log.cc 48.5 KB
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/* Copyright (C) 2000 MySQL AB & MySQL Finland AB & TCX DataKonsult AB
   
   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 2 of the License, or
   (at your option) any later version.
   
   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.
   
   You should have received a copy of the GNU General Public License
   along with this program; if not, write to the Free Software
   Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA */


/* logging of commands */
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/* TODO: Abort logging when we get an error in reading or writing log files */
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#ifdef __EMX__
#include <io.h>
#endif

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#include "mysql_priv.h"
#include "sql_acl.h"
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#include "sql_repl.h"
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#include <my_dir.h>
#include <stdarg.h>
#include <m_ctype.h>				// For test_if_number

MYSQL_LOG mysql_log,mysql_update_log,mysql_slow_log,mysql_bin_log;
extern I_List<i_string> binlog_do_db, binlog_ignore_db;

static bool test_if_number(const char *str,
			   long *res, bool allow_wildcards);

/****************************************************************************
** Find a uniq filename for 'filename.#'.
** Set # to a number as low as possible
** returns != 0 if not possible to get uniq filename
****************************************************************************/

static int find_uniq_filename(char *name)
{
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  long                  number;
  uint                  i;
  char                  buff[FN_REFLEN];
  struct st_my_dir     *dir_info;
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  reg1 struct fileinfo *file_info;
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  ulong                 max_found=0;

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  DBUG_ENTER("find_uniq_filename");

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  uint  length = dirname_part(buff,name);
  char *start  = name + length;
  char *end    = strend(start);

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  *end='.';
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  length= (uint) (end-start+1);
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  if (!(dir_info = my_dir(buff,MYF(MY_DONT_SORT))))
  {						// This shouldn't happen
    strmov(end,".1");				// use name+1
    DBUG_RETURN(0);
  }
  file_info= dir_info->dir_entry;
  for (i=dir_info->number_off_files ; i-- ; file_info++)
  {
    if (bcmp(file_info->name,start,length) == 0 &&
	test_if_number(file_info->name+length, &number,0))
    {
      set_if_bigger(max_found,(ulong) number);
    }
  }
  my_dirend(dir_info);

  *end++='.';
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  sprintf(end,"%06ld",max_found+1);
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  DBUG_RETURN(0);
}

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MYSQL_LOG::MYSQL_LOG()
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  :bytes_written(0), last_time(0), query_start(0), name(0),
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   file_id(1), open_count(1), log_type(LOG_CLOSED), write_error(0), inited(0),
   no_rotate(0), need_start_event(1)
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{
  /*
    We don't want to intialize LOCK_Log here as the thread system may
    not have been initailized yet. We do it instead at 'open'.
  */
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  index_file_name[0] = 0;
  bzero((char*) &log_file,sizeof(log_file));
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  bzero((char*) &index_file, sizeof(index_file));
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}

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MYSQL_LOG::~MYSQL_LOG()
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{
  cleanup();
}

void MYSQL_LOG::cleanup()
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{
  if (inited)
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  {
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    close(1);
    inited= 0;
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    (void) pthread_mutex_destroy(&LOCK_log);
    (void) pthread_mutex_destroy(&LOCK_index);
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    (void) pthread_cond_destroy(&update_cond);
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  }
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}

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int MYSQL_LOG::generate_new_name(char *new_name, const char *log_name)
{      
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  fn_format(new_name,log_name,mysql_data_home,"",4);
  if (log_type != LOG_NORMAL)
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  {
    if (!fn_ext(log_name)[0])
    {
      if (find_uniq_filename(new_name))
      {
	sql_print_error(ER(ER_NO_UNIQUE_LOGFILE), log_name);
	return 1;
      }
    }
  }
  return 0;
}

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void MYSQL_LOG::init(enum_log_type log_type_arg,
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		     enum cache_type io_cache_type_arg,
		     bool no_auto_events_arg)
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{
  log_type = log_type_arg;
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  io_cache_type = io_cache_type_arg;
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  no_auto_events = no_auto_events_arg;
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  if (!inited)
  {
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    inited= 1;
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    (void) pthread_mutex_init(&LOCK_log,MY_MUTEX_INIT_SLOW);
    (void) pthread_mutex_init(&LOCK_index, MY_MUTEX_INIT_SLOW);
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    (void) pthread_cond_init(&update_cond, 0);
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  }
}

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/*
  Open a (new) log file.

  DESCRIPTION
  - If binary logs, also open the index file and register the new
    file name in it
  - When calling this when the file is in use, you must have a locks
    on LOCK_log and LOCK_index.

  RETURN VALUES
    0	ok
    1	error
*/

bool MYSQL_LOG::open(const char *log_name, enum_log_type log_type_arg,
		     const char *new_name, const char *index_file_name_arg,
		     enum cache_type io_cache_type_arg,
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		     bool no_auto_events_arg)
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{
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  char buff[512];
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  File file= -1, index_file_nr= -1;
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  int open_flags = O_CREAT | O_APPEND | O_BINARY;
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  DBUG_ENTER("MYSQL_LOG::open");
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  DBUG_PRINT("enter",("log_type: %d",(int) log_type));

  last_time=query_start=0;
  write_error=0;
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  if (!inited && log_type_arg == LOG_BIN && *fn_ext(log_name))
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    no_rotate = 1;
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  init(log_type_arg,io_cache_type_arg,no_auto_events_arg);
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  if (!(name=my_strdup(log_name,MYF(MY_WME))))
    goto err;
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  if (new_name)
    strmov(log_file_name,new_name);
  else if (generate_new_name(log_file_name, name))
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    goto err;
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  if (io_cache_type == SEQ_READ_APPEND)
    open_flags |= O_RDWR;
  else
    open_flags |= O_WRONLY;
  
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  db[0]=0;
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  open_count++;
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  if ((file=my_open(log_file_name,open_flags,
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		    MYF(MY_WME | ME_WAITTANG))) < 0 ||
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      init_io_cache(&log_file, file, IO_SIZE, io_cache_type,
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		    my_tell(file,MYF(MY_WME)), 0, MYF(MY_WME | MY_NABP)))
    goto err;
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  switch (log_type) {
  case LOG_NORMAL:
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  {
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    char *end;
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#ifdef EMBEDDED_LIBRARY
    sprintf(buff, "%s, Version: %s, embedded library\n", my_progname, server_version);
#elif __NT__
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    sprintf(buff, "%s, Version: %s, started with:\nTCP Port: %d, Named Pipe: %s\n", my_progname, server_version, mysqld_port, mysqld_unix_port);
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#else
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    sprintf(buff, "%s, Version: %s, started with:\nTcp port: %d  Unix socket: %s\n", my_progname,server_version,mysqld_port,mysqld_unix_port);
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#endif
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    end=strmov(strend(buff),"Time                 Id Command    Argument\n");
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    if (my_b_write(&log_file, (byte*) buff,(uint) (end-buff)) ||
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	flush_io_cache(&log_file))
      goto err;
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    break;
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  }
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  case LOG_NEW:
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  {
    time_t skr=time(NULL);
    struct tm tm_tmp;
    localtime_r(&skr,&tm_tmp);
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    ulong length;
    length= my_sprintf(buff,
		       (buff,
			"# %s, Version: %s at %02d%02d%02d %2d:%02d:%02d\n",
			my_progname,server_version,
			tm_tmp.tm_year % 100,
			tm_tmp.tm_mon+1,
			tm_tmp.tm_mday,
			tm_tmp.tm_hour,
			tm_tmp.tm_min,
			tm_tmp.tm_sec));
    if (my_b_write(&log_file, (byte*) buff, length) ||
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	flush_io_cache(&log_file))
      goto err;
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    break;
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  }
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  case LOG_BIN:
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  {
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    bool write_file_name_to_index_file=0;

    myf opt= MY_UNPACK_FILENAME;
    if (!index_file_name_arg)
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    {
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      index_file_name_arg= name;	// Use same basename for index file
      opt= MY_UNPACK_FILENAME | MY_REPLACE_EXT;
    }
  
    if (!my_b_filelength(&log_file))
    {
      /*
	The binary log file was empty (probably newly created)
	This is the normal case and happens when the user doesn't specify
	an extension for the binary log files.
	In this case we write a standard header to it.
      */
      if (my_b_write(&log_file, (byte*) BINLOG_MAGIC, BIN_LOG_HEADER_SIZE))
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        goto err;
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      bytes_written += BIN_LOG_HEADER_SIZE;
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      write_file_name_to_index_file=1;
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    }
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    if (!my_b_inited(&index_file))
    {
      /*
	First open of this class instance
	Create an index file that will hold all file names uses for logging.
	Add new entries to the end of it.
      */
      fn_format(index_file_name, index_file_name_arg, mysql_data_home,
		".index", opt);
      if ((index_file_nr= my_open(index_file_name,
				  O_RDWR | O_CREAT | O_BINARY ,
				  MYF(MY_WME))) < 0 ||
	  init_io_cache(&index_file, index_file_nr,
			IO_SIZE, WRITE_CACHE,
			my_seek(index_file_nr,0L,MY_SEEK_END,MYF(0)),
			0, MYF(MY_WME)))
	goto err;
    }
    else
    {
      safe_mutex_assert_owner(&LOCK_index);
      reinit_io_cache(&index_file, WRITE_CACHE, my_b_filelength(&index_file),
		      0, 0);
    }
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    if (need_start_event && !no_auto_events)
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    {
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      need_start_event=0;
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      Start_log_event s;
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      s.set_log_pos(this);
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      s.write(&log_file);
    }
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    if (flush_io_cache(&log_file))
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      goto err;
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    if (write_file_name_to_index_file)
    {
      /* As this is a new log file, we write the file name to the index file */
      if (my_b_write(&index_file, (byte*) log_file_name,
		     strlen(log_file_name)) ||
	  my_b_write(&index_file, (byte*) "\n", 1) ||
	  flush_io_cache(&index_file))
	goto err;
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    }
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    break;
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  }
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  case LOG_CLOSED:				// Impossible
    DBUG_ASSERT(1);
    break;
  }
  DBUG_RETURN(0);
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err:
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  sql_print_error("Could not use %s for logging (error %d). \
Turning logging off for the whole duration of the MySQL server process. \
To turn it on again: fix the cause, \
shutdown the MySQL server and restart it.", log_name, errno);
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  if (file >= 0)
    my_close(file,MYF(0));
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  if (index_file_nr >= 0)
    my_close(index_file_nr,MYF(0));
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  end_io_cache(&log_file);
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  end_io_cache(&index_file);
  safeFree(name);
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  log_type=LOG_CLOSED;
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  DBUG_RETURN(1);
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}

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int MYSQL_LOG::get_current_log(LOG_INFO* linfo)
{
  pthread_mutex_lock(&LOCK_log);
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  strmake(linfo->log_file_name, log_file_name, sizeof(linfo->log_file_name)-1);
  linfo->pos = my_b_tell(&log_file);
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  pthread_mutex_unlock(&LOCK_log);
  return 0;
}

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/*
  Move all data up in a file in an filename index file

  SYNOPSIS
    copy_up_file_and_fill()
    index_file			File to move
    offset			Move everything from here to beginning

  NOTE
    File will be truncated to be 'offset' shorter or filled up with
    newlines

  IMPLEMENTATION
    We do the copy outside of the IO_CACHE as the cache buffers would just
    make things slower and more complicated.
    In most cases the copy loop should only do one read.

  RETURN VALUES
    0	ok
*/

static bool copy_up_file_and_fill(IO_CACHE *index_file, my_off_t offset)
{
  int bytes_read;
  my_off_t init_offset= offset;
  File file= index_file->file;
  byte io_buf[IO_SIZE*2];
  DBUG_ENTER("copy_up_file_and_fill");

  for (;; offset+= bytes_read)
  {
    (void) my_seek(file, offset, MY_SEEK_SET, MYF(0));
    if ((bytes_read= (int) my_read(file, io_buf, sizeof(io_buf), MYF(MY_WME)))
	< 0)
      goto err;
    if (!bytes_read)
      break;					// end of file
    (void) my_seek(file, offset-init_offset, MY_SEEK_SET, MYF(0));
    if (my_write(file, (byte*) io_buf, bytes_read, MYF(MY_WME | MY_NABP)))
      goto err;
  }
  /* The following will either truncate the file or fill the end with \n' */
  if (my_chsize(file, offset - init_offset, '\n', MYF(MY_WME)))
    goto err;

  /* Reset data in old index cache */
  reinit_io_cache(index_file, READ_CACHE, (my_off_t) 0, 0, 1);
  DBUG_RETURN(0);

err:
  DBUG_RETURN(1);
}


/*
  Find the position in the log-index-file for the given log name

  SYNOPSIS
    find_log_pos()
    linfo		Store here the found log file name and position to
			the NEXT log file name in the index file.
    log_name		Filename to find in the index file.
			Is a null pointer if we want to read the first entry
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    need_lock		Set this to 1 if the parent doesn't already have a
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			lock on LOCK_index

  NOTE
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    On systems without the truncate function the file will end with one or
    more empty lines.  These will be ignored when reading the file.
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  RETURN VALUES
    0			ok
    LOG_INFO_EOF	End of log-index-file found
    LOG_INFO_IO		Got IO error while reading file
*/

int MYSQL_LOG::find_log_pos(LOG_INFO *linfo, const char *log_name,
			    bool need_lock)
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{
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  int error= 0;
  char *fname= linfo->log_file_name;
  uint log_name_len= log_name ? (uint) strlen(log_name) : 0;
  DBUG_ENTER("find_log_pos");
  DBUG_PRINT("enter",("log_name: %s", log_name ? log_name : "NULL"));
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  /*
    Mutex needed because we need to make sure the file pointer does not move
    from under our feet
  */
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  if (need_lock)
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    pthread_mutex_lock(&LOCK_index);
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  safe_mutex_assert_owner(&LOCK_index);

  /* As the file is flushed, we can't get an error here */
  (void) reinit_io_cache(&index_file, READ_CACHE, (my_off_t) 0, 0, 0);

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  for (;;)
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  {
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    uint length;
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    my_off_t offset= my_b_tell(&index_file);
    /* If we get 0 or 1 characters, this is the end of the file */

    if ((length= my_b_gets(&index_file, fname, FN_REFLEN)) <= 1)
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    {
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      /* Did not find the given entry; Return not found or error */
      error= !index_file.error ? LOG_INFO_EOF : LOG_INFO_IO;
      break;
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    }

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    // if the log entry matches, null string matching anything
    if (!log_name ||
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	(log_name_len == length-1 && fname[log_name_len] == '\n' &&
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	 !memcmp(fname, log_name, log_name_len)))
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    {
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      DBUG_PRINT("info",("Found log file entry"));
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      fname[length-1]=0;			// remove last \n
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      linfo->index_file_start_offset= offset;
      linfo->index_file_offset = my_b_tell(&index_file);
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      break;
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    }
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  }
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  if (need_lock)
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    pthread_mutex_unlock(&LOCK_index);
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  DBUG_RETURN(error);
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}
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/*
  Find the position in the log-index-file for the given log name

  SYNOPSIS
    find_next_log()
    linfo		Store here the next log file name and position to
			the file name after that.
    need_lock		Set this to 1 if the parent doesn't already have a
			lock on LOCK_index

  NOTE
    - Before calling this function, one has to call find_log_pos()
      to set up 'linfo'
    - Mutex needed because we need to make sure the file pointer does not move
      from under our feet

  RETURN VALUES
    0			ok
    LOG_INFO_EOF	End of log-index-file found
    LOG_INFO_SEEK	Could not allocate IO cache
    LOG_INFO_IO		Got IO error while reading file
*/

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int MYSQL_LOG::find_next_log(LOG_INFO* linfo, bool need_lock)
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{
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  int error= 0;
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  uint length;
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  char *fname= linfo->log_file_name;

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  if (need_lock)
    pthread_mutex_lock(&LOCK_index);
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  safe_mutex_assert_owner(&LOCK_index);

  /* As the file is flushed, we can't get an error here */
  (void) reinit_io_cache(&index_file, READ_CACHE, linfo->index_file_offset, 0,
			 0);

  linfo->index_file_start_offset= linfo->index_file_offset;
  if ((length=my_b_gets(&index_file, fname, FN_REFLEN)) <= 1)
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  {
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    error = !index_file.error ? LOG_INFO_EOF : LOG_INFO_IO;
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    goto err;
  }
  fname[length-1]=0;				// kill /n
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  linfo->index_file_offset = my_b_tell(&index_file);
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err:
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  if (need_lock)
    pthread_mutex_unlock(&LOCK_index);
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  return error;
}

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/*
  Delete all logs refered to in the index file
  Start writing to a new log file.  The new index file will only contain
  this file.

  SYNOPSIS
     reset_logs()
     thd		Thread

  NOTE
    If not called from slave thread, write start event to new log


  RETURN VALUES
    0	ok
    1   error
*/

bool MYSQL_LOG::reset_logs(THD* thd)
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{
  LOG_INFO linfo;
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  bool error=0;
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  const char* save_name;
  enum_log_type save_log_type;
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  DBUG_ENTER("reset_logs");
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  /*
    We need to get both locks to be sure that no one is trying to
    write to the index log file.
  */
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  pthread_mutex_lock(&LOCK_log);
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  pthread_mutex_lock(&LOCK_index);

  /* Save variables so that we can reopen the log */
  save_name=name;
  name=0;					// Protect against free
  save_log_type=log_type;
  close(0);					// Don't close the index file

  /* First delete all old log files */

  if (find_log_pos(&linfo, NullS, 0))
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  {
    error=1;
    goto err;
  }
  
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  for (;;)
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  {
    my_delete(linfo.log_file_name, MYF(MY_WME));
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    if (find_next_log(&linfo, 0))
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      break;
  }
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  /* Start logging with a new file */
  close(1);					// Close index file
  my_delete(index_file_name, MYF(MY_WME));	// Reset (open will update)
  if (!thd->slave_thread)
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    need_start_event=1;
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  open(save_name, save_log_type, 0, index_file_name,
       io_cache_type, no_auto_events);
  my_free((gptr) save_name, MYF(0));
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err:  
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  pthread_mutex_unlock(&LOCK_index);
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  pthread_mutex_unlock(&LOCK_log);
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  DBUG_RETURN(error);
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}

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/*
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  Delete relay log files prior to rli->group_relay_log_name
  (i.e. all logs which are not involved in a non-finished group
  (transaction)), remove them from the index file and start on next relay log.
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  SYNOPSIS
    purge_first_log()
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    rli		 Relay log information
    included     If false, all relay logs that are strictly before
                 rli->group_relay_log_name are deleted ; if true, the latter is
                 deleted too (i.e. all relay logs
                 read by the SQL slave thread are deleted).
    
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  NOTE
    - This is only called from the slave-execute thread when it has read
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      all commands from a relay log and want to switch to a new relay log.
    - When this happens, we can be in an active transaction as
      a transaction can span over two relay logs
      (although it is always written as a single block to the master's binary 
      log, hence cannot span over two master's binary logs).
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  IMPLEMENTATION
    - Protects index file with LOCK_index
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    - Delete relevant relay log files
    - Copy all file names after these ones to the front of the index file
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    - If the OS has truncate, truncate the file, else fill it with \n'
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    - Read the next file name from the index file and store in rli->linfo
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  RETURN VALUES
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    0			ok
    LOG_INFO_EOF	End of log-index-file found
    LOG_INFO_SEEK	Could not allocate IO cache
    LOG_INFO_IO		Got IO error while reading file
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*/

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#ifdef HAVE_REPLICATION
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int MYSQL_LOG::purge_first_log(struct st_relay_log_info* rli, bool included) 
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{
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  int error;
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  DBUG_ENTER("purge_first_log");

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  DBUG_ASSERT(is_open());
  DBUG_ASSERT(rli->slave_running == 1);
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  DBUG_ASSERT(!strcmp(rli->linfo.log_file_name,rli->event_relay_log_name));
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  pthread_mutex_lock(&LOCK_index);
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  pthread_mutex_lock(&rli->log_space_lock);
  rli->relay_log.purge_logs(rli->group_relay_log_name, included,
                            0, 0, &rli->log_space_total);
  // Tell the I/O thread to take the relay_log_space_limit into account
  rli->ignore_log_space_limit= 0;
  pthread_mutex_unlock(&rli->log_space_lock);
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  /*
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    Ok to broadcast after the critical region as there is no risk of
    the mutex being destroyed by this thread later - this helps save
    context switches
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  */
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  pthread_cond_broadcast(&rli->log_space_cond);
  
  /*
    Read the next log file name from the index file and pass it back to
    the caller
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    If included is true, we want the first relay log;
    otherwise we want the one after event_relay_log_name.
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  */
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  if ((included && (error=find_log_pos(&rli->linfo, NullS, 0))) ||
      (!included &&
       ((error=find_log_pos(&rli->linfo, rli->event_relay_log_name, 0)) ||
        (error=find_next_log(&rli->linfo, 0)))))
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  {
    char buff[22];
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    sql_print_error("next log error: %d  offset: %s  log: %s included: %d",
                    error,
                    llstr(rli->linfo.index_file_offset,buff),
                    rli->group_relay_log_name,
                    included);
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    goto err;
  }
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  /*
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    Reset rli's coordinates to the current log.
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  */
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  rli->event_relay_log_pos= BIN_LOG_HEADER_SIZE;
  strmake(rli->event_relay_log_name,rli->linfo.log_file_name,
	  sizeof(rli->event_relay_log_name)-1);

  /*
    If we removed the rli->group_relay_log_name file,
    we must update the rli->group* coordinates, otherwise do not touch it as the
    group's execution is not finished (e.g. COMMIT not executed)
  */
  if (included)
  {
    rli->group_relay_log_pos = BIN_LOG_HEADER_SIZE;
    strmake(rli->group_relay_log_name,rli->linfo.log_file_name,
            sizeof(rli->group_relay_log_name)-1);
  }
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  /* Store where we are in the new file for the execution thread */
  flush_relay_log_info(rli);
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err:
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  pthread_mutex_unlock(&LOCK_index);
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  DBUG_RETURN(error);
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}

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/*
  Update log index_file
*/

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int MYSQL_LOG::update_log_index(LOG_INFO* log_info, bool need_update_threads)
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{
  if (copy_up_file_and_fill(&index_file, log_info->index_file_start_offset))
    return LOG_INFO_IO;

  // now update offsets in index file for running threads
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  if (need_update_threads)
    adjust_linfo_offsets(log_info->index_file_start_offset);
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  return 0;
}
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/*
  Remove all logs before the given log from disk and from the index file.

  SYNOPSIS
    purge_logs()
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    to_log	        Delete all log file name before this file. 
    included            If true, to_log is deleted too.
    need_mutex
    need_update_threads If we want to update the log coordinates of
                        all threads. False for relay logs, true otherwise.
    freed_log_space     If not null, decrement this variable of
                        the amount of log space freed
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  NOTES
    If any of the logs before the deleted one is in use,
    only purge logs up to this one.

  RETURN VALUES
    0				ok
    LOG_INFO_PURGE_NO_ROTATE	Binary file that can't be rotated
    LOG_INFO_EOF		to_log not found
*/

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int MYSQL_LOG::purge_logs(const char *to_log, 
                          bool included,
                          bool need_mutex, 
                          bool need_update_threads, 
                          ulonglong *decrease_log_space)
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{
  int error;
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  bool exit_loop= 0;
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  LOG_INFO log_info;
  DBUG_ENTER("purge_logs");
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  DBUG_PRINT("info",("to_log= %s",to_log));
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  if (no_rotate)
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    DBUG_RETURN(LOG_INFO_PURGE_NO_ROTATE);

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  if (need_mutex)
    pthread_mutex_lock(&LOCK_index);
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  if ((error=find_log_pos(&log_info, to_log, 0 /*no mutex*/)))
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    goto err;

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  /*
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    File name exists in index file; delete until we find this file
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    or a file that is used.
  */
  if ((error=find_log_pos(&log_info, NullS, 0 /*no mutex*/)))
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    goto err;
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  while ((strcmp(to_log,log_info.log_file_name) || (exit_loop=included)) &&
         !log_in_use(log_info.log_file_name))
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  {
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    ulong tmp;
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    LINT_INIT(tmp);
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    if (decrease_log_space) //stat the file we want to delete
    {
      MY_STAT s;
      if (my_stat(log_info.log_file_name,&s,MYF(0)))
        tmp= s.st_size;
      else
      {
        /* 
           If we could not stat, we can't know the amount
           of space that deletion will free. In most cases,
           deletion won't work either, so it's not a problem.
        */
        tmp= 0; 
      }
    }
    /*
      It's not fatal if we can't delete a log file ;
      if we could delete it, take its size into account
    */
    DBUG_PRINT("info",("purging %s",log_info.log_file_name));
    if (!my_delete(log_info.log_file_name, MYF(0)) && decrease_log_space)
      *decrease_log_space-= tmp;
    if (find_next_log(&log_info, 0) || exit_loop)
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      break;
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  }
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  /*
    If we get killed -9 here, the sysadmin would have to edit
    the log index file after restart - otherwise, this should be safe
  */
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  error= update_log_index(&log_info, need_update_threads);
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err:
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  if (need_mutex)
    pthread_mutex_unlock(&LOCK_index);
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  DBUG_RETURN(error);
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}

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/*
  Remove all logs before the given file date from disk and from the
  index file.

  SYNOPSIS
    purge_logs_before_date()
    thd		Thread pointer
    before_date	Delete all log files before given date.

  NOTES
    If any of the logs before the deleted one is in use,
    only purge logs up to this one.

  RETURN VALUES
    0				ok
    LOG_INFO_PURGE_NO_ROTATE	Binary file that can't be rotated
*/

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int MYSQL_LOG::purge_logs_before_date(time_t purge_time)
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{
  int error;
  LOG_INFO log_info;
  MY_STAT stat_area;

  DBUG_ENTER("purge_logs_before_date");

  if (no_rotate)
    DBUG_RETURN(LOG_INFO_PURGE_NO_ROTATE);

  pthread_mutex_lock(&LOCK_index);

  /*
    Delete until we find curren file
    or a file that is used or a file
    that is older than purge_time.
  */
  if ((error=find_log_pos(&log_info, NullS, 0 /*no mutex*/)))
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    goto err;
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  while (strcmp(log_file_name, log_info.log_file_name) &&
	 !log_in_use(log_info.log_file_name))
  {
    /* It's not fatal even if we can't delete a log file */
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    if (!my_stat(log_info.log_file_name, &stat_area, MYF(0)) ||
	stat_area.st_mtime >= purge_time)
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      break;
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    my_delete(log_info.log_file_name, MYF(0));
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    if (find_next_log(&log_info, 0))
      break;
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  }
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  /*
    If we get killed -9 here, the sysadmin would have to edit
    the log index file after restart - otherwise, this should be safe
  */
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  error= update_log_index(&log_info, 1);
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err:
  pthread_mutex_unlock(&LOCK_index);
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  DBUG_RETURN(error);
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}

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#endif /* HAVE_REPLICATION */
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/*
  Create a new log file name

  SYNOPSIS
    make_log_name()
    buf			buf of at least FN_REFLEN where new name is stored

  NOTE
    If file name will be longer then FN_REFLEN it will be truncated
*/

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void MYSQL_LOG::make_log_name(char* buf, const char* log_ident)
{
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  if (inited)					// QQ When is this not true ?
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  {
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    uint dir_len = dirname_length(log_file_name); 
    if (dir_len > FN_REFLEN)
      dir_len=FN_REFLEN-1;
    strnmov(buf, log_file_name, dir_len);
    strmake(buf+dir_len, log_ident, FN_REFLEN - dir_len);
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  }
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}

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/*
  Check if we are writing/reading to the given log file
*/

bool MYSQL_LOG::is_active(const char *log_file_name_arg)
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{
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  return inited && !strcmp(log_file_name, log_file_name_arg);
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}

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/*
  Start writing to a new log file or reopen the old file

  SYNOPSIS
    new_file()
    need_lock		Set to 1 (default) if caller has not locked
			LOCK_log and LOCK_index

  NOTE
    The new file name is stored last in the index file
*/

void MYSQL_LOG::new_file(bool need_lock)
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{
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  char new_name[FN_REFLEN], *new_name_ptr, *old_name;
  enum_log_type save_log_type;

  if (!is_open())
    return;					// Should never happen

  if (need_lock)
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  {
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    pthread_mutex_lock(&LOCK_log);
    pthread_mutex_lock(&LOCK_index);
  }    
  safe_mutex_assert_owner(&LOCK_log);
  safe_mutex_assert_owner(&LOCK_index);

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  // Reuse old name if not binlog and not update log
  new_name_ptr= name;
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  /*
    Only rotate open logs that are marked non-rotatable
    (binlog with constant name are non-rotatable)
  */
  if (!no_rotate)
  {
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    /*
      If user hasn't specified an extension, generate a new log name
      We have to do this here and not in open as we want to store the
      new file name in the current binary log file.
    */
    if (generate_new_name(new_name, name))
      goto end;
    new_name_ptr=new_name;

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    if (log_type == LOG_BIN)
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    {
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      if (!no_auto_events)
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      {
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	/*
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	  We log the whole file name for log file as the user may decide
	  to change base names at some point.
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	*/
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	THD* thd = current_thd;
	Rotate_log_event r(thd,new_name+dirname_length(new_name));
	r.set_log_pos(this);

	/*
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	  Because this log rotation could have been initiated by a master of
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	  the slave running with log-bin, we set the flag on rotate
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	  event to prevent infinite log rotation loop
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	*/
	if (thd->slave_thread)
	  r.flags|= LOG_EVENT_FORCED_ROTATE_F;
	r.write(&log_file);
	bytes_written += r.get_event_len();
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      }
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      /*
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	Update needs to be signalled even if there is no rotate event
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	log rotation should give the waiting thread a signal to
	discover EOF and move on to the next log.
      */
      signal_update(); 
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    }
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  }
  old_name=name;
  save_log_type=log_type;
  name=0;				// Don't free name
  close();
  open(old_name, save_log_type, new_name_ptr, index_file_name, io_cache_type,
       no_auto_events);
  my_free(old_name,MYF(0));

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  if (need_lock)
  {
    pthread_mutex_unlock(&LOCK_index);
    pthread_mutex_unlock(&LOCK_log);
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  }
}

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bool MYSQL_LOG::append(Log_event* ev)
{
  bool error = 0;
  pthread_mutex_lock(&LOCK_log);
  
  DBUG_ASSERT(log_file.type == SEQ_READ_APPEND);
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  /*
    Log_event::write() is smart enough to use my_b_write() or
    my_b_append() depending on the kind of cache we have.
  */
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  if (ev->write(&log_file))
  {
    error=1;
    goto err;
  }
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  bytes_written += ev->get_event_len();
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  if ((uint) my_b_append_tell(&log_file) > max_binlog_size)
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  {
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    pthread_mutex_lock(&LOCK_index);
    new_file(0);
    pthread_mutex_unlock(&LOCK_index);
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  }
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err:  
  pthread_mutex_unlock(&LOCK_log);
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  signal_update();				// Safe as we don't call close
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  return error;
}

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bool MYSQL_LOG::appendv(const char* buf, uint len,...)
{
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  bool error= 0;
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  va_list(args);
  va_start(args,len);
  
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  DBUG_ASSERT(log_file.type == SEQ_READ_APPEND);
  
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  pthread_mutex_lock(&LOCK_log);
  do
  {
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    if (my_b_append(&log_file,(byte*) buf,len))
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    {
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      error= 1;
      goto err;
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    }
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    bytes_written += len;
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  } while ((buf=va_arg(args,const char*)) && (len=va_arg(args,uint)));
  
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  if ((uint) my_b_append_tell(&log_file) > max_binlog_size)
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  {
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    pthread_mutex_lock(&LOCK_index);
    new_file(0);
    pthread_mutex_unlock(&LOCK_index);
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  }
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err:
  pthread_mutex_unlock(&LOCK_log);
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  if (!error)
    signal_update();
  return error;
}
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/*
  Write to normal (not rotable) log
  This is the format for the 'normal', 'slow' and 'update' logs.
*/

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bool MYSQL_LOG::write(THD *thd,enum enum_server_command command,
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		      const char *format,...)
{
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  if (is_open() && (what_to_log & (1L << (uint) command)))
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  {
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    uint length;
    int error= 0;
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    VOID(pthread_mutex_lock(&LOCK_log));
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    /* Test if someone closed between the is_open test and lock */
    if (is_open())
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    {
      time_t skr;
      ulong id;
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      va_list args;
      va_start(args,format);
      char buff[32];

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      if (thd)
      {						// Normal thread
	if ((thd->options & OPTION_LOG_OFF) &&
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	    (thd->master_access & SUPER_ACL))
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	{
	  VOID(pthread_mutex_unlock(&LOCK_log));
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	  return 0;				// No logging
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	}
	id=thd->thread_id;
	if (thd->user_time || !(skr=thd->query_start()))
	  skr=time(NULL);			// Connected
      }
      else
      {						// Log from connect handler
	skr=time(NULL);
	id=0;
      }
      if (skr != last_time)
      {
	last_time=skr;
	struct tm tm_tmp;
	struct tm *start;
	localtime_r(&skr,&tm_tmp);
	start=&tm_tmp;
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	/* Note that my_b_write() assumes it knows the length for this */
	sprintf(buff,"%02d%02d%02d %2d:%02d:%02d\t",
		start->tm_year % 100,
		start->tm_mon+1,
		start->tm_mday,
		start->tm_hour,
		start->tm_min,
		start->tm_sec);
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	if (my_b_write(&log_file, (byte*) buff,16))
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	  error=errno;
      }
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      else if (my_b_write(&log_file, (byte*) "\t\t",2) < 0)
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	error=errno;
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      length=my_sprintf(buff,
			(buff, "%7ld %-11.11s", id,
			 command_name[(uint) command]));
      if (my_b_write(&log_file, (byte*) buff,length))
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	error=errno;
      if (format)
      {
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	if (my_b_write(&log_file, (byte*) " ",1) ||
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	    my_b_vprintf(&log_file,format,args) == (uint) -1)
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	  error=errno;
      }
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      if (my_b_write(&log_file, (byte*) "\n",1) ||
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	  flush_io_cache(&log_file))
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	error=errno;
      if (error && ! write_error)
      {
	write_error=1;
	sql_print_error(ER(ER_ERROR_ON_WRITE),name,error);
      }
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      va_end(args);
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    }
    VOID(pthread_mutex_unlock(&LOCK_log));
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    return error != 0;
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  }
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  return 0;
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}


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/*
  Write an event to the binary log
*/

1161
bool MYSQL_LOG::write(Log_event* event_info)
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{
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  THD *thd=event_info->thd;
  bool called_handler_commit=0;
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  bool error=0;
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  bool should_rotate = 0;
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  DBUG_ENTER("MYSQL_LOG::write(event)");
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  if (!inited)					// Can't use mutex if not init
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  {
    DBUG_PRINT("error",("not initied"));
    DBUG_RETURN(0);
  }
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  pthread_mutex_lock(&LOCK_log);

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  /* In most cases this is only called if 'is_open()' is true */
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  if (is_open())
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  {
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    const char *local_db = event_info->get_db();
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#ifdef USING_TRANSACTIONS    
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    IO_CACHE *file = ((event_info->get_cache_stmt()) ?
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		      &thd->transaction.trans_log :
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		      &log_file);
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#else
    IO_CACHE *file = &log_file;
#endif    
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#ifdef HAVE_REPLICATION
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    if ((thd && !(thd->options & OPTION_BIN_LOG) &&
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	 (thd->master_access & SUPER_ACL)) ||
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	(local_db && !db_ok(local_db, binlog_do_db, binlog_ignore_db)))
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    {
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      VOID(pthread_mutex_unlock(&LOCK_log));
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      DBUG_PRINT("error",("!db_ok"));
      DBUG_RETURN(0);
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    }
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1196
#endif /* HAVE_REPLICATION */
1197

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    error=1;
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    /*
      No check for auto events flag here - this write method should
      never be called if auto-events are enabled
    */
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    /*
    1. Write first log events which describe the 'run environment'
    of the SQL command
    */

1209
    if (thd)
1210
    {
1211 1212 1213
      if (thd->last_insert_id_used)
      {
	Intvar_log_event e(thd,(uchar) LAST_INSERT_ID_EVENT,
1214
			   thd->current_insert_id);
1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236
	e.set_log_pos(this);
	if (thd->server_id)
	  e.server_id = thd->server_id;
	if (e.write(file))
	  goto err;
      }
      if (thd->insert_id_used)
      {
	Intvar_log_event e(thd,(uchar) INSERT_ID_EVENT,thd->last_insert_id);
	e.set_log_pos(this);
	if (thd->server_id)
	  e.server_id = thd->server_id;
	if (e.write(file))
	  goto err;
      }
      if (thd->rand_used)
      {
	Rand_log_event e(thd,thd->rand_saved_seed1,thd->rand_saved_seed2);
	e.set_log_pos(this);
	if (e.write(file))
	  goto err;
      }
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1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253
      if (thd->user_var_events.elements)
      {
	for (uint i= 0; i < thd->user_var_events.elements; i++)
	{
	  BINLOG_USER_VAR_EVENT *user_var_event;
	  get_dynamic(&thd->user_var_events,(gptr) &user_var_event, i);
          User_var_log_event e(thd, user_var_event->user_var_event->name.str,
                               user_var_event->user_var_event->name.length,
                               user_var_event->value,
                               user_var_event->length,
                               user_var_event->type,
			       user_var_event->charset_number);
          e.set_log_pos(this);
	  if (e.write(file))
	    goto err;
	}
      }
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#ifdef TO_BE_REMOVED
1255 1256 1257 1258 1259 1260 1261 1262 1263 1264
      if (thd->variables.convert_set)
      {
	char buf[256], *p;
	p= strmov(strmov(buf, "SET CHARACTER SET "),
		  thd->variables.convert_set->name);
	Query_log_event e(thd, buf, (ulong) (p - buf), 0);
	e.set_log_pos(this);
	if (e.write(file))
	  goto err;
      }
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#endif
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1266

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      /*
	If the user has set FOREIGN_KEY_CHECKS=0 we wrap every SQL
	command in the binlog inside:
	SET FOREIGN_KEY_CHECKS=0;
	<command>;
	SET FOREIGN_KEY_CHECKS=1;
      */
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      if (thd->options & OPTION_NO_FOREIGN_KEY_CHECKS)
      {
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	Query_log_event e(thd, "SET FOREIGN_KEY_CHECKS=0", 24, 0);
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	e.set_log_pos(this);
	if (e.write(file))
	  goto err;
      }
1282
    }
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1283

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1284
    /* Write the SQL command */
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log.cc:  
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1285

1286
    event_info->set_log_pos(this);
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    if (event_info->write(file))
1288
      goto err;
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1289

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    /* Write log events to reset the 'run environment' of the SQL command */
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    if (thd && thd->options & OPTION_NO_FOREIGN_KEY_CHECKS)
    {
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      Query_log_event e(thd, "SET FOREIGN_KEY_CHECKS=1", 24, 0);
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      e.set_log_pos(this);
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      if (e.write(file))
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	goto err;
    }
1299

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1300 1301 1302 1303 1304 1305 1306 1307
    /*
      Tell for transactional table handlers up to which position in the
      binlog file we wrote. The table handler can store this info, and
      after crash recovery print for the user the offset of the last
      transactions which were recovered. Actually, we must also call
      the table handler commit here, protected by the LOCK_log mutex,
      because otherwise the transactions may end up in a different order
      in the table handler log!
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1308 1309 1310 1311 1312 1313 1314

      Note that we will NOT call ha_report_binlog_offset_and_commit() if
      there are binlog events cached in the transaction cache. That is
      because then the log event which we write to the binlog here is
      not a transactional event. In versions < 4.0.13 before this fix this
      caused an InnoDB transaction to be committed if in the middle there
      was a MyISAM event!
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1315
    */
1316

1317
    if (file == &log_file) // we are writing to the real log (disk)
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1318
    {
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      if (flush_io_cache(file))
	goto err;
 
1322
      if (opt_using_transactions && !my_b_tell(&thd->transaction.trans_log))
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1323
      {
1324 1325 1326 1327 1328 1329 1330
        /*
          LOAD DATA INFILE in AUTOCOMMIT=1 mode writes to the binlog
          chunks also before it is successfully completed. We only report
          the binlog write and do the commit inside the transactional table
          handler if the log event type is appropriate.
        */
        
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        if (event_info->get_type_code() == QUERY_EVENT ||
            event_info->get_type_code() == EXEC_LOAD_EVENT)
1333 1334 1335 1336 1337
        {
          error = ha_report_binlog_offset_and_commit(thd, log_file_name,
                                                     file->pos_in_file);
          called_handler_commit=1;
        }
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1338
      }
1339
      /* we wrote to the real log, check automatic rotation */
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1340
      should_rotate= (my_b_tell(file) >= (my_off_t) max_binlog_size); 
1341
    }
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1342
    error=0;
1343

1344 1345 1346 1347 1348 1349 1350 1351 1352 1353
err:
    if (error)
    {
      if (my_errno == EFBIG)
	my_error(ER_TRANS_CACHE_FULL, MYF(0));
      else
	my_error(ER_ERROR_ON_WRITE, MYF(0), name, errno);
      write_error=1;
    }
    if (file == &log_file)
1354
      signal_update();
1355
    if (should_rotate)
1356 1357 1358 1359 1360
    {
      pthread_mutex_lock(&LOCK_index);      
      new_file(0); // inside mutex
      pthread_mutex_unlock(&LOCK_index);
    }
1361
  }
1362 1363

  pthread_mutex_unlock(&LOCK_log);
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1364

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  /*
    Flush the transactional handler log file now that we have released
    LOCK_log; the flush is placed here to eliminate the bottleneck on the
    group commit
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  */
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1370

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1371
  if (called_handler_commit)
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    ha_commit_complete(thd);

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1374
#ifdef HAVE_REPLICATION
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1375
  if (should_rotate && expire_logs_days)
1376 1377 1378
  {
    long purge_time= time(0) - expire_logs_days*24*60*60;
    if (purge_time >= 0)
1379
      error= purge_logs_before_date(purge_time);
1380
  }
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1381
#endif
1382
  DBUG_RETURN(error);
1383 1384
}

1385

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uint MYSQL_LOG::next_file_id()
{
  uint res;
  pthread_mutex_lock(&LOCK_log);
  res = file_id++;
  pthread_mutex_unlock(&LOCK_log);
  return res;
}

1395

1396 1397
/*
  Write a cached log entry to the binary log
1398 1399 1400

  NOTE
    - We only come here if there is something in the cache.
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1401
    - The thing in the cache is always a complete transaction
1402 1403 1404 1405 1406
    - 'cache' needs to be reinitialized after this functions returns.

  IMPLEMENTATION
    - To support transaction over replication, we wrap the transaction
      with BEGIN/COMMIT in the binary log.
1407 1408
*/

1409
bool MYSQL_LOG::write(THD *thd, IO_CACHE *cache)
1410 1411
{
  VOID(pthread_mutex_lock(&LOCK_log));
1412
  DBUG_ENTER("MYSQL_LOG::write(cache");
1413
  
1414
  if (is_open())				// Should always be true
1415
  {
1416 1417
    uint length;

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    /*
1419 1420 1421 1422 1423 1424 1425 1426
      Add the "BEGIN" and "COMMIT" in the binlog around transactions
      which may contain more than 1 SQL statement. If we run with
      AUTOCOMMIT=1, then MySQL immediately writes each SQL statement to
      the binlog when the statement has been completed. No need to add
      "BEGIN" ... "COMMIT" around such statements. Otherwise, MySQL uses
      thd->transaction.trans_log to cache the SQL statements until the
      explicit commit, and at the commit writes the contents in .trans_log
      to the binlog.
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1428 1429 1430 1431 1432 1433
      We write the "BEGIN" mark first in the buffer (.trans_log) where we
      store the SQL statements for a transaction. At the transaction commit
      we will add the "COMMIT mark and write the buffer to the binlog.
    */
    {
      Query_log_event qinfo(thd, "BEGIN", 5, TRUE);
1434 1435 1436 1437 1438 1439 1440 1441
      /*
        Now this Query_log_event has artificial log_pos 0. It must be adjusted
        to reflect the real position in the log. Not doing it would confuse the
        slave: it would prevent this one from knowing where he is in the master's
        binlog, which would result in wrong positions being shown to the user,
        MASTER_POS_WAIT undue waiting etc.
      */
      qinfo.set_log_pos(this);
1442 1443 1444
      if (qinfo.write(&log_file))
	goto err;
    }
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    /* Read from the file used to cache the queries .*/
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1446
    if (reinit_io_cache(cache, READ_CACHE, 0, 0, 0))
1447
      goto err;
1448 1449
    length=my_b_bytes_in_cache(cache);
    do
1450
    {
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1451
      /* Write data to the binary log file */
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1452
      if (my_b_write(&log_file, cache->read_pos, length))
1453
	goto err;
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1454
      cache->read_pos=cache->read_end;		// Mark buffer used up
1455
    } while ((length=my_b_fill(cache)));
1456 1457 1458 1459 1460 1461

    /*
      We write the command "COMMIT" as the last SQL command in the
      binlog segment cached for this transaction
    */

1462
    {
1463
      Query_log_event qinfo(thd, "COMMIT", 6, TRUE);
1464
      qinfo.set_log_pos(this);
1465 1466
      if (qinfo.write(&log_file) || flush_io_cache(&log_file))
	goto err;
1467 1468 1469
    }
    if (cache->error)				// Error on read
    {
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      sql_print_error(ER(ER_ERROR_ON_READ), cache->file_name, errno);
1471
      write_error=1;				// Don't give more errors
1472
      goto err;
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    }
1474 1475
    if ((ha_report_binlog_offset_and_commit(thd, log_file_name,
					    log_file.pos_in_file)))
1476
      goto err;
1477
    signal_update();
1478 1479 1480 1481 1482 1483 1484
    if (my_b_tell(&log_file) >= (my_off_t) max_binlog_size)
    {
      pthread_mutex_lock(&LOCK_index);
      new_file(0); // inside mutex
      pthread_mutex_unlock(&LOCK_index);
    }

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1485
  }
1486
  VOID(pthread_mutex_unlock(&LOCK_log));
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  /* Flush the transactional handler log file now that we have released
  LOCK_log; the flush is placed here to eliminate the bottleneck on the
  group commit */  

  ha_commit_complete(thd);

1494
  DBUG_RETURN(0);
1495 1496

err:
1497 1498 1499 1500 1501
  if (!write_error)
  {
    write_error= 1;
    sql_print_error(ER(ER_ERROR_ON_WRITE), name, errno);
  }
1502
  VOID(pthread_mutex_unlock(&LOCK_log));
1503
  DBUG_RETURN(1);
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1504 1505
}

1506

1507 1508
/*
  Write update log in a format suitable for incremental backup
1509
  This is also used by the slow query log.
1510
*/
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1511

1512
bool MYSQL_LOG::write(THD *thd,const char *query, uint query_length,
1513
		      time_t query_start_arg)
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1514
{
1515
  bool error=0;
1516
  if (is_open())
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1517
  {
1518
    time_t current_time;
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1519
    VOID(pthread_mutex_lock(&LOCK_log));
1520
    if (is_open())
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1521
    {						// Safety agains reopen
1522
      int tmp_errno=0;
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      char buff[80],*end;
      end=buff;
      if (!(thd->options & OPTION_UPDATE_LOG) &&
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1526
	  (thd->master_access & SUPER_ACL))
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1527 1528
      {
	VOID(pthread_mutex_unlock(&LOCK_log));
1529
	return 0;
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1530
      }
1531
      if ((specialflag & SPECIAL_LONG_LOG_FORMAT) || query_start_arg)
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1532
      {
1533 1534
	current_time=time(NULL);
	if (current_time != last_time)
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1535
	{
1536
	  last_time=current_time;
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1537 1538
	  struct tm tm_tmp;
	  struct tm *start;
1539
	  localtime_r(&current_time,&tm_tmp);
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1540
	  start=&tm_tmp;
1541 1542 1543 1544 1545 1546 1547 1548
	  /* Note that my_b_write() assumes it knows the length for this */
	  sprintf(buff,"# Time: %02d%02d%02d %2d:%02d:%02d\n",
		  start->tm_year % 100,
		  start->tm_mon+1,
		  start->tm_mday,
		  start->tm_hour,
		  start->tm_min,
		  start->tm_sec);
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1549
	  if (my_b_write(&log_file, (byte*) buff,24))
1550
	    tmp_errno=errno;
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1551
	}
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	if (my_b_printf(&log_file, "# User@Host: %s[%s] @ %s [%s]\n",
1553 1554 1555
			thd->priv_user,
			thd->user,
			thd->host ? thd->host : "",
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			thd->ip ? thd->ip : "") == (uint) -1)
1557
	  tmp_errno=errno;
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1558
      }
1559
      if (query_start_arg)
1560 1561
      {
	/* For slow query log */
1562
	if (my_b_printf(&log_file,
1563
			"# Query_time: %lu  Lock_time: %lu  Rows_sent: %lu  Rows_examined: %lu\n",
1564 1565
			(ulong) (current_time - query_start_arg),
			(ulong) (thd->time_after_lock - query_start_arg),
1566 1567 1568
			(ulong) thd->sent_row_count,
			(ulong) thd->examined_row_count) == (uint) -1)
	  tmp_errno=errno;
1569
      }
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      if (thd->db && strcmp(thd->db,db))
      {						// Database changed
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	if (my_b_printf(&log_file,"use %s;\n",thd->db) == (uint) -1)
1573
	  tmp_errno=errno;
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1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591
	strmov(db,thd->db);
      }
      if (thd->last_insert_id_used)
      {
	end=strmov(end,",last_insert_id=");
	end=longlong10_to_str((longlong) thd->current_insert_id,end,-10);
      }
      // Save value if we do an insert.
      if (thd->insert_id_used)
      {
	if (specialflag & SPECIAL_LONG_LOG_FORMAT)
	{
	  end=strmov(end,",insert_id=");
	  end=longlong10_to_str((longlong) thd->last_insert_id,end,-10);
	}
      }
      if (thd->query_start_used)
      {
1592
	if (query_start_arg != thd->query_start())
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1593
	{
1594
	  query_start_arg=thd->query_start();
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1595
	  end=strmov(end,",timestamp=");
1596
	  end=int10_to_str((long) query_start_arg,end,10);
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	}
      }
      if (end != buff)
      {
	*end++=';';
1602
	*end='\n';
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1603
	if (my_b_write(&log_file, (byte*) "SET ",4) ||
1604
	    my_b_write(&log_file, (byte*) buff+1,(uint) (end-buff)))
1605
	  tmp_errno=errno;
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1606 1607 1608
      }
      if (!query)
      {
1609 1610 1611
	end=strxmov(buff, "# administrator command: ",
		    command_name[thd->command], NullS);
	query_length=(ulong) (end-buff);
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	query=buff;
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      }
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      if (my_b_write(&log_file, (byte*) query,query_length) ||
	  my_b_write(&log_file, (byte*) ";\n",2) ||
1616
	  flush_io_cache(&log_file))
1617 1618
	tmp_errno=errno;
      if (tmp_errno)
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1619
      {
1620 1621 1622 1623 1624 1625
	error=1;
	if (! write_error)
	{
	  write_error=1;
	  sql_print_error(ER(ER_ERROR_ON_WRITE),name,error);
	}
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      }
    }
    VOID(pthread_mutex_unlock(&LOCK_log));
  }
1630
  return error;
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}

1633 1634 1635 1636 1637 1638 1639 1640 1641
/*
  Wait until we get a signal that the binary log has been updated

  SYNOPSIS
    wait_for_update()
    thd			Thread variable

  NOTES
    One must have a lock on LOCK_log before calling this function.
1642 1643 1644 1645 1646 1647
    This lock will be freed before return!

    The reason for the above is that for enter_cond() / exit_cond() to
    work the mutex must be got before enter_cond() but releases before
    exit_cond().
    If you don't do it this way, you will get a deadlock in THD::awake()
1648 1649
*/

1650 1651
void MYSQL_LOG:: wait_for_update(THD* thd)
{
1652
  safe_mutex_assert_owner(&LOCK_log);
1653 1654 1655
  const char* old_msg = thd->enter_cond(&update_cond, &LOCK_log,
					"Slave: waiting for binlog update");
  pthread_cond_wait(&update_cond, &LOCK_log);
1656
  pthread_mutex_unlock(&LOCK_log);		// See NOTES
1657
  thd->exit_cond(old_msg);
1658
}
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1659

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1660

1661 1662 1663 1664 1665 1666 1667 1668 1669
/*
  Close the log file

  SYNOPSIS
    close()
    exiting	Set to 1 if we should also close the index file
    		This can be set to 0 if we are going to do call open
		at once after close, in which case we don't want to
		close the index file.
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		We only write a 'stop' event to the log if exiting is set
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  NOTES
    One can do an open on the object at once after doing a close.
    The internal structures are not freed until cleanup() is called
1675 1676
*/

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1677 1678
void MYSQL_LOG::close(bool exiting)
{					// One can't set log_type here!
1679 1680
  DBUG_ENTER("MYSQL_LOG::close");
  DBUG_PRINT("enter",("exiting: %d", (int) exiting));
1681
  if (is_open())
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1682
  {
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1683
#ifdef HAVE_REPLICATION
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1684
    if (log_type == LOG_BIN && !no_auto_events && exiting)
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1685 1686
    {
      Stop_log_event s;
1687
      s.set_log_pos(this);
1688
      s.write(&log_file);
1689
      signal_update();
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    }
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#endif /* HAVE_REPLICATION */
1692
    end_io_cache(&log_file);
1693
    if (my_close(log_file.file,MYF(0)) < 0 && ! write_error)
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    {
      write_error=1;
1696
      sql_print_error(ER(ER_ERROR_ON_WRITE), name, errno);
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    }
  }
1699 1700 1701 1702 1703 1704 1705

  /*
    The following test is needed even if is_open() is not set, as we may have
    called a not complete close earlier and the index file is still open.
  */

  if (exiting && my_b_inited(&index_file))
1706
  {
1707 1708
    end_io_cache(&index_file);
    if (my_close(index_file.file, MYF(0)) < 0 && ! write_error)
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1709
    {
1710 1711
      write_error= 1;
      sql_print_error(ER(ER_ERROR_ON_WRITE), index_file_name, errno);
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    }
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  }
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  log_type= LOG_CLOSED;
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  safeFree(name);
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  DBUG_VOID_RETURN;
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}


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/*
  Check if a string is a valid number
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  SYNOPSIS
    test_if_number()
    str			String to test
    res			Store value here
    allow_wildcards	Set to 1 if we should ignore '%' and '_'

  NOTE
    For the moment the allow_wildcards argument is not used
    Should be move to some other file.

  RETURN VALUES
    1	String is a number
    0	Error
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*/
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static bool test_if_number(register const char *str,
			   long *res, bool allow_wildcards)
{
  reg2 int flag;
  const char *start;
  DBUG_ENTER("test_if_number");

  flag=0; start=str;
  while (*str++ == ' ') ;
  if (*--str == '-' || *str == '+')
    str++;
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  while (my_isdigit(files_charset_info,*str) ||
	 (allow_wildcards && (*str == wild_many || *str == wild_one)))
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  {
    flag=1;
    str++;
  }
  if (*str == '.')
  {
    for (str++ ;
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	 my_isdigit(files_charset_info,*str) ||
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	   (allow_wildcards && (*str == wild_many || *str == wild_one)) ;
	 str++, flag=1) ;
  }
  if (*str != 0 || flag == 0)
    DBUG_RETURN(0);
  if (res)
    *res=atol(start);
  DBUG_RETURN(1);			/* Number ok */
} /* test_if_number */


void sql_print_error(const char *format,...)
{
  va_list args;
  time_t skr;
  struct tm tm_tmp;
  struct tm *start;
  va_start(args,format);
  DBUG_ENTER("sql_print_error");

  VOID(pthread_mutex_lock(&LOCK_error_log));
#ifndef DBUG_OFF
  {
    char buff[1024];
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    my_vsnprintf(buff,sizeof(buff)-1,format,args);
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    DBUG_PRINT("error",("%s",buff));
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    va_end(args);
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    va_start(args,format);
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  }
#endif
  skr=time(NULL);
  localtime_r(&skr,&tm_tmp);
  start=&tm_tmp;
  fprintf(stderr,"%02d%02d%02d %2d:%02d:%02d  ",
	  start->tm_year % 100,
	  start->tm_mon+1,
	  start->tm_mday,
	  start->tm_hour,
	  start->tm_min,
	  start->tm_sec);
  (void) vfprintf(stderr,format,args);
  (void) fputc('\n',stderr);
  fflush(stderr);
  va_end(args);

  VOID(pthread_mutex_unlock(&LOCK_error_log));
  DBUG_VOID_RETURN;
}


void sql_perror(const char *message)
{
#ifdef HAVE_STRERROR
  sql_print_error("%s: %s",message, strerror(errno));
#else
  perror(message);
#endif
}
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bool flush_error_log()
{
  bool result=0;
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  if (opt_error_log)
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  {
    char err_renamed[FN_REFLEN], *end;
    end= strmake(err_renamed,log_error_file,FN_REFLEN-4);
    strmov(end, "-old");
#ifdef __WIN__
    char err_temp[FN_REFLEN+4];
    /*
     On Windows is necessary a temporary file for to rename
     the current error file.
    */
    strmov(strmov(err_temp, err_renamed),"-tmp");
    (void) my_delete(err_temp, MYF(0)); 
    if (freopen(err_temp,"a+",stdout))
    {
      freopen(err_temp,"a+",stderr);
      (void) my_delete(err_renamed, MYF(0));
      my_rename(log_error_file,err_renamed,MYF(0));
      if (freopen(log_error_file,"a+",stdout))
        freopen(log_error_file,"a+",stderr);
      int fd, bytes;
      char buf[IO_SIZE];
      if ((fd = my_open(err_temp, O_RDONLY, MYF(0))) >= 0)
      {
        while ((bytes = (int) my_read(fd, (byte*) buf, IO_SIZE, MYF(0))) > 0)
             my_fwrite(stderr, (byte*) buf, (uint) strlen(buf),MYF(0));
        my_close(fd, MYF(0));
      }
      (void) my_delete(err_temp, MYF(0)); 
    }
    else
     result= 1;
#else
   my_rename(log_error_file,err_renamed,MYF(0));
   if (freopen(log_error_file,"a+",stdout))
     freopen(log_error_file,"a+",stderr);
   else
     result= 1;
#endif
  }
   return result;
}
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