GNU Linux-libre 4.4.289-gnu1
[releases.git] / drivers / tty / sysrq.c
1 /*
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
10  *
11  *      Copyright (c) 2010 Dmitry Torokhov
12  *      Input handler conversion
13  */
14
15 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
16
17 #include <linux/sched.h>
18 #include <linux/sched/rt.h>
19 #include <linux/interrupt.h>
20 #include <linux/mm.h>
21 #include <linux/fs.h>
22 #include <linux/mount.h>
23 #include <linux/kdev_t.h>
24 #include <linux/major.h>
25 #include <linux/reboot.h>
26 #include <linux/sysrq.h>
27 #include <linux/kbd_kern.h>
28 #include <linux/proc_fs.h>
29 #include <linux/nmi.h>
30 #include <linux/quotaops.h>
31 #include <linux/perf_event.h>
32 #include <linux/kernel.h>
33 #include <linux/module.h>
34 #include <linux/suspend.h>
35 #include <linux/writeback.h>
36 #include <linux/swap.h>
37 #include <linux/spinlock.h>
38 #include <linux/vt_kern.h>
39 #include <linux/workqueue.h>
40 #include <linux/hrtimer.h>
41 #include <linux/oom.h>
42 #include <linux/slab.h>
43 #include <linux/input.h>
44 #include <linux/uaccess.h>
45 #include <linux/moduleparam.h>
46 #include <linux/jiffies.h>
47 #include <linux/syscalls.h>
48 #include <linux/of.h>
49 #include <linux/rcupdate.h>
50
51 #include <asm/ptrace.h>
52 #include <asm/irq_regs.h>
53
54 /* Whether we react on sysrq keys or just ignore them */
55 static int __read_mostly sysrq_enabled = CONFIG_MAGIC_SYSRQ_DEFAULT_ENABLE;
56 static bool __read_mostly sysrq_always_enabled;
57
58 static bool sysrq_on(void)
59 {
60         return sysrq_enabled || sysrq_always_enabled;
61 }
62
63 /*
64  * A value of 1 means 'all', other nonzero values are an op mask:
65  */
66 static bool sysrq_on_mask(int mask)
67 {
68         return sysrq_always_enabled ||
69                sysrq_enabled == 1 ||
70                (sysrq_enabled & mask);
71 }
72
73 static int __init sysrq_always_enabled_setup(char *str)
74 {
75         sysrq_always_enabled = true;
76         pr_info("sysrq always enabled.\n");
77
78         return 1;
79 }
80
81 __setup("sysrq_always_enabled", sysrq_always_enabled_setup);
82
83
84 static void sysrq_handle_loglevel(int key)
85 {
86         int i;
87
88         i = key - '0';
89         console_loglevel = CONSOLE_LOGLEVEL_DEFAULT;
90         pr_info("Loglevel set to %d\n", i);
91         console_loglevel = i;
92 }
93 static struct sysrq_key_op sysrq_loglevel_op = {
94         .handler        = sysrq_handle_loglevel,
95         .help_msg       = "loglevel(0-9)",
96         .action_msg     = "Changing Loglevel",
97         .enable_mask    = SYSRQ_ENABLE_LOG,
98 };
99
100 #ifdef CONFIG_VT
101 static void sysrq_handle_SAK(int key)
102 {
103         struct work_struct *SAK_work = &vc_cons[fg_console].SAK_work;
104         schedule_work(SAK_work);
105 }
106 static struct sysrq_key_op sysrq_SAK_op = {
107         .handler        = sysrq_handle_SAK,
108         .help_msg       = "sak(k)",
109         .action_msg     = "SAK",
110         .enable_mask    = SYSRQ_ENABLE_KEYBOARD,
111 };
112 #else
113 #define sysrq_SAK_op (*(struct sysrq_key_op *)NULL)
114 #endif
115
116 #ifdef CONFIG_VT
117 static void sysrq_handle_unraw(int key)
118 {
119         vt_reset_unicode(fg_console);
120 }
121
122 static struct sysrq_key_op sysrq_unraw_op = {
123         .handler        = sysrq_handle_unraw,
124         .help_msg       = "unraw(r)",
125         .action_msg     = "Keyboard mode set to system default",
126         .enable_mask    = SYSRQ_ENABLE_KEYBOARD,
127 };
128 #else
129 #define sysrq_unraw_op (*(struct sysrq_key_op *)NULL)
130 #endif /* CONFIG_VT */
131
132 static void sysrq_handle_crash(int key)
133 {
134         char *killer = NULL;
135
136         /* we need to release the RCU read lock here,
137          * otherwise we get an annoying
138          * 'BUG: sleeping function called from invalid context'
139          * complaint from the kernel before the panic.
140          */
141         rcu_read_unlock();
142         panic_on_oops = 1;      /* force panic */
143         wmb();
144         *killer = 1;
145 }
146 static struct sysrq_key_op sysrq_crash_op = {
147         .handler        = sysrq_handle_crash,
148         .help_msg       = "crash(c)",
149         .action_msg     = "Trigger a crash",
150         .enable_mask    = SYSRQ_ENABLE_DUMP,
151 };
152
153 static void sysrq_handle_reboot(int key)
154 {
155         lockdep_off();
156         local_irq_enable();
157         emergency_restart();
158 }
159 static struct sysrq_key_op sysrq_reboot_op = {
160         .handler        = sysrq_handle_reboot,
161         .help_msg       = "reboot(b)",
162         .action_msg     = "Resetting",
163         .enable_mask    = SYSRQ_ENABLE_BOOT,
164 };
165
166 static void sysrq_handle_sync(int key)
167 {
168         emergency_sync();
169 }
170 static struct sysrq_key_op sysrq_sync_op = {
171         .handler        = sysrq_handle_sync,
172         .help_msg       = "sync(s)",
173         .action_msg     = "Emergency Sync",
174         .enable_mask    = SYSRQ_ENABLE_SYNC,
175 };
176
177 static void sysrq_handle_show_timers(int key)
178 {
179         sysrq_timer_list_show();
180 }
181
182 static struct sysrq_key_op sysrq_show_timers_op = {
183         .handler        = sysrq_handle_show_timers,
184         .help_msg       = "show-all-timers(q)",
185         .action_msg     = "Show clockevent devices & pending hrtimers (no others)",
186 };
187
188 static void sysrq_handle_mountro(int key)
189 {
190         emergency_remount();
191 }
192 static struct sysrq_key_op sysrq_mountro_op = {
193         .handler        = sysrq_handle_mountro,
194         .help_msg       = "unmount(u)",
195         .action_msg     = "Emergency Remount R/O",
196         .enable_mask    = SYSRQ_ENABLE_REMOUNT,
197 };
198
199 #ifdef CONFIG_LOCKDEP
200 static void sysrq_handle_showlocks(int key)
201 {
202         debug_show_all_locks();
203 }
204
205 static struct sysrq_key_op sysrq_showlocks_op = {
206         .handler        = sysrq_handle_showlocks,
207         .help_msg       = "show-all-locks(d)",
208         .action_msg     = "Show Locks Held",
209 };
210 #else
211 #define sysrq_showlocks_op (*(struct sysrq_key_op *)NULL)
212 #endif
213
214 #ifdef CONFIG_SMP
215 static DEFINE_SPINLOCK(show_lock);
216
217 static void showacpu(void *dummy)
218 {
219         unsigned long flags;
220
221         /* Idle CPUs have no interesting backtrace. */
222         if (idle_cpu(smp_processor_id()))
223                 return;
224
225         spin_lock_irqsave(&show_lock, flags);
226         pr_info("CPU%d:\n", smp_processor_id());
227         show_stack(NULL, NULL);
228         spin_unlock_irqrestore(&show_lock, flags);
229 }
230
231 static void sysrq_showregs_othercpus(struct work_struct *dummy)
232 {
233         smp_call_function(showacpu, NULL, 0);
234 }
235
236 static DECLARE_WORK(sysrq_showallcpus, sysrq_showregs_othercpus);
237
238 static void sysrq_handle_showallcpus(int key)
239 {
240         /*
241          * Fall back to the workqueue based printing if the
242          * backtrace printing did not succeed or the
243          * architecture has no support for it:
244          */
245         if (!trigger_all_cpu_backtrace()) {
246                 struct pt_regs *regs = NULL;
247
248                 if (in_irq())
249                         regs = get_irq_regs();
250                 if (regs) {
251                         pr_info("CPU%d:\n", smp_processor_id());
252                         show_regs(regs);
253                 }
254                 schedule_work(&sysrq_showallcpus);
255         }
256 }
257
258 static struct sysrq_key_op sysrq_showallcpus_op = {
259         .handler        = sysrq_handle_showallcpus,
260         .help_msg       = "show-backtrace-all-active-cpus(l)",
261         .action_msg     = "Show backtrace of all active CPUs",
262         .enable_mask    = SYSRQ_ENABLE_DUMP,
263 };
264 #endif
265
266 static void sysrq_handle_showregs(int key)
267 {
268         struct pt_regs *regs = NULL;
269
270         if (in_irq())
271                 regs = get_irq_regs();
272         if (regs)
273                 show_regs(regs);
274         perf_event_print_debug();
275 }
276 static struct sysrq_key_op sysrq_showregs_op = {
277         .handler        = sysrq_handle_showregs,
278         .help_msg       = "show-registers(p)",
279         .action_msg     = "Show Regs",
280         .enable_mask    = SYSRQ_ENABLE_DUMP,
281 };
282
283 static void sysrq_handle_showstate(int key)
284 {
285         show_state();
286         show_workqueue_state();
287 }
288 static struct sysrq_key_op sysrq_showstate_op = {
289         .handler        = sysrq_handle_showstate,
290         .help_msg       = "show-task-states(t)",
291         .action_msg     = "Show State",
292         .enable_mask    = SYSRQ_ENABLE_DUMP,
293 };
294
295 static void sysrq_handle_showstate_blocked(int key)
296 {
297         show_state_filter(TASK_UNINTERRUPTIBLE);
298 }
299 static struct sysrq_key_op sysrq_showstate_blocked_op = {
300         .handler        = sysrq_handle_showstate_blocked,
301         .help_msg       = "show-blocked-tasks(w)",
302         .action_msg     = "Show Blocked State",
303         .enable_mask    = SYSRQ_ENABLE_DUMP,
304 };
305
306 #ifdef CONFIG_TRACING
307 #include <linux/ftrace.h>
308
309 static void sysrq_ftrace_dump(int key)
310 {
311         ftrace_dump(DUMP_ALL);
312 }
313 static struct sysrq_key_op sysrq_ftrace_dump_op = {
314         .handler        = sysrq_ftrace_dump,
315         .help_msg       = "dump-ftrace-buffer(z)",
316         .action_msg     = "Dump ftrace buffer",
317         .enable_mask    = SYSRQ_ENABLE_DUMP,
318 };
319 #else
320 #define sysrq_ftrace_dump_op (*(struct sysrq_key_op *)NULL)
321 #endif
322
323 static void sysrq_handle_showmem(int key)
324 {
325         show_mem(0);
326 }
327 static struct sysrq_key_op sysrq_showmem_op = {
328         .handler        = sysrq_handle_showmem,
329         .help_msg       = "show-memory-usage(m)",
330         .action_msg     = "Show Memory",
331         .enable_mask    = SYSRQ_ENABLE_DUMP,
332 };
333
334 /*
335  * Signal sysrq helper function.  Sends a signal to all user processes.
336  */
337 static void send_sig_all(int sig)
338 {
339         struct task_struct *p;
340
341         read_lock(&tasklist_lock);
342         for_each_process(p) {
343                 if (p->flags & PF_KTHREAD)
344                         continue;
345                 if (is_global_init(p))
346                         continue;
347
348                 do_send_sig_info(sig, SEND_SIG_FORCED, p, true);
349         }
350         read_unlock(&tasklist_lock);
351 }
352
353 static void sysrq_handle_term(int key)
354 {
355         send_sig_all(SIGTERM);
356         console_loglevel = CONSOLE_LOGLEVEL_DEBUG;
357 }
358 static struct sysrq_key_op sysrq_term_op = {
359         .handler        = sysrq_handle_term,
360         .help_msg       = "terminate-all-tasks(e)",
361         .action_msg     = "Terminate All Tasks",
362         .enable_mask    = SYSRQ_ENABLE_SIGNAL,
363 };
364
365 static void moom_callback(struct work_struct *ignored)
366 {
367         const gfp_t gfp_mask = GFP_KERNEL;
368         struct oom_control oc = {
369                 .zonelist = node_zonelist(first_memory_node, gfp_mask),
370                 .nodemask = NULL,
371                 .gfp_mask = gfp_mask,
372                 .order = -1,
373         };
374
375         mutex_lock(&oom_lock);
376         if (!out_of_memory(&oc))
377                 pr_info("OOM request ignored because killer is disabled\n");
378         mutex_unlock(&oom_lock);
379 }
380
381 static DECLARE_WORK(moom_work, moom_callback);
382
383 static void sysrq_handle_moom(int key)
384 {
385         schedule_work(&moom_work);
386 }
387 static struct sysrq_key_op sysrq_moom_op = {
388         .handler        = sysrq_handle_moom,
389         .help_msg       = "memory-full-oom-kill(f)",
390         .action_msg     = "Manual OOM execution",
391         .enable_mask    = SYSRQ_ENABLE_SIGNAL,
392 };
393
394 #ifdef CONFIG_BLOCK
395 static void sysrq_handle_thaw(int key)
396 {
397         emergency_thaw_all();
398 }
399 static struct sysrq_key_op sysrq_thaw_op = {
400         .handler        = sysrq_handle_thaw,
401         .help_msg       = "thaw-filesystems(j)",
402         .action_msg     = "Emergency Thaw of all frozen filesystems",
403         .enable_mask    = SYSRQ_ENABLE_SIGNAL,
404 };
405 #endif
406
407 static void sysrq_handle_kill(int key)
408 {
409         send_sig_all(SIGKILL);
410         console_loglevel = CONSOLE_LOGLEVEL_DEBUG;
411 }
412 static struct sysrq_key_op sysrq_kill_op = {
413         .handler        = sysrq_handle_kill,
414         .help_msg       = "kill-all-tasks(i)",
415         .action_msg     = "Kill All Tasks",
416         .enable_mask    = SYSRQ_ENABLE_SIGNAL,
417 };
418
419 static void sysrq_handle_unrt(int key)
420 {
421         normalize_rt_tasks();
422 }
423 static struct sysrq_key_op sysrq_unrt_op = {
424         .handler        = sysrq_handle_unrt,
425         .help_msg       = "nice-all-RT-tasks(n)",
426         .action_msg     = "Nice All RT Tasks",
427         .enable_mask    = SYSRQ_ENABLE_RTNICE,
428 };
429
430 /* Key Operations table and lock */
431 static DEFINE_SPINLOCK(sysrq_key_table_lock);
432
433 static struct sysrq_key_op *sysrq_key_table[36] = {
434         &sysrq_loglevel_op,             /* 0 */
435         &sysrq_loglevel_op,             /* 1 */
436         &sysrq_loglevel_op,             /* 2 */
437         &sysrq_loglevel_op,             /* 3 */
438         &sysrq_loglevel_op,             /* 4 */
439         &sysrq_loglevel_op,             /* 5 */
440         &sysrq_loglevel_op,             /* 6 */
441         &sysrq_loglevel_op,             /* 7 */
442         &sysrq_loglevel_op,             /* 8 */
443         &sysrq_loglevel_op,             /* 9 */
444
445         /*
446          * a: Don't use for system provided sysrqs, it is handled specially on
447          * sparc and will never arrive.
448          */
449         NULL,                           /* a */
450         &sysrq_reboot_op,               /* b */
451         &sysrq_crash_op,                /* c & ibm_emac driver debug */
452         &sysrq_showlocks_op,            /* d */
453         &sysrq_term_op,                 /* e */
454         &sysrq_moom_op,                 /* f */
455         /* g: May be registered for the kernel debugger */
456         NULL,                           /* g */
457         NULL,                           /* h - reserved for help */
458         &sysrq_kill_op,                 /* i */
459 #ifdef CONFIG_BLOCK
460         &sysrq_thaw_op,                 /* j */
461 #else
462         NULL,                           /* j */
463 #endif
464         &sysrq_SAK_op,                  /* k */
465 #ifdef CONFIG_SMP
466         &sysrq_showallcpus_op,          /* l */
467 #else
468         NULL,                           /* l */
469 #endif
470         &sysrq_showmem_op,              /* m */
471         &sysrq_unrt_op,                 /* n */
472         /* o: This will often be registered as 'Off' at init time */
473         NULL,                           /* o */
474         &sysrq_showregs_op,             /* p */
475         &sysrq_show_timers_op,          /* q */
476         &sysrq_unraw_op,                /* r */
477         &sysrq_sync_op,                 /* s */
478         &sysrq_showstate_op,            /* t */
479         &sysrq_mountro_op,              /* u */
480         /* v: May be registered for frame buffer console restore */
481         NULL,                           /* v */
482         &sysrq_showstate_blocked_op,    /* w */
483         /* x: May be registered on mips for TLB dump */
484         /* x: May be registered on ppc/powerpc for xmon */
485         /* x: May be registered on sparc64 for global PMU dump */
486         NULL,                           /* x */
487         /* y: May be registered on sparc64 for global register dump */
488         NULL,                           /* y */
489         &sysrq_ftrace_dump_op,          /* z */
490 };
491
492 /* key2index calculation, -1 on invalid index */
493 static int sysrq_key_table_key2index(int key)
494 {
495         int retval;
496
497         if ((key >= '0') && (key <= '9'))
498                 retval = key - '0';
499         else if ((key >= 'a') && (key <= 'z'))
500                 retval = key + 10 - 'a';
501         else
502                 retval = -1;
503         return retval;
504 }
505
506 /*
507  * get and put functions for the table, exposed to modules.
508  */
509 struct sysrq_key_op *__sysrq_get_key_op(int key)
510 {
511         struct sysrq_key_op *op_p = NULL;
512         int i;
513
514         i = sysrq_key_table_key2index(key);
515         if (i != -1)
516                 op_p = sysrq_key_table[i];
517
518         return op_p;
519 }
520
521 static void __sysrq_put_key_op(int key, struct sysrq_key_op *op_p)
522 {
523         int i = sysrq_key_table_key2index(key);
524
525         if (i != -1)
526                 sysrq_key_table[i] = op_p;
527 }
528
529 void __handle_sysrq(int key, bool check_mask)
530 {
531         struct sysrq_key_op *op_p;
532         int orig_log_level;
533         int i;
534
535         rcu_sysrq_start();
536         rcu_read_lock();
537         /*
538          * Raise the apparent loglevel to maximum so that the sysrq header
539          * is shown to provide the user with positive feedback.  We do not
540          * simply emit this at KERN_EMERG as that would change message
541          * routing in the consumers of /proc/kmsg.
542          */
543         orig_log_level = console_loglevel;
544         console_loglevel = CONSOLE_LOGLEVEL_DEFAULT;
545
546         op_p = __sysrq_get_key_op(key);
547         if (op_p) {
548                 /*
549                  * Should we check for enabled operations (/proc/sysrq-trigger
550                  * should not) and is the invoked operation enabled?
551                  */
552                 if (!check_mask || sysrq_on_mask(op_p->enable_mask)) {
553                         pr_info("%s\n", op_p->action_msg);
554                         console_loglevel = orig_log_level;
555                         op_p->handler(key);
556                 } else {
557                         pr_info("This sysrq operation is disabled.\n");
558                         console_loglevel = orig_log_level;
559                 }
560         } else {
561                 pr_info("HELP : ");
562                 /* Only print the help msg once per handler */
563                 for (i = 0; i < ARRAY_SIZE(sysrq_key_table); i++) {
564                         if (sysrq_key_table[i]) {
565                                 int j;
566
567                                 for (j = 0; sysrq_key_table[i] !=
568                                                 sysrq_key_table[j]; j++)
569                                         ;
570                                 if (j != i)
571                                         continue;
572                                 pr_cont("%s ", sysrq_key_table[i]->help_msg);
573                         }
574                 }
575                 pr_cont("\n");
576                 console_loglevel = orig_log_level;
577         }
578         rcu_read_unlock();
579         rcu_sysrq_end();
580 }
581
582 void handle_sysrq(int key)
583 {
584         if (sysrq_on())
585                 __handle_sysrq(key, true);
586 }
587 EXPORT_SYMBOL(handle_sysrq);
588
589 #ifdef CONFIG_INPUT
590 static int sysrq_reset_downtime_ms;
591
592 /* Simple translation table for the SysRq keys */
593 static const unsigned char sysrq_xlate[KEY_CNT] =
594         "\000\0331234567890-=\177\t"                    /* 0x00 - 0x0f */
595         "qwertyuiop[]\r\000as"                          /* 0x10 - 0x1f */
596         "dfghjkl;'`\000\\zxcv"                          /* 0x20 - 0x2f */
597         "bnm,./\000*\000 \000\201\202\203\204\205"      /* 0x30 - 0x3f */
598         "\206\207\210\211\212\000\000789-456+1"         /* 0x40 - 0x4f */
599         "230\177\000\000\213\214\000\000\000\000\000\000\000\000\000\000" /* 0x50 - 0x5f */
600         "\r\000/";                                      /* 0x60 - 0x6f */
601
602 struct sysrq_state {
603         struct input_handle handle;
604         struct work_struct reinject_work;
605         unsigned long key_down[BITS_TO_LONGS(KEY_CNT)];
606         unsigned int alt;
607         unsigned int alt_use;
608         bool active;
609         bool need_reinject;
610         bool reinjecting;
611
612         /* reset sequence handling */
613         bool reset_canceled;
614         bool reset_requested;
615         unsigned long reset_keybit[BITS_TO_LONGS(KEY_CNT)];
616         int reset_seq_len;
617         int reset_seq_cnt;
618         int reset_seq_version;
619         struct timer_list keyreset_timer;
620 };
621
622 #define SYSRQ_KEY_RESET_MAX     20 /* Should be plenty */
623 static unsigned short sysrq_reset_seq[SYSRQ_KEY_RESET_MAX];
624 static unsigned int sysrq_reset_seq_len;
625 static unsigned int sysrq_reset_seq_version = 1;
626
627 static void sysrq_parse_reset_sequence(struct sysrq_state *state)
628 {
629         int i;
630         unsigned short key;
631
632         state->reset_seq_cnt = 0;
633
634         for (i = 0; i < sysrq_reset_seq_len; i++) {
635                 key = sysrq_reset_seq[i];
636
637                 if (key == KEY_RESERVED || key > KEY_MAX)
638                         break;
639
640                 __set_bit(key, state->reset_keybit);
641                 state->reset_seq_len++;
642
643                 if (test_bit(key, state->key_down))
644                         state->reset_seq_cnt++;
645         }
646
647         /* Disable reset until old keys are not released */
648         state->reset_canceled = state->reset_seq_cnt != 0;
649
650         state->reset_seq_version = sysrq_reset_seq_version;
651 }
652
653 static void sysrq_do_reset(unsigned long _state)
654 {
655         struct sysrq_state *state = (struct sysrq_state *) _state;
656
657         state->reset_requested = true;
658
659         sys_sync();
660         kernel_restart(NULL);
661 }
662
663 static void sysrq_handle_reset_request(struct sysrq_state *state)
664 {
665         if (state->reset_requested)
666                 __handle_sysrq(sysrq_xlate[KEY_B], false);
667
668         if (sysrq_reset_downtime_ms)
669                 mod_timer(&state->keyreset_timer,
670                         jiffies + msecs_to_jiffies(sysrq_reset_downtime_ms));
671         else
672                 sysrq_do_reset((unsigned long)state);
673 }
674
675 static void sysrq_detect_reset_sequence(struct sysrq_state *state,
676                                         unsigned int code, int value)
677 {
678         if (!test_bit(code, state->reset_keybit)) {
679                 /*
680                  * Pressing any key _not_ in reset sequence cancels
681                  * the reset sequence.  Also cancelling the timer in
682                  * case additional keys were pressed after a reset
683                  * has been requested.
684                  */
685                 if (value && state->reset_seq_cnt) {
686                         state->reset_canceled = true;
687                         del_timer(&state->keyreset_timer);
688                 }
689         } else if (value == 0) {
690                 /*
691                  * Key release - all keys in the reset sequence need
692                  * to be pressed and held for the reset timeout
693                  * to hold.
694                  */
695                 del_timer(&state->keyreset_timer);
696
697                 if (--state->reset_seq_cnt == 0)
698                         state->reset_canceled = false;
699         } else if (value == 1) {
700                 /* key press, not autorepeat */
701                 if (++state->reset_seq_cnt == state->reset_seq_len &&
702                     !state->reset_canceled) {
703                         sysrq_handle_reset_request(state);
704                 }
705         }
706 }
707
708 #ifdef CONFIG_OF
709 static void sysrq_of_get_keyreset_config(void)
710 {
711         u32 key;
712         struct device_node *np;
713         struct property *prop;
714         const __be32 *p;
715
716         np = of_find_node_by_path("/chosen/linux,sysrq-reset-seq");
717         if (!np) {
718                 pr_debug("No sysrq node found");
719                 return;
720         }
721
722         /* Reset in case a __weak definition was present */
723         sysrq_reset_seq_len = 0;
724
725         of_property_for_each_u32(np, "keyset", prop, p, key) {
726                 if (key == KEY_RESERVED || key > KEY_MAX ||
727                     sysrq_reset_seq_len == SYSRQ_KEY_RESET_MAX)
728                         break;
729
730                 sysrq_reset_seq[sysrq_reset_seq_len++] = (unsigned short)key;
731         }
732
733         /* Get reset timeout if any. */
734         of_property_read_u32(np, "timeout-ms", &sysrq_reset_downtime_ms);
735 }
736 #else
737 static void sysrq_of_get_keyreset_config(void)
738 {
739 }
740 #endif
741
742 static void sysrq_reinject_alt_sysrq(struct work_struct *work)
743 {
744         struct sysrq_state *sysrq =
745                         container_of(work, struct sysrq_state, reinject_work);
746         struct input_handle *handle = &sysrq->handle;
747         unsigned int alt_code = sysrq->alt_use;
748
749         if (sysrq->need_reinject) {
750                 /* we do not want the assignment to be reordered */
751                 sysrq->reinjecting = true;
752                 mb();
753
754                 /* Simulate press and release of Alt + SysRq */
755                 input_inject_event(handle, EV_KEY, alt_code, 1);
756                 input_inject_event(handle, EV_KEY, KEY_SYSRQ, 1);
757                 input_inject_event(handle, EV_SYN, SYN_REPORT, 1);
758
759                 input_inject_event(handle, EV_KEY, KEY_SYSRQ, 0);
760                 input_inject_event(handle, EV_KEY, alt_code, 0);
761                 input_inject_event(handle, EV_SYN, SYN_REPORT, 1);
762
763                 mb();
764                 sysrq->reinjecting = false;
765         }
766 }
767
768 static bool sysrq_handle_keypress(struct sysrq_state *sysrq,
769                                   unsigned int code, int value)
770 {
771         bool was_active = sysrq->active;
772         bool suppress;
773
774         switch (code) {
775
776         case KEY_LEFTALT:
777         case KEY_RIGHTALT:
778                 if (!value) {
779                         /* One of ALTs is being released */
780                         if (sysrq->active && code == sysrq->alt_use)
781                                 sysrq->active = false;
782
783                         sysrq->alt = KEY_RESERVED;
784
785                 } else if (value != 2) {
786                         sysrq->alt = code;
787                         sysrq->need_reinject = false;
788                 }
789                 break;
790
791         case KEY_SYSRQ:
792                 if (value == 1 && sysrq->alt != KEY_RESERVED) {
793                         sysrq->active = true;
794                         sysrq->alt_use = sysrq->alt;
795                         /*
796                          * If nothing else will be pressed we'll need
797                          * to re-inject Alt-SysRq keysroke.
798                          */
799                         sysrq->need_reinject = true;
800                 }
801
802                 /*
803                  * Pretend that sysrq was never pressed at all. This
804                  * is needed to properly handle KGDB which will try
805                  * to release all keys after exiting debugger. If we
806                  * do not clear key bit it KGDB will end up sending
807                  * release events for Alt and SysRq, potentially
808                  * triggering print screen function.
809                  */
810                 if (sysrq->active)
811                         clear_bit(KEY_SYSRQ, sysrq->handle.dev->key);
812
813                 break;
814
815         default:
816                 if (sysrq->active && value && value != 2) {
817                         sysrq->need_reinject = false;
818                         __handle_sysrq(sysrq_xlate[code], true);
819                 }
820                 break;
821         }
822
823         suppress = sysrq->active;
824
825         if (!sysrq->active) {
826
827                 /*
828                  * See if reset sequence has changed since the last time.
829                  */
830                 if (sysrq->reset_seq_version != sysrq_reset_seq_version)
831                         sysrq_parse_reset_sequence(sysrq);
832
833                 /*
834                  * If we are not suppressing key presses keep track of
835                  * keyboard state so we can release keys that have been
836                  * pressed before entering SysRq mode.
837                  */
838                 if (value)
839                         set_bit(code, sysrq->key_down);
840                 else
841                         clear_bit(code, sysrq->key_down);
842
843                 if (was_active)
844                         schedule_work(&sysrq->reinject_work);
845
846                 /* Check for reset sequence */
847                 sysrq_detect_reset_sequence(sysrq, code, value);
848
849         } else if (value == 0 && test_and_clear_bit(code, sysrq->key_down)) {
850                 /*
851                  * Pass on release events for keys that was pressed before
852                  * entering SysRq mode.
853                  */
854                 suppress = false;
855         }
856
857         return suppress;
858 }
859
860 static bool sysrq_filter(struct input_handle *handle,
861                          unsigned int type, unsigned int code, int value)
862 {
863         struct sysrq_state *sysrq = handle->private;
864         bool suppress;
865
866         /*
867          * Do not filter anything if we are in the process of re-injecting
868          * Alt+SysRq combination.
869          */
870         if (sysrq->reinjecting)
871                 return false;
872
873         switch (type) {
874
875         case EV_SYN:
876                 suppress = false;
877                 break;
878
879         case EV_KEY:
880                 suppress = sysrq_handle_keypress(sysrq, code, value);
881                 break;
882
883         default:
884                 suppress = sysrq->active;
885                 break;
886         }
887
888         return suppress;
889 }
890
891 static int sysrq_connect(struct input_handler *handler,
892                          struct input_dev *dev,
893                          const struct input_device_id *id)
894 {
895         struct sysrq_state *sysrq;
896         int error;
897
898         sysrq = kzalloc(sizeof(struct sysrq_state), GFP_KERNEL);
899         if (!sysrq)
900                 return -ENOMEM;
901
902         INIT_WORK(&sysrq->reinject_work, sysrq_reinject_alt_sysrq);
903
904         sysrq->handle.dev = dev;
905         sysrq->handle.handler = handler;
906         sysrq->handle.name = "sysrq";
907         sysrq->handle.private = sysrq;
908         setup_timer(&sysrq->keyreset_timer,
909                     sysrq_do_reset, (unsigned long)sysrq);
910
911         error = input_register_handle(&sysrq->handle);
912         if (error) {
913                 pr_err("Failed to register input sysrq handler, error %d\n",
914                         error);
915                 goto err_free;
916         }
917
918         error = input_open_device(&sysrq->handle);
919         if (error) {
920                 pr_err("Failed to open input device, error %d\n", error);
921                 goto err_unregister;
922         }
923
924         return 0;
925
926  err_unregister:
927         input_unregister_handle(&sysrq->handle);
928  err_free:
929         kfree(sysrq);
930         return error;
931 }
932
933 static void sysrq_disconnect(struct input_handle *handle)
934 {
935         struct sysrq_state *sysrq = handle->private;
936
937         input_close_device(handle);
938         cancel_work_sync(&sysrq->reinject_work);
939         del_timer_sync(&sysrq->keyreset_timer);
940         input_unregister_handle(handle);
941         kfree(sysrq);
942 }
943
944 /*
945  * We are matching on KEY_LEFTALT instead of KEY_SYSRQ because not all
946  * keyboards have SysRq key predefined and so user may add it to keymap
947  * later, but we expect all such keyboards to have left alt.
948  */
949 static const struct input_device_id sysrq_ids[] = {
950         {
951                 .flags = INPUT_DEVICE_ID_MATCH_EVBIT |
952                                 INPUT_DEVICE_ID_MATCH_KEYBIT,
953                 .evbit = { [BIT_WORD(EV_KEY)] = BIT_MASK(EV_KEY) },
954                 .keybit = { [BIT_WORD(KEY_LEFTALT)] = BIT_MASK(KEY_LEFTALT) },
955         },
956         { },
957 };
958
959 static struct input_handler sysrq_handler = {
960         .filter         = sysrq_filter,
961         .connect        = sysrq_connect,
962         .disconnect     = sysrq_disconnect,
963         .name           = "sysrq",
964         .id_table       = sysrq_ids,
965 };
966
967 static bool sysrq_handler_registered;
968
969 static inline void sysrq_register_handler(void)
970 {
971         int error;
972
973         sysrq_of_get_keyreset_config();
974
975         error = input_register_handler(&sysrq_handler);
976         if (error)
977                 pr_err("Failed to register input handler, error %d", error);
978         else
979                 sysrq_handler_registered = true;
980 }
981
982 static inline void sysrq_unregister_handler(void)
983 {
984         if (sysrq_handler_registered) {
985                 input_unregister_handler(&sysrq_handler);
986                 sysrq_handler_registered = false;
987         }
988 }
989
990 static int sysrq_reset_seq_param_set(const char *buffer,
991                                      const struct kernel_param *kp)
992 {
993         unsigned long val;
994         int error;
995
996         error = kstrtoul(buffer, 0, &val);
997         if (error < 0)
998                 return error;
999
1000         if (val > KEY_MAX)
1001                 return -EINVAL;
1002
1003         *((unsigned short *)kp->arg) = val;
1004         sysrq_reset_seq_version++;
1005
1006         return 0;
1007 }
1008
1009 static const struct kernel_param_ops param_ops_sysrq_reset_seq = {
1010         .get    = param_get_ushort,
1011         .set    = sysrq_reset_seq_param_set,
1012 };
1013
1014 #define param_check_sysrq_reset_seq(name, p)    \
1015         __param_check(name, p, unsigned short)
1016
1017 /*
1018  * not really modular, but the easiest way to keep compat with existing
1019  * bootargs behaviour is to continue using module_param here.
1020  */
1021 module_param_array_named(reset_seq, sysrq_reset_seq, sysrq_reset_seq,
1022                          &sysrq_reset_seq_len, 0644);
1023
1024 module_param_named(sysrq_downtime_ms, sysrq_reset_downtime_ms, int, 0644);
1025
1026 #else
1027
1028 static inline void sysrq_register_handler(void)
1029 {
1030 }
1031
1032 static inline void sysrq_unregister_handler(void)
1033 {
1034 }
1035
1036 #endif /* CONFIG_INPUT */
1037
1038 int sysrq_toggle_support(int enable_mask)
1039 {
1040         bool was_enabled = sysrq_on();
1041
1042         sysrq_enabled = enable_mask;
1043
1044         if (was_enabled != sysrq_on()) {
1045                 if (sysrq_on())
1046                         sysrq_register_handler();
1047                 else
1048                         sysrq_unregister_handler();
1049         }
1050
1051         return 0;
1052 }
1053
1054 static int __sysrq_swap_key_ops(int key, struct sysrq_key_op *insert_op_p,
1055                                 struct sysrq_key_op *remove_op_p)
1056 {
1057         int retval;
1058
1059         spin_lock(&sysrq_key_table_lock);
1060         if (__sysrq_get_key_op(key) == remove_op_p) {
1061                 __sysrq_put_key_op(key, insert_op_p);
1062                 retval = 0;
1063         } else {
1064                 retval = -1;
1065         }
1066         spin_unlock(&sysrq_key_table_lock);
1067
1068         /*
1069          * A concurrent __handle_sysrq either got the old op or the new op.
1070          * Wait for it to go away before returning, so the code for an old
1071          * op is not freed (eg. on module unload) while it is in use.
1072          */
1073         synchronize_rcu();
1074
1075         return retval;
1076 }
1077
1078 int register_sysrq_key(int key, struct sysrq_key_op *op_p)
1079 {
1080         return __sysrq_swap_key_ops(key, op_p, NULL);
1081 }
1082 EXPORT_SYMBOL(register_sysrq_key);
1083
1084 int unregister_sysrq_key(int key, struct sysrq_key_op *op_p)
1085 {
1086         return __sysrq_swap_key_ops(key, NULL, op_p);
1087 }
1088 EXPORT_SYMBOL(unregister_sysrq_key);
1089
1090 #ifdef CONFIG_PROC_FS
1091 /*
1092  * writing 'C' to /proc/sysrq-trigger is like sysrq-C
1093  */
1094 static ssize_t write_sysrq_trigger(struct file *file, const char __user *buf,
1095                                    size_t count, loff_t *ppos)
1096 {
1097         if (count) {
1098                 char c;
1099
1100                 if (get_user(c, buf))
1101                         return -EFAULT;
1102                 __handle_sysrq(c, false);
1103         }
1104
1105         return count;
1106 }
1107
1108 static const struct file_operations proc_sysrq_trigger_operations = {
1109         .write          = write_sysrq_trigger,
1110         .llseek         = noop_llseek,
1111 };
1112
1113 static void sysrq_init_procfs(void)
1114 {
1115         if (!proc_create("sysrq-trigger", S_IWUSR, NULL,
1116                          &proc_sysrq_trigger_operations))
1117                 pr_err("Failed to register proc interface\n");
1118 }
1119
1120 #else
1121
1122 static inline void sysrq_init_procfs(void)
1123 {
1124 }
1125
1126 #endif /* CONFIG_PROC_FS */
1127
1128 static int __init sysrq_init(void)
1129 {
1130         sysrq_init_procfs();
1131
1132         if (sysrq_on())
1133                 sysrq_register_handler();
1134
1135         return 0;
1136 }
1137 device_initcall(sysrq_init);