mirror of
https://github.com/MariaDB/server.git
synced 2025-01-16 20:12:31 +01:00
739 lines
21 KiB
C++
739 lines
21 KiB
C++
/* Copyright (C) 2005-2006 MySQL AB
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; version 2 of the License.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */
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#ifdef USE_PRAGMA_IMPLEMENTATION
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#pragma implementation /* gcc class implementation */
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#endif
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#include "mysql_priv.h"
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#include "sql_cursor.h"
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#include "sql_select.h"
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/****************************************************************************
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Declarations.
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****************************************************************************/
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/**
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Sensitive_cursor -- a sensitive non-materialized server side
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cursor. An instance of this class cursor has its own runtime
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state -- list of used items and memory root for runtime memory,
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open and locked tables, change list for the changes of the
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parsed tree. This state is freed when the cursor is closed.
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*/
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class Sensitive_cursor: public Server_side_cursor
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{
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MEM_ROOT main_mem_root;
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Query_arena *stmt_arena;
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JOIN *join;
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TABLE *open_tables;
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MYSQL_LOCK *lock;
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TABLE *derived_tables;
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/* List of items created during execution */
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query_id_t query_id;
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struct Engine_info
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{
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handlerton *ht;
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void *read_view;
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};
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Engine_info ht_info[MAX_HA];
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Item_change_list change_list;
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my_bool close_at_commit;
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THR_LOCK_OWNER lock_id;
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private:
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/* bzero cursor state in THD */
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void reset_thd(THD *thd);
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public:
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Sensitive_cursor(THD *thd, select_result *result_arg);
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THR_LOCK_OWNER *get_lock_id() { return &lock_id; }
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/* Save THD state into cursor */
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void post_open(THD *thd);
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virtual bool is_open() const { return join != 0; }
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virtual int open(JOIN *join);
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virtual void fetch(ulong num_rows);
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virtual void close();
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virtual ~Sensitive_cursor();
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};
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/**
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Materialized_cursor -- an insensitive materialized server-side
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cursor. The result set of this cursor is saved in a temporary
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table at open. The cursor itself is simply an interface for the
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handler of the temporary table.
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*/
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class Materialized_cursor: public Server_side_cursor
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{
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MEM_ROOT main_mem_root;
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/* A fake unit to supply to select_send when fetching */
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SELECT_LEX_UNIT fake_unit;
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TABLE *table;
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List<Item> item_list;
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ulong fetch_limit;
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ulong fetch_count;
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bool is_rnd_inited;
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public:
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Materialized_cursor(select_result *result, TABLE *table);
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int fill_item_list(THD *thd, List<Item> &send_fields);
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virtual bool is_open() const { return table != 0; }
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virtual int open(JOIN *join __attribute__((unused)));
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virtual void fetch(ulong num_rows);
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virtual void close();
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virtual ~Materialized_cursor();
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};
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/**
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Select_materialize -- a mediator between a cursor query and the
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protocol. In case we were not able to open a non-materialzed
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cursor, it creates an internal temporary HEAP table, and insert
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all rows into it. When the table reaches max_heap_table_size,
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it's converted to a MyISAM table. Later this table is used to
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create a Materialized_cursor.
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*/
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class Select_materialize: public select_union
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{
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select_result *result; /**< the result object of the caller (PS or SP) */
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public:
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Materialized_cursor *materialized_cursor;
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Select_materialize(select_result *result_arg)
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:result(result_arg), materialized_cursor(0) {}
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virtual bool send_fields(List<Item> &list, uint flags);
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};
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/**************************************************************************/
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/**
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Attempt to open a materialized or non-materialized cursor.
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@param thd thread handle
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@param[in] flags create a materialized cursor or not
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@param[in] result result class of the caller used as a destination
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for the rows fetched from the cursor
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@param[out] pcursor a pointer to store a pointer to cursor in
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@retval
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0 the query has been successfully executed; in this
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case pcursor may or may not contain
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a pointer to an open cursor.
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@retval
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non-zero an error, 'pcursor' has been left intact.
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*/
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int mysql_open_cursor(THD *thd, uint flags, select_result *result,
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Server_side_cursor **pcursor)
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{
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Sensitive_cursor *sensitive_cursor;
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select_result *save_result;
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Select_materialize *result_materialize;
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LEX *lex= thd->lex;
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int rc;
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/*
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The lifetime of the sensitive cursor is the same or less as the
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lifetime of the runtime memory of the statement it's opened for.
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*/
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if (! (result_materialize= new (thd->mem_root) Select_materialize(result)))
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return 1;
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if (! (sensitive_cursor= new (thd->mem_root) Sensitive_cursor(thd, result)))
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{
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delete result_materialize;
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result_materialize= NULL;
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return 1;
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}
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save_result= lex->result;
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lex->result= result_materialize;
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if (! (flags & (uint) ALWAYS_MATERIALIZED_CURSOR))
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{
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thd->lock_id= sensitive_cursor->get_lock_id();
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thd->cursor= sensitive_cursor;
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}
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rc= mysql_execute_command(thd);
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lex->result= save_result;
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thd->lock_id= &thd->main_lock_id;
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thd->cursor= 0;
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/*
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Possible options here:
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- a sensitive cursor is open. In this case rc is 0 and
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result_materialize->materialized_cursor is NULL, or
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- a materialized cursor is open. In this case rc is 0 and
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result_materialize->materialized is not NULL
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- an error occurred during materialization.
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result_materialize->materialized_cursor is not NULL, but rc != 0
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- successful completion of mysql_execute_command without
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a cursor: rc is 0, result_materialize->materialized_cursor is NULL,
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sensitive_cursor is not open.
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This is possible if some command writes directly to the
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network, bypassing select_result mechanism. An example of
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such command is SHOW VARIABLES or SHOW STATUS.
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*/
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if (rc)
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{
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if (result_materialize->materialized_cursor)
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delete result_materialize->materialized_cursor;
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goto err_open;
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}
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if (sensitive_cursor->is_open())
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{
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DBUG_ASSERT(!result_materialize->materialized_cursor);
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/*
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It's safer if we grab THD state after mysql_execute_command
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is finished and not in Sensitive_cursor::open(), because
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currently the call to Sensitive_cursor::open is buried deep
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in JOIN::exec of the top level join.
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*/
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sensitive_cursor->post_open(thd);
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*pcursor= sensitive_cursor;
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goto end;
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}
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else if (result_materialize->materialized_cursor)
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{
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Materialized_cursor *materialized_cursor=
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result_materialize->materialized_cursor;
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if ((rc= materialized_cursor->open(0)))
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{
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delete materialized_cursor;
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materialized_cursor= NULL;
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goto err_open;
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}
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*pcursor= materialized_cursor;
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thd->stmt_arena->cleanup_stmt();
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goto end;
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}
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err_open:
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DBUG_ASSERT(! (sensitive_cursor && sensitive_cursor->is_open()));
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delete sensitive_cursor;
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end:
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delete result_materialize;
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return rc;
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}
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/****************************************************************************
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Server_side_cursor
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****************************************************************************/
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Server_side_cursor::~Server_side_cursor()
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{
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}
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void Server_side_cursor::operator delete(void *ptr, size_t size)
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{
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Server_side_cursor *cursor= (Server_side_cursor*) ptr;
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MEM_ROOT own_root= *cursor->mem_root;
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DBUG_ENTER("Server_side_cursor::operator delete");
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TRASH(ptr, size);
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/*
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If this cursor has never been opened mem_root is empty. Otherwise
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mem_root points to the memory the cursor object was allocated in.
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In this case it's important to call free_root last, and free a copy
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instead of *mem_root to avoid writing into freed memory.
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*/
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free_root(&own_root, MYF(0));
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DBUG_VOID_RETURN;
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}
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/****************************************************************************
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Sensitive_cursor
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****************************************************************************/
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Sensitive_cursor::Sensitive_cursor(THD *thd, select_result *result_arg)
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:Server_side_cursor(&main_mem_root, result_arg),
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stmt_arena(0),
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join(0),
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close_at_commit(FALSE)
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{
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/* We will overwrite it at open anyway. */
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init_sql_alloc(&main_mem_root, ALLOC_ROOT_MIN_BLOCK_SIZE, 0);
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thr_lock_owner_init(&lock_id, &thd->lock_info);
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bzero((void*) ht_info, sizeof(ht_info));
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}
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/**
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Save THD state into cursor.
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@todo
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- XXX: thd->locked_tables is not changed.
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- What problems can we have with it if cursor is open?
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- TODO: must be fixed because of the prelocked mode.
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*/
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void
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Sensitive_cursor::post_open(THD *thd)
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{
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Engine_info *info;
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/*
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We need to save and reset thd->mem_root, otherwise it'll be
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freed later in mysql_parse.
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We can't just change thd->mem_root here as we want to keep the
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things that are already allocated in thd->mem_root for
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Sensitive_cursor::fetch()
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*/
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*mem_root= *thd->mem_root;
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stmt_arena= thd->stmt_arena;
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state= stmt_arena->state;
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/* Allocate a new memory root for thd */
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init_sql_alloc(thd->mem_root,
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thd->variables.query_alloc_block_size,
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thd->variables.query_prealloc_size);
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/*
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Save tables and zero THD pointers to prevent table close in
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close_thread_tables.
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*/
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derived_tables= thd->derived_tables;
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open_tables= thd->open_tables;
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lock= thd->lock;
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query_id= thd->query_id;
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free_list= thd->free_list;
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change_list= thd->change_list;
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reset_thd(thd);
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/* Now we have an active cursor and can cause a deadlock */
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thd->lock_info.n_cursors++;
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close_at_commit= FALSE; /* reset in case we're reusing the cursor */
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info= &ht_info[0];
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for (Ha_trx_info *ha_trx_info= thd->transaction.stmt.ha_list;
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ha_trx_info; ha_trx_info= ha_trx_info->next())
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{
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handlerton *ht= ha_trx_info->ht();
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close_at_commit|= test(ht->flags & HTON_CLOSE_CURSORS_AT_COMMIT);
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if (ht->create_cursor_read_view)
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{
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info->ht= ht;
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info->read_view= (ht->create_cursor_read_view)(ht, thd);
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++info;
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}
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}
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/*
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XXX: thd->locked_tables is not changed.
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What problems can we have with it if cursor is open?
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TODO: must be fixed because of the prelocked mode.
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*/
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}
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/**
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bzero cursor state in THD.
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*/
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void
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Sensitive_cursor::reset_thd(THD *thd)
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{
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thd->derived_tables= 0;
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thd->open_tables= 0;
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thd->lock= 0;
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thd->free_list= 0;
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thd->change_list.empty();
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}
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int
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Sensitive_cursor::open(JOIN *join_arg)
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{
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join= join_arg;
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THD *thd= join->thd;
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/* First non-constant table */
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JOIN_TAB *join_tab= join->join_tab + join->const_tables;
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DBUG_ENTER("Sensitive_cursor::open");
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join->change_result(result);
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/*
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Send fields description to the client; server_status is sent
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in 'EOF' packet, which follows send_fields().
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We don't simply use SEND_EOF flag of send_fields because we also
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want to flush the network buffer, which is done only in a standalone
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send_eof().
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*/
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result->send_fields(*join->fields, Protocol::SEND_NUM_ROWS);
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thd->server_status|= SERVER_STATUS_CURSOR_EXISTS;
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result->send_eof();
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thd->server_status&= ~SERVER_STATUS_CURSOR_EXISTS;
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/* Prepare JOIN for reading rows. */
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join->tmp_table= 0;
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join->join_tab[join->tables-1].next_select= setup_end_select_func(join);
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join->send_records= 0;
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join->fetch_limit= join->unit->offset_limit_cnt;
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/* Disable JOIN CACHE as it is not working with cursors yet */
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for (JOIN_TAB *tab= join_tab;
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tab != join->join_tab + join->tables - 1;
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tab++)
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{
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if (tab->next_select == sub_select_cache)
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tab->next_select= sub_select;
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}
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DBUG_ASSERT(join_tab->table->reginfo.not_exists_optimize == 0);
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DBUG_ASSERT(join_tab->not_used_in_distinct == 0);
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/*
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null_row is set only if row not found and it's outer join: should never
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happen for the first table in join_tab list
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*/
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DBUG_ASSERT(join_tab->table->null_row == 0);
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DBUG_RETURN(0);
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}
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/**
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Fetch next num_rows rows from the cursor and send them to the client.
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Precondition:
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- Sensitive_cursor is open
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@param num_rows fetch up to this number of rows (maybe less)
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*/
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void
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Sensitive_cursor::fetch(ulong num_rows)
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{
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THD *thd= join->thd;
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JOIN_TAB *join_tab= join->join_tab + join->const_tables;
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enum_nested_loop_state error= NESTED_LOOP_OK;
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Query_arena backup_arena;
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Engine_info *info;
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DBUG_ENTER("Sensitive_cursor::fetch");
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DBUG_PRINT("enter",("rows: %lu", num_rows));
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DBUG_ASSERT(thd->derived_tables == 0 && thd->open_tables == 0 &&
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thd->lock == 0);
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thd->derived_tables= derived_tables;
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thd->open_tables= open_tables;
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thd->lock= lock;
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thd->query_id= query_id;
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thd->change_list= change_list;
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/* save references to memory allocated during fetch */
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thd->set_n_backup_active_arena(this, &backup_arena);
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for (info= ht_info; info->read_view ; info++)
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(info->ht->set_cursor_read_view)(info->ht, thd, info->read_view);
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join->fetch_limit+= num_rows;
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error= sub_select(join, join_tab, 0);
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if (error == NESTED_LOOP_OK || error == NESTED_LOOP_NO_MORE_ROWS)
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error= sub_select(join,join_tab,1);
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if (error == NESTED_LOOP_QUERY_LIMIT)
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error= NESTED_LOOP_OK; /* select_limit used */
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if (error == NESTED_LOOP_CURSOR_LIMIT)
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join->resume_nested_loop= TRUE;
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ha_release_temporary_latches(thd);
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/* Grab free_list here to correctly free it in close */
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thd->restore_active_arena(this, &backup_arena);
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change_list= thd->change_list;
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reset_thd(thd);
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for (info= ht_info; info->read_view; info++)
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(info->ht->set_cursor_read_view)(info->ht, thd, 0);
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if (error == NESTED_LOOP_CURSOR_LIMIT)
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{
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/* Fetch limit worked, possibly more rows are there */
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thd->server_status|= SERVER_STATUS_CURSOR_EXISTS;
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result->send_eof();
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thd->server_status&= ~SERVER_STATUS_CURSOR_EXISTS;
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}
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else
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{
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close();
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if (error == NESTED_LOOP_OK)
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{
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thd->server_status|= SERVER_STATUS_LAST_ROW_SENT;
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result->send_eof();
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thd->server_status&= ~SERVER_STATUS_LAST_ROW_SENT;
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}
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else if (error != NESTED_LOOP_KILLED)
|
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my_message(ER_OUT_OF_RESOURCES, ER(ER_OUT_OF_RESOURCES), MYF(0));
|
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}
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DBUG_VOID_RETURN;
|
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}
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|
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|
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/**
|
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@todo
|
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Another hack: we need to set THD state as if in a fetch to be
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able to call stmt close.
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*/
|
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void
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Sensitive_cursor::close()
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{
|
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THD *thd= join->thd;
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DBUG_ENTER("Sensitive_cursor::close");
|
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|
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for (Engine_info *info= ht_info; info->read_view; info++)
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{
|
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(info->ht->close_cursor_read_view)(info->ht, thd, info->read_view);
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info->read_view= 0;
|
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info->ht= 0;
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}
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|
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thd->change_list= change_list;
|
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{
|
|
/*
|
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XXX: Another hack: we need to set THD state as if in a fetch to be
|
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able to call stmt close.
|
|
*/
|
|
DBUG_ASSERT(lock || open_tables || derived_tables);
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|
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TABLE *tmp_derived_tables= thd->derived_tables;
|
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MYSQL_LOCK *tmp_lock= thd->lock;
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|
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thd->open_tables= open_tables;
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thd->derived_tables= derived_tables;
|
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thd->lock= lock;
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|
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/* Is expected to at least close tables and empty thd->change_list */
|
|
stmt_arena->cleanup_stmt();
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|
|
|
thd->open_tables= tmp_derived_tables;
|
|
thd->derived_tables= tmp_derived_tables;
|
|
thd->lock= tmp_lock;
|
|
}
|
|
thd->lock_info.n_cursors--; /* Decrease the number of active cursors */
|
|
join= 0;
|
|
stmt_arena= 0;
|
|
free_items();
|
|
change_list.empty();
|
|
DBUG_VOID_RETURN;
|
|
}
|
|
|
|
|
|
Sensitive_cursor::~Sensitive_cursor()
|
|
{
|
|
if (is_open())
|
|
close();
|
|
}
|
|
|
|
/***************************************************************************
|
|
Materialized_cursor
|
|
****************************************************************************/
|
|
|
|
Materialized_cursor::Materialized_cursor(select_result *result_arg,
|
|
TABLE *table_arg)
|
|
:Server_side_cursor(&table_arg->mem_root, result_arg),
|
|
table(table_arg),
|
|
fetch_limit(0),
|
|
fetch_count(0),
|
|
is_rnd_inited(0)
|
|
{
|
|
fake_unit.init_query();
|
|
fake_unit.thd= table->in_use;
|
|
}
|
|
|
|
|
|
/**
|
|
Preserve the original metadata that would be sent to the client.
|
|
|
|
@param thd Thread identifier.
|
|
@param send_fields List of fields that would be sent.
|
|
*/
|
|
|
|
int Materialized_cursor::fill_item_list(THD *thd, List<Item> &send_fields)
|
|
{
|
|
Query_arena backup_arena;
|
|
int rc;
|
|
List_iterator_fast<Item> it_org(send_fields);
|
|
List_iterator_fast<Item> it_dst(item_list);
|
|
Item *item_org;
|
|
Item *item_dst;
|
|
|
|
thd->set_n_backup_active_arena(this, &backup_arena);
|
|
|
|
if ((rc= table->fill_item_list(&item_list)))
|
|
goto end;
|
|
|
|
DBUG_ASSERT(send_fields.elements == item_list.elements);
|
|
|
|
/*
|
|
Unless we preserve the original metadata, it will be lost,
|
|
since new fields describe columns of the temporary table.
|
|
Allocate a copy of the name for safety only. Currently
|
|
items with original names are always kept in memory,
|
|
but in case this changes a memory leak may be hard to notice.
|
|
*/
|
|
while ((item_dst= it_dst++, item_org= it_org++))
|
|
{
|
|
Send_field send_field;
|
|
Item_ident *ident= static_cast<Item_ident *>(item_dst);
|
|
item_org->make_field(&send_field);
|
|
|
|
ident->db_name= thd->strdup(send_field.db_name);
|
|
ident->table_name= thd->strdup(send_field.table_name);
|
|
}
|
|
end:
|
|
thd->restore_active_arena(this, &backup_arena);
|
|
/* Check for thd->is_error() in case of OOM */
|
|
return rc || thd->is_error();
|
|
}
|
|
|
|
int Materialized_cursor::open(JOIN *join __attribute__((unused)))
|
|
{
|
|
THD *thd= fake_unit.thd;
|
|
int rc;
|
|
Query_arena backup_arena;
|
|
thd->set_n_backup_active_arena(this, &backup_arena);
|
|
/* Create a list of fields and start sequential scan */
|
|
rc= result->prepare(item_list, &fake_unit);
|
|
if (!rc && !(rc= table->file->ha_rnd_init(TRUE)))
|
|
is_rnd_inited= 1;
|
|
|
|
thd->restore_active_arena(this, &backup_arena);
|
|
if (rc == 0)
|
|
{
|
|
/*
|
|
Now send the result set metadata to the client. We need to
|
|
do it here, as in Select_materialize::send_fields the items
|
|
for column types are not yet created (send_fields requires
|
|
a list of items). The new types may differ from the original
|
|
ones sent at prepare if some of them were altered by MySQL
|
|
HEAP tables mechanism -- used when create_tmp_field_from_item
|
|
may alter the original column type.
|
|
|
|
We can't simply supply SEND_EOF flag to send_fields, because
|
|
send_fields doesn't flush the network buffer.
|
|
*/
|
|
rc= result->send_fields(item_list, Protocol::SEND_NUM_ROWS);
|
|
thd->server_status|= SERVER_STATUS_CURSOR_EXISTS;
|
|
result->send_eof();
|
|
thd->server_status&= ~SERVER_STATUS_CURSOR_EXISTS;
|
|
}
|
|
return rc;
|
|
}
|
|
|
|
|
|
/**
|
|
Fetch up to the given number of rows from a materialized cursor.
|
|
|
|
Precondition: the cursor is open.
|
|
|
|
If the cursor points after the last row, the fetch will automatically
|
|
close the cursor and not send any data (except the 'EOF' packet
|
|
with SERVER_STATUS_LAST_ROW_SENT). This is an extra round trip
|
|
and probably should be improved to return
|
|
SERVER_STATUS_LAST_ROW_SENT along with the last row.
|
|
*/
|
|
|
|
void Materialized_cursor::fetch(ulong num_rows)
|
|
{
|
|
THD *thd= table->in_use;
|
|
|
|
int res= 0;
|
|
result->begin_dataset();
|
|
for (fetch_limit+= num_rows; fetch_count < fetch_limit; fetch_count++)
|
|
{
|
|
if ((res= table->file->rnd_next(table->record[0])))
|
|
break;
|
|
/* Send data only if the read was successful. */
|
|
result->send_data(item_list);
|
|
}
|
|
|
|
switch (res) {
|
|
case 0:
|
|
thd->server_status|= SERVER_STATUS_CURSOR_EXISTS;
|
|
result->send_eof();
|
|
thd->server_status&= ~SERVER_STATUS_CURSOR_EXISTS;
|
|
break;
|
|
case HA_ERR_END_OF_FILE:
|
|
thd->server_status|= SERVER_STATUS_LAST_ROW_SENT;
|
|
result->send_eof();
|
|
thd->server_status&= ~SERVER_STATUS_LAST_ROW_SENT;
|
|
close();
|
|
break;
|
|
default:
|
|
table->file->print_error(res, MYF(0));
|
|
close();
|
|
break;
|
|
}
|
|
}
|
|
|
|
|
|
void Materialized_cursor::close()
|
|
{
|
|
/* Free item_list items */
|
|
free_items();
|
|
if (is_rnd_inited)
|
|
(void) table->file->ha_rnd_end();
|
|
/*
|
|
We need to grab table->mem_root to prevent free_tmp_table from freeing:
|
|
the cursor object was allocated in this memory.
|
|
*/
|
|
main_mem_root= table->mem_root;
|
|
mem_root= &main_mem_root;
|
|
clear_alloc_root(&table->mem_root);
|
|
free_tmp_table(table->in_use, table);
|
|
table= 0;
|
|
}
|
|
|
|
|
|
Materialized_cursor::~Materialized_cursor()
|
|
{
|
|
if (is_open())
|
|
close();
|
|
}
|
|
|
|
|
|
/***************************************************************************
|
|
Select_materialize
|
|
****************************************************************************/
|
|
|
|
bool Select_materialize::send_fields(List<Item> &list, uint flags)
|
|
{
|
|
DBUG_ASSERT(table == 0);
|
|
if (create_result_table(unit->thd, unit->get_unit_column_types(),
|
|
FALSE, thd->options | TMP_TABLE_ALL_COLUMNS, ""))
|
|
return TRUE;
|
|
|
|
materialized_cursor= new (&table->mem_root)
|
|
Materialized_cursor(result, table);
|
|
|
|
if (! materialized_cursor)
|
|
{
|
|
free_tmp_table(table->in_use, table);
|
|
table= 0;
|
|
return TRUE;
|
|
}
|
|
if (materialized_cursor->fill_item_list(unit->thd, list))
|
|
{
|
|
delete materialized_cursor;
|
|
table= 0;
|
|
materialized_cursor= 0;
|
|
return TRUE;
|
|
}
|
|
|
|
return FALSE;
|
|
}
|
|
|