aqc111: fix endianness issue in aqc111_change_mtu
[linux-2.6-block.git] / kernel / panic.c
CommitLineData
1da177e4
LT
1/*
2 * linux/kernel/panic.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 */
6
7/*
8 * This function is used through-out the kernel (including mm and fs)
9 * to indicate a major problem.
10 */
c95dbf27 11#include <linux/debug_locks.h>
b17b0153 12#include <linux/sched/debug.h>
c95dbf27 13#include <linux/interrupt.h>
456b565c 14#include <linux/kmsg_dump.h>
c95dbf27
IM
15#include <linux/kallsyms.h>
16#include <linux/notifier.h>
c7c3f05e 17#include <linux/vt_kern.h>
1da177e4 18#include <linux/module.h>
c95dbf27 19#include <linux/random.h>
de7edd31 20#include <linux/ftrace.h>
1da177e4 21#include <linux/reboot.h>
c95dbf27
IM
22#include <linux/delay.h>
23#include <linux/kexec.h>
24#include <linux/sched.h>
1da177e4 25#include <linux/sysrq.h>
c95dbf27 26#include <linux/init.h>
1da177e4 27#include <linux/nmi.h>
08d78658 28#include <linux/console.h>
2553b67a 29#include <linux/bug.h>
7a46ec0e 30#include <linux/ratelimit.h>
b1fca27d
AK
31#include <linux/debugfs.h>
32#include <asm/sections.h>
1da177e4 33
c7ff0d9c
TS
34#define PANIC_TIMER_STEP 100
35#define PANIC_BLINK_SPD 18
36
2a01bb38 37int panic_on_oops = CONFIG_PANIC_ON_OOPS_VALUE;
bc4f2f54
KC
38static unsigned long tainted_mask =
39 IS_ENABLED(CONFIG_GCC_PLUGIN_RANDSTRUCT) ? (1 << TAINT_RANDSTRUCT) : 0;
dd287796
AM
40static int pause_on_oops;
41static int pause_on_oops_flag;
42static DEFINE_SPINLOCK(pause_on_oops_lock);
5375b708 43bool crash_kexec_post_notifiers;
9e3961a0 44int panic_on_warn __read_mostly;
1da177e4 45
5800dc3c 46int panic_timeout = CONFIG_PANIC_TIMEOUT;
81e88fdc 47EXPORT_SYMBOL_GPL(panic_timeout);
1da177e4 48
d999bd93
FT
49#define PANIC_PRINT_TASK_INFO 0x00000001
50#define PANIC_PRINT_MEM_INFO 0x00000002
51#define PANIC_PRINT_TIMER_INFO 0x00000004
52#define PANIC_PRINT_LOCK_INFO 0x00000008
53#define PANIC_PRINT_FTRACE_INFO 0x00000010
81c9d43f 54unsigned long panic_print;
d999bd93 55
e041c683 56ATOMIC_NOTIFIER_HEAD(panic_notifier_list);
1da177e4
LT
57
58EXPORT_SYMBOL(panic_notifier_list);
59
c7ff0d9c 60static long no_blink(int state)
8aeee85a 61{
c7ff0d9c 62 return 0;
8aeee85a
AB
63}
64
c7ff0d9c
TS
65/* Returns how long it waited in ms */
66long (*panic_blink)(int state);
67EXPORT_SYMBOL(panic_blink);
68
93e13a36
MH
69/*
70 * Stop ourself in panic -- architecture code may override this
71 */
72void __weak panic_smp_self_stop(void)
73{
74 while (1)
75 cpu_relax();
76}
77
58c5661f
HK
78/*
79 * Stop ourselves in NMI context if another CPU has already panicked. Arch code
80 * may override this to prepare for crash dumping, e.g. save regs info.
81 */
82void __weak nmi_panic_self_stop(struct pt_regs *regs)
83{
84 panic_smp_self_stop();
85}
86
0ee59413
HK
87/*
88 * Stop other CPUs in panic. Architecture dependent code may override this
89 * with more suitable version. For example, if the architecture supports
90 * crash dump, it should save registers of each stopped CPU and disable
91 * per-CPU features such as virtualization extensions.
92 */
93void __weak crash_smp_send_stop(void)
94{
95 static int cpus_stopped;
96
97 /*
98 * This function can be called twice in panic path, but obviously
99 * we execute this only once.
100 */
101 if (cpus_stopped)
102 return;
103
104 /*
105 * Note smp_send_stop is the usual smp shutdown function, which
106 * unfortunately means it may not be hardened to work in a panic
107 * situation.
108 */
109 smp_send_stop();
110 cpus_stopped = 1;
111}
112
1717f209
HK
113atomic_t panic_cpu = ATOMIC_INIT(PANIC_CPU_INVALID);
114
ebc41f20
HK
115/*
116 * A variant of panic() called from NMI context. We return if we've already
117 * panicked on this CPU. If another CPU already panicked, loop in
118 * nmi_panic_self_stop() which can provide architecture dependent code such
119 * as saving register state for crash dump.
120 */
121void nmi_panic(struct pt_regs *regs, const char *msg)
122{
123 int old_cpu, cpu;
124
125 cpu = raw_smp_processor_id();
126 old_cpu = atomic_cmpxchg(&panic_cpu, PANIC_CPU_INVALID, cpu);
127
128 if (old_cpu == PANIC_CPU_INVALID)
129 panic("%s", msg);
130 else if (old_cpu != cpu)
131 nmi_panic_self_stop(regs);
132}
133EXPORT_SYMBOL(nmi_panic);
134
d999bd93
FT
135static void panic_print_sys_info(void)
136{
137 if (panic_print & PANIC_PRINT_TASK_INFO)
138 show_state();
139
140 if (panic_print & PANIC_PRINT_MEM_INFO)
141 show_mem(0, NULL);
142
143 if (panic_print & PANIC_PRINT_TIMER_INFO)
144 sysrq_timer_list_show();
145
146 if (panic_print & PANIC_PRINT_LOCK_INFO)
147 debug_show_all_locks();
148
149 if (panic_print & PANIC_PRINT_FTRACE_INFO)
150 ftrace_dump(DUMP_ALL);
151}
152
1da177e4
LT
153/**
154 * panic - halt the system
155 * @fmt: The text string to print
156 *
157 * Display a message, then perform cleanups.
158 *
159 * This function never returns.
160 */
9402c95f 161void panic(const char *fmt, ...)
1da177e4 162{
1da177e4
LT
163 static char buf[1024];
164 va_list args;
b49dec1c 165 long i, i_next = 0, len;
c7ff0d9c 166 int state = 0;
1717f209 167 int old_cpu, this_cpu;
b26e27dd 168 bool _crash_kexec_post_notifiers = crash_kexec_post_notifiers;
1da177e4 169
190320c3
VM
170 /*
171 * Disable local interrupts. This will prevent panic_smp_self_stop
172 * from deadlocking the first cpu that invokes the panic, since
173 * there is nothing to prevent an interrupt handler (that runs
1717f209 174 * after setting panic_cpu) from invoking panic() again.
190320c3
VM
175 */
176 local_irq_disable();
177
dc009d92 178 /*
c95dbf27
IM
179 * It's possible to come here directly from a panic-assertion and
180 * not have preempt disabled. Some functions called from here want
dc009d92 181 * preempt to be disabled. No point enabling it later though...
93e13a36
MH
182 *
183 * Only one CPU is allowed to execute the panic code from here. For
184 * multiple parallel invocations of panic, all other CPUs either
185 * stop themself or will wait until they are stopped by the 1st CPU
186 * with smp_send_stop().
1717f209
HK
187 *
188 * `old_cpu == PANIC_CPU_INVALID' means this is the 1st CPU which
189 * comes here, so go ahead.
190 * `old_cpu == this_cpu' means we came from nmi_panic() which sets
191 * panic_cpu to this CPU. In this case, this is also the 1st CPU.
dc009d92 192 */
1717f209
HK
193 this_cpu = raw_smp_processor_id();
194 old_cpu = atomic_cmpxchg(&panic_cpu, PANIC_CPU_INVALID, this_cpu);
195
196 if (old_cpu != PANIC_CPU_INVALID && old_cpu != this_cpu)
93e13a36 197 panic_smp_self_stop();
dc009d92 198
5b530fc1 199 console_verbose();
1da177e4
LT
200 bust_spinlocks(1);
201 va_start(args, fmt);
b49dec1c 202 len = vscnprintf(buf, sizeof(buf), fmt, args);
1da177e4 203 va_end(args);
b49dec1c
BP
204
205 if (len && buf[len - 1] == '\n')
206 buf[len - 1] = '\0';
207
d7c0847f 208 pr_emerg("Kernel panic - not syncing: %s\n", buf);
5cb27301 209#ifdef CONFIG_DEBUG_BUGVERBOSE
6e6f0a1f
AK
210 /*
211 * Avoid nested stack-dumping if a panic occurs during oops processing
212 */
026ee1f6 213 if (!test_taint(TAINT_DIE) && oops_in_progress <= 1)
6e6f0a1f 214 dump_stack();
5cb27301 215#endif
1da177e4 216
dc009d92
EB
217 /*
218 * If we have crashed and we have a crash kernel loaded let it handle
219 * everything else.
f06e5153
MH
220 * If we want to run this after calling panic_notifiers, pass
221 * the "crash_kexec_post_notifiers" option to the kernel.
7bbee5ca
HK
222 *
223 * Bypass the panic_cpu check and call __crash_kexec directly.
dc009d92 224 */
b26e27dd 225 if (!_crash_kexec_post_notifiers) {
f92bac3b 226 printk_safe_flush_on_panic();
7bbee5ca 227 __crash_kexec(NULL);
dc009d92 228
0ee59413
HK
229 /*
230 * Note smp_send_stop is the usual smp shutdown function, which
231 * unfortunately means it may not be hardened to work in a
232 * panic situation.
233 */
234 smp_send_stop();
235 } else {
236 /*
237 * If we want to do crash dump after notifier calls and
238 * kmsg_dump, we will need architecture dependent extra
239 * works in addition to stopping other CPUs.
240 */
241 crash_smp_send_stop();
242 }
1da177e4 243
6723734c
KC
244 /*
245 * Run any panic handlers, including those that might need to
246 * add information to the kmsg dump output.
247 */
e041c683 248 atomic_notifier_call_chain(&panic_notifier_list, 0, buf);
1da177e4 249
cf9b1106 250 /* Call flush even twice. It tries harder with a single online CPU */
f92bac3b 251 printk_safe_flush_on_panic();
6723734c
KC
252 kmsg_dump(KMSG_DUMP_PANIC);
253
f06e5153
MH
254 /*
255 * If you doubt kdump always works fine in any situation,
256 * "crash_kexec_post_notifiers" offers you a chance to run
257 * panic_notifiers and dumping kmsg before kdump.
258 * Note: since some panic_notifiers can make crashed kernel
259 * more unstable, it can increase risks of the kdump failure too.
7bbee5ca
HK
260 *
261 * Bypass the panic_cpu check and call __crash_kexec directly.
f06e5153 262 */
b26e27dd 263 if (_crash_kexec_post_notifiers)
7bbee5ca 264 __crash_kexec(NULL);
f06e5153 265
c7c3f05e
SS
266#ifdef CONFIG_VT
267 unblank_screen();
268#endif
269 console_unblank();
d014e889 270
08d78658
VK
271 /*
272 * We may have ended up stopping the CPU holding the lock (in
273 * smp_send_stop()) while still having some valuable data in the console
274 * buffer. Try to acquire the lock then release it regardless of the
7625b3a0
VK
275 * result. The release will also print the buffers out. Locks debug
276 * should be disabled to avoid reporting bad unlock balance when
277 * panic() is not being callled from OOPS.
08d78658 278 */
7625b3a0 279 debug_locks_off();
8d91f8b1 280 console_flush_on_panic();
08d78658 281
d999bd93
FT
282 panic_print_sys_info();
283
c7ff0d9c
TS
284 if (!panic_blink)
285 panic_blink = no_blink;
286
dc009d92 287 if (panic_timeout > 0) {
1da177e4 288 /*
c95dbf27
IM
289 * Delay timeout seconds before rebooting the machine.
290 * We can't use the "normal" timers since we just panicked.
291 */
ff7a28a0 292 pr_emerg("Rebooting in %d seconds..\n", panic_timeout);
c95dbf27 293
c7ff0d9c 294 for (i = 0; i < panic_timeout * 1000; i += PANIC_TIMER_STEP) {
1da177e4 295 touch_nmi_watchdog();
c7ff0d9c
TS
296 if (i >= i_next) {
297 i += panic_blink(state ^= 1);
298 i_next = i + 3600 / PANIC_BLINK_SPD;
299 }
300 mdelay(PANIC_TIMER_STEP);
1da177e4 301 }
4302fbc8
HD
302 }
303 if (panic_timeout != 0) {
c95dbf27
IM
304 /*
305 * This will not be a clean reboot, with everything
306 * shutting down. But if there is a chance of
307 * rebooting the system it will be rebooted.
1da177e4 308 */
2f048ea8 309 emergency_restart();
1da177e4
LT
310 }
311#ifdef __sparc__
312 {
313 extern int stop_a_enabled;
a271c241 314 /* Make sure the user can actually press Stop-A (L1-A) */
1da177e4 315 stop_a_enabled = 1;
7db60d05
VK
316 pr_emerg("Press Stop-A (L1-A) from sun keyboard or send break\n"
317 "twice on console to return to the boot prom\n");
1da177e4
LT
318 }
319#endif
347a8dc3 320#if defined(CONFIG_S390)
98587c2d 321 disabled_wait();
1da177e4 322#endif
5ad75105 323 pr_emerg("---[ end Kernel panic - not syncing: %s ]---\n", buf);
1da177e4 324 local_irq_enable();
c7ff0d9c 325 for (i = 0; ; i += PANIC_TIMER_STEP) {
c22db941 326 touch_softlockup_watchdog();
c7ff0d9c
TS
327 if (i >= i_next) {
328 i += panic_blink(state ^= 1);
329 i_next = i + 3600 / PANIC_BLINK_SPD;
330 }
331 mdelay(PANIC_TIMER_STEP);
1da177e4
LT
332 }
333}
334
335EXPORT_SYMBOL(panic);
336
7fd8329b
PM
337/*
338 * TAINT_FORCED_RMMOD could be a per-module flag but the module
339 * is being removed anyway.
340 */
341const struct taint_flag taint_flags[TAINT_FLAGS_COUNT] = {
47d4b263
KC
342 [ TAINT_PROPRIETARY_MODULE ] = { 'P', 'G', true },
343 [ TAINT_FORCED_MODULE ] = { 'F', ' ', true },
344 [ TAINT_CPU_OUT_OF_SPEC ] = { 'S', ' ', false },
345 [ TAINT_FORCED_RMMOD ] = { 'R', ' ', false },
346 [ TAINT_MACHINE_CHECK ] = { 'M', ' ', false },
347 [ TAINT_BAD_PAGE ] = { 'B', ' ', false },
348 [ TAINT_USER ] = { 'U', ' ', false },
349 [ TAINT_DIE ] = { 'D', ' ', false },
350 [ TAINT_OVERRIDDEN_ACPI_TABLE ] = { 'A', ' ', false },
351 [ TAINT_WARN ] = { 'W', ' ', false },
352 [ TAINT_CRAP ] = { 'C', ' ', true },
353 [ TAINT_FIRMWARE_WORKAROUND ] = { 'I', ' ', false },
354 [ TAINT_OOT_MODULE ] = { 'O', ' ', true },
355 [ TAINT_UNSIGNED_MODULE ] = { 'E', ' ', true },
356 [ TAINT_SOFTLOCKUP ] = { 'L', ' ', false },
357 [ TAINT_LIVEPATCH ] = { 'K', ' ', true },
358 [ TAINT_AUX ] = { 'X', ' ', true },
bc4f2f54 359 [ TAINT_RANDSTRUCT ] = { 'T', ' ', true },
25ddbb18
AK
360};
361
1da177e4 362/**
9c4560e5 363 * print_tainted - return a string to represent the kernel taint state.
1da177e4 364 *
9c4560e5 365 * For individual taint flag meanings, see Documentation/sysctl/kernel.txt
1da177e4 366 *
9c4560e5
KC
367 * The string is overwritten by the next call to print_tainted(),
368 * but is always NULL terminated.
1da177e4 369 */
1da177e4
LT
370const char *print_tainted(void)
371{
7fd8329b 372 static char buf[TAINT_FLAGS_COUNT + sizeof("Tainted: ")];
25ddbb18 373
47d4b263
KC
374 BUILD_BUG_ON(ARRAY_SIZE(taint_flags) != TAINT_FLAGS_COUNT);
375
25ddbb18
AK
376 if (tainted_mask) {
377 char *s;
378 int i;
379
380 s = buf + sprintf(buf, "Tainted: ");
7fd8329b
PM
381 for (i = 0; i < TAINT_FLAGS_COUNT; i++) {
382 const struct taint_flag *t = &taint_flags[i];
383 *s++ = test_bit(i, &tainted_mask) ?
5eb7c0d0 384 t->c_true : t->c_false;
25ddbb18
AK
385 }
386 *s = 0;
387 } else
1da177e4 388 snprintf(buf, sizeof(buf), "Not tainted");
c95dbf27
IM
389
390 return buf;
1da177e4
LT
391}
392
25ddbb18 393int test_taint(unsigned flag)
1da177e4 394{
25ddbb18
AK
395 return test_bit(flag, &tainted_mask);
396}
397EXPORT_SYMBOL(test_taint);
398
399unsigned long get_taint(void)
400{
401 return tainted_mask;
1da177e4 402}
dd287796 403
373d4d09
RR
404/**
405 * add_taint: add a taint flag if not already set.
406 * @flag: one of the TAINT_* constants.
407 * @lockdep_ok: whether lock debugging is still OK.
408 *
409 * If something bad has gone wrong, you'll want @lockdebug_ok = false, but for
410 * some notewortht-but-not-corrupting cases, it can be set to true.
411 */
412void add_taint(unsigned flag, enum lockdep_ok lockdep_ok)
dd287796 413{
373d4d09 414 if (lockdep_ok == LOCKDEP_NOW_UNRELIABLE && __debug_locks_off())
d7c0847f 415 pr_warn("Disabling lock debugging due to kernel taint\n");
9eeba613 416
25ddbb18 417 set_bit(flag, &tainted_mask);
dd287796 418}
1da177e4 419EXPORT_SYMBOL(add_taint);
dd287796
AM
420
421static void spin_msec(int msecs)
422{
423 int i;
424
425 for (i = 0; i < msecs; i++) {
426 touch_nmi_watchdog();
427 mdelay(1);
428 }
429}
430
431/*
432 * It just happens that oops_enter() and oops_exit() are identically
433 * implemented...
434 */
435static void do_oops_enter_exit(void)
436{
437 unsigned long flags;
438 static int spin_counter;
439
440 if (!pause_on_oops)
441 return;
442
443 spin_lock_irqsave(&pause_on_oops_lock, flags);
444 if (pause_on_oops_flag == 0) {
445 /* This CPU may now print the oops message */
446 pause_on_oops_flag = 1;
447 } else {
448 /* We need to stall this CPU */
449 if (!spin_counter) {
450 /* This CPU gets to do the counting */
451 spin_counter = pause_on_oops;
452 do {
453 spin_unlock(&pause_on_oops_lock);
454 spin_msec(MSEC_PER_SEC);
455 spin_lock(&pause_on_oops_lock);
456 } while (--spin_counter);
457 pause_on_oops_flag = 0;
458 } else {
459 /* This CPU waits for a different one */
460 while (spin_counter) {
461 spin_unlock(&pause_on_oops_lock);
462 spin_msec(1);
463 spin_lock(&pause_on_oops_lock);
464 }
465 }
466 }
467 spin_unlock_irqrestore(&pause_on_oops_lock, flags);
468}
469
470/*
c95dbf27
IM
471 * Return true if the calling CPU is allowed to print oops-related info.
472 * This is a bit racy..
dd287796
AM
473 */
474int oops_may_print(void)
475{
476 return pause_on_oops_flag == 0;
477}
478
479/*
480 * Called when the architecture enters its oops handler, before it prints
c95dbf27
IM
481 * anything. If this is the first CPU to oops, and it's oopsing the first
482 * time then let it proceed.
dd287796 483 *
c95dbf27
IM
484 * This is all enabled by the pause_on_oops kernel boot option. We do all
485 * this to ensure that oopses don't scroll off the screen. It has the
486 * side-effect of preventing later-oopsing CPUs from mucking up the display,
487 * too.
dd287796 488 *
c95dbf27
IM
489 * It turns out that the CPU which is allowed to print ends up pausing for
490 * the right duration, whereas all the other CPUs pause for twice as long:
491 * once in oops_enter(), once in oops_exit().
dd287796
AM
492 */
493void oops_enter(void)
494{
bdff7870 495 tracing_off();
c95dbf27
IM
496 /* can't trust the integrity of the kernel anymore: */
497 debug_locks_off();
dd287796
AM
498 do_oops_enter_exit();
499}
500
2c3b20e9
AV
501/*
502 * 64-bit random ID for oopses:
503 */
504static u64 oops_id;
505
506static int init_oops_id(void)
507{
508 if (!oops_id)
509 get_random_bytes(&oops_id, sizeof(oops_id));
d6624f99
AV
510 else
511 oops_id++;
2c3b20e9
AV
512
513 return 0;
514}
515late_initcall(init_oops_id);
516
863a6049 517void print_oops_end_marker(void)
71c33911
AV
518{
519 init_oops_id();
d7c0847f 520 pr_warn("---[ end trace %016llx ]---\n", (unsigned long long)oops_id);
71c33911
AV
521}
522
dd287796
AM
523/*
524 * Called when the architecture exits its oops handler, after printing
525 * everything.
526 */
527void oops_exit(void)
528{
529 do_oops_enter_exit();
71c33911 530 print_oops_end_marker();
456b565c 531 kmsg_dump(KMSG_DUMP_OOPS);
dd287796 532}
3162f751 533
2553b67a 534struct warn_args {
0f6f49a8 535 const char *fmt;
a8f18b90 536 va_list args;
0f6f49a8 537};
bd89bb29 538
2553b67a
JP
539void __warn(const char *file, int line, void *caller, unsigned taint,
540 struct pt_regs *regs, struct warn_args *args)
0f6f49a8 541{
de7edd31
SRRH
542 disable_trace_on_warning();
543
a7bed27a
KC
544 if (args)
545 pr_warn(CUT_HERE);
2553b67a
JP
546
547 if (file)
548 pr_warn("WARNING: CPU: %d PID: %d at %s:%d %pS\n",
549 raw_smp_processor_id(), current->pid, file, line,
550 caller);
551 else
552 pr_warn("WARNING: CPU: %d PID: %d at %pS\n",
553 raw_smp_processor_id(), current->pid, caller);
74853dba 554
0f6f49a8
LT
555 if (args)
556 vprintk(args->fmt, args->args);
a8f18b90 557
9e3961a0
PB
558 if (panic_on_warn) {
559 /*
560 * This thread may hit another WARN() in the panic path.
561 * Resetting this prevents additional WARN() from panicking the
562 * system on this thread. Other threads are blocked by the
563 * panic_mutex in panic().
564 */
565 panic_on_warn = 0;
566 panic("panic_on_warn set ...\n");
567 }
568
a8f18b90 569 print_modules();
2553b67a
JP
570
571 if (regs)
572 show_regs(regs);
573 else
574 dump_stack();
575
4c281074
SRV
576 print_irqtrace_events(current);
577
a8f18b90 578 print_oops_end_marker();
2553b67a 579
373d4d09
RR
580 /* Just a warning, don't kill lockdep. */
581 add_taint(taint, LOCKDEP_STILL_OK);
a8f18b90 582}
0f6f49a8 583
2553b67a 584#ifdef WANT_WARN_ON_SLOWPATH
0f6f49a8
LT
585void warn_slowpath_fmt(const char *file, int line, const char *fmt, ...)
586{
2553b67a 587 struct warn_args args;
0f6f49a8
LT
588
589 args.fmt = fmt;
590 va_start(args.args, fmt);
2553b67a
JP
591 __warn(file, line, __builtin_return_address(0), TAINT_WARN, NULL,
592 &args);
0f6f49a8
LT
593 va_end(args.args);
594}
57adc4d2
AK
595EXPORT_SYMBOL(warn_slowpath_fmt);
596
b2be0527
BH
597void warn_slowpath_fmt_taint(const char *file, int line,
598 unsigned taint, const char *fmt, ...)
599{
2553b67a 600 struct warn_args args;
b2be0527
BH
601
602 args.fmt = fmt;
603 va_start(args.args, fmt);
2553b67a 604 __warn(file, line, __builtin_return_address(0), taint, NULL, &args);
b2be0527
BH
605 va_end(args.args);
606}
607EXPORT_SYMBOL(warn_slowpath_fmt_taint);
608
57adc4d2
AK
609void warn_slowpath_null(const char *file, int line)
610{
a7bed27a 611 pr_warn(CUT_HERE);
2553b67a 612 __warn(file, line, __builtin_return_address(0), TAINT_WARN, NULL, NULL);
57adc4d2
AK
613}
614EXPORT_SYMBOL(warn_slowpath_null);
a7bed27a
KC
615#else
616void __warn_printk(const char *fmt, ...)
617{
618 va_list args;
619
620 pr_warn(CUT_HERE);
621
622 va_start(args, fmt);
623 vprintk(fmt, args);
624 va_end(args);
625}
626EXPORT_SYMBOL(__warn_printk);
79b4cc5e
AV
627#endif
628
b1fca27d
AK
629#ifdef CONFIG_BUG
630
631/* Support resetting WARN*_ONCE state */
632
633static int clear_warn_once_set(void *data, u64 val)
634{
aaf5dcfb 635 generic_bug_clear_once();
b1fca27d
AK
636 memset(__start_once, 0, __end_once - __start_once);
637 return 0;
638}
639
4169680e
Y
640DEFINE_DEBUGFS_ATTRIBUTE(clear_warn_once_fops, NULL, clear_warn_once_set,
641 "%lld\n");
b1fca27d
AK
642
643static __init int register_warn_debugfs(void)
644{
645 /* Don't care about failure */
4169680e
Y
646 debugfs_create_file_unsafe("clear_warn_once", 0200, NULL, NULL,
647 &clear_warn_once_fops);
b1fca27d
AK
648 return 0;
649}
650
651device_initcall(register_warn_debugfs);
652#endif
653
050e9baa 654#ifdef CONFIG_STACKPROTECTOR
54371a43 655
3162f751
AV
656/*
657 * Called when gcc's -fstack-protector feature is used, and
658 * gcc detects corruption of the on-stack canary value
659 */
a7330c99 660__visible void __stack_chk_fail(void)
3162f751 661{
95c4fb78 662 panic("stack-protector: Kernel stack is corrupted in: %pB",
517a92c4 663 __builtin_return_address(0));
3162f751
AV
664}
665EXPORT_SYMBOL(__stack_chk_fail);
54371a43 666
3162f751 667#endif
f44dd164 668
7a46ec0e
KC
669#ifdef CONFIG_ARCH_HAS_REFCOUNT
670void refcount_error_report(struct pt_regs *regs, const char *err)
671{
672 WARN_RATELIMIT(1, "refcount_t %s at %pB in %s[%d], uid/euid: %u/%u\n",
673 err, (void *)instruction_pointer(regs),
674 current->comm, task_pid_nr(current),
675 from_kuid_munged(&init_user_ns, current_uid()),
676 from_kuid_munged(&init_user_ns, current_euid()));
677}
678#endif
679
f44dd164 680core_param(panic, panic_timeout, int, 0644);
d999bd93 681core_param(panic_print, panic_print, ulong, 0644);
f44dd164 682core_param(pause_on_oops, pause_on_oops, int, 0644);
9e3961a0 683core_param(panic_on_warn, panic_on_warn, int, 0644);
b26e27dd 684core_param(crash_kexec_post_notifiers, crash_kexec_post_notifiers, bool, 0644);
f06e5153 685
d404ab0a
OH
686static int __init oops_setup(char *s)
687{
688 if (!s)
689 return -EINVAL;
690 if (!strcmp(s, "panic"))
691 panic_on_oops = 1;
692 return 0;
693}
694early_param("oops", oops_setup);