~drizzle-trunk/drizzle/development

1 by brian
clean slate
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/* Copyright (C) 2000-2006 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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/* Classes in mysql */
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#ifdef USE_PRAGMA_INTERFACE
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#pragma interface			/* gcc class implementation */
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#endif
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#include <mysql/plugin_audit.h>
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#include "log.h"
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#include "rpl_tblmap.h"
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class Relay_log_info;
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class Query_log_event;
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class Load_log_event;
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class Slave_log_event;
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class Lex_input_stream;
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class Rows_log_event;
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enum enum_enable_or_disable { LEAVE_AS_IS, ENABLE, DISABLE };
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enum enum_ha_read_modes { RFIRST, RNEXT, RPREV, RLAST, RKEY, RNEXT_SAME };
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enum enum_duplicates { DUP_ERROR, DUP_REPLACE, DUP_UPDATE };
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enum enum_delay_key_write { DELAY_KEY_WRITE_NONE, DELAY_KEY_WRITE_ON,
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			    DELAY_KEY_WRITE_ALL };
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enum enum_slave_exec_mode { SLAVE_EXEC_MODE_STRICT,
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                            SLAVE_EXEC_MODE_IDEMPOTENT,
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                            SLAVE_EXEC_MODE_LAST_BIT};
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enum enum_mark_columns
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{ MARK_COLUMNS_NONE, MARK_COLUMNS_READ, MARK_COLUMNS_WRITE};
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enum enum_filetype { FILETYPE_CSV, FILETYPE_XML };
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extern char internal_table_name[2];
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extern char empty_c_string[1];
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extern const char **errmesg;
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#define TC_LOG_PAGE_SIZE   8192
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#define TC_LOG_MIN_SIZE    (3*TC_LOG_PAGE_SIZE)
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#define TC_HEURISTIC_RECOVER_COMMIT   1
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#define TC_HEURISTIC_RECOVER_ROLLBACK 2
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extern uint tc_heuristic_recover;
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typedef struct st_user_var_events
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{
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  user_var_entry *user_var_event;
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  char *value;
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  ulong length;
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  Item_result type;
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  uint charset_number;
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} BINLOG_USER_VAR_EVENT;
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#define RP_LOCK_LOG_IS_ALREADY_LOCKED 1
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#define RP_FORCE_ROTATE               2
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/*
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  The COPY_INFO structure is used by INSERT/REPLACE code.
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  The schema of the row counting by the INSERT/INSERT ... ON DUPLICATE KEY
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  UPDATE code:
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    If a row is inserted then the copied variable is incremented.
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    If a row is updated by the INSERT ... ON DUPLICATE KEY UPDATE and the
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      new data differs from the old one then the copied and the updated
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      variables are incremented.
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    The touched variable is incremented if a row was touched by the update part
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      of the INSERT ... ON DUPLICATE KEY UPDATE no matter whether the row
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      was actually changed or not.
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*/
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typedef struct st_copy_info {
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  ha_rows records; /**< Number of processed records */
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  ha_rows deleted; /**< Number of deleted records */
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  ha_rows updated; /**< Number of updated records */
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  ha_rows copied;  /**< Number of copied records */
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  ha_rows error_count;
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  ha_rows touched; /* Number of touched records */
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  enum enum_duplicates handle_duplicates;
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  int escape_char, last_errno;
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  bool ignore;
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  /* for INSERT ... UPDATE */
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  List<Item> *update_fields;
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  List<Item> *update_values;
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  /* for VIEW ... WITH CHECK OPTION */
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} COPY_INFO;
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class Key_part_spec :public Sql_alloc {
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public:
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  LEX_STRING field_name;
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  uint length;
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  Key_part_spec(const LEX_STRING &name, uint len)
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    : field_name(name), length(len)
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  {}
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  Key_part_spec(const char *name, const size_t name_len, uint len)
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    : length(len)
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  { field_name.str= (char *)name; field_name.length= name_len; }
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  bool operator==(const Key_part_spec& other) const;
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  /**
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    Construct a copy of this Key_part_spec. field_name is copied
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    by-pointer as it is known to never change. At the same time
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    'length' may be reset in mysql_prepare_create_table, and this
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    is why we supply it with a copy.
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    @return If out of memory, 0 is returned and an error is set in
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    THD.
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  */
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  Key_part_spec *clone(MEM_ROOT *mem_root) const
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  { return new (mem_root) Key_part_spec(*this); }
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};
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class Alter_drop :public Sql_alloc {
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public:
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  enum drop_type {KEY, COLUMN };
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  const char *name;
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  enum drop_type type;
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  Alter_drop(enum drop_type par_type,const char *par_name)
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    :name(par_name), type(par_type) {}
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  /**
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    Used to make a clone of this object for ALTER/CREATE TABLE
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    @sa comment for Key_part_spec::clone
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  */
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  Alter_drop *clone(MEM_ROOT *mem_root) const
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    { return new (mem_root) Alter_drop(*this); }
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};
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class Alter_column :public Sql_alloc {
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public:
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  const char *name;
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  Item *def;
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  Alter_column(const char *par_name,Item *literal)
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    :name(par_name), def(literal) {}
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  /**
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    Used to make a clone of this object for ALTER/CREATE TABLE
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    @sa comment for Key_part_spec::clone
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  */
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  Alter_column *clone(MEM_ROOT *mem_root) const
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    { return new (mem_root) Alter_column(*this); }
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};
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class Key :public Sql_alloc {
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public:
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  enum Keytype { PRIMARY, UNIQUE, MULTIPLE, FOREIGN_KEY};
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  enum Keytype type;
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  KEY_CREATE_INFO key_create_info;
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  List<Key_part_spec> columns;
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  LEX_STRING name;
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  bool generated;
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  Key(enum Keytype type_par, const LEX_STRING &name_arg,
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      KEY_CREATE_INFO *key_info_arg,
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      bool generated_arg, List<Key_part_spec> &cols)
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    :type(type_par), key_create_info(*key_info_arg), columns(cols),
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    name(name_arg), generated(generated_arg)
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  {}
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  Key(enum Keytype type_par, const char *name_arg, size_t name_len_arg,
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      KEY_CREATE_INFO *key_info_arg, bool generated_arg,
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      List<Key_part_spec> &cols)
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    :type(type_par), key_create_info(*key_info_arg), columns(cols),
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    generated(generated_arg)
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  {
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    name.str= (char *)name_arg;
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    name.length= name_len_arg;
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  }
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  Key(const Key &rhs, MEM_ROOT *mem_root);
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  virtual ~Key() {}
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  /* Equality comparison of keys (ignoring name) */
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  friend bool foreign_key_prefix(Key *a, Key *b);
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  /**
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    Used to make a clone of this object for ALTER/CREATE TABLE
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    @sa comment for Key_part_spec::clone
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  */
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  virtual Key *clone(MEM_ROOT *mem_root) const
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    { return new (mem_root) Key(*this, mem_root); }
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};
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class Table_ident;
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class Foreign_key: public Key {
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public:
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  enum fk_match_opt { FK_MATCH_UNDEF, FK_MATCH_FULL,
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		      FK_MATCH_PARTIAL, FK_MATCH_SIMPLE};
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  enum fk_option { FK_OPTION_UNDEF, FK_OPTION_RESTRICT, FK_OPTION_CASCADE,
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		   FK_OPTION_SET_NULL, FK_OPTION_NO_ACTION, FK_OPTION_DEFAULT};
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  Table_ident *ref_table;
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  List<Key_part_spec> ref_columns;
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  uint delete_opt, update_opt, match_opt;
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  Foreign_key(const LEX_STRING &name_arg, List<Key_part_spec> &cols,
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	      Table_ident *table,   List<Key_part_spec> &ref_cols,
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	      uint delete_opt_arg, uint update_opt_arg, uint match_opt_arg)
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    :Key(FOREIGN_KEY, name_arg, &default_key_create_info, 0, cols),
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    ref_table(table), ref_columns(ref_cols),
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    delete_opt(delete_opt_arg), update_opt(update_opt_arg),
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    match_opt(match_opt_arg)
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  {}
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  Foreign_key(const Foreign_key &rhs, MEM_ROOT *mem_root);
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  /**
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    Used to make a clone of this object for ALTER/CREATE TABLE
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    @sa comment for Key_part_spec::clone
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  */
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  virtual Key *clone(MEM_ROOT *mem_root) const
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  { return new (mem_root) Foreign_key(*this, mem_root); }
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};
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typedef struct st_mysql_lock
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{
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  TABLE **table;
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  uint table_count,lock_count;
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  THR_LOCK_DATA **locks;
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} MYSQL_LOCK;
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class LEX_COLUMN : public Sql_alloc
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{
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public:
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  String column;
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  uint rights;
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  LEX_COLUMN (const String& x,const  uint& y ): column (x),rights (y) {}
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};
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#include "sql_lex.h"				/* Must be here */
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class select_result;
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class Time_zone;
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#define THD_SENTRY_MAGIC 0xfeedd1ff
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#define THD_SENTRY_GONE  0xdeadbeef
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51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
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#define THD_CHECK_SENTRY(thd) assert(thd->dbug_sentry == THD_SENTRY_MAGIC)
1 by brian
clean slate
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struct system_variables
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{
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  /*
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    How dynamically allocated system variables are handled:
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    The global_system_variables and max_system_variables are "authoritative"
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    They both should have the same 'version' and 'size'.
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    When attempting to access a dynamic variable, if the session version
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    is out of date, then the session version is updated and realloced if
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    neccessary and bytes copied from global to make up for missing data.
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  */ 
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  ulong dynamic_variables_version;
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  char* dynamic_variables_ptr;
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  uint dynamic_variables_head;  /* largest valid variable offset */
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  uint dynamic_variables_size;  /* how many bytes are in use */
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151 by Brian Aker
Ulonglong to uint64_t
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  uint64_t myisam_max_extra_sort_file_size;
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  uint64_t myisam_max_sort_file_size;
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  uint64_t max_heap_table_size;
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  uint64_t tmp_table_size;
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  uint64_t long_query_time;
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  ha_rows select_limit;
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  ha_rows max_join_size;
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  ulong auto_increment_increment, auto_increment_offset;
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  ulong bulk_insert_buff_size;
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  ulong join_buff_size;
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  ulong max_allowed_packet;
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  ulong max_error_count;
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  ulong max_length_for_sort_data;
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  ulong max_sort_length;
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  ulong max_tmp_tables;
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  ulong min_examined_row_limit;
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  ulong myisam_repair_threads;
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  ulong myisam_sort_buff_size;
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  ulong myisam_stats_method;
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  ulong net_buffer_length;
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  ulong net_interactive_timeout;
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  ulong net_read_timeout;
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  ulong net_retry_count;
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  ulong net_wait_timeout;
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  ulong net_write_timeout;
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  ulong optimizer_prune_level;
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  ulong optimizer_search_depth;
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  /*
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    Controls use of Engine-MRR:
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      0 - auto, based on cost
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      1 - force MRR when the storage engine is capable of doing it
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      2 - disable MRR.
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  */
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  ulong optimizer_use_mrr; 
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  /* A bitmap for switching optimizations on/off */
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  ulong optimizer_switch;
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  ulong preload_buff_size;
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  ulong profiling_history_size;
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  ulong query_cache_type;
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  ulong read_buff_size;
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  ulong read_rnd_buff_size;
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  ulong div_precincrement;
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  ulong sortbuff_size;
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  ulong thread_handling;
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  ulong tx_isolation;
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  ulong completion_type;
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  /* Determines which non-standard SQL behaviour should be enabled */
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  ulong sql_mode;
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  ulong default_week_format;
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  ulong max_seeks_for_key;
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  ulong range_alloc_block_size;
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  ulong query_alloc_block_size;
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  ulong query_prealloc_size;
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  ulong trans_alloc_block_size;
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  ulong trans_prealloc_size;
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  ulong log_warnings;
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  ulong group_concat_max_len;
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  ulong binlog_format; // binlog format for this thd (see enum_binlog_format)
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  /*
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    In slave thread we need to know in behalf of which
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    thread the query is being run to replicate temp tables properly
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  */
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  my_thread_id pseudo_thread_id;
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200 by Brian Aker
my_bool from handler and set_var
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  bool low_priority_updates;
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  bool new_mode;
1 by brian
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  /* 
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    compatibility option:
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      - index usage hints (USE INDEX without a FOR clause) behave as in 5.0 
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  */
147 by Brian Aker
More my_bool conversion. This time the set_var class.
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  bool old_mode;
200 by Brian Aker
my_bool from handler and set_var
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  bool engine_condition_pushdown;
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  bool keep_files_on_create;
1 by brian
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200 by Brian Aker
my_bool from handler and set_var
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  bool old_alter_table;
1 by brian
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  plugin_ref table_plugin;
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  /* Only charset part of these variables is sensible */
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  CHARSET_INFO  *character_set_filesystem;
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  CHARSET_INFO  *character_set_client;
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  CHARSET_INFO  *character_set_results;
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  /* Both charset and collation parts of these variables are important */
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  CHARSET_INFO	*collation_server;
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  CHARSET_INFO	*collation_database;
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  CHARSET_INFO  *collation_connection;
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  /* Locale Support */
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  MY_LOCALE *lc_time_names;
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  Time_zone *time_zone;
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  /* DATE, DATETIME and MYSQL_TIME formats */
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  DATE_TIME_FORMAT *date_format;
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  DATE_TIME_FORMAT *datetime_format;
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  DATE_TIME_FORMAT *time_format;
200 by Brian Aker
my_bool from handler and set_var
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  bool sysdate_is_now;
1 by brian
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};
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/* per thread status variables */
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typedef struct system_status_var
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{
151 by Brian Aker
Ulonglong to uint64_t
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  uint64_t bytes_received;
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  uint64_t bytes_sent;
1 by brian
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  ulong com_other;
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  ulong com_stat[(uint) SQLCOM_END];
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  ulong created_tmp_disk_tables;
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  ulong created_tmp_tables;
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  ulong ha_commit_count;
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  ulong ha_delete_count;
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  ulong ha_read_first_count;
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  ulong ha_read_last_count;
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  ulong ha_read_key_count;
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  ulong ha_read_next_count;
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  ulong ha_read_prev_count;
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  ulong ha_read_rnd_count;
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  ulong ha_read_rnd_next_count;
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  ulong ha_rollback_count;
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  ulong ha_update_count;
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  ulong ha_write_count;
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  ulong ha_prepare_count;
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  ulong ha_discover_count;
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  ulong ha_savepoint_count;
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  ulong ha_savepoint_rollback_count;
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  /* KEY_CACHE parts. These are copies of the original */
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  ulong key_blocks_changed;
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  ulong key_blocks_used;
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  ulong key_cache_r_requests;
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  ulong key_cache_read;
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  ulong key_cache_w_requests;
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  ulong key_cache_write;
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  /* END OF KEY_CACHE parts */
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  ulong net_big_packet_count;
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  ulong opened_tables;
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  ulong opened_shares;
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  ulong select_full_join_count;
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  ulong select_full_range_join_count;
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  ulong select_range_count;
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  ulong select_range_check_count;
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  ulong select_scan_count;
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  ulong long_query_count;
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  ulong filesort_merge_passes;
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  ulong filesort_range_count;
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  ulong filesort_rows;
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  ulong filesort_scan_count;
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  /* Prepared statements and binary protocol */
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  ulong com_stmt_prepare;
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  ulong com_stmt_execute;
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  ulong com_stmt_send_long_data;
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  ulong com_stmt_fetch;
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  ulong com_stmt_reset;
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  ulong com_stmt_close;
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  /*
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    Number of statements sent from the client
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  */
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  ulong questions;
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  /*
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    IMPORTANT!
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    SEE last_system_status_var DEFINITION BELOW.
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    Below 'last_system_status_var' are all variables which doesn't make any
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    sense to add to the /global/ status variable counter.
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  */
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  double last_query_cost;
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} STATUS_VAR;
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/*
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  This is used for 'SHOW STATUS'. It must be updated to the last ulong
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  variable in system_status_var which is makes sens to add to the global
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  counter
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*/
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#define last_system_status_var questions
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void mark_transaction_to_rollback(THD *thd, bool all);
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#ifdef MYSQL_SERVER
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#define INIT_ARENA_DBUG_INFO is_backup_arena= 0
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class Query_arena
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{
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public:
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  /*
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    List of items created in the parser for this query. Every item puts
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    itself to the list on creation (see Item::Item() for details))
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  */
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  Item *free_list;
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  MEM_ROOT *mem_root;                   // Pointer to current memroot
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  bool is_backup_arena; /* True if this arena is used for backup. */
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
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1 by brian
clean slate
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  /*
463
    The states relfects three diffrent life cycles for three
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    different types of statements:
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    Prepared statement: INITIALIZED -> PREPARED -> EXECUTED.
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    Stored procedure:   INITIALIZED_FOR_SP -> EXECUTED.
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    Other statements:   CONVENTIONAL_EXECUTION never changes.
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  */
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  enum enum_state
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  {
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    INITIALIZED= 0, INITIALIZED_FOR_SP= 1, PREPARED= 2,
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    CONVENTIONAL_EXECUTION= 3, EXECUTED= 4, ERROR= -1
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  };
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475
  enum_state state;
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477
  /* We build without RTTI, so dynamic_cast can't be used. */
478
  enum Type
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  {
480
    STATEMENT, PREPARED_STATEMENT, STORED_PROCEDURE
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  };
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483
  Query_arena(MEM_ROOT *mem_root_arg, enum enum_state state_arg) :
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    free_list(0), mem_root(mem_root_arg), state(state_arg)
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  { INIT_ARENA_DBUG_INFO; }
486
  /*
487
    This constructor is used only when Query_arena is created as
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    backup storage for another instance of Query_arena.
489
  */
490
  Query_arena() { INIT_ARENA_DBUG_INFO; }
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492
  virtual ~Query_arena() {};
493
494
  inline bool is_conventional() const
495
  { assert(state == CONVENTIONAL_EXECUTION); return state == CONVENTIONAL_EXECUTION; }
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497
  inline void* alloc(size_t size) { return alloc_root(mem_root,size); }
498
  inline void* calloc(size_t size)
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  {
500
    void *ptr;
501
    if ((ptr=alloc_root(mem_root,size)))
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      bzero(ptr, size);
503
    return ptr;
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  }
505
  inline char *strdup(const char *str)
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  { return strdup_root(mem_root,str); }
507
  inline char *strmake(const char *str, size_t size)
508
  { return strmake_root(mem_root,str,size); }
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  inline void *memdup(const void *str, size_t size)
510
  { return memdup_root(mem_root,str,size); }
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  inline void *memdup_w_gap(const void *str, size_t size, uint gap)
512
  {
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    void *ptr;
514
    if ((ptr= alloc_root(mem_root,size+gap)))
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      memcpy(ptr,str,size);
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    return ptr;
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  }
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519
  void set_query_arena(Query_arena *set);
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  void free_items();
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  /* Close the active state associated with execution of this statement */
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  virtual void cleanup_stmt();
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};
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/**
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  @class Statement
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  @brief State of a single command executed against this connection.
530
531
  One connection can contain a lot of simultaneously running statements,
532
  some of which could be:
533
   - prepared, that is, contain placeholders,
534
  To perform some action with statement we reset THD part to the state  of
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  that statement, do the action, and then save back modified state from THD
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  to the statement. It will be changed in near future, and Statement will
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  be used explicitly.
538
*/
539
540
class Statement: public ilink, public Query_arena
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{
542
  Statement(const Statement &rhs);              /* not implemented: */
543
  Statement &operator=(const Statement &rhs);   /* non-copyable */
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public:
545
  /*
546
    Uniquely identifies each statement object in thread scope; change during
547
    statement lifetime. FIXME: must be const
548
  */
549
   ulong id;
550
551
  /*
552
    MARK_COLUMNS_NONE:  Means mark_used_colums is not set and no indicator to
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                        handler of fields used is set
554
    MARK_COLUMNS_READ:  Means a bit in read set is set to inform handler
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	                that the field is to be read. If field list contains
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                        duplicates, then thd->dup_field is set to point
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                        to the last found duplicate.
558
    MARK_COLUMNS_WRITE: Means a bit is set in write set to inform handler
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			that it needs to update this field in write_row
560
                        and update_row.
561
  */
562
  enum enum_mark_columns mark_used_columns;
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564
  LEX_STRING name; /* name for named prepared statements */
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  LEX *lex;                                     // parse tree descriptor
566
  /*
567
    Points to the query associated with this statement. It's const, but
568
    we need to declare it char * because all table handlers are written
569
    in C and need to point to it.
570
571
    Note that (A) if we set query = NULL, we must at the same time set
572
    query_length = 0, and protect the whole operation with the
573
    LOCK_thread_count mutex. And (B) we are ONLY allowed to set query to a
574
    non-NULL value if its previous value is NULL. We do not need to protect
575
    operation (B) with any mutex. To avoid crashes in races, if we do not
576
    know that thd->query cannot change at the moment, one should print
577
    thd->query like this:
578
      (1) reserve the LOCK_thread_count mutex;
579
      (2) check if thd->query is NULL;
580
      (3) if not NULL, then print at most thd->query_length characters from
581
      it. We will see the query_length field as either 0, or the right value
582
      for it.
583
    Assuming that the write and read of an n-bit memory field in an n-bit
584
    computer is atomic, we can avoid races in the above way. 
585
    This printing is needed at least in SHOW PROCESSLIST and SHOW INNODB
586
    STATUS.
587
  */
588
  char *query;
589
  uint32 query_length;                          // current query length
590
591
  /**
592
    Name of the current (default) database.
593
594
    If there is the current (default) database, "db" contains its name. If
595
    there is no current (default) database, "db" is NULL and "db_length" is
596
    0. In other words, "db", "db_length" must either be NULL, or contain a
597
    valid database name.
598
599
    @note this attribute is set and alloced by the slave SQL thread (for
600
    the THD of that thread); that thread is (and must remain, for now) the
601
    only responsible for freeing this member.
602
  */
603
604
  char *db;
605
  uint db_length;
606
607
public:
608
609
  /* This constructor is called for backup statements */
610
  Statement() {}
611
612
  Statement(LEX *lex_arg, MEM_ROOT *mem_root_arg,
613
            enum enum_state state_arg, ulong id_arg);
614
  ~Statement() {}
615
616
  /* Assign execution context (note: not all members) of given stmt to self */
617
  void set_statement(Statement *stmt);
618
  void set_n_backup_statement(Statement *stmt, Statement *backup);
619
  void restore_backup_statement(Statement *stmt, Statement *backup);
620
};
621
622
struct st_savepoint {
623
  struct st_savepoint *prev;
624
  char                *name;
625
  uint                 length;
626
  Ha_trx_info         *ha_list;
627
};
628
629
enum xa_states {XA_NOTR=0, XA_ACTIVE, XA_IDLE, XA_PREPARED};
630
extern const char *xa_state_names[];
631
632
typedef struct st_xid_state {
633
  /* For now, this is only used to catch duplicated external xids */
634
  XID  xid;                           // transaction identifier
635
  enum xa_states xa_state;            // used by external XA only
636
  bool in_thd;
637
} XID_STATE;
638
639
extern pthread_mutex_t LOCK_xid_cache;
640
extern HASH xid_cache;
641
bool xid_cache_init(void);
642
void xid_cache_free(void);
643
XID_STATE *xid_cache_search(XID *xid);
644
bool xid_cache_insert(XID *xid, enum xa_states xa_state);
645
bool xid_cache_insert(XID_STATE *xid_state);
646
void xid_cache_delete(XID_STATE *xid_state);
647
648
/**
649
  @class Security_context
650
  @brief A set of THD members describing the current authenticated user.
651
*/
652
653
class Security_context {
654
public:
655
  Security_context() {}                       /* Remove gcc warning */
656
  /*
657
    host - host of the client
658
    user - user of the client, set to NULL until the user has been read from
659
    the connection
660
    priv_user - The user privilege we are using. May be "" for anonymous user.
661
    ip - client IP
662
  */
663
  char   *host, *user, *priv_user, *ip;
664
  /* The host privilege we are using */
665
  char   priv_host[MAX_HOSTNAME];
666
  /* points to host if host is available, otherwise points to ip */
667
  const char *host_or_ip;
668
  ulong db_access;                     /* Privileges for current db */
669
670
  void init();
671
  void destroy();
672
  void skip_grants();
673
  inline char *priv_host_name()
674
  {
675
    return (*priv_host ? priv_host : (char *)"%");
676
  }
677
};
678
679
680
/**
681
  A registry for item tree transformations performed during
682
  query optimization. We register only those changes which require
683
  a rollback to re-execute a prepared statement or stored procedure
684
  yet another time.
685
*/
686
687
struct Item_change_record;
688
typedef I_List<Item_change_record> Item_change_list;
689
690
691
/**
692
  Class that holds information about tables which were opened and locked
693
  by the thread. It is also used to save/restore this information in
694
  push_open_tables_state()/pop_open_tables_state().
695
*/
696
697
class Open_tables_state
698
{
699
public:
700
  /**
701
    List of regular tables in use by this thread. Contains temporary and
702
    base tables that were opened with @see open_tables().
703
  */
704
  TABLE *open_tables;
705
  /**
706
    List of temporary tables used by this thread. Contains user-level
707
    temporary tables, created with CREATE TEMPORARY TABLE, and
708
    internal temporary tables, created, e.g., to resolve a SELECT,
709
    or for an intermediate table used in ALTER.
710
    XXX Why are internal temporary tables added to this list?
711
  */
712
  TABLE *temporary_tables;
713
  /**
714
    List of tables that were opened with HANDLER OPEN and are
715
    still in use by this thread.
716
  */
717
  TABLE *handler_tables;
718
  TABLE *derived_tables;
719
  /*
720
    During a MySQL session, one can lock tables in two modes: automatic
721
    or manual. In automatic mode all necessary tables are locked just before
722
    statement execution, and all acquired locks are stored in 'lock'
723
    member. Unlocking takes place automatically as well, when the
724
    statement ends.
725
    Manual mode comes into play when a user issues a 'LOCK TABLES'
726
    statement. In this mode the user can only use the locked tables.
727
    Trying to use any other tables will give an error. The locked tables are
728
    stored in 'locked_tables' member.  Manual locking is described in
729
    the 'LOCK_TABLES' chapter of the MySQL manual.
730
    See also lock_tables() for details.
731
  */
732
  MYSQL_LOCK *lock;
733
  /*
734
    Tables that were locked with explicit or implicit LOCK TABLES.
735
    (Implicit LOCK TABLES happens when we are prelocking tables for
736
     execution of statement which uses stored routines. See description
737
     THD::prelocked_mode for more info.)
738
  */
739
  MYSQL_LOCK *locked_tables;
740
741
  /*
742
    CREATE-SELECT keeps an extra lock for the table being
743
    created. This field is used to keep the extra lock available for
744
    lower level routines, which would otherwise miss that lock.
745
   */
746
  MYSQL_LOCK *extra_lock;
747
748
  ulong	version;
749
  uint current_tablenr;
750
751
  enum enum_flags {
752
    BACKUPS_AVAIL = (1U << 0)     /* There are backups available */
753
  };
754
755
  /*
756
    Flags with information about the open tables state.
757
  */
758
  uint state_flags;
759
760
  /*
761
    This constructor serves for creation of Open_tables_state instances
762
    which are used as backup storage.
763
  */
764
  Open_tables_state() : state_flags(0U) { }
765
766
  Open_tables_state(ulong version_arg);
767
768
  void set_open_tables_state(Open_tables_state *state)
769
  {
770
    *this= *state;
771
  }
772
773
  void reset_open_tables_state()
774
  {
775
    open_tables= temporary_tables= handler_tables= derived_tables= 0;
776
    extra_lock= lock= locked_tables= 0;
777
    state_flags= 0U;
778
  }
779
};
780
781
/**
782
  @class Sub_statement_state
783
  @brief Used to save context when executing a function or trigger
784
*/
785
786
/* Defines used for Sub_statement_state::in_sub_stmt */
787
788
#define SUB_STMT_TRIGGER 1
789
#define SUB_STMT_FUNCTION 2
790
791
792
class Sub_statement_state
793
{
794
public:
151 by Brian Aker
Ulonglong to uint64_t
795
  uint64_t options;
796
  uint64_t first_successful_insert_id_in_prev_stmt;
797
  uint64_t first_successful_insert_id_in_cur_stmt, insert_id_for_cur_row;
1 by brian
clean slate
798
  Discrete_interval auto_inc_interval_for_cur_row;
799
  Discrete_intervals_list auto_inc_intervals_forced;
151 by Brian Aker
Ulonglong to uint64_t
800
  uint64_t limit_found_rows;
1 by brian
clean slate
801
  ha_rows    cuted_fields, sent_row_count, examined_row_count;
802
  ulong client_capabilities;
803
  uint in_sub_stmt;
804
  bool enable_slow_log;
805
  bool last_insert_id_used;
806
  SAVEPOINT *savepoints;
807
};
808
809
810
/* Flags for the THD::system_thread variable */
811
enum enum_thread_type
812
{
135 by Brian Aker
Random cleanup. Dead partition tests, pass operator in sql_plugin, mtr based
813
  NON_SYSTEM_THREAD,
814
  SYSTEM_THREAD_SLAVE_IO,
815
  SYSTEM_THREAD_SLAVE_SQL
1 by brian
clean slate
816
};
817
818
819
/**
820
  This class represents the interface for internal error handlers.
821
  Internal error handlers are exception handlers used by the server
822
  implementation.
823
*/
824
class Internal_error_handler
825
{
826
protected:
827
  Internal_error_handler() {}
828
  virtual ~Internal_error_handler() {}
829
830
public:
831
  /**
832
    Handle an error condition.
833
    This method can be implemented by a subclass to achieve any of the
834
    following:
835
    - mask an error internally, prevent exposing it to the user,
836
    - mask an error and throw another one instead.
837
    When this method returns true, the error condition is considered
838
    'handled', and will not be propagated to upper layers.
839
    It is the responsability of the code installing an internal handler
840
    to then check for trapped conditions, and implement logic to recover
841
    from the anticipated conditions trapped during runtime.
842
843
    This mechanism is similar to C++ try/throw/catch:
844
    - 'try' correspond to <code>THD::push_internal_handler()</code>,
845
    - 'throw' correspond to <code>my_error()</code>,
846
    which invokes <code>my_message_sql()</code>,
847
    - 'catch' correspond to checking how/if an internal handler was invoked,
848
    before removing it from the exception stack with
849
    <code>THD::pop_internal_handler()</code>.
850
851
    @param sql_errno the error number
852
    @param level the error level
853
    @param thd the calling thread
854
    @return true if the error is handled
855
  */
856
  virtual bool handle_error(uint sql_errno,
857
                            const char *message,
858
                            MYSQL_ERROR::enum_warning_level level,
859
                            THD *thd) = 0;
860
};
861
862
863
/**
864
  Stores status of the currently executed statement.
865
  Cleared at the beginning of the statement, and then
866
  can hold either OK, ERROR, or EOF status.
867
  Can not be assigned twice per statement.
868
*/
869
870
class Diagnostics_area
871
{
872
public:
873
  enum enum_diagnostics_status
874
  {
875
    /** The area is cleared at start of a statement. */
876
    DA_EMPTY= 0,
877
    /** Set whenever one calls my_ok(). */
878
    DA_OK,
879
    /** Set whenever one calls my_eof(). */
880
    DA_EOF,
881
    /** Set whenever one calls my_error() or my_message(). */
882
    DA_ERROR,
883
    /** Set in case of a custom response, such as one from COM_STMT_PREPARE. */
884
    DA_DISABLED
885
  };
886
  /** True if status information is sent to the client. */
887
  bool is_sent;
888
  /** Set to make set_error_status after set_{ok,eof}_status possible. */
889
  bool can_overwrite_status;
890
891
  void set_ok_status(THD *thd, ha_rows affected_rows_arg,
151 by Brian Aker
Ulonglong to uint64_t
892
                     uint64_t last_insert_id_arg,
1 by brian
clean slate
893
                     const char *message);
894
  void set_eof_status(THD *thd);
895
  void set_error_status(THD *thd, uint sql_errno_arg, const char *message_arg);
896
897
  void disable_status();
898
899
  void reset_diagnostics_area();
900
901
  bool is_set() const { return m_status != DA_EMPTY; }
902
  bool is_error() const { return m_status == DA_ERROR; }
903
  bool is_eof() const { return m_status == DA_EOF; }
904
  bool is_ok() const { return m_status == DA_OK; }
905
  bool is_disabled() const { return m_status == DA_DISABLED; }
906
  enum_diagnostics_status status() const { return m_status; }
907
908
  const char *message() const
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
909
  { assert(m_status == DA_ERROR || m_status == DA_OK); return m_message; }
1 by brian
clean slate
910
911
  uint sql_errno() const
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
912
  { assert(m_status == DA_ERROR); return m_sql_errno; }
1 by brian
clean slate
913
914
  uint server_status() const
915
  {
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
916
    assert(m_status == DA_OK || m_status == DA_EOF);
1 by brian
clean slate
917
    return m_server_status;
918
  }
919
920
  ha_rows affected_rows() const
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
921
  { assert(m_status == DA_OK); return m_affected_rows; }
1 by brian
clean slate
922
151 by Brian Aker
Ulonglong to uint64_t
923
  uint64_t last_insert_id() const
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
924
  { assert(m_status == DA_OK); return m_last_insert_id; }
1 by brian
clean slate
925
926
  uint total_warn_count() const
927
  {
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
928
    assert(m_status == DA_OK || m_status == DA_EOF);
1 by brian
clean slate
929
    return m_total_warn_count;
930
  }
931
932
  Diagnostics_area() { reset_diagnostics_area(); }
933
934
private:
935
  /** Message buffer. Can be used by OK or ERROR status. */
936
  char m_message[MYSQL_ERRMSG_SIZE];
937
  /**
938
    SQL error number. One of ER_ codes from share/errmsg.txt.
939
    Set by set_error_status.
940
  */
941
  uint m_sql_errno;
942
943
  /**
944
    Copied from thd->server_status when the diagnostics area is assigned.
945
    We need this member as some places in the code use the following pattern:
946
    thd->server_status|= ...
947
    my_eof(thd);
948
    thd->server_status&= ~...
949
    Assigned by OK, EOF or ERROR.
950
  */
951
  uint m_server_status;
952
  /**
953
    The number of rows affected by the last statement. This is
954
    semantically close to thd->row_count_func, but has a different
955
    life cycle. thd->row_count_func stores the value returned by
956
    function ROW_COUNT() and is cleared only by statements that
957
    update its value, such as INSERT, UPDATE, DELETE and few others.
958
    This member is cleared at the beginning of the next statement.
959
960
    We could possibly merge the two, but life cycle of thd->row_count_func
961
    can not be changed.
962
  */
963
  ha_rows    m_affected_rows;
964
  /**
965
    Similarly to the previous member, this is a replacement of
966
    thd->first_successful_insert_id_in_prev_stmt, which is used
967
    to implement LAST_INSERT_ID().
968
  */
151 by Brian Aker
Ulonglong to uint64_t
969
  uint64_t   m_last_insert_id;
1 by brian
clean slate
970
  /** The total number of warnings. */
971
  uint	     m_total_warn_count;
972
  enum_diagnostics_status m_status;
973
  /**
974
    @todo: the following THD members belong here:
975
    - warn_list, warn_count,
976
  */
977
};
978
979
980
/**
981
  Storage engine specific thread local data.
982
*/
983
984
struct Ha_data
985
{
986
  /**
987
    Storage engine specific thread local data.
988
    Lifetime: one user connection.
989
  */
990
  void *ha_ptr;
991
  /**
992
    0: Life time: one statement within a transaction. If @@autocommit is
993
    on, also represents the entire transaction.
994
    @sa trans_register_ha()
995
996
    1: Life time: one transaction within a connection.
997
    If the storage engine does not participate in a transaction,
998
    this should not be used.
999
    @sa trans_register_ha()
1000
  */
1001
  Ha_trx_info ha_info[2];
1002
1003
  Ha_data() :ha_ptr(NULL) {}
1004
};
1005
1006
1007
/**
1008
  @class THD
1009
  For each client connection we create a separate thread with THD serving as
1010
  a thread/connection descriptor
1011
*/
1012
1013
class THD :public Statement,
1014
           public Open_tables_state
1015
{
1016
public:
1017
  /* Used to execute base64 coded binlog events in MySQL server */
1018
  Relay_log_info* rli_fake;
1019
1020
  /*
1021
    Constant for THD::where initialization in the beginning of every query.
1022
1023
    It's needed because we do not save/restore THD::where normally during
1024
    primary (non subselect) query execution.
1025
  */
1026
  static const char * const DEFAULT_WHERE;
1027
1028
  NET	  net;				// client connection descriptor
1029
  MEM_ROOT warn_root;			// For warnings and errors
1030
  Protocol *protocol;			// Current protocol
1031
  Protocol_text   protocol_text;	// Normal protocol
1032
  HASH    user_vars;			// hash for user variables
1033
  String  packet;			// dynamic buffer for network I/O
1034
  String  convert_buffer;               // buffer for charset conversions
1035
  struct  rand_struct rand;		// used for authentication
1036
  struct  system_variables variables;	// Changeable local variables
1037
  struct  system_status_var status_var; // Per thread statistic vars
1038
  struct  system_status_var *initial_status_var; /* used by show status */
1039
  THR_LOCK_INFO lock_info;              // Locking info of this thread
1040
  THR_LOCK_OWNER main_lock_id;          // To use for conventional queries
1041
  THR_LOCK_OWNER *lock_id;              // If not main_lock_id, points to
1042
                                        // the lock_id of a cursor.
1043
  pthread_mutex_t LOCK_delete;		// Locked before thd is deleted
1044
  /*
1045
    A pointer to the stack frame of handle_one_connection(),
1046
    which is called first in the thread for handling a client
1047
  */
1048
  char	  *thread_stack;
1049
1050
  /**
1051
    Currently selected catalog.
1052
  */
1053
  char *catalog;
1054
1055
  /**
1056
    @note
1057
    Some members of THD (currently 'Statement::db',
1058
    'catalog' and 'query')  are set and alloced by the slave SQL thread
1059
    (for the THD of that thread); that thread is (and must remain, for now)
1060
    the only responsible for freeing these 3 members. If you add members
1061
    here, and you add code to set them in replication, don't forget to
1062
    free_them_and_set_them_to_0 in replication properly. For details see
1063
    the 'err:' label of the handle_slave_sql() in sql/slave.cc.
1064
1065
    @see handle_slave_sql
1066
  */
1067
1068
  Security_context main_security_ctx;
1069
  Security_context *security_ctx;
1070
1071
  /*
1072
    Points to info-string that we show in SHOW PROCESSLIST
1073
    You are supposed to call THD_SET_PROC_INFO only if you have coded
1074
    a time-consuming piece that MySQL can get stuck in for a long time.
1075
1076
    Set it using the  thd_proc_info(THD *thread, const char *message)
1077
    macro/function.
1078
  */
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1079
#define THD_SET_PROC_INFO(thd, info) \
1 by brian
clean slate
1080
    (thd)->proc_info= (info)
1081
1082
  inline const char* get_proc_info() { return proc_info;}
1083
1084
  /* left public for the the storage engines, please avoid direct use */
1085
  const char *proc_info;
1086
1087
  /*
1088
    Used in error messages to tell user in what part of MySQL we found an
1089
    error. E. g. when where= "having clause", if fix_fields() fails, user
1090
    will know that the error was in having clause.
1091
  */
1092
  const char *where;
1093
1094
  double tmp_double_value;                    /* Used in set_var.cc */
1095
  ulong client_capabilities;		/* What the client supports */
1096
  ulong max_client_packet_length;
1097
1098
  HASH		handler_tables_hash;
1099
  /*
1100
    One thread can hold up to one named user-level lock. This variable
1101
    points to a lock object if the lock is present. See item_func.cc and
1102
    chapter 'Miscellaneous functions', for functions GET_LOCK, RELEASE_LOCK. 
1103
  */
1104
  uint dbug_sentry; // watch out for memory corruption
1105
  struct st_my_thread_var *mysys_var;
1106
  /*
1107
    Type of current query: COM_STMT_PREPARE, COM_QUERY, etc. Set from
1108
    first byte of the packet in do_command()
1109
  */
1110
  enum enum_server_command command;
1111
  uint32     server_id;
1112
  uint32     file_id;			// for LOAD DATA INFILE
1113
  /* remote (peer) port */
1114
  uint16 peer_port;
1115
  time_t     start_time, user_time;
151 by Brian Aker
Ulonglong to uint64_t
1116
  uint64_t  connect_utime, thr_create_utime; // track down slow pthread_create
1117
  uint64_t  start_utime, utime_after_lock;
1 by brian
clean slate
1118
  
1119
  thr_lock_type update_lock_default;
1120
1121
  /* <> 0 if we are inside of trigger or stored function. */
1122
  uint in_sub_stmt;
1123
1124
  /* container for handler's private per-connection data */
1125
  Ha_data ha_data[MAX_HA];
1126
1127
  /* Place to store various things */
1128
  void *thd_marker;
1129
#ifndef MYSQL_CLIENT
1130
  int binlog_setup_trx_data();
1131
1132
  /*
1133
    Public interface to write RBR events to the binlog
1134
  */
1135
  void binlog_start_trans_and_stmt();
1136
  void binlog_set_stmt_begin();
1137
  int binlog_write_table_map(TABLE *table, bool is_transactional);
1138
  int binlog_write_row(TABLE* table, bool is_transactional,
1139
                       const uchar *new_data);
1140
  int binlog_delete_row(TABLE* table, bool is_transactional,
1141
                        const uchar *old_data);
1142
  int binlog_update_row(TABLE* table, bool is_transactional,
1143
                        const uchar *old_data, const uchar *new_data);
1144
1145
  void set_server_id(uint32 sid) { server_id = sid; }
1146
1147
  /*
1148
    Member functions to handle pending event for row-level logging.
1149
  */
1150
  template <class RowsEventT> Rows_log_event*
1151
    binlog_prepare_pending_rows_event(TABLE* table, uint32 serv_id,
1152
                                      size_t needed,
1153
                                      bool is_transactional,
1154
				      RowsEventT* hint);
1155
  Rows_log_event* binlog_get_pending_rows_event() const;
1156
  void            binlog_set_pending_rows_event(Rows_log_event* ev);
1157
  int binlog_flush_pending_rows_event(bool stmt_end);
1158
1159
private:
1160
  uint binlog_table_maps; // Number of table maps currently in the binlog
1161
1162
  enum enum_binlog_flag {
1163
    BINLOG_FLAG_UNSAFE_STMT_PRINTED,
1164
    BINLOG_FLAG_COUNT
1165
  };
1166
1167
  /**
1168
     Flags with per-thread information regarding the status of the
1169
     binary log.
1170
   */
1171
  uint32 binlog_flags;
1172
public:
1173
  uint get_binlog_table_maps() const {
1174
    return binlog_table_maps;
1175
  }
1176
  void clear_binlog_table_maps() {
1177
    binlog_table_maps= 0;
1178
  }
1179
#endif /* MYSQL_CLIENT */
1180
1181
public:
1182
1183
  struct st_transactions {
1184
    SAVEPOINT *savepoints;
1185
    THD_TRANS all;			// Trans since BEGIN WORK
1186
    THD_TRANS stmt;			// Trans for current statement
1187
    bool on;                            // see ha_enable_transaction()
1188
    XID_STATE xid_state;
1189
    Rows_log_event *m_pending_rows_event;
1190
1191
    /*
1192
       Tables changed in transaction (that must be invalidated in query cache).
1193
       List contain only transactional tables, that not invalidated in query
1194
       cache (instead of full list of changed in transaction tables).
1195
    */
1196
    CHANGED_TABLE_LIST* changed_tables;
1197
    MEM_ROOT mem_root; // Transaction-life memory allocation pool
1198
    void cleanup()
1199
    {
1200
      changed_tables= 0;
1201
      savepoints= 0;
1202
      free_root(&mem_root,MYF(MY_KEEP_PREALLOC));
1203
    }
1204
    st_transactions()
1205
    {
1206
      bzero((char*)this, sizeof(*this));
1207
      xid_state.xid.null();
1208
      init_sql_alloc(&mem_root, ALLOC_ROOT_MIN_BLOCK_SIZE, 0);
1209
    }
1210
  } transaction;
1211
  Field      *dup_field;
1212
  sigset_t signals;
1213
#ifdef SIGNAL_WITH_VIO_CLOSE
1214
  Vio* active_vio;
1215
#endif
1216
  /*
1217
    This is to track items changed during execution of a prepared
1218
    statement/stored procedure. It's created by
1219
    register_item_tree_change() in memory root of THD, and freed in
1220
    rollback_item_tree_changes(). For conventional execution it's always
1221
    empty.
1222
  */
1223
  Item_change_list change_list;
1224
1225
  /*
1226
    A permanent memory area of the statement. For conventional
1227
    execution, the parsed tree and execution runtime reside in the same
1228
    memory root. In this case stmt_arena points to THD. In case of
1229
    a prepared statement or a stored procedure statement, thd->mem_root
1230
    conventionally points to runtime memory, and thd->stmt_arena
1231
    points to the memory of the PS/SP, where the parsed tree of the
1232
    statement resides. Whenever you need to perform a permanent
1233
    transformation of a parsed tree, you should allocate new memory in
1234
    stmt_arena, to allow correct re-execution of PS/SP.
1235
    Note: in the parser, stmt_arena == thd, even for PS/SP.
1236
  */
1237
  Query_arena *stmt_arena;
1238
  /* Tells if LAST_INSERT_ID(#) was called for the current statement */
1239
  bool arg_of_last_insert_id_function;
1240
  /*
1241
    ALL OVER THIS FILE, "insert_id" means "*automatically generated* value for
1242
    insertion into an auto_increment column".
1243
  */
1244
  /*
1245
    This is the first autogenerated insert id which was *successfully*
1246
    inserted by the previous statement (exactly, if the previous statement
1247
    didn't successfully insert an autogenerated insert id, then it's the one
1248
    of the statement before, etc).
1249
    It can also be set by SET LAST_INSERT_ID=# or SELECT LAST_INSERT_ID(#).
1250
    It is returned by LAST_INSERT_ID().
1251
  */
151 by Brian Aker
Ulonglong to uint64_t
1252
  uint64_t  first_successful_insert_id_in_prev_stmt;
1 by brian
clean slate
1253
  /*
1254
    Variant of the above, used for storing in statement-based binlog. The
1255
    difference is that the one above can change as the execution of a stored
1256
    function progresses, while the one below is set once and then does not
1257
    change (which is the value which statement-based binlog needs).
1258
  */
151 by Brian Aker
Ulonglong to uint64_t
1259
  uint64_t  first_successful_insert_id_in_prev_stmt_for_binlog;
1 by brian
clean slate
1260
  /*
1261
    This is the first autogenerated insert id which was *successfully*
1262
    inserted by the current statement. It is maintained only to set
1263
    first_successful_insert_id_in_prev_stmt when statement ends.
1264
  */
151 by Brian Aker
Ulonglong to uint64_t
1265
  uint64_t  first_successful_insert_id_in_cur_stmt;
1 by brian
clean slate
1266
  /*
1267
    We follow this logic:
1268
    - when stmt starts, first_successful_insert_id_in_prev_stmt contains the
1269
    first insert id successfully inserted by the previous stmt.
1270
    - as stmt makes progress, handler::insert_id_for_cur_row changes;
1271
    every time get_auto_increment() is called,
1272
    auto_inc_intervals_in_cur_stmt_for_binlog is augmented with the
1273
    reserved interval (if statement-based binlogging).
1274
    - at first successful insertion of an autogenerated value,
1275
    first_successful_insert_id_in_cur_stmt is set to
1276
    handler::insert_id_for_cur_row.
1277
    - when stmt goes to binlog,
1278
    auto_inc_intervals_in_cur_stmt_for_binlog is binlogged if
1279
    non-empty.
1280
    - when stmt ends, first_successful_insert_id_in_prev_stmt is set to
1281
    first_successful_insert_id_in_cur_stmt.
1282
  */
1283
  /*
1284
    stmt_depends_on_first_successful_insert_id_in_prev_stmt is set when
1285
    LAST_INSERT_ID() is used by a statement.
1286
    If it is set, first_successful_insert_id_in_prev_stmt_for_binlog will be
1287
    stored in the statement-based binlog.
1288
    This variable is CUMULATIVE along the execution of a stored function or
1289
    trigger: if one substatement sets it to 1 it will stay 1 until the
1290
    function/trigger ends, thus making sure that
1291
    first_successful_insert_id_in_prev_stmt_for_binlog does not change anymore
1292
    and is propagated to the caller for binlogging.
1293
  */
1294
  bool       stmt_depends_on_first_successful_insert_id_in_prev_stmt;
1295
  /*
1296
    List of auto_increment intervals reserved by the thread so far, for
1297
    storage in the statement-based binlog.
1298
    Note that its minimum is not first_successful_insert_id_in_cur_stmt:
1299
    assuming a table with an autoinc column, and this happens:
1300
    INSERT INTO ... VALUES(3);
1301
    SET INSERT_ID=3; INSERT IGNORE ... VALUES (NULL);
1302
    then the latter INSERT will insert no rows
1303
    (first_successful_insert_id_in_cur_stmt == 0), but storing "INSERT_ID=3"
1304
    in the binlog is still needed; the list's minimum will contain 3.
1305
  */
1306
  Discrete_intervals_list auto_inc_intervals_in_cur_stmt_for_binlog;
1307
  /* Used by replication and SET INSERT_ID */
1308
  Discrete_intervals_list auto_inc_intervals_forced;
1309
  /*
1310
    There is BUG#19630 where statement-based replication of stored
1311
    functions/triggers with two auto_increment columns breaks.
1312
    We however ensure that it works when there is 0 or 1 auto_increment
1313
    column; our rules are
1314
    a) on master, while executing a top statement involving substatements,
1315
    first top- or sub- statement to generate auto_increment values wins the
1316
    exclusive right to see its values be written to binlog (the write
1317
    will be done by the statement or its caller), and the losers won't see
1318
    their values be written to binlog.
1319
    b) on slave, while replicating a top statement involving substatements,
1320
    first top- or sub- statement to need to read auto_increment values from
1321
    the master's binlog wins the exclusive right to read them (so the losers
1322
    won't read their values from binlog but instead generate on their own).
1323
    a) implies that we mustn't backup/restore
1324
    auto_inc_intervals_in_cur_stmt_for_binlog.
1325
    b) implies that we mustn't backup/restore auto_inc_intervals_forced.
1326
1327
    If there are more than 1 auto_increment columns, then intervals for
1328
    different columns may mix into the
1329
    auto_inc_intervals_in_cur_stmt_for_binlog list, which is logically wrong,
1330
    but there is no point in preventing this mixing by preventing intervals
1331
    from the secondly inserted column to come into the list, as such
1332
    prevention would be wrong too.
1333
    What will happen in the case of
1334
    INSERT INTO t1 (auto_inc) VALUES(NULL);
1335
    where t1 has a trigger which inserts into an auto_inc column of t2, is
1336
    that in binlog we'll store the interval of t1 and the interval of t2 (when
1337
    we store intervals, soon), then in slave, t1 will use both intervals, t2
1338
    will use none; if t1 inserts the same number of rows as on master,
1339
    normally the 2nd interval will not be used by t1, which is fine. t2's
1340
    values will be wrong if t2's internal auto_increment counter is different
1341
    from what it was on master (which is likely). In 5.1, in mixed binlogging
1342
    mode, row-based binlogging is used for such cases where two
1343
    auto_increment columns are inserted.
1344
  */
151 by Brian Aker
Ulonglong to uint64_t
1345
  inline void record_first_successful_insert_id_in_cur_stmt(uint64_t id_arg)
1 by brian
clean slate
1346
  {
1347
    if (first_successful_insert_id_in_cur_stmt == 0)
1348
      first_successful_insert_id_in_cur_stmt= id_arg;
1349
  }
151 by Brian Aker
Ulonglong to uint64_t
1350
  inline uint64_t read_first_successful_insert_id_in_prev_stmt(void)
1 by brian
clean slate
1351
  {
1352
    if (!stmt_depends_on_first_successful_insert_id_in_prev_stmt)
1353
    {
1354
      /* It's the first time we read it */
1355
      first_successful_insert_id_in_prev_stmt_for_binlog=
1356
        first_successful_insert_id_in_prev_stmt;
1357
      stmt_depends_on_first_successful_insert_id_in_prev_stmt= 1;
1358
    }
1359
    return first_successful_insert_id_in_prev_stmt;
1360
  }
1361
  /*
1362
    Used by Intvar_log_event::do_apply_event() and by "SET INSERT_ID=#"
1363
    (mysqlbinlog). We'll soon add a variant which can take many intervals in
1364
    argument.
1365
  */
151 by Brian Aker
Ulonglong to uint64_t
1366
  inline void force_one_auto_inc_interval(uint64_t next_id)
1 by brian
clean slate
1367
  {
1368
    auto_inc_intervals_forced.empty(); // in case of multiple SET INSERT_ID
163 by Brian Aker
Merge Monty's code.
1369
    auto_inc_intervals_forced.append(next_id, UINT64_MAX, 0);
1 by brian
clean slate
1370
  }
1371
151 by Brian Aker
Ulonglong to uint64_t
1372
  uint64_t  limit_found_rows;
1373
  uint64_t  options;           /* Bitmap of states */
152 by Brian Aker
longlong replacement
1374
  int64_t   row_count_func;    /* For the ROW_COUNT() function */
1 by brian
clean slate
1375
  ha_rows    cuted_fields;
1376
1377
  /*
1378
    number of rows we actually sent to the client, including "synthetic"
1379
    rows in ROLLUP etc.
1380
  */
1381
  ha_rows    sent_row_count;
1382
1383
  /*
1384
    number of rows we read, sent or not, including in create_sort_index()
1385
  */
1386
  ha_rows    examined_row_count;
1387
1388
  /*
1389
    The set of those tables whose fields are referenced in all subqueries
1390
    of the query.
1391
    TODO: possibly this it is incorrect to have used tables in THD because
1392
    with more than one subquery, it is not clear what does the field mean.
1393
  */
1394
  table_map  used_tables;
1395
  USER_CONN *user_connect;
1396
  CHARSET_INFO *db_charset;
1397
  /*
1398
    FIXME: this, and some other variables like 'count_cuted_fields'
1399
    maybe should be statement/cursor local, that is, moved to Statement
1400
    class. With current implementation warnings produced in each prepared
1401
    statement/cursor settle here.
1402
  */
1403
  List	     <MYSQL_ERROR> warn_list;
1404
  uint	     warn_count[(uint) MYSQL_ERROR::WARN_LEVEL_END];
1405
  uint	     total_warn_count;
1406
  Diagnostics_area main_da;
1407
1408
  /*
1409
    Id of current query. Statement can be reused to execute several queries
1410
    query_id is global in context of the whole MySQL server.
1411
    ID is automatically generated from mutex-protected counter.
1412
    It's used in handler code for various purposes: to check which columns
1413
    from table are necessary for this select, to check if it's necessary to
1414
    update auto-updatable fields (like auto_increment and timestamp).
1415
  */
1416
  query_id_t query_id, warn_id;
1417
  ulong      col_access;
1418
1419
#ifdef ERROR_INJECT_SUPPORT
1420
  ulong      error_inject_value;
1421
#endif
1422
  /* Statement id is thread-wide. This counter is used to generate ids */
1423
  ulong      statement_id_counter;
1424
  ulong	     rand_saved_seed1, rand_saved_seed2;
1425
  /*
1426
    Row counter, mainly for errors and warnings. Not increased in
1427
    create_sort_index(); may differ from examined_row_count.
1428
  */
1429
  ulong      row_count;
1430
  pthread_t  real_id;                           /* For debugging */
1431
  my_thread_id  thread_id;
1432
  uint	     tmp_table, global_read_lock;
1433
  uint	     server_status,open_options;
1434
  enum enum_thread_type system_thread;
1435
  uint       select_number;             //number of select (used for EXPLAIN)
1436
  /* variables.transaction_isolation is reset to this after each commit */
1437
  enum_tx_isolation session_tx_isolation;
1438
  enum_check_fields count_cuted_fields;
1439
1440
  DYNAMIC_ARRAY user_var_events;        /* For user variables replication */
1441
  MEM_ROOT      *user_var_events_alloc; /* Allocate above array elements here */
1442
1443
  enum killed_state
1444
  {
1445
    NOT_KILLED=0,
1446
    KILL_BAD_DATA=1,
1447
    KILL_CONNECTION=ER_SERVER_SHUTDOWN,
1448
    KILL_QUERY=ER_QUERY_INTERRUPTED,
1449
    KILLED_NO_VALUE      /* means neither of the states */
1450
  };
1451
  killed_state volatile killed;
1452
1453
  /* scramble - random string sent to client on handshake */
1454
  char	     scramble[SCRAMBLE_LENGTH+1];
1455
1456
  bool       slave_thread, one_shot_set;
1457
  /* tells if current statement should binlog row-based(1) or stmt-based(0) */
1458
  bool       current_stmt_binlog_row_based;
1459
  bool	     some_tables_deleted;
1460
  bool       last_cuted_field;
1461
  bool	     no_errors, password;
1462
  /**
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1463
    Set to true if execution of the current compound statement
1 by brian
clean slate
1464
    can not continue. In particular, disables activation of
1465
    CONTINUE or EXIT handlers of stored routines.
1466
    Reset in the end of processing of the current user request, in
1467
    @see mysql_reset_thd_for_next_command().
1468
  */
1469
  bool is_fatal_error;
1470
  /**
1471
    Set by a storage engine to request the entire
1472
    transaction (that possibly spans multiple engines) to
1473
    rollback. Reset in ha_rollback.
1474
  */
1475
  bool       transaction_rollback_request;
1476
  /**
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1477
    true if we are in a sub-statement and the current error can
1 by brian
clean slate
1478
    not be safely recovered until we left the sub-statement mode.
1479
    In particular, disables activation of CONTINUE and EXIT
1480
    handlers inside sub-statements. E.g. if it is a deadlock
1481
    error and requires a transaction-wide rollback, this flag is
1482
    raised (traditionally, MySQL first has to close all the reads
1483
    via @see handler::ha_index_or_rnd_end() and only then perform
1484
    the rollback).
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1485
    Reset to false when we leave the sub-statement mode.
1 by brian
clean slate
1486
  */
1487
  bool       is_fatal_sub_stmt_error;
1488
  bool	     query_start_used, rand_used, time_zone_used;
1489
  /* for IS NULL => = last_insert_id() fix in remove_eq_conds() */
1490
  bool       substitute_null_with_insert_id;
1491
  bool	     in_lock_tables;
1492
  /**
1493
    True if a slave error. Causes the slave to stop. Not the same
1494
    as the statement execution error (is_error()), since
1495
    a statement may be expected to return an error, e.g. because
1496
    it returned an error on master, and this is OK on the slave.
1497
  */
1498
  bool       is_slave_error;
1499
  bool       bootstrap, cleanup_done;
1500
  
1501
  /**  is set if some thread specific value(s) used in a statement. */
1502
  bool       thread_specific_used;
1503
  bool	     charset_is_system_charset, charset_is_collation_connection;
1504
  bool       charset_is_character_set_filesystem;
1505
  bool       enable_slow_log;   /* enable slow log for current statement */
1506
  bool	     abort_on_warning;
1507
  bool 	     got_warning;       /* Set on call to push_warning() */
1508
  bool	     no_warnings_for_error; /* no warnings on call to my_error() */
1509
  /* set during loop of derived table processing */
1510
  bool       derived_tables_processing;
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1511
  bool    tablespace_op;	/* This is true in DISCARD/IMPORT TABLESPACE */
1 by brian
clean slate
1512
1513
  /*
1514
    If we do a purge of binary logs, log index info of the threads
1515
    that are currently reading it needs to be adjusted. To do that
1516
    each thread that is using LOG_INFO needs to adjust the pointer to it
1517
  */
1518
  LOG_INFO*  current_linfo;
1519
  NET*       slave_net;			// network connection from slave -> m.
1520
  /* Used by the sys_var class to store temporary values */
1521
  union
1522
  {
200 by Brian Aker
my_bool from handler and set_var
1523
    bool   bool_value;
1 by brian
clean slate
1524
    long      long_value;
1525
    ulong     ulong_value;
151 by Brian Aker
Ulonglong to uint64_t
1526
    uint64_t uint64_t_value;
1 by brian
clean slate
1527
  } sys_var_tmp;
1528
  
1529
  struct {
1530
    /* 
1531
      If true, mysql_bin_log::write(Log_event) call will not write events to 
1532
      binlog, and maintain 2 below variables instead (use
1533
      mysql_bin_log.start_union_events to turn this on)
1534
    */
1535
    bool do_union;
1536
    /*
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1537
      If true, at least one mysql_bin_log::write(Log_event) call has been
1 by brian
clean slate
1538
      made after last mysql_bin_log.start_union_events() call.
1539
    */
1540
    bool unioned_events;
1541
    /*
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1542
      If true, at least one mysql_bin_log::write(Log_event e), where 
1543
      e.cache_stmt == true call has been made after last 
1 by brian
clean slate
1544
      mysql_bin_log.start_union_events() call.
1545
    */
1546
    bool unioned_events_trans;
1547
    
1548
    /* 
1549
      'queries' (actually SP statements) that run under inside this binlog
1550
      union have thd->query_id >= first_query_id.
1551
    */
1552
    query_id_t first_query_id;
1553
  } binlog_evt_union;
1554
1555
  /**
1556
    Character input stream consumed by the lexical analyser,
1557
    used during parsing.
1558
    Note that since the parser is not re-entrant, we keep only one input
1559
    stream here. This member is valid only when executing code during parsing,
1560
    and may point to invalid memory after that.
1561
  */
1562
  Lex_input_stream *m_lip;
1563
1564
  THD();
1565
  ~THD();
1566
1567
  void init(void);
1568
  /*
1569
    Initialize memory roots necessary for query processing and (!)
1570
    pre-allocate memory for it. We can't do that in THD constructor because
1571
    there are use cases (acl_init, watcher threads,
1572
    killing mysqld) where it's vital to not allocate excessive and not used
1573
    memory. Note, that we still don't return error from init_for_queries():
1574
    if preallocation fails, we should notice that at the first call to
1575
    alloc_root. 
1576
  */
1577
  void init_for_queries();
1578
  void change_user(void);
1579
  void cleanup(void);
1580
  void cleanup_after_query();
1581
  bool store_globals();
1582
#ifdef SIGNAL_WITH_VIO_CLOSE
1583
  inline void set_active_vio(Vio* vio)
1584
  {
1585
    pthread_mutex_lock(&LOCK_delete);
1586
    active_vio = vio;
1587
    pthread_mutex_unlock(&LOCK_delete);
1588
  }
1589
  inline void clear_active_vio()
1590
  {
1591
    pthread_mutex_lock(&LOCK_delete);
1592
    active_vio = 0;
1593
    pthread_mutex_unlock(&LOCK_delete);
1594
  }
1595
  void close_active_vio();
1596
#endif
1597
  void awake(THD::killed_state state_to_set);
1598
1599
#ifndef MYSQL_CLIENT
1600
  enum enum_binlog_query_type {
1601
    /*
1602
      The query can be logged row-based or statement-based
1603
    */
1604
    ROW_QUERY_TYPE,
1605
    
1606
    /*
1607
      The query has to be logged statement-based
1608
    */
1609
    STMT_QUERY_TYPE,
1610
    
1611
    /*
1612
      The query represents a change to a table in the "mysql"
1613
      database and is currently mapped to ROW_QUERY_TYPE.
1614
    */
1615
    MYSQL_QUERY_TYPE,
1616
    QUERY_TYPE_COUNT
1617
  };
1618
  
1619
  int binlog_query(enum_binlog_query_type qtype,
1620
                   char const *query, ulong query_len,
1621
                   bool is_trans, bool suppress_use,
1622
                   THD::killed_state killed_err_arg= THD::KILLED_NO_VALUE);
1623
#endif
1624
1625
  /*
1626
    For enter_cond() / exit_cond() to work the mutex must be got before
1627
    enter_cond(); this mutex is then released by exit_cond().
1628
    Usage must be: lock mutex; enter_cond(); your code; exit_cond().
1629
  */
1630
  inline const char* enter_cond(pthread_cond_t *cond, pthread_mutex_t* mutex,
1631
			  const char* msg)
1632
  {
1633
    const char* old_msg = get_proc_info();
1634
    safe_mutex_assert_owner(mutex);
1635
    mysys_var->current_mutex = mutex;
1636
    mysys_var->current_cond = cond;
1637
    thd_proc_info(this, msg);
1638
    return old_msg;
1639
  }
1640
  inline void exit_cond(const char* old_msg)
1641
  {
1642
    /*
1643
      Putting the mutex unlock in exit_cond() ensures that
1644
      mysys_var->current_mutex is always unlocked _before_ mysys_var->mutex is
1645
      locked (if that would not be the case, you'll get a deadlock if someone
1646
      does a THD::awake() on you).
1647
    */
1648
    pthread_mutex_unlock(mysys_var->current_mutex);
1649
    pthread_mutex_lock(&mysys_var->mutex);
1650
    mysys_var->current_mutex = 0;
1651
    mysys_var->current_cond = 0;
1652
    thd_proc_info(this, old_msg);
1653
    pthread_mutex_unlock(&mysys_var->mutex);
1654
  }
1655
  inline time_t query_start() { query_start_used=1; return start_time; }
1656
  inline void set_time()
1657
  {
1658
    if (user_time)
1659
    {
1660
      start_time= user_time;
1661
      start_utime= utime_after_lock= my_micro_time();
1662
    }
1663
    else
1664
      start_utime= utime_after_lock= my_micro_time_and_time(&start_time);
1665
  }
1666
  inline void	set_current_time()    { start_time= my_time(MY_WME); }
1667
  inline void	set_time(time_t t)
1668
  {
1669
    start_time= user_time= t;
1670
    start_utime= utime_after_lock= my_micro_time();
1671
  }
1672
  void set_time_after_lock()  { utime_after_lock= my_micro_time(); }
151 by Brian Aker
Ulonglong to uint64_t
1673
  uint64_t current_utime()  { return my_micro_time(); }
1674
  inline uint64_t found_rows(void)
1 by brian
clean slate
1675
  {
1676
    return limit_found_rows;
1677
  }
1678
  inline bool active_transaction()
1679
  {
1680
    return server_status & SERVER_STATUS_IN_TRANS;
1681
  }
1682
  inline bool fill_derived_tables()
1683
  {
1684
    return !lex->only_view_structure();
1685
  }
1686
  inline void* trans_alloc(unsigned int size)
1687
  {
1688
    return alloc_root(&transaction.mem_root,size);
1689
  }
1690
1691
  LEX_STRING *make_lex_string(LEX_STRING *lex_str,
1692
                              const char* str, uint length,
1693
                              bool allocate_lex_string);
1694
1695
  bool convert_string(LEX_STRING *to, CHARSET_INFO *to_cs,
1696
		      const char *from, uint from_length,
1697
		      CHARSET_INFO *from_cs);
1698
1699
  bool convert_string(String *s, CHARSET_INFO *from_cs, CHARSET_INFO *to_cs);
1700
1701
  void add_changed_table(TABLE *table);
1702
  void add_changed_table(const char *key, long key_length);
1703
  CHANGED_TABLE_LIST * changed_table_dup(const char *key, long key_length);
1704
  int send_explain_fields(select_result *result);
1705
  /**
1706
    Clear the current error, if any.
1707
    We do not clear is_fatal_error or is_fatal_sub_stmt_error since we
1708
    assume this is never called if the fatal error is set.
1709
    @todo: To silence an error, one should use Internal_error_handler
1710
    mechanism. In future this function will be removed.
1711
  */
1712
  inline void clear_error()
1713
  {
1714
    if (main_da.is_error())
1715
      main_da.reset_diagnostics_area();
1716
    is_slave_error= 0;
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1717
    return;
1 by brian
clean slate
1718
  }
1719
  inline bool vio_ok() const { return net.vio != 0; }
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1720
  /** Return false if connection to client is broken. */
1 by brian
clean slate
1721
  bool vio_is_connected();
1722
  /**
1723
    Mark the current error as fatal. Warning: this does not
1724
    set any error, it sets a property of the error, so must be
1725
    followed or prefixed with my_error().
1726
  */
1727
  inline void fatal_error()
1728
  {
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1729
    assert(main_da.is_error());
1 by brian
clean slate
1730
    is_fatal_error= 1;
1731
  }
1732
  /**
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1733
    true if there is an error in the error stack.
1 by brian
clean slate
1734
1735
    Please use this method instead of direct access to
1736
    net.report_error.
1737
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1738
    If true, the current (sub)-statement should be aborted.
1 by brian
clean slate
1739
    The main difference between this member and is_fatal_error
1740
    is that a fatal error can not be handled by a stored
1741
    procedure continue handler, whereas a normal error can.
1742
1743
    To raise this flag, use my_error().
1744
  */
1745
  inline bool is_error() const { return main_da.is_error(); }
1746
  inline CHARSET_INFO *charset() { return variables.character_set_client; }
1747
  void update_charset();
1748
1749
  void change_item_tree(Item **place, Item *new_value)
1750
  {
1751
    /* TODO: check for OOM condition here */
1752
    if (!stmt_arena->is_conventional())
1753
      nocheck_register_item_tree_change(place, *place, mem_root);
1754
    *place= new_value;
1755
  }
1756
  void nocheck_register_item_tree_change(Item **place, Item *old_value,
1757
                                         MEM_ROOT *runtime_memroot);
1758
  void rollback_item_tree_changes();
1759
1760
  /*
1761
    Cleanup statement parse state (parse tree, lex) and execution
1762
    state after execution of a non-prepared SQL statement.
1763
  */
1764
  void end_statement();
1765
  inline int killed_errno() const
1766
  {
1767
    killed_state killed_val; /* to cache the volatile 'killed' */
1768
    return (killed_val= killed) != KILL_BAD_DATA ? killed_val : 0;
1769
  }
1770
  inline void send_kill_message() const
1771
  {
1772
    int err= killed_errno();
1773
    if (err)
1774
      my_message(err, ER(err), MYF(0));
1775
  }
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1776
  /* return true if we will abort query if we make a warning now */
1 by brian
clean slate
1777
  inline bool really_abort_on_warning()
1778
  {
1779
    return (abort_on_warning);
1780
  }
1781
  void set_status_var_init();
1782
  void reset_n_backup_open_tables_state(Open_tables_state *backup);
1783
  void restore_backup_open_tables_state(Open_tables_state *backup);
1784
  void restore_sub_statement_state(Sub_statement_state *backup);
1785
  void set_n_backup_active_arena(Query_arena *set, Query_arena *backup);
1786
  void restore_active_arena(Query_arena *set, Query_arena *backup);
1787
1788
  inline void set_current_stmt_binlog_row_based_if_mixed()
1789
  {
1790
    /*
1791
      If in a stored/function trigger, the caller should already have done the
1792
      change. We test in_sub_stmt to prevent introducing bugs where people
1793
      wouldn't ensure that, and would switch to row-based mode in the middle
1794
      of executing a stored function/trigger (which is too late, see also
1795
      reset_current_stmt_binlog_row_based()); this condition will make their
1796
      tests fail and so force them to propagate the
1797
      lex->binlog_row_based_if_mixed upwards to the caller.
1798
    */
1799
    if ((variables.binlog_format == BINLOG_FORMAT_MIXED) &&
1800
        (in_sub_stmt == 0))
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1801
      current_stmt_binlog_row_based= true;
1 by brian
clean slate
1802
  }
1803
  inline void set_current_stmt_binlog_row_based()
1804
  {
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1805
    current_stmt_binlog_row_based= true;
1 by brian
clean slate
1806
  }
1807
  inline void clear_current_stmt_binlog_row_based()
1808
  {
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1809
    current_stmt_binlog_row_based= false;
1 by brian
clean slate
1810
  }
1811
  inline void reset_current_stmt_binlog_row_based()
1812
  {
1813
    /*
1814
      If there are temporary tables, don't reset back to
1815
      statement-based. Indeed it could be that:
1816
      CREATE TEMPORARY TABLE t SELECT UUID(); # row-based
1817
      # and row-based does not store updates to temp tables
1818
      # in the binlog.
1819
      INSERT INTO u SELECT * FROM t; # stmt-based
1820
      and then the INSERT will fail as data inserted into t was not logged.
1821
      So we continue with row-based until the temp table is dropped.
1822
      If we are in a stored function or trigger, we mustn't reset in the
1823
      middle of its execution (as the binary logging way of a stored function
1824
      or trigger is decided when it starts executing, depending for example on
1825
      the caller (for a stored function: if caller is SELECT or
1826
      INSERT/UPDATE/DELETE...).
1827
1828
      Don't reset binlog format for NDB binlog injector thread.
1829
    */
135 by Brian Aker
Random cleanup. Dead partition tests, pass operator in sql_plugin, mtr based
1830
    if ((temporary_tables == NULL) && (in_sub_stmt == 0))
1 by brian
clean slate
1831
    {
1832
      current_stmt_binlog_row_based= 
1833
        test(variables.binlog_format == BINLOG_FORMAT_ROW);
1834
    }
1835
  }
1836
1837
  /**
1838
    Set the current database; use deep copy of C-string.
1839
1840
    @param new_db     a pointer to the new database name.
1841
    @param new_db_len length of the new database name.
1842
1843
    Initialize the current database from a NULL-terminated string with
1844
    length. If we run out of memory, we free the current database and
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1845
    return true.  This way the user will notice the error as there will be
1 by brian
clean slate
1846
    no current database selected (in addition to the error message set by
1847
    malloc).
1848
1849
    @note This operation just sets {db, db_length}. Switching the current
1850
    database usually involves other actions, like switching other database
1851
    attributes including security context. In the future, this operation
1852
    will be made private and more convenient interface will be provided.
1853
1854
    @return Operation status
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1855
      @retval false Success
1856
      @retval true  Out-of-memory error
1 by brian
clean slate
1857
  */
1858
  bool set_db(const char *new_db, size_t new_db_len)
1859
  {
1860
    /* Do not reallocate memory if current chunk is big enough. */
1861
    if (db && new_db && db_length >= new_db_len)
1862
      memcpy(db, new_db, new_db_len+1);
1863
    else
1864
    {
1865
      x_free(db);
1866
      if (new_db)
1867
        db= my_strndup(new_db, new_db_len, MYF(MY_WME | ME_FATALERROR));
1868
      else
1869
        db= NULL;
1870
    }
1871
    db_length= db ? new_db_len : 0;
1872
    return new_db && !db;
1873
  }
1874
1875
  /**
1876
    Set the current database; use shallow copy of C-string.
1877
1878
    @param new_db     a pointer to the new database name.
1879
    @param new_db_len length of the new database name.
1880
1881
    @note This operation just sets {db, db_length}. Switching the current
1882
    database usually involves other actions, like switching other database
1883
    attributes including security context. In the future, this operation
1884
    will be made private and more convenient interface will be provided.
1885
  */
1886
  void reset_db(char *new_db, size_t new_db_len)
1887
  {
1888
    db= new_db;
1889
    db_length= new_db_len;
1890
  }
1891
  /*
1892
    Copy the current database to the argument. Use the current arena to
1893
    allocate memory for a deep copy: current database may be freed after
1894
    a statement is parsed but before it's executed.
1895
  */
1896
  bool copy_db_to(char **p_db, size_t *p_db_length)
1897
  {
1898
    if (db == NULL)
1899
    {
1900
      my_message(ER_NO_DB_ERROR, ER(ER_NO_DB_ERROR), MYF(0));
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1901
      return true;
1 by brian
clean slate
1902
    }
1903
    *p_db= strmake(db, db_length);
1904
    *p_db_length= db_length;
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
1905
    return false;
1 by brian
clean slate
1906
  }
1907
  thd_scheduler scheduler;
1908
1909
public:
1910
  /**
1911
    Add an internal error handler to the thread execution context.
1912
    @param handler the exception handler to add
1913
  */
1914
  void push_internal_handler(Internal_error_handler *handler);
1915
1916
  /**
1917
    Handle an error condition.
1918
    @param sql_errno the error number
1919
    @param level the error level
1920
    @return true if the error is handled
1921
  */
1922
  virtual bool handle_error(uint sql_errno, const char *message,
1923
                            MYSQL_ERROR::enum_warning_level level);
1924
1925
  /**
1926
    Remove the error handler last pushed.
1927
  */
1928
  void pop_internal_handler();
1929
1930
private:
1931
  /** The current internal error handler for this thread, or NULL. */
1932
  Internal_error_handler *m_internal_handler;
1933
  /**
1934
    The lex to hold the parsed tree of conventional (non-prepared) queries.
1935
    Whereas for prepared and stored procedure statements we use an own lex
1936
    instance for each new query, for conventional statements we reuse
1937
    the same lex. (@see mysql_parse for details).
1938
  */
1939
  LEX main_lex;
1940
  /**
1941
    This memory root is used for two purposes:
1942
    - for conventional queries, to allocate structures stored in main_lex
1943
    during parsing, and allocate runtime data (execution plan, etc.)
1944
    during execution.
1945
    - for prepared queries, only to allocate runtime data. The parsed
1946
    tree itself is reused between executions and thus is stored elsewhere.
1947
  */
1948
  MEM_ROOT main_mem_root;
1949
};
1950
1951
1952
/** A short cut for thd->main_da.set_ok_status(). */
1953
1954
inline void
151 by Brian Aker
Ulonglong to uint64_t
1955
my_ok(THD *thd, ha_rows affected_rows= 0, uint64_t id= 0,
1 by brian
clean slate
1956
        const char *message= NULL)
1957
{
1958
  thd->main_da.set_ok_status(thd, affected_rows, id, message);
1959
}
1960
1961
1962
/** A short cut for thd->main_da.set_eof_status(). */
1963
1964
inline void
1965
my_eof(THD *thd)
1966
{
1967
  thd->main_da.set_eof_status(thd);
1968
}
1969
1970
#define tmp_disable_binlog(A)       \
151 by Brian Aker
Ulonglong to uint64_t
1971
  {uint64_t tmp_disable_binlog__save_options= (A)->options; \
1 by brian
clean slate
1972
  (A)->options&= ~OPTION_BIN_LOG
1973
1974
#define reenable_binlog(A)   (A)->options= tmp_disable_binlog__save_options;}
1975
1976
1977
/*
1978
  Used to hold information about file and file structure in exchange
1979
  via non-DB file (...INTO OUTFILE..., ...LOAD DATA...)
1980
  XXX: We never call destructor for objects of this class.
1981
*/
1982
1983
class sql_exchange :public Sql_alloc
1984
{
1985
public:
1986
  enum enum_filetype filetype; /* load XML, Added by Arnold & Erik */ 
1987
  char *file_name;
1988
  String *field_term,*enclosed,*line_term,*line_start,*escaped;
1989
  bool opt_enclosed;
1990
  bool dumpfile;
1991
  ulong skip_lines;
1992
  CHARSET_INFO *cs;
1993
  sql_exchange(char *name, bool dumpfile_flag,
1994
               enum_filetype filetype_arg= FILETYPE_CSV);
1995
};
1996
1997
#include "log_event.h"
1998
1999
/*
2000
  This is used to get result from a select
2001
*/
2002
2003
class JOIN;
2004
2005
class select_result :public Sql_alloc {
2006
protected:
2007
  THD *thd;
2008
  SELECT_LEX_UNIT *unit;
2009
public:
2010
  select_result();
2011
  virtual ~select_result() {};
77.1.7 by Monty Taylor
Heap builds clean.
2012
  virtual int prepare(List<Item> &list __attribute__((__unused__)),
2013
                      SELECT_LEX_UNIT *u)
1 by brian
clean slate
2014
  {
2015
    unit= u;
2016
    return 0;
2017
  }
2018
  virtual int prepare2(void) { return 0; }
2019
  /*
2020
    Because of peculiarities of prepared statements protocol
2021
    we need to know number of columns in the result set (if
2022
    there is a result set) apart from sending columns metadata.
2023
  */
2024
  virtual uint field_count(List<Item> &fields) const
2025
  { return fields.elements; }
2026
  virtual bool send_fields(List<Item> &list, uint flags)=0;
2027
  virtual bool send_data(List<Item> &items)=0;
77.1.7 by Monty Taylor
Heap builds clean.
2028
  virtual bool initialize_tables (JOIN  __attribute__((__unused__)) *join=0)
2029
  { return 0; }
1 by brian
clean slate
2030
  virtual void send_error(uint errcode,const char *err);
2031
  virtual bool send_eof()=0;
2032
  /**
2033
    Check if this query returns a result set and therefore is allowed in
2034
    cursors and set an error message if it is not the case.
2035
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
2036
    @retval false     success
2037
    @retval true      error, an error message is set
1 by brian
clean slate
2038
  */
2039
  virtual bool check_simple_select() const;
2040
  virtual void abort() {}
2041
  /*
2042
    Cleanup instance of this class for next execution of a prepared
2043
    statement/stored procedure.
2044
  */
2045
  virtual void cleanup();
2046
  void set_thd(THD *thd_arg) { thd= thd_arg; }
2047
  void begin_dataset() {}
2048
};
2049
2050
2051
/*
2052
  Base class for select_result descendands which intercept and
2053
  transform result set rows. As the rows are not sent to the client,
2054
  sending of result set metadata should be suppressed as well.
2055
*/
2056
2057
class select_result_interceptor: public select_result
2058
{
2059
public:
2060
  select_result_interceptor() {}              /* Remove gcc warning */
77.1.7 by Monty Taylor
Heap builds clean.
2061
  uint field_count(List<Item> &fields __attribute__((__unused__))) const
2062
  { return 0; }
2063
  bool send_fields(List<Item> &fields __attribute__((__unused__)),
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
2064
                   uint flag __attribute__((__unused__))) { return false; }
1 by brian
clean slate
2065
};
2066
2067
2068
class select_send :public select_result {
2069
  /**
2070
    True if we have sent result set metadata to the client.
2071
    In this case the client always expects us to end the result
2072
    set with an eof or error packet
2073
  */
2074
  bool is_result_set_started;
2075
public:
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
2076
  select_send() :is_result_set_started(false) {}
1 by brian
clean slate
2077
  bool send_fields(List<Item> &list, uint flags);
2078
  bool send_data(List<Item> &items);
2079
  bool send_eof();
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
2080
  virtual bool check_simple_select() const { return false; }
1 by brian
clean slate
2081
  void abort();
2082
  virtual void cleanup();
2083
};
2084
2085
2086
class select_to_file :public select_result_interceptor {
2087
protected:
2088
  sql_exchange *exchange;
2089
  File file;
2090
  IO_CACHE cache;
2091
  ha_rows row_count;
2092
  char path[FN_REFLEN];
2093
2094
public:
2095
  select_to_file(sql_exchange *ex) :exchange(ex), file(-1),row_count(0L)
2096
  { path[0]=0; }
2097
  ~select_to_file();
2098
  void send_error(uint errcode,const char *err);
2099
  bool send_eof();
2100
  void cleanup();
2101
};
2102
2103
2104
#define ESCAPE_CHARS "ntrb0ZN" // keep synchronous with READ_INFO::unescape
2105
2106
2107
/*
2108
 List of all possible characters of a numeric value text representation.
2109
*/
2110
#define NUMERIC_CHARS ".0123456789e+-"
2111
2112
2113
class select_export :public select_to_file {
2114
  uint field_term_length;
2115
  int field_sep_char,escape_char,line_sep_char;
2116
  int field_term_char; // first char of FIELDS TERMINATED BY or MAX_INT
2117
  /*
2118
    The is_ambiguous_field_sep field is true if a value of the field_sep_char
2119
    field is one of the 'n', 't', 'r' etc characters
2120
    (see the READ_INFO::unescape method and the ESCAPE_CHARS constant value).
2121
  */
2122
  bool is_ambiguous_field_sep;
2123
  /*
2124
     The is_ambiguous_field_term is true if field_sep_char contains the first
2125
     char of the FIELDS TERMINATED BY (ENCLOSED BY is empty), and items can
2126
     contain this character.
2127
  */
2128
  bool is_ambiguous_field_term;
2129
  /*
2130
    The is_unsafe_field_sep field is true if a value of the field_sep_char
2131
    field is one of the '0'..'9', '+', '-', '.' and 'e' characters
2132
    (see the NUMERIC_CHARS constant value).
2133
  */
2134
  bool is_unsafe_field_sep;
2135
  bool fixed_row_size;
2136
public:
2137
  select_export(sql_exchange *ex) :select_to_file(ex) {}
2138
  ~select_export();
2139
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2140
  bool send_data(List<Item> &items);
2141
};
2142
2143
2144
class select_dump :public select_to_file {
2145
public:
2146
  select_dump(sql_exchange *ex) :select_to_file(ex) {}
2147
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2148
  bool send_data(List<Item> &items);
2149
};
2150
2151
2152
class select_insert :public select_result_interceptor {
2153
 public:
2154
  TABLE_LIST *table_list;
2155
  TABLE *table;
2156
  List<Item> *fields;
151 by Brian Aker
Ulonglong to uint64_t
2157
  uint64_t autoinc_value_of_last_inserted_row; // autogenerated or not
1 by brian
clean slate
2158
  COPY_INFO info;
2159
  bool insert_into_view;
2160
  select_insert(TABLE_LIST *table_list_par,
2161
		TABLE *table_par, List<Item> *fields_par,
2162
		List<Item> *update_fields, List<Item> *update_values,
2163
		enum_duplicates duplic, bool ignore);
2164
  ~select_insert();
2165
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2166
  virtual int prepare2(void);
2167
  bool send_data(List<Item> &items);
2168
  virtual void store_values(List<Item> &values);
2169
  virtual bool can_rollback_data() { return 0; }
2170
  void send_error(uint errcode,const char *err);
2171
  bool send_eof();
2172
  void abort();
2173
  /* not implemented: select_insert is never re-used in prepared statements */
2174
  void cleanup();
2175
};
2176
2177
2178
class select_create: public select_insert {
2179
  ORDER *group;
2180
  TABLE_LIST *create_table;
2181
  HA_CREATE_INFO *create_info;
2182
  TABLE_LIST *select_tables;
2183
  Alter_info *alter_info;
2184
  Field **field;
2185
  /* lock data for tmp table */
2186
  MYSQL_LOCK *m_lock;
2187
  /* m_lock or thd->extra_lock */
2188
  MYSQL_LOCK **m_plock;
2189
public:
2190
  select_create (TABLE_LIST *table_arg,
2191
		 HA_CREATE_INFO *create_info_par,
2192
                 Alter_info *alter_info_arg,
2193
		 List<Item> &select_fields,enum_duplicates duplic, bool ignore,
2194
                 TABLE_LIST *select_tables_arg)
2195
    :select_insert (NULL, NULL, &select_fields, 0, 0, duplic, ignore),
2196
    create_table(table_arg),
2197
    create_info(create_info_par),
2198
    select_tables(select_tables_arg),
2199
    alter_info(alter_info_arg),
2200
    m_plock(NULL)
2201
    {}
2202
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2203
2204
  void binlog_show_create_table(TABLE **tables, uint count);
2205
  void store_values(List<Item> &values);
2206
  void send_error(uint errcode,const char *err);
2207
  bool send_eof();
2208
  void abort();
2209
  virtual bool can_rollback_data() { return 1; }
2210
2211
  // Needed for access from local class MY_HOOKS in prepare(), since thd is proteted.
2212
  const THD *get_thd(void) { return thd; }
2213
  const HA_CREATE_INFO *get_create_info() { return create_info; };
2214
  int prepare2(void) { return 0; }
2215
};
2216
2217
#include <myisam.h>
2218
2219
/* 
2220
  Param to create temporary tables when doing SELECT:s 
2221
  NOTE
2222
    This structure is copied using memcpy as a part of JOIN.
2223
*/
2224
2225
class TMP_TABLE_PARAM :public Sql_alloc
2226
{
2227
private:
2228
  /* Prevent use of these (not safe because of lists and copy_field) */
2229
  TMP_TABLE_PARAM(const TMP_TABLE_PARAM &);
2230
  void operator=(TMP_TABLE_PARAM &);
2231
2232
public:
2233
  List<Item> copy_funcs;
2234
  List<Item> save_copy_funcs;
2235
  Copy_field *copy_field, *copy_field_end;
2236
  Copy_field *save_copy_field, *save_copy_field_end;
2237
  uchar	    *group_buff;
2238
  Item	    **items_to_copy;			/* Fields in tmp table */
2239
  MI_COLUMNDEF *recinfo,*start_recinfo;
2240
  KEY *keyinfo;
2241
  ha_rows end_write_records;
2242
  uint	field_count,sum_func_count,func_count;
2243
  uint  hidden_field_count;
2244
  uint	group_parts,group_length,group_null_parts;
2245
  uint	quick_group;
2246
  bool  using_indirect_summary_function;
2247
  /* If >0 convert all blob fields to varchar(convert_blob_length) */
2248
  uint  convert_blob_length; 
2249
  CHARSET_INFO *table_charset; 
2250
  bool schema_table;
2251
  /*
2252
    True if GROUP BY and its aggregate functions are already computed
2253
    by a table access method (e.g. by loose index scan). In this case
2254
    query execution should not perform aggregation and should treat
2255
    aggregate functions as normal functions.
2256
  */
2257
  bool precomputed_group_by;
2258
  bool force_copy_fields;
2259
  /*
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
2260
    If true, create_tmp_field called from create_tmp_table will convert
1 by brian
clean slate
2261
    all BIT fields to 64-bit longs. This is a workaround the limitation
2262
    that MEMORY tables cannot index BIT columns.
2263
  */
2264
  bool bit_fields_as_long;
2265
2266
  TMP_TABLE_PARAM()
2267
    :copy_field(0), group_parts(0),
2268
     group_length(0), group_null_parts(0), convert_blob_length(0),
2269
     schema_table(0), precomputed_group_by(0), force_copy_fields(0),
2270
     bit_fields_as_long(0)
2271
  {}
2272
  ~TMP_TABLE_PARAM()
2273
  {
2274
    cleanup();
2275
  }
2276
  void init(void);
2277
  inline void cleanup(void)
2278
  {
2279
    if (copy_field)				/* Fix for Intel compiler */
2280
    {
2281
      delete [] copy_field;
2282
      save_copy_field= copy_field= 0;
2283
    }
2284
  }
2285
};
2286
2287
class select_union :public select_result_interceptor
2288
{
2289
  TMP_TABLE_PARAM tmp_table_param;
2290
public:
2291
  TABLE *table;
2292
2293
  select_union() :table(0) {}
2294
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2295
  bool send_data(List<Item> &items);
2296
  bool send_eof();
2297
  bool flush();
2298
  void cleanup();
2299
  bool create_result_table(THD *thd, List<Item> *column_types,
151 by Brian Aker
Ulonglong to uint64_t
2300
                           bool is_distinct, uint64_t options,
1 by brian
clean slate
2301
                           const char *alias, bool bit_fields_as_long);
2302
};
2303
2304
/* Base subselect interface class */
2305
class select_subselect :public select_result_interceptor
2306
{
2307
protected:
2308
  Item_subselect *item;
2309
public:
2310
  select_subselect(Item_subselect *item);
2311
  bool send_data(List<Item> &items)=0;
2312
  bool send_eof() { return 0; };
2313
};
2314
2315
/* Single value subselect interface class */
2316
class select_singlerow_subselect :public select_subselect
2317
{
2318
public:
2319
  select_singlerow_subselect(Item_subselect *item_arg)
2320
    :select_subselect(item_arg)
2321
  {}
2322
  bool send_data(List<Item> &items);
2323
};
2324
2325
/* used in independent ALL/ANY optimisation */
2326
class select_max_min_finder_subselect :public select_subselect
2327
{
2328
  Item_cache *cache;
2329
  bool (select_max_min_finder_subselect::*op)();
2330
  bool fmax;
2331
public:
2332
  select_max_min_finder_subselect(Item_subselect *item_arg, bool mx)
2333
    :select_subselect(item_arg), cache(0), fmax(mx)
2334
  {}
2335
  void cleanup();
2336
  bool send_data(List<Item> &items);
2337
  bool cmp_real();
2338
  bool cmp_int();
2339
  bool cmp_decimal();
2340
  bool cmp_str();
2341
};
2342
2343
/* EXISTS subselect interface class */
2344
class select_exists_subselect :public select_subselect
2345
{
2346
public:
2347
  select_exists_subselect(Item_subselect *item_arg)
2348
    :select_subselect(item_arg){}
2349
  bool send_data(List<Item> &items);
2350
};
2351
2352
/* Structs used when sorting */
2353
2354
typedef struct st_sort_field {
2355
  Field *field;				/* Field to sort */
2356
  Item	*item;				/* Item if not sorting fields */
2357
  uint	 length;			/* Length of sort field */
2358
  uint   suffix_length;                 /* Length suffix (0-4) */
2359
  Item_result result_type;		/* Type of item */
2360
  bool reverse;				/* if descending sort */
2361
  bool need_strxnfrm;			/* If we have to use strxnfrm() */
2362
} SORT_FIELD;
2363
2364
2365
typedef struct st_sort_buffer {
2366
  uint index;					/* 0 or 1 */
2367
  uint sort_orders;
2368
  uint change_pos;				/* If sort-fields changed */
2369
  char **buff;
2370
  SORT_FIELD *sortorder;
2371
} SORT_BUFFER;
2372
2373
/* Structure for db & table in sql_yacc */
2374
2375
class Table_ident :public Sql_alloc
2376
{
2377
public:
2378
  LEX_STRING db;
2379
  LEX_STRING table;
2380
  SELECT_LEX_UNIT *sel;
2381
  inline Table_ident(THD *thd, LEX_STRING db_arg, LEX_STRING table_arg,
2382
		     bool force)
2383
    :table(table_arg), sel((SELECT_LEX_UNIT *)0)
2384
  {
2385
    if (!force && (thd->client_capabilities & CLIENT_NO_SCHEMA))
2386
      db.str=0;
2387
    else
2388
      db= db_arg;
2389
  }
2390
  inline Table_ident(LEX_STRING table_arg) 
2391
    :table(table_arg), sel((SELECT_LEX_UNIT *)0)
2392
  {
2393
    db.str=0;
2394
  }
2395
  /*
2396
    This constructor is used only for the case when we create a derived
2397
    table. A derived table has no name and doesn't belong to any database.
2398
    Later, if there was an alias specified for the table, it will be set
2399
    by add_table_to_list.
2400
  */
2401
  inline Table_ident(SELECT_LEX_UNIT *s) : sel(s)
2402
  {
2403
    /* We must have a table name here as this is used with add_table_to_list */
2404
    db.str= empty_c_string;                    /* a subject to casedn_str */
2405
    db.length= 0;
2406
    table.str= internal_table_name;
2407
    table.length=1;
2408
  }
2409
  bool is_derived_table() const { return test(sel); }
2410
  inline void change_db(char *db_name)
2411
  {
2412
    db.str= db_name; db.length= (uint) strlen(db_name);
2413
  }
2414
};
2415
2416
// this is needed for user_vars hash
2417
class user_var_entry
2418
{
2419
 public:
2420
  user_var_entry() {}                         /* Remove gcc warning */
2421
  LEX_STRING name;
2422
  char *value;
2423
  ulong length;
2424
  query_id_t update_query_id, used_query_id;
2425
  Item_result type;
2426
  bool unsigned_flag;
2427
2428
  double val_real(my_bool *null_value);
152 by Brian Aker
longlong replacement
2429
  int64_t val_int(my_bool *null_value) const;
1 by brian
clean slate
2430
  String *val_str(my_bool *null_value, String *str, uint decimals);
2431
  my_decimal *val_decimal(my_bool *null_value, my_decimal *result);
2432
  DTCollation collation;
2433
};
2434
2435
/*
2436
   Unique -- class for unique (removing of duplicates). 
2437
   Puts all values to the TREE. If the tree becomes too big,
2438
   it's dumped to the file. User can request sorted values, or
2439
   just iterate through them. In the last case tree merging is performed in
2440
   memory simultaneously with iteration, so it should be ~2-3x faster.
2441
 */
2442
2443
class Unique :public Sql_alloc
2444
{
2445
  DYNAMIC_ARRAY file_ptrs;
2446
  ulong max_elements;
151 by Brian Aker
Ulonglong to uint64_t
2447
  uint64_t max_in_memory_size;
1 by brian
clean slate
2448
  IO_CACHE file;
2449
  TREE tree;
2450
  uchar *record_pointers;
2451
  bool flush();
2452
  uint size;
2453
2454
public:
2455
  ulong elements;
2456
  Unique(qsort_cmp2 comp_func, void *comp_func_fixed_arg,
151 by Brian Aker
Ulonglong to uint64_t
2457
	 uint size_arg, uint64_t max_in_memory_size_arg);
1 by brian
clean slate
2458
  ~Unique();
2459
  ulong elements_in_tree() { return tree.elements_in_tree; }
2460
  inline bool unique_add(void *ptr)
2461
  {
2462
    if (tree.elements_in_tree > max_elements && flush())
51.1.50 by Jay Pipes
Removed/replaced DBUG symbols and standardized TRUE/FALSE
2463
      return(1);
2464
    return(!tree_insert(&tree, ptr, 0, tree.custom_arg));
1 by brian
clean slate
2465
  }
2466
2467
  bool get(TABLE *table);
2468
  static double get_use_cost(uint *buffer, uint nkeys, uint key_size, 
151 by Brian Aker
Ulonglong to uint64_t
2469
                             uint64_t max_in_memory_size);
1 by brian
clean slate
2470
  inline static int get_cost_calc_buff_size(ulong nkeys, uint key_size, 
151 by Brian Aker
Ulonglong to uint64_t
2471
                                            uint64_t max_in_memory_size)
1 by brian
clean slate
2472
  {
151 by Brian Aker
Ulonglong to uint64_t
2473
    register uint64_t max_elems_in_tree=
1 by brian
clean slate
2474
      (1 + max_in_memory_size / ALIGN_SIZE(sizeof(TREE_ELEMENT)+key_size));
2475
    return (int) (sizeof(uint)*(1 + nkeys/max_elems_in_tree));
2476
  }
2477
2478
  void reset();
2479
  bool walk(tree_walk_action action, void *walk_action_arg);
2480
2481
  friend int unique_write_to_file(uchar* key, element_count count, Unique *unique);
2482
  friend int unique_write_to_ptrs(uchar* key, element_count count, Unique *unique);
2483
};
2484
2485
2486
class multi_delete :public select_result_interceptor
2487
{
2488
  TABLE_LIST *delete_tables, *table_being_deleted;
2489
  Unique **tempfiles;
2490
  ha_rows deleted, found;
2491
  uint num_of_tables;
2492
  int error;
2493
  bool do_delete;
2494
  /* True if at least one table we delete from is transactional */
2495
  bool transactional_tables;
2496
  /* True if at least one table we delete from is not transactional */
2497
  bool normal_tables;
2498
  bool delete_while_scanning;
2499
  /*
2500
     error handling (rollback and binlogging) can happen in send_eof()
2501
     so that afterward send_error() needs to find out that.
2502
  */
2503
  bool error_handled;
2504
2505
public:
2506
  multi_delete(TABLE_LIST *dt, uint num_of_tables);
2507
  ~multi_delete();
2508
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2509
  bool send_data(List<Item> &items);
2510
  bool initialize_tables (JOIN *join);
2511
  void send_error(uint errcode,const char *err);
2512
  int  do_deletes();
2513
  bool send_eof();
2514
  virtual void abort();
2515
};
2516
2517
2518
class multi_update :public select_result_interceptor
2519
{
2520
  TABLE_LIST *all_tables; /* query/update command tables */
2521
  TABLE_LIST *leaves;     /* list of leves of join table tree */
2522
  TABLE_LIST *update_tables, *table_being_updated;
2523
  TABLE **tmp_tables, *main_table, *table_to_update;
2524
  TMP_TABLE_PARAM *tmp_table_param;
2525
  ha_rows updated, found;
2526
  List <Item> *fields, *values;
2527
  List <Item> **fields_for_table, **values_for_table;
2528
  uint table_count;
2529
  /*
2530
   List of tables referenced in the CHECK OPTION condition of
2531
   the updated view excluding the updated table. 
2532
  */
2533
  List <TABLE> unupdated_check_opt_tables;
2534
  Copy_field *copy_field;
2535
  enum enum_duplicates handle_duplicates;
2536
  bool do_update, trans_safe;
2537
  /* True if the update operation has made a change in a transactional table */
2538
  bool transactional_tables;
2539
  bool ignore;
2540
  /* 
2541
     error handling (rollback and binlogging) can happen in send_eof()
2542
     so that afterward send_error() needs to find out that.
2543
  */
2544
  bool error_handled;
2545
2546
public:
2547
  multi_update(TABLE_LIST *ut, TABLE_LIST *leaves_list,
2548
	       List<Item> *fields, List<Item> *values,
2549
	       enum_duplicates handle_duplicates, bool ignore);
2550
  ~multi_update();
2551
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2552
  bool send_data(List<Item> &items);
2553
  bool initialize_tables (JOIN *join);
2554
  void send_error(uint errcode,const char *err);
2555
  int  do_updates();
2556
  bool send_eof();
2557
  virtual void abort();
2558
};
2559
2560
class my_var : public Sql_alloc  {
2561
public:
2562
  LEX_STRING s;
2563
  bool local;
2564
  uint offset;
2565
  enum_field_types type;
2566
  my_var (LEX_STRING& j, bool i, uint o, enum_field_types t)
2567
    :s(j), local(i), offset(o), type(t)
2568
  {}
2569
  ~my_var() {}
2570
};
2571
2572
class select_dumpvar :public select_result_interceptor {
2573
  ha_rows row_count;
2574
public:
2575
  List<my_var> var_list;
2576
  select_dumpvar()  { var_list.empty(); row_count= 0;}
2577
  ~select_dumpvar() {}
2578
  int prepare(List<Item> &list, SELECT_LEX_UNIT *u);
2579
  bool send_data(List<Item> &items);
2580
  bool send_eof();
2581
  virtual bool check_simple_select() const;
2582
  void cleanup();
2583
};
2584
2585
/* Bits in sql_command_flags */
2586
2587
#define CF_CHANGES_DATA		1
2588
#define CF_HAS_ROW_COUNT	2
2589
#define CF_STATUS_COMMAND	4
2590
#define CF_SHOW_TABLE_COMMAND	8
2591
#define CF_WRITE_LOGS_COMMAND  16
2592
2593
/* Functions in sql_class.cc */
2594
2595
void add_to_status(STATUS_VAR *to_var, STATUS_VAR *from_var);
2596
2597
void add_diff_to_status(STATUS_VAR *to_var, STATUS_VAR *from_var,
2598
                        STATUS_VAR *dec_var);
2599
2600
#endif /* MYSQL_SERVER */