printk.c 75.7 KB
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/*
 *  linux/kernel/printk.c
 *
 *  Copyright (C) 1991, 1992  Linus Torvalds
 *
 * Modified to make sys_syslog() more flexible: added commands to
 * return the last 4k of kernel messages, regardless of whether
 * they've been read or not.  Added option to suppress kernel printk's
 * to the console.  Added hook for sending the console messages
 * elsewhere, in preparation for a serial line console (someday).
 * Ted Ts'o, 2/11/93.
 * Modified for sysctl support, 1/8/97, Chris Horn.
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 * Fixed SMP synchronization, 08/08/99, Manfred Spraul
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 *     manfred@colorfullife.com
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 * Rewrote bits to get rid of console_lock
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 *	01Mar01 Andrew Morton
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 */

#include <linux/kernel.h>
#include <linux/mm.h>
#include <linux/tty.h>
#include <linux/tty_driver.h>
#include <linux/console.h>
#include <linux/init.h>
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#include <linux/jiffies.h>
#include <linux/nmi.h>
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#include <linux/module.h>
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#include <linux/moduleparam.h>
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#include <linux/interrupt.h>			/* For in_interrupt() */
#include <linux/delay.h>
#include <linux/smp.h>
#include <linux/security.h>
#include <linux/bootmem.h>
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#include <linux/memblock.h>
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#include <linux/aio.h>
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#include <linux/syscalls.h>
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#include <linux/kexec.h>
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#include <linux/kdb.h>
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#include <linux/ratelimit.h>
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#include <linux/kmsg_dump.h>
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#include <linux/syslog.h>
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#include <linux/cpu.h>
#include <linux/notifier.h>
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#include <linux/rculist.h>
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#include <linux/poll.h>
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#include <linux/irq_work.h>
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#include <linux/utsname.h>
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#include <linux/ctype.h>
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#include <asm/uaccess.h>

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#define CREATE_TRACE_POINTS
#include <trace/events/printk.h>

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#include "console_cmdline.h"
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#include "braille.h"
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int console_printk[4] = {
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	CONSOLE_LOGLEVEL_DEFAULT,	/* console_loglevel */
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	MESSAGE_LOGLEVEL_DEFAULT,	/* default_message_loglevel */
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	CONSOLE_LOGLEVEL_MIN,		/* minimum_console_loglevel */
	CONSOLE_LOGLEVEL_DEFAULT,	/* default_console_loglevel */
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};

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/* Deferred messaged from sched code are marked by this special level */
#define SCHED_MESSAGE_LOGLEVEL -2

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/*
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 * Low level drivers may need that to know if they can schedule in
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 * their unblank() callback or not. So let's export it.
 */
int oops_in_progress;
EXPORT_SYMBOL(oops_in_progress);

/*
 * console_sem protects the console_drivers list, and also
 * provides serialisation for access to the entire console
 * driver system.
 */
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static DEFINE_SEMAPHORE(console_sem);
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struct console *console_drivers;
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EXPORT_SYMBOL_GPL(console_drivers);

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#ifdef CONFIG_LOCKDEP
static struct lockdep_map console_lock_dep_map = {
	.name = "console_lock"
};
#endif

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/*
 * Helper macros to handle lockdep when locking/unlocking console_sem. We use
 * macros instead of functions so that _RET_IP_ contains useful information.
 */
#define down_console_sem() do { \
	down(&console_sem);\
	mutex_acquire(&console_lock_dep_map, 0, 0, _RET_IP_);\
} while (0)

static int __down_trylock_console_sem(unsigned long ip)
{
	if (down_trylock(&console_sem))
		return 1;
	mutex_acquire(&console_lock_dep_map, 0, 1, ip);
	return 0;
}
#define down_trylock_console_sem() __down_trylock_console_sem(_RET_IP_)

#define up_console_sem() do { \
	mutex_release(&console_lock_dep_map, 1, _RET_IP_);\
	up(&console_sem);\
} while (0)

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/*
 * This is used for debugging the mess that is the VT code by
 * keeping track if we have the console semaphore held. It's
 * definitely not the perfect debug tool (we don't know if _WE_
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 * hold it and are racing, but it helps tracking those weird code
 * paths in the console code where we end up in places I want
 * locked without the console sempahore held).
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 */
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static int console_locked, console_suspended;
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/*
 * If exclusive_console is non-NULL then only this console is to be printed to.
 */
static struct console *exclusive_console;

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/*
 *	Array of consoles built from command line options (console=)
 */

#define MAX_CMDLINECONSOLES 8

static struct console_cmdline console_cmdline[MAX_CMDLINECONSOLES];
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static int selected_console = -1;
static int preferred_console = -1;
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int console_set_on_cmdline;
EXPORT_SYMBOL(console_set_on_cmdline);
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/* Flag: console code may call schedule() */
static int console_may_schedule;

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/*
 * The printk log buffer consists of a chain of concatenated variable
 * length records. Every record starts with a record header, containing
 * the overall length of the record.
 *
 * The heads to the first and last entry in the buffer, as well as the
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 * sequence numbers of these entries are maintained when messages are
 * stored.
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 *
 * If the heads indicate available messages, the length in the header
 * tells the start next message. A length == 0 for the next message
 * indicates a wrap-around to the beginning of the buffer.
 *
 * Every record carries the monotonic timestamp in microseconds, as well as
 * the standard userspace syslog level and syslog facility. The usual
 * kernel messages use LOG_KERN; userspace-injected messages always carry
 * a matching syslog facility, by default LOG_USER. The origin of every
 * message can be reliably determined that way.
 *
 * The human readable log message directly follows the message header. The
 * length of the message text is stored in the header, the stored message
 * is not terminated.
 *
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 * Optionally, a message can carry a dictionary of properties (key/value pairs),
 * to provide userspace with a machine-readable message context.
 *
 * Examples for well-defined, commonly used property names are:
 *   DEVICE=b12:8               device identifier
 *                                b12:8         block dev_t
 *                                c127:3        char dev_t
 *                                n8            netdev ifindex
 *                                +sound:card0  subsystem:devname
 *   SUBSYSTEM=pci              driver-core subsystem name
 *
 * Valid characters in property names are [a-zA-Z0-9.-_]. The plain text value
 * follows directly after a '=' character. Every property is terminated by
 * a '\0' character. The last property is not terminated.
 *
 * Example of a message structure:
 *   0000  ff 8f 00 00 00 00 00 00      monotonic time in nsec
 *   0008  34 00                        record is 52 bytes long
 *   000a        0b 00                  text is 11 bytes long
 *   000c              1f 00            dictionary is 23 bytes long
 *   000e                    03 00      LOG_KERN (facility) LOG_ERR (level)
 *   0010  69 74 27 73 20 61 20 6c      "it's a l"
 *         69 6e 65                     "ine"
 *   001b           44 45 56 49 43      "DEVIC"
 *         45 3d 62 38 3a 32 00 44      "E=b8:2\0D"
 *         52 49 56 45 52 3d 62 75      "RIVER=bu"
 *         67                           "g"
 *   0032     00 00 00                  padding to next message header
 *
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 * The 'struct printk_log' buffer header must never be directly exported to
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 * userspace, it is a kernel-private implementation detail that might
 * need to be changed in the future, when the requirements change.
 *
 * /dev/kmsg exports the structured data in the following line format:
 *   "level,sequnum,timestamp;<message text>\n"
 *
 * The optional key/value pairs are attached as continuation lines starting
 * with a space character and terminated by a newline. All possible
 * non-prinatable characters are escaped in the "\xff" notation.
 *
 * Users of the export format should ignore possible additional values
 * separated by ',', and find the message after the ';' character.
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 */

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enum log_flags {
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	LOG_NOCONS	= 1,	/* already flushed, do not print to console */
	LOG_NEWLINE	= 2,	/* text ended with a newline */
	LOG_PREFIX	= 4,	/* text started with a prefix */
	LOG_CONT	= 8,	/* text is a fragment of a continuation line */
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};

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struct printk_log {
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	u64 ts_nsec;		/* timestamp in nanoseconds */
	u16 len;		/* length of entire record */
	u16 text_len;		/* length of text buffer */
	u16 dict_len;		/* length of dictionary buffer */
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	u8 facility;		/* syslog facility */
	u8 flags:5;		/* internal record flags */
	u8 level:3;		/* syslog level */
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};

/*
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 * The logbuf_lock protects kmsg buffer, indices, counters.  This can be taken
 * within the scheduler's rq lock. It must be released before calling
 * console_unlock() or anything else that might wake up a process.
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 */
static DEFINE_RAW_SPINLOCK(logbuf_lock);
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#ifdef CONFIG_PRINTK
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DECLARE_WAIT_QUEUE_HEAD(log_wait);
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/* the next printk record to read by syslog(READ) or /proc/kmsg */
static u64 syslog_seq;
static u32 syslog_idx;
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static enum log_flags syslog_prev;
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static size_t syslog_partial;
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/* index and sequence number of the first record stored in the buffer */
static u64 log_first_seq;
static u32 log_first_idx;

/* index and sequence number of the next record to store in the buffer */
static u64 log_next_seq;
static u32 log_next_idx;

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/* the next printk record to write to the console */
static u64 console_seq;
static u32 console_idx;
static enum log_flags console_prev;

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/* the next printk record to read after the last 'clear' command */
static u64 clear_seq;
static u32 clear_idx;

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#define PREFIX_MAX		32
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#define LOG_LINE_MAX		(1024 - PREFIX_MAX)
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/* record buffer */
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#if defined(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS)
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#define LOG_ALIGN 4
#else
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#define LOG_ALIGN __alignof__(struct printk_log)
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#endif
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#define __LOG_BUF_LEN (1 << CONFIG_LOG_BUF_SHIFT)
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#define __LOG_CPU_MAX_BUF_LEN (1 << CONFIG_LOG_CPU_MAX_BUF_SHIFT)
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static char __log_buf[__LOG_BUF_LEN] __aligned(LOG_ALIGN);
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static char *log_buf = __log_buf;
static u32 log_buf_len = __LOG_BUF_LEN;

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/* human readable text of the record */
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static char *log_text(const struct printk_log *msg)
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{
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	return (char *)msg + sizeof(struct printk_log);
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}

/* optional key/value pair dictionary attached to the record */
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static char *log_dict(const struct printk_log *msg)
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{
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	return (char *)msg + sizeof(struct printk_log) + msg->text_len;
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}

/* get record by index; idx must point to valid msg */
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static struct printk_log *log_from_idx(u32 idx)
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{
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	struct printk_log *msg = (struct printk_log *)(log_buf + idx);
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	/*
	 * A length == 0 record is the end of buffer marker. Wrap around and
	 * read the message at the start of the buffer.
	 */
	if (!msg->len)
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		return (struct printk_log *)log_buf;
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	return msg;
}

/* get next record; idx must point to valid msg */
static u32 log_next(u32 idx)
{
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	struct printk_log *msg = (struct printk_log *)(log_buf + idx);
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	/* length == 0 indicates the end of the buffer; wrap */
	/*
	 * A length == 0 record is the end of buffer marker. Wrap around and
	 * read the message at the start of the buffer as *this* one, and
	 * return the one after that.
	 */
	if (!msg->len) {
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		msg = (struct printk_log *)log_buf;
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		return msg->len;
	}
	return idx + msg->len;
}

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/*
 * Check whether there is enough free space for the given message.
 *
 * The same values of first_idx and next_idx mean that the buffer
 * is either empty or full.
 *
 * If the buffer is empty, we must respect the position of the indexes.
 * They cannot be reset to the beginning of the buffer.
 */
static int logbuf_has_space(u32 msg_size, bool empty)
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{
	u32 free;

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	if (log_next_idx > log_first_idx || empty)
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		free = max(log_buf_len - log_next_idx, log_first_idx);
	else
		free = log_first_idx - log_next_idx;

	/*
	 * We need space also for an empty header that signalizes wrapping
	 * of the buffer.
	 */
	return free >= msg_size + sizeof(struct printk_log);
}

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static int log_make_free_space(u32 msg_size)
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{
	while (log_first_seq < log_next_seq) {
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		if (logbuf_has_space(msg_size, false))
			return 0;
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		/* drop old messages until we have enough contiguous space */
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		log_first_idx = log_next(log_first_idx);
		log_first_seq++;
	}
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	/* sequence numbers are equal, so the log buffer is empty */
	if (logbuf_has_space(msg_size, true))
		return 0;

	return -ENOMEM;
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}

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/* compute the message size including the padding bytes */
static u32 msg_used_size(u16 text_len, u16 dict_len, u32 *pad_len)
{
	u32 size;

	size = sizeof(struct printk_log) + text_len + dict_len;
	*pad_len = (-size) & (LOG_ALIGN - 1);
	size += *pad_len;

	return size;
}

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/*
 * Define how much of the log buffer we could take at maximum. The value
 * must be greater than two. Note that only half of the buffer is available
 * when the index points to the middle.
 */
#define MAX_LOG_TAKE_PART 4
static const char trunc_msg[] = "<truncated>";

static u32 truncate_msg(u16 *text_len, u16 *trunc_msg_len,
			u16 *dict_len, u32 *pad_len)
{
	/*
	 * The message should not take the whole buffer. Otherwise, it might
	 * get removed too soon.
	 */
	u32 max_text_len = log_buf_len / MAX_LOG_TAKE_PART;
	if (*text_len > max_text_len)
		*text_len = max_text_len;
	/* enable the warning message */
	*trunc_msg_len = strlen(trunc_msg);
	/* disable the "dict" completely */
	*dict_len = 0;
	/* compute the size again, count also the warning message */
	return msg_used_size(*text_len + *trunc_msg_len, 0, pad_len);
}

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/* insert record into the buffer, discard old ones, update heads */
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static int log_store(int facility, int level,
		     enum log_flags flags, u64 ts_nsec,
		     const char *dict, u16 dict_len,
		     const char *text, u16 text_len)
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{
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	struct printk_log *msg;
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	u32 size, pad_len;
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	u16 trunc_msg_len = 0;
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	/* number of '\0' padding bytes to next message */
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	size = msg_used_size(text_len, dict_len, &pad_len);
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	if (log_make_free_space(size)) {
		/* truncate the message if it is too long for empty buffer */
		size = truncate_msg(&text_len, &trunc_msg_len,
				    &dict_len, &pad_len);
		/* survive when the log buffer is too small for trunc_msg */
		if (log_make_free_space(size))
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			return 0;
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	}
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	if (log_next_idx + size + sizeof(struct printk_log) > log_buf_len) {
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		/*
		 * This message + an additional empty header does not fit
		 * at the end of the buffer. Add an empty header with len == 0
		 * to signify a wrap around.
		 */
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		memset(log_buf + log_next_idx, 0, sizeof(struct printk_log));
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		log_next_idx = 0;
	}

	/* fill message */
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	msg = (struct printk_log *)(log_buf + log_next_idx);
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	memcpy(log_text(msg), text, text_len);
	msg->text_len = text_len;
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	if (trunc_msg_len) {
		memcpy(log_text(msg) + text_len, trunc_msg, trunc_msg_len);
		msg->text_len += trunc_msg_len;
	}
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	memcpy(log_dict(msg), dict, dict_len);
	msg->dict_len = dict_len;
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	msg->facility = facility;
	msg->level = level & 7;
	msg->flags = flags & 0x1f;
	if (ts_nsec > 0)
		msg->ts_nsec = ts_nsec;
	else
		msg->ts_nsec = local_clock();
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	memset(log_dict(msg) + dict_len, 0, pad_len);
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	msg->len = size;
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	/* insert message */
	log_next_idx += msg->len;
	log_next_seq++;
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	return msg->text_len;
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}
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int dmesg_restrict = IS_ENABLED(CONFIG_SECURITY_DMESG_RESTRICT);
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static int syslog_action_restricted(int type)
{
	if (dmesg_restrict)
		return 1;
	/*
	 * Unless restricted, we allow "read all" and "get buffer size"
	 * for everybody.
	 */
	return type != SYSLOG_ACTION_READ_ALL &&
	       type != SYSLOG_ACTION_SIZE_BUFFER;
}

static int check_syslog_permissions(int type, bool from_file)
{
	/*
	 * If this is from /proc/kmsg and we've already opened it, then we've
	 * already done the capabilities checks at open time.
	 */
	if (from_file && type != SYSLOG_ACTION_OPEN)
		return 0;

	if (syslog_action_restricted(type)) {
		if (capable(CAP_SYSLOG))
			return 0;
		/*
		 * For historical reasons, accept CAP_SYS_ADMIN too, with
		 * a warning.
		 */
		if (capable(CAP_SYS_ADMIN)) {
			pr_warn_once("%s (%d): Attempt to access syslog with "
				     "CAP_SYS_ADMIN but no CAP_SYSLOG "
				     "(deprecated).\n",
				 current->comm, task_pid_nr(current));
			return 0;
		}
		return -EPERM;
	}
	return security_syslog(type);
}


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/* /dev/kmsg - userspace message inject/listen interface */
struct devkmsg_user {
	u64 seq;
	u32 idx;
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	enum log_flags prev;
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	struct mutex lock;
	char buf[8192];
};

static ssize_t devkmsg_writev(struct kiocb *iocb, const struct iovec *iv,
			      unsigned long count, loff_t pos)
{
	char *buf, *line;
	int i;
	int level = default_message_loglevel;
	int facility = 1;	/* LOG_USER */
	size_t len = iov_length(iv, count);
	ssize_t ret = len;

	if (len > LOG_LINE_MAX)
		return -EINVAL;
	buf = kmalloc(len+1, GFP_KERNEL);
	if (buf == NULL)
		return -ENOMEM;

	line = buf;
	for (i = 0; i < count; i++) {
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		if (copy_from_user(line, iv[i].iov_base, iv[i].iov_len)) {
			ret = -EFAULT;
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			goto out;
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		}
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		line += iv[i].iov_len;
	}

	/*
	 * Extract and skip the syslog prefix <[0-9]*>. Coming from userspace
	 * the decimal value represents 32bit, the lower 3 bit are the log
	 * level, the rest are the log facility.
	 *
	 * If no prefix or no userspace facility is specified, we
	 * enforce LOG_USER, to be able to reliably distinguish
	 * kernel-generated messages from userspace-injected ones.
	 */
	line = buf;
	if (line[0] == '<') {
		char *endp = NULL;

		i = simple_strtoul(line+1, &endp, 10);
		if (endp && endp[0] == '>') {
			level = i & 7;
			if (i >> 3)
				facility = i >> 3;
			endp++;
			len -= endp - line;
			line = endp;
		}
	}
	line[len] = '\0';

	printk_emit(facility, level, NULL, 0, "%s", line);
out:
	kfree(buf);
	return ret;
}

static ssize_t devkmsg_read(struct file *file, char __user *buf,
			    size_t count, loff_t *ppos)
{
	struct devkmsg_user *user = file->private_data;
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	struct printk_log *msg;
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	u64 ts_usec;
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	size_t i;
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	char cont = '-';
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	size_t len;
	ssize_t ret;

	if (!user)
		return -EBADF;

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	ret = mutex_lock_interruptible(&user->lock);
	if (ret)
		return ret;
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	raw_spin_lock_irq(&logbuf_lock);
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	while (user->seq == log_next_seq) {
		if (file->f_flags & O_NONBLOCK) {
			ret = -EAGAIN;
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			raw_spin_unlock_irq(&logbuf_lock);
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			goto out;
		}

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		raw_spin_unlock_irq(&logbuf_lock);
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		ret = wait_event_interruptible(log_wait,
					       user->seq != log_next_seq);
		if (ret)
			goto out;
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		raw_spin_lock_irq(&logbuf_lock);
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	}

	if (user->seq < log_first_seq) {
		/* our last seen message is gone, return error and reset */
		user->idx = log_first_idx;
		user->seq = log_first_seq;
		ret = -EPIPE;
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		raw_spin_unlock_irq(&logbuf_lock);
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		goto out;
	}

	msg = log_from_idx(user->idx);
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	ts_usec = msg->ts_nsec;
	do_div(ts_usec, 1000);
611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629

	/*
	 * If we couldn't merge continuation line fragments during the print,
	 * export the stored flags to allow an optional external merge of the
	 * records. Merging the records isn't always neccessarily correct, like
	 * when we hit a race during printing. In most cases though, it produces
	 * better readable output. 'c' in the record flags mark the first
	 * fragment of a line, '+' the following.
	 */
	if (msg->flags & LOG_CONT && !(user->prev & LOG_CONT))
		cont = 'c';
	else if ((msg->flags & LOG_CONT) ||
		 ((user->prev & LOG_CONT) && !(msg->flags & LOG_PREFIX)))
		cont = '+';

	len = sprintf(user->buf, "%u,%llu,%llu,%c;",
		      (msg->facility << 3) | msg->level,
		      user->seq, ts_usec, cont);
	user->prev = msg->flags;
630 631 632

	/* escape non-printable characters */
	for (i = 0; i < msg->text_len; i++) {
633
		unsigned char c = log_text(msg)[i];
634

635
		if (c < ' ' || c >= 127 || c == '\\')
636 637 638 639 640 641 642 643 644 645
			len += sprintf(user->buf + len, "\\x%02x", c);
		else
			user->buf[len++] = c;
	}
	user->buf[len++] = '\n';

	if (msg->dict_len) {
		bool line = true;

		for (i = 0; i < msg->dict_len; i++) {
646
			unsigned char c = log_dict(msg)[i];
647 648 649 650 651 652 653 654 655 656 657 658

			if (line) {
				user->buf[len++] = ' ';
				line = false;
			}

			if (c == '\0') {
				user->buf[len++] = '\n';
				line = true;
				continue;
			}

659
			if (c < ' ' || c >= 127 || c == '\\') {
660 661 662 663 664 665 666 667 668 669 670
				len += sprintf(user->buf + len, "\\x%02x", c);
				continue;
			}

			user->buf[len++] = c;
		}
		user->buf[len++] = '\n';
	}

	user->idx = log_next(user->idx);
	user->seq++;
671
	raw_spin_unlock_irq(&logbuf_lock);
672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697

	if (len > count) {
		ret = -EINVAL;
		goto out;
	}

	if (copy_to_user(buf, user->buf, len)) {
		ret = -EFAULT;
		goto out;
	}
	ret = len;
out:
	mutex_unlock(&user->lock);
	return ret;
}

static loff_t devkmsg_llseek(struct file *file, loff_t offset, int whence)
{
	struct devkmsg_user *user = file->private_data;
	loff_t ret = 0;

	if (!user)
		return -EBADF;
	if (offset)
		return -ESPIPE;

698
	raw_spin_lock_irq(&logbuf_lock);
699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721
	switch (whence) {
	case SEEK_SET:
		/* the first record */
		user->idx = log_first_idx;
		user->seq = log_first_seq;
		break;
	case SEEK_DATA:
		/*
		 * The first record after the last SYSLOG_ACTION_CLEAR,
		 * like issued by 'dmesg -c'. Reading /dev/kmsg itself
		 * changes no global state, and does not clear anything.
		 */
		user->idx = clear_idx;
		user->seq = clear_seq;
		break;
	case SEEK_END:
		/* after the last record */
		user->idx = log_next_idx;
		user->seq = log_next_seq;
		break;
	default:
		ret = -EINVAL;
	}
722
	raw_spin_unlock_irq(&logbuf_lock);
723 724 725 726 727 728 729 730 731 732 733 734 735
	return ret;
}

static unsigned int devkmsg_poll(struct file *file, poll_table *wait)
{
	struct devkmsg_user *user = file->private_data;
	int ret = 0;

	if (!user)
		return POLLERR|POLLNVAL;

	poll_wait(file, &log_wait, wait);

736
	raw_spin_lock_irq(&logbuf_lock);
737 738 739 740
	if (user->seq < log_next_seq) {
		/* return error when data has vanished underneath us */
		if (user->seq < log_first_seq)
			ret = POLLIN|POLLRDNORM|POLLERR|POLLPRI;
741 742
		else
			ret = POLLIN|POLLRDNORM;
743
	}
744
	raw_spin_unlock_irq(&logbuf_lock);
745 746 747 748 749 750 751 752 753 754 755 756 757

	return ret;
}

static int devkmsg_open(struct inode *inode, struct file *file)
{
	struct devkmsg_user *user;
	int err;

	/* write-only does not need any file context */
	if ((file->f_flags & O_ACCMODE) == O_WRONLY)
		return 0;

758 759
	err = check_syslog_permissions(SYSLOG_ACTION_READ_ALL,
				       SYSLOG_FROM_READER);
760 761 762 763 764 765 766 767 768
	if (err)
		return err;

	user = kmalloc(sizeof(struct devkmsg_user), GFP_KERNEL);
	if (!user)
		return -ENOMEM;

	mutex_init(&user->lock);

769
	raw_spin_lock_irq(&logbuf_lock);
770 771
	user->idx = log_first_idx;
	user->seq = log_first_seq;
772
	raw_spin_unlock_irq(&logbuf_lock);
773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798

	file->private_data = user;
	return 0;
}

static int devkmsg_release(struct inode *inode, struct file *file)
{
	struct devkmsg_user *user = file->private_data;

	if (!user)
		return 0;

	mutex_destroy(&user->lock);
	kfree(user);
	return 0;
}

const struct file_operations kmsg_fops = {
	.open = devkmsg_open,
	.read = devkmsg_read,
	.aio_write = devkmsg_writev,
	.llseek = devkmsg_llseek,
	.poll = devkmsg_poll,
	.release = devkmsg_release,
};

799 800
#ifdef CONFIG_KEXEC
/*
801
 * This appends the listed symbols to /proc/vmcore
802
 *
803
 * /proc/vmcore is used by various utilities, like crash and makedumpfile to
804 805 806 807 808 809 810 811
 * obtain access to symbols that are otherwise very difficult to locate.  These
 * symbols are specifically used so that utilities can access and extract the
 * dmesg log from a vmcore file after a crash.
 */
void log_buf_kexec_setup(void)
{
	VMCOREINFO_SYMBOL(log_buf);
	VMCOREINFO_SYMBOL(log_buf_len);
812 813
	VMCOREINFO_SYMBOL(log_first_idx);
	VMCOREINFO_SYMBOL(log_next_idx);
814
	/*
815
	 * Export struct printk_log size and field offsets. User space tools can
816 817
	 * parse it and detect any changes to structure down the line.
	 */
818 819 820 821 822
	VMCOREINFO_STRUCT_SIZE(printk_log);
	VMCOREINFO_OFFSET(printk_log, ts_nsec);
	VMCOREINFO_OFFSET(printk_log, len);
	VMCOREINFO_OFFSET(printk_log, text_len);
	VMCOREINFO_OFFSET(printk_log, dict_len);
823 824 825
}
#endif

826 827 828
/* requested log_buf_len from kernel cmdline */
static unsigned long __initdata new_log_buf_len;

829 830
/* we practice scaling the ring buffer by powers of 2 */
static void __init log_buf_len_update(unsigned size)
L
Linus Torvalds 已提交
831 832 833
{
	if (size)
		size = roundup_pow_of_two(size);
834 835
	if (size > log_buf_len)
		new_log_buf_len = size;
836 837 838 839 840 841 842 843
}

/* save requested log_buf_len since it's too early to process it */
static int __init log_buf_len_setup(char *str)
{
	unsigned size = memparse(str, &str);

	log_buf_len_update(size);
844 845

	return 0;
L
Linus Torvalds 已提交
846
}
847 848
early_param("log_buf_len", log_buf_len_setup);

849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875
static void __init log_buf_add_cpu(void)
{
	unsigned int cpu_extra;

	/*
	 * archs should set up cpu_possible_bits properly with
	 * set_cpu_possible() after setup_arch() but just in
	 * case lets ensure this is valid.
	 */
	if (num_possible_cpus() == 1)
		return;

	cpu_extra = (num_possible_cpus() - 1) * __LOG_CPU_MAX_BUF_LEN;

	/* by default this will only continue through for large > 64 CPUs */
	if (cpu_extra <= __LOG_BUF_LEN / 2)
		return;

	pr_info("log_buf_len individual max cpu contribution: %d bytes\n",
		__LOG_CPU_MAX_BUF_LEN);
	pr_info("log_buf_len total cpu_extra contributions: %d bytes\n",
		cpu_extra);
	pr_info("log_buf_len min size: %d bytes\n", __LOG_BUF_LEN);

	log_buf_len_update(cpu_extra + __LOG_BUF_LEN);
}

876 877 878 879 880 881
void __init setup_log_buf(int early)
{
	unsigned long flags;
	char *new_log_buf;
	int free;

882 883 884 885 886 887
	if (log_buf != __log_buf)
		return;

	if (!early && !new_log_buf_len)
		log_buf_add_cpu();

888 889
	if (!new_log_buf_len)
		return;
L
Linus Torvalds 已提交
890

891
	if (early) {
892
		new_log_buf =
893
			memblock_virt_alloc(new_log_buf_len, LOG_ALIGN);
894
	} else {
895 896
		new_log_buf = memblock_virt_alloc_nopanic(new_log_buf_len,
							  LOG_ALIGN);
897 898 899 900 901 902 903 904
	}

	if (unlikely(!new_log_buf)) {
		pr_err("log_buf_len: %ld bytes not available\n",
			new_log_buf_len);
		return;
	}

905
	raw_spin_lock_irqsave(&logbuf_lock, flags);
906 907 908
	log_buf_len = new_log_buf_len;
	log_buf = new_log_buf;
	new_log_buf_len = 0;
909 910
	free = __LOG_BUF_LEN - log_next_idx;
	memcpy(log_buf, __log_buf, __LOG_BUF_LEN);
911
	raw_spin_unlock_irqrestore(&logbuf_lock, flags);
912

913
	pr_info("log_buf_len: %d bytes\n", log_buf_len);
914 915 916
	pr_info("early log buf free: %d(%d%%)\n",
		free, (free * 100) / __LOG_BUF_LEN);
}
L
Linus Torvalds 已提交
917

918 919 920 921 922
static bool __read_mostly ignore_loglevel;

static int __init ignore_loglevel_setup(char *str)
{
	ignore_loglevel = 1;
923
	pr_info("debug: ignoring loglevel setting.\n");
924 925 926 927 928 929 930 931 932

	return 0;
}

early_param("ignore_loglevel", ignore_loglevel_setup);
module_param(ignore_loglevel, bool, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(ignore_loglevel, "ignore loglevel setting, to"
	"print all kernel messages to the console.");

R
Randy Dunlap 已提交
933 934
#ifdef CONFIG_BOOT_PRINTK_DELAY

935
static int boot_delay; /* msecs delay after each printk during bootup */
936
static unsigned long long loops_per_msec;	/* based on boot_delay */
R
Randy Dunlap 已提交
937 938 939 940 941 942 943 944 945 946 947 948

static int __init boot_delay_setup(char *str)
{
	unsigned long lpj;

	lpj = preset_lpj ? preset_lpj : 1000000;	/* some guess */
	loops_per_msec = (unsigned long long)lpj / 1000 * HZ;

	get_option(&str, &boot_delay);
	if (boot_delay > 10 * 1000)
		boot_delay = 0;

949 950 951
	pr_debug("boot_delay: %u, preset_lpj: %ld, lpj: %lu, "
		"HZ: %d, loops_per_msec: %llu\n",
		boot_delay, preset_lpj, lpj, HZ, loops_per_msec);
952
	return 0;
R
Randy Dunlap 已提交
953
}
954
early_param("boot_delay", boot_delay_setup);
R
Randy Dunlap 已提交
955

956
static void boot_delay_msec(int level)
R
Randy Dunlap 已提交
957 958 959 960
{
	unsigned long long k;
	unsigned long timeout;

961 962
	if ((boot_delay == 0 || system_state != SYSTEM_BOOTING)
		|| (level >= console_loglevel && !ignore_loglevel)) {
R
Randy Dunlap 已提交
963
		return;
964
	}
R
Randy Dunlap 已提交
965

966
	k = (unsigned long long)loops_per_msec * boot_delay;
R
Randy Dunlap 已提交
967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982

	timeout = jiffies + msecs_to_jiffies(boot_delay);
	while (k) {
		k--;
		cpu_relax();
		/*
		 * use (volatile) jiffies to prevent
		 * compiler reduction; loop termination via jiffies
		 * is secondary and may or may not happen.
		 */
		if (time_after(jiffies, timeout))
			break;
		touch_nmi_watchdog();
	}
}
#else
983
static inline void boot_delay_msec(int level)
R
Randy Dunlap 已提交
984 985 986 987
{
}
#endif

A
Alex Elder 已提交
988
static bool printk_time = IS_ENABLED(CONFIG_PRINTK_TIME);
989 990
module_param_named(time, printk_time, bool, S_IRUGO | S_IWUSR);

991 992 993 994 995 996 997
static size_t print_time(u64 ts, char *buf)
{
	unsigned long rem_nsec;

	if (!printk_time)
		return 0;

998 999
	rem_nsec = do_div(ts, 1000000000);

1000
	if (!buf)
1001
		return snprintf(NULL, 0, "[%5lu.000000] ", (unsigned long)ts);
1002 1003 1004 1005 1006

	return sprintf(buf, "[%5lu.%06lu] ",
		       (unsigned long)ts, rem_nsec / 1000);
}

1007
static size_t print_prefix(const struct printk_log *msg, bool syslog, char *buf)
1008
{
1009
	size_t len = 0;
1010
	unsigned int prefix = (msg->facility << 3) | msg->level;
1011

1012 1013
	if (syslog) {
		if (buf) {
1014
			len += sprintf(buf, "<%u>", prefix);
1015 1016
		} else {
			len += 3;
1017 1018 1019 1020 1021
			if (prefix > 999)
				len += 3;
			else if (prefix > 99)
				len += 2;
			else if (prefix > 9)
1022 1023 1024
				len++;
		}
	}
1025

1026
	len += print_time(msg->ts_nsec, buf ? buf + len : NULL);
1027
	return len;
1028 1029
}

1030
static size_t msg_print_text(const struct printk_log *msg, enum log_flags prev,
1031
			     bool syslog, char *buf, size_t size)
1032
{
1033 1034
	const char *text = log_text(msg);
	size_t text_size = msg->text_len;
1035 1036
	bool prefix = true;
	bool newline = true;
1037 1038
	size_t len = 0;

1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049
	if ((prev & LOG_CONT) && !(msg->flags & LOG_PREFIX))
		prefix = false;

	if (msg->flags & LOG_CONT) {
		if ((prev & LOG_CONT) && !(prev & LOG_NEWLINE))
			prefix = false;

		if (!(msg->flags & LOG_NEWLINE))
			newline = false;
	}

1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
	do {
		const char *next = memchr(text, '\n', text_size);
		size_t text_len;

		if (next) {
			text_len = next - text;
			next++;
			text_size -= next - text;
		} else {
			text_len = text_size;
		}
1061

1062 1063
		if (buf) {
			if (print_prefix(msg, syslog, NULL) +
1064
			    text_len + 1 >= size - len)
1065
				break;
1066

1067 1068
			if (prefix)
				len += print_prefix(msg, syslog, buf + len);
1069 1070
			memcpy(buf + len, text, text_len);
			len += text_len;
1071 1072
			if (next || newline)
				buf[len++] = '\n';
1073 1074
		} else {
			/* SYSLOG_ACTION_* buffer size only calculation */
1075 1076 1077 1078 1079
			if (prefix)
				len += print_prefix(msg, syslog, NULL);
			len += text_len;
			if (next || newline)
				len++;
1080
		}
1081

1082
		prefix = true;
1083 1084
		text = next;
	} while (text);
1085 1086 1087 1088 1089 1090 1091

	return len;
}

static int syslog_print(char __user *buf, int size)
{
	char *text;
1092
	struct printk_log *msg;
1093
	int len = 0;
1094

1095
	text = kmalloc(LOG_LINE_MAX + PREFIX_MAX, GFP_KERNEL);
1096 1097 1098
	if (!text)
		return -ENOMEM;

1099 1100
	while (size > 0) {
		size_t n;
1101
		size_t skip;
1102 1103 1104 1105 1106 1107

		raw_spin_lock_irq(&logbuf_lock);
		if (syslog_seq < log_first_seq) {
			/* messages are gone, move to first one */
			syslog_seq = log_first_seq;
			syslog_idx = log_first_idx;
1108
			syslog_prev = 0;
1109
			syslog_partial = 0;
1110 1111 1112 1113 1114
		}
		if (syslog_seq == log_next_seq) {
			raw_spin_unlock_irq(&logbuf_lock);
			break;
		}
1115 1116

		skip = syslog_partial;
1117
		msg = log_from_idx(syslog_idx);
1118 1119
		n = msg_print_text(msg, syslog_prev, true, text,
				   LOG_LINE_MAX + PREFIX_MAX);
1120 1121
		if (n - syslog_partial <= size) {
			/* message fits into buffer, move forward */
1122 1123
			syslog_idx = log_next(syslog_idx);
			syslog_seq++;
1124
			syslog_prev = msg->flags;
1125 1126 1127 1128 1129 1130
			n -= syslog_partial;
			syslog_partial = 0;
		} else if (!len){
			/* partial read(), remember position */
			n = size;
			syslog_partial += n;
1131 1132 1133 1134 1135 1136 1137
		} else
			n = 0;
		raw_spin_unlock_irq(&logbuf_lock);

		if (!n)
			break;

1138
		if (copy_to_user(buf, text + skip, n)) {
1139 1140 1141 1142
			if (!len)
				len = -EFAULT;
			break;
		}
1143 1144 1145 1146

		len += n;
		size -= n;
		buf += n;
1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157
	}

	kfree(text);
	return len;
}

static int syslog_print_all(char __user *buf, int size, bool clear)
{
	char *text;
	int len = 0;

1158
	text = kmalloc(LOG_LINE_MAX + PREFIX_MAX, GFP_KERNEL);
1159 1160 1161 1162 1163 1164 1165 1166
	if (!text)
		return -ENOMEM;

	raw_spin_lock_irq(&logbuf_lock);
	if (buf) {
		u64 next_seq;
		u64 seq;
		u32 idx;
1167
		enum log_flags prev;
1168 1169 1170 1171 1172 1173 1174 1175 1176 1177

		if (clear_seq < log_first_seq) {
			/* messages are gone, move to first available one */
			clear_seq = log_first_seq;
			clear_idx = log_first_idx;
		}

		/*
		 * Find first record that fits, including all following records,
		 * into the user-provided buffer for this dump.
1178
		 */
1179 1180
		seq = clear_seq;
		idx = clear_idx;
1181
		prev = 0;
1182
		while (seq < log_next_seq) {
1183
			struct printk_log *msg = log_from_idx(idx);
1184

1185
			len += msg_print_text(msg, prev, true, NULL, 0);
1186
			prev = msg->flags;
1187 1188 1189
			idx = log_next(idx);
			seq++;
		}
1190 1191

		/* move first record forward until length fits into the buffer */
1192 1193
		seq = clear_seq;
		idx = clear_idx;
1194
		prev = 0;
1195
		while (len > size && seq < log_next_seq) {
1196
			struct printk_log *msg = log_from_idx(idx);
1197

1198
			len -= msg_print_text(msg, prev, true, NULL, 0);
1199
			prev = msg->flags;
1200 1201 1202 1203
			idx = log_next(idx);
			seq++;
		}

1204
		/* last message fitting into this dump */
1205 1206 1207 1208
		next_seq = log_next_seq;

		len = 0;
		while (len >= 0 && seq < next_seq) {
1209
			struct printk_log *msg = log_from_idx(idx);
1210 1211
			int textlen;

1212 1213
			textlen = msg_print_text(msg, prev, true, text,
						 LOG_LINE_MAX + PREFIX_MAX);
1214 1215 1216 1217 1218 1219
			if (textlen < 0) {
				len = textlen;
				break;
			}
			idx = log_next(idx);
			seq++;
1220
			prev = msg->flags;
1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232

			raw_spin_unlock_irq(&logbuf_lock);
			if (copy_to_user(buf + len, text, textlen))
				len = -EFAULT;
			else
				len += textlen;
			raw_spin_lock_irq(&logbuf_lock);

			if (seq < log_first_seq) {
				/* messages are gone, move to next one */
				seq = log_first_seq;
				idx = log_first_idx;
1233
				prev = 0;
1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247
			}
		}
	}

	if (clear) {
		clear_seq = log_next_seq;
		clear_idx = log_next_idx;
	}
	raw_spin_unlock_irq(&logbuf_lock);

	kfree(text);
	return len;
}

1248
int do_syslog(int type, char __user *buf, int len, bool from_file)
L
Linus Torvalds 已提交
1249
{
1250 1251
	bool clear = false;
	static int saved_console_loglevel = -1;
1252
	int error;
L
Linus Torvalds 已提交
1253

1254 1255 1256
	error = check_syslog_permissions(type, from_file);
	if (error)
		goto out;
1257 1258

	error = security_syslog(type);
L
Linus Torvalds 已提交
1259 1260 1261 1262
	if (error)
		return error;

	switch (type) {
1263
	case SYSLOG_ACTION_CLOSE:	/* Close log */
L
Linus Torvalds 已提交
1264
		break;
1265
	case SYSLOG_ACTION_OPEN:	/* Open log */
L
Linus Torvalds 已提交
1266
		break;
1267
	case SYSLOG_ACTION_READ:	/* Read from log */
L
Linus Torvalds 已提交
1268 1269 1270 1271 1272 1273 1274 1275 1276 1277
		error = -EINVAL;
		if (!buf || len < 0)
			goto out;
		error = 0;
		if (!len)
			goto out;
		if (!access_ok(VERIFY_WRITE, buf, len)) {
			error = -EFAULT;
			goto out;
		}
J
Jesper Juhl 已提交
1278
		error = wait_event_interruptible(log_wait,
1279
						 syslog_seq != log_next_seq);
1280
		if (error)
L
Linus Torvalds 已提交
1281
			goto out;
1282
		error = syslog_print(buf, len);
L
Linus Torvalds 已提交
1283
		break;
1284 1285
	/* Read/clear last kernel messages */
	case SYSLOG_ACTION_READ_CLEAR:
1286
		clear = true;
L
Linus Torvalds 已提交
1287
		/* FALL THRU */
1288 1289
	/* Read last kernel messages */
	case SYSLOG_ACTION_READ_ALL:
L
Linus Torvalds 已提交
1290 1291 1292 1293 1294 1295 1296 1297 1298 1299
		error = -EINVAL;
		if (!buf || len < 0)
			goto out;
		error = 0;
		if (!len)
			goto out;
		if (!access_ok(VERIFY_WRITE, buf, len)) {
			error = -EFAULT;
			goto out;
		}
1300
		error = syslog_print_all(buf, len, clear);
L
Linus Torvalds 已提交
1301
		break;
1302 1303
	/* Clear ring buffer */
	case SYSLOG_ACTION_CLEAR:
1304
		syslog_print_all(NULL, 0, true);
1305
		break;
1306 1307
	/* Disable logging to console */
	case SYSLOG_ACTION_CONSOLE_OFF:
1308 1309
		if (saved_console_loglevel == -1)
			saved_console_loglevel = console_loglevel;
L
Linus Torvalds 已提交
1310 1311
		console_loglevel = minimum_console_loglevel;
		break;
1312 1313
	/* Enable logging to console */
	case SYSLOG_ACTION_CONSOLE_ON:
1314 1315 1316 1317
		if (saved_console_loglevel != -1) {
			console_loglevel = saved_console_loglevel;
			saved_console_loglevel = -1;
		}
L
Linus Torvalds 已提交
1318
		break;
1319 1320
	/* Set level of messages printed to console */
	case SYSLOG_ACTION_CONSOLE_LEVEL:
L
Linus Torvalds 已提交
1321 1322 1323 1324 1325 1326
		error = -EINVAL;
		if (len < 1 || len > 8)
			goto out;
		if (len < minimum_console_loglevel)
			len = minimum_console_loglevel;
		console_loglevel = len;
1327 1328
		/* Implicitly re-enable logging to console */
		saved_console_loglevel = -1;
L
Linus Torvalds 已提交
1329 1330
		error = 0;
		break;
1331 1332
	/* Number of chars in the log buffer */
	case SYSLOG_ACTION_SIZE_UNREAD:
1333 1334 1335 1336 1337
		raw_spin_lock_irq(&logbuf_lock);
		if (syslog_seq < log_first_seq) {
			/* messages are gone, move to first one */
			syslog_seq = log_first_seq;
			syslog_idx = log_first_idx;
1338
			syslog_prev = 0;
1339
			syslog_partial = 0;
1340 1341 1342 1343 1344 1345 1346
		}
		if (from_file) {
			/*
			 * Short-cut for poll(/"proc/kmsg") which simply checks
			 * for pending data, not the size; return the count of
			 * records, not the length.
			 */
1347
			error = log_next_seq - syslog_seq;
1348
		} else {
1349 1350 1351
			u64 seq = syslog_seq;
			u32 idx = syslog_idx;
			enum log_flags prev = syslog_prev;
1352 1353 1354

			error = 0;
			while (seq < log_next_seq) {
1355
				struct printk_log *msg = log_from_idx(idx);
1356

1357
				error += msg_print_text(msg, prev, true, NULL, 0);
1358 1359
				idx = log_next(idx);
				seq++;
1360
				prev = msg->flags;
1361
			}
1362
			error -= syslog_partial;
1363 1364
		}
		raw_spin_unlock_irq(&logbuf_lock);
L
Linus Torvalds 已提交
1365
		break;
1366 1367
	/* Size of the log buffer */
	case SYSLOG_ACTION_SIZE_BUFFER:
L
Linus Torvalds 已提交
1368 1369 1370 1371 1372 1373 1374 1375 1376 1377
		error = log_buf_len;
		break;
	default:
		error = -EINVAL;
		break;
	}
out:
	return error;
}

1378
SYSCALL_DEFINE3(syslog, int, type, char __user *, buf, int, len)
L
Linus Torvalds 已提交
1379
{
1380
	return do_syslog(type, buf, len, SYSLOG_FROM_READER);
L
Linus Torvalds 已提交
1381 1382 1383 1384 1385
}

/*
 * Call the console drivers, asking them to write out
 * log_buf[start] to log_buf[end - 1].
1386
 * The console_lock must be held.
L
Linus Torvalds 已提交
1387
 */
1388
static void call_console_drivers(int level, const char *text, size_t len)
L
Linus Torvalds 已提交
1389
{
1390
	struct console *con;
L
Linus Torvalds 已提交
1391

1392
	trace_console(text, len);
1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410

	if (level >= console_loglevel && !ignore_loglevel)
		return;
	if (!console_drivers)
		return;

	for_each_console(con) {
		if (exclusive_console && con != exclusive_console)
			continue;
		if (!(con->flags & CON_ENABLED))
			continue;
		if (!con->write)
			continue;
		if (!cpu_online(smp_processor_id()) &&
		    !(con->flags & CON_ANYTIME))
			continue;
		con->write(con, text, len);
	}
L
Linus Torvalds 已提交
1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422
}

/*
 * Zap console related locks when oopsing. Only zap at most once
 * every 10 seconds, to leave time for slow consoles to print a
 * full oops.
 */
static void zap_locks(void)
{
	static unsigned long oops_timestamp;

	if (time_after_eq(jiffies, oops_timestamp) &&
J
Jesper Juhl 已提交
1423
			!time_after(jiffies, oops_timestamp + 30 * HZ))
L
Linus Torvalds 已提交
1424 1425 1426 1427
		return;

	oops_timestamp = jiffies;

1428
	debug_locks_off();
L
Linus Torvalds 已提交
1429
	/* If a crash is occurring, make sure we can't deadlock */
1430
	raw_spin_lock_init(&logbuf_lock);
L
Linus Torvalds 已提交
1431
	/* And make sure that we print immediately */
1432
	sema_init(&console_sem, 1);
L
Linus Torvalds 已提交
1433 1434
}

1435 1436 1437 1438
/*
 * Check if we have any console that is capable of printing while cpu is
 * booting or shutting down. Requires console_sem.
 */
1439 1440 1441 1442
static int have_callable_console(void)
{
	struct console *con;

1443
	for_each_console(con)
1444 1445 1446 1447 1448 1449
		if (con->flags & CON_ANYTIME)
			return 1;

	return 0;
}

1450 1451 1452
/*
 * Can we actually use the console at this time on this cpu?
 *
1453 1454 1455 1456
 * Console drivers may assume that per-cpu resources have
 * been allocated. So unless they're explicitly marked as
 * being able to cope (CON_ANYTIME) don't call them until
 * this CPU is officially up.
1457 1458 1459 1460 1461 1462 1463 1464 1465
 */
static inline int can_use_console(unsigned int cpu)
{
	return cpu_online(cpu) || have_callable_console();
}

/*
 * Try to get console ownership to actually show the kernel
 * messages from a 'printk'. Return true (and with the
1466
 * console_lock held, and 'console_locked' set) if it
1467 1468
 * is successful, false otherwise.
 */
1469
static int console_trylock_for_printk(unsigned int cpu)
1470
{
1471 1472 1473 1474 1475 1476 1477 1478 1479
	if (!console_trylock())
		return 0;
	/*
	 * If we can't use the console, we need to release the console
	 * semaphore by hand to avoid flushing the buffer. We need to hold the
	 * console semaphore in order to do this test safely.
	 */
	if (!can_use_console(cpu)) {
		console_locked = 0;
1480
		up_console_sem();
1481 1482 1483
		return 0;
	}
	return 1;
1484
}
1485

1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499
int printk_delay_msec __read_mostly;

static inline void printk_delay(void)
{
	if (unlikely(printk_delay_msec)) {
		int m = printk_delay_msec;

		while (m--) {
			mdelay(1);
			touch_nmi_watchdog();
		}
	}
}

1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512
/*
 * Continuation lines are buffered, and not committed to the record buffer
 * until the line is complete, or a race forces it. The line fragments
 * though, are printed immediately to the consoles to ensure everything has
 * reached the console in case of a kernel crash.
 */
static struct cont {
	char buf[LOG_LINE_MAX];
	size_t len;			/* length == 0 means unused buffer */
	size_t cons;			/* bytes written to console */
	struct task_struct *owner;	/* task of first print*/
	u64 ts_nsec;			/* time of first print */
	u8 level;			/* log level of first message */
A
Alex Elder 已提交
1513
	u8 facility;			/* log facility of first message */
1514
	enum log_flags flags;		/* prefix, newline flags */
1515 1516 1517
	bool flushed:1;			/* buffer sealed and committed */
} cont;

1518
static void cont_flush(enum log_flags flags)
1519 1520 1521 1522 1523 1524
{
	if (cont.flushed)
		return;
	if (cont.len == 0)
		return;

1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543
	if (cont.cons) {
		/*
		 * If a fragment of this line was directly flushed to the
		 * console; wait for the console to pick up the rest of the
		 * line. LOG_NOCONS suppresses a duplicated output.
		 */
		log_store(cont.facility, cont.level, flags | LOG_NOCONS,
			  cont.ts_nsec, NULL, 0, cont.buf, cont.len);
		cont.flags = flags;
		cont.flushed = true;
	} else {
		/*
		 * If no fragment of this line ever reached the console,
		 * just submit it to the store and free the buffer.
		 */
		log_store(cont.facility, cont.level, flags, 0,
			  NULL, 0, cont.buf, cont.len);
		cont.len = 0;
	}
1544 1545 1546 1547 1548 1549 1550 1551
}

static bool cont_add(int facility, int level, const char *text, size_t len)
{
	if (cont.len && cont.flushed)
		return false;

	if (cont.len + len > sizeof(cont.buf)) {
1552 1553
		/* the line gets too long, split it up in separate records */
		cont_flush(LOG_CONT);
1554 1555 1556 1557 1558 1559 1560 1561
		return false;
	}

	if (!cont.len) {
		cont.facility = facility;
		cont.level = level;
		cont.owner = current;
		cont.ts_nsec = local_clock();
1562
		cont.flags = 0;
1563 1564 1565 1566 1567 1568
		cont.cons = 0;
		cont.flushed = false;
	}

	memcpy(cont.buf + cont.len, text, len);
	cont.len += len;
1569 1570 1571 1572

	if (cont.len > (sizeof(cont.buf) * 80) / 100)
		cont_flush(LOG_CONT);

1573 1574 1575 1576 1577 1578 1579 1580
	return true;
}

static size_t cont_print_text(char *text, size_t size)
{
	size_t textlen = 0;
	size_t len;

1581
	if (cont.cons == 0 && (console_prev & LOG_NEWLINE)) {
1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595
		textlen += print_time(cont.ts_nsec, text);
		size -= textlen;
	}

	len = cont.len - cont.cons;
	if (len > 0) {
		if (len+1 > size)
			len = size-1;
		memcpy(text + textlen, cont.buf + cont.cons, len);
		textlen += len;
		cont.cons = cont.len;
	}

	if (cont.flushed) {
1596 1597
		if (cont.flags & LOG_NEWLINE)
			text[textlen++] = '\n';
1598 1599 1600 1601 1602 1603
		/* got everything, release buffer */
		cont.len = 0;
	}
	return textlen;
}

1604 1605 1606
asmlinkage int vprintk_emit(int facility, int level,
			    const char *dict, size_t dictlen,
			    const char *fmt, va_list args)
L
Linus Torvalds 已提交
1607
{
1608 1609 1610
	static int recursion_bug;
	static char textbuf[LOG_LINE_MAX];
	char *text = textbuf;
1611
	size_t text_len = 0;
1612
	enum log_flags lflags = 0;
1613
	unsigned long flags;
1614
	int this_cpu;
1615
	int printed_len = 0;
1616
	bool in_sched = false;
1617 1618 1619
	/* cpu currently holding logbuf_lock in this function */
	static volatile unsigned int logbuf_cpu = UINT_MAX;

1620 1621 1622 1623
	if (level == SCHED_MESSAGE_LOGLEVEL) {
		level = -1;
		in_sched = true;
	}
L
Linus Torvalds 已提交
1624

1625
	boot_delay_msec(level);
1626
	printk_delay();
R
Randy Dunlap 已提交
1627

L
Linus Torvalds 已提交
1628
	/* This stops the holder of console_sem just where we want him */
1629
	local_irq_save(flags);
1630 1631 1632 1633 1634
	this_cpu = smp_processor_id();

	/*
	 * Ouch, printk recursed into itself!
	 */
1635
	if (unlikely(logbuf_cpu == this_cpu)) {
1636 1637 1638 1639 1640 1641 1642
		/*
		 * If a crash is occurring during printk() on this CPU,
		 * then try to get the crash message out but make sure
		 * we can't deadlock. Otherwise just return to avoid the
		 * recursion and return - but flag the recursion so that
		 * it can be printed at the next appropriate moment:
		 */
1643
		if (!oops_in_progress && !lockdep_recursing(current)) {
1644
			recursion_bug = 1;
1645
			goto out_restore_irqs;
1646 1647 1648 1649
		}
		zap_locks();
	}

1650
	lockdep_off();
1651
	raw_spin_lock(&logbuf_lock);
1652
	logbuf_cpu = this_cpu;
L
Linus Torvalds 已提交
1653

1654
	if (recursion_bug) {
1655 1656 1657
		static const char recursion_msg[] =
			"BUG: recent printk recursion!";

1658
		recursion_bug = 0;
1659
		text_len = strlen(recursion_msg);
1660
		/* emit KERN_CRIT message */
1661 1662
		printed_len += log_store(0, 2, LOG_PREFIX|LOG_NEWLINE, 0,
					 NULL, 0, recursion_msg, text_len);
1663
	}
L
Linus Torvalds 已提交
1664

1665 1666 1667 1668
	/*
	 * The printf needs to come first; we need the syslog
	 * prefix which might be passed-in as a parameter.
	 */
1669 1670 1671 1672 1673 1674
	if (in_sched)
		text_len = scnprintf(text, sizeof(textbuf),
				     KERN_WARNING "[sched_delayed] ");

	text_len += vscnprintf(text + text_len,
			       sizeof(textbuf) - text_len, fmt, args);
1675

1676
	/* mark and strip a trailing newline */
1677 1678
	if (text_len && text[text_len-1] == '\n') {
		text_len--;
1679
		lflags |= LOG_NEWLINE;
1680
	}
1681

1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694
	/* strip kernel syslog prefix and extract log level or control flags */
	if (facility == 0) {
		int kern_level = printk_get_level(text);

		if (kern_level) {
			const char *end_of_header = printk_skip_level(text);
			switch (kern_level) {
			case '0' ... '7':
				if (level == -1)
					level = kern_level - '0';
			case 'd':	/* KERN_DEFAULT */
				lflags |= LOG_PREFIX;
			}
1695 1696 1697 1698 1699
			/*
			 * No need to check length here because vscnprintf
			 * put '\0' at the end of the string. Only valid and
			 * newly printed level is detected.
			 */
1700 1701
			text_len -= end_of_header - text;
			text = (char *)end_of_header;
1702 1703 1704
		}
	}

1705 1706
	if (level == -1)
		level = default_message_loglevel;
1707

1708 1709
	if (dict)
		lflags |= LOG_PREFIX|LOG_NEWLINE;
1710

1711
	if (!(lflags & LOG_NEWLINE)) {
1712 1713 1714 1715
		/*
		 * Flush the conflicting buffer. An earlier newline was missing,
		 * or another task also prints continuation lines.
		 */
1716
		if (cont.len && (lflags & LOG_PREFIX || cont.owner != current))
1717
			cont_flush(LOG_NEWLINE);
1718

1719
		/* buffer line if possible, otherwise store it right away */
1720 1721 1722 1723 1724 1725
		if (cont_add(facility, level, text, text_len))
			printed_len += text_len;
		else
			printed_len += log_store(facility, level,
						 lflags | LOG_CONT, 0,
						 dict, dictlen, text, text_len);
1726
	} else {
1727
		bool stored = false;
1728

1729
		/*
1730 1731 1732 1733
		 * If an earlier newline was missing and it was the same task,
		 * either merge it with the current buffer and flush, or if
		 * there was a race with interrupts (prefix == true) then just
		 * flush it out and store this line separately.
1734 1735
		 * If the preceding printk was from a different task and missed
		 * a newline, flush and append the newline.
1736
		 */
1737 1738 1739 1740
		if (cont.len) {
			if (cont.owner == current && !(lflags & LOG_PREFIX))
				stored = cont_add(facility, level, text,
						  text_len);
1741
			cont_flush(LOG_NEWLINE);
1742
		}
1743

1744 1745 1746 1747 1748
		if (stored)
			printed_len += text_len;
		else
			printed_len += log_store(facility, level, lflags, 0,
						 dict, dictlen, text, text_len);
L
Linus Torvalds 已提交
1749 1750
	}

1751 1752
	logbuf_cpu = UINT_MAX;
	raw_spin_unlock(&logbuf_lock);
1753

1754
	/* If called from the scheduler, we can not call up(). */
1755 1756 1757 1758 1759 1760 1761 1762 1763
	if (!in_sched) {
		/*
		 * Try to acquire and then immediately release the console
		 * semaphore.  The release will print out buffers and wake up
		 * /dev/kmsg and syslog() users.
		 */
		if (console_trylock_for_printk(this_cpu))
			console_unlock();
	}
1764

1765 1766 1767
	lockdep_on();
out_restore_irqs:
	local_irq_restore(flags);
L
Linus Torvalds 已提交
1768 1769
	return printed_len;
}
1770 1771 1772 1773 1774 1775
EXPORT_SYMBOL(vprintk_emit);

asmlinkage int vprintk(const char *fmt, va_list args)
{
	return vprintk_emit(0, -1, NULL, 0, fmt, args);
}
L
Linus Torvalds 已提交
1776 1777
EXPORT_SYMBOL(vprintk);

1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813
asmlinkage int printk_emit(int facility, int level,
			   const char *dict, size_t dictlen,
			   const char *fmt, ...)
{
	va_list args;
	int r;

	va_start(args, fmt);
	r = vprintk_emit(facility, level, dict, dictlen, fmt, args);
	va_end(args);

	return r;
}
EXPORT_SYMBOL(printk_emit);

/**
 * printk - print a kernel message
 * @fmt: format string
 *
 * This is printk(). It can be called from any context. We want it to work.
 *
 * We try to grab the console_lock. If we succeed, it's easy - we log the
 * output and call the console drivers.  If we fail to get the semaphore, we
 * place the output into the log buffer and return. The current holder of
 * the console_sem will notice the new output in console_unlock(); and will
 * send it to the consoles before releasing the lock.
 *
 * One effect of this deferred printing is that code which calls printk() and
 * then changes console_loglevel may break. This is because console_loglevel
 * is inspected when the actual printing occurs.
 *
 * See also:
 * printf(3)
 *
 * See the vsnprintf() documentation for format string extensions over C99.
 */
1814
asmlinkage __visible int printk(const char *fmt, ...)
1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833
{
	va_list args;
	int r;

#ifdef CONFIG_KGDB_KDB
	if (unlikely(kdb_trap_printk)) {
		va_start(args, fmt);
		r = vkdb_printf(fmt, args);
		va_end(args);
		return r;
	}
#endif
	va_start(args, fmt);
	r = vprintk_emit(0, -1, NULL, 0, fmt, args);
	va_end(args);

	return r;
}
EXPORT_SYMBOL(printk);
1834

1835
#else /* CONFIG_PRINTK */
M
Matt Mackall 已提交
1836

1837 1838
#define LOG_LINE_MAX		0
#define PREFIX_MAX		0
A
Alex Elder 已提交
1839

1840 1841
static u64 syslog_seq;
static u32 syslog_idx;
1842 1843
static u64 console_seq;
static u32 console_idx;
1844 1845 1846 1847
static enum log_flags syslog_prev;
static u64 log_first_seq;
static u32 log_first_idx;
static u64 log_next_seq;
1848
static enum log_flags console_prev;
1849 1850 1851 1852 1853 1854
static struct cont {
	size_t len;
	size_t cons;
	u8 level;
	bool flushed:1;
} cont;
1855
static struct printk_log *log_from_idx(u32 idx) { return NULL; }
1856 1857
static u32 log_next(u32 idx) { return 0; }
static void call_console_drivers(int level, const char *text, size_t len) {}
1858
static size_t msg_print_text(const struct printk_log *msg, enum log_flags prev,
1859
			     bool syslog, char *buf, size_t size) { return 0; }
1860
static size_t cont_print_text(char *text, size_t size) { return 0; }
M
Matt Mackall 已提交
1861

1862
#endif /* CONFIG_PRINTK */
M
Matt Mackall 已提交
1863

1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876
#ifdef CONFIG_EARLY_PRINTK
struct console *early_console;

void early_vprintk(const char *fmt, va_list ap)
{
	if (early_console) {
		char buf[512];
		int n = vscnprintf(buf, sizeof(buf), fmt, ap);

		early_console->write(early_console, buf, n);
	}
}

1877
asmlinkage __visible void early_printk(const char *fmt, ...)
1878 1879 1880 1881 1882 1883 1884 1885 1886
{
	va_list ap;

	va_start(ap, fmt);
	early_vprintk(fmt, ap);
	va_end(ap);
}
#endif

1887 1888 1889 1890 1891 1892 1893 1894 1895 1896
static int __add_preferred_console(char *name, int idx, char *options,
				   char *brl_options)
{
	struct console_cmdline *c;
	int i;

	/*
	 *	See if this tty is not yet registered, and
	 *	if we have a slot free.
	 */
1897 1898 1899 1900 1901 1902 1903
	for (i = 0, c = console_cmdline;
	     i < MAX_CMDLINECONSOLES && c->name[0];
	     i++, c++) {
		if (strcmp(c->name, name) == 0 && c->index == idx) {
			if (!brl_options)
				selected_console = i;
			return 0;
1904
		}
1905
	}
1906 1907 1908 1909 1910 1911
	if (i == MAX_CMDLINECONSOLES)
		return -E2BIG;
	if (!brl_options)
		selected_console = i;
	strlcpy(c->name, name, sizeof(c->name));
	c->options = options;
1912 1913
	braille_set_options(c, brl_options);

1914 1915 1916
	c->index = idx;
	return 0;
}
1917
/*
A
Alex Elder 已提交
1918 1919
 * Set up a console.  Called via do_early_param() in init/main.c
 * for each "console=" parameter in the boot command line.
1920 1921 1922
 */
static int __init console_setup(char *str)
{
A
Alex Elder 已提交
1923
	char buf[sizeof(console_cmdline[0].name) + 4]; /* 4 for "ttyS" */
1924
	char *s, *options, *brl_options = NULL;
1925 1926
	int idx;

1927 1928
	if (_braille_console_setup(&str, &brl_options))
		return 1;
1929

1930 1931 1932 1933
	/*
	 * Decode str into name, index, options.
	 */
	if (str[0] >= '0' && str[0] <= '9') {
Y
Yinghai Lu 已提交
1934 1935
		strcpy(buf, "ttyS");
		strncpy(buf + 4, str, sizeof(buf) - 5);
1936
	} else {
Y
Yinghai Lu 已提交
1937
		strncpy(buf, str, sizeof(buf) - 1);
1938
	}
Y
Yinghai Lu 已提交
1939
	buf[sizeof(buf) - 1] = 0;
A
Alex Elder 已提交
1940 1941
	options = strchr(str, ',');
	if (options)
1942 1943 1944
		*(options++) = 0;
#ifdef __sparc__
	if (!strcmp(str, "ttya"))
Y
Yinghai Lu 已提交
1945
		strcpy(buf, "ttyS0");
1946
	if (!strcmp(str, "ttyb"))
Y
Yinghai Lu 已提交
1947
		strcpy(buf, "ttyS1");
1948
#endif
Y
Yinghai Lu 已提交
1949
	for (s = buf; *s; s++)
A
Alex Elder 已提交
1950
		if (isdigit(*s) || *s == ',')
1951 1952 1953 1954
			break;
	idx = simple_strtoul(s, NULL, 10);
	*s = 0;

1955
	__add_preferred_console(buf, idx, options, brl_options);
1956
	console_set_on_cmdline = 1;
1957 1958 1959 1960
	return 1;
}
__setup("console=", console_setup);

1961 1962
/**
 * add_preferred_console - add a device to the list of preferred consoles.
1963 1964 1965
 * @name: device name
 * @idx: device index
 * @options: options for this console
1966 1967 1968 1969 1970 1971 1972 1973
 *
 * The last preferred console added will be used for kernel messages
 * and stdin/out/err for init.  Normally this is used by console_setup
 * above to handle user-supplied console arguments; however it can also
 * be used by arch-specific code either to override the user or more
 * commonly to provide a default console (ie from PROM variables) when
 * the user has not supplied one.
 */
1974
int add_preferred_console(char *name, int idx, char *options)
1975
{
1976
	return __add_preferred_console(name, idx, options, NULL);
1977 1978
}

1979
int update_console_cmdline(char *name, int idx, char *name_new, int idx_new, char *options)
1980 1981 1982 1983
{
	struct console_cmdline *c;
	int i;

1984 1985 1986 1987 1988 1989 1990 1991
	for (i = 0, c = console_cmdline;
	     i < MAX_CMDLINECONSOLES && c->name[0];
	     i++, c++)
		if (strcmp(c->name, name) == 0 && c->index == idx) {
			strlcpy(c->name, name_new, sizeof(c->name));
			c->options = options;
			c->index = idx_new;
			return i;
1992 1993 1994 1995 1996
		}
	/* not found */
	return -1;
}

1997
bool console_suspend_enabled = 1;
1998 1999 2000 2001 2002 2003 2004 2005
EXPORT_SYMBOL(console_suspend_enabled);

static int __init console_suspend_disable(char *str)
{
	console_suspend_enabled = 0;
	return 1;
}
__setup("no_console_suspend", console_suspend_disable);
2006 2007 2008 2009
module_param_named(console_suspend, console_suspend_enabled,
		bool, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(console_suspend, "suspend console during suspend"
	" and hibernate operations");
2010

2011 2012 2013 2014 2015 2016 2017
/**
 * suspend_console - suspend the console subsystem
 *
 * This disables printk() while we go into suspend states
 */
void suspend_console(void)
{
2018 2019
	if (!console_suspend_enabled)
		return;
2020
	printk("Suspending console(s) (use no_console_suspend to debug)\n");
2021
	console_lock();
2022
	console_suspended = 1;
2023
	up_console_sem();
2024 2025 2026 2027
}

void resume_console(void)
{
2028 2029
	if (!console_suspend_enabled)
		return;
2030
	down_console_sem();
2031
	console_suspended = 0;
2032
	console_unlock();
2033 2034
}

2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045
/**
 * console_cpu_notify - print deferred console messages after CPU hotplug
 * @self: notifier struct
 * @action: CPU hotplug event
 * @hcpu: unused
 *
 * If printk() is called from a CPU that is not online yet, the messages
 * will be spooled but will not show up on the console.  This function is
 * called when a new CPU comes online (or fails to come up), and ensures
 * that any such output gets printed.
 */
2046
static int console_cpu_notify(struct notifier_block *self,
2047 2048 2049 2050 2051 2052 2053
	unsigned long action, void *hcpu)
{
	switch (action) {
	case CPU_ONLINE:
	case CPU_DEAD:
	case CPU_DOWN_FAILED:
	case CPU_UP_CANCELED:
2054 2055
		console_lock();
		console_unlock();
2056 2057 2058 2059
	}
	return NOTIFY_OK;
}

L
Linus Torvalds 已提交
2060
/**
2061
 * console_lock - lock the console system for exclusive use.
L
Linus Torvalds 已提交
2062
 *
2063
 * Acquires a lock which guarantees that the caller has
L
Linus Torvalds 已提交
2064 2065 2066 2067
 * exclusive access to the console system and the console_drivers list.
 *
 * Can sleep, returns nothing.
 */
2068
void console_lock(void)
L
Linus Torvalds 已提交
2069
{
2070 2071
	might_sleep();

2072
	down_console_sem();
2073 2074
	if (console_suspended)
		return;
L
Linus Torvalds 已提交
2075 2076 2077
	console_locked = 1;
	console_may_schedule = 1;
}
2078
EXPORT_SYMBOL(console_lock);
L
Linus Torvalds 已提交
2079

2080 2081 2082
/**
 * console_trylock - try to lock the console system for exclusive use.
 *
A
Alex Elder 已提交
2083 2084
 * Try to acquire a lock which guarantees that the caller has exclusive
 * access to the console system and the console_drivers list.
2085 2086 2087 2088
 *
 * returns 1 on success, and 0 on failure to acquire the lock.
 */
int console_trylock(void)
L
Linus Torvalds 已提交
2089
{
2090
	if (down_trylock_console_sem())
2091
		return 0;
2092
	if (console_suspended) {
2093
		up_console_sem();
2094
		return 0;
2095
	}
L
Linus Torvalds 已提交
2096 2097
	console_locked = 1;
	console_may_schedule = 0;
2098
	return 1;
L
Linus Torvalds 已提交
2099
}
2100
EXPORT_SYMBOL(console_trylock);
L
Linus Torvalds 已提交
2101 2102 2103 2104 2105 2106

int is_console_locked(void)
{
	return console_locked;
}

2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134
static void console_cont_flush(char *text, size_t size)
{
	unsigned long flags;
	size_t len;

	raw_spin_lock_irqsave(&logbuf_lock, flags);

	if (!cont.len)
		goto out;

	/*
	 * We still queue earlier records, likely because the console was
	 * busy. The earlier ones need to be printed before this one, we
	 * did not flush any fragment so far, so just let it queue up.
	 */
	if (console_seq < log_next_seq && !cont.cons)
		goto out;

	len = cont_print_text(text, size);
	raw_spin_unlock(&logbuf_lock);
	stop_critical_timings();
	call_console_drivers(cont.level, text, len);
	start_critical_timings();
	local_irq_restore(flags);
	return;
out:
	raw_spin_unlock_irqrestore(&logbuf_lock, flags);
}
2135

L
Linus Torvalds 已提交
2136
/**
2137
 * console_unlock - unlock the console system
L
Linus Torvalds 已提交
2138
 *
2139
 * Releases the console_lock which the caller holds on the console system
L
Linus Torvalds 已提交
2140 2141
 * and the console driver list.
 *
2142 2143 2144
 * While the console_lock was held, console output may have been buffered
 * by printk().  If this is the case, console_unlock(); emits
 * the output prior to releasing the lock.
L
Linus Torvalds 已提交
2145
 *
2146
 * If there is output waiting, we wake /dev/kmsg and syslog() users.
L
Linus Torvalds 已提交
2147
 *
2148
 * console_unlock(); may be called from any context.
L
Linus Torvalds 已提交
2149
 */
2150
void console_unlock(void)
L
Linus Torvalds 已提交
2151
{
2152
	static char text[LOG_LINE_MAX + PREFIX_MAX];
2153
	static u64 seen_seq;
L
Linus Torvalds 已提交
2154
	unsigned long flags;
2155 2156
	bool wake_klogd = false;
	bool retry;
L
Linus Torvalds 已提交
2157

2158
	if (console_suspended) {
2159
		up_console_sem();
2160 2161
		return;
	}
2162 2163 2164

	console_may_schedule = 0;

2165
	/* flush buffered message fragment immediately to console */
2166
	console_cont_flush(text, sizeof(text));
2167
again:
2168
	for (;;) {
2169
		struct printk_log *msg;
2170
		size_t len;
2171 2172
		int level;

2173
		raw_spin_lock_irqsave(&logbuf_lock, flags);
2174 2175 2176 2177 2178 2179
		if (seen_seq != log_next_seq) {
			wake_klogd = true;
			seen_seq = log_next_seq;
		}

		if (console_seq < log_first_seq) {
2180 2181 2182
			len = sprintf(text, "** %u printk messages dropped ** ",
				      (unsigned)(log_first_seq - console_seq));

2183 2184 2185
			/* messages are gone, move to first one */
			console_seq = log_first_seq;
			console_idx = log_first_idx;
2186
			console_prev = 0;
2187 2188
		} else {
			len = 0;
2189
		}
2190
skip:
2191 2192 2193 2194
		if (console_seq == log_next_seq)
			break;

		msg = log_from_idx(console_idx);
2195 2196 2197 2198 2199 2200 2201
		if (msg->flags & LOG_NOCONS) {
			/*
			 * Skip record we have buffered and already printed
			 * directly to the console when we received it.
			 */
			console_idx = log_next(console_idx);
			console_seq++;
2202 2203 2204 2205 2206 2207
			/*
			 * We will get here again when we register a new
			 * CON_PRINTBUFFER console. Clear the flag so we
			 * will properly dump everything later.
			 */
			msg->flags &= ~LOG_NOCONS;
2208
			console_prev = msg->flags;
2209 2210
			goto skip;
		}
2211

2212
		level = msg->level;
2213 2214
		len += msg_print_text(msg, console_prev, false,
				      text + len, sizeof(text) - len);
2215 2216
		console_idx = log_next(console_idx);
		console_seq++;
2217
		console_prev = msg->flags;
2218
		raw_spin_unlock(&logbuf_lock);
2219

2220
		stop_critical_timings();	/* don't trace print latency */
2221
		call_console_drivers(level, text, len);
2222
		start_critical_timings();
L
Linus Torvalds 已提交
2223 2224 2225
		local_irq_restore(flags);
	}
	console_locked = 0;
2226 2227 2228 2229 2230

	/* Release the exclusive_console once it is used */
	if (unlikely(exclusive_console))
		exclusive_console = NULL;

2231
	raw_spin_unlock(&logbuf_lock);
2232

2233
	up_console_sem();
2234 2235 2236 2237 2238 2239 2240

	/*
	 * Someone could have filled up the buffer again, so re-check if there's
	 * something to flush. In case we cannot trylock the console_sem again,
	 * there's a new owner and the console_unlock() from them will do the
	 * flush, no worries.
	 */
2241
	raw_spin_lock(&logbuf_lock);
2242
	retry = console_seq != log_next_seq;
P
Peter Zijlstra 已提交
2243 2244
	raw_spin_unlock_irqrestore(&logbuf_lock, flags);

2245 2246 2247
	if (retry && console_trylock())
		goto again;

2248 2249
	if (wake_klogd)
		wake_up_klogd();
L
Linus Torvalds 已提交
2250
}
2251
EXPORT_SYMBOL(console_unlock);
L
Linus Torvalds 已提交
2252

2253 2254
/**
 * console_conditional_schedule - yield the CPU if required
L
Linus Torvalds 已提交
2255 2256 2257 2258 2259
 *
 * If the console code is currently allowed to sleep, and
 * if this CPU should yield the CPU to another task, do
 * so here.
 *
2260
 * Must be called within console_lock();.
L
Linus Torvalds 已提交
2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277
 */
void __sched console_conditional_schedule(void)
{
	if (console_may_schedule)
		cond_resched();
}
EXPORT_SYMBOL(console_conditional_schedule);

void console_unblank(void)
{
	struct console *c;

	/*
	 * console_unblank can no longer be called in interrupt context unless
	 * oops_in_progress is set to 1..
	 */
	if (oops_in_progress) {
2278
		if (down_trylock_console_sem() != 0)
L
Linus Torvalds 已提交
2279 2280
			return;
	} else
2281
		console_lock();
L
Linus Torvalds 已提交
2282 2283 2284

	console_locked = 1;
	console_may_schedule = 0;
2285
	for_each_console(c)
L
Linus Torvalds 已提交
2286 2287
		if ((c->flags & CON_ENABLED) && c->unblank)
			c->unblank();
2288
	console_unlock();
L
Linus Torvalds 已提交
2289 2290 2291 2292 2293 2294 2295 2296 2297 2298
}

/*
 * Return the console tty driver structure and its associated index
 */
struct tty_driver *console_device(int *index)
{
	struct console *c;
	struct tty_driver *driver = NULL;

2299
	console_lock();
2300
	for_each_console(c) {
L
Linus Torvalds 已提交
2301 2302 2303 2304 2305 2306
		if (!c->device)
			continue;
		driver = c->device(c, index);
		if (driver)
			break;
	}
2307
	console_unlock();
L
Linus Torvalds 已提交
2308 2309 2310 2311 2312 2313 2314 2315 2316 2317
	return driver;
}

/*
 * Prevent further output on the passed console device so that (for example)
 * serial drivers can disable console output before suspending a port, and can
 * re-enable output afterwards.
 */
void console_stop(struct console *console)
{
2318
	console_lock();
L
Linus Torvalds 已提交
2319
	console->flags &= ~CON_ENABLED;
2320
	console_unlock();
L
Linus Torvalds 已提交
2321 2322 2323 2324 2325
}
EXPORT_SYMBOL(console_stop);

void console_start(struct console *console)
{
2326
	console_lock();
L
Linus Torvalds 已提交
2327
	console->flags |= CON_ENABLED;
2328
	console_unlock();
L
Linus Torvalds 已提交
2329 2330 2331
}
EXPORT_SYMBOL(console_start);

2332 2333 2334 2335 2336
static int __read_mostly keep_bootcon;

static int __init keep_bootcon_setup(char *str)
{
	keep_bootcon = 1;
2337
	pr_info("debug: skip boot console de-registration.\n");
2338 2339 2340 2341 2342 2343

	return 0;
}

early_param("keep_bootcon", keep_bootcon_setup);

L
Linus Torvalds 已提交
2344 2345 2346 2347 2348
/*
 * The console driver calls this routine during kernel initialization
 * to register the console printing procedure with printk() and to
 * print any messages that were printed by the kernel before the
 * console driver was initialized.
2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361
 *
 * This can happen pretty early during the boot process (because of
 * early_printk) - sometimes before setup_arch() completes - be careful
 * of what kernel features are used - they may not be initialised yet.
 *
 * There are two types of consoles - bootconsoles (early_printk) and
 * "real" consoles (everything which is not a bootconsole) which are
 * handled differently.
 *  - Any number of bootconsoles can be registered at any time.
 *  - As soon as a "real" console is registered, all bootconsoles
 *    will be unregistered automatically.
 *  - Once a "real" console is registered, any attempt to register a
 *    bootconsoles will be rejected
L
Linus Torvalds 已提交
2362
 */
2363
void register_console(struct console *newcon)
L
Linus Torvalds 已提交
2364
{
J
Jesper Juhl 已提交
2365
	int i;
L
Linus Torvalds 已提交
2366
	unsigned long flags;
2367
	struct console *bcon = NULL;
2368
	struct console_cmdline *c;
L
Linus Torvalds 已提交
2369

2370 2371 2372 2373 2374 2375 2376
	if (console_drivers)
		for_each_console(bcon)
			if (WARN(bcon == newcon,
					"console '%s%d' already registered\n",
					bcon->name, bcon->index))
				return;

2377 2378 2379 2380 2381 2382 2383 2384
	/*
	 * before we register a new CON_BOOT console, make sure we don't
	 * already have a valid console
	 */
	if (console_drivers && newcon->flags & CON_BOOT) {
		/* find the last or real console */
		for_each_console(bcon) {
			if (!(bcon->flags & CON_BOOT)) {
2385
				pr_info("Too late to register bootconsole %s%d\n",
2386 2387 2388 2389
					newcon->name, newcon->index);
				return;
			}
		}
2390 2391
	}

2392 2393 2394 2395
	if (console_drivers && console_drivers->flags & CON_BOOT)
		bcon = console_drivers;

	if (preferred_console < 0 || bcon || !console_drivers)
L
Linus Torvalds 已提交
2396 2397
		preferred_console = selected_console;

2398 2399
	if (newcon->early_setup)
		newcon->early_setup();
2400

L
Linus Torvalds 已提交
2401 2402 2403 2404 2405 2406
	/*
	 *	See if we want to use this console driver. If we
	 *	didn't select a console we take the first one
	 *	that registers here.
	 */
	if (preferred_console < 0) {
2407 2408 2409 2410 2411 2412 2413
		if (newcon->index < 0)
			newcon->index = 0;
		if (newcon->setup == NULL ||
		    newcon->setup(newcon, NULL) == 0) {
			newcon->flags |= CON_ENABLED;
			if (newcon->device) {
				newcon->flags |= CON_CONSDEV;
2414 2415
				preferred_console = 0;
			}
L
Linus Torvalds 已提交
2416 2417 2418 2419 2420 2421 2422
		}
	}

	/*
	 *	See if this console matches one we selected on
	 *	the command line.
	 */
2423 2424 2425 2426
	for (i = 0, c = console_cmdline;
	     i < MAX_CMDLINECONSOLES && c->name[0];
	     i++, c++) {
		if (strcmp(c->name, newcon->name) != 0)
L
Linus Torvalds 已提交
2427
			continue;
2428
		if (newcon->index >= 0 &&
2429
		    newcon->index != c->index)
L
Linus Torvalds 已提交
2430
			continue;
2431
		if (newcon->index < 0)
2432
			newcon->index = c->index;
2433

2434
		if (_braille_register_console(newcon, c))
2435
			return;
2436

2437 2438
		if (newcon->setup &&
		    newcon->setup(newcon, console_cmdline[i].options) != 0)
L
Linus Torvalds 已提交
2439
			break;
2440
		newcon->flags |= CON_ENABLED;
2441
		newcon->index = c->index;
2442
		if (i == selected_console) {
2443
			newcon->flags |= CON_CONSDEV;
2444 2445
			preferred_console = selected_console;
		}
L
Linus Torvalds 已提交
2446 2447 2448
		break;
	}

2449
	if (!(newcon->flags & CON_ENABLED))
L
Linus Torvalds 已提交
2450 2451
		return;

2452 2453 2454 2455 2456 2457 2458
	/*
	 * If we have a bootconsole, and are switching to a real console,
	 * don't print everything out again, since when the boot console, and
	 * the real console are the same physical device, it's annoying to
	 * see the beginning boot messages twice
	 */
	if (bcon && ((newcon->flags & (CON_CONSDEV | CON_BOOT)) == CON_CONSDEV))
2459
		newcon->flags &= ~CON_PRINTBUFFER;
L
Linus Torvalds 已提交
2460 2461 2462 2463 2464

	/*
	 *	Put this console in the list - keep the
	 *	preferred driver at the head of the list.
	 */
2465
	console_lock();
2466 2467 2468 2469 2470
	if ((newcon->flags & CON_CONSDEV) || console_drivers == NULL) {
		newcon->next = console_drivers;
		console_drivers = newcon;
		if (newcon->next)
			newcon->next->flags &= ~CON_CONSDEV;
L
Linus Torvalds 已提交
2471
	} else {
2472 2473
		newcon->next = console_drivers->next;
		console_drivers->next = newcon;
L
Linus Torvalds 已提交
2474
	}
2475
	if (newcon->flags & CON_PRINTBUFFER) {
L
Linus Torvalds 已提交
2476
		/*
2477
		 * console_unlock(); will print out the buffered messages
L
Linus Torvalds 已提交
2478 2479
		 * for us.
		 */
2480
		raw_spin_lock_irqsave(&logbuf_lock, flags);
2481 2482
		console_seq = syslog_seq;
		console_idx = syslog_idx;
2483
		console_prev = syslog_prev;
2484
		raw_spin_unlock_irqrestore(&logbuf_lock, flags);
2485 2486 2487 2488 2489 2490
		/*
		 * We're about to replay the log buffer.  Only do this to the
		 * just-registered console to avoid excessive message spam to
		 * the already-registered consoles.
		 */
		exclusive_console = newcon;
L
Linus Torvalds 已提交
2491
	}
2492
	console_unlock();
2493
	console_sysfs_notify();
2494 2495 2496 2497 2498 2499 2500 2501

	/*
	 * By unregistering the bootconsoles after we enable the real console
	 * we get the "console xxx enabled" message on all the consoles -
	 * boot consoles, real consoles, etc - this is to ensure that end
	 * users know there might be something in the kernel's log buffer that
	 * went to the bootconsole (that they do not see on the real console)
	 */
2502
	pr_info("%sconsole [%s%d] enabled\n",
2503 2504
		(newcon->flags & CON_BOOT) ? "boot" : "" ,
		newcon->name, newcon->index);
2505 2506 2507
	if (bcon &&
	    ((newcon->flags & (CON_CONSDEV | CON_BOOT)) == CON_CONSDEV) &&
	    !keep_bootcon) {
2508 2509
		/* We need to iterate through all boot consoles, to make
		 * sure we print everything out, before we unregister them.
2510 2511 2512 2513 2514
		 */
		for_each_console(bcon)
			if (bcon->flags & CON_BOOT)
				unregister_console(bcon);
	}
L
Linus Torvalds 已提交
2515 2516 2517
}
EXPORT_SYMBOL(register_console);

J
Jesper Juhl 已提交
2518
int unregister_console(struct console *console)
L
Linus Torvalds 已提交
2519
{
J
Jesper Juhl 已提交
2520
        struct console *a, *b;
2521
	int res;
L
Linus Torvalds 已提交
2522

2523
	pr_info("%sconsole [%s%d] disabled\n",
2524 2525 2526
		(console->flags & CON_BOOT) ? "boot" : "" ,
		console->name, console->index);

2527 2528 2529
	res = _braille_unregister_console(console);
	if (res)
		return res;
2530

2531
	res = 1;
2532
	console_lock();
L
Linus Torvalds 已提交
2533 2534 2535
	if (console_drivers == console) {
		console_drivers=console->next;
		res = 0;
2536
	} else if (console_drivers) {
L
Linus Torvalds 已提交
2537 2538 2539 2540 2541 2542
		for (a=console_drivers->next, b=console_drivers ;
		     a; b=a, a=b->next) {
			if (a == console) {
				b->next = a->next;
				res = 0;
				break;
J
Jesper Juhl 已提交
2543
			}
L
Linus Torvalds 已提交
2544 2545
		}
	}
J
Jesper Juhl 已提交
2546

2547
	/*
2548 2549
	 * If this isn't the last console and it has CON_CONSDEV set, we
	 * need to set it on the next preferred console.
L
Linus Torvalds 已提交
2550
	 */
2551
	if (console_drivers != NULL && console->flags & CON_CONSDEV)
2552
		console_drivers->flags |= CON_CONSDEV;
L
Linus Torvalds 已提交
2553

2554
	console->flags &= ~CON_ENABLED;
2555
	console_unlock();
2556
	console_sysfs_notify();
L
Linus Torvalds 已提交
2557 2558 2559
	return res;
}
EXPORT_SYMBOL(unregister_console);
M
Matt Mackall 已提交
2560

2561
static int __init printk_late_init(void)
2562
{
2563 2564 2565
	struct console *con;

	for_each_console(con) {
2566
		if (!keep_bootcon && con->flags & CON_BOOT) {
2567
			unregister_console(con);
2568
		}
2569
	}
2570
	hotcpu_notifier(console_cpu_notify, 0);
2571 2572
	return 0;
}
2573
late_initcall(printk_late_init);
2574

2575
#if defined CONFIG_PRINTK
2576 2577 2578 2579
/*
 * Delayed printk version, for scheduler-internal messages:
 */
#define PRINTK_PENDING_WAKEUP	0x01
2580
#define PRINTK_PENDING_OUTPUT	0x02
2581 2582 2583 2584 2585 2586 2587

static DEFINE_PER_CPU(int, printk_pending);

static void wake_up_klogd_work_func(struct irq_work *irq_work)
{
	int pending = __this_cpu_xchg(printk_pending, 0);

2588 2589 2590 2591
	if (pending & PRINTK_PENDING_OUTPUT) {
		/* If trylock fails, someone else is doing the printing */
		if (console_trylock())
			console_unlock();
2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611
	}

	if (pending & PRINTK_PENDING_WAKEUP)
		wake_up_interruptible(&log_wait);
}

static DEFINE_PER_CPU(struct irq_work, wake_up_klogd_work) = {
	.func = wake_up_klogd_work_func,
	.flags = IRQ_WORK_LAZY,
};

void wake_up_klogd(void)
{
	preempt_disable();
	if (waitqueue_active(&log_wait)) {
		this_cpu_or(printk_pending, PRINTK_PENDING_WAKEUP);
		irq_work_queue(&__get_cpu_var(wake_up_klogd_work));
	}
	preempt_enable();
}
D
Dave Young 已提交
2612

2613
int printk_deferred(const char *fmt, ...)
2614 2615 2616 2617
{
	va_list args;
	int r;

2618
	preempt_disable();
2619
	va_start(args, fmt);
2620
	r = vprintk_emit(0, SCHED_MESSAGE_LOGLEVEL, NULL, 0, fmt, args);
2621 2622
	va_end(args);

2623
	__this_cpu_or(printk_pending, PRINTK_PENDING_OUTPUT);
2624
	irq_work_queue(&__get_cpu_var(wake_up_klogd_work));
2625
	preempt_enable();
2626 2627 2628 2629

	return r;
}

L
Linus Torvalds 已提交
2630 2631 2632
/*
 * printk rate limiting, lifted from the networking subsystem.
 *
2633 2634
 * This enforces a rate limit: not more than 10 kernel messages
 * every 5s to make a denial-of-service attack impossible.
L
Linus Torvalds 已提交
2635
 */
2636 2637
DEFINE_RATELIMIT_STATE(printk_ratelimit_state, 5 * HZ, 10);

2638
int __printk_ratelimit(const char *func)
L
Linus Torvalds 已提交
2639
{
2640
	return ___ratelimit(&printk_ratelimit_state, func);
L
Linus Torvalds 已提交
2641
}
2642
EXPORT_SYMBOL(__printk_ratelimit);
2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655

/**
 * printk_timed_ratelimit - caller-controlled printk ratelimiting
 * @caller_jiffies: pointer to caller's state
 * @interval_msecs: minimum interval between prints
 *
 * printk_timed_ratelimit() returns true if more than @interval_msecs
 * milliseconds have elapsed since the last time printk_timed_ratelimit()
 * returned true.
 */
bool printk_timed_ratelimit(unsigned long *caller_jiffies,
			unsigned int interval_msecs)
{
A
Alex Elder 已提交
2656 2657 2658 2659 2660 2661 2662
	unsigned long elapsed = jiffies - *caller_jiffies;

	if (*caller_jiffies && elapsed <= msecs_to_jiffies(interval_msecs))
		return false;

	*caller_jiffies = jiffies;
	return true;
2663 2664
}
EXPORT_SYMBOL(printk_timed_ratelimit);
2665 2666 2667 2668 2669 2670

static DEFINE_SPINLOCK(dump_list_lock);
static LIST_HEAD(dump_list);

/**
 * kmsg_dump_register - register a kernel log dumper.
R
Randy Dunlap 已提交
2671
 * @dumper: pointer to the kmsg_dumper structure
2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689
 *
 * Adds a kernel log dumper to the system. The dump callback in the
 * structure will be called when the kernel oopses or panics and must be
 * set. Returns zero on success and %-EINVAL or %-EBUSY otherwise.
 */
int kmsg_dump_register(struct kmsg_dumper *dumper)
{
	unsigned long flags;
	int err = -EBUSY;

	/* The dump callback needs to be set */
	if (!dumper->dump)
		return -EINVAL;

	spin_lock_irqsave(&dump_list_lock, flags);
	/* Don't allow registering multiple times */
	if (!dumper->registered) {
		dumper->registered = 1;
2690
		list_add_tail_rcu(&dumper->list, &dump_list);
2691 2692 2693 2694 2695 2696 2697 2698 2699 2700
		err = 0;
	}
	spin_unlock_irqrestore(&dump_list_lock, flags);

	return err;
}
EXPORT_SYMBOL_GPL(kmsg_dump_register);

/**
 * kmsg_dump_unregister - unregister a kmsg dumper.
R
Randy Dunlap 已提交
2701
 * @dumper: pointer to the kmsg_dumper structure
2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712 2713
 *
 * Removes a dump device from the system. Returns zero on success and
 * %-EINVAL otherwise.
 */
int kmsg_dump_unregister(struct kmsg_dumper *dumper)
{
	unsigned long flags;
	int err = -EINVAL;

	spin_lock_irqsave(&dump_list_lock, flags);
	if (dumper->registered) {
		dumper->registered = 0;
2714
		list_del_rcu(&dumper->list);
2715 2716 2717
		err = 0;
	}
	spin_unlock_irqrestore(&dump_list_lock, flags);
2718
	synchronize_rcu();
2719 2720 2721 2722 2723

	return err;
}
EXPORT_SYMBOL_GPL(kmsg_dump_unregister);

2724 2725 2726
static bool always_kmsg_dump;
module_param_named(always_kmsg_dump, always_kmsg_dump, bool, S_IRUGO | S_IWUSR);

2727 2728 2729 2730
/**
 * kmsg_dump - dump kernel log to kernel message dumpers.
 * @reason: the reason (oops, panic etc) for dumping
 *
2731 2732 2733
 * Call each of the registered dumper's dump() callback, which can
 * retrieve the kmsg records with kmsg_dump_get_line() or
 * kmsg_dump_get_buffer().
2734 2735 2736 2737 2738 2739
 */
void kmsg_dump(enum kmsg_dump_reason reason)
{
	struct kmsg_dumper *dumper;
	unsigned long flags;

2740 2741 2742
	if ((reason > KMSG_DUMP_OOPS) && !always_kmsg_dump)
		return;

2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767
	rcu_read_lock();
	list_for_each_entry_rcu(dumper, &dump_list, list) {
		if (dumper->max_reason && reason > dumper->max_reason)
			continue;

		/* initialize iterator with data about the stored records */
		dumper->active = true;

		raw_spin_lock_irqsave(&logbuf_lock, flags);
		dumper->cur_seq = clear_seq;
		dumper->cur_idx = clear_idx;
		dumper->next_seq = log_next_seq;
		dumper->next_idx = log_next_idx;
		raw_spin_unlock_irqrestore(&logbuf_lock, flags);

		/* invoke dumper which will iterate over records */
		dumper->dump(dumper, reason);

		/* reset iterator */
		dumper->active = false;
	}
	rcu_read_unlock();
}

/**
2768
 * kmsg_dump_get_line_nolock - retrieve one kmsg log line (unlocked version)
2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782
 * @dumper: registered kmsg dumper
 * @syslog: include the "<4>" prefixes
 * @line: buffer to copy the line to
 * @size: maximum size of the buffer
 * @len: length of line placed into buffer
 *
 * Start at the beginning of the kmsg buffer, with the oldest kmsg
 * record, and copy one record into the provided buffer.
 *
 * Consecutive calls will return the next available record moving
 * towards the end of the buffer with the youngest messages.
 *
 * A return value of FALSE indicates that there are no more records to
 * read.
2783 2784
 *
 * The function is similar to kmsg_dump_get_line(), but grabs no locks.
2785
 */
2786 2787
bool kmsg_dump_get_line_nolock(struct kmsg_dumper *dumper, bool syslog,
			       char *line, size_t size, size_t *len)
2788
{
2789
	struct printk_log *msg;
2790 2791 2792 2793 2794
	size_t l = 0;
	bool ret = false;

	if (!dumper->active)
		goto out;
2795

2796 2797 2798 2799 2800
	if (dumper->cur_seq < log_first_seq) {
		/* messages are gone, move to first available one */
		dumper->cur_seq = log_first_seq;
		dumper->cur_idx = log_first_idx;
	}
2801

2802
	/* last entry */
2803
	if (dumper->cur_seq >= log_next_seq)
2804
		goto out;
2805

2806
	msg = log_from_idx(dumper->cur_idx);
2807
	l = msg_print_text(msg, 0, syslog, line, size);
2808 2809 2810 2811 2812 2813 2814 2815 2816

	dumper->cur_idx = log_next(dumper->cur_idx);
	dumper->cur_seq++;
	ret = true;
out:
	if (len)
		*len = l;
	return ret;
}
2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846

/**
 * kmsg_dump_get_line - retrieve one kmsg log line
 * @dumper: registered kmsg dumper
 * @syslog: include the "<4>" prefixes
 * @line: buffer to copy the line to
 * @size: maximum size of the buffer
 * @len: length of line placed into buffer
 *
 * Start at the beginning of the kmsg buffer, with the oldest kmsg
 * record, and copy one record into the provided buffer.
 *
 * Consecutive calls will return the next available record moving
 * towards the end of the buffer with the youngest messages.
 *
 * A return value of FALSE indicates that there are no more records to
 * read.
 */
bool kmsg_dump_get_line(struct kmsg_dumper *dumper, bool syslog,
			char *line, size_t size, size_t *len)
{
	unsigned long flags;
	bool ret;

	raw_spin_lock_irqsave(&logbuf_lock, flags);
	ret = kmsg_dump_get_line_nolock(dumper, syslog, line, size, len);
	raw_spin_unlock_irqrestore(&logbuf_lock, flags);

	return ret;
}
2847 2848 2849 2850 2851 2852
EXPORT_SYMBOL_GPL(kmsg_dump_get_line);

/**
 * kmsg_dump_get_buffer - copy kmsg log lines
 * @dumper: registered kmsg dumper
 * @syslog: include the "<4>" prefixes
R
Randy Dunlap 已提交
2853
 * @buf: buffer to copy the line to
2854 2855 2856 2857 2858 2859 2860 2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875
 * @size: maximum size of the buffer
 * @len: length of line placed into buffer
 *
 * Start at the end of the kmsg buffer and fill the provided buffer
 * with as many of the the *youngest* kmsg records that fit into it.
 * If the buffer is large enough, all available kmsg records will be
 * copied with a single call.
 *
 * Consecutive calls will fill the buffer with the next block of
 * available older records, not including the earlier retrieved ones.
 *
 * A return value of FALSE indicates that there are no more records to
 * read.
 */
bool kmsg_dump_get_buffer(struct kmsg_dumper *dumper, bool syslog,
			  char *buf, size_t size, size_t *len)
{
	unsigned long flags;
	u64 seq;
	u32 idx;
	u64 next_seq;
	u32 next_idx;
2876
	enum log_flags prev;
2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888 2889 2890 2891 2892 2893 2894 2895 2896 2897 2898
	size_t l = 0;
	bool ret = false;

	if (!dumper->active)
		goto out;

	raw_spin_lock_irqsave(&logbuf_lock, flags);
	if (dumper->cur_seq < log_first_seq) {
		/* messages are gone, move to first available one */
		dumper->cur_seq = log_first_seq;
		dumper->cur_idx = log_first_idx;
	}

	/* last entry */
	if (dumper->cur_seq >= dumper->next_seq) {
		raw_spin_unlock_irqrestore(&logbuf_lock, flags);
		goto out;
	}

	/* calculate length of entire buffer */
	seq = dumper->cur_seq;
	idx = dumper->cur_idx;
2899
	prev = 0;
2900
	while (seq < dumper->next_seq) {
2901
		struct printk_log *msg = log_from_idx(idx);
2902

2903
		l += msg_print_text(msg, prev, true, NULL, 0);
2904 2905
		idx = log_next(idx);
		seq++;
2906
		prev = msg->flags;
2907 2908 2909 2910 2911
	}

	/* move first record forward until length fits into the buffer */
	seq = dumper->cur_seq;
	idx = dumper->cur_idx;
2912
	prev = 0;
2913
	while (l > size && seq < dumper->next_seq) {
2914
		struct printk_log *msg = log_from_idx(idx);
2915

2916
		l -= msg_print_text(msg, prev, true, NULL, 0);
2917 2918
		idx = log_next(idx);
		seq++;
2919
		prev = msg->flags;
2920
	}
2921 2922 2923 2924 2925 2926 2927

	/* last message in next interation */
	next_seq = seq;
	next_idx = idx;

	l = 0;
	while (seq < dumper->next_seq) {
2928
		struct printk_log *msg = log_from_idx(idx);
2929

2930
		l += msg_print_text(msg, prev, syslog, buf + l, size - l);
2931 2932
		idx = log_next(idx);
		seq++;
2933
		prev = msg->flags;
2934 2935 2936 2937 2938
	}

	dumper->next_seq = next_seq;
	dumper->next_idx = next_idx;
	ret = true;
2939
	raw_spin_unlock_irqrestore(&logbuf_lock, flags);
2940 2941 2942 2943 2944 2945
out:
	if (len)
		*len = l;
	return ret;
}
EXPORT_SYMBOL_GPL(kmsg_dump_get_buffer);
2946

2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964
/**
 * kmsg_dump_rewind_nolock - reset the interator (unlocked version)
 * @dumper: registered kmsg dumper
 *
 * Reset the dumper's iterator so that kmsg_dump_get_line() and
 * kmsg_dump_get_buffer() can be called again and used multiple
 * times within the same dumper.dump() callback.
 *
 * The function is similar to kmsg_dump_rewind(), but grabs no locks.
 */
void kmsg_dump_rewind_nolock(struct kmsg_dumper *dumper)
{
	dumper->cur_seq = clear_seq;
	dumper->cur_idx = clear_idx;
	dumper->next_seq = log_next_seq;
	dumper->next_idx = log_next_idx;
}

2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977
/**
 * kmsg_dump_rewind - reset the interator
 * @dumper: registered kmsg dumper
 *
 * Reset the dumper's iterator so that kmsg_dump_get_line() and
 * kmsg_dump_get_buffer() can be called again and used multiple
 * times within the same dumper.dump() callback.
 */
void kmsg_dump_rewind(struct kmsg_dumper *dumper)
{
	unsigned long flags;

	raw_spin_lock_irqsave(&logbuf_lock, flags);
2978
	kmsg_dump_rewind_nolock(dumper);
2979
	raw_spin_unlock_irqrestore(&logbuf_lock, flags);
2980
}
2981
EXPORT_SYMBOL_GPL(kmsg_dump_rewind);
2982

2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004
static char dump_stack_arch_desc_str[128];

/**
 * dump_stack_set_arch_desc - set arch-specific str to show with task dumps
 * @fmt: printf-style format string
 * @...: arguments for the format string
 *
 * The configured string will be printed right after utsname during task
 * dumps.  Usually used to add arch-specific system identifiers.  If an
 * arch wants to make use of such an ID string, it should initialize this
 * as soon as possible during boot.
 */
void __init dump_stack_set_arch_desc(const char *fmt, ...)
{
	va_list args;

	va_start(args, fmt);
	vsnprintf(dump_stack_arch_desc_str, sizeof(dump_stack_arch_desc_str),
		  fmt, args);
	va_end(args);
}

3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018
/**
 * dump_stack_print_info - print generic debug info for dump_stack()
 * @log_lvl: log level
 *
 * Arch-specific dump_stack() implementations can use this function to
 * print out the same debug information as the generic dump_stack().
 */
void dump_stack_print_info(const char *log_lvl)
{
	printk("%sCPU: %d PID: %d Comm: %.20s %s %s %.*s\n",
	       log_lvl, raw_smp_processor_id(), current->pid, current->comm,
	       print_tainted(), init_utsname()->release,
	       (int)strcspn(init_utsname()->version, " "),
	       init_utsname()->version);
3019 3020 3021 3022

	if (dump_stack_arch_desc_str[0] != '\0')
		printk("%sHardware name: %s\n",
		       log_lvl, dump_stack_arch_desc_str);
3023 3024

	print_worker_info(log_lvl, current);
3025 3026
}

3027 3028 3029 3030 3031 3032 3033 3034 3035 3036 3037 3038 3039 3040 3041 3042
/**
 * show_regs_print_info - print generic debug info for show_regs()
 * @log_lvl: log level
 *
 * show_regs() implementations can use this function to print out generic
 * debug information.
 */
void show_regs_print_info(const char *log_lvl)
{
	dump_stack_print_info(log_lvl);

	printk("%stask: %p ti: %p task.ti: %p\n",
	       log_lvl, current, current_thread_info(),
	       task_thread_info(current));
}

3043
#endif