts(struct objtool_file * file)1935 static int add_special_section_alts(struct objtool_file *file)
1936 {
1937 struct list_head special_alts;
1938 struct instruction *orig_insn, *new_insn;
1939 struct special_alt *special_alt, *tmp;
1940 struct alternative *alt;
1941 int ret;
1942
1943 ret = special_get_alts(file->elf, &special_alts);
1944 if (ret)
1945 return ret;
1946
1947 list_for_each_entry_safe(special_alt, tmp, &special_alts, list) {
1948
1949 orig_insn = find_insn(file, special_alt->orig_sec,
1950 special_alt->orig_off);
1951 if (!orig_insn) {
1952 WARN_FUNC("special: can't find orig instruction",
1953 special_alt->orig_sec, special_alt->orig_off);
1954 ret = -1;
1955 goto out;
1956 }
1957
1958 new_insn = NULL;
1959 if (!special_alt->group || special_alt->new_len) {
1960 new_insn = find_insn(file, special_alt->new_sec,
1961 special_alt->new_off);
1962 if (!new_insn) {
1963 WARN_FUNC("special: can't find new instruction",
1964 special_alt->new_sec,
1965 special_alt->new_off);
1966 ret = -1;
1967 goto out;
1968 }
1969 }
1970
1971 if (special_alt->group) {
1972 if (!special_alt->orig_len) {
1973 WARN_INSN(orig_insn, "empty alternative entry");
1974 continue;
1975 }
1976
1977 ret = handle_group_alt(file, special_alt, orig_insn,
1978 &new_insn);
1979 if (ret)
1980 goto out;
1981 } else if (special_alt->jump_or_nop) {
1982 ret = handle_jump_alt(file, special_alt, orig_insn,
1983 &new_insn);
1984 if (ret)
1985 goto out;
1986 }
1987
1988 alt = malloc(sizeof(*alt));
1989 if (!alt) {
1990 WARN("malloc failed");
1991 ret = -1;
1992 goto out;
1993 }
1994
1995 alt->insn = new_insn;
1996 alt->skip_orig = special_alt->skip_orig;
1997 orig_insn->ignore_alts |= special_alt->skip_alt;
1998 alt->next = orig_insn->alts;
1999 orig_insn->alts = alt;
2000
2001 list_del(&special_alt->list);
2002 free(special_alt);
2003 }
2004
2005 if (opts.stats) {
2006 printf("jl\\\tNOP\tJMP\n");
2007 printf("short:\t%ld\t%ld\n", file->jl_nop_short, file->jl_short);
2008 printf("long:\t%ld\t%ld\n", file->jl_nop_long, file->jl_long);
2009 }
2010
2011 out:
2012 return ret;
2013 }
2014
add_jump_table(struct objtool_file * file,struct instruction * insn,struct reloc * next_table)2015 static int add_jump_table(struct objtool_file *file, struct instruction *insn,
2016 struct reloc *next_table)
2017 {
2018 struct symbol *pfunc = insn_func(insn)->pfunc;
2019 struct reloc *table = insn_jump_table(insn);
2020 struct instruction *dest_insn;
2021 unsigned int prev_offset = 0;
2022 struct reloc *reloc = table;
2023 struct alternative *alt;
2024
2025 /*
2026 * Each @reloc is a switch table relocation which points to the target
2027 * instruction.
2028 */
2029 for_each_reloc_from(table->sec, reloc) {
2030
2031 /* Check for the end of the table: */
2032 if (reloc != table && reloc == next_table)
2033 break;
2034
2035 /* Make sure the table entries are consecutive: */
2036 if (prev_offset && reloc_offset(reloc) != prev_offset + 8)
2037 break;
2038
2039 /* Detect function pointers from contiguous objects: */
2040 if (reloc->sym->sec == pfunc->sec &&
2041 reloc_addend(reloc) == pfunc->offset)
2042 break;
2043
2044 /*
2045 * Clang sometimes leaves dangling unused jump table entries
2046 * which point to the end of the function. Ignore them.
2047 */
2048 if (reloc->sym->sec == pfunc->sec &&
2049 reloc_addend(reloc) == pfunc->offset + pfunc->len)
2050 goto next;
2051
2052 dest_insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
2053 if (!dest_insn)
2054 break;
2055
2056 /* Make sure the destination is in the same function: */
2057 if (!insn_func(dest_insn) || insn_func(dest_insn)->pfunc != pfunc)
2058 break;
2059
2060 alt = malloc(sizeof(*alt));
2061 if (!alt) {
2062 WARN("malloc failed");
2063 return -1;
2064 }
2065
2066 alt->insn = dest_insn;
2067 alt->next = insn->alts;
2068 insn->alts = alt;
2069 next:
2070 prev_offset = reloc_offset(reloc);
2071 }
2072
2073 if (!prev_offset) {
2074 WARN_INSN(insn, "can't find switch jump table");
2075 return -1;
2076 }
2077
2078 return 0;
2079 }
2080
2081 /*
2082 * find_jump_table() - Given a dynamic jump, find the switch jump table
2083 * associated with it.
2084 */
find_jump_table(struct objtool_file * file,struct symbol * func,struct instruction * insn)2085 static struct reloc *find_jump_table(struct objtool_file *file,
2086 struct symbol *func,
2087 struct instruction *insn)
2088 {
2089 struct reloc *table_reloc;
2090 struct instruction *dest_insn, *orig_insn = insn;
2091
2092 /*
2093 * Backward search using the @first_jump_src links, these help avoid
2094 * much of the 'in between' code. Which avoids us getting confused by
2095 * it.
2096 */
2097 for (;
2098 insn && insn_func(insn) && insn_func(insn)->pfunc == func;
2099 insn = insn->first_jump_src ?: prev_insn_same_sym(file, insn)) {
2100
2101 if (insn != orig_insn && insn->type == INSN_JUMP_DYNAMIC)
2102 break;
2103
2104 /* allow small jumps within the range */
2105 if (insn->type == INSN_JUMP_UNCONDITIONAL &&
2106 insn->jump_dest &&
2107 (insn->jump_dest->offset <= insn->offset ||
2108 insn->jump_dest->offset > orig_insn->offset))
2109 break;
2110
2111 table_reloc = arch_find_switch_table(file, insn);
2112 if (!table_reloc)
2113 continue;
2114 dest_insn = find_insn(file, table_reloc->sym->sec, reloc_addend(table_reloc));
2115 if (!dest_insn || !insn_func(dest_insn) || insn_func(dest_insn)->pfunc != func)
2116 continue;
2117
2118 return table_reloc;
2119 }
2120
2121 return NULL;
2122 }
2123
2124 /*
2125 * First pass: Mark the head of each jump table so that in the next pass,
2126 * we know when a given jump table ends and the next one starts.
2127 */
mark_func_jump_tables(struct objtool_file * file,struct symbol * func)2128 static void mark_func_jump_tables(struct objtool_file *file,
2129 struct symbol *func)
2130 {
2131 struct instruction *insn, *last = NULL;
2132 struct reloc *reloc;
2133
2134 func_for_each_insn(file, func, insn) {
2135 if (!last)
2136 last = insn;
2137
2138 /*
2139 * Store back-pointers for unconditional forward jumps such
2140 * that find_jump_table() can back-track using those and
2141 * avoid some potentially confusing code.
2142 */
2143 if (insn->type == INSN_JUMP_UNCONDITIONAL && insn->jump_dest &&
2144 insn->offset > last->offset &&
2145 insn->jump_dest->offset > insn->offset &&
2146 !insn->jump_dest->first_jump_src) {
2147
2148 insn->jump_dest->first_jump_src = insn;
2149 last = insn->jump_dest;
2150 }
2151
2152 if (insn->type != INSN_JUMP_DYNAMIC)
2153 continue;
2154
2155 reloc = find_jump_table(file, func, insn);
2156 if (reloc)
2157 insn->_jump_table = reloc;
2158 }
2159 }
2160
add_func_jump_tables(struct objtool_file * file,struct symbol * func)2161 static int add_func_jump_tables(struct objtool_file *file,
2162 struct symbol *func)
2163 {
2164 struct instruction *insn, *insn_t1 = NULL, *insn_t2;
2165 int ret = 0;
2166
2167 func_for_each_insn(file, func, insn) {
2168 if (!insn_jump_table(insn))
2169 continue;
2170
2171 if (!insn_t1) {
2172 insn_t1 = insn;
2173 continue;
2174 }
2175
2176 insn_t2 = insn;
2177
2178 ret = add_jump_table(file, insn_t1, insn_jump_table(insn_t2));
2179 if (ret)
2180 return ret;
2181
2182 insn_t1 = insn_t2;
2183 }
2184
2185 if (insn_t1)
2186 ret = add_jump_table(file, insn_t1, NULL);
2187
2188 return ret;
2189 }
2190
2191 /*
2192 * For some switch statements, gcc generates a jump table in the .rodata
2193 * section which contains a list of addresses within the function to jump to.
2194 * This finds these jump tables and adds them to the insn->alts lists.
2195 */
add_jump_table_alts(struct objtool_file * file)2196 static int add_jump_table_alts(struct objtool_file *file)
2197 {
2198 struct symbol *func;
2199 int ret;
2200
2201 if (!file->rodata)
2202 return 0;
2203
2204 for_each_sym(file, func) {
2205 if (func->type != STT_FUNC)
2206 continue;
2207
2208 mark_func_jump_tables(file, func);
2209 ret = add_func_jump_tables(file, func);
2210 if (ret)
2211 return ret;
2212 }
2213
2214 return 0;
2215 }
2216
set_func_state(struct cfi_state * state)2217 static void set_func_state(struct cfi_state *state)
2218 {
2219 state->cfa = initial_func_cfi.cfa;
2220 memcpy(&state->regs, &initial_func_cfi.regs,
2221 CFI_NUM_REGS * sizeof(struct cfi_reg));
2222 state->stack_size = initial_func_cfi.cfa.offset;
2223 state->type = UNWIND_HINT_TYPE_CALL;
2224 }
2225
read_unwind_hints(struct objtool_file * file)2226 static int read_unwind_hints(struct objtool_file *file)
2227 {
2228 struct cfi_state cfi = init_cfi;
2229 struct section *sec;
2230 struct unwind_hint *hint;
2231 struct instruction *insn;
2232 struct reloc *reloc;
2233 int i;
2234
2235 sec = find_section_by_name(file->elf, ".discard.unwind_hints");
2236 if (!sec)
2237 return 0;
2238
2239 if (!sec->rsec) {
2240 WARN("missing .rela.discard.unwind_hints section");
2241 return -1;
2242 }
2243
2244 if (sec->sh.sh_size % sizeof(struct unwind_hint)) {
2245 WARN("struct unwind_hint size mismatch");
2246 return -1;
2247 }
2248
2249 file->hints = true;
2250
2251 for (i = 0; i < sec->sh.sh_size / sizeof(struct unwind_hint); i++) {
2252 hint = (struct unwind_hint *)sec->data->d_buf + i;
2253
2254 reloc = find_reloc_by_dest(file->elf, sec, i * sizeof(*hint));
2255 if (!reloc) {
2256 WARN("can't find reloc for unwind_hints[%d]", i);
2257 return -1;
2258 }
2259
2260 insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
2261 if (!insn) {
2262 WARN("can't find insn for unwind_hints[%d]", i);
2263 return -1;
2264 }
2265
2266 insn->hint = true;
2267
2268 if (hint->type == UNWIND_HINT_TYPE_UNDEFINED) {
2269 insn->cfi = &force_undefined_cfi;
2270 continue;
2271 }
2272
2273 if (hint->type == UNWIND_HINT_TYPE_SAVE) {
2274 insn->hint = false;
2275 insn->save = true;
2276 continue;
2277 }
2278
2279 if (hint->type == UNWIND_HINT_TYPE_RESTORE) {
2280 insn->restore = true;
2281 continue;
2282 }
2283
2284 if (hint->type == UNWIND_HINT_TYPE_REGS_PARTIAL) {
2285 struct symbol *sym = find_symbol_by_offset(insn->sec, insn->offset);
2286
2287 if (sym && sym->bind == STB_GLOBAL) {
2288 if (opts.ibt && insn->type != INSN_ENDBR && !insn->noendbr) {
2289 WARN_INSN(insn, "UNWIND_HINT_IRET_REGS without ENDBR");
2290 }
2291 }
2292 }
2293
2294 if (hint->type == UNWIND_HINT_TYPE_FUNC) {
2295 insn->cfi = &func_cfi;
2296 continue;
2297 }
2298
2299 if (insn->cfi)
2300 cfi = *(insn->cfi);
2301
2302 if (arch_decode_hint_reg(hint->sp_reg, &cfi.cfa.base)) {
2303 WARN_INSN(insn, "unsupported unwind_hint sp base reg %d", hint->sp_reg);
2304 return -1;
2305 }
2306
2307 cfi.cfa.offset = bswap_if_needed(file->elf, hint->sp_offset);
2308 cfi.type = hint->type;
2309 cfi.signal = hint->signal;
2310
2311 insn->cfi = cfi_hash_find_or_add(&cfi);
2312 }
2313
2314 return 0;
2315 }
2316
read_noendbr_hints(struct objtool_file * file)2317 static int read_noendbr_hints(struct objtool_file *file)
2318 {
2319 struct instruction *insn;
2320 struct section *rsec;
2321 struct reloc *reloc;
2322
2323 rsec = find_section_by_name(file->elf, ".rela.discard.noendbr");
2324 if (!rsec)
2325 return 0;
2326
2327 for_each_reloc(rsec, reloc) {
2328 insn = find_insn(file, reloc->sym->sec,
2329 reloc->sym->offset + reloc_addend(reloc));
2330 if (!insn) {
2331 WARN("bad .discard.noendbr entry");
2332 return -1;
2333 }
2334
2335 insn->noendbr = 1;
2336 }
2337
2338 return 0;
2339 }
2340
read_retpoline_hints(struct objtool_file * file)2341 static int read_retpoline_hints(struct objtool_file *file)
2342 {
2343 struct section *rsec;
2344 struct instruction *insn;
2345 struct reloc *reloc;
2346
2347 rsec = find_section_by_name(file->elf, ".rela.discard.retpoline_safe");
2348 if (!rsec)
2349 return 0;
2350
2351 for_each_reloc(rsec, reloc) {
2352 if (reloc->sym->type != STT_SECTION) {
2353 WARN("unexpected relocation symbol type in %s", rsec->name);
2354 return -1;
2355 }
2356
2357 insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
2358 if (!insn) {
2359 WARN("bad .discard.retpoline_safe entry");
2360 return -1;
2361 }
2362
2363 if (insn->type != INSN_JUMP_DYNAMIC &&
2364 insn->type != INSN_CALL_DYNAMIC &&
2365 insn->type != INSN_RETURN &&
2366 insn->type != INSN_NOP) {
2367 WARN_INSN(insn, "retpoline_safe hint not an indirect jump/call/ret/nop");
2368 return -1;
2369 }
2370
2371 insn->retpoline_safe = true;
2372 }
2373
2374 return 0;
2375 }
2376
read_instr_hints(struct objtool_file * file)2377 static int read_instr_hints(struct objtool_file *file)
2378 {
2379 struct section *rsec;
2380 struct instruction *insn;
2381 struct reloc *reloc;
2382
2383 rsec = find_section_by_name(file->elf, ".rela.discard.instr_end");
2384 if (!rsec)
2385 return 0;
2386
2387 for_each_reloc(rsec, reloc) {
2388 if (reloc->sym->type != STT_SECTION) {
2389 WARN("unexpected relocation symbol type in %s", rsec->name);
2390 return -1;
2391 }
2392
2393 insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
2394 if (!insn) {
2395 WARN("bad .discard.instr_end entry");
2396 return -1;
2397 }
2398
2399 insn->instr--;
2400 }
2401
2402 rsec = find_section_by_name(file->elf, ".rela.discard.instr_begin");
2403 if (!rsec)
2404 return 0;
2405
2406 for_each_reloc(rsec, reloc) {
2407 if (reloc->sym->type != STT_SECTION) {
2408 WARN("unexpected relocation symbol type in %s", rsec->name);
2409 return -1;
2410 }
2411
2412 insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
2413 if (!insn) {
2414 WARN("bad .discard.instr_begin entry");
2415 return -1;
2416 }
2417
2418 insn->instr++;
2419 }
2420
2421 return 0;
2422 }
2423
read_validate_unret_hints(struct objtool_file * file)2424 static int read_validate_unret_hints(struct objtool_file *file)
2425 {
2426 struct section *rsec;
2427 struct instruction *insn;
2428 struct reloc *reloc;
2429
2430 rsec = find_section_by_name(file->elf, ".rela.discard.validate_unret");
2431 if (!rsec)
2432 return 0;
2433
2434 for_each_reloc(rsec, reloc) {
2435 if (reloc->sym->type != STT_SECTION) {
2436 WARN("unexpected relocation symbol type in %s", rsec->name);
2437 return -1;
2438 }
2439
2440 insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
2441 if (!insn) {
2442 WARN("bad .discard.instr_end entry");
2443 return -1;
2444 }
2445 insn->unret = 1;
2446 }
2447
2448 return 0;
2449 }
2450
2451
read_intra_function_calls(struct objtool_file * file)2452 static int read_intra_function_calls(struct objtool_file *file)
2453 {
2454 struct instruction *insn;
2455 struct section *rsec;
2456 struct reloc *reloc;
2457
2458 rsec = find_section_by_name(file->elf, ".rela.discard.intra_function_calls");
2459 if (!rsec)
2460 return 0;
2461
2462 for_each_reloc(rsec, reloc) {
2463 unsigned long dest_off;
2464
2465 if (reloc->sym->type != STT_SECTION) {
2466 WARN("unexpected relocation symbol type in %s",
2467 rsec->name);
2468 return -1;
2469 }
2470
2471 insn = find_insn(file, reloc->sym->sec, reloc_addend(reloc));
2472 if (!insn) {
2473 WARN("bad .discard.intra_function_call entry");
2474 return -1;
2475 }
2476
2477 if (insn->type != INSN_CALL) {
2478 WARN_INSN(insn, "intra_function_call not a direct call");
2479 return -1;
2480 }
2481
2482 /*
2483 * Treat intra-function CALLs as JMPs, but with a stack_op.
2484 * See add_call_destinations(), which strips stack_ops from
2485 * normal CALLs.
2486 */
2487 insn->type = INSN_JUMP_UNCONDITIONAL;
2488
2489 dest_off = arch_jump_destination(insn);
2490 insn->jump_dest = find_insn(file, insn->sec, dest_off);
2491 if (!insn->jump_dest) {
2492 WARN_INSN(insn, "can't find call dest at %s+0x%lx",
2493 insn->sec->name, dest_off);
2494 return -1;
2495 }
2496 }
2497
2498 return 0;
2499 }
2500
2501 /*
2502 * Return true if name matches an instrumentation function, where calls to that
2503 * function from noinstr code can safely be removed, but compilers won't do so.
2504 */
is_profiling_func(const char * name)2505 static bool is_profiling_func(const char *name)
2506 {
2507 /*
2508 * Many compilers cannot disable KCOV with a function attribute.
2509 */
2510 if (!strncmp(name, "__sanitizer_cov_", 16))
2511 return true;
2512
2513 /*
2514 * Some compilers currently do not remove __tsan_func_entry/exit nor
2515 * __tsan_atomic_signal_fence (used for barrier instrumentation) with
2516 * the __no_sanitize_thread attribute, remove them. Once the kernel's
2517 * minimum Clang version is 14.0, this can be removed.
2518 */
2519 if (!strncmp(name, "__tsan_func_", 12) ||
2520 !strcmp(name, "__tsan_atomic_signal_fence"))
2521 return true;
2522
2523 return false;
2524 }
2525
classify_symbols(struct objtool_file * file)2526 static int classify_symbols(struct objtool_file *file)
2527 {
2528 struct symbol *func;
2529
2530 for_each_sym(file, func) {
2531 if (func->bind != STB_GLOBAL)
2532 continue;
2533
2534 if (!strncmp(func->name, STATIC_CALL_TRAMP_PREFIX_STR,
2535 strlen(STATIC_CALL_TRAMP_PREFIX_STR)))
2536 func->static_call_tramp = true;
2537
2538 if (arch_is_retpoline(func))
2539 func->retpoline_thunk = true;
2540
2541 if (arch_is_rethunk(func))
2542 func->return_thunk = true;
2543
2544 if (arch_is_embedded_insn(func))
2545 func->embedded_insn = true;
2546
2547 if (arch_ftrace_match(func->name))
2548 func->fentry = true;
2549
2550 if (is_profiling_func(func->name))
2551 func->profiling_func = true;
2552 }
2553
2554 return 0;
2555 }
2556
mark_rodata(struct objtool_file * file)2557 static void mark_rodata(struct objtool_file *file)
2558 {
2559 struct section *sec;
2560 bool found = false;
2561
2562 /*
2563 * Search for the following rodata sections, each of which can
2564 * potentially contain jump tables:
2565 *
2566 * - .rodata: can contain GCC switch tables
2567 * - .rodata.<func>: same, if -fdata-sections is being used
2568 * - .rodata..c_jump_table: contains C annotated jump tables
2569 *
2570 * .rodata.str1.* sections are ignored; they don't contain jump tables.
2571 */
2572 for_each_sec(file, sec) {
2573 if (!strncmp(sec->name, ".rodata", 7) &&
2574 !strstr(sec->name, ".str1.")) {
2575 sec->rodata = true;
2576 found = true;
2577 }
2578 }
2579
2580 file->rodata = found;
2581 }
2582
decode_sections(struct objtool_file * file)2583 static int decode_sections(struct objtool_file *file)
2584 {
2585 int ret;
2586
2587 mark_rodata(file);
2588
2589 ret = init_pv_ops(file);
2590 if (ret)
2591 return ret;
2592
2593 /*
2594 * Must be before add_{jump_call}_destination.
2595 */
2596 ret = classify_symbols(file);
2597 if (ret)
2598 return ret;
2599
2600 ret = decode_instructions(file);
2601 if (ret)
2602 return ret;
2603
2604 add_ignores(file);
2605 add_uaccess_safe(file);
2606
2607 ret = add_ignore_alternatives(file);
2608 if (ret)
2609 return ret;
2610
2611 /*
2612 * Must be before read_unwind_hints() since that needs insn->noendbr.
2613 */
2614 ret = read_noendbr_hints(file);
2615 if (ret)
2616 return ret;
2617
2618 /*
2619 * Must be before add_jump_destinations(), which depends on 'func'
2620 * being set for alternatives, to enable proper sibling call detection.
2621 */
2622 if (opts.stackval || opts.orc || opts.uaccess || opts.noinstr) {
2623 ret = add_special_section_alts(file);
2624 if (ret)
2625 return ret;
2626 }
2627
2628 ret = add_jump_destinations(file);
2629 if (ret)
2630 return ret;
2631
2632 /*
2633 * Must be before add_call_destination(); it changes INSN_CALL to
2634 * INSN_JUMP.
2635 */
2636 ret = read_intra_function_calls(file);
2637 if (ret)
2638 return ret;
2639
2640 ret = add_call_destinations(file);
2641 if (ret)
2642 return ret;
2643
2644 /*
2645 * Must be after add_call_destinations() such that it can override
2646 * dead_end_function() marks.
2647 */
2648 ret = add_dead_ends(file);
2649 if (ret)
2650 return ret;
2651
2652 ret = add_jump_table_alts(file);
2653 if (ret)
2654 return ret;
2655
2656 ret = read_unwind_hints(file);
2657 if (ret)
2658 return ret;
2659
2660 ret = read_retpoline_hints(file);
2661 if (ret)
2662 return ret;
2663
2664 ret = read_instr_hints(file);
2665 if (ret)
2666 return ret;
2667
2668 ret = read_validate_unret_hints(file);
2669 if (ret)
2670 return ret;
2671
2672 return 0;
2673 }
2674
is_special_call(struct instruction * insn)2675 static bool is_special_call(struct instruction *insn)
2676 {
2677 if (insn->type == INSN_CALL) {
2678 struct symbol *dest = insn_call_dest(insn);
2679
2680 if (!dest)
2681 return false;
2682
2683 if (dest->fentry || dest->embedded_insn)
2684 return true;
2685 }
2686
2687 return false;
2688 }
2689
has_modified_stack_frame(struct instruction * insn,struct insn_state * state)2690 static bool has_modified_stack_frame(struct instruction *insn, struct insn_state *state)
2691 {
2692 struct cfi_state *cfi = &state->cfi;
2693 int i;
2694
2695 if (cfi->cfa.base != initial_func_cfi.cfa.base || cfi->drap)
2696 return true;
2697
2698 if (cfi->cfa.offset != initial_func_cfi.cfa.offset)
2699 return true;
2700
2701 if (cfi->stack_size != initial_func_cfi.cfa.offset)
2702 return true;
2703
2704 for (i = 0; i < CFI_NUM_REGS; i++) {
2705 if (cfi->regs[i].base != initial_func_cfi.regs[i].base ||
2706 cfi->regs[i].offset != initial_func_cfi.regs[i].offset)
2707 return true;
2708 }
2709
2710 return false;
2711 }
2712
check_reg_frame_pos(const struct cfi_reg * reg,int expected_offset)2713 static bool check_reg_frame_pos(const struct cfi_reg *reg,
2714 int expected_offset)
2715 {
2716 return reg->base == CFI_CFA &&
2717 reg->offset == expected_offset;
2718 }
2719
has_valid_stack_frame(struct insn_state * state)2720 static bool has_valid_stack_frame(struct insn_state *state)
2721 {
2722 struct cfi_state *cfi = &state->cfi;
2723
2724 if (cfi->cfa.base == CFI_BP &&
2725 check_reg_frame_pos(&cfi->regs[CFI_BP], -cfi->cfa.offset) &&
2726 check_reg_frame_pos(&cfi->regs[CFI_RA], -cfi->cfa.offset + 8))
2727 return true;
2728
2729 if (cfi->drap && cfi->regs[CFI_BP].base == CFI_BP)
2730 return true;
2731
2732 return false;
2733 }
2734
update_cfi_state_regs(struct instruction * insn,struct cfi_state * cfi,struct stack_op * op)2735 static int update_cfi_state_regs(struct instruction *insn,
2736 struct cfi_state *cfi,
2737 struct stack_op *op)
2738 {
2739 struct cfi_reg *cfa = &cfi->cfa;
2740
2741 if (cfa->base != CFI_SP && cfa->base != CFI_SP_INDIRECT)
2742 return 0;
2743
2744 /* push */
2745 if (op->dest.type == OP_DEST_PUSH || op->dest.type == OP_DEST_PUSHF)
2746 cfa->offset += 8;
2747
2748 /* pop */
2749 if (op->src.type == OP_SRC_POP || op->src.type == OP_SRC_POPF)
2750 cfa->offset -= 8;
2751
2752 /* add immediate to sp */
2753 if (op->dest.type == OP_DEST_REG && op->src.type == OP_SRC_ADD &&
2754 op->dest.reg == CFI_SP && op->src.reg == CFI_SP)
2755 cfa->offset -= op->src.offset;
2756
2757 return 0;
2758 }
2759
save_reg(struct cfi_state * cfi,unsigned char reg,int base,int offset)2760 static void save_reg(struct cfi_state *cfi, unsigned char reg, int base, int offset)
2761 {
2762 if (arch_callee_saved_reg(reg) &&
2763 cfi->regs[reg].base == CFI_UNDEFINED) {
2764 cfi->regs[reg].base = base;
2765 cfi->regs[reg].offset = offset;
2766 }
2767 }
2768
restore_reg(struct cfi_state * cfi,unsigned char reg)2769 static void restore_reg(struct cfi_state *cfi, unsigned char reg)
2770 {
2771 cfi->regs[reg].base = initial_func_cfi.regs[reg].base;
2772 cfi->regs[reg].offset = initial_func_cfi.regs[reg].offset;
2773 }
2774
2775 /*
2776 * A note about DRAP stack alignment:
2777 *
2778 * GCC has the concept of a DRAP register, which is used to help keep track of
2779 * the stack pointer when aligning the stack. r10 or r13 is used as the DRAP
2780 * register. The typical DRAP pattern is:
2781 *
2782 * 4c 8d 54 24 08 lea 0x8(%rsp),%r10
2783 * 48 83 e4 c0 and $0xffffffffffffffc0,%rsp
2784 * 41 ff 72 f8 pushq -0x8(%r10)
2785 * 55 push %rbp
2786 * 48 89 e5 mov %rsp,%rbp
2787 * (more pushes)
2788 * 41 52 push %r10
2789 * ...
2790 * 41 5a pop %r10
2791 * (more pops)
2792 * 5d pop %rbp
2793 * 49 8d 62 f8 lea -0x8(%r10),%rsp
2794 * c3 retq
2795 *
2796 * There are some variations in the epilogues, like:
2797 *
2798 * 5b pop %rbx
2799 * 41 5a pop %r10
2800 * 41 5c pop %r12
2801 * 41 5d pop %r13
2802 * 41 5e pop %r14
2803 * c9 leaveq
2804 * 49 8d 62 f8 lea -0x8(%r10),%rsp
2805 * c3 retq
2806 *
2807 * and:
2808 *
2809 * 4c 8b 55 e8 mov -0x18(%rbp),%r10
2810 * 48 8b 5d e0 mov -0x20(%rbp),%rbx
2811 * 4c 8b 65 f0 mov -0x10(%rbp),%r12
2812 * 4c 8b 6d f8 mov -0x8(%rbp),%r13
2813 * c9 leaveq
2814 * 49 8d 62 f8 lea -0x8(%r10),%rsp
2815 * c3 retq
2816 *
2817 * Sometimes r13 is used as the DRAP register, in which case it's saved and
2818 * restored beforehand:
2819 *
2820 * 41 55 push %r13
2821 * 4c 8d 6c 24 10 lea 0x10(%rsp),%r13
2822 * 48 83 e4 f0 and $0xfffffffffffffff0,%rsp
2823 * ...
2824 * 49 8d 65 f0 lea -0x10(%r13),%rsp
2825 * 41 5d pop %r13
2826 * c3 retq
2827 */
update_cfi_state(struct instruction * insn,struct instruction * next_insn,struct cfi_state * cfi,struct stack_op * op)2828 static int update_cfi_state(struct instruction *insn,
2829 struct instruction *next_insn,
2830 struct cfi_state *cfi, struct stack_op *op)
2831 {
2832 struct cfi_reg *cfa = &cfi->cfa;
2833 struct cfi_reg *regs = cfi->regs;
2834
2835 /* ignore UNWIND_HINT_UNDEFINED regions */
2836 if (cfi->force_undefined)
2837 return 0;
2838
2839 /* stack operations don't make sense with an undefined CFA */
2840 if (cfa->base == CFI_UNDEFINED) {
2841 if (insn_func(insn)) {
2842 WARN_INSN(insn, "undefined stack state");
2843 return -1;
2844 }
2845 return 0;
2846 }
2847
2848 if (cfi->type == UNWIND_HINT_TYPE_REGS ||
2849 cfi->type == UNWIND_HINT_TYPE_REGS_PARTIAL)
2850 return update_cfi_state_regs(insn, cfi, op);
2851
2852 switch (op->dest.type) {
2853
2854 case OP_DEST_REG:
2855 switch (op->src.type) {
2856
2857 case OP_SRC_REG:
2858 if (op->src.reg == CFI_SP && op->dest.reg == CFI_BP &&
2859 cfa->base == CFI_SP &&
2860 check_reg_frame_pos(®s[CFI_BP], -cfa->offset)) {
2861
2862 /* mov %rsp, %rbp */
2863 cfa->base = op->dest.reg;
2864 cfi->bp_scratch = false;
2865 }
2866
2867 else if (op->src.reg == CFI_SP &&
2868 op->dest.reg == CFI_BP && cfi->drap) {
2869
2870 /* drap: mov %rsp, %rbp */
2871 regs[CFI_BP].base = CFI_BP;
2872 regs[CFI_BP].offset = -cfi->stack_size;
2873 cfi->bp_scratch = false;
2874 }
2875
2876 else if (op->src.reg == CFI_SP && cfa->base == CFI_SP) {
2877
2878 /*
2879 * mov %rsp, %reg
2880 *
2881 * This is needed for the rare case where GCC
2882 * does:
2883 *
2884 * mov %rsp, %rax
2885 * ...
2886 * mov %rax, %rsp
2887 */
2888 cfi->vals[op->dest.reg].base = CFI_CFA;
2889 cfi->vals[op->dest.reg].offset = -cfi->stack_size;
2890 }
2891
2892 else if (op->src.reg == CFI_BP && op->dest.reg == CFI_SP &&
2893 (cfa->base == CFI_BP || cfa->base == cfi->drap_reg)) {
2894
2895 /*
2896 * mov %rbp, %rsp
2897 *
2898 * Restore the original stack pointer (Clang).
2899 */
2900 cfi->stack_size = -cfi->regs[CFI_BP].offset;
2901 }
2902
2903 else if (op->dest.reg == cfa->base) {
2904
2905 /* mov %reg, %rsp */
2906 if (cfa->base == CFI_SP &&
2907 cfi->vals[op->src.reg].base == CFI_CFA) {
2908
2909 /*
2910 * This is needed for the rare case
2911 * where GCC does something dumb like:
2912 *
2913 * lea 0x8(%rsp), %rcx
2914 * ...
2915 * mov %rcx, %rsp
2916 */
2917 cfa->offset = -cfi->vals[op->src.reg].offset;
2918 cfi->stack_size = cfa->offset;
2919
2920 } else if (cfa->base == CFI_SP &&
2921 cfi->vals[op->src.reg].base == CFI_SP_INDIRECT &&
2922 cfi->vals[op->src.reg].offset == cfa->offset) {
2923
2924 /*
2925 * Stack swizzle:
2926 *
2927 * 1: mov %rsp, (%[tos])
2928 * 2: mov %[tos], %rsp
2929 * ...
2930 * 3: pop %rsp
2931 *
2932 * Where:
2933 *
2934 * 1 - places a pointer to the previous
2935 * stack at the Top-of-Stack of the
2936 * new stack.
2937 *
2938 * 2 - switches to the new stack.
2939 *
2940 * 3 - pops the Top-of-Stack to restore
2941 * the original stack.
2942 *
2943 * Note: we set base to SP_INDIRECT
2944 * here and preserve offset. Therefore
2945 * when the unwinder reaches ToS it
2946 * will dereference SP and then add the
2947 * offset to find the next frame, IOW:
2948 * (%rsp) + offset.
2949 */
2950 cfa->base = CFI_SP_INDIRECT;
2951
2952 } else {
2953 cfa->base = CFI_UNDEFINED;
2954 cfa->offset = 0;
2955 }
2956 }
2957
2958 else if (op->dest.reg == CFI_SP &&
2959 cfi->vals[op->src.reg].base == CFI_SP_INDIRECT &&
2960 cfi->vals[op->src.reg].offset == cfa->offset) {
2961
2962 /*
2963 * The same stack swizzle case 2) as above. But
2964 * because we can't change cfa->base, case 3)
2965 * will become a regular POP. Pretend we're a
2966 * PUSH so things don't go unbalanced.
2967 */
2968 cfi->stack_size += 8;
2969 }
2970
2971
2972 break;
2973
2974 case OP_SRC_ADD:
2975 if (op->dest.reg == CFI_SP && op->src.reg == CFI_SP) {
2976
2977 /* add imm, %rsp */
2978 cfi->stack_size -= op->src.offset;
2979 if (cfa->base == CFI_SP)
2980 cfa->offset -= op->src.offset;
2981 break;
2982 }
2983
2984 if (op->dest.reg == CFI_SP && op->src.reg == CFI_BP) {
2985
2986 /* lea disp(%rbp), %rsp */
2987 cfi->stack_size = -(op->src.offset + regs[CFI_BP].offset);
2988 break;
2989 }
2990
2991 if (op->src.reg == CFI_SP && cfa->base == CFI_SP) {
2992
2993 /* drap: lea disp(%rsp), %drap */
2994 cfi->drap_reg = op->dest.reg;
2995
2996 /*
2997 * lea disp(%rsp), %reg
2998 *
2999 * This is needed for the rare case where GCC
3000 * does something dumb like:
3001 *
3002 * lea 0x8(%rsp), %rcx
3003 * ...
3004 * mov %rcx, %rsp
3005 */
3006 cfi->vals[op->dest.reg].base = CFI_CFA;
3007 cfi->vals[op->dest.reg].offset = \
3008 -cfi->stack_size + op->src.offset;
3009
3010 break;
3011 }
3012
3013 if (cfi->drap && op->dest.reg == CFI_SP &&
3014 op->src.reg == cfi->drap_reg) {
3015
3016 /* drap: lea disp(%drap), %rsp */
3017 cfa->base = CFI_SP;
3018 cfa->offset = cfi->stack_size = -op->src.offset;
3019 cfi->drap_reg = CFI_UNDEFINED;
3020 cfi->drap = false;
3021 break;
3022 }
3023
3024 if (op->dest.reg == cfi->cfa.base && !(next_insn && next_insn->hint)) {
3025 WARN_INSN(insn, "unsupported stack register modification");
3026 return -1;
3027 }
3028
3029 break;
3030
3031 case OP_SRC_AND:
3032 if (op->dest.reg != CFI_SP ||
3033 (cfi->drap_reg != CFI_UNDEFINED && cfa->base != CFI_SP) ||
3034 (cfi->drap_reg == CFI_UNDEFINED && cfa->base != CFI_BP)) {
3035 WARN_INSN(insn, "unsupported stack pointer realignment");
3036 return -1;
3037 }
3038
3039 if (cfi->drap_reg != CFI_UNDEFINED) {
3040 /* drap: and imm, %rsp */
3041 cfa->base = cfi->drap_reg;
3042 cfa->offset = cfi->stack_size = 0;
3043 cfi->drap = true;
3044 }
3045
3046 /*
3047 * Older versions of GCC (4.8ish) realign the stack
3048 * without DRAP, with a frame pointer.
3049 */
3050
3051 break;
3052
3053 case OP_SRC_POP:
3054 case OP_SRC_POPF:
3055 if (op->dest.reg == CFI_SP && cfa->base == CFI_SP_INDIRECT) {
3056
3057 /* pop %rsp; # restore from a stack swizzle */
3058 cfa->base = CFI_SP;
3059 break;
3060 }
3061
3062 if (!cfi->drap && op->dest.reg == cfa->base) {
3063
3064 /* pop %rbp */
3065 cfa->base = CFI_SP;
3066 }
3067
3068 if (cfi->drap && cfa->base == CFI_BP_INDIRECT &&
3069 op->dest.reg == cfi->drap_reg &&
3070 cfi->drap_offset == -cfi->stack_size) {
3071
3072 /* drap: pop %drap */
3073 cfa->base = cfi->drap_reg;
3074 cfa->offset = 0;
3075 cfi->drap_offset = -1;
3076
3077 } else if (cfi->stack_size == -regs[op->dest.reg].offset) {
3078
3079 /* pop %reg */
3080 restore_reg(cfi, op->dest.reg);
3081 }
3082
3083 cfi->stack_size -= 8;
3084 if (cfa->base == CFI_SP)
3085 cfa->offset -= 8;
3086
3087 break;
3088
3089 case OP_SRC_REG_INDIRECT:
3090 if (!cfi->drap && op->dest.reg == cfa->base &&
3091 op->dest.reg == CFI_BP) {
3092
3093 /* mov disp(%rsp), %rbp */
3094 cfa->base = CFI_SP;
3095 cfa->offset = cfi->stack_size;
3096 }
3097
3098 if (cfi->drap && op->src.reg == CFI_BP &&
3099 op->src.offset == cfi->drap_offset) {
3100
3101 /* drap: mov disp(%rbp), %drap */
3102 cfa->base = cfi->drap_reg;
3103 cfa->offset = 0;
3104 cfi->drap_offset = -1;
3105 }
3106
3107 if (cfi->drap && op->src.reg == CFI_BP &&
3108 op->src.offset == regs[op->dest.reg].offset) {
3109
3110 /* drap: mov disp(%rbp), %reg */
3111 restore_reg(cfi, op->dest.reg);
3112
3113 } else if (op->src.reg == cfa->base &&
3114 op->src.offset == regs[op->dest.reg].offset + cfa->offset) {
3115
3116 /* mov disp(%rbp), %reg */
3117 /* mov disp(%rsp), %reg */
3118 restore_reg(cfi, op->dest.reg);
3119
3120 } else if (op->src.reg == CFI_SP &&
3121 op->src.offset == regs[op->dest.reg].offset + cfi->stack_size) {
3122
3123 /* mov disp(%rsp), %reg */
3124 restore_reg(cfi, op->dest.reg);
3125 }
3126
3127 break;
3128
3129 default:
3130 WARN_INSN(insn, "unknown stack-related instruction");
3131 return -1;
3132 }
3133
3134 break;
3135
3136 case OP_DEST_PUSH:
3137 case OP_DEST_PUSHF:
3138 cfi->stack_size += 8;
3139 if (cfa->base == CFI_SP)
3140 cfa->offset += 8;
3141
3142 if (op->src.type != OP_SRC_REG)
3143 break;
3144
3145 if (cfi->drap) {
3146 if (op->src.reg == cfa->base && op->src.reg == cfi->drap_reg) {
3147
3148 /* drap: push %drap */
3149 cfa->base = CFI_BP_INDIRECT;
3150 cfa->offset = -cfi->stack_size;
3151
3152 /* save drap so we know when to restore it */
3153 cfi->drap_offset = -cfi->stack_size;
3154
3155 } else if (op->src.reg == CFI_BP && cfa->base == cfi->drap_reg) {
3156
3157 /* drap: push %rbp */
3158 cfi->stack_size = 0;
3159
3160 } else {
3161
3162 /* drap: push %reg */
3163 save_reg(cfi, op->src.reg, CFI_BP, -cfi->stack_size);
3164 }
3165
3166 } else {
3167
3168 /* push %reg */
3169 save_reg(cfi, op->src.reg, CFI_CFA, -cfi->stack_size);
3170 }
3171
3172 /* detect when asm code uses rbp as a scratch register */
3173 if (opts.stackval && insn_func(insn) && op->src.reg == CFI_BP &&
3174 cfa->base != CFI_BP)
3175 cfi->bp_scratch = true;
3176 break;
3177
3178 case OP_DEST_REG_INDIRECT:
3179
3180 if (cfi->drap) {
3181 if (op->src.reg == cfa->base && op->src.reg == cfi->drap_reg) {
3182
3183 /* drap: mov %drap, disp(%rbp) */
3184 cfa->base = CFI_BP_INDIRECT;
3185 cfa->offset = op->dest.offset;
3186
3187 /* save drap offset so we know when to restore it */
3188 cfi->drap_offset = op->dest.offset;
3189 } else {
3190
3191 /* drap: mov reg, disp(%rbp) */
3192 save_reg(cfi, op->src.reg, CFI_BP, op->dest.offset);
3193 }
3194
3195 } else if (op->dest.reg == cfa->base) {
3196
3197 /* mov reg, disp(%rbp) */
3198 /* mov reg, disp(%rsp) */
3199 save_reg(cfi, op->src.reg, CFI_CFA,
3200 op->dest.offset - cfi->cfa.offset);
3201
3202 } else if (op->dest.reg == CFI_SP) {
3203
3204 /* mov reg, disp(%rsp) */
3205 save_reg(cfi, op->src.reg, CFI_CFA,
3206 op->dest.offset - cfi->stack_size);
3207
3208 } else if (op->src.reg == CFI_SP && op->dest.offset == 0) {
3209
3210 /* mov %rsp, (%reg); # setup a stack swizzle. */
3211 cfi->vals[op->dest.reg].base = CFI_SP_INDIRECT;
3212 cfi->vals[op->dest.reg].offset = cfa->offset;
3213 }
3214
3215 break;
3216
3217 case OP_DEST_MEM:
3218 if (op->src.type != OP_SRC_POP && op->src.type != OP_SRC_POPF) {
3219 WARN_INSN(insn, "unknown stack-related memory operation");
3220 return -1;
3221 }
3222
3223 /* pop mem */
3224 cfi->stack_size -= 8;
3225 if (cfa->base == CFI_SP)
3226 cfa->offset -= 8;
3227
3228 break;
3229
3230 default:
3231 WARN_INSN(insn, "unknown stack-related instruction");
3232 return -1;
3233 }
3234
3235 return 0;
3236 }
3237
3238 /*
3239 * The stack layouts of alternatives instructions can sometimes diverge when
3240 * they have stack modifications. That's fine as long as the potential stack
3241 * layouts don't conflict at any given potential instruction boundary.
3242 *
3243 * Flatten the CFIs of the different alternative code streams (both original
3244 * and replacement) into a single shared CFI array which can be used to detect
3245 * conflicts and nicely feed a linear array of ORC entries to the unwinder.
3246 */
propagate_alt_cfi(struct objtool_file * file,struct instruction * insn)3247 static int propagate_alt_cfi(struct objtool_file *file, struct instruction *insn)
3248 {
3249 struct cfi_state **alt_cfi;
3250 int group_off;
3251
3252 if (!insn->alt_group)
3253 return 0;
3254
3255 if (!insn->cfi) {
3256 WARN("CFI missing");
3257 return -1;
3258 }
3259
3260 alt_cfi = insn->alt_group->cfi;
3261 group_off = insn->offset - insn->alt_group->first_insn->offset;
3262
3263 if (!alt_cfi[group_off]) {
3264 alt_cfi[group_off] = insn->cfi;
3265 } else {
3266 if (cficmp(alt_cfi[group_off], insn->cfi)) {
3267 struct alt_group *orig_group = insn->alt_group->orig_group ?: insn->alt_group;
3268 struct instruction *orig = orig_group->first_insn;
3269 char *where = offstr(insn->sec, insn->offset);
3270 WARN_INSN(orig, "stack layout conflict in alternatives: %s", where);
3271 free(where);
3272 return -1;
3273 }
3274 }
3275
3276 return 0;
3277 }
3278
handle_insn_ops(struct instruction * insn,struct instruction * next_insn,struct insn_state * state)3279 static int handle_insn_ops(struct instruction *insn,
3280 struct instruction *next_insn,
3281 struct insn_state *state)
3282 {
3283 struct stack_op *op;
3284
3285 for (op = insn->stack_ops; op; op = op->next) {
3286
3287 if (update_cfi_state(insn, next_insn, &state->cfi, op))
3288 return 1;
3289
3290 if (!opts.uaccess || !insn->alt_group)
3291 continue;
3292
3293 if (op->dest.type == OP_DEST_PUSHF) {
3294 if (!state->uaccess_stack) {
3295 state->uaccess_stack = 1;
3296 } else if (state->uaccess_stack >> 31) {
3297 WARN_INSN(insn, "PUSHF stack exhausted");
3298 return 1;
3299 }
3300 state->uaccess_stack <<= 1;
3301 state->uaccess_stack |= state->uaccess;
3302 }
3303
3304 if (op->src.type == OP_SRC_POPF) {
3305 if (state->uaccess_stack) {
3306 state->uaccess = state->uaccess_stack & 1;
3307 state->uaccess_stack >>= 1;
3308 if (state->uaccess_stack == 1)
3309 state->uaccess_stack = 0;
3310 }
3311 }
3312 }
3313
3314 return 0;
3315 }
3316
insn_cfi_match(struct instruction * insn,struct cfi_state * cfi2)3317 static bool insn_cfi_match(struct instruction *insn, struct cfi_state *cfi2)
3318 {
3319 struct cfi_state *cfi1 = insn->cfi;
3320 int i;
3321
3322 if (!cfi1) {
3323 WARN("CFI missing");
3324 return false;
3325 }
3326
3327 if (memcmp(&cfi1->cfa, &cfi2->cfa, sizeof(cfi1->cfa))) {
3328
3329 WARN_INSN(insn, "stack state mismatch: cfa1=%d%+d cfa2=%d%+d",
3330 cfi1->cfa.base, cfi1->cfa.offset,
3331 cfi2->cfa.base, cfi2->cfa.offset);
3332
3333 } else if (memcmp(&cfi1->regs, &cfi2->regs, sizeof(cfi1->regs))) {
3334 for (i = 0; i < CFI_NUM_REGS; i++) {
3335 if (!memcmp(&cfi1->regs[i], &cfi2->regs[i],
3336 sizeof(struct cfi_reg)))
3337 continue;
3338
3339 WARN_INSN(insn, "stack state mismatch: reg1[%d]=%d%+d reg2[%d]=%d%+d",
3340 i, cfi1->regs[i].base, cfi1->regs[i].offset,
3341 i, cfi2->regs[i].base, cfi2->regs[i].offset);
3342 break;
3343 }
3344
3345 } else if (cfi1->type != cfi2->type) {
3346
3347 WARN_INSN(insn, "stack state mismatch: type1=%d type2=%d",
3348 cfi1->type, cfi2->type);
3349
3350 } else if (cfi1->drap != cfi2->drap ||
3351 (cfi1->drap && cfi1->drap_reg != cfi2->drap_reg) ||
3352 (cfi1->drap && cfi1->drap_offset != cfi2->drap_offset)) {
3353
3354 WARN_INSN(insn, "stack state mismatch: drap1=%d(%d,%d) drap2=%d(%d,%d)",
3355 cfi1->drap, cfi1->drap_reg, cfi1->drap_offset,
3356 cfi2->drap, cfi2->drap_reg, cfi2->drap_offset);
3357
3358 } else
3359 return true;
3360
3361 return false;
3362 }
3363
func_uaccess_safe(struct symbol * func)3364 static inline bool func_uaccess_safe(struct symbol *func)
3365 {
3366 if (func)
3367 return func->uaccess_safe;
3368
3369 return false;
3370 }
3371
call_dest_name(struct instruction * insn)3372 static inline const char *call_dest_name(struct instruction *insn)
3373 {
3374 static char pvname[19];
3375 struct reloc *reloc;
3376 int idx;
3377
3378 if (insn_call_dest(insn))
3379 return insn_call_dest(insn)->name;
3380
3381 reloc = insn_reloc(NULL, insn);
3382 if (reloc && !strcmp(reloc->sym->name, "pv_ops")) {
3383 idx = (reloc_addend(reloc) / sizeof(void *));
3384 snprintf(pvname, sizeof(pvname), "pv_ops[%d]", idx);
3385 return pvname;
3386 }
3387
3388 return "{dynamic}";
3389 }
3390
pv_call_dest(struct objtool_file * file,struct instruction * insn)3391 static bool pv_call_dest(struct objtool_file *file, struct instruction *insn)
3392 {
3393 struct symbol *target;
3394 struct reloc *reloc;
3395 int idx;
3396
3397 reloc = insn_reloc(file, insn);
3398 if (!reloc || strcmp(reloc->sym->name, "pv_ops"))
3399 return false;
3400
3401 idx = (arch_dest_reloc_offset(reloc_addend(reloc)) / sizeof(void *));
3402
3403 if (file->pv_ops[idx].clean)
3404 return true;
3405
3406 file->pv_ops[idx].clean = true;
3407
3408 list_for_each_entry(target, &file->pv_ops[idx].targets, pv_target) {
3409 if (!target->sec->noinstr) {
3410 WARN("pv_ops[%d]: %s", idx, target->name);
3411 file->pv_ops[idx].clean = false;
3412 }
3413 }
3414
3415 return file->pv_ops[idx].clean;
3416 }
3417
noinstr_call_dest(struct objtool_file * file,struct instruction * insn,struct symbol * func)3418 static inline bool noinstr_call_dest(struct objtool_file *file,
3419 struct instruction *insn,
3420 struct symbol *func)
3421 {
3422 /*
3423 * We can't deal with indirect function calls at present;
3424 * assume they're instrumented.
3425 */
3426 if (!func) {
3427 if (file->pv_ops)
3428 return pv_call_dest(file, insn);
3429
3430 return false;
3431 }
3432
3433 /*
3434 * If the symbol is from a noinstr section; we good.
3435 */
3436 if (func->sec->noinstr)
3437 return true;
3438
3439 /*
3440 * If the symbol is a static_call trampoline, we can't tell.
3441 */
3442 if (func->static_call_tramp)
3443 return true;
3444
3445 /*
3446 * The __ubsan_handle_*() calls are like WARN(), they only happen when
3447 * something 'BAD' happened. At the risk of taking the machine down,
3448 * let them proceed to get the message out.
3449 */
3450 if (!strncmp(func->name, "__ubsan_handle_", 15))
3451 return true;
3452
3453 return false;
3454 }
3455
validate_call(struct objtool_file * file,struct instruction * insn,struct insn_state * state)3456 static int validate_call(struct objtool_file *file,
3457 struct instruction *insn,
3458 struct insn_state *state)
3459 {
3460 if (state->noinstr && state->instr <= 0 &&
3461 !noinstr_call_dest(file, insn, insn_call_dest(insn))) {
3462 WARN_INSN(insn, "call to %s() leaves .noinstr.text section", call_dest_name(insn));
3463 return 1;
3464 }
3465
3466 if (state->uaccess && !func_uaccess_safe(insn_call_dest(insn))) {
3467 WARN_INSN(insn, "call to %s() with UACCESS enabled", call_dest_name(insn));
3468 return 1;
3469 }
3470
3471 if (state->df) {
3472 WARN_INSN(insn, "call to %s() with DF set", call_dest_name(insn));
3473 return 1;
3474 }
3475
3476 return 0;
3477 }
3478
validate_sibling_call(struct objtool_file * file,struct instruction * insn,struct insn_state * state)3479 static int validate_sibling_call(struct objtool_file *file,
3480 struct instruction *insn,
3481 struct insn_state *state)
3482 {
3483 if (insn_func(insn) && has_modified_stack_frame(insn, state)) {
3484 WARN_INSN(insn, "sibling call from callable instruction with modified stack frame");
3485 return 1;
3486 }
3487
3488 return validate_call(file, insn, state);
3489 }
3490
validate_return(struct symbol * func,struct instruction * insn,struct insn_state * state)3491 static int validate_return(struct symbol *func, struct instruction *insn, struct insn_state *state)
3492 {
3493 if (state->noinstr && state->instr > 0) {
3494 WARN_INSN(insn, "return with instrumentation enabled");
3495 return 1;
3496 }
3497
3498 if (state->uaccess && !func_uaccess_safe(func)) {
3499 WARN_INSN(insn, "return with UACCESS enabled");
3500 return 1;
3501 }
3502
3503 if (!state->uaccess && func_uaccess_safe(func)) {
3504 WARN_INSN(insn, "return with UACCESS disabled from a UACCESS-safe function");
3505 return 1;
3506 }
3507
3508 if (state->df) {
3509 WARN_INSN(insn, "return with DF set");
3510 return 1;
3511 }
3512
3513 if (func && has_modified_stack_frame(insn, state)) {
3514 WARN_INSN(insn, "return with modified stack frame");
3515 return 1;
3516 }
3517
3518 if (state->cfi.bp_scratch) {
3519 WARN_INSN(insn, "BP used as a scratch register");
3520 return 1;
3521 }
3522
3523 return 0;
3524 }
3525
next_insn_to_validate(struct objtool_file * file,struct instruction * insn)3526 static struct instruction *next_insn_to_validate(struct objtool_file *file,
3527 struct instruction *insn)
3528 {
3529 struct alt_group *alt_group = insn->alt_group;
3530
3531 /*
3532 * Simulate the fact that alternatives are patched in-place. When the
3533 * end of a replacement alt_group is reached, redirect objtool flow to
3534 * the end of the original alt_group.
3535 *
3536 * insn->alts->insn -> alt_group->first_insn
3537 * ...
3538 * alt_group->last_insn
3539 * [alt_group->nop] -> next(orig_group->last_insn)
3540 */
3541 if (alt_group) {
3542 if (alt_group->nop) {
3543 /* ->nop implies ->orig_group */
3544 if (insn == alt_group->last_insn)
3545 return alt_group->nop;
3546 if (insn == alt_group->nop)
3547 goto next_orig;
3548 }
3549 if (insn == alt_group->last_insn && alt_group->orig_group)
3550 goto next_orig;
3551 }
3552
3553 return next_insn_same_sec(file, insn);
3554
3555 next_orig:
3556 return next_insn_same_sec(file, alt_group->orig_group->last_insn);
3557 }
3558
3559 /*
3560 * Follow the branch starting at the given instruction, and recursively follow
3561 * any other branches (jumps). Meanwhile, track the frame pointer state at
3562 * each instruction and validate all the rules described in
3563 * tools/objtool/Documentation/objtool.txt.
3564 */
validate_branch(struct objtool_file * file,struct symbol * func,struct instruction * insn,struct insn_state state)3565 static int validate_branch(struct objtool_file *file, struct symbol *func,
3566 struct instruction *insn, struct insn_state state)
3567 {
3568 struct alternative *alt;
3569 struct instruction *next_insn, *prev_insn = NULL;
3570 struct section *sec;
3571 u8 visited;
3572 int ret;
3573
3574 sec = insn->sec;
3575
3576 while (1) {
3577 next_insn = next_insn_to_validate(file, insn);
3578
3579 if (func && insn_func(insn) && func != insn_func(insn)->pfunc) {
3580 /* Ignore KCFI type preambles, which always fall through */
3581 if (!strncmp(func->name, "__cfi_", 6) ||
3582 !strncmp(func->name, "__pfx_", 6))
3583 return 0;
3584
3585 if (file->ignore_unreachables)
3586 return 0;
3587
3588 WARN("%s() falls through to next function %s()",
3589 func->name, insn_func(insn)->name);
3590 return 1;
3591 }
3592
3593 if (func && insn->ignore) {
3594 WARN_INSN(insn, "BUG: why am I validating an ignored function?");
3595 return 1;
3596 }
3597
3598 visited = VISITED_BRANCH << state.uaccess;
3599 if (insn->visited & VISITED_BRANCH_MASK) {
3600 if (!insn->hint && !insn_cfi_match(insn, &state.cfi))
3601 return 1;
3602
3603 if (insn->visited & visited)
3604 return 0;
3605 } else {
3606 nr_insns_visited++;
3607 }
3608
3609 if (state.noinstr)
3610 state.instr += insn->instr;
3611
3612 if (insn->hint) {
3613 if (insn->restore) {
3614 struct instruction *save_insn, *i;
3615
3616 i = insn;
3617 save_insn = NULL;
3618
3619 sym_for_each_insn_continue_reverse(file, func, i) {
3620 if (i->save) {
3621 save_insn = i;
3622 break;
3623 }
3624 }
3625
3626 if (!save_insn) {
3627 WARN_INSN(insn, "no corresponding CFI save for CFI restore");
3628 return 1;
3629 }
3630
3631 if (!save_insn->visited) {
3632 /*
3633 * If the restore hint insn is at the
3634 * beginning of a basic block and was
3635 * branched to from elsewhere, and the
3636 * save insn hasn't been visited yet,
3637 * defer following this branch for now.
3638 * It will be seen later via the
3639 * straight-line path.
3640 */
3641 if (!prev_insn)
3642 return 0;
3643
3644 WARN_INSN(insn, "objtool isn't smart enough to handle this CFI save/restore combo");
3645 return 1;
3646 }
3647
3648 insn->cfi = save_insn->cfi;
3649 nr_cfi_reused++;
3650 }
3651
3652 state.cfi = *insn->cfi;
3653 } else {
3654 /* XXX track if we actually changed state.cfi */
3655
3656 if (prev_insn && !cficmp(prev_insn->cfi, &state.cfi)) {
3657 insn->cfi = prev_insn->cfi;
3658 nr_cfi_reused++;
3659 } else {
3660 insn->cfi = cfi_hash_find_or_add(&state.cfi);
3661 }
3662 }
3663
3664 insn->visited |= visited;
3665
3666 if (propagate_alt_cfi(file, insn))
3667 return 1;
3668
3669 if (!insn->ignore_alts && insn->alts) {
3670 bool skip_orig = false;
3671
3672 for (alt = insn->alts; alt; alt = alt->next) {
3673 if (alt->skip_orig)
3674 skip_orig = true;
3675
3676 ret = validate_branch(file, func, alt->insn, state);
3677 if (ret) {
3678 BT_INSN(insn, "(alt)");
3679 return ret;
3680 }
3681 }
3682
3683 if (skip_orig)
3684 return 0;
3685 }
3686
3687 if (handle_insn_ops(insn, next_insn, &state))
3688 return 1;
3689
3690 switch (insn->type) {
3691
3692 case INSN_RETURN:
3693 return validate_return(func, insn, &state);
3694
3695 case INSN_CALL:
3696 case INSN_CALL_DYNAMIC:
3697 ret = validate_call(file, insn, &state);
3698 if (ret)
3699 return ret;
3700
3701 if (opts.stackval && func && !is_special_call(insn) &&
3702 !has_valid_stack_frame(&state)) {
3703 WARN_INSN(insn, "call without frame pointer save/setup");
3704 return 1;
3705 }
3706
3707 if (insn->dead_end)
3708 return 0;
3709
3710 break;
3711
3712 case INSN_JUMP_CONDITIONAL:
3713 case INSN_JUMP_UNCONDITIONAL:
3714 if (is_sibling_call(insn)) {
3715 ret = validate_sibling_call(file, insn, &state);
3716 if (ret)
3717 return ret;
3718
3719 } else if (insn->jump_dest) {
3720 ret = validate_branch(file, func,
3721 insn->jump_dest, state);
3722 if (ret) {
3723 BT_INSN(insn, "(branch)");
3724 return ret;
3725 }
3726 }
3727
3728 if (insn->type == INSN_JUMP_UNCONDITIONAL)
3729 return 0;
3730
3731 break;
3732
3733 case INSN_JUMP_DYNAMIC:
3734 case INSN_JUMP_DYNAMIC_CONDITIONAL:
3735 if (is_sibling_call(insn)) {
3736 ret = validate_sibling_call(file, insn, &state);
3737 if (ret)
3738 return ret;
3739 }
3740
3741 if (insn->type == INSN_JUMP_DYNAMIC)
3742 return 0;
3743
3744 break;
3745
3746 case INSN_CONTEXT_SWITCH:
3747 if (func) {
3748 if (!next_insn || !next_insn->hint) {
3749 WARN_INSN(insn, "unsupported instruction in callable function");
3750 return 1;
3751 }
3752 break;
3753 }
3754 return 0;
3755
3756 case INSN_STAC:
3757 if (!opts.uaccess)
3758 break;
3759
3760 if (state.uaccess) {
3761 WARN_INSN(insn, "recursive UACCESS enable");
3762 return 1;
3763 }
3764
3765 state.uaccess = true;
3766 break;
3767
3768 case INSN_CLAC:
3769 if (!opts.uaccess)
3770 break;
3771
3772 if (!state.uaccess && func) {
3773 WARN_INSN(insn, "redundant UACCESS disable");
3774 return 1;
3775 }
3776
3777 if (func_uaccess_safe(func) && !state.uaccess_stack) {
3778 WARN_INSN(insn, "UACCESS-safe disables UACCESS");
3779 return 1;
3780 }
3781
3782 state.uaccess = false;
3783 break;
3784
3785 case INSN_STD:
3786 if (state.df) {
3787 WARN_INSN(insn, "recursive STD");
3788 return 1;
3789 }
3790
3791 state.df = true;
3792 break;
3793
3794 case INSN_CLD:
3795 if (!state.df && func) {
3796 WARN_INSN(insn, "redundant CLD");
3797 return 1;
3798 }
3799
3800 state.df = false;
3801 break;
3802
3803 default:
3804 break;
3805 }
3806
3807 if (insn->dead_end)
3808 return 0;
3809
3810 if (!next_insn) {
3811 if (state.cfi.cfa.base == CFI_UNDEFINED)
3812 return 0;
3813 if (file->ignore_unreachables)
3814 return 0;
3815
3816 WARN("%s: unexpected end of section", sec->name);
3817 return 1;
3818 }
3819
3820 prev_insn = insn;
3821 insn = next_insn;
3822 }
3823
3824 return 0;
3825 }
3826
validate_unwind_hint(struct objtool_file * file,struct instruction * insn,struct insn_state * state)3827 static int validate_unwind_hint(struct objtool_file *file,
3828 struct instruction *insn,
3829 struct insn_state *state)
3830 {
3831 if (insn->hint && !insn->visited && !insn->ignore) {
3832 int ret = validate_branch(file, insn_func(insn), insn, *state);
3833 if (ret)
3834 BT_INSN(insn, "<=== (hint)");
3835 return ret;
3836 }
3837
3838 return 0;
3839 }
3840
validate_unwind_hints(struct objtool_file * file,struct section * sec)3841 static int validate_unwind_hints(struct objtool_file *file, struct section *sec)
3842 {
3843 struct instruction *insn;
3844 struct insn_state state;
3845 int warnings = 0;
3846
3847 if (!file->hints)
3848 return 0;
3849
3850 init_insn_state(file, &state, sec);
3851
3852 if (sec) {
3853 sec_for_each_insn(file, sec, insn)
3854 warnings += validate_unwind_hint(file, insn, &state);
3855 } else {
3856 for_each_insn(file, insn)
3857 warnings += validate_unwind_hint(file, insn, &state);
3858 }
3859
3860 return warnings;
3861 }
3862
3863 /*
3864 * Validate rethunk entry constraint: must untrain RET before the first RET.
3865 *
3866 * Follow every branch (intra-function) and ensure VALIDATE_UNRET_END comes
3867 * before an actual RET instruction.
3868 */
validate_unret(struct objtool_file * file,struct instruction * insn)3869 static int validate_unret(struct objtool_file *file, struct instruction *insn)
3870 {
3871 struct instruction *next, *dest;
3872 int ret;
3873
3874 for (;;) {
3875 next = next_insn_to_validate(file, insn);
3876
3877 if (insn->visited & VISITED_UNRET)
3878 return 0;
3879
3880 insn->visited |= VISITED_UNRET;
3881
3882 if (!insn->ignore_alts && insn->alts) {
3883 struct alternative *alt;
3884 bool skip_orig = false;
3885
3886 for (alt = insn->alts; alt; alt = alt->next) {
3887 if (alt->skip_orig)
3888 skip_orig = true;
3889
3890 ret = validate_unret(file, alt->insn);
3891 if (ret) {
3892 BT_INSN(insn, "(alt)");
3893 return ret;
3894 }
3895 }
3896
3897 if (skip_orig)
3898 return 0;
3899 }
3900
3901 switch (insn->type) {
3902
3903 case INSN_CALL_DYNAMIC:
3904 case INSN_JUMP_DYNAMIC:
3905 case INSN_JUMP_DYNAMIC_CONDITIONAL:
3906 WARN_INSN(insn, "early indirect call");
3907 return 1;
3908
3909 case INSN_JUMP_UNCONDITIONAL:
3910 case INSN_JUMP_CONDITIONAL:
3911 if (!is_sibling_call(insn)) {
3912 if (!insn->jump_dest) {
3913 WARN_INSN(insn, "unresolved jump target after linking?!?");
3914 return -1;
3915 }
3916 ret = validate_unret(file, insn->jump_dest);
3917 if (ret) {
3918 BT_INSN(insn, "(branch%s)",
3919 insn->type == INSN_JUMP_CONDITIONAL ? "-cond" : "");
3920 return ret;
3921 }
3922
3923 if (insn->type == INSN_JUMP_UNCONDITIONAL)
3924 return 0;
3925
3926 break;
3927 }
3928
3929 /* fallthrough */
3930 case INSN_CALL:
3931 dest = find_insn(file, insn_call_dest(insn)->sec,
3932 insn_call_dest(insn)->offset);
3933 if (!dest) {
3934 WARN("Unresolved function after linking!?: %s",
3935 insn_call_dest(insn)->name);
3936 return -1;
3937 }
3938
3939 ret = validate_unret(file, dest);
3940 if (ret) {
3941 BT_INSN(insn, "(call)");
3942 return ret;
3943 }
3944 /*
3945 * If a call returns without error, it must have seen UNTRAIN_RET.
3946 * Therefore any non-error return is a success.
3947 */
3948 return 0;
3949
3950 case INSN_RETURN:
3951 WARN_INSN(insn, "RET before UNTRAIN");
3952 return 1;
3953
3954 case INSN_CONTEXT_SWITCH:
3955 if (insn_func(insn))
3956 break;
3957 return 0;
3958
3959 case INSN_NOP:
3960 if (insn->retpoline_safe)
3961 return 0;
3962 break;
3963
3964 default:
3965 break;
3966 }
3967
3968 if (insn->dead_end)
3969 return 0;
3970
3971 if (!next) {
3972 WARN_INSN(insn, "teh end!");
3973 return -1;
3974 }
3975 insn = next;
3976 }
3977
3978 return 0;
3979 }
3980
3981 /*
3982 * Validate that all branches starting at VALIDATE_UNRET_BEGIN encounter
3983 * VALIDATE_UNRET_END before RET.
3984 */
validate_unrets(struct objtool_file * file)3985 static int validate_unrets(struct objtool_file *file)
3986 {
3987 struct instruction *insn;
3988 int ret, warnings = 0;
3989
3990 for_each_insn(file, insn) {
3991 if (!insn->unret)
3992 continue;
3993
3994 ret = validate_unret(file, insn);
3995 if (ret < 0) {
3996 WARN_INSN(insn, "Failed UNRET validation");
3997 return ret;
3998 }
3999 warnings += ret;
4000 }
4001
4002 return warnings;
4003 }
4004
validate_retpoline(struct objtool_file * file)4005 static int validate_retpoline(struct objtool_file *file)
4006 {
4007 struct instruction *insn;
4008 int warnings = 0;
4009
4010 for_each_insn(file, insn) {
4011 if (insn->type != INSN_JUMP_DYNAMIC &&
4012 insn->type != INSN_CALL_DYNAMIC &&
4013 insn->type != INSN_RETURN)
4014 continue;
4015
4016 if (insn->retpoline_safe)
4017 continue;
4018
4019 if (insn->sec->init)
4020 continue;
4021
4022 if (insn->type == INSN_RETURN) {
4023 if (opts.rethunk) {
4024 WARN_INSN(insn, "'naked' return found in RETHUNK build");
4025 } else
4026 continue;
4027 } else {
4028 WARN_INSN(insn, "indirect %s found in RETPOLINE build",
4029 insn->type == INSN_JUMP_DYNAMIC ? "jump" : "call");
4030 }
4031
4032 warnings++;
4033 }
4034
4035 return warnings;
4036 }
4037
is_kasan_insn(struct instruction * insn)4038 static bool is_kasan_insn(struct instruction *insn)
4039 {
4040 return (insn->type == INSN_CALL &&
4041 !strcmp(insn_call_dest(insn)->name, "__asan_handle_no_return"));
4042 }
4043
is_ubsan_insn(struct instruction * insn)4044 static bool is_ubsan_insn(struct instruction *insn)
4045 {
4046 return (insn->type == INSN_CALL &&
4047 !strcmp(insn_call_dest(insn)->name,
4048 "__ubsan_handle_builtin_unreachable"));
4049 }
4050
ignore_unreachable_insn(struct objtool_file * file,struct instruction * insn)4051 static bool ignore_unreachable_insn(struct objtool_file *file, struct instruction *insn)
4052 {
4053 int i;
4054 struct instruction *prev_insn;
4055
4056 if (insn->ignore || insn->type == INSN_NOP || insn->type == INSN_TRAP)
4057 return true;
4058
4059 /*
4060 * Ignore alternative replacement instructions. This can happen
4061 * when a whitelisted function uses one of the ALTERNATIVE macros.
4062 */
4063 if (!strcmp(insn->sec->name, ".altinstr_replacement") ||
4064 !strcmp(insn->sec->name, ".altinstr_aux"))
4065 return true;
4066
4067 /*
4068 * Whole archive runs might encounter dead code from weak symbols.
4069 * This is where the linker will have dropped the weak symbol in
4070 * favour of a regular symbol, but leaves the code in place.
4071 *
4072 * In this case we'll find a piece of code (whole function) that is not
4073 * covered by a !section symbol. Ignore them.
4074 */
4075 if (opts.link && !insn_func(insn)) {
4076 int size = find_symbol_hole_containing(insn->sec, insn->offset);
4077 unsigned long end = insn->offset + size;
4078
4079 if (!size) /* not a hole */
4080 return false;
4081
4082 if (size < 0) /* hole until the end */
4083 return true;
4084
4085 sec_for_each_insn_continue(file, insn) {
4086 /*
4087 * If we reach a visited instruction at or before the
4088 * end of the hole, ignore the unreachable.
4089 */
4090 if (insn->visited)
4091 return true;
4092
4093 if (insn->offset >= end)
4094 break;
4095
4096 /*
4097 * If this hole jumps to a .cold function, mark it ignore too.
4098 */
4099 if (insn->jump_dest && insn_func(insn->jump_dest) &&
4100 strstr(insn_func(insn->jump_dest)->name, ".cold")) {
4101 struct instruction *dest = insn->jump_dest;
4102 func_for_each_insn(file, insn_func(dest), dest)
4103 dest->ignore = true;
4104 }
4105 }
4106
4107 return false;
4108 }
4109
4110 if (!insn_func(insn))
4111 return false;
4112
4113 if (insn_func(insn)->static_call_tramp)
4114 return true;
4115
4116 /*
4117 * CONFIG_UBSAN_TRAP inserts a UD2 when it sees
4118 * __builtin_unreachable(). The BUG() macro has an unreachable() after
4119 * the UD2, which causes GCC's undefined trap logic to emit another UD2
4120 * (or occasionally a JMP to UD2).
4121 *
4122 * It may also insert a UD2 after calling a __noreturn function.
4123 */
4124 prev_insn = prev_insn_same_sec(file, insn);
4125 if (prev_insn && prev_insn->dead_end &&
4126 (insn->type == INSN_BUG ||
4127 (insn->type == INSN_JUMP_UNCONDITIONAL &&
4128 insn->jump_dest && insn->jump_dest->type == INSN_BUG)))
4129 return true;
4130
4131 /*
4132 * Check if this (or a subsequent) instruction is related to
4133 * CONFIG_UBSAN or CONFIG_KASAN.
4134 *
4135 * End the search at 5 instructions to avoid going into the weeds.
4136 */
4137 for (i = 0; i < 5; i++) {
4138
4139 if (is_kasan_insn(insn) || is_ubsan_insn(insn))
4140 return true;
4141
4142 if (insn->type == INSN_JUMP_UNCONDITIONAL) {
4143 if (insn->jump_dest &&
4144 insn_func(insn->jump_dest) == insn_func(insn)) {
4145 insn = insn->jump_dest;
4146 continue;
4147 }
4148
4149 break;
4150 }
4151
4152 if (insn->offset + insn->len >= insn_func(insn)->offset + insn_func(insn)->len)
4153 break;
4154
4155 insn = next_insn_same_sec(file, insn);
4156 }
4157
4158 return false;
4159 }
4160
add_prefix_symbol(struct objtool_file * file,struct symbol * func)4161 static int add_prefix_symbol(struct objtool_file *file, struct symbol *func)
4162 {
4163 struct instruction *insn, *prev;
4164 struct cfi_state *cfi;
4165
4166 insn = find_insn(file, func->sec, func->offset);
4167 if (!insn)
4168 return -1;
4169
4170 for (prev = prev_insn_same_sec(file, insn);
4171 prev;
4172 prev = prev_insn_same_sec(file, prev)) {
4173 u64 offset;
4174
4175 if (prev->type != INSN_NOP)
4176 return -1;
4177
4178 offset = func->offset - prev->offset;
4179
4180 if (offset > opts.prefix)
4181 return -1;
4182
4183 if (offset < opts.prefix)
4184 continue;
4185
4186 elf_create_prefix_symbol(file->elf, func, opts.prefix);
4187 break;
4188 }
4189
4190 if (!prev)
4191 return -1;
4192
4193 if (!insn->cfi) {
4194 /*
4195 * This can happen if stack validation isn't enabled or the
4196 * function is annotated with STACK_FRAME_NON_STANDARD.
4197 */
4198 return 0;
4199 }
4200
4201 /* Propagate insn->cfi to the prefix code */
4202 cfi = cfi_hash_find_or_add(insn->cfi);
4203 for (; prev != insn; prev = next_insn_same_sec(file, prev))
4204 prev->cfi = cfi;
4205
4206 return 0;
4207 }
4208
add_prefix_symbols(struct objtool_file * file)4209 static int add_prefix_symbols(struct objtool_file *file)
4210 {
4211 struct section *sec;
4212 struct symbol *func;
4213
4214 for_each_sec(file, sec) {
4215 if (!(sec->sh.sh_flags & SHF_EXECINSTR))
4216 continue;
4217
4218 sec_for_each_sym(sec, func) {
4219 if (func->type != STT_FUNC)
4220 continue;
4221
4222 add_prefix_symbol(file, func);
4223 }
4224 }
4225
4226 return 0;
4227 }
4228
validate_symbol(struct objtool_file * file,struct section * sec,struct symbol * sym,struct insn_state * state)4229 static int validate_symbol(struct objtool_file *file, struct section *sec,
4230 struct symbol *sym, struct insn_state *state)
4231 {
4232 struct instruction *insn;
4233 int ret;
4234
4235 if (!sym->len) {
4236 WARN("%s() is missing an ELF size annotation", sym->name);
4237 return 1;
4238 }
4239
4240 if (sym->pfunc != sym || sym->alias != sym)
4241 return 0;
4242
4243 insn = find_insn(file, sec, sym->offset);
4244 if (!insn || insn->ignore || insn->visited)
4245 return 0;
4246
4247 if (opts.uaccess)
4248 state->uaccess = sym->uaccess_safe;
4249
4250 ret = validate_branch(file, insn_func(insn), insn, *state);
4251 if (ret)
4252 BT_INSN(insn, "<=== (sym)");
4253 return ret;
4254 }
4255
validate_section(struct objtool_file * file,struct section * sec)4256 static int validate_section(struct objtool_file *file, struct section *sec)
4257 {
4258 struct insn_state state;
4259 struct symbol *func;
4260 int warnings = 0;
4261
4262 sec_for_each_sym(sec, func) {
4263 if (func->type != STT_FUNC)
4264 continue;
4265
4266 init_insn_state(file, &state, sec);
4267 set_func_state(&state.cfi);
4268
4269 warnings += validate_symbol(file, sec, func, &state);
4270 }
4271
4272 return warnings;
4273 }
4274
validate_noinstr_sections(struct objtool_file * file)4275 static int validate_noinstr_sections(struct objtool_file *file)
4276 {
4277 struct section *sec;
4278 int warnings = 0;
4279
4280 sec = find_section_by_name(file->elf, ".noinstr.text");
4281 if (sec) {
4282 warnings += validate_section(file, sec);
4283 warnings += validate_unwind_hints(file, sec);
4284 }
4285
4286 sec = find_section_by_name(file->elf, ".entry.text");
4287 if (sec) {
4288 warnings += validate_section(file, sec);
4289 warnings += validate_unwind_hints(file, sec);
4290 }
4291
4292 sec = find_section_by_name(file->elf, ".cpuidle.text");
4293 if (sec) {
4294 warnings += validate_section(file, sec);
4295 warnings += validate_unwind_hints(file, sec);
4296 }
4297
4298 return warnings;
4299 }
4300
validate_functions(struct objtool_file * file)4301 static int validate_functions(struct objtool_file *file)
4302 {
4303 struct section *sec;
4304 int warnings = 0;
4305
4306 for_each_sec(file, sec) {
4307 if (!(sec->sh.sh_flags & SHF_EXECINSTR))
4308 continue;
4309
4310 warnings += validate_section(file, sec);
4311 }
4312
4313 return warnings;
4314 }
4315
mark_endbr_used(struct instruction * insn)4316 static void mark_endbr_used(struct instruction *insn)
4317 {
4318 if (!list_empty(&insn->call_node))
4319 list_del_init(&insn->call_node);
4320 }
4321
noendbr_range(struct objtool_file * file,struct instruction * insn)4322 static bool noendbr_range(struct objtool_file *file, struct instruction *insn)
4323 {
4324 struct symbol *sym = find_symbol_containing(insn->sec, insn->offset-1);
4325 struct instruction *first;
4326
4327 if (!sym)
4328 return false;
4329
4330 first = find_insn(file, sym->sec, sym->offset);
4331 if (!first)
4332 return false;
4333
4334 if (first->type != INSN_ENDBR && !first->noendbr)
4335 return false;
4336
4337 return insn->offset == sym->offset + sym->len;
4338 }
4339
validate_ibt_insn(struct objtool_file * file,struct instruction * insn)4340 static int validate_ibt_insn(struct objtool_file *file, struct instruction *insn)
4341 {
4342 struct instruction *dest;
4343 struct reloc *reloc;
4344 unsigned long off;
4345 int warnings = 0;
4346
4347 /*
4348 * Looking for function pointer load relocations. Ignore
4349 * direct/indirect branches:
4350 */
4351 switch (insn->type) {
4352 case INSN_CALL:
4353 case INSN_CALL_DYNAMIC:
4354 case INSN_JUMP_CONDITIONAL:
4355 case INSN_JUMP_UNCONDITIONAL:
4356 case INSN_JUMP_DYNAMIC:
4357 case INSN_JUMP_DYNAMIC_CONDITIONAL:
4358 case INSN_RETURN:
4359 case INSN_NOP:
4360 return 0;
4361 default:
4362 break;
4363 }
4364
4365 for (reloc = insn_reloc(file, insn);
4366 reloc;
4367 reloc = find_reloc_by_dest_range(file->elf, insn->sec,
4368 reloc_offset(reloc) + 1,
4369 (insn->offset + insn->len) - (reloc_offset(reloc) + 1))) {
4370
4371 /*
4372 * static_call_update() references the trampoline, which
4373 * doesn't have (or need) ENDBR. Skip warning in that case.
4374 */
4375 if (reloc->sym->static_call_tramp)
4376 continue;
4377
4378 off = reloc->sym->offset;
4379 if (reloc_type(reloc) == R_X86_64_PC32 ||
4380 reloc_type(reloc) == R_X86_64_PLT32)
4381 off += arch_dest_reloc_offset(reloc_addend(reloc));
4382 else
4383 off += reloc_addend(reloc);
4384
4385 dest = find_insn(file, reloc->sym->sec, off);
4386 if (!dest)
4387 continue;
4388
4389 if (dest->type == INSN_ENDBR) {
4390 mark_endbr_used(dest);
4391 continue;
4392 }
4393
4394 if (insn_func(dest) && insn_func(insn) &&
4395 insn_func(dest)->pfunc == insn_func(insn)->pfunc) {
4396 /*
4397 * Anything from->to self is either _THIS_IP_ or
4398 * IRET-to-self.
4399 *
4400 * There is no sane way to annotate _THIS_IP_ since the
4401 * compiler treats the relocation as a constant and is
4402 * happy to fold in offsets, skewing any annotation we
4403 * do, leading to vast amounts of false-positives.
4404 *
4405 * There's also compiler generated _THIS_IP_ through
4406 * KCOV and such which we have no hope of annotating.
4407 *
4408 * As such, blanket accept self-references without
4409 * issue.
4410 */
4411 continue;
4412 }
4413
4414 /*
4415 * Accept anything ANNOTATE_NOENDBR.
4416 */
4417 if (dest->noendbr)
4418 continue;
4419
4420 /*
4421 * Accept if this is the instruction after a symbol
4422 * that is (no)endbr -- typical code-range usage.
4423 */
4424 if (noendbr_range(file, dest))
4425 continue;
4426
4427 WARN_INSN(insn, "relocation to !ENDBR: %s", offstr(dest->sec, dest->offset));
4428
4429 warnings++;
4430 }
4431
4432 return warnings;
4433 }
4434
validate_ibt_data_reloc(struct objtool_file * file,struct reloc * reloc)4435 static int validate_ibt_data_reloc(struct objtool_file *file,
4436 struct reloc *reloc)
4437 {
4438 struct instruction *dest;
4439
4440 dest = find_insn(file, reloc->sym->sec,
4441 reloc->sym->offset + reloc_addend(reloc));
4442 if (!dest)
4443 return 0;
4444
4445 if (dest->type == INSN_ENDBR) {
4446 mark_endbr_used(dest);
4447 return 0;
4448 }
4449
4450 if (dest->noendbr)
4451 return 0;
4452
4453 WARN_FUNC("data relocation to !ENDBR: %s",
4454 reloc->sec->base, reloc_offset(reloc),
4455 offstr(dest->sec, dest->offset));
4456
4457 return 1;
4458 }
4459
4460 /*
4461 * Validate IBT rules and remove used ENDBR instructions from the seal list.
4462 * Unused ENDBR instructions will be annotated for sealing (i.e., replaced with
4463 * NOPs) later, in create_ibt_endbr_seal_sections().
4464 */
validate_ibt(struct objtool_file * file)4465 static int validate_ibt(struct objtool_file *file)
4466 {
4467 struct section *sec;
4468 struct reloc *reloc;
4469 struct instruction *insn;
4470 int warnings = 0;
4471
4472 for_each_insn(file, insn)
4473 warnings += validate_ibt_insn(file, insn);
4474
4475 for_each_sec(file, sec) {
4476
4477 /* Already done by validate_ibt_insn() */
4478 if (sec->sh.sh_flags & SHF_EXECINSTR)
4479 continue;
4480
4481 if (!sec->rsec)
4482 continue;
4483
4484 /*
4485 * These sections can reference text addresses, but not with
4486 * the intent to indirect branch to them.
4487 */
4488 if ((!strncmp(sec->name, ".discard", 8) &&
4489 strcmp(sec->name, ".discard.ibt_endbr_noseal")) ||
4490 !strncmp(sec->name, ".debug", 6) ||
4491 !strcmp(sec->name, ".altinstructions") ||
4492 !strcmp(sec->name, ".ibt_endbr_seal") ||
4493 !strcmp(sec->name, ".orc_unwind_ip") ||
4494 !strcmp(sec->name, ".parainstructions") ||
4495 !strcmp(sec->name, ".retpoline_sites") ||
4496 !strcmp(sec->name, ".smp_locks") ||
4497 !strcmp(sec->name, ".static_call_sites") ||
4498 !strcmp(sec->name, "_error_injection_whitelist") ||
4499 !strcmp(sec->name, "_kprobe_blacklist") ||
4500 !strcmp(sec->name, "__bug_table") ||
4501 !strcmp(sec->name, "__ex_table") ||
4502 !strcmp(sec->name, "__jump_table") ||
4503 !strcmp(sec->name, "__mcount_loc") ||
4504 !strcmp(sec->name, ".kcfi_traps") ||
4505 strstr(sec->name, "__patchable_function_entries"))
4506 continue;
4507
4508 for_each_reloc(sec->rsec, reloc)
4509 warnings += validate_ibt_data_reloc(file, reloc);
4510 }
4511
4512 return warnings;
4513 }
4514
validate_sls(struct objtool_file * file)4515 static int validate_sls(struct objtool_file *file)
4516 {
4517 struct instruction *insn, *next_insn;
4518 int warnings = 0;
4519
4520 for_each_insn(file, insn) {
4521 next_insn = next_insn_same_sec(file, insn);
4522
4523 if (insn->retpoline_safe)
4524 continue;
4525
4526 switch (insn->type) {
4527 case INSN_RETURN:
4528 if (!next_insn || next_insn->type != INSN_TRAP) {
4529 WARN_INSN(insn, "missing int3 after ret");
4530 warnings++;
4531 }
4532
4533 break;
4534 case INSN_JUMP_DYNAMIC:
4535 if (!next_insn || next_insn->type != INSN_TRAP) {
4536 WARN_INSN(insn, "missing int3 after indirect jump");
4537 warnings++;
4538 }
4539 break;
4540 default:
4541 break;
4542 }
4543 }
4544
4545 return warnings;
4546 }
4547
validate_reachable_instructions(struct objtool_file * file)4548 static int validate_reachable_instructions(struct objtool_file *file)
4549 {
4550 struct instruction *insn, *prev_insn;
4551 struct symbol *call_dest;
4552 int warnings = 0;
4553
4554 if (file->ignore_unreachables)
4555 return 0;
4556
4557 for_each_insn(file, insn) {
4558 if (insn->visited || ignore_unreachable_insn(file, insn))
4559 continue;
4560
4561 prev_insn = prev_insn_same_sec(file, insn);
4562 if (prev_insn && prev_insn->dead_end) {
4563 call_dest = insn_call_dest(prev_insn);
4564 if (call_dest) {
4565 WARN_INSN(insn, "%s() is missing a __noreturn annotation",
4566 call_dest->name);
4567 warnings++;
4568 continue;
4569 }
4570 }
4571
4572 WARN_INSN(insn, "unreachable instruction");
4573 warnings++;
4574 }
4575
4576 return warnings;
4577 }
4578
4579 /* 'funcs' is a space-separated list of function names */
disas_funcs(const char * funcs)4580 static int disas_funcs(const char *funcs)
4581 {
4582 const char *objdump_str, *cross_compile;
4583 int size, ret;
4584 char *cmd;
4585
4586 cross_compile = getenv("CROSS_COMPILE");
4587 if (!cross_compile)
4588 cross_compile = "";
4589
4590 objdump_str = "%sobjdump -wdr %s | gawk -M -v _funcs='%s' '"
4591 "BEGIN { split(_funcs, funcs); }"
4592 "/^$/ { func_match = 0; }"
4593 "/<.*>:/ { "
4594 "f = gensub(/.*<(.*)>:/, \"\\\\1\", 1);"
4595 "for (i in funcs) {"
4596 "if (funcs[i] == f) {"
4597 "func_match = 1;"
4598 "base = strtonum(\"0x\" $1);"
4599 "break;"
4600 "}"
4601 "}"
4602 "}"
4603 "{"
4604 "if (func_match) {"
4605 "addr = strtonum(\"0x\" $1);"
4606 "printf(\"%%04x \", addr - base);"
4607 "print;"
4608 "}"
4609 "}' 1>&2";
4610
4611 /* fake snprintf() to calculate the size */
4612 size = snprintf(NULL, 0, objdump_str, cross_compile, objname, funcs) + 1;
4613 if (size <= 0) {
4614 WARN("objdump string size calculation failed");
4615 return -1;
4616 }
4617
4618 cmd = malloc(size);
4619
4620 /* real snprintf() */
4621 snprintf(cmd, size, objdump_str, cross_compile, objname, funcs);
4622 ret = system(cmd);
4623 if (ret) {
4624 WARN("disassembly failed: %d", ret);
4625 return -1;
4626 }
4627
4628 return 0;
4629 }
4630
disas_warned_funcs(struct objtool_file * file)4631 static int disas_warned_funcs(struct objtool_file *file)
4632 {
4633 struct symbol *sym;
4634 char *funcs = NULL, *tmp;
4635
4636 for_each_sym(file, sym) {
4637 if (sym->warned) {
4638 if (!funcs) {
4639 funcs = malloc(strlen(sym->name) + 1);
4640 strcpy(funcs, sym->name);
4641 } else {
4642 tmp = malloc(strlen(funcs) + strlen(sym->name) + 2);
4643 sprintf(tmp, "%s %s", funcs, sym->name);
4644 free(funcs);
4645 funcs = tmp;
4646 }
4647 }
4648 }
4649
4650 if (funcs)
4651 disas_funcs(funcs);
4652
4653 return 0;
4654 }
4655
4656 struct insn_chunk {
4657 void *addr;
4658 struct insn_chunk *next;
4659 };
4660
4661 /*
4662 * Reduce peak RSS usage by freeing insns memory before writing the ELF file,
4663 * which can trigger more allocations for .debug_* sections whose data hasn't
4664 * been read yet.
4665 */
free_insns(struct objtool_file * file)4666 static void free_insns(struct objtool_file *file)
4667 {
4668 struct instruction *insn;
4669 struct insn_chunk *chunks = NULL, *chunk;
4670
4671 for_each_insn(file, insn) {
4672 if (!insn->idx) {
4673 chunk = malloc(sizeof(*chunk));
4674 chunk->addr = insn;
4675 chunk->next = chunks;
4676 chunks = chunk;
4677 }
4678 }
4679
4680 for (chunk = chunks; chunk; chunk = chunk->next)
4681 free(chunk->addr);
4682 }
4683
check(struct objtool_file * file)4684 int check(struct objtool_file *file)
4685 {
4686 int ret, warnings = 0;
4687
4688 arch_initial_func_cfi_state(&initial_func_cfi);
4689 init_cfi_state(&init_cfi);
4690 init_cfi_state(&func_cfi);
4691 set_func_state(&func_cfi);
4692 init_cfi_state(&force_undefined_cfi);
4693 force_undefined_cfi.force_undefined = true;
4694
4695 if (!cfi_hash_alloc(1UL << (file->elf->symbol_bits - 3))) {
4696 ret = -1;
4697 goto out;
4698 }
4699
4700 cfi_hash_add(&init_cfi);
4701 cfi_hash_add(&func_cfi);
4702
4703 ret = decode_sections(file);
4704 if (ret < 0)
4705 goto out;
4706
4707 warnings += ret;
4708
4709 if (!nr_insns)
4710 goto out;
4711
4712 if (opts.retpoline) {
4713 ret = validate_retpoline(file);
4714 if (ret < 0)
4715 goto out;
4716 warnings += ret;
4717 }
4718
4719 if (opts.stackval || opts.orc || opts.uaccess) {
4720 ret = validate_functions(file);
4721 if (ret < 0)
4722 goto out;
4723 warnings += ret;
4724
4725 ret = validate_unwind_hints(file, NULL);
4726 if (ret < 0)
4727 goto out;
4728 warnings += ret;
4729
4730 if (!warnings) {
4731 ret = validate_reachable_instructions(file);
4732 if (ret < 0)
4733 goto out;
4734 warnings += ret;
4735 }
4736
4737 } else if (opts.noinstr) {
4738 ret = validate_noinstr_sections(file);
4739 if (ret < 0)
4740 goto out;
4741 warnings += ret;
4742 }
4743
4744 if (opts.unret) {
4745 /*
4746 * Must be after validate_branch() and friends, it plays
4747 * further games with insn->visited.
4748 */
4749 ret = validate_unrets(file);
4750 if (ret < 0)
4751 goto out;
4752 warnings += ret;
4753 }
4754
4755 if (opts.ibt) {
4756 ret = validate_ibt(file);
4757 if (ret < 0)
4758 goto out;
4759 warnings += ret;
4760 }
4761
4762 if (opts.sls) {
4763 ret = validate_sls(file);
4764 if (ret < 0)
4765 goto out;
4766 warnings += ret;
4767 }
4768
4769 if (opts.static_call) {
4770 ret = create_static_call_sections(file);
4771 if (ret < 0)
4772 goto out;
4773 warnings += ret;
4774 }
4775
4776 if (opts.retpoline) {
4777 ret = create_retpoline_sites_sections(file);
4778 if (ret < 0)
4779 goto out;
4780 warnings += ret;
4781 }
4782
4783 if (opts.cfi) {
4784 ret = create_cfi_sections(file);
4785 if (ret < 0)
4786 goto out;
4787 warnings += ret;
4788 }
4789
4790 if (opts.rethunk) {
4791 ret = create_return_sites_sections(file);
4792 if (ret < 0)
4793 goto out;
4794 warnings += ret;
4795
4796 if (opts.hack_skylake) {
4797 ret = create_direct_call_sections(file);
4798 if (ret < 0)
4799 goto out;
4800 warnings += ret;
4801 }
4802 }
4803
4804 if (opts.mcount) {
4805 ret = create_mcount_loc_sections(file);
4806 if (ret < 0)
4807 goto out;
4808 warnings += ret;
4809 }
4810
4811 if (opts.prefix) {
4812 ret = add_prefix_symbols(file);
4813 if (ret < 0)
4814 goto out;
4815 warnings += ret;
4816 }
4817
4818 if (opts.ibt) {
4819 ret = create_ibt_endbr_seal_sections(file);
4820 if (ret < 0)
4821 goto out;
4822 warnings += ret;
4823 }
4824
4825 if (opts.orc && nr_insns) {
4826 ret = orc_create(file);
4827 if (ret < 0)
4828 goto out;
4829 warnings += ret;
4830 }
4831
4832 free_insns(file);
4833
4834 if (opts.verbose)
4835 disas_warned_funcs(file);
4836
4837 if (opts.stats) {
4838 printf("nr_insns_visited: %ld\n", nr_insns_visited);
4839 printf("nr_cfi: %ld\n", nr_cfi);
4840 printf("nr_cfi_reused: %ld\n", nr_cfi_reused);
4841 printf("nr_cfi_cache: %ld\n", nr_cfi_cache);
4842 }
4843
4844 out:
4845 /*
4846 * For now, don't fail the kernel build on fatal warnings. These
4847 * errors are still fairly common due to the growing matrix of
4848 * supported toolchains and their recent pace of change.
4849 */
4850 return 0;
4851 }
4852