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printk: only unregister boot consoles when necessary
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1da177e4
LT
1/*
2 * linux/kernel/printk.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 *
6 * Modified to make sys_syslog() more flexible: added commands to
7 * return the last 4k of kernel messages, regardless of whether
8 * they've been read or not. Added option to suppress kernel printk's
9 * to the console. Added hook for sending the console messages
10 * elsewhere, in preparation for a serial line console (someday).
11 * Ted Ts'o, 2/11/93.
12 * Modified for sysctl support, 1/8/97, Chris Horn.
40dc5651 13 * Fixed SMP synchronization, 08/08/99, Manfred Spraul
624dffcb 14 * manfred@colorfullife.com
1da177e4 15 * Rewrote bits to get rid of console_lock
e1f8e874 16 * 01Mar01 Andrew Morton
1da177e4
LT
17 */
18
19#include <linux/kernel.h>
20#include <linux/mm.h>
21#include <linux/tty.h>
22#include <linux/tty_driver.h>
1da177e4
LT
23#include <linux/console.h>
24#include <linux/init.h>
bfe8df3d
RD
25#include <linux/jiffies.h>
26#include <linux/nmi.h>
1da177e4 27#include <linux/module.h>
3b9c0410 28#include <linux/moduleparam.h>
1da177e4 29#include <linux/interrupt.h> /* For in_interrupt() */
1da177e4
LT
30#include <linux/delay.h>
31#include <linux/smp.h>
32#include <linux/security.h>
33#include <linux/bootmem.h>
162a7e75 34#include <linux/memblock.h>
1da177e4 35#include <linux/syscalls.h>
04d491ab 36#include <linux/kexec.h>
d37d39ae 37#include <linux/kdb.h>
3fff4c42 38#include <linux/ratelimit.h>
456b565c 39#include <linux/kmsg_dump.h>
00234592 40#include <linux/syslog.h>
034260d6
KC
41#include <linux/cpu.h>
42#include <linux/notifier.h>
fb842b00 43#include <linux/rculist.h>
e11fea92 44#include <linux/poll.h>
74876a98 45#include <linux/irq_work.h>
196779b9 46#include <linux/utsname.h>
249771b8 47#include <linux/ctype.h>
e2e40f2c 48#include <linux/uio.h>
1da177e4
LT
49
50#include <asm/uaccess.h>
81cc26f2 51#include <asm-generic/sections.h>
1da177e4 52
95100358
JB
53#define CREATE_TRACE_POINTS
54#include <trace/events/printk.h>
55
d197c43d 56#include "console_cmdline.h"
bbeddf52 57#include "braille.h"
d197c43d 58
1da177e4 59int console_printk[4] = {
a8fe19eb 60 CONSOLE_LOGLEVEL_DEFAULT, /* console_loglevel */
42a9dc0b 61 MESSAGE_LOGLEVEL_DEFAULT, /* default_message_loglevel */
a8fe19eb
BP
62 CONSOLE_LOGLEVEL_MIN, /* minimum_console_loglevel */
63 CONSOLE_LOGLEVEL_DEFAULT, /* default_console_loglevel */
1da177e4
LT
64};
65
1da177e4 66/*
0bbfb7c2 67 * Low level drivers may need that to know if they can schedule in
1da177e4
LT
68 * their unblank() callback or not. So let's export it.
69 */
70int oops_in_progress;
71EXPORT_SYMBOL(oops_in_progress);
72
73/*
74 * console_sem protects the console_drivers list, and also
75 * provides serialisation for access to the entire console
76 * driver system.
77 */
5b8c4f23 78static DEFINE_SEMAPHORE(console_sem);
1da177e4 79struct console *console_drivers;
a29d1cfe
IM
80EXPORT_SYMBOL_GPL(console_drivers);
81
daee7797
DV
82#ifdef CONFIG_LOCKDEP
83static struct lockdep_map console_lock_dep_map = {
84 .name = "console_lock"
85};
86#endif
87
6fe29354
TH
88/*
89 * Number of registered extended console drivers.
90 *
91 * If extended consoles are present, in-kernel cont reassembly is disabled
92 * and each fragment is stored as a separate log entry with proper
93 * continuation flag so that every emitted message has full metadata. This
94 * doesn't change the result for regular consoles or /proc/kmsg. For
95 * /dev/kmsg, as long as the reader concatenates messages according to
96 * consecutive continuation flags, the end result should be the same too.
97 */
98static int nr_ext_console_drivers;
99
bd8d7cf5
JK
100/*
101 * Helper macros to handle lockdep when locking/unlocking console_sem. We use
102 * macros instead of functions so that _RET_IP_ contains useful information.
103 */
104#define down_console_sem() do { \
105 down(&console_sem);\
106 mutex_acquire(&console_lock_dep_map, 0, 0, _RET_IP_);\
107} while (0)
108
109static int __down_trylock_console_sem(unsigned long ip)
110{
111 if (down_trylock(&console_sem))
112 return 1;
113 mutex_acquire(&console_lock_dep_map, 0, 1, ip);
114 return 0;
115}
116#define down_trylock_console_sem() __down_trylock_console_sem(_RET_IP_)
117
118#define up_console_sem() do { \
119 mutex_release(&console_lock_dep_map, 1, _RET_IP_);\
120 up(&console_sem);\
121} while (0)
122
1da177e4
LT
123/*
124 * This is used for debugging the mess that is the VT code by
125 * keeping track if we have the console semaphore held. It's
126 * definitely not the perfect debug tool (we don't know if _WE_
0b90fec3
AE
127 * hold it and are racing, but it helps tracking those weird code
128 * paths in the console code where we end up in places I want
129 * locked without the console sempahore held).
1da177e4 130 */
557240b4 131static int console_locked, console_suspended;
1da177e4 132
fe3d8ad3
FT
133/*
134 * If exclusive_console is non-NULL then only this console is to be printed to.
135 */
136static struct console *exclusive_console;
137
1da177e4
LT
138/*
139 * Array of consoles built from command line options (console=)
140 */
1da177e4
LT
141
142#define MAX_CMDLINECONSOLES 8
143
144static struct console_cmdline console_cmdline[MAX_CMDLINECONSOLES];
d197c43d 145
1da177e4
LT
146static int selected_console = -1;
147static int preferred_console = -1;
9e124fe1
MA
148int console_set_on_cmdline;
149EXPORT_SYMBOL(console_set_on_cmdline);
1da177e4
LT
150
151/* Flag: console code may call schedule() */
152static int console_may_schedule;
153
7ff9554b
KS
154/*
155 * The printk log buffer consists of a chain of concatenated variable
156 * length records. Every record starts with a record header, containing
157 * the overall length of the record.
158 *
159 * The heads to the first and last entry in the buffer, as well as the
0b90fec3
AE
160 * sequence numbers of these entries are maintained when messages are
161 * stored.
7ff9554b
KS
162 *
163 * If the heads indicate available messages, the length in the header
164 * tells the start next message. A length == 0 for the next message
165 * indicates a wrap-around to the beginning of the buffer.
166 *
167 * Every record carries the monotonic timestamp in microseconds, as well as
168 * the standard userspace syslog level and syslog facility. The usual
169 * kernel messages use LOG_KERN; userspace-injected messages always carry
170 * a matching syslog facility, by default LOG_USER. The origin of every
171 * message can be reliably determined that way.
172 *
173 * The human readable log message directly follows the message header. The
174 * length of the message text is stored in the header, the stored message
175 * is not terminated.
176 *
e11fea92
KS
177 * Optionally, a message can carry a dictionary of properties (key/value pairs),
178 * to provide userspace with a machine-readable message context.
179 *
180 * Examples for well-defined, commonly used property names are:
181 * DEVICE=b12:8 device identifier
182 * b12:8 block dev_t
183 * c127:3 char dev_t
184 * n8 netdev ifindex
185 * +sound:card0 subsystem:devname
186 * SUBSYSTEM=pci driver-core subsystem name
187 *
188 * Valid characters in property names are [a-zA-Z0-9.-_]. The plain text value
189 * follows directly after a '=' character. Every property is terminated by
190 * a '\0' character. The last property is not terminated.
191 *
192 * Example of a message structure:
193 * 0000 ff 8f 00 00 00 00 00 00 monotonic time in nsec
194 * 0008 34 00 record is 52 bytes long
195 * 000a 0b 00 text is 11 bytes long
196 * 000c 1f 00 dictionary is 23 bytes long
197 * 000e 03 00 LOG_KERN (facility) LOG_ERR (level)
198 * 0010 69 74 27 73 20 61 20 6c "it's a l"
199 * 69 6e 65 "ine"
200 * 001b 44 45 56 49 43 "DEVIC"
201 * 45 3d 62 38 3a 32 00 44 "E=b8:2\0D"
202 * 52 49 56 45 52 3d 62 75 "RIVER=bu"
203 * 67 "g"
204 * 0032 00 00 00 padding to next message header
205 *
62e32ac3 206 * The 'struct printk_log' buffer header must never be directly exported to
e11fea92
KS
207 * userspace, it is a kernel-private implementation detail that might
208 * need to be changed in the future, when the requirements change.
209 *
210 * /dev/kmsg exports the structured data in the following line format:
b389645f
AO
211 * "<level>,<sequnum>,<timestamp>,<contflag>[,additional_values, ... ];<message text>\n"
212 *
213 * Users of the export format should ignore possible additional values
214 * separated by ',', and find the message after the ';' character.
e11fea92
KS
215 *
216 * The optional key/value pairs are attached as continuation lines starting
217 * with a space character and terminated by a newline. All possible
218 * non-prinatable characters are escaped in the "\xff" notation.
7ff9554b
KS
219 */
220
084681d1 221enum log_flags {
5becfb1d
KS
222 LOG_NOCONS = 1, /* already flushed, do not print to console */
223 LOG_NEWLINE = 2, /* text ended with a newline */
224 LOG_PREFIX = 4, /* text started with a prefix */
225 LOG_CONT = 8, /* text is a fragment of a continuation line */
084681d1
KS
226};
227
62e32ac3 228struct printk_log {
7ff9554b
KS
229 u64 ts_nsec; /* timestamp in nanoseconds */
230 u16 len; /* length of entire record */
231 u16 text_len; /* length of text buffer */
232 u16 dict_len; /* length of dictionary buffer */
084681d1
KS
233 u8 facility; /* syslog facility */
234 u8 flags:5; /* internal record flags */
235 u8 level:3; /* syslog level */
7ff9554b
KS
236};
237
238/*
458df9fd
SR
239 * The logbuf_lock protects kmsg buffer, indices, counters. This can be taken
240 * within the scheduler's rq lock. It must be released before calling
241 * console_unlock() or anything else that might wake up a process.
7ff9554b
KS
242 */
243static DEFINE_RAW_SPINLOCK(logbuf_lock);
d59745ce 244
96efedf1 245#ifdef CONFIG_PRINTK
dc72c32e 246DECLARE_WAIT_QUEUE_HEAD(log_wait);
7f3a781d
KS
247/* the next printk record to read by syslog(READ) or /proc/kmsg */
248static u64 syslog_seq;
249static u32 syslog_idx;
5becfb1d 250static enum log_flags syslog_prev;
eb02dac9 251static size_t syslog_partial;
7ff9554b
KS
252
253/* index and sequence number of the first record stored in the buffer */
254static u64 log_first_seq;
255static u32 log_first_idx;
256
257/* index and sequence number of the next record to store in the buffer */
258static u64 log_next_seq;
259static u32 log_next_idx;
260
eab07260
KS
261/* the next printk record to write to the console */
262static u64 console_seq;
263static u32 console_idx;
264static enum log_flags console_prev;
265
7ff9554b
KS
266/* the next printk record to read after the last 'clear' command */
267static u64 clear_seq;
268static u32 clear_idx;
269
70498253 270#define PREFIX_MAX 32
249771b8 271#define LOG_LINE_MAX (1024 - PREFIX_MAX)
7f3a781d 272
3824657c
MK
273#define LOG_LEVEL(v) ((v) & 0x07)
274#define LOG_FACILITY(v) ((v) >> 3 & 0xff)
275
7f3a781d 276/* record buffer */
6ebb017d 277#if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS)
f8450fca
SW
278#define LOG_ALIGN 4
279#else
62e32ac3 280#define LOG_ALIGN __alignof__(struct printk_log)
f8450fca 281#endif
7f3a781d 282#define __LOG_BUF_LEN (1 << CONFIG_LOG_BUF_SHIFT)
f8450fca 283static char __log_buf[__LOG_BUF_LEN] __aligned(LOG_ALIGN);
7f3a781d
KS
284static char *log_buf = __log_buf;
285static u32 log_buf_len = __LOG_BUF_LEN;
286
14c4000a
VH
287/* Return log buffer address */
288char *log_buf_addr_get(void)
289{
290 return log_buf;
291}
292
293/* Return log buffer size */
294u32 log_buf_len_get(void)
295{
296 return log_buf_len;
297}
298
7ff9554b 299/* human readable text of the record */
62e32ac3 300static char *log_text(const struct printk_log *msg)
7ff9554b 301{
62e32ac3 302 return (char *)msg + sizeof(struct printk_log);
7ff9554b
KS
303}
304
305/* optional key/value pair dictionary attached to the record */
62e32ac3 306static char *log_dict(const struct printk_log *msg)
7ff9554b 307{
62e32ac3 308 return (char *)msg + sizeof(struct printk_log) + msg->text_len;
7ff9554b
KS
309}
310
311/* get record by index; idx must point to valid msg */
62e32ac3 312static struct printk_log *log_from_idx(u32 idx)
7ff9554b 313{
62e32ac3 314 struct printk_log *msg = (struct printk_log *)(log_buf + idx);
7ff9554b
KS
315
316 /*
317 * A length == 0 record is the end of buffer marker. Wrap around and
318 * read the message at the start of the buffer.
319 */
320 if (!msg->len)
62e32ac3 321 return (struct printk_log *)log_buf;
7ff9554b
KS
322 return msg;
323}
324
325/* get next record; idx must point to valid msg */
326static u32 log_next(u32 idx)
327{
62e32ac3 328 struct printk_log *msg = (struct printk_log *)(log_buf + idx);
7ff9554b
KS
329
330 /* length == 0 indicates the end of the buffer; wrap */
331 /*
332 * A length == 0 record is the end of buffer marker. Wrap around and
333 * read the message at the start of the buffer as *this* one, and
334 * return the one after that.
335 */
336 if (!msg->len) {
62e32ac3 337 msg = (struct printk_log *)log_buf;
7ff9554b
KS
338 return msg->len;
339 }
340 return idx + msg->len;
341}
342
f40e4b9f
PM
343/*
344 * Check whether there is enough free space for the given message.
345 *
346 * The same values of first_idx and next_idx mean that the buffer
347 * is either empty or full.
348 *
349 * If the buffer is empty, we must respect the position of the indexes.
350 * They cannot be reset to the beginning of the buffer.
351 */
352static int logbuf_has_space(u32 msg_size, bool empty)
0a581694
PM
353{
354 u32 free;
355
f40e4b9f 356 if (log_next_idx > log_first_idx || empty)
0a581694
PM
357 free = max(log_buf_len - log_next_idx, log_first_idx);
358 else
359 free = log_first_idx - log_next_idx;
360
361 /*
362 * We need space also for an empty header that signalizes wrapping
363 * of the buffer.
364 */
365 return free >= msg_size + sizeof(struct printk_log);
366}
367
f40e4b9f 368static int log_make_free_space(u32 msg_size)
0a581694
PM
369{
370 while (log_first_seq < log_next_seq) {
f40e4b9f
PM
371 if (logbuf_has_space(msg_size, false))
372 return 0;
0b90fec3 373 /* drop old messages until we have enough contiguous space */
0a581694
PM
374 log_first_idx = log_next(log_first_idx);
375 log_first_seq++;
376 }
f40e4b9f
PM
377
378 /* sequence numbers are equal, so the log buffer is empty */
379 if (logbuf_has_space(msg_size, true))
380 return 0;
381
382 return -ENOMEM;
0a581694
PM
383}
384
85c87043
PM
385/* compute the message size including the padding bytes */
386static u32 msg_used_size(u16 text_len, u16 dict_len, u32 *pad_len)
387{
388 u32 size;
389
390 size = sizeof(struct printk_log) + text_len + dict_len;
391 *pad_len = (-size) & (LOG_ALIGN - 1);
392 size += *pad_len;
393
394 return size;
395}
396
55bd53a4
PM
397/*
398 * Define how much of the log buffer we could take at maximum. The value
399 * must be greater than two. Note that only half of the buffer is available
400 * when the index points to the middle.
401 */
402#define MAX_LOG_TAKE_PART 4
403static const char trunc_msg[] = "<truncated>";
404
405static u32 truncate_msg(u16 *text_len, u16 *trunc_msg_len,
406 u16 *dict_len, u32 *pad_len)
407{
408 /*
409 * The message should not take the whole buffer. Otherwise, it might
410 * get removed too soon.
411 */
412 u32 max_text_len = log_buf_len / MAX_LOG_TAKE_PART;
413 if (*text_len > max_text_len)
414 *text_len = max_text_len;
415 /* enable the warning message */
416 *trunc_msg_len = strlen(trunc_msg);
417 /* disable the "dict" completely */
418 *dict_len = 0;
419 /* compute the size again, count also the warning message */
420 return msg_used_size(*text_len + *trunc_msg_len, 0, pad_len);
421}
422
7ff9554b 423/* insert record into the buffer, discard old ones, update heads */
034633cc
PM
424static int log_store(int facility, int level,
425 enum log_flags flags, u64 ts_nsec,
426 const char *dict, u16 dict_len,
427 const char *text, u16 text_len)
7ff9554b 428{
62e32ac3 429 struct printk_log *msg;
7ff9554b 430 u32 size, pad_len;
55bd53a4 431 u16 trunc_msg_len = 0;
7ff9554b
KS
432
433 /* number of '\0' padding bytes to next message */
85c87043 434 size = msg_used_size(text_len, dict_len, &pad_len);
7ff9554b 435
55bd53a4
PM
436 if (log_make_free_space(size)) {
437 /* truncate the message if it is too long for empty buffer */
438 size = truncate_msg(&text_len, &trunc_msg_len,
439 &dict_len, &pad_len);
440 /* survive when the log buffer is too small for trunc_msg */
441 if (log_make_free_space(size))
034633cc 442 return 0;
55bd53a4 443 }
7ff9554b 444
39b25109 445 if (log_next_idx + size + sizeof(struct printk_log) > log_buf_len) {
7ff9554b
KS
446 /*
447 * This message + an additional empty header does not fit
448 * at the end of the buffer. Add an empty header with len == 0
449 * to signify a wrap around.
450 */
62e32ac3 451 memset(log_buf + log_next_idx, 0, sizeof(struct printk_log));
7ff9554b
KS
452 log_next_idx = 0;
453 }
454
455 /* fill message */
62e32ac3 456 msg = (struct printk_log *)(log_buf + log_next_idx);
7ff9554b
KS
457 memcpy(log_text(msg), text, text_len);
458 msg->text_len = text_len;
55bd53a4
PM
459 if (trunc_msg_len) {
460 memcpy(log_text(msg) + text_len, trunc_msg, trunc_msg_len);
461 msg->text_len += trunc_msg_len;
462 }
7ff9554b
KS
463 memcpy(log_dict(msg), dict, dict_len);
464 msg->dict_len = dict_len;
084681d1
KS
465 msg->facility = facility;
466 msg->level = level & 7;
467 msg->flags = flags & 0x1f;
468 if (ts_nsec > 0)
469 msg->ts_nsec = ts_nsec;
470 else
471 msg->ts_nsec = local_clock();
7ff9554b 472 memset(log_dict(msg) + dict_len, 0, pad_len);
fce6e033 473 msg->len = size;
7ff9554b
KS
474
475 /* insert message */
476 log_next_idx += msg->len;
477 log_next_seq++;
034633cc
PM
478
479 return msg->text_len;
7ff9554b 480}
d59745ce 481
e99aa461 482int dmesg_restrict = IS_ENABLED(CONFIG_SECURITY_DMESG_RESTRICT);
637241a9
KC
483
484static int syslog_action_restricted(int type)
485{
486 if (dmesg_restrict)
487 return 1;
488 /*
489 * Unless restricted, we allow "read all" and "get buffer size"
490 * for everybody.
491 */
492 return type != SYSLOG_ACTION_READ_ALL &&
493 type != SYSLOG_ACTION_SIZE_BUFFER;
494}
495
3ea4331c 496int check_syslog_permissions(int type, int source)
637241a9
KC
497{
498 /*
499 * If this is from /proc/kmsg and we've already opened it, then we've
500 * already done the capabilities checks at open time.
501 */
3ea4331c 502 if (source == SYSLOG_FROM_PROC && type != SYSLOG_ACTION_OPEN)
d194e5d6 503 goto ok;
637241a9
KC
504
505 if (syslog_action_restricted(type)) {
506 if (capable(CAP_SYSLOG))
d194e5d6 507 goto ok;
637241a9
KC
508 /*
509 * For historical reasons, accept CAP_SYS_ADMIN too, with
510 * a warning.
511 */
512 if (capable(CAP_SYS_ADMIN)) {
513 pr_warn_once("%s (%d): Attempt to access syslog with "
514 "CAP_SYS_ADMIN but no CAP_SYSLOG "
515 "(deprecated).\n",
516 current->comm, task_pid_nr(current));
d194e5d6 517 goto ok;
637241a9
KC
518 }
519 return -EPERM;
520 }
d194e5d6 521ok:
637241a9
KC
522 return security_syslog(type);
523}
ee1d2674 524EXPORT_SYMBOL_GPL(check_syslog_permissions);
637241a9 525
d43ff430
TH
526static void append_char(char **pp, char *e, char c)
527{
528 if (*pp < e)
529 *(*pp)++ = c;
530}
637241a9 531
0a295e67
TH
532static ssize_t msg_print_ext_header(char *buf, size_t size,
533 struct printk_log *msg, u64 seq,
534 enum log_flags prev_flags)
535{
536 u64 ts_usec = msg->ts_nsec;
537 char cont = '-';
538
539 do_div(ts_usec, 1000);
540
541 /*
542 * If we couldn't merge continuation line fragments during the print,
543 * export the stored flags to allow an optional external merge of the
544 * records. Merging the records isn't always neccessarily correct, like
545 * when we hit a race during printing. In most cases though, it produces
546 * better readable output. 'c' in the record flags mark the first
547 * fragment of a line, '+' the following.
548 */
549 if (msg->flags & LOG_CONT && !(prev_flags & LOG_CONT))
550 cont = 'c';
551 else if ((msg->flags & LOG_CONT) ||
552 ((prev_flags & LOG_CONT) && !(msg->flags & LOG_PREFIX)))
553 cont = '+';
554
555 return scnprintf(buf, size, "%u,%llu,%llu,%c;",
556 (msg->facility << 3) | msg->level, seq, ts_usec, cont);
557}
558
559static ssize_t msg_print_ext_body(char *buf, size_t size,
560 char *dict, size_t dict_len,
561 char *text, size_t text_len)
562{
563 char *p = buf, *e = buf + size;
564 size_t i;
565
566 /* escape non-printable characters */
567 for (i = 0; i < text_len; i++) {
568 unsigned char c = text[i];
569
570 if (c < ' ' || c >= 127 || c == '\\')
571 p += scnprintf(p, e - p, "\\x%02x", c);
572 else
573 append_char(&p, e, c);
574 }
575 append_char(&p, e, '\n');
576
577 if (dict_len) {
578 bool line = true;
579
580 for (i = 0; i < dict_len; i++) {
581 unsigned char c = dict[i];
582
583 if (line) {
584 append_char(&p, e, ' ');
585 line = false;
586 }
587
588 if (c == '\0') {
589 append_char(&p, e, '\n');
590 line = true;
591 continue;
592 }
593
594 if (c < ' ' || c >= 127 || c == '\\') {
595 p += scnprintf(p, e - p, "\\x%02x", c);
596 continue;
597 }
598
599 append_char(&p, e, c);
600 }
601 append_char(&p, e, '\n');
602 }
603
604 return p - buf;
605}
606
e11fea92
KS
607/* /dev/kmsg - userspace message inject/listen interface */
608struct devkmsg_user {
609 u64 seq;
610 u32 idx;
d39f3d77 611 enum log_flags prev;
e11fea92 612 struct mutex lock;
d43ff430 613 char buf[CONSOLE_EXT_LOG_MAX];
e11fea92
KS
614};
615
849f3127 616static ssize_t devkmsg_write(struct kiocb *iocb, struct iov_iter *from)
e11fea92
KS
617{
618 char *buf, *line;
e11fea92
KS
619 int level = default_message_loglevel;
620 int facility = 1; /* LOG_USER */
66ee59af 621 size_t len = iov_iter_count(from);
e11fea92
KS
622 ssize_t ret = len;
623
624 if (len > LOG_LINE_MAX)
625 return -EINVAL;
626 buf = kmalloc(len+1, GFP_KERNEL);
627 if (buf == NULL)
628 return -ENOMEM;
629
849f3127
AV
630 buf[len] = '\0';
631 if (copy_from_iter(buf, len, from) != len) {
632 kfree(buf);
633 return -EFAULT;
e11fea92
KS
634 }
635
636 /*
637 * Extract and skip the syslog prefix <[0-9]*>. Coming from userspace
638 * the decimal value represents 32bit, the lower 3 bit are the log
639 * level, the rest are the log facility.
640 *
641 * If no prefix or no userspace facility is specified, we
642 * enforce LOG_USER, to be able to reliably distinguish
643 * kernel-generated messages from userspace-injected ones.
644 */
645 line = buf;
646 if (line[0] == '<') {
647 char *endp = NULL;
3824657c 648 unsigned int u;
e11fea92 649
3824657c 650 u = simple_strtoul(line + 1, &endp, 10);
e11fea92 651 if (endp && endp[0] == '>') {
3824657c
MK
652 level = LOG_LEVEL(u);
653 if (LOG_FACILITY(u) != 0)
654 facility = LOG_FACILITY(u);
e11fea92
KS
655 endp++;
656 len -= endp - line;
657 line = endp;
658 }
659 }
e11fea92
KS
660
661 printk_emit(facility, level, NULL, 0, "%s", line);
e11fea92
KS
662 kfree(buf);
663 return ret;
664}
665
666static ssize_t devkmsg_read(struct file *file, char __user *buf,
667 size_t count, loff_t *ppos)
668{
669 struct devkmsg_user *user = file->private_data;
62e32ac3 670 struct printk_log *msg;
e11fea92
KS
671 size_t len;
672 ssize_t ret;
673
674 if (!user)
675 return -EBADF;
676
4a77a5a0
YL
677 ret = mutex_lock_interruptible(&user->lock);
678 if (ret)
679 return ret;
5c53d819 680 raw_spin_lock_irq(&logbuf_lock);
e11fea92
KS
681 while (user->seq == log_next_seq) {
682 if (file->f_flags & O_NONBLOCK) {
683 ret = -EAGAIN;
5c53d819 684 raw_spin_unlock_irq(&logbuf_lock);
e11fea92
KS
685 goto out;
686 }
687
5c53d819 688 raw_spin_unlock_irq(&logbuf_lock);
e11fea92
KS
689 ret = wait_event_interruptible(log_wait,
690 user->seq != log_next_seq);
691 if (ret)
692 goto out;
5c53d819 693 raw_spin_lock_irq(&logbuf_lock);
e11fea92
KS
694 }
695
696 if (user->seq < log_first_seq) {
697 /* our last seen message is gone, return error and reset */
698 user->idx = log_first_idx;
699 user->seq = log_first_seq;
700 ret = -EPIPE;
5c53d819 701 raw_spin_unlock_irq(&logbuf_lock);
e11fea92
KS
702 goto out;
703 }
704
705 msg = log_from_idx(user->idx);
0a295e67
TH
706 len = msg_print_ext_header(user->buf, sizeof(user->buf),
707 msg, user->seq, user->prev);
708 len += msg_print_ext_body(user->buf + len, sizeof(user->buf) - len,
709 log_dict(msg), msg->dict_len,
710 log_text(msg), msg->text_len);
d39f3d77 711
d39f3d77 712 user->prev = msg->flags;
e11fea92
KS
713 user->idx = log_next(user->idx);
714 user->seq++;
5c53d819 715 raw_spin_unlock_irq(&logbuf_lock);
e11fea92
KS
716
717 if (len > count) {
718 ret = -EINVAL;
719 goto out;
720 }
721
722 if (copy_to_user(buf, user->buf, len)) {
723 ret = -EFAULT;
724 goto out;
725 }
726 ret = len;
727out:
728 mutex_unlock(&user->lock);
729 return ret;
730}
731
732static loff_t devkmsg_llseek(struct file *file, loff_t offset, int whence)
733{
734 struct devkmsg_user *user = file->private_data;
735 loff_t ret = 0;
736
737 if (!user)
738 return -EBADF;
739 if (offset)
740 return -ESPIPE;
741
5c53d819 742 raw_spin_lock_irq(&logbuf_lock);
e11fea92
KS
743 switch (whence) {
744 case SEEK_SET:
745 /* the first record */
746 user->idx = log_first_idx;
747 user->seq = log_first_seq;
748 break;
749 case SEEK_DATA:
750 /*
751 * The first record after the last SYSLOG_ACTION_CLEAR,
752 * like issued by 'dmesg -c'. Reading /dev/kmsg itself
753 * changes no global state, and does not clear anything.
754 */
755 user->idx = clear_idx;
756 user->seq = clear_seq;
757 break;
758 case SEEK_END:
759 /* after the last record */
760 user->idx = log_next_idx;
761 user->seq = log_next_seq;
762 break;
763 default:
764 ret = -EINVAL;
765 }
5c53d819 766 raw_spin_unlock_irq(&logbuf_lock);
e11fea92
KS
767 return ret;
768}
769
770static unsigned int devkmsg_poll(struct file *file, poll_table *wait)
771{
772 struct devkmsg_user *user = file->private_data;
773 int ret = 0;
774
775 if (!user)
776 return POLLERR|POLLNVAL;
777
778 poll_wait(file, &log_wait, wait);
779
5c53d819 780 raw_spin_lock_irq(&logbuf_lock);
e11fea92
KS
781 if (user->seq < log_next_seq) {
782 /* return error when data has vanished underneath us */
783 if (user->seq < log_first_seq)
784 ret = POLLIN|POLLRDNORM|POLLERR|POLLPRI;
0a285317
NK
785 else
786 ret = POLLIN|POLLRDNORM;
e11fea92 787 }
5c53d819 788 raw_spin_unlock_irq(&logbuf_lock);
e11fea92
KS
789
790 return ret;
791}
792
793static int devkmsg_open(struct inode *inode, struct file *file)
794{
795 struct devkmsg_user *user;
796 int err;
797
798 /* write-only does not need any file context */
799 if ((file->f_flags & O_ACCMODE) == O_WRONLY)
800 return 0;
801
637241a9
KC
802 err = check_syslog_permissions(SYSLOG_ACTION_READ_ALL,
803 SYSLOG_FROM_READER);
e11fea92
KS
804 if (err)
805 return err;
806
807 user = kmalloc(sizeof(struct devkmsg_user), GFP_KERNEL);
808 if (!user)
809 return -ENOMEM;
810
811 mutex_init(&user->lock);
812
5c53d819 813 raw_spin_lock_irq(&logbuf_lock);
e11fea92
KS
814 user->idx = log_first_idx;
815 user->seq = log_first_seq;
5c53d819 816 raw_spin_unlock_irq(&logbuf_lock);
e11fea92
KS
817
818 file->private_data = user;
819 return 0;
820}
821
822static int devkmsg_release(struct inode *inode, struct file *file)
823{
824 struct devkmsg_user *user = file->private_data;
825
826 if (!user)
827 return 0;
828
829 mutex_destroy(&user->lock);
830 kfree(user);
831 return 0;
832}
833
834const struct file_operations kmsg_fops = {
835 .open = devkmsg_open,
836 .read = devkmsg_read,
849f3127 837 .write_iter = devkmsg_write,
e11fea92
KS
838 .llseek = devkmsg_llseek,
839 .poll = devkmsg_poll,
840 .release = devkmsg_release,
841};
842
2965faa5 843#ifdef CONFIG_KEXEC_CORE
04d491ab 844/*
4c1ace64 845 * This appends the listed symbols to /proc/vmcore
04d491ab 846 *
4c1ace64 847 * /proc/vmcore is used by various utilities, like crash and makedumpfile to
04d491ab
NH
848 * obtain access to symbols that are otherwise very difficult to locate. These
849 * symbols are specifically used so that utilities can access and extract the
850 * dmesg log from a vmcore file after a crash.
851 */
852void log_buf_kexec_setup(void)
853{
854 VMCOREINFO_SYMBOL(log_buf);
04d491ab 855 VMCOREINFO_SYMBOL(log_buf_len);
7ff9554b
KS
856 VMCOREINFO_SYMBOL(log_first_idx);
857 VMCOREINFO_SYMBOL(log_next_idx);
6791457a 858 /*
62e32ac3 859 * Export struct printk_log size and field offsets. User space tools can
6791457a
VG
860 * parse it and detect any changes to structure down the line.
861 */
62e32ac3
JP
862 VMCOREINFO_STRUCT_SIZE(printk_log);
863 VMCOREINFO_OFFSET(printk_log, ts_nsec);
864 VMCOREINFO_OFFSET(printk_log, len);
865 VMCOREINFO_OFFSET(printk_log, text_len);
866 VMCOREINFO_OFFSET(printk_log, dict_len);
04d491ab
NH
867}
868#endif
869
162a7e75
MT
870/* requested log_buf_len from kernel cmdline */
871static unsigned long __initdata new_log_buf_len;
872
c0a318a3
LR
873/* we practice scaling the ring buffer by powers of 2 */
874static void __init log_buf_len_update(unsigned size)
1da177e4 875{
1da177e4
LT
876 if (size)
877 size = roundup_pow_of_two(size);
162a7e75
MT
878 if (size > log_buf_len)
879 new_log_buf_len = size;
c0a318a3
LR
880}
881
882/* save requested log_buf_len since it's too early to process it */
883static int __init log_buf_len_setup(char *str)
884{
885 unsigned size = memparse(str, &str);
886
887 log_buf_len_update(size);
162a7e75
MT
888
889 return 0;
1da177e4 890}
162a7e75
MT
891early_param("log_buf_len", log_buf_len_setup);
892
2240a31d
GU
893#ifdef CONFIG_SMP
894#define __LOG_CPU_MAX_BUF_LEN (1 << CONFIG_LOG_CPU_MAX_BUF_SHIFT)
895
23b2899f
LR
896static void __init log_buf_add_cpu(void)
897{
898 unsigned int cpu_extra;
899
900 /*
901 * archs should set up cpu_possible_bits properly with
902 * set_cpu_possible() after setup_arch() but just in
903 * case lets ensure this is valid.
904 */
905 if (num_possible_cpus() == 1)
906 return;
907
908 cpu_extra = (num_possible_cpus() - 1) * __LOG_CPU_MAX_BUF_LEN;
909
910 /* by default this will only continue through for large > 64 CPUs */
911 if (cpu_extra <= __LOG_BUF_LEN / 2)
912 return;
913
914 pr_info("log_buf_len individual max cpu contribution: %d bytes\n",
915 __LOG_CPU_MAX_BUF_LEN);
916 pr_info("log_buf_len total cpu_extra contributions: %d bytes\n",
917 cpu_extra);
918 pr_info("log_buf_len min size: %d bytes\n", __LOG_BUF_LEN);
919
920 log_buf_len_update(cpu_extra + __LOG_BUF_LEN);
921}
2240a31d
GU
922#else /* !CONFIG_SMP */
923static inline void log_buf_add_cpu(void) {}
924#endif /* CONFIG_SMP */
23b2899f 925
162a7e75
MT
926void __init setup_log_buf(int early)
927{
928 unsigned long flags;
162a7e75
MT
929 char *new_log_buf;
930 int free;
931
23b2899f
LR
932 if (log_buf != __log_buf)
933 return;
934
935 if (!early && !new_log_buf_len)
936 log_buf_add_cpu();
937
162a7e75
MT
938 if (!new_log_buf_len)
939 return;
1da177e4 940
162a7e75 941 if (early) {
9da791df 942 new_log_buf =
70300177 943 memblock_virt_alloc(new_log_buf_len, LOG_ALIGN);
162a7e75 944 } else {
70300177
LR
945 new_log_buf = memblock_virt_alloc_nopanic(new_log_buf_len,
946 LOG_ALIGN);
162a7e75
MT
947 }
948
949 if (unlikely(!new_log_buf)) {
950 pr_err("log_buf_len: %ld bytes not available\n",
951 new_log_buf_len);
952 return;
953 }
954
07354eb1 955 raw_spin_lock_irqsave(&logbuf_lock, flags);
162a7e75
MT
956 log_buf_len = new_log_buf_len;
957 log_buf = new_log_buf;
958 new_log_buf_len = 0;
7ff9554b
KS
959 free = __LOG_BUF_LEN - log_next_idx;
960 memcpy(log_buf, __log_buf, __LOG_BUF_LEN);
07354eb1 961 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
162a7e75 962
f5405172 963 pr_info("log_buf_len: %d bytes\n", log_buf_len);
162a7e75
MT
964 pr_info("early log buf free: %d(%d%%)\n",
965 free, (free * 100) / __LOG_BUF_LEN);
966}
1da177e4 967
2fa72c8f
AC
968static bool __read_mostly ignore_loglevel;
969
970static int __init ignore_loglevel_setup(char *str)
971{
d25d9fec 972 ignore_loglevel = true;
27083bac 973 pr_info("debug: ignoring loglevel setting.\n");
2fa72c8f
AC
974
975 return 0;
976}
977
978early_param("ignore_loglevel", ignore_loglevel_setup);
979module_param(ignore_loglevel, bool, S_IRUGO | S_IWUSR);
205bd3d2
JP
980MODULE_PARM_DESC(ignore_loglevel,
981 "ignore loglevel setting (prints all kernel messages to the console)");
2fa72c8f 982
bfe8df3d
RD
983#ifdef CONFIG_BOOT_PRINTK_DELAY
984
674dff65 985static int boot_delay; /* msecs delay after each printk during bootup */
3a3b6ed2 986static unsigned long long loops_per_msec; /* based on boot_delay */
bfe8df3d
RD
987
988static int __init boot_delay_setup(char *str)
989{
990 unsigned long lpj;
bfe8df3d
RD
991
992 lpj = preset_lpj ? preset_lpj : 1000000; /* some guess */
993 loops_per_msec = (unsigned long long)lpj / 1000 * HZ;
994
995 get_option(&str, &boot_delay);
996 if (boot_delay > 10 * 1000)
997 boot_delay = 0;
998
3a3b6ed2
DY
999 pr_debug("boot_delay: %u, preset_lpj: %ld, lpj: %lu, "
1000 "HZ: %d, loops_per_msec: %llu\n",
1001 boot_delay, preset_lpj, lpj, HZ, loops_per_msec);
29e9d225 1002 return 0;
bfe8df3d 1003}
29e9d225 1004early_param("boot_delay", boot_delay_setup);
bfe8df3d 1005
2fa72c8f 1006static void boot_delay_msec(int level)
bfe8df3d
RD
1007{
1008 unsigned long long k;
1009 unsigned long timeout;
1010
2fa72c8f
AC
1011 if ((boot_delay == 0 || system_state != SYSTEM_BOOTING)
1012 || (level >= console_loglevel && !ignore_loglevel)) {
bfe8df3d 1013 return;
2fa72c8f 1014 }
bfe8df3d 1015
3a3b6ed2 1016 k = (unsigned long long)loops_per_msec * boot_delay;
bfe8df3d
RD
1017
1018 timeout = jiffies + msecs_to_jiffies(boot_delay);
1019 while (k) {
1020 k--;
1021 cpu_relax();
1022 /*
1023 * use (volatile) jiffies to prevent
1024 * compiler reduction; loop termination via jiffies
1025 * is secondary and may or may not happen.
1026 */
1027 if (time_after(jiffies, timeout))
1028 break;
1029 touch_nmi_watchdog();
1030 }
1031}
1032#else
2fa72c8f 1033static inline void boot_delay_msec(int level)
bfe8df3d
RD
1034{
1035}
1036#endif
1037
e99aa461 1038static bool printk_time = IS_ENABLED(CONFIG_PRINTK_TIME);
7ff9554b
KS
1039module_param_named(time, printk_time, bool, S_IRUGO | S_IWUSR);
1040
084681d1
KS
1041static size_t print_time(u64 ts, char *buf)
1042{
1043 unsigned long rem_nsec;
1044
1045 if (!printk_time)
1046 return 0;
1047
35dac27c
RD
1048 rem_nsec = do_div(ts, 1000000000);
1049
084681d1 1050 if (!buf)
35dac27c 1051 return snprintf(NULL, 0, "[%5lu.000000] ", (unsigned long)ts);
084681d1 1052
084681d1
KS
1053 return sprintf(buf, "[%5lu.%06lu] ",
1054 (unsigned long)ts, rem_nsec / 1000);
1055}
1056
62e32ac3 1057static size_t print_prefix(const struct printk_log *msg, bool syslog, char *buf)
649e6ee3 1058{
3ce9a7c0 1059 size_t len = 0;
43a73a50 1060 unsigned int prefix = (msg->facility << 3) | msg->level;
649e6ee3 1061
3ce9a7c0
KS
1062 if (syslog) {
1063 if (buf) {
43a73a50 1064 len += sprintf(buf, "<%u>", prefix);
3ce9a7c0
KS
1065 } else {
1066 len += 3;
43a73a50
KS
1067 if (prefix > 999)
1068 len += 3;
1069 else if (prefix > 99)
1070 len += 2;
1071 else if (prefix > 9)
3ce9a7c0
KS
1072 len++;
1073 }
1074 }
649e6ee3 1075
084681d1 1076 len += print_time(msg->ts_nsec, buf ? buf + len : NULL);
3ce9a7c0 1077 return len;
649e6ee3
KS
1078}
1079
62e32ac3 1080static size_t msg_print_text(const struct printk_log *msg, enum log_flags prev,
5becfb1d 1081 bool syslog, char *buf, size_t size)
7ff9554b 1082{
3ce9a7c0
KS
1083 const char *text = log_text(msg);
1084 size_t text_size = msg->text_len;
5becfb1d
KS
1085 bool prefix = true;
1086 bool newline = true;
3ce9a7c0
KS
1087 size_t len = 0;
1088
5becfb1d
KS
1089 if ((prev & LOG_CONT) && !(msg->flags & LOG_PREFIX))
1090 prefix = false;
1091
1092 if (msg->flags & LOG_CONT) {
1093 if ((prev & LOG_CONT) && !(prev & LOG_NEWLINE))
1094 prefix = false;
1095
1096 if (!(msg->flags & LOG_NEWLINE))
1097 newline = false;
1098 }
1099
3ce9a7c0
KS
1100 do {
1101 const char *next = memchr(text, '\n', text_size);
1102 size_t text_len;
1103
1104 if (next) {
1105 text_len = next - text;
1106 next++;
1107 text_size -= next - text;
1108 } else {
1109 text_len = text_size;
1110 }
7ff9554b 1111
3ce9a7c0
KS
1112 if (buf) {
1113 if (print_prefix(msg, syslog, NULL) +
70498253 1114 text_len + 1 >= size - len)
3ce9a7c0 1115 break;
7ff9554b 1116
5becfb1d
KS
1117 if (prefix)
1118 len += print_prefix(msg, syslog, buf + len);
3ce9a7c0
KS
1119 memcpy(buf + len, text, text_len);
1120 len += text_len;
5becfb1d
KS
1121 if (next || newline)
1122 buf[len++] = '\n';
3ce9a7c0
KS
1123 } else {
1124 /* SYSLOG_ACTION_* buffer size only calculation */
5becfb1d
KS
1125 if (prefix)
1126 len += print_prefix(msg, syslog, NULL);
1127 len += text_len;
1128 if (next || newline)
1129 len++;
3ce9a7c0 1130 }
7ff9554b 1131
5becfb1d 1132 prefix = true;
3ce9a7c0
KS
1133 text = next;
1134 } while (text);
7ff9554b 1135
7ff9554b
KS
1136 return len;
1137}
1138
1139static int syslog_print(char __user *buf, int size)
1140{
1141 char *text;
62e32ac3 1142 struct printk_log *msg;
116e90b2 1143 int len = 0;
7ff9554b 1144
70498253 1145 text = kmalloc(LOG_LINE_MAX + PREFIX_MAX, GFP_KERNEL);
7ff9554b
KS
1146 if (!text)
1147 return -ENOMEM;
1148
116e90b2
JB
1149 while (size > 0) {
1150 size_t n;
eb02dac9 1151 size_t skip;
116e90b2
JB
1152
1153 raw_spin_lock_irq(&logbuf_lock);
1154 if (syslog_seq < log_first_seq) {
1155 /* messages are gone, move to first one */
1156 syslog_seq = log_first_seq;
1157 syslog_idx = log_first_idx;
5becfb1d 1158 syslog_prev = 0;
eb02dac9 1159 syslog_partial = 0;
116e90b2
JB
1160 }
1161 if (syslog_seq == log_next_seq) {
1162 raw_spin_unlock_irq(&logbuf_lock);
1163 break;
1164 }
eb02dac9
KS
1165
1166 skip = syslog_partial;
116e90b2 1167 msg = log_from_idx(syslog_idx);
70498253
KS
1168 n = msg_print_text(msg, syslog_prev, true, text,
1169 LOG_LINE_MAX + PREFIX_MAX);
eb02dac9
KS
1170 if (n - syslog_partial <= size) {
1171 /* message fits into buffer, move forward */
116e90b2
JB
1172 syslog_idx = log_next(syslog_idx);
1173 syslog_seq++;
5becfb1d 1174 syslog_prev = msg->flags;
eb02dac9
KS
1175 n -= syslog_partial;
1176 syslog_partial = 0;
1177 } else if (!len){
1178 /* partial read(), remember position */
1179 n = size;
1180 syslog_partial += n;
116e90b2
JB
1181 } else
1182 n = 0;
1183 raw_spin_unlock_irq(&logbuf_lock);
1184
1185 if (!n)
1186 break;
1187
eb02dac9 1188 if (copy_to_user(buf, text + skip, n)) {
116e90b2
JB
1189 if (!len)
1190 len = -EFAULT;
1191 break;
1192 }
eb02dac9
KS
1193
1194 len += n;
1195 size -= n;
1196 buf += n;
7ff9554b 1197 }
7ff9554b
KS
1198
1199 kfree(text);
1200 return len;
1201}
1202
1203static int syslog_print_all(char __user *buf, int size, bool clear)
1204{
1205 char *text;
1206 int len = 0;
1207
70498253 1208 text = kmalloc(LOG_LINE_MAX + PREFIX_MAX, GFP_KERNEL);
7ff9554b
KS
1209 if (!text)
1210 return -ENOMEM;
1211
1212 raw_spin_lock_irq(&logbuf_lock);
1213 if (buf) {
1214 u64 next_seq;
1215 u64 seq;
1216 u32 idx;
5becfb1d 1217 enum log_flags prev;
7ff9554b
KS
1218
1219 if (clear_seq < log_first_seq) {
1220 /* messages are gone, move to first available one */
1221 clear_seq = log_first_seq;
1222 clear_idx = log_first_idx;
1223 }
1224
1225 /*
1226 * Find first record that fits, including all following records,
1227 * into the user-provided buffer for this dump.
e2ae715d 1228 */
7ff9554b
KS
1229 seq = clear_seq;
1230 idx = clear_idx;
5becfb1d 1231 prev = 0;
7ff9554b 1232 while (seq < log_next_seq) {
62e32ac3 1233 struct printk_log *msg = log_from_idx(idx);
3ce9a7c0 1234
5becfb1d 1235 len += msg_print_text(msg, prev, true, NULL, 0);
e3756477 1236 prev = msg->flags;
7ff9554b
KS
1237 idx = log_next(idx);
1238 seq++;
1239 }
e2ae715d
KS
1240
1241 /* move first record forward until length fits into the buffer */
7ff9554b
KS
1242 seq = clear_seq;
1243 idx = clear_idx;
5becfb1d 1244 prev = 0;
7ff9554b 1245 while (len > size && seq < log_next_seq) {
62e32ac3 1246 struct printk_log *msg = log_from_idx(idx);
3ce9a7c0 1247
5becfb1d 1248 len -= msg_print_text(msg, prev, true, NULL, 0);
e3756477 1249 prev = msg->flags;
7ff9554b
KS
1250 idx = log_next(idx);
1251 seq++;
1252 }
1253
e2ae715d 1254 /* last message fitting into this dump */
7ff9554b
KS
1255 next_seq = log_next_seq;
1256
1257 len = 0;
1258 while (len >= 0 && seq < next_seq) {
62e32ac3 1259 struct printk_log *msg = log_from_idx(idx);
7ff9554b
KS
1260 int textlen;
1261
70498253
KS
1262 textlen = msg_print_text(msg, prev, true, text,
1263 LOG_LINE_MAX + PREFIX_MAX);
7ff9554b
KS
1264 if (textlen < 0) {
1265 len = textlen;
1266 break;
1267 }
1268 idx = log_next(idx);
1269 seq++;
5becfb1d 1270 prev = msg->flags;
7ff9554b
KS
1271
1272 raw_spin_unlock_irq(&logbuf_lock);
1273 if (copy_to_user(buf + len, text, textlen))
1274 len = -EFAULT;
1275 else
1276 len += textlen;
1277 raw_spin_lock_irq(&logbuf_lock);
1278
1279 if (seq < log_first_seq) {
1280 /* messages are gone, move to next one */
1281 seq = log_first_seq;
1282 idx = log_first_idx;
5becfb1d 1283 prev = 0;
7ff9554b
KS
1284 }
1285 }
1286 }
1287
1288 if (clear) {
1289 clear_seq = log_next_seq;
1290 clear_idx = log_next_idx;
1291 }
1292 raw_spin_unlock_irq(&logbuf_lock);
1293
1294 kfree(text);
1295 return len;
1296}
1297
3ea4331c 1298int do_syslog(int type, char __user *buf, int len, int source)
1da177e4 1299{
7ff9554b 1300 bool clear = false;
a39d4a85 1301 static int saved_console_loglevel = LOGLEVEL_DEFAULT;
ee24aebf 1302 int error;
1da177e4 1303
3ea4331c 1304 error = check_syslog_permissions(type, source);
ee24aebf
LT
1305 if (error)
1306 goto out;
12b3052c 1307
1da177e4 1308 switch (type) {
d78ca3cd 1309 case SYSLOG_ACTION_CLOSE: /* Close log */
1da177e4 1310 break;
d78ca3cd 1311 case SYSLOG_ACTION_OPEN: /* Open log */
1da177e4 1312 break;
d78ca3cd 1313 case SYSLOG_ACTION_READ: /* Read from log */
1da177e4
LT
1314 error = -EINVAL;
1315 if (!buf || len < 0)
1316 goto out;
1317 error = 0;
1318 if (!len)
1319 goto out;
1320 if (!access_ok(VERIFY_WRITE, buf, len)) {
1321 error = -EFAULT;
1322 goto out;
1323 }
40dc5651 1324 error = wait_event_interruptible(log_wait,
7ff9554b 1325 syslog_seq != log_next_seq);
cb424ffe 1326 if (error)
1da177e4 1327 goto out;
7ff9554b 1328 error = syslog_print(buf, len);
1da177e4 1329 break;
d78ca3cd
KC
1330 /* Read/clear last kernel messages */
1331 case SYSLOG_ACTION_READ_CLEAR:
7ff9554b 1332 clear = true;
1da177e4 1333 /* FALL THRU */
d78ca3cd
KC
1334 /* Read last kernel messages */
1335 case SYSLOG_ACTION_READ_ALL:
1da177e4
LT
1336 error = -EINVAL;
1337 if (!buf || len < 0)
1338 goto out;
1339 error = 0;
1340 if (!len)
1341 goto out;
1342 if (!access_ok(VERIFY_WRITE, buf, len)) {
1343 error = -EFAULT;
1344 goto out;
1345 }
7ff9554b 1346 error = syslog_print_all(buf, len, clear);
1da177e4 1347 break;
d78ca3cd
KC
1348 /* Clear ring buffer */
1349 case SYSLOG_ACTION_CLEAR:
7ff9554b 1350 syslog_print_all(NULL, 0, true);
4661e356 1351 break;
d78ca3cd
KC
1352 /* Disable logging to console */
1353 case SYSLOG_ACTION_CONSOLE_OFF:
a39d4a85 1354 if (saved_console_loglevel == LOGLEVEL_DEFAULT)
1aaad49e 1355 saved_console_loglevel = console_loglevel;
1da177e4
LT
1356 console_loglevel = minimum_console_loglevel;
1357 break;
d78ca3cd
KC
1358 /* Enable logging to console */
1359 case SYSLOG_ACTION_CONSOLE_ON:
a39d4a85 1360 if (saved_console_loglevel != LOGLEVEL_DEFAULT) {
1aaad49e 1361 console_loglevel = saved_console_loglevel;
a39d4a85 1362 saved_console_loglevel = LOGLEVEL_DEFAULT;
1aaad49e 1363 }
1da177e4 1364 break;
d78ca3cd
KC
1365 /* Set level of messages printed to console */
1366 case SYSLOG_ACTION_CONSOLE_LEVEL:
1da177e4
LT
1367 error = -EINVAL;
1368 if (len < 1 || len > 8)
1369 goto out;
1370 if (len < minimum_console_loglevel)
1371 len = minimum_console_loglevel;
1372 console_loglevel = len;
1aaad49e 1373 /* Implicitly re-enable logging to console */
a39d4a85 1374 saved_console_loglevel = LOGLEVEL_DEFAULT;
1da177e4
LT
1375 error = 0;
1376 break;
d78ca3cd
KC
1377 /* Number of chars in the log buffer */
1378 case SYSLOG_ACTION_SIZE_UNREAD:
7ff9554b
KS
1379 raw_spin_lock_irq(&logbuf_lock);
1380 if (syslog_seq < log_first_seq) {
1381 /* messages are gone, move to first one */
1382 syslog_seq = log_first_seq;
1383 syslog_idx = log_first_idx;
5becfb1d 1384 syslog_prev = 0;
eb02dac9 1385 syslog_partial = 0;
7ff9554b 1386 }
3ea4331c 1387 if (source == SYSLOG_FROM_PROC) {
7ff9554b
KS
1388 /*
1389 * Short-cut for poll(/"proc/kmsg") which simply checks
1390 * for pending data, not the size; return the count of
1391 * records, not the length.
1392 */
e97e1267 1393 error = log_next_seq - syslog_seq;
7ff9554b 1394 } else {
5becfb1d
KS
1395 u64 seq = syslog_seq;
1396 u32 idx = syslog_idx;
1397 enum log_flags prev = syslog_prev;
7ff9554b
KS
1398
1399 error = 0;
7ff9554b 1400 while (seq < log_next_seq) {
62e32ac3 1401 struct printk_log *msg = log_from_idx(idx);
3ce9a7c0 1402
5becfb1d 1403 error += msg_print_text(msg, prev, true, NULL, 0);
7ff9554b
KS
1404 idx = log_next(idx);
1405 seq++;
5becfb1d 1406 prev = msg->flags;
7ff9554b 1407 }
eb02dac9 1408 error -= syslog_partial;
7ff9554b
KS
1409 }
1410 raw_spin_unlock_irq(&logbuf_lock);
1da177e4 1411 break;
d78ca3cd
KC
1412 /* Size of the log buffer */
1413 case SYSLOG_ACTION_SIZE_BUFFER:
1da177e4
LT
1414 error = log_buf_len;
1415 break;
1416 default:
1417 error = -EINVAL;
1418 break;
1419 }
1420out:
1421 return error;
1422}
1423
1e7bfb21 1424SYSCALL_DEFINE3(syslog, int, type, char __user *, buf, int, len)
1da177e4 1425{
637241a9 1426 return do_syslog(type, buf, len, SYSLOG_FROM_READER);
1da177e4
LT
1427}
1428
1da177e4
LT
1429/*
1430 * Call the console drivers, asking them to write out
1431 * log_buf[start] to log_buf[end - 1].
ac751efa 1432 * The console_lock must be held.
1da177e4 1433 */
6fe29354
TH
1434static void call_console_drivers(int level,
1435 const char *ext_text, size_t ext_len,
1436 const char *text, size_t len)
1da177e4 1437{
7ff9554b 1438 struct console *con;
1da177e4 1439
07c65f4d 1440 trace_console(text, len);
7ff9554b
KS
1441
1442 if (level >= console_loglevel && !ignore_loglevel)
1443 return;
1444 if (!console_drivers)
1445 return;
1446
1447 for_each_console(con) {
1448 if (exclusive_console && con != exclusive_console)
1449 continue;
1450 if (!(con->flags & CON_ENABLED))
1451 continue;
1452 if (!con->write)
1453 continue;
1454 if (!cpu_online(smp_processor_id()) &&
1455 !(con->flags & CON_ANYTIME))
1456 continue;
6fe29354
TH
1457 if (con->flags & CON_EXTENDED)
1458 con->write(con, ext_text, ext_len);
1459 else
1460 con->write(con, text, len);
7ff9554b 1461 }
1da177e4
LT
1462}
1463
1464/*
205bd3d2
JP
1465 * Zap console related locks when oopsing.
1466 * To leave time for slow consoles to print a full oops,
1467 * only zap at most once every 30 seconds.
1da177e4
LT
1468 */
1469static void zap_locks(void)
1470{
1471 static unsigned long oops_timestamp;
1472
1473 if (time_after_eq(jiffies, oops_timestamp) &&
205bd3d2 1474 !time_after(jiffies, oops_timestamp + 30 * HZ))
1da177e4
LT
1475 return;
1476
1477 oops_timestamp = jiffies;
1478
94d24fc4 1479 debug_locks_off();
1da177e4 1480 /* If a crash is occurring, make sure we can't deadlock */
07354eb1 1481 raw_spin_lock_init(&logbuf_lock);
1da177e4 1482 /* And make sure that we print immediately */
5b8c4f23 1483 sema_init(&console_sem, 1);
1da177e4
LT
1484}
1485
608873ca
JK
1486/*
1487 * Check if we have any console that is capable of printing while cpu is
1488 * booting or shutting down. Requires console_sem.
1489 */
76a8ad29
ME
1490static int have_callable_console(void)
1491{
1492 struct console *con;
1493
4d091611 1494 for_each_console(con)
76a8ad29
ME
1495 if (con->flags & CON_ANYTIME)
1496 return 1;
1497
1498 return 0;
1499}
1500
266c2e0a
LT
1501/*
1502 * Can we actually use the console at this time on this cpu?
1503 *
5874af20
JK
1504 * Console drivers may assume that per-cpu resources have been allocated. So
1505 * unless they're explicitly marked as being able to cope (CON_ANYTIME) don't
1506 * call them until this CPU is officially up.
266c2e0a
LT
1507 */
1508static inline int can_use_console(unsigned int cpu)
1509{
1510 return cpu_online(cpu) || have_callable_console();
1511}
1512
1513/*
1514 * Try to get console ownership to actually show the kernel
1515 * messages from a 'printk'. Return true (and with the
ac751efa 1516 * console_lock held, and 'console_locked' set) if it
266c2e0a 1517 * is successful, false otherwise.
266c2e0a 1518 */
5874af20 1519static int console_trylock_for_printk(void)
266c2e0a 1520{
5874af20
JK
1521 unsigned int cpu = smp_processor_id();
1522
608873ca
JK
1523 if (!console_trylock())
1524 return 0;
1525 /*
1526 * If we can't use the console, we need to release the console
1527 * semaphore by hand to avoid flushing the buffer. We need to hold the
1528 * console semaphore in order to do this test safely.
1529 */
1530 if (!can_use_console(cpu)) {
1531 console_locked = 0;
bd8d7cf5 1532 up_console_sem();
608873ca
JK
1533 return 0;
1534 }
1535 return 1;
266c2e0a 1536}
32a76006 1537
af91322e
DY
1538int printk_delay_msec __read_mostly;
1539
1540static inline void printk_delay(void)
1541{
1542 if (unlikely(printk_delay_msec)) {
1543 int m = printk_delay_msec;
1544
1545 while (m--) {
1546 mdelay(1);
1547 touch_nmi_watchdog();
1548 }
1549 }
1550}
1551
084681d1
KS
1552/*
1553 * Continuation lines are buffered, and not committed to the record buffer
1554 * until the line is complete, or a race forces it. The line fragments
1555 * though, are printed immediately to the consoles to ensure everything has
1556 * reached the console in case of a kernel crash.
1557 */
1558static struct cont {
1559 char buf[LOG_LINE_MAX];
1560 size_t len; /* length == 0 means unused buffer */
1561 size_t cons; /* bytes written to console */
1562 struct task_struct *owner; /* task of first print*/
1563 u64 ts_nsec; /* time of first print */
1564 u8 level; /* log level of first message */
0b90fec3 1565 u8 facility; /* log facility of first message */
eab07260 1566 enum log_flags flags; /* prefix, newline flags */
084681d1
KS
1567 bool flushed:1; /* buffer sealed and committed */
1568} cont;
1569
70498253 1570static void cont_flush(enum log_flags flags)
084681d1
KS
1571{
1572 if (cont.flushed)
1573 return;
1574 if (cont.len == 0)
1575 return;
1576
eab07260
KS
1577 if (cont.cons) {
1578 /*
1579 * If a fragment of this line was directly flushed to the
1580 * console; wait for the console to pick up the rest of the
1581 * line. LOG_NOCONS suppresses a duplicated output.
1582 */
1583 log_store(cont.facility, cont.level, flags | LOG_NOCONS,
1584 cont.ts_nsec, NULL, 0, cont.buf, cont.len);
1585 cont.flags = flags;
1586 cont.flushed = true;
1587 } else {
1588 /*
1589 * If no fragment of this line ever reached the console,
1590 * just submit it to the store and free the buffer.
1591 */
1592 log_store(cont.facility, cont.level, flags, 0,
1593 NULL, 0, cont.buf, cont.len);
1594 cont.len = 0;
1595 }
084681d1
KS
1596}
1597
1598static bool cont_add(int facility, int level, const char *text, size_t len)
1599{
1600 if (cont.len && cont.flushed)
1601 return false;
1602
6fe29354
TH
1603 /*
1604 * If ext consoles are present, flush and skip in-kernel
1605 * continuation. See nr_ext_console_drivers definition. Also, if
1606 * the line gets too long, split it up in separate records.
1607 */
1608 if (nr_ext_console_drivers || cont.len + len > sizeof(cont.buf)) {
70498253 1609 cont_flush(LOG_CONT);
084681d1
KS
1610 return false;
1611 }
1612
1613 if (!cont.len) {
1614 cont.facility = facility;
1615 cont.level = level;
1616 cont.owner = current;
1617 cont.ts_nsec = local_clock();
eab07260 1618 cont.flags = 0;
084681d1
KS
1619 cont.cons = 0;
1620 cont.flushed = false;
1621 }
1622
1623 memcpy(cont.buf + cont.len, text, len);
1624 cont.len += len;
eab07260
KS
1625
1626 if (cont.len > (sizeof(cont.buf) * 80) / 100)
1627 cont_flush(LOG_CONT);
1628
084681d1
KS
1629 return true;
1630}
1631
1632static size_t cont_print_text(char *text, size_t size)
1633{
1634 size_t textlen = 0;
1635 size_t len;
1636
eab07260 1637 if (cont.cons == 0 && (console_prev & LOG_NEWLINE)) {
084681d1
KS
1638 textlen += print_time(cont.ts_nsec, text);
1639 size -= textlen;
1640 }
1641
1642 len = cont.len - cont.cons;
1643 if (len > 0) {
1644 if (len+1 > size)
1645 len = size-1;
1646 memcpy(text + textlen, cont.buf + cont.cons, len);
1647 textlen += len;
1648 cont.cons = cont.len;
1649 }
1650
1651 if (cont.flushed) {
eab07260
KS
1652 if (cont.flags & LOG_NEWLINE)
1653 text[textlen++] = '\n';
084681d1
KS
1654 /* got everything, release buffer */
1655 cont.len = 0;
1656 }
1657 return textlen;
1658}
1659
7ff9554b
KS
1660asmlinkage int vprintk_emit(int facility, int level,
1661 const char *dict, size_t dictlen,
1662 const char *fmt, va_list args)
1da177e4 1663{
7ff9554b 1664 static int recursion_bug;
7ff9554b
KS
1665 static char textbuf[LOG_LINE_MAX];
1666 char *text = textbuf;
458df9fd 1667 size_t text_len = 0;
5becfb1d 1668 enum log_flags lflags = 0;
ac60ad74 1669 unsigned long flags;
32a76006 1670 int this_cpu;
7ff9554b 1671 int printed_len = 0;
458df9fd 1672 bool in_sched = false;
608873ca 1673 /* cpu currently holding logbuf_lock in this function */
f099755d 1674 static unsigned int logbuf_cpu = UINT_MAX;
608873ca 1675
a39d4a85
JP
1676 if (level == LOGLEVEL_SCHED) {
1677 level = LOGLEVEL_DEFAULT;
458df9fd
SR
1678 in_sched = true;
1679 }
1da177e4 1680
2fa72c8f 1681 boot_delay_msec(level);
af91322e 1682 printk_delay();
bfe8df3d 1683
1da177e4 1684 /* This stops the holder of console_sem just where we want him */
1a9a8aef 1685 local_irq_save(flags);
32a76006
IM
1686 this_cpu = smp_processor_id();
1687
1688 /*
1689 * Ouch, printk recursed into itself!
1690 */
7ff9554b 1691 if (unlikely(logbuf_cpu == this_cpu)) {
32a76006
IM
1692 /*
1693 * If a crash is occurring during printk() on this CPU,
1694 * then try to get the crash message out but make sure
1695 * we can't deadlock. Otherwise just return to avoid the
1696 * recursion and return - but flag the recursion so that
1697 * it can be printed at the next appropriate moment:
1698 */
94d24fc4 1699 if (!oops_in_progress && !lockdep_recursing(current)) {
3b8945e8 1700 recursion_bug = 1;
5874af20
JK
1701 local_irq_restore(flags);
1702 return 0;
32a76006
IM
1703 }
1704 zap_locks();
1705 }
1706
a0f1ccfd 1707 lockdep_off();
07354eb1 1708 raw_spin_lock(&logbuf_lock);
7ff9554b 1709 logbuf_cpu = this_cpu;
1da177e4 1710
000a7d66 1711 if (unlikely(recursion_bug)) {
7ff9554b
KS
1712 static const char recursion_msg[] =
1713 "BUG: recent printk recursion!";
1714
3b8945e8 1715 recursion_bug = 0;
7ff9554b 1716 /* emit KERN_CRIT message */
034633cc 1717 printed_len += log_store(0, 2, LOG_PREFIX|LOG_NEWLINE, 0,
000a7d66
PP
1718 NULL, 0, recursion_msg,
1719 strlen(recursion_msg));
32a76006 1720 }
1da177e4 1721
7ff9554b
KS
1722 /*
1723 * The printf needs to come first; we need the syslog
1724 * prefix which might be passed-in as a parameter.
1725 */
98e35f58 1726 text_len = vscnprintf(text, sizeof(textbuf), fmt, args);
5fd29d6c 1727
7ff9554b 1728 /* mark and strip a trailing newline */
c313af14
KS
1729 if (text_len && text[text_len-1] == '\n') {
1730 text_len--;
5becfb1d 1731 lflags |= LOG_NEWLINE;
7ff9554b 1732 }
9d90c8d9 1733
088a52aa
JP
1734 /* strip kernel syslog prefix and extract log level or control flags */
1735 if (facility == 0) {
1736 int kern_level = printk_get_level(text);
1737
1738 if (kern_level) {
1739 const char *end_of_header = printk_skip_level(text);
1740 switch (kern_level) {
1741 case '0' ... '7':
a39d4a85 1742 if (level == LOGLEVEL_DEFAULT)
088a52aa 1743 level = kern_level - '0';
a39d4a85 1744 /* fallthrough */
088a52aa
JP
1745 case 'd': /* KERN_DEFAULT */
1746 lflags |= LOG_PREFIX;
088a52aa 1747 }
e8c42d36
PM
1748 /*
1749 * No need to check length here because vscnprintf
1750 * put '\0' at the end of the string. Only valid and
1751 * newly printed level is detected.
1752 */
088a52aa
JP
1753 text_len -= end_of_header - text;
1754 text = (char *)end_of_header;
5fd29d6c
LT
1755 }
1756 }
1757
a39d4a85 1758 if (level == LOGLEVEL_DEFAULT)
c313af14 1759 level = default_message_loglevel;
9d90c8d9 1760
5becfb1d
KS
1761 if (dict)
1762 lflags |= LOG_PREFIX|LOG_NEWLINE;
ac60ad74 1763
5becfb1d 1764 if (!(lflags & LOG_NEWLINE)) {
084681d1
KS
1765 /*
1766 * Flush the conflicting buffer. An earlier newline was missing,
1767 * or another task also prints continuation lines.
1768 */
5becfb1d 1769 if (cont.len && (lflags & LOG_PREFIX || cont.owner != current))
eab07260 1770 cont_flush(LOG_NEWLINE);
c313af14 1771
084681d1 1772 /* buffer line if possible, otherwise store it right away */
034633cc
PM
1773 if (cont_add(facility, level, text, text_len))
1774 printed_len += text_len;
1775 else
1776 printed_len += log_store(facility, level,
1777 lflags | LOG_CONT, 0,
1778 dict, dictlen, text, text_len);
5c5d5ca5 1779 } else {
084681d1 1780 bool stored = false;
c313af14 1781
084681d1 1782 /*
d3620822
SR
1783 * If an earlier newline was missing and it was the same task,
1784 * either merge it with the current buffer and flush, or if
1785 * there was a race with interrupts (prefix == true) then just
1786 * flush it out and store this line separately.
1d3fa370
AK
1787 * If the preceding printk was from a different task and missed
1788 * a newline, flush and append the newline.
084681d1 1789 */
1d3fa370
AK
1790 if (cont.len) {
1791 if (cont.owner == current && !(lflags & LOG_PREFIX))
1792 stored = cont_add(facility, level, text,
1793 text_len);
eab07260 1794 cont_flush(LOG_NEWLINE);
c313af14 1795 }
084681d1 1796
034633cc
PM
1797 if (stored)
1798 printed_len += text_len;
1799 else
1800 printed_len += log_store(facility, level, lflags, 0,
1801 dict, dictlen, text, text_len);
1da177e4
LT
1802 }
1803
608873ca
JK
1804 logbuf_cpu = UINT_MAX;
1805 raw_spin_unlock(&logbuf_lock);
5874af20
JK
1806 lockdep_on();
1807 local_irq_restore(flags);
939f04be 1808
458df9fd 1809 /* If called from the scheduler, we can not call up(). */
d18bbc21 1810 if (!in_sched) {
5874af20
JK
1811 lockdep_off();
1812 /*
1813 * Disable preemption to avoid being preempted while holding
1814 * console_sem which would prevent anyone from printing to
1815 * console
1816 */
1817 preempt_disable();
1818
d18bbc21
AM
1819 /*
1820 * Try to acquire and then immediately release the console
1821 * semaphore. The release will print out buffers and wake up
1822 * /dev/kmsg and syslog() users.
1823 */
5874af20 1824 if (console_trylock_for_printk())
d18bbc21 1825 console_unlock();
5874af20
JK
1826 preempt_enable();
1827 lockdep_on();
d18bbc21 1828 }
76a8ad29 1829
1da177e4
LT
1830 return printed_len;
1831}
7ff9554b
KS
1832EXPORT_SYMBOL(vprintk_emit);
1833
1834asmlinkage int vprintk(const char *fmt, va_list args)
1835{
a39d4a85 1836 return vprintk_emit(0, LOGLEVEL_DEFAULT, NULL, 0, fmt, args);
7ff9554b 1837}
1da177e4
LT
1838EXPORT_SYMBOL(vprintk);
1839
7ff9554b
KS
1840asmlinkage int printk_emit(int facility, int level,
1841 const char *dict, size_t dictlen,
1842 const char *fmt, ...)
1843{
1844 va_list args;
1845 int r;
1846
1847 va_start(args, fmt);
1848 r = vprintk_emit(facility, level, dict, dictlen, fmt, args);
1849 va_end(args);
1850
1851 return r;
1852}
1853EXPORT_SYMBOL(printk_emit);
1854
afdc34a3
SRRH
1855int vprintk_default(const char *fmt, va_list args)
1856{
1857 int r;
1858
1859#ifdef CONFIG_KGDB_KDB
1860 if (unlikely(kdb_trap_printk)) {
f7d4ca8b 1861 r = vkdb_printf(KDB_MSGSRC_PRINTK, fmt, args);
afdc34a3
SRRH
1862 return r;
1863 }
1864#endif
350e4f49 1865 r = vprintk_emit(0, LOGLEVEL_DEFAULT, NULL, 0, fmt, args);
afdc34a3
SRRH
1866
1867 return r;
1868}
1869EXPORT_SYMBOL_GPL(vprintk_default);
1870
1871/*
1872 * This allows printk to be diverted to another function per cpu.
1873 * This is useful for calling printk functions from within NMI
1874 * without worrying about race conditions that can lock up the
1875 * box.
1876 */
1877DEFINE_PER_CPU(printk_func_t, printk_func) = vprintk_default;
1878
7ff9554b
KS
1879/**
1880 * printk - print a kernel message
1881 * @fmt: format string
1882 *
1883 * This is printk(). It can be called from any context. We want it to work.
1884 *
1885 * We try to grab the console_lock. If we succeed, it's easy - we log the
1886 * output and call the console drivers. If we fail to get the semaphore, we
1887 * place the output into the log buffer and return. The current holder of
1888 * the console_sem will notice the new output in console_unlock(); and will
1889 * send it to the consoles before releasing the lock.
1890 *
1891 * One effect of this deferred printing is that code which calls printk() and
1892 * then changes console_loglevel may break. This is because console_loglevel
1893 * is inspected when the actual printing occurs.
1894 *
1895 * See also:
1896 * printf(3)
1897 *
1898 * See the vsnprintf() documentation for format string extensions over C99.
1899 */
722a9f92 1900asmlinkage __visible int printk(const char *fmt, ...)
7ff9554b 1901{
afdc34a3 1902 printk_func_t vprintk_func;
7ff9554b
KS
1903 va_list args;
1904 int r;
1905
7ff9554b 1906 va_start(args, fmt);
1fb8915b
SRRH
1907
1908 /*
1909 * If a caller overrides the per_cpu printk_func, then it needs
1910 * to disable preemption when calling printk(). Otherwise
1911 * the printk_func should be set to the default. No need to
1912 * disable preemption here.
1913 */
afdc34a3
SRRH
1914 vprintk_func = this_cpu_read(printk_func);
1915 r = vprintk_func(fmt, args);
1fb8915b 1916
7ff9554b
KS
1917 va_end(args);
1918
1919 return r;
1920}
1921EXPORT_SYMBOL(printk);
7f3a781d 1922
96efedf1 1923#else /* CONFIG_PRINTK */
d59745ce 1924
70498253
KS
1925#define LOG_LINE_MAX 0
1926#define PREFIX_MAX 0
249771b8 1927
96efedf1
KS
1928static u64 syslog_seq;
1929static u32 syslog_idx;
eab07260
KS
1930static u64 console_seq;
1931static u32 console_idx;
96efedf1
KS
1932static enum log_flags syslog_prev;
1933static u64 log_first_seq;
1934static u32 log_first_idx;
1935static u64 log_next_seq;
eab07260 1936static enum log_flags console_prev;
084681d1
KS
1937static struct cont {
1938 size_t len;
1939 size_t cons;
1940 u8 level;
1941 bool flushed:1;
1942} cont;
6fe29354
TH
1943static char *log_text(const struct printk_log *msg) { return NULL; }
1944static char *log_dict(const struct printk_log *msg) { return NULL; }
62e32ac3 1945static struct printk_log *log_from_idx(u32 idx) { return NULL; }
7f3a781d 1946static u32 log_next(u32 idx) { return 0; }
6fe29354
TH
1947static ssize_t msg_print_ext_header(char *buf, size_t size,
1948 struct printk_log *msg, u64 seq,
1949 enum log_flags prev_flags) { return 0; }
1950static ssize_t msg_print_ext_body(char *buf, size_t size,
1951 char *dict, size_t dict_len,
1952 char *text, size_t text_len) { return 0; }
1953static void call_console_drivers(int level,
1954 const char *ext_text, size_t ext_len,
1955 const char *text, size_t len) {}
62e32ac3 1956static size_t msg_print_text(const struct printk_log *msg, enum log_flags prev,
5becfb1d 1957 bool syslog, char *buf, size_t size) { return 0; }
084681d1 1958static size_t cont_print_text(char *text, size_t size) { return 0; }
d59745ce 1959
04b74b27
SRRH
1960/* Still needs to be defined for users */
1961DEFINE_PER_CPU(printk_func_t, printk_func);
1962
7f3a781d 1963#endif /* CONFIG_PRINTK */
d59745ce 1964
d0380e6c
TG
1965#ifdef CONFIG_EARLY_PRINTK
1966struct console *early_console;
1967
722a9f92 1968asmlinkage __visible void early_printk(const char *fmt, ...)
d0380e6c
TG
1969{
1970 va_list ap;
1dc6244b
JP
1971 char buf[512];
1972 int n;
1973
1974 if (!early_console)
1975 return;
d0380e6c
TG
1976
1977 va_start(ap, fmt);
1dc6244b 1978 n = vscnprintf(buf, sizeof(buf), fmt, ap);
d0380e6c 1979 va_end(ap);
1dc6244b
JP
1980
1981 early_console->write(early_console, buf, n);
d0380e6c
TG
1982}
1983#endif
1984
f7511d5f
ST
1985static int __add_preferred_console(char *name, int idx, char *options,
1986 char *brl_options)
1987{
1988 struct console_cmdline *c;
1989 int i;
1990
1991 /*
1992 * See if this tty is not yet registered, and
1993 * if we have a slot free.
1994 */
23475408
JP
1995 for (i = 0, c = console_cmdline;
1996 i < MAX_CMDLINECONSOLES && c->name[0];
1997 i++, c++) {
1998 if (strcmp(c->name, name) == 0 && c->index == idx) {
1999 if (!brl_options)
2000 selected_console = i;
2001 return 0;
f7511d5f 2002 }
23475408 2003 }
f7511d5f
ST
2004 if (i == MAX_CMDLINECONSOLES)
2005 return -E2BIG;
2006 if (!brl_options)
2007 selected_console = i;
f7511d5f
ST
2008 strlcpy(c->name, name, sizeof(c->name));
2009 c->options = options;
bbeddf52
JP
2010 braille_set_options(c, brl_options);
2011
f7511d5f
ST
2012 c->index = idx;
2013 return 0;
2014}
2ea1c539 2015/*
0b90fec3
AE
2016 * Set up a console. Called via do_early_param() in init/main.c
2017 * for each "console=" parameter in the boot command line.
2ea1c539
JB
2018 */
2019static int __init console_setup(char *str)
2020{
0b90fec3 2021 char buf[sizeof(console_cmdline[0].name) + 4]; /* 4 for "ttyS" */
f7511d5f 2022 char *s, *options, *brl_options = NULL;
2ea1c539
JB
2023 int idx;
2024
bbeddf52
JP
2025 if (_braille_console_setup(&str, &brl_options))
2026 return 1;
f7511d5f 2027
2ea1c539
JB
2028 /*
2029 * Decode str into name, index, options.
2030 */
2031 if (str[0] >= '0' && str[0] <= '9') {
eaa944af
YL
2032 strcpy(buf, "ttyS");
2033 strncpy(buf + 4, str, sizeof(buf) - 5);
2ea1c539 2034 } else {
eaa944af 2035 strncpy(buf, str, sizeof(buf) - 1);
2ea1c539 2036 }
eaa944af 2037 buf[sizeof(buf) - 1] = 0;
249771b8
AE
2038 options = strchr(str, ',');
2039 if (options)
2ea1c539
JB
2040 *(options++) = 0;
2041#ifdef __sparc__
2042 if (!strcmp(str, "ttya"))
eaa944af 2043 strcpy(buf, "ttyS0");
2ea1c539 2044 if (!strcmp(str, "ttyb"))
eaa944af 2045 strcpy(buf, "ttyS1");
2ea1c539 2046#endif
eaa944af 2047 for (s = buf; *s; s++)
249771b8 2048 if (isdigit(*s) || *s == ',')
2ea1c539
JB
2049 break;
2050 idx = simple_strtoul(s, NULL, 10);
2051 *s = 0;
2052
f7511d5f 2053 __add_preferred_console(buf, idx, options, brl_options);
9e124fe1 2054 console_set_on_cmdline = 1;
2ea1c539
JB
2055 return 1;
2056}
2057__setup("console=", console_setup);
2058
3c0547ba
MM
2059/**
2060 * add_preferred_console - add a device to the list of preferred consoles.
ddad86c2
MW
2061 * @name: device name
2062 * @idx: device index
2063 * @options: options for this console
3c0547ba
MM
2064 *
2065 * The last preferred console added will be used for kernel messages
2066 * and stdin/out/err for init. Normally this is used by console_setup
2067 * above to handle user-supplied console arguments; however it can also
2068 * be used by arch-specific code either to override the user or more
2069 * commonly to provide a default console (ie from PROM variables) when
2070 * the user has not supplied one.
2071 */
fb445ee5 2072int add_preferred_console(char *name, int idx, char *options)
3c0547ba 2073{
f7511d5f 2074 return __add_preferred_console(name, idx, options, NULL);
3c0547ba
MM
2075}
2076
d25d9fec 2077bool console_suspend_enabled = true;
8f4ce8c3
AS
2078EXPORT_SYMBOL(console_suspend_enabled);
2079
2080static int __init console_suspend_disable(char *str)
2081{
d25d9fec 2082 console_suspend_enabled = false;
8f4ce8c3
AS
2083 return 1;
2084}
2085__setup("no_console_suspend", console_suspend_disable);
134620f7
YZ
2086module_param_named(console_suspend, console_suspend_enabled,
2087 bool, S_IRUGO | S_IWUSR);
2088MODULE_PARM_DESC(console_suspend, "suspend console during suspend"
2089 " and hibernate operations");
8f4ce8c3 2090
557240b4
LT
2091/**
2092 * suspend_console - suspend the console subsystem
2093 *
2094 * This disables printk() while we go into suspend states
2095 */
2096void suspend_console(void)
2097{
8f4ce8c3
AS
2098 if (!console_suspend_enabled)
2099 return;
0d63081d 2100 printk("Suspending console(s) (use no_console_suspend to debug)\n");
ac751efa 2101 console_lock();
557240b4 2102 console_suspended = 1;
bd8d7cf5 2103 up_console_sem();
557240b4
LT
2104}
2105
2106void resume_console(void)
2107{
8f4ce8c3
AS
2108 if (!console_suspend_enabled)
2109 return;
bd8d7cf5 2110 down_console_sem();
557240b4 2111 console_suspended = 0;
ac751efa 2112 console_unlock();
557240b4
LT
2113}
2114
034260d6
KC
2115/**
2116 * console_cpu_notify - print deferred console messages after CPU hotplug
2117 * @self: notifier struct
2118 * @action: CPU hotplug event
2119 * @hcpu: unused
2120 *
2121 * If printk() is called from a CPU that is not online yet, the messages
2122 * will be spooled but will not show up on the console. This function is
2123 * called when a new CPU comes online (or fails to come up), and ensures
2124 * that any such output gets printed.
2125 */
0db0628d 2126static int console_cpu_notify(struct notifier_block *self,
034260d6
KC
2127 unsigned long action, void *hcpu)
2128{
2129 switch (action) {
2130 case CPU_ONLINE:
2131 case CPU_DEAD:
034260d6
KC
2132 case CPU_DOWN_FAILED:
2133 case CPU_UP_CANCELED:
ac751efa
TH
2134 console_lock();
2135 console_unlock();
034260d6
KC
2136 }
2137 return NOTIFY_OK;
2138}
2139
1da177e4 2140/**
ac751efa 2141 * console_lock - lock the console system for exclusive use.
1da177e4 2142 *
ac751efa 2143 * Acquires a lock which guarantees that the caller has
1da177e4
LT
2144 * exclusive access to the console system and the console_drivers list.
2145 *
2146 * Can sleep, returns nothing.
2147 */
ac751efa 2148void console_lock(void)
1da177e4 2149{
6b898c07
DV
2150 might_sleep();
2151
bd8d7cf5 2152 down_console_sem();
403f3075
AH
2153 if (console_suspended)
2154 return;
1da177e4
LT
2155 console_locked = 1;
2156 console_may_schedule = 1;
2157}
ac751efa 2158EXPORT_SYMBOL(console_lock);
1da177e4 2159
ac751efa
TH
2160/**
2161 * console_trylock - try to lock the console system for exclusive use.
2162 *
0b90fec3
AE
2163 * Try to acquire a lock which guarantees that the caller has exclusive
2164 * access to the console system and the console_drivers list.
ac751efa
TH
2165 *
2166 * returns 1 on success, and 0 on failure to acquire the lock.
2167 */
2168int console_trylock(void)
1da177e4 2169{
bd8d7cf5 2170 if (down_trylock_console_sem())
ac751efa 2171 return 0;
403f3075 2172 if (console_suspended) {
bd8d7cf5 2173 up_console_sem();
ac751efa 2174 return 0;
403f3075 2175 }
1da177e4
LT
2176 console_locked = 1;
2177 console_may_schedule = 0;
ac751efa 2178 return 1;
1da177e4 2179}
ac751efa 2180EXPORT_SYMBOL(console_trylock);
1da177e4
LT
2181
2182int is_console_locked(void)
2183{
2184 return console_locked;
2185}
1da177e4 2186
eab07260
KS
2187static void console_cont_flush(char *text, size_t size)
2188{
2189 unsigned long flags;
2190 size_t len;
2191
2192 raw_spin_lock_irqsave(&logbuf_lock, flags);
2193
2194 if (!cont.len)
2195 goto out;
2196
2197 /*
2198 * We still queue earlier records, likely because the console was
2199 * busy. The earlier ones need to be printed before this one, we
2200 * did not flush any fragment so far, so just let it queue up.
2201 */
2202 if (console_seq < log_next_seq && !cont.cons)
2203 goto out;
2204
2205 len = cont_print_text(text, size);
2206 raw_spin_unlock(&logbuf_lock);
2207 stop_critical_timings();
6fe29354 2208 call_console_drivers(cont.level, NULL, 0, text, len);
eab07260
KS
2209 start_critical_timings();
2210 local_irq_restore(flags);
2211 return;
2212out:
2213 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
2214}
7ff9554b 2215
1da177e4 2216/**
ac751efa 2217 * console_unlock - unlock the console system
1da177e4 2218 *
ac751efa 2219 * Releases the console_lock which the caller holds on the console system
1da177e4
LT
2220 * and the console driver list.
2221 *
ac751efa
TH
2222 * While the console_lock was held, console output may have been buffered
2223 * by printk(). If this is the case, console_unlock(); emits
2224 * the output prior to releasing the lock.
1da177e4 2225 *
7f3a781d 2226 * If there is output waiting, we wake /dev/kmsg and syslog() users.
1da177e4 2227 *
ac751efa 2228 * console_unlock(); may be called from any context.
1da177e4 2229 */
ac751efa 2230void console_unlock(void)
1da177e4 2231{
6fe29354 2232 static char ext_text[CONSOLE_EXT_LOG_MAX];
70498253 2233 static char text[LOG_LINE_MAX + PREFIX_MAX];
7ff9554b 2234 static u64 seen_seq;
1da177e4 2235 unsigned long flags;
7ff9554b
KS
2236 bool wake_klogd = false;
2237 bool retry;
1da177e4 2238
557240b4 2239 if (console_suspended) {
bd8d7cf5 2240 up_console_sem();
557240b4
LT
2241 return;
2242 }
78944e54
AD
2243
2244 console_may_schedule = 0;
2245
084681d1 2246 /* flush buffered message fragment immediately to console */
eab07260 2247 console_cont_flush(text, sizeof(text));
4f2a8d3c 2248again:
7ff9554b 2249 for (;;) {
62e32ac3 2250 struct printk_log *msg;
6fe29354 2251 size_t ext_len = 0;
3ce9a7c0 2252 size_t len;
7ff9554b
KS
2253 int level;
2254
07354eb1 2255 raw_spin_lock_irqsave(&logbuf_lock, flags);
7ff9554b
KS
2256 if (seen_seq != log_next_seq) {
2257 wake_klogd = true;
2258 seen_seq = log_next_seq;
2259 }
2260
2261 if (console_seq < log_first_seq) {
84b5ec8a
WD
2262 len = sprintf(text, "** %u printk messages dropped ** ",
2263 (unsigned)(log_first_seq - console_seq));
2264
7ff9554b
KS
2265 /* messages are gone, move to first one */
2266 console_seq = log_first_seq;
2267 console_idx = log_first_idx;
5becfb1d 2268 console_prev = 0;
84b5ec8a
WD
2269 } else {
2270 len = 0;
7ff9554b 2271 }
084681d1 2272skip:
7ff9554b
KS
2273 if (console_seq == log_next_seq)
2274 break;
2275
2276 msg = log_from_idx(console_idx);
084681d1
KS
2277 if (msg->flags & LOG_NOCONS) {
2278 /*
2279 * Skip record we have buffered and already printed
2280 * directly to the console when we received it.
2281 */
2282 console_idx = log_next(console_idx);
2283 console_seq++;
68b6507d
KS
2284 /*
2285 * We will get here again when we register a new
2286 * CON_PRINTBUFFER console. Clear the flag so we
2287 * will properly dump everything later.
2288 */
2289 msg->flags &= ~LOG_NOCONS;
eab07260 2290 console_prev = msg->flags;
084681d1
KS
2291 goto skip;
2292 }
649e6ee3 2293
084681d1 2294 level = msg->level;
84b5ec8a
WD
2295 len += msg_print_text(msg, console_prev, false,
2296 text + len, sizeof(text) - len);
6fe29354
TH
2297 if (nr_ext_console_drivers) {
2298 ext_len = msg_print_ext_header(ext_text,
2299 sizeof(ext_text),
2300 msg, console_seq, console_prev);
2301 ext_len += msg_print_ext_body(ext_text + ext_len,
2302 sizeof(ext_text) - ext_len,
2303 log_dict(msg), msg->dict_len,
2304 log_text(msg), msg->text_len);
2305 }
7ff9554b
KS
2306 console_idx = log_next(console_idx);
2307 console_seq++;
5becfb1d 2308 console_prev = msg->flags;
07354eb1 2309 raw_spin_unlock(&logbuf_lock);
7ff9554b 2310
81d68a96 2311 stop_critical_timings(); /* don't trace print latency */
6fe29354 2312 call_console_drivers(level, ext_text, ext_len, text, len);
81d68a96 2313 start_critical_timings();
1da177e4
LT
2314 local_irq_restore(flags);
2315 }
2316 console_locked = 0;
fe3d8ad3
FT
2317
2318 /* Release the exclusive_console once it is used */
2319 if (unlikely(exclusive_console))
2320 exclusive_console = NULL;
2321
07354eb1 2322 raw_spin_unlock(&logbuf_lock);
4f2a8d3c 2323
bd8d7cf5 2324 up_console_sem();
4f2a8d3c
PZ
2325
2326 /*
2327 * Someone could have filled up the buffer again, so re-check if there's
2328 * something to flush. In case we cannot trylock the console_sem again,
2329 * there's a new owner and the console_unlock() from them will do the
2330 * flush, no worries.
2331 */
07354eb1 2332 raw_spin_lock(&logbuf_lock);
7ff9554b 2333 retry = console_seq != log_next_seq;
09dc3cf9
PZ
2334 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
2335
4f2a8d3c
PZ
2336 if (retry && console_trylock())
2337 goto again;
2338
e3e8a75d
KK
2339 if (wake_klogd)
2340 wake_up_klogd();
1da177e4 2341}
ac751efa 2342EXPORT_SYMBOL(console_unlock);
1da177e4 2343
ddad86c2
MW
2344/**
2345 * console_conditional_schedule - yield the CPU if required
1da177e4
LT
2346 *
2347 * If the console code is currently allowed to sleep, and
2348 * if this CPU should yield the CPU to another task, do
2349 * so here.
2350 *
ac751efa 2351 * Must be called within console_lock();.
1da177e4
LT
2352 */
2353void __sched console_conditional_schedule(void)
2354{
2355 if (console_may_schedule)
2356 cond_resched();
2357}
2358EXPORT_SYMBOL(console_conditional_schedule);
2359
1da177e4
LT
2360void console_unblank(void)
2361{
2362 struct console *c;
2363
2364 /*
2365 * console_unblank can no longer be called in interrupt context unless
2366 * oops_in_progress is set to 1..
2367 */
2368 if (oops_in_progress) {
bd8d7cf5 2369 if (down_trylock_console_sem() != 0)
1da177e4
LT
2370 return;
2371 } else
ac751efa 2372 console_lock();
1da177e4
LT
2373
2374 console_locked = 1;
2375 console_may_schedule = 0;
4d091611 2376 for_each_console(c)
1da177e4
LT
2377 if ((c->flags & CON_ENABLED) && c->unblank)
2378 c->unblank();
ac751efa 2379 console_unlock();
1da177e4 2380}
1da177e4
LT
2381
2382/*
2383 * Return the console tty driver structure and its associated index
2384 */
2385struct tty_driver *console_device(int *index)
2386{
2387 struct console *c;
2388 struct tty_driver *driver = NULL;
2389
ac751efa 2390 console_lock();
4d091611 2391 for_each_console(c) {
1da177e4
LT
2392 if (!c->device)
2393 continue;
2394 driver = c->device(c, index);
2395 if (driver)
2396 break;
2397 }
ac751efa 2398 console_unlock();
1da177e4
LT
2399 return driver;
2400}
2401
2402/*
2403 * Prevent further output on the passed console device so that (for example)
2404 * serial drivers can disable console output before suspending a port, and can
2405 * re-enable output afterwards.
2406 */
2407void console_stop(struct console *console)
2408{
ac751efa 2409 console_lock();
1da177e4 2410 console->flags &= ~CON_ENABLED;
ac751efa 2411 console_unlock();
1da177e4
LT
2412}
2413EXPORT_SYMBOL(console_stop);
2414
2415void console_start(struct console *console)
2416{
ac751efa 2417 console_lock();
1da177e4 2418 console->flags |= CON_ENABLED;
ac751efa 2419 console_unlock();
1da177e4
LT
2420}
2421EXPORT_SYMBOL(console_start);
2422
7bf69395
FDN
2423static int __read_mostly keep_bootcon;
2424
2425static int __init keep_bootcon_setup(char *str)
2426{
2427 keep_bootcon = 1;
27083bac 2428 pr_info("debug: skip boot console de-registration.\n");
7bf69395
FDN
2429
2430 return 0;
2431}
2432
2433early_param("keep_bootcon", keep_bootcon_setup);
2434
1da177e4
LT
2435/*
2436 * The console driver calls this routine during kernel initialization
2437 * to register the console printing procedure with printk() and to
2438 * print any messages that were printed by the kernel before the
2439 * console driver was initialized.
4d091611
RG
2440 *
2441 * This can happen pretty early during the boot process (because of
2442 * early_printk) - sometimes before setup_arch() completes - be careful
2443 * of what kernel features are used - they may not be initialised yet.
2444 *
2445 * There are two types of consoles - bootconsoles (early_printk) and
2446 * "real" consoles (everything which is not a bootconsole) which are
2447 * handled differently.
2448 * - Any number of bootconsoles can be registered at any time.
2449 * - As soon as a "real" console is registered, all bootconsoles
2450 * will be unregistered automatically.
2451 * - Once a "real" console is registered, any attempt to register a
2452 * bootconsoles will be rejected
1da177e4 2453 */
4d091611 2454void register_console(struct console *newcon)
1da177e4 2455{
40dc5651 2456 int i;
1da177e4 2457 unsigned long flags;
4d091611 2458 struct console *bcon = NULL;
23475408 2459 struct console_cmdline *c;
1da177e4 2460
16cf48a6
AB
2461 if (console_drivers)
2462 for_each_console(bcon)
2463 if (WARN(bcon == newcon,
2464 "console '%s%d' already registered\n",
2465 bcon->name, bcon->index))
2466 return;
2467
4d091611
RG
2468 /*
2469 * before we register a new CON_BOOT console, make sure we don't
2470 * already have a valid console
2471 */
2472 if (console_drivers && newcon->flags & CON_BOOT) {
2473 /* find the last or real console */
2474 for_each_console(bcon) {
2475 if (!(bcon->flags & CON_BOOT)) {
27083bac 2476 pr_info("Too late to register bootconsole %s%d\n",
4d091611
RG
2477 newcon->name, newcon->index);
2478 return;
2479 }
2480 }
69331af7
GH
2481 }
2482
4d091611
RG
2483 if (console_drivers && console_drivers->flags & CON_BOOT)
2484 bcon = console_drivers;
2485
2486 if (preferred_console < 0 || bcon || !console_drivers)
1da177e4
LT
2487 preferred_console = selected_console;
2488
2489 /*
2490 * See if we want to use this console driver. If we
2491 * didn't select a console we take the first one
2492 * that registers here.
2493 */
2494 if (preferred_console < 0) {
4d091611
RG
2495 if (newcon->index < 0)
2496 newcon->index = 0;
2497 if (newcon->setup == NULL ||
2498 newcon->setup(newcon, NULL) == 0) {
2499 newcon->flags |= CON_ENABLED;
2500 if (newcon->device) {
2501 newcon->flags |= CON_CONSDEV;
cd3a1b85
JK
2502 preferred_console = 0;
2503 }
1da177e4
LT
2504 }
2505 }
2506
2507 /*
2508 * See if this console matches one we selected on
2509 * the command line.
2510 */
23475408
JP
2511 for (i = 0, c = console_cmdline;
2512 i < MAX_CMDLINECONSOLES && c->name[0];
2513 i++, c++) {
c7cef0a8
PH
2514 if (!newcon->match ||
2515 newcon->match(newcon, c->name, c->index, c->options) != 0) {
2516 /* default matching */
2517 BUILD_BUG_ON(sizeof(c->name) != sizeof(newcon->name));
2518 if (strcmp(c->name, newcon->name) != 0)
2519 continue;
2520 if (newcon->index >= 0 &&
2521 newcon->index != c->index)
2522 continue;
2523 if (newcon->index < 0)
2524 newcon->index = c->index;
bbeddf52 2525
c7cef0a8
PH
2526 if (_braille_register_console(newcon, c))
2527 return;
2528
2529 if (newcon->setup &&
2530 newcon->setup(newcon, c->options) != 0)
2531 break;
2532 }
bbeddf52 2533
4d091611 2534 newcon->flags |= CON_ENABLED;
ab4af03a 2535 if (i == selected_console) {
4d091611 2536 newcon->flags |= CON_CONSDEV;
ab4af03a
GE
2537 preferred_console = selected_console;
2538 }
1da177e4
LT
2539 break;
2540 }
2541
4d091611 2542 if (!(newcon->flags & CON_ENABLED))
1da177e4
LT
2543 return;
2544
8259cf43
RG
2545 /*
2546 * If we have a bootconsole, and are switching to a real console,
2547 * don't print everything out again, since when the boot console, and
2548 * the real console are the same physical device, it's annoying to
2549 * see the beginning boot messages twice
2550 */
2551 if (bcon && ((newcon->flags & (CON_CONSDEV | CON_BOOT)) == CON_CONSDEV))
4d091611 2552 newcon->flags &= ~CON_PRINTBUFFER;
1da177e4
LT
2553
2554 /*
2555 * Put this console in the list - keep the
2556 * preferred driver at the head of the list.
2557 */
ac751efa 2558 console_lock();
4d091611
RG
2559 if ((newcon->flags & CON_CONSDEV) || console_drivers == NULL) {
2560 newcon->next = console_drivers;
2561 console_drivers = newcon;
2562 if (newcon->next)
2563 newcon->next->flags &= ~CON_CONSDEV;
1da177e4 2564 } else {
4d091611
RG
2565 newcon->next = console_drivers->next;
2566 console_drivers->next = newcon;
1da177e4 2567 }
6fe29354
TH
2568
2569 if (newcon->flags & CON_EXTENDED)
2570 if (!nr_ext_console_drivers++)
2571 pr_info("printk: continuation disabled due to ext consoles, expect more fragments in /dev/kmsg\n");
2572
4d091611 2573 if (newcon->flags & CON_PRINTBUFFER) {
1da177e4 2574 /*
ac751efa 2575 * console_unlock(); will print out the buffered messages
1da177e4
LT
2576 * for us.
2577 */
07354eb1 2578 raw_spin_lock_irqsave(&logbuf_lock, flags);
7ff9554b
KS
2579 console_seq = syslog_seq;
2580 console_idx = syslog_idx;
5becfb1d 2581 console_prev = syslog_prev;
07354eb1 2582 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
fe3d8ad3
FT
2583 /*
2584 * We're about to replay the log buffer. Only do this to the
2585 * just-registered console to avoid excessive message spam to
2586 * the already-registered consoles.
2587 */
2588 exclusive_console = newcon;
1da177e4 2589 }
ac751efa 2590 console_unlock();
fbc92a34 2591 console_sysfs_notify();
8259cf43
RG
2592
2593 /*
2594 * By unregistering the bootconsoles after we enable the real console
2595 * we get the "console xxx enabled" message on all the consoles -
2596 * boot consoles, real consoles, etc - this is to ensure that end
2597 * users know there might be something in the kernel's log buffer that
2598 * went to the bootconsole (that they do not see on the real console)
2599 */
27083bac 2600 pr_info("%sconsole [%s%d] enabled\n",
6b802394
KC
2601 (newcon->flags & CON_BOOT) ? "boot" : "" ,
2602 newcon->name, newcon->index);
7bf69395
FDN
2603 if (bcon &&
2604 ((newcon->flags & (CON_CONSDEV | CON_BOOT)) == CON_CONSDEV) &&
2605 !keep_bootcon) {
6b802394
KC
2606 /* We need to iterate through all boot consoles, to make
2607 * sure we print everything out, before we unregister them.
8259cf43 2608 */
8259cf43
RG
2609 for_each_console(bcon)
2610 if (bcon->flags & CON_BOOT)
2611 unregister_console(bcon);
8259cf43 2612 }
1da177e4
LT
2613}
2614EXPORT_SYMBOL(register_console);
2615
40dc5651 2616int unregister_console(struct console *console)
1da177e4 2617{
40dc5651 2618 struct console *a, *b;
bbeddf52 2619 int res;
1da177e4 2620
27083bac 2621 pr_info("%sconsole [%s%d] disabled\n",
6b802394
KC
2622 (console->flags & CON_BOOT) ? "boot" : "" ,
2623 console->name, console->index);
2624
bbeddf52
JP
2625 res = _braille_unregister_console(console);
2626 if (res)
2627 return res;
f7511d5f 2628
bbeddf52 2629 res = 1;
ac751efa 2630 console_lock();
1da177e4
LT
2631 if (console_drivers == console) {
2632 console_drivers=console->next;
2633 res = 0;
e9b15b54 2634 } else if (console_drivers) {
1da177e4
LT
2635 for (a=console_drivers->next, b=console_drivers ;
2636 a; b=a, a=b->next) {
2637 if (a == console) {
2638 b->next = a->next;
2639 res = 0;
2640 break;
40dc5651 2641 }
1da177e4
LT
2642 }
2643 }
40dc5651 2644
6fe29354
TH
2645 if (!res && (console->flags & CON_EXTENDED))
2646 nr_ext_console_drivers--;
2647
69331af7 2648 /*
ab4af03a
GE
2649 * If this isn't the last console and it has CON_CONSDEV set, we
2650 * need to set it on the next preferred console.
1da177e4 2651 */
69331af7 2652 if (console_drivers != NULL && console->flags & CON_CONSDEV)
ab4af03a 2653 console_drivers->flags |= CON_CONSDEV;
1da177e4 2654
7fa21dd8 2655 console->flags &= ~CON_ENABLED;
ac751efa 2656 console_unlock();
fbc92a34 2657 console_sysfs_notify();
1da177e4
LT
2658 return res;
2659}
2660EXPORT_SYMBOL(unregister_console);
d59745ce 2661
81cc26f2
TR
2662/*
2663 * Some boot consoles access data that is in the init section and which will
2664 * be discarded after the initcalls have been run. To make sure that no code
2665 * will access this data, unregister the boot consoles in a late initcall.
2666 *
2667 * If for some reason, such as deferred probe or the driver being a loadable
2668 * module, the real console hasn't registered yet at this point, there will
2669 * be a brief interval in which no messages are logged to the console, which
2670 * makes it difficult to diagnose problems that occur during this time.
2671 *
2672 * To mitigate this problem somewhat, only unregister consoles whose memory
2673 * intersects with the init section. Note that code exists elsewhere to get
2674 * rid of the boot console as soon as the proper console shows up, so there
2675 * won't be side-effects from postponing the removal.
2676 */
034260d6 2677static int __init printk_late_init(void)
0c5564bd 2678{
4d091611
RG
2679 struct console *con;
2680
2681 for_each_console(con) {
4c30c6f5 2682 if (!keep_bootcon && con->flags & CON_BOOT) {
81cc26f2
TR
2683 /*
2684 * Make sure to unregister boot consoles whose data
2685 * resides in the init section before the init section
2686 * is discarded. Boot consoles whose data will stick
2687 * around will automatically be unregistered when the
2688 * proper console replaces them.
2689 */
2690 if (init_section_intersects(con, sizeof(*con)))
2691 unregister_console(con);
cb00e99c 2692 }
0c5564bd 2693 }
034260d6 2694 hotcpu_notifier(console_cpu_notify, 0);
0c5564bd
RG
2695 return 0;
2696}
034260d6 2697late_initcall(printk_late_init);
0c5564bd 2698
7ef3d2fd 2699#if defined CONFIG_PRINTK
dc72c32e
FW
2700/*
2701 * Delayed printk version, for scheduler-internal messages:
2702 */
dc72c32e 2703#define PRINTK_PENDING_WAKEUP 0x01
458df9fd 2704#define PRINTK_PENDING_OUTPUT 0x02
dc72c32e
FW
2705
2706static DEFINE_PER_CPU(int, printk_pending);
dc72c32e
FW
2707
2708static void wake_up_klogd_work_func(struct irq_work *irq_work)
2709{
2710 int pending = __this_cpu_xchg(printk_pending, 0);
2711
458df9fd
SR
2712 if (pending & PRINTK_PENDING_OUTPUT) {
2713 /* If trylock fails, someone else is doing the printing */
2714 if (console_trylock())
2715 console_unlock();
dc72c32e
FW
2716 }
2717
2718 if (pending & PRINTK_PENDING_WAKEUP)
2719 wake_up_interruptible(&log_wait);
2720}
2721
2722static DEFINE_PER_CPU(struct irq_work, wake_up_klogd_work) = {
2723 .func = wake_up_klogd_work_func,
2724 .flags = IRQ_WORK_LAZY,
2725};
2726
2727void wake_up_klogd(void)
2728{
2729 preempt_disable();
2730 if (waitqueue_active(&log_wait)) {
2731 this_cpu_or(printk_pending, PRINTK_PENDING_WAKEUP);
bb964a92 2732 irq_work_queue(this_cpu_ptr(&wake_up_klogd_work));
dc72c32e
FW
2733 }
2734 preempt_enable();
2735}
717115e1 2736
aac74dc4 2737int printk_deferred(const char *fmt, ...)
600e1458 2738{
600e1458 2739 va_list args;
600e1458
PZ
2740 int r;
2741
81954606 2742 preempt_disable();
600e1458 2743 va_start(args, fmt);
a39d4a85 2744 r = vprintk_emit(0, LOGLEVEL_SCHED, NULL, 0, fmt, args);
600e1458
PZ
2745 va_end(args);
2746
458df9fd 2747 __this_cpu_or(printk_pending, PRINTK_PENDING_OUTPUT);
bb964a92 2748 irq_work_queue(this_cpu_ptr(&wake_up_klogd_work));
81954606 2749 preempt_enable();
600e1458
PZ
2750
2751 return r;
2752}
2753
1da177e4
LT
2754/*
2755 * printk rate limiting, lifted from the networking subsystem.
2756 *
641de9d8
UKK
2757 * This enforces a rate limit: not more than 10 kernel messages
2758 * every 5s to make a denial-of-service attack impossible.
1da177e4 2759 */
641de9d8
UKK
2760DEFINE_RATELIMIT_STATE(printk_ratelimit_state, 5 * HZ, 10);
2761
5c828713 2762int __printk_ratelimit(const char *func)
1da177e4 2763{
5c828713 2764 return ___ratelimit(&printk_ratelimit_state, func);
1da177e4 2765}
5c828713 2766EXPORT_SYMBOL(__printk_ratelimit);
f46c4833
AM
2767
2768/**
2769 * printk_timed_ratelimit - caller-controlled printk ratelimiting
2770 * @caller_jiffies: pointer to caller's state
2771 * @interval_msecs: minimum interval between prints
2772 *
2773 * printk_timed_ratelimit() returns true if more than @interval_msecs
2774 * milliseconds have elapsed since the last time printk_timed_ratelimit()
2775 * returned true.
2776 */
2777bool printk_timed_ratelimit(unsigned long *caller_jiffies,
2778 unsigned int interval_msecs)
2779{
249771b8
AE
2780 unsigned long elapsed = jiffies - *caller_jiffies;
2781
2782 if (*caller_jiffies && elapsed <= msecs_to_jiffies(interval_msecs))
2783 return false;
2784
2785 *caller_jiffies = jiffies;
2786 return true;
f46c4833
AM
2787}
2788EXPORT_SYMBOL(printk_timed_ratelimit);
456b565c
SK
2789
2790static DEFINE_SPINLOCK(dump_list_lock);
2791static LIST_HEAD(dump_list);
2792
2793/**
2794 * kmsg_dump_register - register a kernel log dumper.
6485536b 2795 * @dumper: pointer to the kmsg_dumper structure
456b565c
SK
2796 *
2797 * Adds a kernel log dumper to the system. The dump callback in the
2798 * structure will be called when the kernel oopses or panics and must be
2799 * set. Returns zero on success and %-EINVAL or %-EBUSY otherwise.
2800 */
2801int kmsg_dump_register(struct kmsg_dumper *dumper)
2802{
2803 unsigned long flags;
2804 int err = -EBUSY;
2805
2806 /* The dump callback needs to be set */
2807 if (!dumper->dump)
2808 return -EINVAL;
2809
2810 spin_lock_irqsave(&dump_list_lock, flags);
2811 /* Don't allow registering multiple times */
2812 if (!dumper->registered) {
2813 dumper->registered = 1;
fb842b00 2814 list_add_tail_rcu(&dumper->list, &dump_list);
456b565c
SK
2815 err = 0;
2816 }
2817 spin_unlock_irqrestore(&dump_list_lock, flags);
2818
2819 return err;
2820}
2821EXPORT_SYMBOL_GPL(kmsg_dump_register);
2822
2823/**
2824 * kmsg_dump_unregister - unregister a kmsg dumper.
6485536b 2825 * @dumper: pointer to the kmsg_dumper structure
456b565c
SK
2826 *
2827 * Removes a dump device from the system. Returns zero on success and
2828 * %-EINVAL otherwise.
2829 */
2830int kmsg_dump_unregister(struct kmsg_dumper *dumper)
2831{
2832 unsigned long flags;
2833 int err = -EINVAL;
2834
2835 spin_lock_irqsave(&dump_list_lock, flags);
2836 if (dumper->registered) {
2837 dumper->registered = 0;
fb842b00 2838 list_del_rcu(&dumper->list);
456b565c
SK
2839 err = 0;
2840 }
2841 spin_unlock_irqrestore(&dump_list_lock, flags);
fb842b00 2842 synchronize_rcu();
456b565c
SK
2843
2844 return err;
2845}
2846EXPORT_SYMBOL_GPL(kmsg_dump_unregister);
2847
7ff9554b
KS
2848static bool always_kmsg_dump;
2849module_param_named(always_kmsg_dump, always_kmsg_dump, bool, S_IRUGO | S_IWUSR);
2850
456b565c
SK
2851/**
2852 * kmsg_dump - dump kernel log to kernel message dumpers.
2853 * @reason: the reason (oops, panic etc) for dumping
2854 *
e2ae715d
KS
2855 * Call each of the registered dumper's dump() callback, which can
2856 * retrieve the kmsg records with kmsg_dump_get_line() or
2857 * kmsg_dump_get_buffer().
456b565c
SK
2858 */
2859void kmsg_dump(enum kmsg_dump_reason reason)
2860{
456b565c 2861 struct kmsg_dumper *dumper;
456b565c
SK
2862 unsigned long flags;
2863
c22ab332
MG
2864 if ((reason > KMSG_DUMP_OOPS) && !always_kmsg_dump)
2865 return;
2866
e2ae715d
KS
2867 rcu_read_lock();
2868 list_for_each_entry_rcu(dumper, &dump_list, list) {
2869 if (dumper->max_reason && reason > dumper->max_reason)
2870 continue;
2871
2872 /* initialize iterator with data about the stored records */
2873 dumper->active = true;
2874
2875 raw_spin_lock_irqsave(&logbuf_lock, flags);
2876 dumper->cur_seq = clear_seq;
2877 dumper->cur_idx = clear_idx;
2878 dumper->next_seq = log_next_seq;
2879 dumper->next_idx = log_next_idx;
2880 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
2881
2882 /* invoke dumper which will iterate over records */
2883 dumper->dump(dumper, reason);
2884
2885 /* reset iterator */
2886 dumper->active = false;
2887 }
2888 rcu_read_unlock();
2889}
2890
2891/**
533827c9 2892 * kmsg_dump_get_line_nolock - retrieve one kmsg log line (unlocked version)
e2ae715d
KS
2893 * @dumper: registered kmsg dumper
2894 * @syslog: include the "<4>" prefixes
2895 * @line: buffer to copy the line to
2896 * @size: maximum size of the buffer
2897 * @len: length of line placed into buffer
2898 *
2899 * Start at the beginning of the kmsg buffer, with the oldest kmsg
2900 * record, and copy one record into the provided buffer.
2901 *
2902 * Consecutive calls will return the next available record moving
2903 * towards the end of the buffer with the youngest messages.
2904 *
2905 * A return value of FALSE indicates that there are no more records to
2906 * read.
533827c9
AV
2907 *
2908 * The function is similar to kmsg_dump_get_line(), but grabs no locks.
e2ae715d 2909 */
533827c9
AV
2910bool kmsg_dump_get_line_nolock(struct kmsg_dumper *dumper, bool syslog,
2911 char *line, size_t size, size_t *len)
e2ae715d 2912{
62e32ac3 2913 struct printk_log *msg;
e2ae715d
KS
2914 size_t l = 0;
2915 bool ret = false;
2916
2917 if (!dumper->active)
2918 goto out;
7ff9554b 2919
e2ae715d
KS
2920 if (dumper->cur_seq < log_first_seq) {
2921 /* messages are gone, move to first available one */
2922 dumper->cur_seq = log_first_seq;
2923 dumper->cur_idx = log_first_idx;
2924 }
456b565c 2925
e2ae715d 2926 /* last entry */
533827c9 2927 if (dumper->cur_seq >= log_next_seq)
e2ae715d 2928 goto out;
456b565c 2929
e2ae715d 2930 msg = log_from_idx(dumper->cur_idx);
5becfb1d 2931 l = msg_print_text(msg, 0, syslog, line, size);
e2ae715d
KS
2932
2933 dumper->cur_idx = log_next(dumper->cur_idx);
2934 dumper->cur_seq++;
2935 ret = true;
e2ae715d
KS
2936out:
2937 if (len)
2938 *len = l;
2939 return ret;
2940}
533827c9
AV
2941
2942/**
2943 * kmsg_dump_get_line - retrieve one kmsg log line
2944 * @dumper: registered kmsg dumper
2945 * @syslog: include the "<4>" prefixes
2946 * @line: buffer to copy the line to
2947 * @size: maximum size of the buffer
2948 * @len: length of line placed into buffer
2949 *
2950 * Start at the beginning of the kmsg buffer, with the oldest kmsg
2951 * record, and copy one record into the provided buffer.
2952 *
2953 * Consecutive calls will return the next available record moving
2954 * towards the end of the buffer with the youngest messages.
2955 *
2956 * A return value of FALSE indicates that there are no more records to
2957 * read.
2958 */
2959bool kmsg_dump_get_line(struct kmsg_dumper *dumper, bool syslog,
2960 char *line, size_t size, size_t *len)
2961{
2962 unsigned long flags;
2963 bool ret;
2964
2965 raw_spin_lock_irqsave(&logbuf_lock, flags);
2966 ret = kmsg_dump_get_line_nolock(dumper, syslog, line, size, len);
2967 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
2968
2969 return ret;
2970}
e2ae715d
KS
2971EXPORT_SYMBOL_GPL(kmsg_dump_get_line);
2972
2973/**
2974 * kmsg_dump_get_buffer - copy kmsg log lines
2975 * @dumper: registered kmsg dumper
2976 * @syslog: include the "<4>" prefixes
4f0f4af5 2977 * @buf: buffer to copy the line to
e2ae715d
KS
2978 * @size: maximum size of the buffer
2979 * @len: length of line placed into buffer
2980 *
2981 * Start at the end of the kmsg buffer and fill the provided buffer
2982 * with as many of the the *youngest* kmsg records that fit into it.
2983 * If the buffer is large enough, all available kmsg records will be
2984 * copied with a single call.
2985 *
2986 * Consecutive calls will fill the buffer with the next block of
2987 * available older records, not including the earlier retrieved ones.
2988 *
2989 * A return value of FALSE indicates that there are no more records to
2990 * read.
2991 */
2992bool kmsg_dump_get_buffer(struct kmsg_dumper *dumper, bool syslog,
2993 char *buf, size_t size, size_t *len)
2994{
2995 unsigned long flags;
2996 u64 seq;
2997 u32 idx;
2998 u64 next_seq;
2999 u32 next_idx;
5becfb1d 3000 enum log_flags prev;
e2ae715d
KS
3001 size_t l = 0;
3002 bool ret = false;
3003
3004 if (!dumper->active)
3005 goto out;
3006
3007 raw_spin_lock_irqsave(&logbuf_lock, flags);
3008 if (dumper->cur_seq < log_first_seq) {
3009 /* messages are gone, move to first available one */
3010 dumper->cur_seq = log_first_seq;
3011 dumper->cur_idx = log_first_idx;
3012 }
3013
3014 /* last entry */
3015 if (dumper->cur_seq >= dumper->next_seq) {
3016 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
3017 goto out;
3018 }
3019
3020 /* calculate length of entire buffer */
3021 seq = dumper->cur_seq;
3022 idx = dumper->cur_idx;
5becfb1d 3023 prev = 0;
e2ae715d 3024 while (seq < dumper->next_seq) {
62e32ac3 3025 struct printk_log *msg = log_from_idx(idx);
e2ae715d 3026
5becfb1d 3027 l += msg_print_text(msg, prev, true, NULL, 0);
e2ae715d
KS
3028 idx = log_next(idx);
3029 seq++;
5becfb1d 3030 prev = msg->flags;
e2ae715d
KS
3031 }
3032
3033 /* move first record forward until length fits into the buffer */
3034 seq = dumper->cur_seq;
3035 idx = dumper->cur_idx;
5becfb1d 3036 prev = 0;
e2ae715d 3037 while (l > size && seq < dumper->next_seq) {
62e32ac3 3038 struct printk_log *msg = log_from_idx(idx);
456b565c 3039
5becfb1d 3040 l -= msg_print_text(msg, prev, true, NULL, 0);
e2ae715d
KS
3041 idx = log_next(idx);
3042 seq++;
5becfb1d 3043 prev = msg->flags;
456b565c 3044 }
e2ae715d
KS
3045
3046 /* last message in next interation */
3047 next_seq = seq;
3048 next_idx = idx;
3049
3050 l = 0;
3051 while (seq < dumper->next_seq) {
62e32ac3 3052 struct printk_log *msg = log_from_idx(idx);
e2ae715d 3053
5becfb1d 3054 l += msg_print_text(msg, prev, syslog, buf + l, size - l);
e2ae715d
KS
3055 idx = log_next(idx);
3056 seq++;
5becfb1d 3057 prev = msg->flags;
e2ae715d
KS
3058 }
3059
3060 dumper->next_seq = next_seq;
3061 dumper->next_idx = next_idx;
3062 ret = true;
7ff9554b 3063 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
e2ae715d
KS
3064out:
3065 if (len)
3066 *len = l;
3067 return ret;
3068}
3069EXPORT_SYMBOL_GPL(kmsg_dump_get_buffer);
456b565c 3070
533827c9
AV
3071/**
3072 * kmsg_dump_rewind_nolock - reset the interator (unlocked version)
3073 * @dumper: registered kmsg dumper
3074 *
3075 * Reset the dumper's iterator so that kmsg_dump_get_line() and
3076 * kmsg_dump_get_buffer() can be called again and used multiple
3077 * times within the same dumper.dump() callback.
3078 *
3079 * The function is similar to kmsg_dump_rewind(), but grabs no locks.
3080 */
3081void kmsg_dump_rewind_nolock(struct kmsg_dumper *dumper)
3082{
3083 dumper->cur_seq = clear_seq;
3084 dumper->cur_idx = clear_idx;
3085 dumper->next_seq = log_next_seq;
3086 dumper->next_idx = log_next_idx;
3087}
3088
e2ae715d
KS
3089/**
3090 * kmsg_dump_rewind - reset the interator
3091 * @dumper: registered kmsg dumper
3092 *
3093 * Reset the dumper's iterator so that kmsg_dump_get_line() and
3094 * kmsg_dump_get_buffer() can be called again and used multiple
3095 * times within the same dumper.dump() callback.
3096 */
3097void kmsg_dump_rewind(struct kmsg_dumper *dumper)
3098{
3099 unsigned long flags;
3100
3101 raw_spin_lock_irqsave(&logbuf_lock, flags);
533827c9 3102 kmsg_dump_rewind_nolock(dumper);
e2ae715d 3103 raw_spin_unlock_irqrestore(&logbuf_lock, flags);
456b565c 3104}
e2ae715d 3105EXPORT_SYMBOL_GPL(kmsg_dump_rewind);
196779b9 3106
98e5e1bf
TH
3107static char dump_stack_arch_desc_str[128];
3108
3109/**
3110 * dump_stack_set_arch_desc - set arch-specific str to show with task dumps
3111 * @fmt: printf-style format string
3112 * @...: arguments for the format string
3113 *
3114 * The configured string will be printed right after utsname during task
3115 * dumps. Usually used to add arch-specific system identifiers. If an
3116 * arch wants to make use of such an ID string, it should initialize this
3117 * as soon as possible during boot.
3118 */
3119void __init dump_stack_set_arch_desc(const char *fmt, ...)
3120{
3121 va_list args;
3122
3123 va_start(args, fmt);
3124 vsnprintf(dump_stack_arch_desc_str, sizeof(dump_stack_arch_desc_str),
3125 fmt, args);
3126 va_end(args);
3127}
3128
196779b9
TH
3129/**
3130 * dump_stack_print_info - print generic debug info for dump_stack()
3131 * @log_lvl: log level
3132 *
3133 * Arch-specific dump_stack() implementations can use this function to
3134 * print out the same debug information as the generic dump_stack().
3135 */
3136void dump_stack_print_info(const char *log_lvl)
3137{
3138 printk("%sCPU: %d PID: %d Comm: %.20s %s %s %.*s\n",
3139 log_lvl, raw_smp_processor_id(), current->pid, current->comm,
3140 print_tainted(), init_utsname()->release,
3141 (int)strcspn(init_utsname()->version, " "),
3142 init_utsname()->version);
98e5e1bf
TH
3143
3144 if (dump_stack_arch_desc_str[0] != '\0')
3145 printk("%sHardware name: %s\n",
3146 log_lvl, dump_stack_arch_desc_str);
3d1cb205
TH
3147
3148 print_worker_info(log_lvl, current);
196779b9
TH
3149}
3150
a43cb95d
TH
3151/**
3152 * show_regs_print_info - print generic debug info for show_regs()
3153 * @log_lvl: log level
3154 *
3155 * show_regs() implementations can use this function to print out generic
3156 * debug information.
3157 */
3158void show_regs_print_info(const char *log_lvl)
3159{
3160 dump_stack_print_info(log_lvl);
3161
3162 printk("%stask: %p ti: %p task.ti: %p\n",
3163 log_lvl, current, current_thread_info(),
3164 task_thread_info(current));
3165}
3166
7ef3d2fd 3167#endif