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647c619393
when generating new name. If find_uniq_filename returns an error, then this error is not being propagated upwards, and execution does not report error to the user (although a entry in the error log is generated). Additionally, some more errors were ignored in new_file_impl: - when writing the rotate event - when reopening the index and binary log file This patch addresses this by propagating the error up in the execution stack. Furthermore, when rotation of the binary log fails, an incident event is written, because there may be a chance that some changes for a given statement, were not properly logged. For example, in SBR, LOAD DATA INFILE statement requires more than one event to be logged, should rotation fail while logging part of the LOAD DATA events, then the logged data would become inconsistent with the data in the storage engine. mysql-test/include/restart_mysqld.inc: Refactored restart_mysqld so that it is not hardcoded for mysqld.1, but rather for the current server. mysql-test/suite/binlog/t/binlog_index.test: The error on open of index and binary log on new_file_impl is now caught. Thence the user will get an error message. We need to accomodate this change in the test case for the failing FLUSH LOGS. mysql-test/suite/rpl/t/rpl_binlog_errors-master.opt: Sets max_binlog_size to 4096. mysql-test/suite/rpl/t/rpl_binlog_errors.test: Added some test cases for asserting that the error is found and reported. sql/handler.cc: Catching error now returned by unlog (in ha_commit_trans) and returning it. sql/log.cc: Propagating errors from new_file_impl upwards. The errors that new_file_impl catches now are: - error on generate_new_name - error on writing the rotate event - error when opening the index or the binary log file. sql/log.h: Changing declaration of: - rotate_and_purge - new_file - new_file_without_locking - new_file_impl - unlog They now return int instead of void. sql/mysql_priv.h: Change signature of reload_acl_and_cache so that write_to_binlog is an int instead of bool. sql/mysqld.cc: Redeclaring not_used var as int instead of bool. sql/rpl_injector.cc: Changes to catch the return from rotate_and_purge. sql/slave.cc: Changes to catch the return values for new_file and rotate_relay_log. sql/slave.h: Changes to rotate_relay_log declaration (now returns int instead of void). sql/sql_load.cc: In SBR, some logging of LOAD DATA events goes through IO_CACHE_CALLBACK invocation at mf_iocache.c:_my_b_get. The IO_CACHE implementation is ignoring the return value for from these callbacks (pre_read and post_read), so we need to find out at the end of the execution if the error is set or not in THD. sql/sql_parse.cc: Catching the rotate_relay_log and rotate_and_purge return values. Semantic change in reload_acl_and_cache so that we report errors in binlog interactions through the write_to_binlog output parameter. If there was any failure while rotating the binary log, we should then report the error to the client when handling SQLCOMM_FLUSH.
601 lines
20 KiB
C++
601 lines
20 KiB
C++
/* Copyright (C) 2005 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., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */
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#ifndef LOG_H
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#define LOG_H
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class Relay_log_info;
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class Format_description_log_event;
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bool ending_trans(const THD* thd, const bool all);
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bool trans_has_updated_non_trans_table(const THD* thd);
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bool trans_has_no_stmt_committed(const THD* thd, const bool all);
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bool stmt_has_updated_non_trans_table(const THD* thd);
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/*
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Transaction Coordinator log - a base abstract class
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for two different implementations
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*/
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class TC_LOG
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{
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public:
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int using_heuristic_recover();
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TC_LOG() {}
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virtual ~TC_LOG() {}
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virtual int open(const char *opt_name)=0;
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virtual void close()=0;
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virtual int log_xid(THD *thd, my_xid xid)=0;
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virtual int unlog(ulong cookie, my_xid xid)=0;
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};
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class TC_LOG_DUMMY: public TC_LOG // use it to disable the logging
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{
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public:
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TC_LOG_DUMMY() {}
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int open(const char *opt_name) { return 0; }
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void close() { }
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int log_xid(THD *thd, my_xid xid) { return 1; }
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int unlog(ulong cookie, my_xid xid) { return 0; }
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};
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#ifdef HAVE_MMAP
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class TC_LOG_MMAP: public TC_LOG
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{
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public: // only to keep Sun Forte on sol9x86 happy
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typedef enum {
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POOL, // page is in pool
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ERROR, // last sync failed
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DIRTY // new xids added since last sync
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} PAGE_STATE;
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private:
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typedef struct st_page {
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struct st_page *next; // page a linked in a fifo queue
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my_xid *start, *end; // usable area of a page
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my_xid *ptr; // next xid will be written here
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int size, free; // max and current number of free xid slots on the page
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int waiters; // number of waiters on condition
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PAGE_STATE state; // see above
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pthread_mutex_t lock; // to access page data or control structure
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pthread_cond_t cond; // to wait for a sync
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} PAGE;
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char logname[FN_REFLEN];
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File fd;
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my_off_t file_length;
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uint npages, inited;
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uchar *data;
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struct st_page *pages, *syncing, *active, *pool, *pool_last;
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/*
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note that, e.g. LOCK_active is only used to protect
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'active' pointer, to protect the content of the active page
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one has to use active->lock.
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Same for LOCK_pool and LOCK_sync
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*/
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pthread_mutex_t LOCK_active, LOCK_pool, LOCK_sync;
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pthread_cond_t COND_pool, COND_active;
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public:
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TC_LOG_MMAP(): inited(0) {}
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int open(const char *opt_name);
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void close();
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int log_xid(THD *thd, my_xid xid);
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int unlog(ulong cookie, my_xid xid);
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int recover();
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private:
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void get_active_from_pool();
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int sync();
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int overflow();
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};
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#else
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#define TC_LOG_MMAP TC_LOG_DUMMY
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#endif
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extern TC_LOG *tc_log;
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extern TC_LOG_MMAP tc_log_mmap;
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extern TC_LOG_DUMMY tc_log_dummy;
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/* log info errors */
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#define LOG_INFO_EOF -1
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#define LOG_INFO_IO -2
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#define LOG_INFO_INVALID -3
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#define LOG_INFO_SEEK -4
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#define LOG_INFO_MEM -6
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#define LOG_INFO_FATAL -7
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#define LOG_INFO_IN_USE -8
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#define LOG_INFO_EMFILE -9
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/* bitmap to SQL_LOG::close() */
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#define LOG_CLOSE_INDEX 1
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#define LOG_CLOSE_TO_BE_OPENED 2
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#define LOG_CLOSE_STOP_EVENT 4
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class Relay_log_info;
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typedef struct st_log_info
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{
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char log_file_name[FN_REFLEN];
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my_off_t index_file_offset, index_file_start_offset;
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my_off_t pos;
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bool fatal; // if the purge happens to give us a negative offset
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pthread_mutex_t lock;
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st_log_info()
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: index_file_offset(0), index_file_start_offset(0),
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pos(0), fatal(0)
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{
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log_file_name[0] = '\0';
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pthread_mutex_init(&lock, MY_MUTEX_INIT_FAST);
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}
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~st_log_info() { pthread_mutex_destroy(&lock);}
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} LOG_INFO;
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/*
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Currently we have only 3 kinds of logging functions: old-fashioned
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logs, stdout and csv logging routines.
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*/
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#define MAX_LOG_HANDLERS_NUM 3
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/* log event handler flags */
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#define LOG_NONE 1
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#define LOG_FILE 2
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#define LOG_TABLE 4
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class Log_event;
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class Rows_log_event;
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enum enum_log_type { LOG_UNKNOWN, LOG_NORMAL, LOG_BIN };
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enum enum_log_state { LOG_OPENED, LOG_CLOSED, LOG_TO_BE_OPENED };
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/*
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TODO use mmap instead of IO_CACHE for binlog
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(mmap+fsync is two times faster than write+fsync)
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*/
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class MYSQL_LOG
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{
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public:
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MYSQL_LOG();
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void init_pthread_objects();
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void cleanup();
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bool open(const char *log_name,
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enum_log_type log_type,
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const char *new_name,
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enum cache_type io_cache_type_arg);
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bool init_and_set_log_file_name(const char *log_name,
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const char *new_name,
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enum_log_type log_type_arg,
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enum cache_type io_cache_type_arg);
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void init(enum_log_type log_type_arg,
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enum cache_type io_cache_type_arg);
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void close(uint exiting);
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inline bool is_open() { return log_state != LOG_CLOSED; }
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const char *generate_name(const char *log_name, const char *suffix,
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bool strip_ext, char *buff);
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int generate_new_name(char *new_name, const char *log_name);
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protected:
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/* LOCK_log is inited by init_pthread_objects() */
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pthread_mutex_t LOCK_log;
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char *name;
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char log_file_name[FN_REFLEN];
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char time_buff[20], db[NAME_LEN + 1];
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bool write_error, inited;
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IO_CACHE log_file;
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enum_log_type log_type;
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volatile enum_log_state log_state;
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enum cache_type io_cache_type;
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friend class Log_event;
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};
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class MYSQL_QUERY_LOG: public MYSQL_LOG
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{
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public:
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MYSQL_QUERY_LOG() : last_time(0) {}
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void reopen_file();
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bool write(time_t event_time, const char *user_host,
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uint user_host_len, int thread_id,
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const char *command_type, uint command_type_len,
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const char *sql_text, uint sql_text_len);
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bool write(THD *thd, time_t current_time, time_t query_start_arg,
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const char *user_host, uint user_host_len,
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ulonglong query_utime, ulonglong lock_utime, bool is_command,
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const char *sql_text, uint sql_text_len);
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bool open_slow_log(const char *log_name)
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{
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char buf[FN_REFLEN];
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return open(generate_name(log_name, "-slow.log", 0, buf), LOG_NORMAL, 0,
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WRITE_CACHE);
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}
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bool open_query_log(const char *log_name)
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{
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char buf[FN_REFLEN];
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return open(generate_name(log_name, ".log", 0, buf), LOG_NORMAL, 0,
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WRITE_CACHE);
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}
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private:
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time_t last_time;
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};
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class MYSQL_BIN_LOG: public TC_LOG, private MYSQL_LOG
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{
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private:
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/* LOCK_log and LOCK_index are inited by init_pthread_objects() */
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pthread_mutex_t LOCK_index;
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pthread_mutex_t LOCK_prep_xids;
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pthread_cond_t COND_prep_xids;
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pthread_cond_t update_cond;
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ulonglong bytes_written;
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IO_CACHE index_file;
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char index_file_name[FN_REFLEN];
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/*
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purge_file is a temp file used in purge_logs so that the index file
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can be updated before deleting files from disk, yielding better crash
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recovery. It is created on demand the first time purge_logs is called
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and then reused for subsequent calls. It is cleaned up in cleanup().
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*/
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IO_CACHE purge_index_file;
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char purge_index_file_name[FN_REFLEN];
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/*
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The max size before rotation (usable only if log_type == LOG_BIN: binary
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logs and relay logs).
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For a binlog, max_size should be max_binlog_size.
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For a relay log, it should be max_relay_log_size if this is non-zero,
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max_binlog_size otherwise.
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max_size is set in init(), and dynamically changed (when one does SET
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GLOBAL MAX_BINLOG_SIZE|MAX_RELAY_LOG_SIZE) by fix_max_binlog_size and
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fix_max_relay_log_size).
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*/
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ulong max_size;
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long prepared_xids; /* for tc log - number of xids to remember */
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// current file sequence number for load data infile binary logging
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uint file_id;
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uint open_count; // For replication
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int readers_count;
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bool need_start_event;
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/*
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no_auto_events means we don't want any of these automatic events :
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Start/Rotate/Stop. That is, in 4.x when we rotate a relay log, we don't
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want a Rotate_log event to be written to the relay log. When we start a
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relay log etc. So in 4.x this is 1 for relay logs, 0 for binlogs.
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In 5.0 it's 0 for relay logs too!
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*/
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bool no_auto_events;
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int write_to_file(IO_CACHE *cache);
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/*
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This is used to start writing to a new log file. The difference from
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new_file() is locking. new_file_without_locking() does not acquire
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LOCK_log.
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*/
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int new_file_without_locking();
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int new_file_impl(bool need_lock);
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public:
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MYSQL_LOG::generate_name;
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MYSQL_LOG::is_open;
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/* This is relay log */
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bool is_relay_log;
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/*
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These describe the log's format. This is used only for relay logs.
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_for_exec is used by the SQL thread, _for_queue by the I/O thread. It's
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necessary to have 2 distinct objects, because the I/O thread may be reading
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events in a different format from what the SQL thread is reading (consider
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the case of a master which has been upgraded from 5.0 to 5.1 without doing
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RESET MASTER, or from 4.x to 5.0).
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*/
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Format_description_log_event *description_event_for_exec,
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*description_event_for_queue;
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MYSQL_BIN_LOG();
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/*
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note that there's no destructor ~MYSQL_BIN_LOG() !
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The reason is that we don't want it to be automatically called
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on exit() - but only during the correct shutdown process
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*/
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int open(const char *opt_name);
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void close();
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int log_xid(THD *thd, my_xid xid);
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int unlog(ulong cookie, my_xid xid);
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int recover(IO_CACHE *log, Format_description_log_event *fdle);
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#if !defined(MYSQL_CLIENT)
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int flush_and_set_pending_rows_event(THD *thd, Rows_log_event* event);
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int remove_pending_rows_event(THD *thd);
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#endif /* !defined(MYSQL_CLIENT) */
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void reset_bytes_written()
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{
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bytes_written = 0;
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}
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void harvest_bytes_written(ulonglong* counter)
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{
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#ifndef DBUG_OFF
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char buf1[22],buf2[22];
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#endif
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DBUG_ENTER("harvest_bytes_written");
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(*counter)+=bytes_written;
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DBUG_PRINT("info",("counter: %s bytes_written: %s", llstr(*counter,buf1),
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llstr(bytes_written,buf2)));
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bytes_written=0;
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DBUG_VOID_RETURN;
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}
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void set_max_size(ulong max_size_arg);
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void signal_update();
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void wait_for_update(THD* thd, bool master_or_slave);
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void set_need_start_event() { need_start_event = 1; }
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void init(bool no_auto_events_arg, ulong max_size);
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void init_pthread_objects();
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void cleanup();
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bool open(const char *log_name,
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enum_log_type log_type,
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const char *new_name,
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enum cache_type io_cache_type_arg,
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bool no_auto_events_arg, ulong max_size,
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bool null_created,
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bool need_mutex);
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bool open_index_file(const char *index_file_name_arg,
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const char *log_name, bool need_mutex);
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/* Use this to start writing a new log file */
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int new_file();
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void reset_gathered_updates(THD *thd);
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bool write(Log_event* event_info); // binary log write
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bool write(THD *thd, IO_CACHE *cache, Log_event *commit_event, bool incident);
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bool write_incident(THD *thd, bool lock);
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int write_cache(IO_CACHE *cache, bool lock_log, bool flush_and_sync);
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void set_write_error(THD *thd);
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bool check_write_error(THD *thd);
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void start_union_events(THD *thd, query_id_t query_id_param);
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void stop_union_events(THD *thd);
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bool is_query_in_union(THD *thd, query_id_t query_id_param);
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/*
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v stands for vector
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invoked as appendv(buf1,len1,buf2,len2,...,bufn,lenn,0)
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*/
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bool appendv(const char* buf,uint len,...);
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bool append(Log_event* ev);
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void make_log_name(char* buf, const char* log_ident);
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bool is_active(const char* log_file_name);
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int update_log_index(LOG_INFO* linfo, bool need_update_threads);
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int rotate_and_purge(uint flags);
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bool flush_and_sync();
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int purge_logs(const char *to_log, bool included,
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bool need_mutex, bool need_update_threads,
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ulonglong *decrease_log_space);
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int purge_logs_before_date(time_t purge_time);
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int purge_first_log(Relay_log_info* rli, bool included);
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int set_purge_index_file_name(const char *base_file_name);
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int open_purge_index_file(bool destroy);
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bool is_inited_purge_index_file();
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int close_purge_index_file();
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int clean_purge_index_file();
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int sync_purge_index_file();
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int register_purge_index_entry(const char* entry);
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int register_create_index_entry(const char* entry);
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int purge_index_entry(THD *thd, ulonglong *decrease_log_space,
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bool need_mutex);
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bool reset_logs(THD* thd);
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void close(uint exiting);
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// iterating through the log index file
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int find_log_pos(LOG_INFO* linfo, const char* log_name,
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bool need_mutex);
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int find_next_log(LOG_INFO* linfo, bool need_mutex);
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int get_current_log(LOG_INFO* linfo);
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int raw_get_current_log(LOG_INFO* linfo);
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uint next_file_id();
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inline char* get_index_fname() { return index_file_name;}
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inline char* get_log_fname() { return log_file_name; }
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inline char* get_name() { return name; }
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inline pthread_mutex_t* get_log_lock() { return &LOCK_log; }
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inline IO_CACHE* get_log_file() { return &log_file; }
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inline void lock_index() { pthread_mutex_lock(&LOCK_index);}
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inline void unlock_index() { pthread_mutex_unlock(&LOCK_index);}
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inline IO_CACHE *get_index_file() { return &index_file;}
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inline uint32 get_open_count() { return open_count; }
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};
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class Log_event_handler
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{
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public:
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Log_event_handler() {}
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virtual bool init()= 0;
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virtual void cleanup()= 0;
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virtual bool log_slow(THD *thd, time_t current_time,
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time_t query_start_arg, const char *user_host,
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uint user_host_len, ulonglong query_utime,
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ulonglong lock_utime, bool is_command,
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const char *sql_text, uint sql_text_len)= 0;
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virtual bool log_error(enum loglevel level, const char *format,
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va_list args)= 0;
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virtual bool log_general(THD *thd, time_t event_time, const char *user_host,
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uint user_host_len, int thread_id,
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const char *command_type, uint command_type_len,
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const char *sql_text, uint sql_text_len,
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CHARSET_INFO *client_cs)= 0;
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virtual ~Log_event_handler() {}
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};
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int check_if_log_table(uint db_len, const char *db, uint table_name_len,
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const char *table_name, uint check_if_opened);
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class Log_to_csv_event_handler: public Log_event_handler
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{
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friend class LOGGER;
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public:
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Log_to_csv_event_handler();
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~Log_to_csv_event_handler();
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virtual bool init();
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virtual void cleanup();
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virtual bool log_slow(THD *thd, time_t current_time,
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time_t query_start_arg, const char *user_host,
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uint user_host_len, ulonglong query_utime,
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ulonglong lock_utime, bool is_command,
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const char *sql_text, uint sql_text_len);
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virtual bool log_error(enum loglevel level, const char *format,
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va_list args);
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virtual bool log_general(THD *thd, time_t event_time, const char *user_host,
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uint user_host_len, int thread_id,
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const char *command_type, uint command_type_len,
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const char *sql_text, uint sql_text_len,
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CHARSET_INFO *client_cs);
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int activate_log(THD *thd, uint log_type);
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};
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/* type of the log table */
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#define QUERY_LOG_SLOW 1
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#define QUERY_LOG_GENERAL 2
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class Log_to_file_event_handler: public Log_event_handler
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{
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MYSQL_QUERY_LOG mysql_log;
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MYSQL_QUERY_LOG mysql_slow_log;
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bool is_initialized;
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public:
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Log_to_file_event_handler(): is_initialized(FALSE)
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{}
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virtual bool init();
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virtual void cleanup();
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virtual bool log_slow(THD *thd, time_t current_time,
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time_t query_start_arg, const char *user_host,
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uint user_host_len, ulonglong query_utime,
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ulonglong lock_utime, bool is_command,
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const char *sql_text, uint sql_text_len);
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virtual bool log_error(enum loglevel level, const char *format,
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va_list args);
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virtual bool log_general(THD *thd, time_t event_time, const char *user_host,
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uint user_host_len, int thread_id,
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const char *command_type, uint command_type_len,
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const char *sql_text, uint sql_text_len,
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CHARSET_INFO *client_cs);
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void flush();
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void init_pthread_objects();
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MYSQL_QUERY_LOG *get_mysql_slow_log() { return &mysql_slow_log; }
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MYSQL_QUERY_LOG *get_mysql_log() { return &mysql_log; }
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};
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/* Class which manages slow, general and error log event handlers */
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class LOGGER
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{
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rw_lock_t LOCK_logger;
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/* flag to check whether logger mutex is initialized */
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uint inited;
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/* available log handlers */
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Log_to_csv_event_handler *table_log_handler;
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Log_to_file_event_handler *file_log_handler;
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|
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/* NULL-terminated arrays of log handlers */
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Log_event_handler *error_log_handler_list[MAX_LOG_HANDLERS_NUM + 1];
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Log_event_handler *slow_log_handler_list[MAX_LOG_HANDLERS_NUM + 1];
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Log_event_handler *general_log_handler_list[MAX_LOG_HANDLERS_NUM + 1];
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|
|
|
public:
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|
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bool is_log_tables_initialized;
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LOGGER() : inited(0), table_log_handler(NULL),
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file_log_handler(NULL), is_log_tables_initialized(FALSE)
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{}
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void lock_shared() { rw_rdlock(&LOCK_logger); }
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void lock_exclusive() { rw_wrlock(&LOCK_logger); }
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|
void unlock() { rw_unlock(&LOCK_logger); }
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|
bool is_log_table_enabled(uint log_table_type);
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|
bool log_command(THD *thd, enum enum_server_command command);
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|
|
|
/*
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|
We want to initialize all log mutexes as soon as possible,
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|
but we cannot do it in constructor, as safe_mutex relies on
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|
initialization, performed by MY_INIT(). This why this is done in
|
|
this function.
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|
*/
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|
void init_base();
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|
void init_log_tables();
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|
bool flush_logs(THD *thd);
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|
/* Perform basic logger cleanup. this will leave e.g. error log open. */
|
|
void cleanup_base();
|
|
/* Free memory. Nothing could be logged after this function is called */
|
|
void cleanup_end();
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|
bool error_log_print(enum loglevel level, const char *format,
|
|
va_list args);
|
|
bool slow_log_print(THD *thd, const char *query, uint query_length,
|
|
ulonglong current_utime);
|
|
bool general_log_print(THD *thd,enum enum_server_command command,
|
|
const char *format, va_list args);
|
|
bool general_log_write(THD *thd, enum enum_server_command command,
|
|
const char *query, uint query_length);
|
|
|
|
/* we use this function to setup all enabled log event handlers */
|
|
int set_handlers(uint error_log_printer,
|
|
uint slow_log_printer,
|
|
uint general_log_printer);
|
|
void init_error_log(uint error_log_printer);
|
|
void init_slow_log(uint slow_log_printer);
|
|
void init_general_log(uint general_log_printer);
|
|
void deactivate_log_handler(THD* thd, uint log_type);
|
|
bool activate_log_handler(THD* thd, uint log_type);
|
|
MYSQL_QUERY_LOG *get_slow_log_file_handler()
|
|
{
|
|
if (file_log_handler)
|
|
return file_log_handler->get_mysql_slow_log();
|
|
return NULL;
|
|
}
|
|
MYSQL_QUERY_LOG *get_log_file_handler()
|
|
{
|
|
if (file_log_handler)
|
|
return file_log_handler->get_mysql_log();
|
|
return NULL;
|
|
}
|
|
};
|
|
|
|
enum enum_binlog_format {
|
|
/*
|
|
statement-based except for cases where only row-based can work (UUID()
|
|
etc):
|
|
*/
|
|
BINLOG_FORMAT_MIXED= 0,
|
|
BINLOG_FORMAT_STMT= 1, // statement-based
|
|
BINLOG_FORMAT_ROW= 2, // row_based
|
|
/*
|
|
This value is last, after the end of binlog_format_typelib: it has no
|
|
corresponding cell in this typelib. We use this value to be able to know if
|
|
the user has explicitely specified a binlog format at startup or not.
|
|
*/
|
|
BINLOG_FORMAT_UNSPEC= 3
|
|
};
|
|
extern TYPELIB binlog_format_typelib;
|
|
|
|
int query_error_code(THD *thd, bool not_killed);
|
|
|
|
#endif /* LOG_H */
|