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97f5f0cd 1/*
1da177e4
LT
2 * Linux Magic System Request Key Hacks
3 *
4 * (c) 1997 Martin Mares <mj@atrey.karlin.mff.cuni.cz>
5 * based on ideas by Pavel Machek <pavel@atrey.karlin.mff.cuni.cz>
6 *
7 * (c) 2000 Crutcher Dunnavant <crutcher+kernel@datastacks.com>
8 * overhauled to use key registration
9 * based upon discusions in irc://irc.openprojects.net/#kernelnewbies
97f5f0cd
DT
10 *
11 * Copyright (c) 2010 Dmitry Torokhov
12 * Input handler conversion
1da177e4
LT
13 */
14
97f5f0cd
DT
15#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
16
3f07c014 17#include <linux/sched/signal.h>
8bd75c77 18#include <linux/sched/rt.h>
b17b0153 19#include <linux/sched/debug.h>
29930025 20#include <linux/sched/task.h>
1da177e4
LT
21#include <linux/interrupt.h>
22#include <linux/mm.h>
23#include <linux/fs.h>
1da177e4
LT
24#include <linux/mount.h>
25#include <linux/kdev_t.h>
26#include <linux/major.h>
27#include <linux/reboot.h>
28#include <linux/sysrq.h>
29#include <linux/kbd_kern.h>
f40cbaa5 30#include <linux/proc_fs.h>
c1dc0b9c 31#include <linux/nmi.h>
1da177e4 32#include <linux/quotaops.h>
cdd6c482 33#include <linux/perf_event.h>
1da177e4
LT
34#include <linux/kernel.h>
35#include <linux/module.h>
36#include <linux/suspend.h>
37#include <linux/writeback.h>
1da177e4
LT
38#include <linux/swap.h>
39#include <linux/spinlock.h>
40#include <linux/vt_kern.h>
41#include <linux/workqueue.h>
88ad0bf6 42#include <linux/hrtimer.h>
5a3135c2 43#include <linux/oom.h>
5a0e3ad6 44#include <linux/slab.h>
97f5f0cd 45#include <linux/input.h>
ff01bb48 46#include <linux/uaccess.h>
154b7a48 47#include <linux/moduleparam.h>
39030786 48#include <linux/jiffies.h>
3d289517 49#include <linux/syscalls.h>
4c076eb0 50#include <linux/of.h>
722773af 51#include <linux/rcupdate.h>
1da177e4
LT
52
53#include <asm/ptrace.h>
2033b0c3 54#include <asm/irq_regs.h>
1da177e4
LT
55
56/* Whether we react on sysrq keys or just ignore them */
8eaede49 57static int __read_mostly sysrq_enabled = CONFIG_MAGIC_SYSRQ_DEFAULT_ENABLE;
97f5f0cd 58static bool __read_mostly sysrq_always_enabled;
5d6f647f 59
97f5f0cd 60static bool sysrq_on(void)
5d6f647f 61{
97f5f0cd 62 return sysrq_enabled || sysrq_always_enabled;
5d6f647f
IM
63}
64
65/*
66 * A value of 1 means 'all', other nonzero values are an op mask:
67 */
97f5f0cd 68static bool sysrq_on_mask(int mask)
5d6f647f 69{
97f5f0cd
DT
70 return sysrq_always_enabled ||
71 sysrq_enabled == 1 ||
72 (sysrq_enabled & mask);
5d6f647f
IM
73}
74
75static int __init sysrq_always_enabled_setup(char *str)
76{
97f5f0cd
DT
77 sysrq_always_enabled = true;
78 pr_info("sysrq always enabled.\n");
5d6f647f
IM
79
80 return 1;
81}
82
83__setup("sysrq_always_enabled", sysrq_always_enabled_setup);
84
1da177e4 85
1495cc9d 86static void sysrq_handle_loglevel(int key)
1da177e4
LT
87{
88 int i;
97f5f0cd 89
1da177e4 90 i = key - '0';
a8fe19eb 91 console_loglevel = CONSOLE_LOGLEVEL_DEFAULT;
401e4a7c 92 pr_info("Loglevel set to %d\n", i);
1da177e4 93 console_loglevel = i;
bf36b901 94}
1da177e4
LT
95static struct sysrq_key_op sysrq_loglevel_op = {
96 .handler = sysrq_handle_loglevel,
208b95ce 97 .help_msg = "loglevel(0-9)",
1da177e4
LT
98 .action_msg = "Changing Loglevel",
99 .enable_mask = SYSRQ_ENABLE_LOG,
100};
101
1da177e4 102#ifdef CONFIG_VT
1495cc9d 103static void sysrq_handle_SAK(int key)
1da177e4 104{
8b6312f4 105 struct work_struct *SAK_work = &vc_cons[fg_console].SAK_work;
8b6312f4 106 schedule_work(SAK_work);
1da177e4
LT
107}
108static struct sysrq_key_op sysrq_SAK_op = {
109 .handler = sysrq_handle_SAK,
afa80ccb 110 .help_msg = "sak(k)",
1da177e4
LT
111 .action_msg = "SAK",
112 .enable_mask = SYSRQ_ENABLE_KEYBOARD,
113};
bf36b901 114#else
97f5f0cd 115#define sysrq_SAK_op (*(struct sysrq_key_op *)NULL)
1da177e4
LT
116#endif
117
118#ifdef CONFIG_VT
1495cc9d 119static void sysrq_handle_unraw(int key)
1da177e4 120{
079c9534 121 vt_reset_unicode(fg_console);
1da177e4 122}
079c9534 123
1da177e4
LT
124static struct sysrq_key_op sysrq_unraw_op = {
125 .handler = sysrq_handle_unraw,
afa80ccb 126 .help_msg = "unraw(r)",
2e8ecb9d 127 .action_msg = "Keyboard mode set to system default",
1da177e4
LT
128 .enable_mask = SYSRQ_ENABLE_KEYBOARD,
129};
bf36b901 130#else
97f5f0cd 131#define sysrq_unraw_op (*(struct sysrq_key_op *)NULL)
1da177e4
LT
132#endif /* CONFIG_VT */
133
1495cc9d 134static void sysrq_handle_crash(int key)
86b1ae38 135{
d6580a9f 136 char *killer = NULL;
cab8bd34 137
984cf355
AS
138 /* we need to release the RCU read lock here,
139 * otherwise we get an annoying
140 * 'BUG: sleeping function called from invalid context'
141 * complaint from the kernel before the panic.
142 */
143 rcu_read_unlock();
cab8bd34
HS
144 panic_on_oops = 1; /* force panic */
145 wmb();
d6580a9f 146 *killer = 1;
86b1ae38 147}
cab8bd34 148static struct sysrq_key_op sysrq_crash_op = {
d6580a9f 149 .handler = sysrq_handle_crash,
afa80ccb 150 .help_msg = "crash(c)",
d6580a9f 151 .action_msg = "Trigger a crash",
86b1ae38
HN
152 .enable_mask = SYSRQ_ENABLE_DUMP,
153};
86b1ae38 154
1495cc9d 155static void sysrq_handle_reboot(int key)
1da177e4 156{
b2e9c7d0 157 lockdep_off();
1da177e4 158 local_irq_enable();
4de8b9b7 159 emergency_restart();
1da177e4 160}
1da177e4
LT
161static struct sysrq_key_op sysrq_reboot_op = {
162 .handler = sysrq_handle_reboot,
afa80ccb 163 .help_msg = "reboot(b)",
1da177e4
LT
164 .action_msg = "Resetting",
165 .enable_mask = SYSRQ_ENABLE_BOOT,
166};
167
1495cc9d 168static void sysrq_handle_sync(int key)
1da177e4
LT
169{
170 emergency_sync();
171}
1da177e4
LT
172static struct sysrq_key_op sysrq_sync_op = {
173 .handler = sysrq_handle_sync,
afa80ccb 174 .help_msg = "sync(s)",
1da177e4
LT
175 .action_msg = "Emergency Sync",
176 .enable_mask = SYSRQ_ENABLE_SYNC,
177};
178
1495cc9d 179static void sysrq_handle_show_timers(int key)
88ad0bf6
IM
180{
181 sysrq_timer_list_show();
182}
183
184static struct sysrq_key_op sysrq_show_timers_op = {
185 .handler = sysrq_handle_show_timers,
afa80ccb 186 .help_msg = "show-all-timers(q)",
322acf65 187 .action_msg = "Show clockevent devices & pending hrtimers (no others)",
88ad0bf6
IM
188};
189
1495cc9d 190static void sysrq_handle_mountro(int key)
1da177e4
LT
191{
192 emergency_remount();
193}
1da177e4
LT
194static struct sysrq_key_op sysrq_mountro_op = {
195 .handler = sysrq_handle_mountro,
afa80ccb 196 .help_msg = "unmount(u)",
1da177e4
LT
197 .action_msg = "Emergency Remount R/O",
198 .enable_mask = SYSRQ_ENABLE_REMOUNT,
199};
200
8c64580d 201#ifdef CONFIG_LOCKDEP
1495cc9d 202static void sysrq_handle_showlocks(int key)
de5097c2 203{
9a11b49a 204 debug_show_all_locks();
de5097c2 205}
8c64580d 206
de5097c2
IM
207static struct sysrq_key_op sysrq_showlocks_op = {
208 .handler = sysrq_handle_showlocks,
afa80ccb 209 .help_msg = "show-all-locks(d)",
de5097c2
IM
210 .action_msg = "Show Locks Held",
211};
bf36b901 212#else
97f5f0cd 213#define sysrq_showlocks_op (*(struct sysrq_key_op *)NULL)
de5097c2 214#endif
1da177e4 215
5045bcae
RR
216#ifdef CONFIG_SMP
217static DEFINE_SPINLOCK(show_lock);
218
219static void showacpu(void *dummy)
220{
221 unsigned long flags;
222
223 /* Idle CPUs have no interesting backtrace. */
224 if (idle_cpu(smp_processor_id()))
225 return;
226
227 spin_lock_irqsave(&show_lock, flags);
401e4a7c 228 pr_info("CPU%d:\n", smp_processor_id());
5045bcae
RR
229 show_stack(NULL, NULL);
230 spin_unlock_irqrestore(&show_lock, flags);
231}
232
233static void sysrq_showregs_othercpus(struct work_struct *dummy)
234{
8b604d52 235 smp_call_function(showacpu, NULL, 0);
5045bcae
RR
236}
237
238static DECLARE_WORK(sysrq_showallcpus, sysrq_showregs_othercpus);
239
1495cc9d 240static void sysrq_handle_showallcpus(int key)
5045bcae 241{
47cab6a7
IM
242 /*
243 * Fall back to the workqueue based printing if the
244 * backtrace printing did not succeed or the
245 * architecture has no support for it:
246 */
247 if (!trigger_all_cpu_backtrace()) {
b00bebbc 248 struct pt_regs *regs = NULL;
47cab6a7 249
b00bebbc
JX
250 if (in_irq())
251 regs = get_irq_regs();
47cab6a7 252 if (regs) {
401e4a7c 253 pr_info("CPU%d:\n", smp_processor_id());
47cab6a7
IM
254 show_regs(regs);
255 }
256 schedule_work(&sysrq_showallcpus);
257 }
5045bcae
RR
258}
259
260static struct sysrq_key_op sysrq_showallcpus_op = {
261 .handler = sysrq_handle_showallcpus,
afa80ccb 262 .help_msg = "show-backtrace-all-active-cpus(l)",
5045bcae
RR
263 .action_msg = "Show backtrace of all active CPUs",
264 .enable_mask = SYSRQ_ENABLE_DUMP,
265};
266#endif
267
1495cc9d 268static void sysrq_handle_showregs(int key)
1da177e4 269{
b00bebbc
JX
270 struct pt_regs *regs = NULL;
271
272 if (in_irq())
273 regs = get_irq_regs();
7d12e780
DH
274 if (regs)
275 show_regs(regs);
cdd6c482 276 perf_event_print_debug();
1da177e4
LT
277}
278static struct sysrq_key_op sysrq_showregs_op = {
279 .handler = sysrq_handle_showregs,
afa80ccb 280 .help_msg = "show-registers(p)",
1da177e4
LT
281 .action_msg = "Show Regs",
282 .enable_mask = SYSRQ_ENABLE_DUMP,
283};
284
1495cc9d 285static void sysrq_handle_showstate(int key)
1da177e4
LT
286{
287 show_state();
3494fc30 288 show_workqueue_state();
1da177e4
LT
289}
290static struct sysrq_key_op sysrq_showstate_op = {
291 .handler = sysrq_handle_showstate,
afa80ccb 292 .help_msg = "show-task-states(t)",
1da177e4
LT
293 .action_msg = "Show State",
294 .enable_mask = SYSRQ_ENABLE_DUMP,
295};
296
1495cc9d 297static void sysrq_handle_showstate_blocked(int key)
e59e2ae2
IM
298{
299 show_state_filter(TASK_UNINTERRUPTIBLE);
300}
301static struct sysrq_key_op sysrq_showstate_blocked_op = {
302 .handler = sysrq_handle_showstate_blocked,
afa80ccb 303 .help_msg = "show-blocked-tasks(w)",
e59e2ae2
IM
304 .action_msg = "Show Blocked State",
305 .enable_mask = SYSRQ_ENABLE_DUMP,
306};
307
69f698ad
PZ
308#ifdef CONFIG_TRACING
309#include <linux/ftrace.h>
310
1495cc9d 311static void sysrq_ftrace_dump(int key)
69f698ad 312{
cecbca96 313 ftrace_dump(DUMP_ALL);
69f698ad
PZ
314}
315static struct sysrq_key_op sysrq_ftrace_dump_op = {
316 .handler = sysrq_ftrace_dump,
afa80ccb 317 .help_msg = "dump-ftrace-buffer(z)",
69f698ad
PZ
318 .action_msg = "Dump ftrace buffer",
319 .enable_mask = SYSRQ_ENABLE_DUMP,
320};
321#else
97f5f0cd 322#define sysrq_ftrace_dump_op (*(struct sysrq_key_op *)NULL)
69f698ad 323#endif
e59e2ae2 324
1495cc9d 325static void sysrq_handle_showmem(int key)
1da177e4 326{
9af744d7 327 show_mem(0, NULL);
1da177e4
LT
328}
329static struct sysrq_key_op sysrq_showmem_op = {
330 .handler = sysrq_handle_showmem,
afa80ccb 331 .help_msg = "show-memory-usage(m)",
1da177e4
LT
332 .action_msg = "Show Memory",
333 .enable_mask = SYSRQ_ENABLE_DUMP,
334};
335
bf36b901
AM
336/*
337 * Signal sysrq helper function. Sends a signal to all user processes.
338 */
1da177e4
LT
339static void send_sig_all(int sig)
340{
341 struct task_struct *p;
342
e502babe 343 read_lock(&tasklist_lock);
1da177e4 344 for_each_process(p) {
d3a532a9
AV
345 if (p->flags & PF_KTHREAD)
346 continue;
347 if (is_global_init(p))
348 continue;
349
b82c3287 350 do_send_sig_info(sig, SEND_SIG_FORCED, p, true);
1da177e4 351 }
e502babe 352 read_unlock(&tasklist_lock);
1da177e4
LT
353}
354
1495cc9d 355static void sysrq_handle_term(int key)
1da177e4
LT
356{
357 send_sig_all(SIGTERM);
a8fe19eb 358 console_loglevel = CONSOLE_LOGLEVEL_DEBUG;
1da177e4
LT
359}
360static struct sysrq_key_op sysrq_term_op = {
361 .handler = sysrq_handle_term,
afa80ccb 362 .help_msg = "terminate-all-tasks(e)",
1da177e4
LT
363 .action_msg = "Terminate All Tasks",
364 .enable_mask = SYSRQ_ENABLE_SIGNAL,
365};
366
65f27f38 367static void moom_callback(struct work_struct *ignored)
1da177e4 368{
6e0fc46d
DR
369 const gfp_t gfp_mask = GFP_KERNEL;
370 struct oom_control oc = {
371 .zonelist = node_zonelist(first_memory_node, gfp_mask),
372 .nodemask = NULL,
2a966b77 373 .memcg = NULL,
6e0fc46d 374 .gfp_mask = gfp_mask,
54e9e291 375 .order = -1,
6e0fc46d
DR
376 };
377
dc56401f 378 mutex_lock(&oom_lock);
6e0fc46d 379 if (!out_of_memory(&oc))
d75da004 380 pr_info("OOM request ignored. No task eligible\n");
dc56401f 381 mutex_unlock(&oom_lock);
1da177e4
LT
382}
383
65f27f38 384static DECLARE_WORK(moom_work, moom_callback);
1da177e4 385
1495cc9d 386static void sysrq_handle_moom(int key)
1da177e4
LT
387{
388 schedule_work(&moom_work);
389}
390static struct sysrq_key_op sysrq_moom_op = {
391 .handler = sysrq_handle_moom,
afa80ccb 392 .help_msg = "memory-full-oom-kill(f)",
1da177e4 393 .action_msg = "Manual OOM execution",
b4236f81 394 .enable_mask = SYSRQ_ENABLE_SIGNAL,
1da177e4
LT
395};
396
c2d75438 397#ifdef CONFIG_BLOCK
1495cc9d 398static void sysrq_handle_thaw(int key)
c2d75438
ES
399{
400 emergency_thaw_all();
401}
402static struct sysrq_key_op sysrq_thaw_op = {
403 .handler = sysrq_handle_thaw,
afa80ccb 404 .help_msg = "thaw-filesystems(j)",
c2d75438
ES
405 .action_msg = "Emergency Thaw of all frozen filesystems",
406 .enable_mask = SYSRQ_ENABLE_SIGNAL,
407};
408#endif
409
1495cc9d 410static void sysrq_handle_kill(int key)
1da177e4
LT
411{
412 send_sig_all(SIGKILL);
a8fe19eb 413 console_loglevel = CONSOLE_LOGLEVEL_DEBUG;
1da177e4
LT
414}
415static struct sysrq_key_op sysrq_kill_op = {
416 .handler = sysrq_handle_kill,
afa80ccb 417 .help_msg = "kill-all-tasks(i)",
1da177e4
LT
418 .action_msg = "Kill All Tasks",
419 .enable_mask = SYSRQ_ENABLE_SIGNAL,
420};
421
1495cc9d 422static void sysrq_handle_unrt(int key)
1da177e4
LT
423{
424 normalize_rt_tasks();
425}
426static struct sysrq_key_op sysrq_unrt_op = {
427 .handler = sysrq_handle_unrt,
afa80ccb 428 .help_msg = "nice-all-RT-tasks(n)",
1da177e4
LT
429 .action_msg = "Nice All RT Tasks",
430 .enable_mask = SYSRQ_ENABLE_RTNICE,
431};
432
433/* Key Operations table and lock */
434static DEFINE_SPINLOCK(sysrq_key_table_lock);
bf36b901
AM
435
436static struct sysrq_key_op *sysrq_key_table[36] = {
437 &sysrq_loglevel_op, /* 0 */
438 &sysrq_loglevel_op, /* 1 */
439 &sysrq_loglevel_op, /* 2 */
440 &sysrq_loglevel_op, /* 3 */
441 &sysrq_loglevel_op, /* 4 */
442 &sysrq_loglevel_op, /* 5 */
443 &sysrq_loglevel_op, /* 6 */
444 &sysrq_loglevel_op, /* 7 */
445 &sysrq_loglevel_op, /* 8 */
446 &sysrq_loglevel_op, /* 9 */
447
448 /*
d346cce3
RD
449 * a: Don't use for system provided sysrqs, it is handled specially on
450 * sparc and will never arrive.
bf36b901
AM
451 */
452 NULL, /* a */
453 &sysrq_reboot_op, /* b */
5e351410 454 &sysrq_crash_op, /* c */
bf36b901
AM
455 &sysrq_showlocks_op, /* d */
456 &sysrq_term_op, /* e */
457 &sysrq_moom_op, /* f */
364b5b7b 458 /* g: May be registered for the kernel debugger */
bf36b901 459 NULL, /* g */
c2d75438 460 NULL, /* h - reserved for help */
bf36b901 461 &sysrq_kill_op, /* i */
c2d75438
ES
462#ifdef CONFIG_BLOCK
463 &sysrq_thaw_op, /* j */
464#else
bf36b901 465 NULL, /* j */
c2d75438 466#endif
bf36b901 467 &sysrq_SAK_op, /* k */
5045bcae
RR
468#ifdef CONFIG_SMP
469 &sysrq_showallcpus_op, /* l */
470#else
bf36b901 471 NULL, /* l */
5045bcae 472#endif
bf36b901
AM
473 &sysrq_showmem_op, /* m */
474 &sysrq_unrt_op, /* n */
d346cce3 475 /* o: This will often be registered as 'Off' at init time */
bf36b901
AM
476 NULL, /* o */
477 &sysrq_showregs_op, /* p */
88ad0bf6 478 &sysrq_show_timers_op, /* q */
d346cce3 479 &sysrq_unraw_op, /* r */
bf36b901
AM
480 &sysrq_sync_op, /* s */
481 &sysrq_showstate_op, /* t */
482 &sysrq_mountro_op, /* u */
364b5b7b 483 /* v: May be registered for frame buffer console restore */
bf36b901 484 NULL, /* v */
d346cce3 485 &sysrq_showstate_blocked_op, /* w */
d1e9a4f5 486 /* x: May be registered on mips for TLB dump */
d346cce3 487 /* x: May be registered on ppc/powerpc for xmon */
916ca14a 488 /* x: May be registered on sparc64 for global PMU dump */
d346cce3 489 NULL, /* x */
93dae5b7 490 /* y: May be registered on sparc64 for global register dump */
bf36b901 491 NULL, /* y */
69f698ad 492 &sysrq_ftrace_dump_op, /* z */
1da177e4
LT
493};
494
495/* key2index calculation, -1 on invalid index */
bf36b901
AM
496static int sysrq_key_table_key2index(int key)
497{
1da177e4 498 int retval;
bf36b901
AM
499
500 if ((key >= '0') && (key <= '9'))
1da177e4 501 retval = key - '0';
bf36b901 502 else if ((key >= 'a') && (key <= 'z'))
1da177e4 503 retval = key + 10 - 'a';
bf36b901 504 else
1da177e4 505 retval = -1;
1da177e4
LT
506 return retval;
507}
508
509/*
510 * get and put functions for the table, exposed to modules.
511 */
bf36b901
AM
512struct sysrq_key_op *__sysrq_get_key_op(int key)
513{
514 struct sysrq_key_op *op_p = NULL;
1da177e4 515 int i;
bf36b901 516
1da177e4 517 i = sysrq_key_table_key2index(key);
bf36b901
AM
518 if (i != -1)
519 op_p = sysrq_key_table[i];
97f5f0cd 520
1da177e4
LT
521 return op_p;
522}
523
bf36b901
AM
524static void __sysrq_put_key_op(int key, struct sysrq_key_op *op_p)
525{
526 int i = sysrq_key_table_key2index(key);
1da177e4 527
1da177e4
LT
528 if (i != -1)
529 sysrq_key_table[i] = op_p;
530}
531
f335397d 532void __handle_sysrq(int key, bool check_mask)
1da177e4
LT
533{
534 struct sysrq_key_op *op_p;
535 int orig_log_level;
bf36b901 536 int i;
1da177e4 537
722773af 538 rcu_sysrq_start();
984d74a7 539 rcu_read_lock();
fb144adc
AW
540 /*
541 * Raise the apparent loglevel to maximum so that the sysrq header
542 * is shown to provide the user with positive feedback. We do not
543 * simply emit this at KERN_EMERG as that would change message
544 * routing in the consumers of /proc/kmsg.
545 */
1da177e4 546 orig_log_level = console_loglevel;
a8fe19eb 547 console_loglevel = CONSOLE_LOGLEVEL_DEFAULT;
401e4a7c 548 pr_info("SysRq : ");
1da177e4
LT
549
550 op_p = __sysrq_get_key_op(key);
551 if (op_p) {
bf36b901
AM
552 /*
553 * Should we check for enabled operations (/proc/sysrq-trigger
554 * should not) and is the invoked operation enabled?
555 */
5d6f647f 556 if (!check_mask || sysrq_on_mask(op_p->enable_mask)) {
401e4a7c 557 pr_cont("%s\n", op_p->action_msg);
1da177e4 558 console_loglevel = orig_log_level;
1495cc9d 559 op_p->handler(key);
bf36b901 560 } else {
401e4a7c 561 pr_cont("This sysrq operation is disabled.\n");
bf36b901 562 }
1da177e4 563 } else {
401e4a7c 564 pr_cont("HELP : ");
1da177e4 565 /* Only print the help msg once per handler */
bf36b901
AM
566 for (i = 0; i < ARRAY_SIZE(sysrq_key_table); i++) {
567 if (sysrq_key_table[i]) {
568 int j;
569
570 for (j = 0; sysrq_key_table[i] !=
571 sysrq_key_table[j]; j++)
572 ;
573 if (j != i)
574 continue;
401e4a7c 575 pr_cont("%s ", sysrq_key_table[i]->help_msg);
bf36b901 576 }
1da177e4 577 }
401e4a7c 578 pr_cont("\n");
1da177e4
LT
579 console_loglevel = orig_log_level;
580 }
984d74a7 581 rcu_read_unlock();
722773af 582 rcu_sysrq_end();
1da177e4
LT
583}
584
f335397d 585void handle_sysrq(int key)
1da177e4 586{
5d6f647f 587 if (sysrq_on())
f335397d 588 __handle_sysrq(key, true);
1da177e4 589}
bf36b901 590EXPORT_SYMBOL(handle_sysrq);
1da177e4 591
97f5f0cd 592#ifdef CONFIG_INPUT
ffb6e0c9 593static int sysrq_reset_downtime_ms;
97f5f0cd
DT
594
595/* Simple translation table for the SysRq keys */
fcb71930 596static const unsigned char sysrq_xlate[KEY_CNT] =
97f5f0cd
DT
597 "\000\0331234567890-=\177\t" /* 0x00 - 0x0f */
598 "qwertyuiop[]\r\000as" /* 0x10 - 0x1f */
599 "dfghjkl;'`\000\\zxcv" /* 0x20 - 0x2f */
600 "bnm,./\000*\000 \000\201\202\203\204\205" /* 0x30 - 0x3f */
601 "\206\207\210\211\212\000\000789-456+1" /* 0x40 - 0x4f */
602 "230\177\000\000\213\214\000\000\000\000\000\000\000\000\000\000" /* 0x50 - 0x5f */
603 "\r\000/"; /* 0x60 - 0x6f */
604
fcb71930
DT
605struct sysrq_state {
606 struct input_handle handle;
607 struct work_struct reinject_work;
608 unsigned long key_down[BITS_TO_LONGS(KEY_CNT)];
609 unsigned int alt;
610 unsigned int alt_use;
611 bool active;
612 bool need_reinject;
7ab7b5ad 613 bool reinjecting;
154b7a48
MP
614
615 /* reset sequence handling */
616 bool reset_canceled;
3d289517 617 bool reset_requested;
154b7a48
MP
618 unsigned long reset_keybit[BITS_TO_LONGS(KEY_CNT)];
619 int reset_seq_len;
620 int reset_seq_cnt;
621 int reset_seq_version;
39030786 622 struct timer_list keyreset_timer;
fcb71930
DT
623};
624
154b7a48
MP
625#define SYSRQ_KEY_RESET_MAX 20 /* Should be plenty */
626static unsigned short sysrq_reset_seq[SYSRQ_KEY_RESET_MAX];
627static unsigned int sysrq_reset_seq_len;
628static unsigned int sysrq_reset_seq_version = 1;
629
630static void sysrq_parse_reset_sequence(struct sysrq_state *state)
631{
632 int i;
633 unsigned short key;
634
635 state->reset_seq_cnt = 0;
636
637 for (i = 0; i < sysrq_reset_seq_len; i++) {
638 key = sysrq_reset_seq[i];
639
640 if (key == KEY_RESERVED || key > KEY_MAX)
641 break;
642
643 __set_bit(key, state->reset_keybit);
644 state->reset_seq_len++;
645
646 if (test_bit(key, state->key_down))
647 state->reset_seq_cnt++;
648 }
649
650 /* Disable reset until old keys are not released */
651 state->reset_canceled = state->reset_seq_cnt != 0;
652
653 state->reset_seq_version = sysrq_reset_seq_version;
654}
655
3d289517 656static void sysrq_do_reset(unsigned long _state)
39030786 657{
3d289517
MP
658 struct sysrq_state *state = (struct sysrq_state *) _state;
659
660 state->reset_requested = true;
661
662 sys_sync();
663 kernel_restart(NULL);
39030786
MP
664}
665
666static void sysrq_handle_reset_request(struct sysrq_state *state)
667{
3d289517
MP
668 if (state->reset_requested)
669 __handle_sysrq(sysrq_xlate[KEY_B], false);
670
39030786
MP
671 if (sysrq_reset_downtime_ms)
672 mod_timer(&state->keyreset_timer,
673 jiffies + msecs_to_jiffies(sysrq_reset_downtime_ms));
674 else
3d289517 675 sysrq_do_reset((unsigned long)state);
39030786
MP
676}
677
678static void sysrq_detect_reset_sequence(struct sysrq_state *state,
154b7a48
MP
679 unsigned int code, int value)
680{
681 if (!test_bit(code, state->reset_keybit)) {
682 /*
683 * Pressing any key _not_ in reset sequence cancels
39030786
MP
684 * the reset sequence. Also cancelling the timer in
685 * case additional keys were pressed after a reset
686 * has been requested.
154b7a48 687 */
39030786 688 if (value && state->reset_seq_cnt) {
154b7a48 689 state->reset_canceled = true;
39030786
MP
690 del_timer(&state->keyreset_timer);
691 }
154b7a48 692 } else if (value == 0) {
39030786
MP
693 /*
694 * Key release - all keys in the reset sequence need
695 * to be pressed and held for the reset timeout
696 * to hold.
697 */
698 del_timer(&state->keyreset_timer);
699
154b7a48
MP
700 if (--state->reset_seq_cnt == 0)
701 state->reset_canceled = false;
702 } else if (value == 1) {
703 /* key press, not autorepeat */
704 if (++state->reset_seq_cnt == state->reset_seq_len &&
705 !state->reset_canceled) {
39030786 706 sysrq_handle_reset_request(state);
154b7a48
MP
707 }
708 }
154b7a48
MP
709}
710
4c076eb0
MP
711#ifdef CONFIG_OF
712static void sysrq_of_get_keyreset_config(void)
713{
714 u32 key;
715 struct device_node *np;
716 struct property *prop;
717 const __be32 *p;
718
719 np = of_find_node_by_path("/chosen/linux,sysrq-reset-seq");
720 if (!np) {
721 pr_debug("No sysrq node found");
722 return;
723 }
724
725 /* Reset in case a __weak definition was present */
726 sysrq_reset_seq_len = 0;
727
728 of_property_for_each_u32(np, "keyset", prop, p, key) {
729 if (key == KEY_RESERVED || key > KEY_MAX ||
730 sysrq_reset_seq_len == SYSRQ_KEY_RESET_MAX)
731 break;
732
733 sysrq_reset_seq[sysrq_reset_seq_len++] = (unsigned short)key;
734 }
735
736 /* Get reset timeout if any. */
737 of_property_read_u32(np, "timeout-ms", &sysrq_reset_downtime_ms);
738}
739#else
740static void sysrq_of_get_keyreset_config(void)
741{
742}
743#endif
744
fcb71930
DT
745static void sysrq_reinject_alt_sysrq(struct work_struct *work)
746{
747 struct sysrq_state *sysrq =
748 container_of(work, struct sysrq_state, reinject_work);
749 struct input_handle *handle = &sysrq->handle;
750 unsigned int alt_code = sysrq->alt_use;
751
752 if (sysrq->need_reinject) {
7ab7b5ad
DT
753 /* we do not want the assignment to be reordered */
754 sysrq->reinjecting = true;
755 mb();
756
fcb71930
DT
757 /* Simulate press and release of Alt + SysRq */
758 input_inject_event(handle, EV_KEY, alt_code, 1);
759 input_inject_event(handle, EV_KEY, KEY_SYSRQ, 1);
760 input_inject_event(handle, EV_SYN, SYN_REPORT, 1);
761
762 input_inject_event(handle, EV_KEY, KEY_SYSRQ, 0);
763 input_inject_event(handle, EV_KEY, alt_code, 0);
764 input_inject_event(handle, EV_SYN, SYN_REPORT, 1);
7ab7b5ad
DT
765
766 mb();
767 sysrq->reinjecting = false;
fcb71930
DT
768 }
769}
97f5f0cd 770
154b7a48
MP
771static bool sysrq_handle_keypress(struct sysrq_state *sysrq,
772 unsigned int code, int value)
97f5f0cd 773{
fcb71930 774 bool was_active = sysrq->active;
1966cb22
DT
775 bool suppress;
776
154b7a48 777 switch (code) {
7ab7b5ad 778
154b7a48
MP
779 case KEY_LEFTALT:
780 case KEY_RIGHTALT:
781 if (!value) {
782 /* One of ALTs is being released */
783 if (sysrq->active && code == sysrq->alt_use)
784 sysrq->active = false;
1966cb22 785
154b7a48
MP
786 sysrq->alt = KEY_RESERVED;
787
788 } else if (value != 2) {
789 sysrq->alt = code;
790 sysrq->need_reinject = false;
791 }
fcb71930 792 break;
97f5f0cd 793
154b7a48
MP
794 case KEY_SYSRQ:
795 if (value == 1 && sysrq->alt != KEY_RESERVED) {
796 sysrq->active = true;
797 sysrq->alt_use = sysrq->alt;
798 /*
799 * If nothing else will be pressed we'll need
800 * to re-inject Alt-SysRq keysroke.
801 */
802 sysrq->need_reinject = true;
803 }
97f5f0cd 804
154b7a48
MP
805 /*
806 * Pretend that sysrq was never pressed at all. This
807 * is needed to properly handle KGDB which will try
808 * to release all keys after exiting debugger. If we
809 * do not clear key bit it KGDB will end up sending
810 * release events for Alt and SysRq, potentially
811 * triggering print screen function.
812 */
813 if (sysrq->active)
814 clear_bit(KEY_SYSRQ, sysrq->handle.dev->key);
f5dec511 815
154b7a48 816 break;
fcb71930 817
154b7a48
MP
818 default:
819 if (sysrq->active && value && value != 2) {
820 sysrq->need_reinject = false;
821 __handle_sysrq(sysrq_xlate[code], true);
822 }
823 break;
824 }
fcb71930 825
154b7a48 826 suppress = sysrq->active;
fcb71930 827
154b7a48 828 if (!sysrq->active) {
fcb71930 829
154b7a48
MP
830 /*
831 * See if reset sequence has changed since the last time.
832 */
833 if (sysrq->reset_seq_version != sysrq_reset_seq_version)
834 sysrq_parse_reset_sequence(sysrq);
fcb71930 835
154b7a48
MP
836 /*
837 * If we are not suppressing key presses keep track of
838 * keyboard state so we can release keys that have been
839 * pressed before entering SysRq mode.
840 */
841 if (value)
842 set_bit(code, sysrq->key_down);
843 else
844 clear_bit(code, sysrq->key_down);
845
846 if (was_active)
847 schedule_work(&sysrq->reinject_work);
848
39030786
MP
849 /* Check for reset sequence */
850 sysrq_detect_reset_sequence(sysrq, code, value);
97f5f0cd 851
154b7a48
MP
852 } else if (value == 0 && test_and_clear_bit(code, sysrq->key_down)) {
853 /*
854 * Pass on release events for keys that was pressed before
855 * entering SysRq mode.
856 */
857 suppress = false;
858 }
fcb71930 859
154b7a48
MP
860 return suppress;
861}
fcb71930 862
154b7a48
MP
863static bool sysrq_filter(struct input_handle *handle,
864 unsigned int type, unsigned int code, int value)
865{
866 struct sysrq_state *sysrq = handle->private;
867 bool suppress;
fcb71930 868
154b7a48
MP
869 /*
870 * Do not filter anything if we are in the process of re-injecting
871 * Alt+SysRq combination.
872 */
873 if (sysrq->reinjecting)
874 return false;
875
876 switch (type) {
877
878 case EV_SYN:
879 suppress = false;
880 break;
881
882 case EV_KEY:
883 suppress = sysrq_handle_keypress(sysrq, code, value);
97f5f0cd
DT
884 break;
885
886 default:
fcb71930 887 suppress = sysrq->active;
97f5f0cd
DT
888 break;
889 }
890
1966cb22 891 return suppress;
97f5f0cd
DT
892}
893
894static int sysrq_connect(struct input_handler *handler,
895 struct input_dev *dev,
896 const struct input_device_id *id)
897{
fcb71930 898 struct sysrq_state *sysrq;
97f5f0cd
DT
899 int error;
900
fcb71930
DT
901 sysrq = kzalloc(sizeof(struct sysrq_state), GFP_KERNEL);
902 if (!sysrq)
97f5f0cd
DT
903 return -ENOMEM;
904
fcb71930
DT
905 INIT_WORK(&sysrq->reinject_work, sysrq_reinject_alt_sysrq);
906
907 sysrq->handle.dev = dev;
908 sysrq->handle.handler = handler;
909 sysrq->handle.name = "sysrq";
910 sysrq->handle.private = sysrq;
3d289517
MP
911 setup_timer(&sysrq->keyreset_timer,
912 sysrq_do_reset, (unsigned long)sysrq);
97f5f0cd 913
fcb71930 914 error = input_register_handle(&sysrq->handle);
97f5f0cd
DT
915 if (error) {
916 pr_err("Failed to register input sysrq handler, error %d\n",
917 error);
918 goto err_free;
919 }
920
fcb71930 921 error = input_open_device(&sysrq->handle);
97f5f0cd
DT
922 if (error) {
923 pr_err("Failed to open input device, error %d\n", error);
924 goto err_unregister;
925 }
926
927 return 0;
928
929 err_unregister:
fcb71930 930 input_unregister_handle(&sysrq->handle);
97f5f0cd 931 err_free:
fcb71930 932 kfree(sysrq);
97f5f0cd
DT
933 return error;
934}
935
936static void sysrq_disconnect(struct input_handle *handle)
937{
fcb71930
DT
938 struct sysrq_state *sysrq = handle->private;
939
97f5f0cd 940 input_close_device(handle);
fcb71930 941 cancel_work_sync(&sysrq->reinject_work);
39030786 942 del_timer_sync(&sysrq->keyreset_timer);
97f5f0cd 943 input_unregister_handle(handle);
fcb71930 944 kfree(sysrq);
97f5f0cd
DT
945}
946
947/*
1966cb22
DT
948 * We are matching on KEY_LEFTALT instead of KEY_SYSRQ because not all
949 * keyboards have SysRq key predefined and so user may add it to keymap
97f5f0cd
DT
950 * later, but we expect all such keyboards to have left alt.
951 */
952static const struct input_device_id sysrq_ids[] = {
953 {
954 .flags = INPUT_DEVICE_ID_MATCH_EVBIT |
955 INPUT_DEVICE_ID_MATCH_KEYBIT,
802c0388
AM
956 .evbit = { [BIT_WORD(EV_KEY)] = BIT_MASK(EV_KEY) },
957 .keybit = { [BIT_WORD(KEY_LEFTALT)] = BIT_MASK(KEY_LEFTALT) },
97f5f0cd
DT
958 },
959 { },
960};
961
962static struct input_handler sysrq_handler = {
963 .filter = sysrq_filter,
964 .connect = sysrq_connect,
965 .disconnect = sysrq_disconnect,
966 .name = "sysrq",
967 .id_table = sysrq_ids,
968};
969
970static bool sysrq_handler_registered;
971
972static inline void sysrq_register_handler(void)
973{
974 int error;
975
4c076eb0
MP
976 sysrq_of_get_keyreset_config();
977
97f5f0cd
DT
978 error = input_register_handler(&sysrq_handler);
979 if (error)
980 pr_err("Failed to register input handler, error %d", error);
981 else
982 sysrq_handler_registered = true;
983}
984
985static inline void sysrq_unregister_handler(void)
986{
987 if (sysrq_handler_registered) {
988 input_unregister_handler(&sysrq_handler);
989 sysrq_handler_registered = false;
990 }
991}
992
154b7a48
MP
993static int sysrq_reset_seq_param_set(const char *buffer,
994 const struct kernel_param *kp)
995{
996 unsigned long val;
997 int error;
998
86b40567 999 error = kstrtoul(buffer, 0, &val);
154b7a48
MP
1000 if (error < 0)
1001 return error;
1002
1003 if (val > KEY_MAX)
1004 return -EINVAL;
1005
1006 *((unsigned short *)kp->arg) = val;
1007 sysrq_reset_seq_version++;
1008
1009 return 0;
1010}
1011
9c27847d 1012static const struct kernel_param_ops param_ops_sysrq_reset_seq = {
154b7a48
MP
1013 .get = param_get_ushort,
1014 .set = sysrq_reset_seq_param_set,
1015};
1016
1017#define param_check_sysrq_reset_seq(name, p) \
1018 __param_check(name, p, unsigned short)
1019
3bce6f64
PG
1020/*
1021 * not really modular, but the easiest way to keep compat with existing
1022 * bootargs behaviour is to continue using module_param here.
1023 */
154b7a48
MP
1024module_param_array_named(reset_seq, sysrq_reset_seq, sysrq_reset_seq,
1025 &sysrq_reset_seq_len, 0644);
1026
39030786
MP
1027module_param_named(sysrq_downtime_ms, sysrq_reset_downtime_ms, int, 0644);
1028
97f5f0cd
DT
1029#else
1030
1031static inline void sysrq_register_handler(void)
1032{
1033}
1034
1035static inline void sysrq_unregister_handler(void)
1036{
1037}
1038
1039#endif /* CONFIG_INPUT */
1040
1041int sysrq_toggle_support(int enable_mask)
1042{
1043 bool was_enabled = sysrq_on();
1044
1045 sysrq_enabled = enable_mask;
1046
1047 if (was_enabled != sysrq_on()) {
1048 if (sysrq_on())
1049 sysrq_register_handler();
1050 else
1051 sysrq_unregister_handler();
1052 }
1053
1054 return 0;
1055}
1056
cf62ddce 1057static int __sysrq_swap_key_ops(int key, struct sysrq_key_op *insert_op_p,
bf36b901
AM
1058 struct sysrq_key_op *remove_op_p)
1059{
1da177e4 1060 int retval;
1da177e4 1061
984d74a7 1062 spin_lock(&sysrq_key_table_lock);
1da177e4
LT
1063 if (__sysrq_get_key_op(key) == remove_op_p) {
1064 __sysrq_put_key_op(key, insert_op_p);
1065 retval = 0;
1066 } else {
1067 retval = -1;
1068 }
984d74a7
RR
1069 spin_unlock(&sysrq_key_table_lock);
1070
1071 /*
1072 * A concurrent __handle_sysrq either got the old op or the new op.
1073 * Wait for it to go away before returning, so the code for an old
1074 * op is not freed (eg. on module unload) while it is in use.
1075 */
1076 synchronize_rcu();
1077
1da177e4
LT
1078 return retval;
1079}
1080
1081int register_sysrq_key(int key, struct sysrq_key_op *op_p)
1082{
1083 return __sysrq_swap_key_ops(key, op_p, NULL);
1084}
bf36b901 1085EXPORT_SYMBOL(register_sysrq_key);
1da177e4
LT
1086
1087int unregister_sysrq_key(int key, struct sysrq_key_op *op_p)
1088{
1089 return __sysrq_swap_key_ops(key, NULL, op_p);
1090}
1da177e4 1091EXPORT_SYMBOL(unregister_sysrq_key);
f40cbaa5
AD
1092
1093#ifdef CONFIG_PROC_FS
1094/*
1095 * writing 'C' to /proc/sysrq-trigger is like sysrq-C
1096 */
1097static ssize_t write_sysrq_trigger(struct file *file, const char __user *buf,
1098 size_t count, loff_t *ppos)
1099{
1100 if (count) {
1101 char c;
1102
1103 if (get_user(c, buf))
1104 return -EFAULT;
f335397d 1105 __handle_sysrq(c, false);
f40cbaa5 1106 }
97f5f0cd 1107
f40cbaa5
AD
1108 return count;
1109}
1110
1111static const struct file_operations proc_sysrq_trigger_operations = {
1112 .write = write_sysrq_trigger,
6038f373 1113 .llseek = noop_llseek,
f40cbaa5
AD
1114};
1115
97f5f0cd
DT
1116static void sysrq_init_procfs(void)
1117{
1118 if (!proc_create("sysrq-trigger", S_IWUSR, NULL,
1119 &proc_sysrq_trigger_operations))
1120 pr_err("Failed to register proc interface\n");
1121}
1122
1123#else
1124
1125static inline void sysrq_init_procfs(void)
1126{
1127}
1128
1129#endif /* CONFIG_PROC_FS */
1130
f40cbaa5
AD
1131static int __init sysrq_init(void)
1132{
97f5f0cd
DT
1133 sysrq_init_procfs();
1134
1135 if (sysrq_on())
1136 sysrq_register_handler();
1137
f40cbaa5
AD
1138 return 0;
1139}
3bce6f64 1140device_initcall(sysrq_init);