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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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#ifdef USE_PRAGMA_INTERFACE
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#pragma interface /* gcc class implementation */
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/* class for the the myisam handler */
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#include <ft_global.h>
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#define HA_RECOVER_NONE 0 /* No automatic recover */
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#define HA_RECOVER_DEFAULT 1 /* Automatic recover active */
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#define HA_RECOVER_BACKUP 2 /* Make a backupfile on recover */
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#define HA_RECOVER_FORCE 4 /* Recover even if we loose rows */
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#define HA_RECOVER_QUICK 8 /* Don't check rows in data file */
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extern ulong myisam_sort_buffer_size;
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extern TYPELIB myisam_recover_typelib;
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extern ulong myisam_recover_options;
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my_bool index_cond_func_myisam(void *arg);
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class ha_myisam: public handler
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uint64_t int_table_flags;
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char *data_file_name, *index_file_name;
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bool can_enable_indexes;
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int repair(THD *thd, MI_CHECK ¶m, bool optimize);
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ha_myisam(handlerton *hton, TABLE_SHARE *table_arg);
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handler *clone(MEM_ROOT *mem_root);
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const char *table_type() const { return "MyISAM"; }
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const char *index_type(uint key_number);
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const char **bas_ext() const;
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uint64_t table_flags() const { return int_table_flags; }
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int index_init(uint idx, bool sorted);
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ulong index_flags(uint inx, uint part, bool all_parts) const
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return ((table_share->key_info[inx].algorithm == HA_KEY_ALG_FULLTEXT) ?
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0 : HA_READ_NEXT | HA_READ_PREV | HA_READ_RANGE |
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HA_READ_ORDER | HA_KEYREAD_ONLY |
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(keys_with_parts.is_set(inx)?0:HA_DO_INDEX_COND_PUSHDOWN));
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uint max_supported_keys() const { return MI_MAX_KEY; }
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uint max_supported_key_length() const { return MI_MAX_KEY_LENGTH; }
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uint max_supported_key_part_length() const { return MI_MAX_KEY_LENGTH; }
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uint checksum() const;
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int open(const char *name, int mode, uint test_if_locked);
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int write_row(uchar * buf);
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int update_row(const uchar * old_data, uchar * new_data);
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int delete_row(const uchar * buf);
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int index_read_map(uchar *buf, const uchar *key, key_part_map keypart_map,
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enum ha_rkey_function find_flag);
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int index_read_idx_map(uchar *buf, uint index, const uchar *key,
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key_part_map keypart_map,
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enum ha_rkey_function find_flag);
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int index_read_last_map(uchar *buf, const uchar *key, key_part_map keypart_map);
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int index_next(uchar * buf);
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int index_prev(uchar * buf);
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int index_first(uchar * buf);
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int index_last(uchar * buf);
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int index_next_same(uchar *buf, const uchar *key, uint keylen);
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ft_handler->please->reinit_search(ft_handler);
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FT_INFO *ft_init_ext(uint flags, uint inx,String *key)
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return ft_init_search(flags,file,inx,
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(uchar *)key->ptr(), key->length(), key->charset(),
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int ft_read(uchar *buf);
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int rnd_init(bool scan);
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int rnd_next(uchar *buf);
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int rnd_pos(uchar * buf, uchar *pos);
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int restart_rnd_next(uchar *buf, uchar *pos);
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void position(const uchar *record);
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int extra(enum ha_extra_function operation);
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int extra_opt(enum ha_extra_function operation, ulong cache_size);
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int external_lock(THD *thd, int lock_type);
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int delete_all_rows(void);
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int disable_indexes(uint mode);
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int enable_indexes(uint mode);
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int indexes_are_disabled(void);
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void start_bulk_insert(ha_rows rows);
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int end_bulk_insert();
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ha_rows records_in_range(uint inx, key_range *min_key, key_range *max_key);
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void update_create_info(HA_CREATE_INFO *create_info);
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int create(const char *name, TABLE *form, HA_CREATE_INFO *create_info);
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THR_LOCK_DATA **store_lock(THD *thd, THR_LOCK_DATA **to,
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enum thr_lock_type lock_type);
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virtual void get_auto_increment(uint64_t offset, uint64_t increment,
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uint64_t nb_desired_values,
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uint64_t *first_value,
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uint64_t *nb_reserved_values);
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int rename_table(const char * from, const char * to);
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int delete_table(const char *name);
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int check(THD* thd, HA_CHECK_OPT* check_opt);
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int analyze(THD* thd,HA_CHECK_OPT* check_opt);
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int repair(THD* thd, HA_CHECK_OPT* check_opt);
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bool check_and_repair(THD *thd);
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bool is_crashed() const;
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bool auto_repair() const { return myisam_recover_options != 0; }
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int optimize(THD* thd, HA_CHECK_OPT* check_opt);
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int assign_to_keycache(THD* thd, HA_CHECK_OPT* check_opt);
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int preload_keys(THD* thd, HA_CHECK_OPT* check_opt);
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bool check_if_incompatible_data(HA_CREATE_INFO *info, uint table_changes);
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#ifdef HAVE_QUERY_CACHE
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my_bool register_query_cache_table(THD *thd, char *table_key,
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uint64_t *engine_data);
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MI_INFO *file_ptr(void)
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int read_range_first(const key_range *start_key, const key_range *end_key,
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bool eq_range_arg, bool sorted);
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int read_range_next();
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* Multi Range Read interface
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int multi_range_read_init(RANGE_SEQ_IF *seq, void *seq_init_param,
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uint n_ranges, uint mode, HANDLER_BUFFER *buf);
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int multi_range_read_next(char **range_info);
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ha_rows multi_range_read_info_const(uint keyno, RANGE_SEQ_IF *seq,
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void *seq_init_param,
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uint n_ranges, uint *bufsz,
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uint *flags, COST_VECT *cost);
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int multi_range_read_info(uint keyno, uint n_ranges, uint keys,
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uint *bufsz, uint *flags, COST_VECT *cost);
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/* Index condition pushdown implementation */
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Item *idx_cond_push(uint keyno, Item* idx_cond);
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key_map keys_with_parts;
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friend my_bool index_cond_func_myisam(void *arg);