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	into romeo.(none):/home/bk/b23171-mysql-5.1-new-rpl mysql-test/r/rpl_row_tabledefs_2myisam.result: Auto merged mysql-test/r/rpl_row_tabledefs_3innodb.result: Auto merged sql/rpl_rli.cc: Auto merged sql/rpl_rli.h: Auto merged sql/rpl_utility.cc: Auto merged sql/rpl_utility.h: Auto merged sql/slave.h: Auto merged sql/log.cc: Manual merge sql/log_event.cc: Manual merge sql/log_event.h: Manual merge sql/slave.cc: Manual merge sql/sql_binlog.cc: Manual merge
		
			
				
	
	
		
			208 lines
		
	
	
		
			6.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			208 lines
		
	
	
		
			6.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* Copyright (C) 2005-2006 MySQL AB
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   This program is free software; you can redistribute it and/or modify
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   it under the terms of the GNU General Public License as published by
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   the Free Software Foundation; version 2 of the License.
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   This program is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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   GNU General Public License for more details.
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   You should have received a copy of the GNU General Public License
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   along with this program; if not, write to the Free Software
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   Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA */
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#include "mysql_priv.h"
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#include "base64.h"
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/*
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  Execute a BINLOG statement
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  TODO: This currently assumes a MySQL 5.x binlog.
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  When we'll have binlog with a different format, to execute the
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  BINLOG command properly the server will need to know which format
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  the BINLOG command's event is in.  mysqlbinlog should then send
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  the Format_description_log_event of the binlog it reads and the
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  server thread should cache this format into
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  rli->description_event_for_exec.
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*/
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void mysql_client_binlog_statement(THD* thd)
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{
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  DBUG_ENTER("mysql_client_binlog_statement");
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  DBUG_PRINT("info",("binlog base64: '%*s'",
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                     (thd->lex->comment.length < 2048 ?
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                      thd->lex->comment.length : 2048),
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                     thd->lex->comment.str));
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  /*
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    Temporarily turn off send_ok, since different events handle this
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    differently
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  */
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  my_bool nsok= thd->net.no_send_ok;
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  thd->net.no_send_ok= TRUE;
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  my_size_t coded_len= thd->lex->comment.length + 1;
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  my_size_t decoded_len= base64_needed_decoded_length(coded_len);
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  DBUG_ASSERT(coded_len > 0);
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  /*
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    Allocation
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  */
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  if (!thd->rli_fake)
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    thd->rli_fake= new RELAY_LOG_INFO;
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  const Format_description_log_event *desc=
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    new Format_description_log_event(4);
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  const char *error= 0;
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  char *buf= (char *) my_malloc(decoded_len, MYF(MY_WME));
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  Log_event *ev = 0;
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  /*
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    Out of memory check
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  */
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  if (!(thd->rli_fake && desc && buf))
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  {
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    my_error(ER_OUTOFMEMORY, MYF(0), 1);  /* needed 1 bytes */
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    goto end;
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  }
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  thd->rli_fake->sql_thd= thd;
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  thd->rli_fake->no_storage= TRUE;
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  for (char const *strptr= thd->lex->comment.str ;
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       strptr < thd->lex->comment.str + thd->lex->comment.length ; )
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  {
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    char const *endptr= 0;
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    int bytes_decoded= base64_decode(strptr, coded_len, buf, &endptr);
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#ifndef HAVE_purify
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      /*
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        This debug printout should not be used for valgrind builds
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        since it will read from unassigned memory.
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      */
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    DBUG_PRINT("info",
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               ("bytes_decoded: %d  strptr: 0x%lx  endptr: 0x%lx ('%c':%d)",
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                bytes_decoded, (long) strptr, (long) endptr, *endptr,
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                *endptr));
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#endif
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    if (bytes_decoded < 0)
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    {
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      my_error(ER_BASE64_DECODE_ERROR, MYF(0));
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      goto end;
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    }
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    else if (bytes_decoded == 0)
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      break; // If no bytes where read, the string contained only whitespace
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    DBUG_ASSERT(bytes_decoded > 0);
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    DBUG_ASSERT(endptr > strptr);
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    coded_len-= endptr - strptr;
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    strptr= endptr;
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    /*
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      Now we have one or more events stored in the buffer. The size of
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      the buffer is computed based on how much base64-encoded data
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      there were, so there should be ample space for the data (maybe
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      even too much, since a statement can consist of a considerable
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      number of events).
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      TODO: Switch to use a stream-based base64 encoder/decoder in
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      order to be able to read exactly what is necessary.
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    */
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    DBUG_PRINT("info",("binlog base64 decoded_len: %lu  bytes_decoded: %d",
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                       (ulong) decoded_len, bytes_decoded));
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    /*
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      Now we start to read events of the buffer, until there are no
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      more.
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    */
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    for (char *bufptr= buf ; bytes_decoded > 0 ; )
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    {
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      /*
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        Checking that the first event in the buffer is not truncated.
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      */
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      ulong event_len= uint4korr(bufptr + EVENT_LEN_OFFSET);
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      DBUG_PRINT("info", ("event_len=%lu, bytes_decoded=%d",
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                          event_len, bytes_decoded));
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      if (bytes_decoded < EVENT_LEN_OFFSET || (uint) bytes_decoded < event_len)
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      {
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        my_error(ER_SYNTAX_ERROR, MYF(0));
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        goto end;
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      }
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      ev= Log_event::read_log_event(bufptr, event_len, &error, desc);
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      DBUG_PRINT("info",("binlog base64 err=%s", error));
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      if (!ev)
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      {
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        /*
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          This could actually be an out-of-memory, but it is more likely
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          causes by a bad statement
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        */
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        my_error(ER_SYNTAX_ERROR, MYF(0));
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        goto end;
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      }
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      bytes_decoded -= event_len;
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      bufptr += event_len;
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      DBUG_PRINT("info",("ev->get_type_code()=%d", ev->get_type_code()));
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#ifndef HAVE_purify
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      /*
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        This debug printout should not be used for valgrind builds
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        since it will read from unassigned memory.
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      */
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      DBUG_PRINT("info",("bufptr+EVENT_TYPE_OFFSET: 0x%lx",
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                         (long) (bufptr+EVENT_TYPE_OFFSET)));
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      DBUG_PRINT("info", ("bytes_decoded: %d   bufptr: 0x%lx  buf[EVENT_LEN_OFFSET]: %lu",
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                          bytes_decoded, (long) bufptr,
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                          (ulong) uint4korr(bufptr+EVENT_LEN_OFFSET)));
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#endif
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      ev->thd= thd;
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      /*
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        We go directly to the application phase, since we don't need
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        to check if the event shall be skipped or not.
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        Neither do we have to update the log positions, since that is
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        not used at all: the rli_fake instance is used only for error
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        reporting.
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       */
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      if (IF_DBUG(int err= ) ev->apply_event(thd->rli_fake))
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      {
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        DBUG_PRINT("info", ("apply_event() returned: %d", err));
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        /*
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          TODO: Maybe a better error message since the BINLOG statement
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          now contains several events.
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        */
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        my_error(ER_UNKNOWN_ERROR, MYF(0), "Error executing BINLOG statement");
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        goto end;
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      }
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      delete ev;
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      ev= 0;
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    }
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  }
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  /*
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    Restore setting of no_send_ok
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  */
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  thd->net.no_send_ok= nsok;
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  DBUG_PRINT("info",("binlog base64 execution finished successfully"));
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  send_ok(thd);
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end:
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  /*
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    Restore setting of no_send_ok
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  */
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  thd->net.no_send_ok= nsok;
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  delete desc;
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  my_free(buf, MYF(MY_ALLOW_ZERO_PTR));
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  DBUG_VOID_RETURN;
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}
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