Merge tag 'tty-6.7-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/gregkh/tty
[linux-block.git] / kernel / panic.c
CommitLineData
457c8996 1// SPDX-License-Identifier: GPL-2.0-only
1da177e4
LT
2/*
3 * linux/kernel/panic.c
4 *
5 * Copyright (C) 1991, 1992 Linus Torvalds
6 */
7
8/*
9 * This function is used through-out the kernel (including mm and fs)
10 * to indicate a major problem.
11 */
c95dbf27 12#include <linux/debug_locks.h>
b17b0153 13#include <linux/sched/debug.h>
c95dbf27 14#include <linux/interrupt.h>
7d92bda2 15#include <linux/kgdb.h>
456b565c 16#include <linux/kmsg_dump.h>
c95dbf27
IM
17#include <linux/kallsyms.h>
18#include <linux/notifier.h>
c7c3f05e 19#include <linux/vt_kern.h>
1da177e4 20#include <linux/module.h>
c95dbf27 21#include <linux/random.h>
de7edd31 22#include <linux/ftrace.h>
1da177e4 23#include <linux/reboot.h>
c95dbf27
IM
24#include <linux/delay.h>
25#include <linux/kexec.h>
f39650de 26#include <linux/panic_notifier.h>
c95dbf27 27#include <linux/sched.h>
5d5dd3e4 28#include <linux/string_helpers.h>
1da177e4 29#include <linux/sysrq.h>
c95dbf27 30#include <linux/init.h>
1da177e4 31#include <linux/nmi.h>
08d78658 32#include <linux/console.h>
2553b67a 33#include <linux/bug.h>
7a46ec0e 34#include <linux/ratelimit.h>
b1fca27d 35#include <linux/debugfs.h>
8b05aa26 36#include <linux/sysfs.h>
5a5d7e9b 37#include <linux/context_tracking.h>
23b36fec 38#include <trace/events/error_report.h>
b1fca27d 39#include <asm/sections.h>
1da177e4 40
c7ff0d9c
TS
41#define PANIC_TIMER_STEP 100
42#define PANIC_BLINK_SPD 18
43
60c958d8
GP
44#ifdef CONFIG_SMP
45/*
46 * Should we dump all CPUs backtraces in an oops event?
47 * Defaults to 0, can be changed via sysctl.
48 */
9df91869 49static unsigned int __read_mostly sysctl_oops_all_cpu_backtrace;
50#else
51#define sysctl_oops_all_cpu_backtrace 0
60c958d8
GP
52#endif /* CONFIG_SMP */
53
2a01bb38 54int panic_on_oops = CONFIG_PANIC_ON_OOPS_VALUE;
bc4f2f54 55static unsigned long tainted_mask =
595b893e 56 IS_ENABLED(CONFIG_RANDSTRUCT) ? (1 << TAINT_RANDSTRUCT) : 0;
dd287796
AM
57static int pause_on_oops;
58static int pause_on_oops_flag;
59static DEFINE_SPINLOCK(pause_on_oops_lock);
5375b708 60bool crash_kexec_post_notifiers;
9e3961a0 61int panic_on_warn __read_mostly;
db38d5c1
RA
62unsigned long panic_on_taint;
63bool panic_on_taint_nousertaint = false;
9fc9e278 64static unsigned int warn_limit __read_mostly;
1da177e4 65
5800dc3c 66int panic_timeout = CONFIG_PANIC_TIMEOUT;
81e88fdc 67EXPORT_SYMBOL_GPL(panic_timeout);
1da177e4 68
d999bd93
FT
69#define PANIC_PRINT_TASK_INFO 0x00000001
70#define PANIC_PRINT_MEM_INFO 0x00000002
71#define PANIC_PRINT_TIMER_INFO 0x00000004
72#define PANIC_PRINT_LOCK_INFO 0x00000008
73#define PANIC_PRINT_FTRACE_INFO 0x00000010
de6da1e8 74#define PANIC_PRINT_ALL_PRINTK_MSG 0x00000020
8d470a45 75#define PANIC_PRINT_ALL_CPU_BT 0x00000040
81c9d43f 76unsigned long panic_print;
d999bd93 77
e041c683 78ATOMIC_NOTIFIER_HEAD(panic_notifier_list);
1da177e4
LT
79
80EXPORT_SYMBOL(panic_notifier_list);
81
9360d035 82#ifdef CONFIG_SYSCTL
9df91869 83static struct ctl_table kern_panic_table[] = {
9360d035 84#ifdef CONFIG_SMP
9df91869 85 {
86 .procname = "oops_all_cpu_backtrace",
87 .data = &sysctl_oops_all_cpu_backtrace,
88 .maxlen = sizeof(int),
89 .mode = 0644,
90 .proc_handler = proc_dointvec_minmax,
91 .extra1 = SYSCTL_ZERO,
92 .extra2 = SYSCTL_ONE,
93 },
9360d035 94#endif
9fc9e278
KC
95 {
96 .procname = "warn_limit",
97 .data = &warn_limit,
98 .maxlen = sizeof(warn_limit),
99 .mode = 0644,
100 .proc_handler = proc_douintvec,
101 },
9df91869 102 { }
103};
104
105static __init int kernel_panic_sysctls_init(void)
106{
107 register_sysctl_init("kernel", kern_panic_table);
108 return 0;
109}
110late_initcall(kernel_panic_sysctls_init);
111#endif
112
8b05aa26
KC
113static atomic_t warn_count = ATOMIC_INIT(0);
114
115#ifdef CONFIG_SYSFS
116static ssize_t warn_count_show(struct kobject *kobj, struct kobj_attribute *attr,
117 char *page)
118{
119 return sysfs_emit(page, "%d\n", atomic_read(&warn_count));
120}
121
122static struct kobj_attribute warn_count_attr = __ATTR_RO(warn_count);
123
124static __init int kernel_panic_sysfs_init(void)
125{
126 sysfs_add_file_to_group(kernel_kobj, &warn_count_attr.attr, NULL);
127 return 0;
128}
129late_initcall(kernel_panic_sysfs_init);
130#endif
131
c7ff0d9c 132static long no_blink(int state)
8aeee85a 133{
c7ff0d9c 134 return 0;
8aeee85a
AB
135}
136
c7ff0d9c
TS
137/* Returns how long it waited in ms */
138long (*panic_blink)(int state);
139EXPORT_SYMBOL(panic_blink);
140
93e13a36
MH
141/*
142 * Stop ourself in panic -- architecture code may override this
143 */
7412a60d 144void __weak __noreturn panic_smp_self_stop(void)
93e13a36
MH
145{
146 while (1)
147 cpu_relax();
148}
149
58c5661f
HK
150/*
151 * Stop ourselves in NMI context if another CPU has already panicked. Arch code
152 * may override this to prepare for crash dumping, e.g. save regs info.
153 */
27dea14c 154void __weak __noreturn nmi_panic_self_stop(struct pt_regs *regs)
58c5661f
HK
155{
156 panic_smp_self_stop();
157}
158
0ee59413
HK
159/*
160 * Stop other CPUs in panic. Architecture dependent code may override this
161 * with more suitable version. For example, if the architecture supports
162 * crash dump, it should save registers of each stopped CPU and disable
163 * per-CPU features such as virtualization extensions.
164 */
165void __weak crash_smp_send_stop(void)
166{
167 static int cpus_stopped;
168
169 /*
170 * This function can be called twice in panic path, but obviously
171 * we execute this only once.
172 */
173 if (cpus_stopped)
174 return;
175
176 /*
177 * Note smp_send_stop is the usual smp shutdown function, which
178 * unfortunately means it may not be hardened to work in a panic
179 * situation.
180 */
181 smp_send_stop();
182 cpus_stopped = 1;
183}
184
1717f209
HK
185atomic_t panic_cpu = ATOMIC_INIT(PANIC_CPU_INVALID);
186
ebc41f20
HK
187/*
188 * A variant of panic() called from NMI context. We return if we've already
189 * panicked on this CPU. If another CPU already panicked, loop in
190 * nmi_panic_self_stop() which can provide architecture dependent code such
191 * as saving register state for crash dump.
192 */
193void nmi_panic(struct pt_regs *regs, const char *msg)
194{
9734fe4d 195 int old_cpu, this_cpu;
ebc41f20 196
9734fe4d
UB
197 old_cpu = PANIC_CPU_INVALID;
198 this_cpu = raw_smp_processor_id();
ebc41f20 199
9734fe4d
UB
200 /* atomic_try_cmpxchg updates old_cpu on failure */
201 if (atomic_try_cmpxchg(&panic_cpu, &old_cpu, this_cpu))
ebc41f20 202 panic("%s", msg);
9734fe4d 203 else if (old_cpu != this_cpu)
ebc41f20
HK
204 nmi_panic_self_stop(regs);
205}
206EXPORT_SYMBOL(nmi_panic);
207
f953f140 208static void panic_print_sys_info(bool console_flush)
d999bd93 209{
f953f140
GP
210 if (console_flush) {
211 if (panic_print & PANIC_PRINT_ALL_PRINTK_MSG)
212 console_flush_on_panic(CONSOLE_REPLAY_ALL);
213 return;
214 }
de6da1e8 215
d999bd93
FT
216 if (panic_print & PANIC_PRINT_TASK_INFO)
217 show_state();
218
219 if (panic_print & PANIC_PRINT_MEM_INFO)
527ed4f7 220 show_mem();
d999bd93
FT
221
222 if (panic_print & PANIC_PRINT_TIMER_INFO)
223 sysrq_timer_list_show();
224
225 if (panic_print & PANIC_PRINT_LOCK_INFO)
226 debug_show_all_locks();
227
228 if (panic_print & PANIC_PRINT_FTRACE_INFO)
229 ftrace_dump(DUMP_ALL);
230}
231
79cc1ba7
KC
232void check_panic_on_warn(const char *origin)
233{
7535b832
KC
234 unsigned int limit;
235
79cc1ba7
KC
236 if (panic_on_warn)
237 panic("%s: panic_on_warn set ...\n", origin);
9fc9e278 238
7535b832
KC
239 limit = READ_ONCE(warn_limit);
240 if (atomic_inc_return(&warn_count) >= limit && limit)
9fc9e278 241 panic("%s: system warned too often (kernel.warn_limit is %d)",
7535b832 242 origin, limit);
79cc1ba7
KC
243}
244
b905039e
GP
245/*
246 * Helper that triggers the NMI backtrace (if set in panic_print)
247 * and then performs the secondary CPUs shutdown - we cannot have
248 * the NMI backtrace after the CPUs are off!
249 */
250static void panic_other_cpus_shutdown(bool crash_kexec)
251{
252 if (panic_print & PANIC_PRINT_ALL_CPU_BT)
253 trigger_all_cpu_backtrace();
254
255 /*
256 * Note that smp_send_stop() is the usual SMP shutdown function,
257 * which unfortunately may not be hardened to work in a panic
258 * situation. If we want to do crash dump after notifier calls
259 * and kmsg_dump, we will need architecture dependent extra
260 * bits in addition to stopping other CPUs, hence we rely on
261 * crash_smp_send_stop() for that.
262 */
263 if (!crash_kexec)
264 smp_send_stop();
265 else
266 crash_smp_send_stop();
267}
268
1da177e4
LT
269/**
270 * panic - halt the system
271 * @fmt: The text string to print
272 *
273 * Display a message, then perform cleanups.
274 *
275 * This function never returns.
276 */
9402c95f 277void panic(const char *fmt, ...)
1da177e4 278{
1da177e4
LT
279 static char buf[1024];
280 va_list args;
b49dec1c 281 long i, i_next = 0, len;
c7ff0d9c 282 int state = 0;
1717f209 283 int old_cpu, this_cpu;
b26e27dd 284 bool _crash_kexec_post_notifiers = crash_kexec_post_notifiers;
1da177e4 285
1a2383e8
TY
286 if (panic_on_warn) {
287 /*
288 * This thread may hit another WARN() in the panic path.
289 * Resetting this prevents additional WARN() from panicking the
290 * system on this thread. Other threads are blocked by the
291 * panic_mutex in panic().
292 */
293 panic_on_warn = 0;
294 }
295
190320c3
VM
296 /*
297 * Disable local interrupts. This will prevent panic_smp_self_stop
298 * from deadlocking the first cpu that invokes the panic, since
299 * there is nothing to prevent an interrupt handler (that runs
1717f209 300 * after setting panic_cpu) from invoking panic() again.
190320c3
VM
301 */
302 local_irq_disable();
20bb759a 303 preempt_disable_notrace();
190320c3 304
dc009d92 305 /*
c95dbf27
IM
306 * It's possible to come here directly from a panic-assertion and
307 * not have preempt disabled. Some functions called from here want
dc009d92 308 * preempt to be disabled. No point enabling it later though...
93e13a36
MH
309 *
310 * Only one CPU is allowed to execute the panic code from here. For
311 * multiple parallel invocations of panic, all other CPUs either
312 * stop themself or will wait until they are stopped by the 1st CPU
313 * with smp_send_stop().
1717f209 314 *
9734fe4d
UB
315 * cmpxchg success means this is the 1st CPU which comes here,
316 * so go ahead.
1717f209
HK
317 * `old_cpu == this_cpu' means we came from nmi_panic() which sets
318 * panic_cpu to this CPU. In this case, this is also the 1st CPU.
dc009d92 319 */
9734fe4d 320 old_cpu = PANIC_CPU_INVALID;
1717f209 321 this_cpu = raw_smp_processor_id();
1717f209 322
9734fe4d
UB
323 /* atomic_try_cmpxchg updates old_cpu on failure */
324 if (atomic_try_cmpxchg(&panic_cpu, &old_cpu, this_cpu)) {
325 /* go ahead */
326 } else if (old_cpu != this_cpu)
93e13a36 327 panic_smp_self_stop();
dc009d92 328
5b530fc1 329 console_verbose();
1da177e4
LT
330 bust_spinlocks(1);
331 va_start(args, fmt);
b49dec1c 332 len = vscnprintf(buf, sizeof(buf), fmt, args);
1da177e4 333 va_end(args);
b49dec1c
BP
334
335 if (len && buf[len - 1] == '\n')
336 buf[len - 1] = '\0';
337
d7c0847f 338 pr_emerg("Kernel panic - not syncing: %s\n", buf);
5cb27301 339#ifdef CONFIG_DEBUG_BUGVERBOSE
6e6f0a1f
AK
340 /*
341 * Avoid nested stack-dumping if a panic occurs during oops processing
342 */
026ee1f6 343 if (!test_taint(TAINT_DIE) && oops_in_progress <= 1)
6e6f0a1f 344 dump_stack();
5cb27301 345#endif
1da177e4 346
7d92bda2
DA
347 /*
348 * If kgdb is enabled, give it a chance to run before we stop all
349 * the other CPUs or else we won't be able to debug processes left
350 * running on them.
351 */
352 kgdb_panic(buf);
353
dc009d92
EB
354 /*
355 * If we have crashed and we have a crash kernel loaded let it handle
356 * everything else.
f06e5153
MH
357 * If we want to run this after calling panic_notifiers, pass
358 * the "crash_kexec_post_notifiers" option to the kernel.
7bbee5ca
HK
359 *
360 * Bypass the panic_cpu check and call __crash_kexec directly.
dc009d92 361 */
b905039e 362 if (!_crash_kexec_post_notifiers)
7bbee5ca 363 __crash_kexec(NULL);
dc009d92 364
b905039e 365 panic_other_cpus_shutdown(_crash_kexec_post_notifiers);
1da177e4 366
6723734c
KC
367 /*
368 * Run any panic handlers, including those that might need to
369 * add information to the kmsg dump output.
370 */
e041c683 371 atomic_notifier_call_chain(&panic_notifier_list, 0, buf);
1da177e4 372
f953f140
GP
373 panic_print_sys_info(false);
374
6723734c
KC
375 kmsg_dump(KMSG_DUMP_PANIC);
376
f06e5153
MH
377 /*
378 * If you doubt kdump always works fine in any situation,
379 * "crash_kexec_post_notifiers" offers you a chance to run
380 * panic_notifiers and dumping kmsg before kdump.
381 * Note: since some panic_notifiers can make crashed kernel
382 * more unstable, it can increase risks of the kdump failure too.
7bbee5ca
HK
383 *
384 * Bypass the panic_cpu check and call __crash_kexec directly.
f06e5153 385 */
b26e27dd 386 if (_crash_kexec_post_notifiers)
7bbee5ca 387 __crash_kexec(NULL);
f06e5153 388
c7c3f05e 389 console_unblank();
d014e889 390
08d78658
VK
391 /*
392 * We may have ended up stopping the CPU holding the lock (in
393 * smp_send_stop()) while still having some valuable data in the console
394 * buffer. Try to acquire the lock then release it regardless of the
7625b3a0
VK
395 * result. The release will also print the buffers out. Locks debug
396 * should be disabled to avoid reporting bad unlock balance when
397 * panic() is not being callled from OOPS.
08d78658 398 */
7625b3a0 399 debug_locks_off();
de6da1e8 400 console_flush_on_panic(CONSOLE_FLUSH_PENDING);
08d78658 401
f953f140 402 panic_print_sys_info(true);
d999bd93 403
c7ff0d9c
TS
404 if (!panic_blink)
405 panic_blink = no_blink;
406
dc009d92 407 if (panic_timeout > 0) {
1da177e4 408 /*
c95dbf27
IM
409 * Delay timeout seconds before rebooting the machine.
410 * We can't use the "normal" timers since we just panicked.
411 */
ff7a28a0 412 pr_emerg("Rebooting in %d seconds..\n", panic_timeout);
c95dbf27 413
c7ff0d9c 414 for (i = 0; i < panic_timeout * 1000; i += PANIC_TIMER_STEP) {
1da177e4 415 touch_nmi_watchdog();
c7ff0d9c
TS
416 if (i >= i_next) {
417 i += panic_blink(state ^= 1);
418 i_next = i + 3600 / PANIC_BLINK_SPD;
419 }
420 mdelay(PANIC_TIMER_STEP);
1da177e4 421 }
4302fbc8
HD
422 }
423 if (panic_timeout != 0) {
c95dbf27
IM
424 /*
425 * This will not be a clean reboot, with everything
426 * shutting down. But if there is a chance of
427 * rebooting the system it will be rebooted.
1da177e4 428 */
b287a25a
AK
429 if (panic_reboot_mode != REBOOT_UNDEFINED)
430 reboot_mode = panic_reboot_mode;
2f048ea8 431 emergency_restart();
1da177e4
LT
432 }
433#ifdef __sparc__
434 {
435 extern int stop_a_enabled;
a271c241 436 /* Make sure the user can actually press Stop-A (L1-A) */
1da177e4 437 stop_a_enabled = 1;
7db60d05
VK
438 pr_emerg("Press Stop-A (L1-A) from sun keyboard or send break\n"
439 "twice on console to return to the boot prom\n");
1da177e4
LT
440 }
441#endif
347a8dc3 442#if defined(CONFIG_S390)
98587c2d 443 disabled_wait();
1da177e4 444#endif
5ad75105 445 pr_emerg("---[ end Kernel panic - not syncing: %s ]---\n", buf);
c39ea0b9
FT
446
447 /* Do not scroll important messages printed above */
448 suppress_printk = 1;
1da177e4 449 local_irq_enable();
c7ff0d9c 450 for (i = 0; ; i += PANIC_TIMER_STEP) {
c22db941 451 touch_softlockup_watchdog();
c7ff0d9c
TS
452 if (i >= i_next) {
453 i += panic_blink(state ^= 1);
454 i_next = i + 3600 / PANIC_BLINK_SPD;
455 }
456 mdelay(PANIC_TIMER_STEP);
1da177e4
LT
457 }
458}
459
460EXPORT_SYMBOL(panic);
461
7fd8329b
PM
462/*
463 * TAINT_FORCED_RMMOD could be a per-module flag but the module
464 * is being removed anyway.
465 */
466const struct taint_flag taint_flags[TAINT_FLAGS_COUNT] = {
47d4b263
KC
467 [ TAINT_PROPRIETARY_MODULE ] = { 'P', 'G', true },
468 [ TAINT_FORCED_MODULE ] = { 'F', ' ', true },
469 [ TAINT_CPU_OUT_OF_SPEC ] = { 'S', ' ', false },
470 [ TAINT_FORCED_RMMOD ] = { 'R', ' ', false },
471 [ TAINT_MACHINE_CHECK ] = { 'M', ' ', false },
472 [ TAINT_BAD_PAGE ] = { 'B', ' ', false },
473 [ TAINT_USER ] = { 'U', ' ', false },
474 [ TAINT_DIE ] = { 'D', ' ', false },
475 [ TAINT_OVERRIDDEN_ACPI_TABLE ] = { 'A', ' ', false },
476 [ TAINT_WARN ] = { 'W', ' ', false },
477 [ TAINT_CRAP ] = { 'C', ' ', true },
478 [ TAINT_FIRMWARE_WORKAROUND ] = { 'I', ' ', false },
479 [ TAINT_OOT_MODULE ] = { 'O', ' ', true },
480 [ TAINT_UNSIGNED_MODULE ] = { 'E', ' ', true },
481 [ TAINT_SOFTLOCKUP ] = { 'L', ' ', false },
482 [ TAINT_LIVEPATCH ] = { 'K', ' ', true },
483 [ TAINT_AUX ] = { 'X', ' ', true },
bc4f2f54 484 [ TAINT_RANDSTRUCT ] = { 'T', ' ', true },
2852ca7f 485 [ TAINT_TEST ] = { 'N', ' ', true },
25ddbb18
AK
486};
487
1da177e4 488/**
9c4560e5 489 * print_tainted - return a string to represent the kernel taint state.
1da177e4 490 *
57043247 491 * For individual taint flag meanings, see Documentation/admin-guide/sysctl/kernel.rst
1da177e4 492 *
9c4560e5
KC
493 * The string is overwritten by the next call to print_tainted(),
494 * but is always NULL terminated.
1da177e4 495 */
1da177e4
LT
496const char *print_tainted(void)
497{
7fd8329b 498 static char buf[TAINT_FLAGS_COUNT + sizeof("Tainted: ")];
25ddbb18 499
47d4b263
KC
500 BUILD_BUG_ON(ARRAY_SIZE(taint_flags) != TAINT_FLAGS_COUNT);
501
25ddbb18
AK
502 if (tainted_mask) {
503 char *s;
504 int i;
505
506 s = buf + sprintf(buf, "Tainted: ");
7fd8329b
PM
507 for (i = 0; i < TAINT_FLAGS_COUNT; i++) {
508 const struct taint_flag *t = &taint_flags[i];
509 *s++ = test_bit(i, &tainted_mask) ?
5eb7c0d0 510 t->c_true : t->c_false;
25ddbb18
AK
511 }
512 *s = 0;
513 } else
1da177e4 514 snprintf(buf, sizeof(buf), "Not tainted");
c95dbf27
IM
515
516 return buf;
1da177e4
LT
517}
518
25ddbb18 519int test_taint(unsigned flag)
1da177e4 520{
25ddbb18
AK
521 return test_bit(flag, &tainted_mask);
522}
523EXPORT_SYMBOL(test_taint);
524
525unsigned long get_taint(void)
526{
527 return tainted_mask;
1da177e4 528}
dd287796 529
373d4d09
RR
530/**
531 * add_taint: add a taint flag if not already set.
532 * @flag: one of the TAINT_* constants.
533 * @lockdep_ok: whether lock debugging is still OK.
534 *
535 * If something bad has gone wrong, you'll want @lockdebug_ok = false, but for
536 * some notewortht-but-not-corrupting cases, it can be set to true.
537 */
538void add_taint(unsigned flag, enum lockdep_ok lockdep_ok)
dd287796 539{
373d4d09 540 if (lockdep_ok == LOCKDEP_NOW_UNRELIABLE && __debug_locks_off())
d7c0847f 541 pr_warn("Disabling lock debugging due to kernel taint\n");
9eeba613 542
25ddbb18 543 set_bit(flag, &tainted_mask);
db38d5c1
RA
544
545 if (tainted_mask & panic_on_taint) {
546 panic_on_taint = 0;
547 panic("panic_on_taint set ...");
548 }
dd287796 549}
1da177e4 550EXPORT_SYMBOL(add_taint);
dd287796
AM
551
552static void spin_msec(int msecs)
553{
554 int i;
555
556 for (i = 0; i < msecs; i++) {
557 touch_nmi_watchdog();
558 mdelay(1);
559 }
560}
561
562/*
563 * It just happens that oops_enter() and oops_exit() are identically
564 * implemented...
565 */
566static void do_oops_enter_exit(void)
567{
568 unsigned long flags;
569 static int spin_counter;
570
571 if (!pause_on_oops)
572 return;
573
574 spin_lock_irqsave(&pause_on_oops_lock, flags);
575 if (pause_on_oops_flag == 0) {
576 /* This CPU may now print the oops message */
577 pause_on_oops_flag = 1;
578 } else {
579 /* We need to stall this CPU */
580 if (!spin_counter) {
581 /* This CPU gets to do the counting */
582 spin_counter = pause_on_oops;
583 do {
584 spin_unlock(&pause_on_oops_lock);
585 spin_msec(MSEC_PER_SEC);
586 spin_lock(&pause_on_oops_lock);
587 } while (--spin_counter);
588 pause_on_oops_flag = 0;
589 } else {
590 /* This CPU waits for a different one */
591 while (spin_counter) {
592 spin_unlock(&pause_on_oops_lock);
593 spin_msec(1);
594 spin_lock(&pause_on_oops_lock);
595 }
596 }
597 }
598 spin_unlock_irqrestore(&pause_on_oops_lock, flags);
599}
600
601/*
c95dbf27
IM
602 * Return true if the calling CPU is allowed to print oops-related info.
603 * This is a bit racy..
dd287796 604 */
79076e12 605bool oops_may_print(void)
dd287796
AM
606{
607 return pause_on_oops_flag == 0;
608}
609
610/*
611 * Called when the architecture enters its oops handler, before it prints
c95dbf27
IM
612 * anything. If this is the first CPU to oops, and it's oopsing the first
613 * time then let it proceed.
dd287796 614 *
c95dbf27
IM
615 * This is all enabled by the pause_on_oops kernel boot option. We do all
616 * this to ensure that oopses don't scroll off the screen. It has the
617 * side-effect of preventing later-oopsing CPUs from mucking up the display,
618 * too.
dd287796 619 *
c95dbf27
IM
620 * It turns out that the CPU which is allowed to print ends up pausing for
621 * the right duration, whereas all the other CPUs pause for twice as long:
622 * once in oops_enter(), once in oops_exit().
dd287796
AM
623 */
624void oops_enter(void)
625{
bdff7870 626 tracing_off();
c95dbf27
IM
627 /* can't trust the integrity of the kernel anymore: */
628 debug_locks_off();
dd287796 629 do_oops_enter_exit();
60c958d8
GP
630
631 if (sysctl_oops_all_cpu_backtrace)
632 trigger_all_cpu_backtrace();
dd287796
AM
633}
634
63037f74 635static void print_oops_end_marker(void)
71c33911 636{
e83a4472 637 pr_warn("---[ end trace %016llx ]---\n", 0ULL);
71c33911
AV
638}
639
dd287796
AM
640/*
641 * Called when the architecture exits its oops handler, after printing
642 * everything.
643 */
644void oops_exit(void)
645{
646 do_oops_enter_exit();
71c33911 647 print_oops_end_marker();
456b565c 648 kmsg_dump(KMSG_DUMP_OOPS);
dd287796 649}
3162f751 650
2553b67a 651struct warn_args {
0f6f49a8 652 const char *fmt;
a8f18b90 653 va_list args;
0f6f49a8 654};
bd89bb29 655
2553b67a
JP
656void __warn(const char *file, int line, void *caller, unsigned taint,
657 struct pt_regs *regs, struct warn_args *args)
0f6f49a8 658{
de7edd31
SRRH
659 disable_trace_on_warning();
660
2553b67a
JP
661 if (file)
662 pr_warn("WARNING: CPU: %d PID: %d at %s:%d %pS\n",
663 raw_smp_processor_id(), current->pid, file, line,
664 caller);
665 else
666 pr_warn("WARNING: CPU: %d PID: %d at %pS\n",
667 raw_smp_processor_id(), current->pid, caller);
74853dba 668
0f6f49a8
LT
669 if (args)
670 vprintk(args->fmt, args->args);
a8f18b90 671
3f388f28
AK
672 print_modules();
673
674 if (regs)
675 show_regs(regs);
676
79cc1ba7 677 check_panic_on_warn("kernel");
9e3961a0 678
2f31ad64
CL
679 if (!regs)
680 dump_stack();
2553b67a 681
4c281074
SRV
682 print_irqtrace_events(current);
683
a8f18b90 684 print_oops_end_marker();
23b36fec 685 trace_error_report_end(ERROR_DETECTOR_WARN, (unsigned long)caller);
2553b67a 686
373d4d09
RR
687 /* Just a warning, don't kill lockdep. */
688 add_taint(taint, LOCKDEP_STILL_OK);
a8f18b90 689}
0f6f49a8 690
525bb813 691#ifdef CONFIG_BUG
2da1ead4 692#ifndef __WARN_FLAGS
ee871133
KC
693void warn_slowpath_fmt(const char *file, int line, unsigned taint,
694 const char *fmt, ...)
b2be0527 695{
5a5d7e9b 696 bool rcu = warn_rcu_enter();
2553b67a 697 struct warn_args args;
b2be0527 698
d38aba49
KC
699 pr_warn(CUT_HERE);
700
f2f84b05 701 if (!fmt) {
f2f84b05
KC
702 __warn(file, line, __builtin_return_address(0), taint,
703 NULL, NULL);
cccd3281 704 warn_rcu_exit(rcu);
f2f84b05
KC
705 return;
706 }
707
b2be0527
BH
708 args.fmt = fmt;
709 va_start(args.args, fmt);
2553b67a 710 __warn(file, line, __builtin_return_address(0), taint, NULL, &args);
b2be0527 711 va_end(args.args);
5a5d7e9b 712 warn_rcu_exit(rcu);
b2be0527 713}
ee871133 714EXPORT_SYMBOL(warn_slowpath_fmt);
a7bed27a
KC
715#else
716void __warn_printk(const char *fmt, ...)
717{
5a5d7e9b 718 bool rcu = warn_rcu_enter();
a7bed27a
KC
719 va_list args;
720
721 pr_warn(CUT_HERE);
722
723 va_start(args, fmt);
724 vprintk(fmt, args);
725 va_end(args);
5a5d7e9b 726 warn_rcu_exit(rcu);
a7bed27a
KC
727}
728EXPORT_SYMBOL(__warn_printk);
79b4cc5e
AV
729#endif
730
b1fca27d
AK
731/* Support resetting WARN*_ONCE state */
732
733static int clear_warn_once_set(void *data, u64 val)
734{
aaf5dcfb 735 generic_bug_clear_once();
b1fca27d
AK
736 memset(__start_once, 0, __end_once - __start_once);
737 return 0;
738}
739
4169680e
Y
740DEFINE_DEBUGFS_ATTRIBUTE(clear_warn_once_fops, NULL, clear_warn_once_set,
741 "%lld\n");
b1fca27d
AK
742
743static __init int register_warn_debugfs(void)
744{
745 /* Don't care about failure */
4169680e
Y
746 debugfs_create_file_unsafe("clear_warn_once", 0200, NULL, NULL,
747 &clear_warn_once_fops);
b1fca27d
AK
748 return 0;
749}
750
751device_initcall(register_warn_debugfs);
752#endif
753
050e9baa 754#ifdef CONFIG_STACKPROTECTOR
54371a43 755
3162f751
AV
756/*
757 * Called when gcc's -fstack-protector feature is used, and
758 * gcc detects corruption of the on-stack canary value
759 */
5916d5f9 760__visible noinstr void __stack_chk_fail(void)
3162f751 761{
5916d5f9 762 instrumentation_begin();
95c4fb78 763 panic("stack-protector: Kernel stack is corrupted in: %pB",
517a92c4 764 __builtin_return_address(0));
5916d5f9 765 instrumentation_end();
3162f751
AV
766}
767EXPORT_SYMBOL(__stack_chk_fail);
54371a43 768
3162f751 769#endif
f44dd164
RR
770
771core_param(panic, panic_timeout, int, 0644);
d999bd93 772core_param(panic_print, panic_print, ulong, 0644);
f44dd164 773core_param(pause_on_oops, pause_on_oops, int, 0644);
9e3961a0 774core_param(panic_on_warn, panic_on_warn, int, 0644);
b26e27dd 775core_param(crash_kexec_post_notifiers, crash_kexec_post_notifiers, bool, 0644);
f06e5153 776
d404ab0a
OH
777static int __init oops_setup(char *s)
778{
779 if (!s)
780 return -EINVAL;
781 if (!strcmp(s, "panic"))
782 panic_on_oops = 1;
783 return 0;
784}
785early_param("oops", oops_setup);
db38d5c1
RA
786
787static int __init panic_on_taint_setup(char *s)
788{
789 char *taint_str;
790
791 if (!s)
792 return -EINVAL;
793
794 taint_str = strsep(&s, ",");
795 if (kstrtoul(taint_str, 16, &panic_on_taint))
796 return -EINVAL;
797
798 /* make sure panic_on_taint doesn't hold out-of-range TAINT flags */
799 panic_on_taint &= TAINT_FLAGS_MAX;
800
801 if (!panic_on_taint)
802 return -EINVAL;
803
804 if (s && !strcmp(s, "nousertaint"))
805 panic_on_taint_nousertaint = true;
806
5d5dd3e4
AS
807 pr_info("panic_on_taint: bitmask=0x%lx nousertaint_mode=%s\n",
808 panic_on_taint, str_enabled_disabled(panic_on_taint_nousertaint));
db38d5c1
RA
809
810 return 0;
811}
812early_param("panic_on_taint", panic_on_taint_setup);