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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 heap handler */
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#ifndef STORAGE_HEAP_HA_HEAP_H
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#define STORAGE_HEAP_HA_HEAP_H
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#include <drizzled/handler.h>
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#include <mysys/thr_lock.h>
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typedef struct st_heap_info HP_INFO;
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typedef struct st_heap_share HEAP_SHARE;
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typedef unsigned char *HEAP_PTR;
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class ha_heap: public handler
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HP_SHARE *internal_share;
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key_map btree_keys;
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/* number of records changed since last statistics update */
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uint key_stat_version;
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uint32_t records_changed;
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uint32_t key_stat_version;
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bool internal_table;
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ha_heap(handlerton *hton, TABLE_SHARE *table);
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ha_heap(StorageEngine *engine, TableShare *table);
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handler *clone(MEM_ROOT *mem_root);
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const char *table_type() const
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return (table->in_use->variables.sql_mode & MODE_MYSQL323) ?
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const char *index_type(uint inx)
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return ((table_share->key_info[inx].algorithm == HA_KEY_ALG_BTREE) ?
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const char *index_type(uint32_t inx);
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enum row_type get_row_type() const;
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const char **bas_ext() const;
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uint64_t table_flags() const
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return (HA_FAST_KEY_READ | HA_NO_BLOBS | HA_NULL_IN_KEY |
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HA_BINLOG_ROW_CAPABLE | HA_BINLOG_STMT_CAPABLE |
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HA_REC_NOT_IN_SEQ | HA_CAN_INSERT_DELAYED | HA_NO_TRANSACTIONS |
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HA_REC_NOT_IN_SEQ | HA_NO_TRANSACTIONS |
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HA_HAS_RECORDS | HA_STATS_RECORDS_IS_EXACT);
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uint32_t index_flags(uint inx, uint part __attribute__((unused)),
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bool all_parts __attribute__((unused))) const
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return ((table_share->key_info[inx].algorithm == HA_KEY_ALG_BTREE) ?
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HA_READ_NEXT | HA_READ_PREV | HA_READ_ORDER | HA_READ_RANGE :
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HA_ONLY_WHOLE_INDEX | HA_KEY_SCAN_NOT_ROR);
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uint32_t index_flags(uint32_t inx, uint32_t part, bool all_parts) const;
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const key_map *keys_to_use_for_scanning() { return &btree_keys; }
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uint max_supported_keys() const { return MAX_KEY; }
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uint max_supported_key_part_length() const { return MAX_KEY_LENGTH; }
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uint32_t max_supported_keys() const { return MAX_KEY; }
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uint32_t max_supported_key_part_length() const { return MAX_KEY_LENGTH; }
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{ return (double) (stats.records+stats.deleted) / 20.0+10; }
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double read_time(uint index __attribute__((unused)),
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uint ranges __attribute__((unused)),
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double read_time(uint32_t, uint32_t,
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{ return (double) rows / 20.0+1; }
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int open(const char *name, int mode, uint test_if_locked);
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int open(const char *name, int mode, uint32_t test_if_locked);
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void set_keys_for_scanning(void);
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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 write_row(unsigned char * buf);
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int update_row(const unsigned char * old_data, unsigned char * new_data);
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int delete_row(const unsigned char * buf);
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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 index_read_map(uchar * buf, const uchar * key, key_part_map keypart_map,
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int index_read_map(unsigned char * buf, const unsigned char * 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_read_idx_map(uchar * buf, uint index, const uchar * key,
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int index_read_last_map(unsigned char *buf, const unsigned char *key,
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key_part_map keypart_map);
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int index_read_idx_map(unsigned char * buf, uint32_t index,
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const unsigned char * 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_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(unsigned char * buf);
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int index_prev(unsigned char * buf);
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int index_first(unsigned char * buf);
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int index_last(unsigned char * 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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void position(const uchar *record);
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int rnd_next(unsigned char *buf);
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int rnd_pos(unsigned char * buf, unsigned char *pos);
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void position(const unsigned char *record);
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int extra(enum ha_extra_function operation);
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int external_lock(THD *thd, int lock_type);
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int external_lock(Session *session, 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 disable_indexes(uint32_t mode);
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int enable_indexes(uint32_t mode);
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int indexes_are_disabled(void);
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ha_rows records_in_range(uint inx, key_range *min_key, key_range *max_key);
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int delete_table(const char *from);
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ha_rows records_in_range(uint32_t inx, key_range *min_key, key_range *max_key);
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void drop_table(const char *name);
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int rename_table(const char * from, const char * to);
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int create(const char *name, TABLE *form, HA_CREATE_INFO *create_info);
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void update_create_info(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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int cmp_ref(const uchar *ref1, const uchar *ref2)
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return memcmp(ref1, ref2, sizeof(HEAP_PTR));
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bool check_if_incompatible_data(HA_CREATE_INFO *info, uint table_changes);
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THR_LOCK_DATA **store_lock(Session *session, THR_LOCK_DATA **to,
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enum thr_lock_type lock_type);
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int cmp_ref(const unsigned char *ref1, const unsigned char *ref2);
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void update_key_stats();
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#endif /* STORAGE_HEAP_HA_HEAP_H */