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by adding #ifndef UNIV_HOTBACKUP and adjusting some function declarations. innobase/data/data0type.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/dict/dict0dict.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/dict/dict0load.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/include/data0type.ic: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/include/srv0srv.h: Introduce srv_init(), so that it can be called in InnoDB Hot Backup innobase/include/srv0start.h: Introduce srv_add_path_separator_if_needed(), so that it can be invoked in InnoDB Hot Backup innobase/include/sync0sync.h: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/include/sync0sync.ic: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/include/trx0trx.h: trx_recover_for_mysql(): replace uint with ulint, as uint is not declared in InnoDB Hot Backup innobase/lock/lock0lock.c: Replace bool with ibool Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/row/row0ins.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/row/row0mysql.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/srv/srv0srv.c: Make srv_init() global, so that InnoDB Hot Backup can call it. Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/srv/srv0start.c: Make srv_add_path_separator_if_needed() global for InnoDB Hot Backup. Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/sync/sync0rw.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/sync/sync0sync.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/trx/trx0roll.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP innobase/trx/trx0trx.c: Replace uint with ulint, as uint is undeclared in InnoDB Hot Backup innobase/ut/ut0ut.c: Exclude code from InnoDB Hot Backup with #ifndef UNIV_HOTBACKUP
677 lines
23 KiB
C
677 lines
23 KiB
C
/******************************************************
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The transaction
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(c) 1996 Innobase Oy
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Created 3/26/1996 Heikki Tuuri
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*******************************************************/
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#ifndef trx0trx_h
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#define trx0trx_h
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#include "univ.i"
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#include "trx0types.h"
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#include "lock0types.h"
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#include "usr0types.h"
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#include "que0types.h"
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#include "mem0mem.h"
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#include "read0types.h"
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#include "trx0xa.h"
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extern ulint trx_n_mysql_transactions;
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/************************************************************************
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Releases the search latch if trx has reserved it. */
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void
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trx_search_latch_release_if_reserved(
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/*=================================*/
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trx_t* trx); /* in: transaction */
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/********************************************************************
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Retrieves the error_info field from a trx. */
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void*
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trx_get_error_info(
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/*===============*/
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/* out: the error info */
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trx_t* trx); /* in: trx object */
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/********************************************************************
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Creates and initializes a transaction object. */
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trx_t*
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trx_create(
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/*=======*/
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/* out, own: the transaction */
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sess_t* sess); /* in: session or NULL */
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/************************************************************************
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Creates a transaction object for MySQL. */
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trx_t*
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trx_allocate_for_mysql(void);
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/*========================*/
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/* out, own: transaction object */
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/************************************************************************
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Creates a transaction object for background operations by the master thread. */
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trx_t*
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trx_allocate_for_background(void);
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/*=============================*/
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/* out, own: transaction object */
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/************************************************************************
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Frees a transaction object. */
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void
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trx_free(
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/*=====*/
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trx_t* trx); /* in, own: trx object */
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/************************************************************************
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Frees a transaction object for MySQL. */
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void
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trx_free_for_mysql(
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/*===============*/
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trx_t* trx); /* in, own: trx object */
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/************************************************************************
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Frees a transaction object of a background operation of the master thread. */
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void
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trx_free_for_background(
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/*====================*/
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trx_t* trx); /* in, own: trx object */
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/********************************************************************
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Creates trx objects for transactions and initializes the trx list of
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trx_sys at database start. Rollback segment and undo log lists must
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already exist when this function is called, because the lists of
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transactions to be rolled back or cleaned up are built based on the
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undo log lists. */
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void
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trx_lists_init_at_db_start(void);
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/*============================*/
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/********************************************************************
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Starts a new transaction. */
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ibool
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trx_start(
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/*======*/
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/* out: TRUE if success, FALSE if the rollback
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segment could not support this many transactions */
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trx_t* trx, /* in: transaction */
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ulint rseg_id);/* in: rollback segment id; if ULINT_UNDEFINED
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is passed, the system chooses the rollback segment
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automatically in a round-robin fashion */
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/********************************************************************
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Starts a new transaction. */
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ibool
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trx_start_low(
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/*==========*/
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/* out: TRUE */
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trx_t* trx, /* in: transaction */
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ulint rseg_id);/* in: rollback segment id; if ULINT_UNDEFINED
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is passed, the system chooses the rollback segment
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automatically in a round-robin fashion */
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/*****************************************************************
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Starts the transaction if it is not yet started. */
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UNIV_INLINE
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void
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trx_start_if_not_started(
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/*=====================*/
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trx_t* trx); /* in: transaction */
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/*****************************************************************
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Starts the transaction if it is not yet started. Assumes we have reserved
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the kernel mutex! */
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UNIV_INLINE
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void
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trx_start_if_not_started_low(
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/*=========================*/
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trx_t* trx); /* in: transaction */
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/*****************************************************************
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Starts the transaction if it is not yet started. */
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void
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trx_start_if_not_started_noninline(
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/*===============================*/
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trx_t* trx); /* in: transaction */
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/********************************************************************
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Commits a transaction. */
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void
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trx_commit_off_kernel(
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/*==================*/
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trx_t* trx); /* in: transaction */
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/********************************************************************
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Cleans up a transaction at database startup. The cleanup is needed if
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the transaction already got to the middle of a commit when the database
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crashed, andf we cannot roll it back. */
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void
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trx_cleanup_at_db_startup(
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/*======================*/
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trx_t* trx); /* in: transaction */
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/**************************************************************************
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Does the transaction commit for MySQL. */
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ulint
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trx_commit_for_mysql(
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/*=================*/
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/* out: 0 or error number */
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trx_t* trx); /* in: trx handle */
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/**************************************************************************
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Does the transaction prepare for MySQL. */
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ulint
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trx_prepare_for_mysql(
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/*=================*/
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/* out: 0 or error number */
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trx_t* trx); /* in: trx handle */
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/**************************************************************************
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This function is used to find number of prepared transactions and
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their transaction objects for a recovery. */
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int
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trx_recover_for_mysql(
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/*==================*/
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/* out: number of prepared transactions */
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XID* xid_list, /* in/out: prepared transactions */
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ulint len); /* in: number of slots in xid_list */
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/***********************************************************************
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This function is used to commit one X/Open XA distributed transaction
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which is in the prepared state */
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trx_t *
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trx_get_trx_by_xid(
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/*===============*/
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/* out: trx or NULL */
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XID* xid); /* in: X/Open XA Transaction Idenfication */
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/**************************************************************************
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If required, flushes the log to disk if we called trx_commit_for_mysql()
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with trx->flush_log_later == TRUE. */
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ulint
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trx_commit_complete_for_mysql(
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/*==========================*/
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/* out: 0 or error number */
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trx_t* trx); /* in: trx handle */
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/**************************************************************************
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Marks the latest SQL statement ended. */
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void
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trx_mark_sql_stat_end(
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/*==================*/
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trx_t* trx); /* in: trx handle */
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/************************************************************************
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Assigns a read view for a consistent read query. All the consistent reads
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within the same transaction will get the same read view, which is created
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when this function is first called for a new started transaction. */
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read_view_t*
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trx_assign_read_view(
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/*=================*/
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/* out: consistent read view */
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trx_t* trx); /* in: active transaction */
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/***************************************************************
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The transaction must be in the TRX_QUE_LOCK_WAIT state. Puts it to
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the TRX_QUE_RUNNING state and releases query threads which were
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waiting for a lock in the wait_thrs list. */
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void
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trx_end_lock_wait(
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/*==============*/
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trx_t* trx); /* in: transaction */
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/********************************************************************
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Sends a signal to a trx object. */
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ibool
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trx_sig_send(
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/*=========*/
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/* out: TRUE if the signal was
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successfully delivered */
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trx_t* trx, /* in: trx handle */
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ulint type, /* in: signal type */
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ulint sender, /* in: TRX_SIG_SELF or
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TRX_SIG_OTHER_SESS */
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que_thr_t* receiver_thr, /* in: query thread which wants the
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reply, or NULL; if type is
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TRX_SIG_END_WAIT, this must be NULL */
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trx_savept_t* savept, /* in: possible rollback savepoint, or
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NULL */
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que_thr_t** next_thr); /* in/out: next query thread to run;
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if the value which is passed in is
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a pointer to a NULL pointer, then the
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calling function can start running
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a new query thread; if the parameter
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is NULL, it is ignored */
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/********************************************************************
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Send the reply message when a signal in the queue of the trx has
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been handled. */
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void
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trx_sig_reply(
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/*==========*/
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trx_sig_t* sig, /* in: signal */
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que_thr_t** next_thr); /* in/out: next query thread to run;
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if the value which is passed in is
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a pointer to a NULL pointer, then the
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calling function can start running
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a new query thread */
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/********************************************************************
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Removes the signal object from a trx signal queue. */
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void
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trx_sig_remove(
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/*===========*/
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trx_t* trx, /* in: trx handle */
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trx_sig_t* sig); /* in, own: signal */
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/********************************************************************
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Starts handling of a trx signal. */
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void
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trx_sig_start_handle(
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/*=================*/
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trx_t* trx, /* in: trx handle */
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que_thr_t** next_thr); /* in/out: next query thread to run;
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if the value which is passed in is
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a pointer to a NULL pointer, then the
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calling function can start running
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a new query thread */
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/********************************************************************
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Ends signal handling. If the session is in the error state, and
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trx->graph_before_signal_handling != NULL, returns control to the error
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handling routine of the graph (currently only returns the control to the
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graph root which then sends an error message to the client). */
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void
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trx_end_signal_handling(
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/*====================*/
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trx_t* trx); /* in: trx */
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/*************************************************************************
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Creates a commit command node struct. */
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commit_node_t*
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commit_node_create(
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/*===============*/
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/* out, own: commit node struct */
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mem_heap_t* heap); /* in: mem heap where created */
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/***************************************************************
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Performs an execution step for a commit type node in a query graph. */
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que_thr_t*
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trx_commit_step(
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/*============*/
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/* out: query thread to run next, or NULL */
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que_thr_t* thr); /* in: query thread */
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/**************************************************************************
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Prints info about a transaction to the standard output. The caller must
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own the kernel mutex and must have called
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innobase_mysql_prepare_print_arbitrary_thd(), unless he knows that MySQL or
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InnoDB cannot meanwhile change the info printed here. */
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void
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trx_print(
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/*======*/
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FILE* f, /* in: output stream */
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trx_t* trx); /* in: transaction */
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/* Signal to a transaction */
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struct trx_sig_struct{
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ulint type; /* signal type */
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ulint state; /* TRX_SIG_WAITING or
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TRX_SIG_BEING_HANDLED */
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ulint sender; /* TRX_SIG_SELF or
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TRX_SIG_OTHER_SESS */
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que_thr_t* receiver; /* non-NULL if the sender of the signal
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wants reply after the operation induced
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by the signal is completed */
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trx_savept_t savept; /* possible rollback savepoint */
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UT_LIST_NODE_T(trx_sig_t)
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signals; /* queue of pending signals to the
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transaction */
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UT_LIST_NODE_T(trx_sig_t)
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reply_signals; /* list of signals for which the sender
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transaction is waiting a reply */
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};
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#define TRX_MAGIC_N 91118598
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/* The transaction handle; every session has a trx object which is freed only
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when the session is freed; in addition there may be session-less transactions
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rolling back after a database recovery */
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struct trx_struct{
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ulint magic_n;
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/* All the next fields are protected by the kernel mutex, except the
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undo logs which are protected by undo_mutex */
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const char* op_info; /* English text describing the
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current operation, or an empty
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string */
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ulint type; /* TRX_USER, TRX_PURGE */
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ulint conc_state; /* state of the trx from the point
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of view of concurrency control:
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TRX_ACTIVE, TRX_COMMITTED_IN_MEMORY,
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... */
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time_t start_time; /* time the trx object was created
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or the state last time became
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TRX_ACTIVE */
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ulint isolation_level;/* TRX_ISO_REPEATABLE_READ, ... */
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ibool check_foreigns; /* normally TRUE, but if the user
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wants to suppress foreign key checks,
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(in table imports, for example) we
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set this FALSE */
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ibool check_unique_secondary;
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/* normally TRUE, but if the user
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wants to speed up inserts by
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suppressing unique key checks
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for secondary indexes when we decide
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if we can use the insert buffer for
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them, we set this FALSE */
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dulint id; /* transaction id */
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XID xid; /* X/Open XA transaction
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identification to identify a
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transaction branch */
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dulint no; /* transaction serialization number ==
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max trx id when the transaction is
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moved to COMMITTED_IN_MEMORY state */
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ibool flush_log_later;/* when we commit the transaction
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in MySQL's binlog write, we will
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flush the log to disk later in
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a separate call */
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dulint commit_lsn; /* lsn at the time of the commit */
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ibool dict_operation; /* TRUE if the trx is used to create
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a table, create an index, or drop a
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table. This is a hint that the table
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may need to be dropped in crash
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recovery. */
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dulint table_id; /* table id if the preceding field is
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TRUE */
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/*------------------------------*/
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int active_trans; /* whether a transaction in MySQL
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is active */
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void* mysql_thd; /* MySQL thread handle corresponding
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to this trx, or NULL */
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char** mysql_query_str;/* pointer to the field in mysqld_thd
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which contains the pointer to the
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current SQL query string */
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const char* mysql_log_file_name;
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/* if MySQL binlog is used, this field
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contains a pointer to the latest file
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name; this is NULL if binlog is not
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used */
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ib_longlong mysql_log_offset;/* if MySQL binlog is used, this field
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contains the end offset of the binlog
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entry */
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const char* mysql_master_log_file_name;
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/* if the database server is a MySQL
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replication slave, we have here the
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master binlog name up to which
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replication has processed; otherwise
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this is a pointer to a null
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character */
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ib_longlong mysql_master_log_pos;
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/* if the database server is a MySQL
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replication slave, this is the
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position in the log file up to which
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replication has processed */
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/* A MySQL variable mysql_thd->synchronous_repl tells if we have
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to use synchronous replication. See ha_innodb.cc. */
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char* repl_wait_binlog_name;/* NULL, or if synchronous MySQL
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replication is used, the binlog name
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up to which we must communicate the
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binlog to the slave, before returning
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from a commit; this is the same as
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mysql_log_file_name, but we allocate
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and copy the name to a separate buffer
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here */
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ib_longlong repl_wait_binlog_pos;/* see above at
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repl_wait_binlog_name */
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os_thread_id_t mysql_thread_id;/* id of the MySQL thread associated
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with this transaction object */
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ulint mysql_process_no;/* since in Linux, 'top' reports
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process id's and not thread id's, we
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store the process number too */
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/*------------------------------*/
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ulint n_mysql_tables_in_use; /* number of Innobase tables
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used in the processing of the current
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SQL statement in MySQL */
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ulint mysql_n_tables_locked;
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/* how many tables the current SQL
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statement uses, except those
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in consistent read */
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ibool dict_operation_lock_mode;
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/* 0, RW_S_LATCH, or RW_X_LATCH:
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the latch mode trx currently holds
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on dict_operation_lock */
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ibool has_search_latch;
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/* TRUE if this trx has latched the
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search system latch in S-mode */
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ulint search_latch_timeout;
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/* If we notice that someone is
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waiting for our S-lock on the search
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latch to be released, we wait in
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row0sel.c for BTR_SEA_TIMEOUT new
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searches until we try to keep
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the search latch again over
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calls from MySQL; this is intended
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to reduce contention on the search
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latch */
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/*------------------------------*/
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ibool declared_to_be_inside_innodb;
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/* this is TRUE if we have declared
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this transaction in
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srv_conc_enter_innodb to be inside the
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InnoDB engine */
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ulint n_tickets_to_enter_innodb;
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/* this can be > 0 only when
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declared_to_... is TRUE; when we come
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to srv_conc_innodb_enter, if the value
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here is > 0, we decrement this by 1 */
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/*------------------------------*/
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lock_t* auto_inc_lock; /* possible auto-inc lock reserved by
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the transaction; note that it is also
|
|
in the lock list trx_locks */
|
|
ibool trx_create_lock;/* this is TRUE if we have created a
|
|
new lock for a record accessed */
|
|
ulint n_lock_table_exp;/* number of explicit table locks
|
|
(LOCK TABLES) reserved by the
|
|
transaction, stored in trx_locks */
|
|
ulint n_lock_table_transactional;
|
|
/* number of transactional table locks
|
|
(LOCK TABLES..WHERE ENGINE) reserved by
|
|
the transaction, stored in trx_locks */
|
|
UT_LIST_NODE_T(trx_t)
|
|
trx_list; /* list of transactions */
|
|
UT_LIST_NODE_T(trx_t)
|
|
mysql_trx_list; /* list of transactions created for
|
|
MySQL */
|
|
/*------------------------------*/
|
|
ulint error_state; /* 0 if no error, otherwise error
|
|
number; NOTE That ONLY the thread
|
|
doing the transaction is allowed to
|
|
set this field: this is NOT protected
|
|
by the kernel mutex */
|
|
void* error_info; /* if the error number indicates a
|
|
duplicate key error, a pointer to
|
|
the problematic index is stored here */
|
|
sess_t* sess; /* session of the trx, NULL if none */
|
|
ulint que_state; /* TRX_QUE_RUNNING, TRX_QUE_LOCK_WAIT,
|
|
... */
|
|
que_t* graph; /* query currently run in the session,
|
|
or NULL if none; NOTE that the query
|
|
belongs to the session, and it can
|
|
survive over a transaction commit, if
|
|
it is a stored procedure with a COMMIT
|
|
WORK statement, for instance */
|
|
ulint n_active_thrs; /* number of active query threads */
|
|
ibool handling_signals;/* this is TRUE as long as the trx
|
|
is handling signals */
|
|
que_t* graph_before_signal_handling;
|
|
/* value of graph when signal handling
|
|
for this trx started: this is used to
|
|
return control to the original query
|
|
graph for error processing */
|
|
trx_sig_t sig; /* one signal object can be allocated
|
|
in this space, avoiding mem_alloc */
|
|
UT_LIST_BASE_NODE_T(trx_sig_t)
|
|
signals; /* queue of processed or pending
|
|
signals to the trx */
|
|
UT_LIST_BASE_NODE_T(trx_sig_t)
|
|
reply_signals; /* list of signals sent by the query
|
|
threads of this trx for which a thread
|
|
is waiting for a reply; if this trx is
|
|
killed, the reply requests in the list
|
|
must be canceled */
|
|
/*------------------------------*/
|
|
lock_t* wait_lock; /* if trx execution state is
|
|
TRX_QUE_LOCK_WAIT, this points to
|
|
the lock request, otherwise this is
|
|
NULL */
|
|
ibool was_chosen_as_deadlock_victim;
|
|
/* when the transaction decides to wait
|
|
for a lock, this it sets this to FALSE;
|
|
if another transaction chooses this
|
|
transaction as a victim in deadlock
|
|
resolution, it sets this to TRUE */
|
|
time_t wait_started; /* lock wait started at this time */
|
|
UT_LIST_BASE_NODE_T(que_thr_t)
|
|
wait_thrs; /* query threads belonging to this
|
|
trx that are in the QUE_THR_LOCK_WAIT
|
|
state */
|
|
ulint deadlock_mark; /* a mark field used in deadlock
|
|
checking algorithm */
|
|
/*------------------------------*/
|
|
mem_heap_t* lock_heap; /* memory heap for the locks of the
|
|
transaction */
|
|
UT_LIST_BASE_NODE_T(lock_t)
|
|
trx_locks; /* locks reserved by the transaction */
|
|
/*------------------------------*/
|
|
mem_heap_t* read_view_heap; /* memory heap for the read view */
|
|
read_view_t* read_view; /* consistent read view or NULL */
|
|
/*------------------------------*/
|
|
UT_LIST_BASE_NODE_T(trx_named_savept_t)
|
|
trx_savepoints; /* savepoints set with SAVEPOINT ...,
|
|
oldest first */
|
|
/*------------------------------*/
|
|
mutex_t undo_mutex; /* mutex protecting the fields in this
|
|
section (down to undo_no_arr), EXCEPT
|
|
last_sql_stat_start, which can be
|
|
accessed only when we know that there
|
|
cannot be any activity in the undo
|
|
logs! */
|
|
dulint undo_no; /* next undo log record number to
|
|
assign */
|
|
trx_savept_t last_sql_stat_start;
|
|
/* undo_no when the last sql statement
|
|
was started: in case of an error, trx
|
|
is rolled back down to this undo
|
|
number; see note at undo_mutex! */
|
|
trx_rseg_t* rseg; /* rollback segment assigned to the
|
|
transaction, or NULL if not assigned
|
|
yet */
|
|
trx_undo_t* insert_undo; /* pointer to the insert undo log, or
|
|
NULL if no inserts performed yet */
|
|
trx_undo_t* update_undo; /* pointer to the update undo log, or
|
|
NULL if no update performed yet */
|
|
dulint roll_limit; /* least undo number to undo during
|
|
a rollback */
|
|
ulint pages_undone; /* number of undo log pages undone
|
|
since the last undo log truncation */
|
|
trx_undo_arr_t* undo_no_arr; /* array of undo numbers of undo log
|
|
records which are currently processed
|
|
by a rollback operation */
|
|
};
|
|
|
|
#define TRX_MAX_N_THREADS 32 /* maximum number of concurrent
|
|
threads running a single operation of
|
|
a transaction, e.g., a parallel query */
|
|
/* Transaction types */
|
|
#define TRX_USER 1 /* normal user transaction */
|
|
#define TRX_PURGE 2 /* purge transaction: this is not
|
|
inserted to the trx list of trx_sys
|
|
and no rollback segment is assigned to
|
|
this */
|
|
/* Transaction concurrency states */
|
|
#define TRX_NOT_STARTED 1
|
|
#define TRX_ACTIVE 2
|
|
#define TRX_COMMITTED_IN_MEMORY 3
|
|
#define TRX_PREPARED 4 /* Support for 2PC/XA */
|
|
|
|
/* Transaction execution states when trx state is TRX_ACTIVE */
|
|
#define TRX_QUE_RUNNING 1 /* transaction is running */
|
|
#define TRX_QUE_LOCK_WAIT 2 /* transaction is waiting for a lock */
|
|
#define TRX_QUE_ROLLING_BACK 3 /* transaction is rolling back */
|
|
#define TRX_QUE_COMMITTING 4 /* transaction is committing */
|
|
|
|
/* Transaction isolation levels */
|
|
#define TRX_ISO_READ_UNCOMMITTED 1 /* dirty read: non-locking
|
|
SELECTs are performed so that
|
|
we do not look at a possible
|
|
earlier version of a record;
|
|
thus they are not 'consistent'
|
|
reads under this isolation
|
|
level; otherwise like level
|
|
2 */
|
|
|
|
#define TRX_ISO_READ_COMMITTED 2 /* somewhat Oracle-like
|
|
isolation, except that in
|
|
range UPDATE and DELETE we
|
|
must block phantom rows
|
|
with next-key locks;
|
|
SELECT ... FOR UPDATE and ...
|
|
LOCK IN SHARE MODE only lock
|
|
the index records, NOT the
|
|
gaps before them, and thus
|
|
allow free inserting;
|
|
each consistent read reads its
|
|
own snapshot */
|
|
|
|
#define TRX_ISO_REPEATABLE_READ 3 /* this is the default;
|
|
all consistent reads in the
|
|
same trx read the same
|
|
snapshot;
|
|
full next-key locking used
|
|
in locking reads to block
|
|
insertions into gaps */
|
|
|
|
#define TRX_ISO_SERIALIZABLE 4 /* all plain SELECTs are
|
|
converted to LOCK IN SHARE
|
|
MODE reads */
|
|
|
|
/* Types of a trx signal */
|
|
#define TRX_SIG_NO_SIGNAL 100
|
|
#define TRX_SIG_TOTAL_ROLLBACK 1
|
|
#define TRX_SIG_ROLLBACK_TO_SAVEPT 2
|
|
#define TRX_SIG_COMMIT 3
|
|
#define TRX_SIG_ERROR_OCCURRED 4
|
|
#define TRX_SIG_BREAK_EXECUTION 5
|
|
|
|
/* Sender types of a signal */
|
|
#define TRX_SIG_SELF 1 /* sent by the session itself, or
|
|
by an error occurring within this
|
|
session */
|
|
#define TRX_SIG_OTHER_SESS 2 /* sent by another session (which
|
|
must hold rights to this) */
|
|
/* Signal states */
|
|
#define TRX_SIG_WAITING 1
|
|
#define TRX_SIG_BEING_HANDLED 2
|
|
|
|
/* Commit command node in a query graph */
|
|
struct commit_node_struct{
|
|
que_common_t common; /* node type: QUE_NODE_COMMIT */
|
|
ulint state; /* node execution state */
|
|
};
|
|
|
|
/* Commit node states */
|
|
#define COMMIT_NODE_SEND 1
|
|
#define COMMIT_NODE_WAIT 2
|
|
|
|
|
|
#ifndef UNIV_NONINL
|
|
#include "trx0trx.ic"
|
|
#endif
|
|
|
|
#endif
|