1 // SPDX-License-Identifier: GPL-2.0-only
2 #include <linux/objtool.h>
3 #include <linux/module.h>
4 #include <linux/sort.h>
5 #include <linux/bpf.h>
6 #include <asm/ptrace.h>
7 #include <asm/stacktrace.h>
8 #include <asm/unwind.h>
9 #include <asm/orc_types.h>
10 #include <asm/orc_lookup.h>
11 #include <asm/orc_header.h>
12
13 ORC_HEADER;
14
15 #define orc_warn(fmt, ...) \
16 printk_deferred_once(KERN_WARNING "WARNING: " fmt, ##__VA_ARGS__)
17
18 #define orc_warn_current(args...) \
19 ({ \
20 static bool dumped_before; \
21 if (state->task == current && !state->error) { \
22 orc_warn(args); \
23 if (unwind_debug && !dumped_before) { \
24 dumped_before = true; \
25 unwind_dump(state); \
26 } \
27 } \
28 })
29
30 extern int __start_orc_unwind_ip[];
31 extern int __stop_orc_unwind_ip[];
32 extern struct orc_entry __start_orc_unwind[];
33 extern struct orc_entry __stop_orc_unwind[];
34
35 static bool orc_init __ro_after_init;
36 static bool unwind_debug __ro_after_init;
37 static unsigned int lookup_num_blocks __ro_after_init;
38
unwind_debug_cmdline(char * str)39 static int __init unwind_debug_cmdline(char *str)
40 {
41 unwind_debug = true;
42
43 return 0;
44 }
45 early_param("unwind_debug", unwind_debug_cmdline);
46
unwind_dump(struct unwind_state * state)47 static void unwind_dump(struct unwind_state *state)
48 {
49 static bool dumped_before;
50 unsigned long word, *sp;
51 struct stack_info stack_info = {0};
52 unsigned long visit_mask = 0;
53
54 if (dumped_before)
55 return;
56
57 dumped_before = true;
58
59 printk_deferred("unwind stack type:%d next_sp:%p mask:0x%lx graph_idx:%d\n",
60 state->stack_info.type, state->stack_info.next_sp,
61 state->stack_mask, state->graph_idx);
62
63 for (sp = __builtin_frame_address(0); sp;
64 sp = PTR_ALIGN(stack_info.next_sp, sizeof(long))) {
65 if (get_stack_info(sp, state->task, &stack_info, &visit_mask))
66 break;
67
68 for (; sp < stack_info.end; sp++) {
69
70 word = READ_ONCE_NOCHECK(*sp);
71
72 printk_deferred("%0*lx: %0*lx (%pB)\n", BITS_PER_LONG/4,
73 (unsigned long)sp, BITS_PER_LONG/4,
74 word, (void *)word);
75 }
76 }
77 }
78
orc_ip(const int * ip)79 static inline unsigned long orc_ip(const int *ip)
80 {
81 return (unsigned long)ip + *ip;
82 }
83
__orc_find(int * ip_table,struct orc_entry * u_table,unsigned int num_entries,unsigned long ip)84 static struct orc_entry *__orc_find(int *ip_table, struct orc_entry *u_table,
85 unsigned int num_entries, unsigned long ip)
86 {
87 int *first = ip_table;
88 int *last = ip_table + num_entries - 1;
89 int *mid, *found = first;
90
91 if (!num_entries)
92 return NULL;
93
94 /*
95 * Do a binary range search to find the rightmost duplicate of a given
96 * starting address. Some entries are section terminators which are
97 * "weak" entries for ensuring there are no gaps. They should be
98 * ignored when they conflict with a real entry.
99 */
100 while (first <= last) {
101 mid = first + ((last - first) / 2);
102
103 if (orc_ip(mid) <= ip) {
104 found = mid;
105 first = mid + 1;
106 } else
107 last = mid - 1;
108 }
109
110 return u_table + (found - ip_table);
111 }
112
113 #ifdef CONFIG_MODULES
orc_module_find(unsigned long ip)114 static struct orc_entry *orc_module_find(unsigned long ip)
115 {
116 struct module *mod;
117
118 mod = __module_address(ip);
119 if (!mod || !mod->arch.orc_unwind || !mod->arch.orc_unwind_ip)
120 return NULL;
121 return __orc_find(mod->arch.orc_unwind_ip, mod->arch.orc_unwind,
122 mod->arch.num_orcs, ip);
123 }
124 #else
orc_module_find(unsigned long ip)125 static struct orc_entry *orc_module_find(unsigned long ip)
126 {
127 return NULL;
128 }
129 #endif
130
131 #ifdef CONFIG_DYNAMIC_FTRACE
132 static struct orc_entry *orc_find(unsigned long ip);
133
134 /*
135 * Ftrace dynamic trampolines do not have orc entries of their own.
136 * But they are copies of the ftrace entries that are static and
137 * defined in ftrace_*.S, which do have orc entries.
138 *
139 * If the unwinder comes across a ftrace trampoline, then find the
140 * ftrace function that was used to create it, and use that ftrace
141 * function's orc entry, as the placement of the return code in
142 * the stack will be identical.
143 */
orc_ftrace_find(unsigned long ip)144 static struct orc_entry *orc_ftrace_find(unsigned long ip)
145 {
146 struct ftrace_ops *ops;
147 unsigned long tramp_addr, offset;
148
149 ops = ftrace_ops_trampoline(ip);
150 if (!ops)
151 return NULL;
152
153 /* Set tramp_addr to the start of the code copied by the trampoline */
154 if (ops->flags & FTRACE_OPS_FL_SAVE_REGS)
155 tramp_addr = (unsigned long)ftrace_regs_caller;
156 else
157 tramp_addr = (unsigned long)ftrace_caller;
158
159 /* Now place tramp_addr to the location within the trampoline ip is at */
160 offset = ip - ops->trampoline;
161 tramp_addr += offset;
162
163 /* Prevent unlikely recursion */
164 if (ip == tramp_addr)
165 return NULL;
166
167 return orc_find(tramp_addr);
168 }
169 #else
orc_ftrace_find(unsigned long ip)170 static struct orc_entry *orc_ftrace_find(unsigned long ip)
171 {
172 return NULL;
173 }
174 #endif
175
176 /* Fake frame pointer entry -- used as a fallback for generated code */
177 static struct orc_entry orc_fp_entry = {
178 .type = ORC_TYPE_CALL,
179 .sp_reg = ORC_REG_BP,
180 .sp_offset = 16,
181 .bp_reg = ORC_REG_PREV_SP,
182 .bp_offset = -16,
183 };
184
orc_bpf_find(unsigned long ip)185 static struct orc_entry *orc_bpf_find(unsigned long ip)
186 {
187 #ifdef CONFIG_BPF_JIT
188 if (bpf_has_frame_pointer(ip))
189 return &orc_fp_entry;
190 #endif
191
192 return NULL;
193 }
194
195 /*
196 * If we crash with IP==0, the last successfully executed instruction
197 * was probably an indirect function call with a NULL function pointer,
198 * and we don't have unwind information for NULL.
199 * This hardcoded ORC entry for IP==0 allows us to unwind from a NULL function
200 * pointer into its parent and then continue normally from there.
201 */
202 static struct orc_entry null_orc_entry = {
203 .sp_offset = sizeof(long),
204 .sp_reg = ORC_REG_SP,
205 .bp_reg = ORC_REG_UNDEFINED,
206 .type = ORC_TYPE_CALL
207 };
208
orc_find(unsigned long ip)209 static struct orc_entry *orc_find(unsigned long ip)
210 {
211 static struct orc_entry *orc;
212
213 if (ip == 0)
214 return &null_orc_entry;
215
216 /* For non-init vmlinux addresses, use the fast lookup table: */
217 if (ip >= LOOKUP_START_IP && ip < LOOKUP_STOP_IP) {
218 unsigned int idx, start, stop;
219
220 idx = (ip - LOOKUP_START_IP) / LOOKUP_BLOCK_SIZE;
221
222 if (unlikely((idx >= lookup_num_blocks-1))) {
223 orc_warn("WARNING: bad lookup idx: idx=%u num=%u ip=%pB\n",
224 idx, lookup_num_blocks, (void *)ip);
225 return NULL;
226 }
227
228 start = orc_lookup[idx];
229 stop = orc_lookup[idx + 1] + 1;
230
231 if (unlikely((__start_orc_unwind + start >= __stop_orc_unwind) ||
232 (__start_orc_unwind + stop > __stop_orc_unwind))) {
233 orc_warn("WARNING: bad lookup value: idx=%u num=%u start=%u stop=%u ip=%pB\n",
234 idx, lookup_num_blocks, start, stop, (void *)ip);
235 return NULL;
236 }
237
238 return __orc_find(__start_orc_unwind_ip + start,
239 __start_orc_unwind + start, stop - start, ip);
240 }
241
242 /* vmlinux .init slow lookup: */
243 if (is_kernel_inittext(ip))
244 return __orc_find(__start_orc_unwind_ip, __start_orc_unwind,
245 __stop_orc_unwind_ip - __start_orc_unwind_ip, ip);
246
247 /* Module lookup: */
248 orc = orc_module_find(ip);
249 if (orc)
250 return orc;
251
252 /* BPF lookup: */
253 orc = orc_bpf_find(ip);
254 if (orc)
255 return orc;
256
257 return orc_ftrace_find(ip);
258 }
259
260 #ifdef CONFIG_MODULES
261
262 static DEFINE_MUTEX(sort_mutex);
263 static int *cur_orc_ip_table = __start_orc_unwind_ip;
264 static struct orc_entry *cur_orc_table = __start_orc_unwind;
265
orc_sort_swap(void * _a,void * _b,int size)266 static void orc_sort_swap(void *_a, void *_b, int size)
267 {
268 struct orc_entry *orc_a, *orc_b;
269 int *a = _a, *b = _b, tmp;
270 int delta = _b - _a;
271
272 /* Swap the .orc_unwind_ip entries: */
273 tmp = *a;
274 *a = *b + delta;
275 *b = tmp - delta;
276
277 /* Swap the corresponding .orc_unwind entries: */
278 orc_a = cur_orc_table + (a - cur_orc_ip_table);
279 orc_b = cur_orc_table + (b - cur_orc_ip_table);
280 swap(*orc_a, *orc_b);
281 }
282
orc_sort_cmp(const void * _a,const void * _b)283 static int orc_sort_cmp(const void *_a, const void *_b)
284 {
285 struct orc_entry *orc_a;
286 const int *a = _a, *b = _b;
287 unsigned long a_val = orc_ip(a);
288 unsigned long b_val = orc_ip(b);
289
290 if (a_val > b_val)
291 return 1;
292 if (a_val < b_val)
293 return -1;
294
295 /*
296 * The "weak" section terminator entries need to always be first
297 * to ensure the lookup code skips them in favor of real entries.
298 * These terminator entries exist to handle any gaps created by
299 * whitelisted .o files which didn't get objtool generation.
300 */
301 orc_a = cur_orc_table + (a - cur_orc_ip_table);
302 return orc_a->type == ORC_TYPE_UNDEFINED ? -1 : 1;
303 }
304
unwind_module_init(struct module * mod,void * _orc_ip,size_t orc_ip_size,void * _orc,size_t orc_size)305 void unwind_module_init(struct module *mod, void *_orc_ip, size_t orc_ip_size,
306 void *_orc, size_t orc_size)
307 {
308 int *orc_ip = _orc_ip;
309 struct orc_entry *orc = _orc;
310 unsigned int num_entries = orc_ip_size / sizeof(int);
311
312 WARN_ON_ONCE(orc_ip_size % sizeof(int) != 0 ||
313 orc_size % sizeof(*orc) != 0 ||
314 num_entries != orc_size / sizeof(*orc));
315
316 /*
317 * The 'cur_orc_*' globals allow the orc_sort_swap() callback to
318 * associate an .orc_unwind_ip table entry with its corresponding
319 * .orc_unwind entry so they can both be swapped.
320 */
321 mutex_lock(&sort_mutex);
322 cur_orc_ip_table = orc_ip;
323 cur_orc_table = orc;
324 sort(orc_ip, num_entries, sizeof(int), orc_sort_cmp, orc_sort_swap);
325 mutex_unlock(&sort_mutex);
326
327 mod->arch.orc_unwind_ip = orc_ip;
328 mod->arch.orc_unwind = orc;
329 mod->arch.num_orcs = num_entries;
330 }
331 #endif
332
unwind_init(void)333 void __init unwind_init(void)
334 {
335 size_t orc_ip_size = (void *)__stop_orc_unwind_ip - (void *)__start_orc_unwind_ip;
336 size_t orc_size = (void *)__stop_orc_unwind - (void *)__start_orc_unwind;
337 size_t num_entries = orc_ip_size / sizeof(int);
338 struct orc_entry *orc;
339 int i;
340
341 if (!num_entries || orc_ip_size % sizeof(int) != 0 ||
342 orc_size % sizeof(struct orc_entry) != 0 ||
343 num_entries != orc_size / sizeof(struct orc_entry)) {
344 orc_warn("WARNING: Bad or missing .orc_unwind table. Disabling unwinder.\n");
345 return;
346 }
347
348 /*
349 * Note, the orc_unwind and orc_unwind_ip tables were already
350 * sorted at build time via the 'sorttable' tool.
351 * It's ready for binary search straight away, no need to sort it.
352 */
353
354 /* Initialize the fast lookup table: */
355 lookup_num_blocks = orc_lookup_end - orc_lookup;
356 for (i = 0; i < lookup_num_blocks-1; i++) {
357 orc = __orc_find(__start_orc_unwind_ip, __start_orc_unwind,
358 num_entries,
359 LOOKUP_START_IP + (LOOKUP_BLOCK_SIZE * i));
360 if (!orc) {
361 orc_warn("WARNING: Corrupt .orc_unwind table. Disabling unwinder.\n");
362 return;
363 }
364
365 orc_lookup[i] = orc - __start_orc_unwind;
366 }
367
368 /* Initialize the ending block: */
369 orc = __orc_find(__start_orc_unwind_ip, __start_orc_unwind, num_entries,
370 LOOKUP_STOP_IP);
371 if (!orc) {
372 orc_warn("WARNING: Corrupt .orc_unwind table. Disabling unwinder.\n");
373 return;
374 }
375 orc_lookup[lookup_num_blocks-1] = orc - __start_orc_unwind;
376
377 orc_init = true;
378 }
379
unwind_get_return_address(struct unwind_state * state)380 unsigned long unwind_get_return_address(struct unwind_state *state)
381 {
382 if (unwind_done(state))
383 return 0;
384
385 return __kernel_text_address(state->ip) ? state->ip : 0;
386 }
387 EXPORT_SYMBOL_GPL(unwind_get_return_address);
388
unwind_get_return_address_ptr(struct unwind_state * state)389 unsigned long *unwind_get_return_address_ptr(struct unwind_state *state)
390 {
391 if (unwind_done(state))
392 return NULL;
393
394 if (state->regs)
395 return &state->regs->ip;
396
397 if (state->sp)
398 return (unsigned long *)state->sp - 1;
399
400 return NULL;
401 }
402
stack_access_ok(struct unwind_state * state,unsigned long _addr,size_t len)403 static bool stack_access_ok(struct unwind_state *state, unsigned long _addr,
404 size_t len)
405 {
406 struct stack_info *info = &state->stack_info;
407 void *addr = (void *)_addr;
408
409 if (on_stack(info, addr, len))
410 return true;
411
412 return !get_stack_info(addr, state->task, info, &state->stack_mask) &&
413 on_stack(info, addr, len);
414 }
415
deref_stack_reg(struct unwind_state * state,unsigned long addr,unsigned long * val)416 static bool deref_stack_reg(struct unwind_state *state, unsigned long addr,
417 unsigned long *val)
418 {
419 if (!stack_access_ok(state, addr, sizeof(long)))
420 return false;
421
422 *val = READ_ONCE_NOCHECK(*(unsigned long *)addr);
423 return true;
424 }
425
deref_stack_regs(struct unwind_state * state,unsigned long addr,unsigned long * ip,unsigned long * sp)426 static bool deref_stack_regs(struct unwind_state *state, unsigned long addr,
427 unsigned long *ip, unsigned long *sp)
428 {
429 struct pt_regs *regs = (struct pt_regs *)addr;
430
431 /* x86-32 support will be more complicated due to the ®s->sp hack */
432 BUILD_BUG_ON(IS_ENABLED(CONFIG_X86_32));
433
434 if (!stack_access_ok(state, addr, sizeof(struct pt_regs)))
435 return false;
436
437 *ip = READ_ONCE_NOCHECK(regs->ip);
438 *sp = READ_ONCE_NOCHECK(regs->sp);
439 return true;
440 }
441
deref_stack_iret_regs(struct unwind_state * state,unsigned long addr,unsigned long * ip,unsigned long * sp)442 static bool deref_stack_iret_regs(struct unwind_state *state, unsigned long addr,
443 unsigned long *ip, unsigned long *sp)
444 {
445 struct pt_regs *regs = (void *)addr - IRET_FRAME_OFFSET;
446
447 if (!stack_access_ok(state, addr, IRET_FRAME_SIZE))
448 return false;
449
450 *ip = READ_ONCE_NOCHECK(regs->ip);
451 *sp = READ_ONCE_NOCHECK(regs->sp);
452 return true;
453 }
454
455 /*
456 * If state->regs is non-NULL, and points to a full pt_regs, just get the reg
457 * value from state->regs.
458 *
459 * Otherwise, if state->regs just points to IRET regs, and the previous frame
460 * had full regs, it's safe to get the value from the previous regs. This can
461 * happen when early/late IRQ entry code gets interrupted by an NMI.
462 */
get_reg(struct unwind_state * state,unsigned int reg_off,unsigned long * val)463 static bool get_reg(struct unwind_state *state, unsigned int reg_off,
464 unsigned long *val)
465 {
466 unsigned int reg = reg_off/8;
467
468 if (!state->regs)
469 return false;
470
471 if (state->full_regs) {
472 *val = READ_ONCE_NOCHECK(((unsigned long *)state->regs)[reg]);
473 return true;
474 }
475
476 if (state->prev_regs) {
477 *val = READ_ONCE_NOCHECK(((unsigned long *)state->prev_regs)[reg]);
478 return true;
479 }
480
481 return false;
482 }
483
unwind_next_frame(struct unwind_state * state)484 bool unwind_next_frame(struct unwind_state *state)
485 {
486 unsigned long ip_p, sp, tmp, orig_ip = state->ip, prev_sp = state->sp;
487 enum stack_type prev_type = state->stack_info.type;
488 struct orc_entry *orc;
489 bool indirect = false;
490
491 if (unwind_done(state))
492 return false;
493
494 /* Don't let modules unload while we're reading their ORC data. */
495 guard(rcu)();
496
497 /* End-of-stack check for user tasks: */
498 if (state->regs && user_mode(state->regs))
499 goto the_end;
500
501 /*
502 * Find the orc_entry associated with the text address.
503 *
504 * For a call frame (as opposed to a signal frame), state->ip points to
505 * the instruction after the call. That instruction's stack layout
506 * could be different from the call instruction's layout, for example
507 * if the call was to a noreturn function. So get the ORC data for the
508 * call instruction itself.
509 */
510 orc = orc_find(state->signal ? state->ip : state->ip - 1);
511 if (!orc) {
512 /*
513 * As a fallback, try to assume this code uses a frame pointer.
514 * This is just a guess, so the rest of the unwind is no longer
515 * considered reliable.
516 */
517 orc = &orc_fp_entry;
518 state->error = true;
519 } else {
520 if (orc->type == ORC_TYPE_UNDEFINED)
521 goto err;
522
523 if (orc->type == ORC_TYPE_END_OF_STACK)
524 goto the_end;
525 }
526
527 state->signal = orc->signal;
528
529 /* Find the previous frame's stack: */
530 switch (orc->sp_reg) {
531 case ORC_REG_SP:
532 sp = state->sp + orc->sp_offset;
533 break;
534
535 case ORC_REG_BP:
536 sp = state->bp + orc->sp_offset;
537 break;
538
539 case ORC_REG_SP_INDIRECT:
540 sp = state->sp;
541 indirect = true;
542 break;
543
544 case ORC_REG_BP_INDIRECT:
545 sp = state->bp + orc->sp_offset;
546 indirect = true;
547 break;
548
549 case ORC_REG_R10:
550 if (!get_reg(state, offsetof(struct pt_regs, r10), &sp)) {
551 orc_warn_current("missing R10 value at %pB\n",
552 (void *)state->ip);
553 goto err;
554 }
555 break;
556
557 case ORC_REG_R13:
558 if (!get_reg(state, offsetof(struct pt_regs, r13), &sp)) {
559 orc_warn_current("missing R13 value at %pB\n",
560 (void *)state->ip);
561 goto err;
562 }
563 break;
564
565 case ORC_REG_DI:
566 if (!get_reg(state, offsetof(struct pt_regs, di), &sp)) {
567 orc_warn_current("missing RDI value at %pB\n",
568 (void *)state->ip);
569 goto err;
570 }
571 break;
572
573 case ORC_REG_DX:
574 if (!get_reg(state, offsetof(struct pt_regs, dx), &sp)) {
575 orc_warn_current("missing DX value at %pB\n",
576 (void *)state->ip);
577 goto err;
578 }
579 break;
580
581 default:
582 orc_warn("unknown SP base reg %d at %pB\n",
583 orc->sp_reg, (void *)state->ip);
584 goto err;
585 }
586
587 if (indirect) {
588 if (!deref_stack_reg(state, sp, &sp))
589 goto err;
590
591 if (orc->sp_reg == ORC_REG_SP_INDIRECT)
592 sp += orc->sp_offset;
593 }
594
595 /* Find IP, SP and possibly regs: */
596 switch (orc->type) {
597 case ORC_TYPE_CALL:
598 ip_p = sp - sizeof(long);
599
600 if (!deref_stack_reg(state, ip_p, &state->ip))
601 goto err;
602
603 state->ip = unwind_recover_ret_addr(state, state->ip,
604 (unsigned long *)ip_p);
605 state->sp = sp;
606 state->regs = NULL;
607 state->prev_regs = NULL;
608 break;
609
610 case ORC_TYPE_REGS:
611 if (!deref_stack_regs(state, sp, &state->ip, &state->sp)) {
612 orc_warn_current("can't access registers at %pB\n",
613 (void *)orig_ip);
614 goto err;
615 }
616 /*
617 * There is a small chance to interrupt at the entry of
618 * arch_rethook_trampoline() where the ORC info doesn't exist.
619 * That point is right after the RET to arch_rethook_trampoline()
620 * which was modified return address.
621 * At that point, the @addr_p of the unwind_recover_rethook()
622 * (this has to point the address of the stack entry storing
623 * the modified return address) must be "SP - (a stack entry)"
624 * because SP is incremented by the RET.
625 */
626 state->ip = unwind_recover_rethook(state, state->ip,
627 (unsigned long *)(state->sp - sizeof(long)));
628 state->regs = (struct pt_regs *)sp;
629 state->prev_regs = NULL;
630 state->full_regs = true;
631 break;
632
633 case ORC_TYPE_REGS_PARTIAL:
634 if (!deref_stack_iret_regs(state, sp, &state->ip, &state->sp)) {
635 orc_warn_current("can't access iret registers at %pB\n",
636 (void *)orig_ip);
637 goto err;
638 }
639 /* See ORC_TYPE_REGS case comment. */
640 state->ip = unwind_recover_rethook(state, state->ip,
641 (unsigned long *)(state->sp - sizeof(long)));
642
643 if (state->full_regs)
644 state->prev_regs = state->regs;
645 state->regs = (void *)sp - IRET_FRAME_OFFSET;
646 state->full_regs = false;
647 break;
648
649 default:
650 orc_warn("unknown .orc_unwind entry type %d at %pB\n",
651 orc->type, (void *)orig_ip);
652 goto err;
653 }
654
655 /* Find BP: */
656 switch (orc->bp_reg) {
657 case ORC_REG_UNDEFINED:
658 if (get_reg(state, offsetof(struct pt_regs, bp), &tmp))
659 state->bp = tmp;
660 break;
661
662 case ORC_REG_PREV_SP:
663 if (!deref_stack_reg(state, sp + orc->bp_offset, &state->bp))
664 goto err;
665 break;
666
667 case ORC_REG_BP:
668 if (!deref_stack_reg(state, state->bp + orc->bp_offset, &state->bp))
669 goto err;
670 break;
671
672 default:
673 orc_warn("unknown BP base reg %d for ip %pB\n",
674 orc->bp_reg, (void *)orig_ip);
675 goto err;
676 }
677
678 /* Prevent a recursive loop due to bad ORC data: */
679 if (state->stack_info.type == prev_type &&
680 on_stack(&state->stack_info, (void *)state->sp, sizeof(long)) &&
681 state->sp <= prev_sp) {
682 orc_warn_current("stack going in the wrong direction? at %pB\n",
683 (void *)orig_ip);
684 goto err;
685 }
686
687 return true;
688
689 err:
690 state->error = true;
691
692 the_end:
693 state->stack_info.type = STACK_TYPE_UNKNOWN;
694 return false;
695 }
696 EXPORT_SYMBOL_GPL(unwind_next_frame);
697
__unwind_start(struct unwind_state * state,struct task_struct * task,struct pt_regs * regs,unsigned long * first_frame)698 void __unwind_start(struct unwind_state *state, struct task_struct *task,
699 struct pt_regs *regs, unsigned long *first_frame)
700 {
701 memset(state, 0, sizeof(*state));
702 state->task = task;
703
704 if (!orc_init)
705 goto err;
706
707 /*
708 * Refuse to unwind the stack of a task while it's executing on another
709 * CPU. This check is racy, but that's ok: the unwinder has other
710 * checks to prevent it from going off the rails.
711 */
712 if (task_on_another_cpu(task))
713 goto err;
714
715 if (regs) {
716 if (user_mode(regs))
717 goto the_end;
718
719 state->ip = regs->ip;
720 state->sp = regs->sp;
721 state->bp = regs->bp;
722 state->regs = regs;
723 state->full_regs = true;
724 state->signal = true;
725
726 } else if (task == current) {
727 asm volatile("lea (%%rip), %0\n\t"
728 "mov %%rsp, %1\n\t"
729 "mov %%rbp, %2\n\t"
730 : "=r" (state->ip), "=r" (state->sp),
731 "=r" (state->bp));
732
733 } else {
734 struct inactive_task_frame *frame = (void *)task->thread.sp;
735
736 state->sp = task->thread.sp + sizeof(*frame);
737 state->bp = READ_ONCE_NOCHECK(frame->bp);
738 state->ip = READ_ONCE_NOCHECK(frame->ret_addr);
739 state->signal = (void *)state->ip == ret_from_fork_asm;
740 }
741
742 if (get_stack_info((unsigned long *)state->sp, state->task,
743 &state->stack_info, &state->stack_mask)) {
744 /*
745 * We weren't on a valid stack. It's possible that
746 * we overflowed a valid stack into a guard page.
747 * See if the next page up is valid so that we can
748 * generate some kind of backtrace if this happens.
749 */
750 void *next_page = (void *)PAGE_ALIGN((unsigned long)state->sp);
751 state->error = true;
752 if (get_stack_info(next_page, state->task, &state->stack_info,
753 &state->stack_mask))
754 return;
755 }
756
757 /*
758 * The caller can provide the address of the first frame directly
759 * (first_frame) or indirectly (regs->sp) to indicate which stack frame
760 * to start unwinding at. Skip ahead until we reach it.
761 */
762
763 /* When starting from regs, skip the regs frame: */
764 if (regs) {
765 unwind_next_frame(state);
766 return;
767 }
768
769 /* Otherwise, skip ahead to the user-specified starting frame: */
770 while (!unwind_done(state) &&
771 (!on_stack(&state->stack_info, first_frame, sizeof(long)) ||
772 state->sp <= (unsigned long)first_frame))
773 unwind_next_frame(state);
774
775 return;
776
777 err:
778 state->error = true;
779 the_end:
780 state->stack_info.type = STACK_TYPE_UNKNOWN;
781 }
782 EXPORT_SYMBOL_GPL(__unwind_start);
783