mirror of
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52cb0c24a6
Store max_trid in index file as state.create_trid. This is used to pack all transids in the index pages relative to max possible transid for file. Enable versioning for transactional tables with index. Tables with an auto-increment key, rtree or fulltext keys are not versioned. Changed info->lastkey to type MARIA_KEY. Removed info->lastkey_length as this is now part of info->lastkey Renamed old info->lastkey to info->lastkey_buff Use exact key lenghts for keys, not USE_WHOLE_KEY For partial key searches, use SEARCH_PART_KEY When searching to insert new key on page, use SEARCH_INSERT to mark that key has rowid Changes done in a lot of files: - Modified functions to use MARIA_KEY instead of key pointer and key length - Use keyinfo->root_lock instead of share->key_root_lock[keynr] - Simplify code by using local variable keyinfo instead if share->keyinfo[i] - Added #fdef EXTERNAL_LOCKING around removed state elements - HA_MAX_KEY_BUFF -> MARIA_MAX_KEY_BUFF (to reserve space for transid) - Changed type of 'nextflag' to uint32 to ensure all SEARCH_xxx flags fits into it .bzrignore: Added missing temporary directory extra/Makefile.am: comp_err is now deleted on make distclean include/maria.h: Added structure MARIA_KEY, which is used for intern key objects in Maria. Changed functions to take MARIA_KEY as an argument instead of pointer to packed key. Changed some functions that always return true or false to my_bool. Added virtual function make_key() to avoid if in _ma_make_key() Moved rw_lock_t for locking trees from share->key_root_lock to MARIA_KEYDEF. This makes usage of the locks simpler and faster include/my_base.h: Added HA_RTREE_INDEX flag to mark rtree index. Used for easier checks in ma_check() Added SEARCH_INSERT to be used when inserting new keys Added SEARCH_PART_KEY for partial searches Added SEARCH_USER_KEY_HAS_TRANSID to be used when key we use for searching in btree has a TRANSID Added SEARCH_PAGE_KEY_HAS_TRANSID to be used when key we found in btree has a transid include/my_handler.h: Make next_flag 32 bit to make sure we can handle all SEARCH_ bits mysql-test/include/maria_empty_logs.inc: Read and restore current database; Don't assume we are using mysqltest. Don't log use databasename to log. Using this include should not cause any result changes. mysql-test/r/maria-gis-rtree-dynamic.result: Updated results after adding some check table commands to help pinpoint errors mysql-test/r/maria-mvcc.result: New tests mysql-test/r/maria-purge.result: New result after adding removal of logs mysql-test/r/maria-recovery-big.result: maria_empty_logs doesn't log 'use mysqltest' anymore mysql-test/r/maria-recovery-bitmap.result: maria_empty_logs doesn't log 'use mysqltest' anymore mysql-test/r/maria-recovery-rtree-ft.result: maria_empty_logs doesn't log 'use mysqltest' anymore mysql-test/r/maria-recovery.result: maria_empty_logs doesn't log 'use mysqltest' anymore mysql-test/r/maria.result: New tests mysql-test/r/variables-big.result: Don't log id as it's not predictable mysql-test/suite/rpl_ndb/r/rpl_truncate_7ndb_2.result: Updated results to new binlog results. (Test has not been run in a long time as it requires --big) mysql-test/suite/rpl_ndb/t/rpl_truncate_7ndb_2-master.opt: Moved file to ndb replication test directory mysql-test/suite/rpl_ndb/t/rpl_truncate_7ndb_2.test: Fixed wrong path to included tests mysql-test/t/maria-gis-rtree-dynamic.test: Added some check table commands to help pinpoint errors mysql-test/t/maria-mvcc.test: New tests mysql-test/t/maria-purge.test: Remove logs to make test results predictable mysql-test/t/maria.test: New tests for some possible problems mysql-test/t/variables-big.test: Don't log id as it's not predictable mysys/my_handler.c: Updated function comment to reflect old code Changed nextflag to be uint32 to ensure we can have flags > 16 bit Changed checking if we are in insert with NULL keys as next_flag can now include additional bits that have to be ignored. Added SEARCH_INSERT flag to be used when inserting new keys in btree. This flag tells us the that the keys includes row position and it's thus safe to remove SEARCH_FIND Added comparision of transid. This is only done if the keys actually have a transid, which is indicated by nextflag mysys/my_lock.c: Fixed wrong test (Found by Guilhem) scripts/Makefile.am: Ensure that test programs are deleted by make clean sql/rpl_rli.cc: Moved assignment order to fix compiler warning storage/heap/hp_write.c: Add SEARCH_INSERT to signal ha_key_cmp that we we should also compare rowid for keys storage/maria/Makefile.am: Remove also maria log files when doing make distclean storage/maria/ha_maria.cc: Use 'file->start_state' as default state for transactional tables without versioning At table unlock, set file->state to point to live state. (Needed for information schema to pick up right number of rows) In ha_maria::implicit_commit() move all locked (ie open) tables to new transaction. This is needed to ensure ha_maria->info doesn't point to a deleted history event. Disable concurrent inserts for insert ... select and table changes with subqueries if statement based replication as this would cause wrong results on slave storage/maria/ma_blockrec.c: Updated comment storage/maria/ma_check.c: Compact key pages (removes transid) when doing --zerofill Check that 'page_flag' on key pages contains KEYPAGE_FLAG_HAS_TRANSID if there is a single key on the page with a transid Modified functions to use MARIA_KEY instead of key pointer and key length Use new interface to _ma_rec_pos(), _ma_dpointer(), _ma_ft_del(), ma_update_state_lsn() Removed not needed argument from get_record_for_key() Fixed that we check doesn't give errors for RTREE; We now treath these like SPATIAL Remove some SPATIAL specific code where the virtual functions can handle this in a general manner Use info->lastkey_buff instead of info->lastkey _ma_dpos() -> _ma_row_pos_from_key() _ma_make_key() -> keyinfo->make_key() _ma_print_key() -> _ma_print_keydata() _ma_move_key() -> ma_copy_copy() Add SEARCH_INSERT to signal ha_key_cmp that we we should also compare rowid for keys Ensure that data on page doesn't overwrite page checksum position Use DBUG_DUMP_KEY instead of DBUG_DUMP Use exact key lengths instead of USE_WHOLE_KEY to ha_key_cmp() Fixed check if rowid points outside of BLOCK_RECORD data file Use info->lastkey_buff instead of key on stack in some safe places Added #fdef EXTERNAL_LOCKING around removed state elements storage/maria/ma_close.c: Use keyinfo->root_lock instead of share->key_root_lock[keynr] storage/maria/ma_create.c: Removed assert that is already checked in maria_init() Force transactinal tables to be of type BLOCK_RECORD Fixed wrong usage of HA_PACK_RECORD (should be HA_OPTION_PACK_RECORD) Mark keys that uses HA_KEY_ALG_RTREE with HA_RTREE_INDEX for easier handling of these in ma_check Store max_trid in index file as state.create_trid. This is used to pack all transids in the index pages relative to max possible transid for file. storage/maria/ma_dbug.c: Changed _ma_print_key() to use MARIA_KEY storage/maria/ma_delete.c: Modified functions to use MARIA_KEY instead of key pointer and key length info->lastkey2-> info->lastkey_buff2 Added SEARCH_INSERT to signal ha_key_cmp that we we should also compare rowid for keys Use new interface for get_key(), _ma_get_last_key() and others _ma_dpos() -> ma_row_pos_from_key() Simplify setting of prev_key in del() Ensure that KEYPAGE_FLAG_HAS_TRANSID is set in page_flag if key page has transid Treath key pages that may have a transid as if keys would be of variable length storage/maria/ma_delete_all.c: Reset history state if maria_delete_all_rows() are called Update parameters to _ma_update_state_lsns() call storage/maria/ma_extra.c: Store and restore info->lastkey storage/maria/ma_ft_boolean_search.c: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_ft_nlq_search.c: Modified functions to use MARIA_KEY instead of key pointer and key length Use lastkey_buff2 instead of info->lastkey+info->s->base.max_key_length (same thing) storage/maria/ma_ft_update.c: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_ftdefs.h: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_fulltext.h: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_init.c: Check if blocksize is legal (Moved test here from ma_open()) storage/maria/ma_key.c: Added functions for storing/reading of transid Modified functions to use MARIA_KEY instead of key pointer and key length Moved _ma_sp_make_key() out of _ma_make_key() as we now use keyinfo->make_key to create keys Add transid to keys if table is versioned Added _ma_copy_key() storage/maria/ma_key_recover.c: Add logging of page_flag (holds information if there are keys with transid on page) Changed DBUG_PRINT("info" -> DBUG_PRINT("redo" as the redo logging can be quite extensive Added lots of DBUG_PRINT() Added support for index page operations: KEY_OP_SET_PAGEFLAG and KEY_OP_COMPACT_PAGE storage/maria/ma_key_recover.h: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_locking.c: Added new arguments to _ma_update_state_lsns_sub() storage/maria/ma_loghandler.c: Fixed all logging of LSN to look similar in DBUG log Changed if (left != 0) to if (left) as the later is used also later in the code storage/maria/ma_loghandler.h: Added new index page operations storage/maria/ma_open.c: Removed allocated "state_dummy" and instead use share->state.common for transactional tables that are not versioned This is needed to not get double increments of state.records (one in ma_write.c and on when log is written) Changed info->lastkey to MARIA_KEY type Removed resetting of MARIA_HA variables that have 0 as default value (as info is zerofilled) Enable versioning for transactional tables with index. Tables with an auto-increment key, rtree or fulltext keys are not versioned. Check on open that state.create_trid is correct Extend share->base.max_key_length in case of transactional table so that it can hold transid Removed 4.0 compatible fulltext key mode as this is not relevant for Maria Removed old and wrong #ifdef ENABLE_WHEN_WE_HAVE_TRANS_ROW_ID code block Initialize all new virtual function pointers Removed storing of state->unique, state->process and store state->create_trid instead storage/maria/ma_page.c: Added comment to describe key page structure Added functions to compact key page and log the compact operation storage/maria/ma_range.c: Modified functions to use MARIA_KEY instead of key pointer and key length Use SEARCH_PART_KEY indicator instead of USE_WHOLE_KEY to detect if we are doing a part key search Added handling of pages with transid storage/maria/ma_recovery.c: Don't assert if table we opened are not transactional. This may be a table which has been changed from transactional to not transactinal Added new arguments to _ma_update_state_lsns() storage/maria/ma_rename.c: Added new arguments to _ma_update_state_lsns() storage/maria/ma_rkey.c: Modified functions to use MARIA_KEY instead of key pointer and key length Don't use USE_WHOLE_KEY, use real length of key Use share->row_is_visible() to test if row is visible Moved search_flag == HA_READ_KEY_EXACT out of 'read-next-row' loop as this only need to be tested once Removed test if last_used_keyseg != 0 as this is always true storage/maria/ma_rnext.c: Modified functions to use MARIA_KEY instead of key pointer and key length Simplify code by using local variable keyinfo instead if share->keyinfo[i] Use share->row_is_visible() to test if row is visible storage/maria/ma_rnext_same.c: Modified functions to use MARIA_KEY instead of key pointer and key length lastkey2 -> lastkey_buff2 storage/maria/ma_rprev.c: Modified functions to use MARIA_KEY instead of key pointer and key length Simplify code by using local variable keyinfo instead if share->keyinfo[i] Use share->row_is_visible() to test if row is visible storage/maria/ma_rsame.c: Updated comment Simplify code by using local variable keyinfo instead if share->keyinfo[i] Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_rsamepos.c: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_rt_index.c: Modified functions to use MARIA_KEY instead of key pointer and key length Use better variable names Removed not needed casts _ma_dpos() -> _ma_row_pos_from_key() Use info->last_rtree_keypos to save position to key instead of info->int_keypos Simplify err: condition Changed return type for maria_rtree_insert() to my_bool as we are only intressed in ok/fail from this function storage/maria/ma_rt_index.h: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_rt_key.c: Modified functions to use MARIA_KEY instead of key pointer and key length Simplify maria_rtree_add_key by combining idenitcal code and removing added_len storage/maria/ma_rt_key.h: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_rt_mbr.c: Changed type of 'nextflag' to uint32 Added 'to' argument to RT_PAGE_MBR_XXX functions to more clearly see which variables changes value storage/maria/ma_rt_mbr.h: Changed type of 'nextflag' to uint32 storage/maria/ma_rt_split.c: Modified functions to use MARIA_KEY instead of key pointer and key length key_length -> key_data_length to catch possible errors storage/maria/ma_rt_test.c: Fixed wrong comment Reset recinfo to avoid valgrind varnings Fixed wrong argument to create_record() that caused test to fail storage/maria/ma_search.c: Modified functions to use MARIA_KEY instead of key pointer and key length Added support of keys with optional trid Test for SEARCH_PART_KEY instead of USE_WHOLE_KEY to detect part key reads _ma_dpos() -> _ma_row_pos_from_key() If there may be keys with transid on the page, have _ma_bin_search() call _ma_seq_search() Add _ma_skip_xxx() functions to quickly step over keys (faster than calling get_key() in most cases as we don't have to copy key data) Combine similar code at end of _ma_get_binary_pack_key() Removed not used function _ma_move_key() In _ma_search_next() don't call _ma_search() if we aren't on a nod page. Update info->cur_row.trid with trid for found key Removed some not needed casts Added _ma_trid_from_key() Use MARIA_SHARE instead of MARIA_HA as arguments to _ma_rec_pos(), _ma_dpointer() and _ma_xxx_keypos_to_recpos() to make functions faster and smaller storage/maria/ma_sort.c: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_sp_defs.h: _ma_sp_make_key() now fills in and returns (MARIA_KEY *) value storage/maria/ma_sp_key.c: _ma_sp_make_key() now fills in and returns (MARIA_KEY *) value Don't test sizeof(double), test against 8 as we are using float8store() Use mi_float8store() instead of doing swap of value (same thing but faster) storage/maria/ma_state.c: maria_versioning() now only calls _ma_block_get_status() if table supports versioning Added _ma_row_visible_xxx() functions for different occasions When emptying history, set info->state to point to the first history event. storage/maria/ma_state.h: Added _ma_row_visible_xxx() prototypes storage/maria/ma_static.c: Indentation changes storage/maria/ma_statrec.c: Fixed arguments to _ma_dpointer() and _ma_rec_pos() storage/maria/ma_test1.c: Call init_thr_lock() if we have versioning storage/maria/ma_test2.c: Call init_thr_lock() if we have versioning storage/maria/ma_unique.c: Modified functions to use MARIA_KEY storage/maria/ma_update.c: Modified functions to use MARIA_KEY instead of key pointer and key length storage/maria/ma_write.c: Modified functions to use MARIA_KEY instead of key pointer and key length Simplify code by using local variable keyinfo instead if share->keyinfo[i] In _ma_enlarge_root(), mark in page_flag if new key has transid _ma_dpos() -> _ma_row_pos_from_key() Changed return type of _ma_ck_write_tree() to my_bool as we are only testing if result is true or not Moved 'reversed' to outside block as area was used later storage/maria/maria_chk.c: Added error if trying to sort with HA_BINARY_PACK_KEY Use new interface to get_key() and _ma_dpointer() _ma_dpos() -> _ma_row_pos_from_key() storage/maria/maria_def.h: Modified functions to use MARIA_KEY instead of key pointer and key length Added 'common' to MARIA_SHARE->state for storing state for transactional tables without versioning Added create_trid to MARIA_SHARE Removed not used state variables 'process' and 'unique' Added defines for handling TRID's in index pages Changed to use MARIA_SHARE instead of MARIA_HA for some functions Added 'have_versioning' flag if table supports versioning Moved key_root_lock from MARIA_SHARE to MARIA_KEYDEF Changed last_key to be of type MARIA_KEY. Removed lastkey_length lastkey -> lastkey_buff, lastkey2 -> lastkey_buff2 Added _ma_get_used_and_nod_with_flag() for faster access to page data when page_flag is read Added DBUG_DUMP_KEY for easier DBUG_DUMP of a key Changed 'nextflag' and assocaited variables to uint32 storage/maria/maria_ftdump.c: lastkey -> lastkey_buff storage/maria/trnman.c: Fixed wrong initialization of min_read_from and max_commit_trid Added trnman_get_min_safe_trid() storage/maria/unittest/ma_test_all-t: Added --start-from storage/myisam/mi_check.c: Added SEARCH_INSERT, as ha_key_cmp() needs it when doing key comparision for inserting key on page in rowid order storage/myisam/mi_delete.c: Added SEARCH_INSERT, as ha_key_cmp() needs it when doing key comparision for inserting key on page in rowid order storage/myisam/mi_range.c: Updated comment storage/myisam/mi_write.c: Added SEARCH_INSERT, as ha_key_cmp() needs it when doing key comparision for inserting key on page in rowid order storage/myisam/rt_index.c: Fixed wrong parameter to rtree_get_req() which could cause crash
1046 lines
33 KiB
C
1046 lines
33 KiB
C
/* 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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/* Write a row to a MyISAM table */
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#include "fulltext.h"
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#include "rt_index.h"
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#define MAX_POINTER_LENGTH 8
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/* Functions declared in this file */
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static int w_search(MI_INFO *info,MI_KEYDEF *keyinfo,
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uint comp_flag, uchar *key,
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uint key_length, my_off_t pos, uchar *father_buff,
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uchar *father_keypos, my_off_t father_page,
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my_bool insert_last);
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static int _mi_balance_page(MI_INFO *info,MI_KEYDEF *keyinfo,uchar *key,
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uchar *curr_buff,uchar *father_buff,
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uchar *father_keypos,my_off_t father_page);
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static uchar *_mi_find_last_pos(MI_KEYDEF *keyinfo, uchar *page,
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uchar *key, uint *return_key_length,
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uchar **after_key);
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int _mi_ck_write_tree(register MI_INFO *info, uint keynr,uchar *key,
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uint key_length);
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int _mi_ck_write_btree(register MI_INFO *info, uint keynr,uchar *key,
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uint key_length);
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/* Write new record to database */
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int mi_write(MI_INFO *info, uchar *record)
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{
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MYISAM_SHARE *share=info->s;
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uint i;
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int save_errno;
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my_off_t filepos;
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uchar *buff;
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my_bool lock_tree= share->concurrent_insert;
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DBUG_ENTER("mi_write");
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DBUG_PRINT("enter",("isam: %d data: %d",info->s->kfile,info->dfile));
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DBUG_EXECUTE_IF("myisam_pretend_crashed_table_on_usage",
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mi_print_error(info->s, HA_ERR_CRASHED);
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DBUG_RETURN(my_errno= HA_ERR_CRASHED););
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if (share->options & HA_OPTION_READ_ONLY_DATA)
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{
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DBUG_RETURN(my_errno=EACCES);
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}
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if (_mi_readinfo(info,F_WRLCK,1))
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DBUG_RETURN(my_errno);
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dont_break(); /* Dont allow SIGHUP or SIGINT */
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#if !defined(NO_LOCKING) && defined(USE_RECORD_LOCK)
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if (!info->locked && my_lock(info->dfile,F_WRLCK,0L,F_TO_EOF,
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MYF(MY_SEEK_NOT_DONE) | info->lock_wait))
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goto err;
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#endif
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filepos= ((share->state.dellink != HA_OFFSET_ERROR &&
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!info->append_insert_at_end) ?
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share->state.dellink :
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info->state->data_file_length);
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if (share->base.reloc == (ha_rows) 1 &&
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share->base.records == (ha_rows) 1 &&
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info->state->records == (ha_rows) 1)
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{ /* System file */
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my_errno=HA_ERR_RECORD_FILE_FULL;
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goto err2;
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}
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if (info->state->key_file_length >= share->base.margin_key_file_length)
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{
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my_errno=HA_ERR_INDEX_FILE_FULL;
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goto err2;
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}
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if (_mi_mark_file_changed(info))
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goto err2;
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/* Calculate and check all unique constraints */
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for (i=0 ; i < share->state.header.uniques ; i++)
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{
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if (mi_check_unique(info,share->uniqueinfo+i,record,
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mi_unique_hash(share->uniqueinfo+i,record),
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HA_OFFSET_ERROR))
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goto err2;
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}
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/* Write all keys to indextree */
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buff=info->lastkey2;
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for (i=0 ; i < share->base.keys ; i++)
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{
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if (mi_is_key_active(share->state.key_map, i))
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{
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my_bool local_lock_tree= (lock_tree &&
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!(info->bulk_insert &&
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is_tree_inited(&info->bulk_insert[i])));
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if (local_lock_tree)
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{
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rw_wrlock(&share->key_root_lock[i]);
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share->keyinfo[i].version++;
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}
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if (share->keyinfo[i].flag & HA_FULLTEXT )
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{
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if (_mi_ft_add(info,i, buff, record, filepos))
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{
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if (local_lock_tree)
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rw_unlock(&share->key_root_lock[i]);
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DBUG_PRINT("error",("Got error: %d on write",my_errno));
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goto err;
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}
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}
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else
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{
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if (share->keyinfo[i].ck_insert(info,i,buff,
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_mi_make_key(info,i,buff,record,filepos)))
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{
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if (local_lock_tree)
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rw_unlock(&share->key_root_lock[i]);
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DBUG_PRINT("error",("Got error: %d on write",my_errno));
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goto err;
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}
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}
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/* The above changed info->lastkey2. Inform mi_rnext_same(). */
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info->update&= ~HA_STATE_RNEXT_SAME;
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if (local_lock_tree)
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rw_unlock(&share->key_root_lock[i]);
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}
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}
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if (share->calc_checksum)
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info->checksum=(*share->calc_checksum)(info,record);
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if (!(info->opt_flag & OPT_NO_ROWS))
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{
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if ((*share->write_record)(info,record))
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goto err;
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info->state->checksum+=info->checksum;
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}
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if (share->base.auto_key)
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set_if_bigger(info->s->state.auto_increment,
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retrieve_auto_increment(info, record));
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info->update= (HA_STATE_CHANGED | HA_STATE_AKTIV | HA_STATE_WRITTEN |
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HA_STATE_ROW_CHANGED);
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info->state->records++;
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info->lastpos=filepos;
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myisam_log_record(MI_LOG_WRITE,info,record,filepos,0);
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VOID(_mi_writeinfo(info, WRITEINFO_UPDATE_KEYFILE));
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if (info->invalidator != 0)
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{
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DBUG_PRINT("info", ("invalidator... '%s' (update)", info->filename));
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(*info->invalidator)(info->filename);
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info->invalidator=0;
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}
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/*
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Update status of the table. We need to do so after each row write
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for the log tables, as we want the new row to become visible to
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other threads as soon as possible. We don't lock mutex here
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(as it is required by pthread memory visibility rules) as (1) it's
|
|
not critical to use outdated share->is_log_table value (2) locking
|
|
mutex here for every write is too expensive.
|
|
*/
|
|
if (share->is_log_table)
|
|
mi_update_status((void*) info);
|
|
|
|
allow_break(); /* Allow SIGHUP & SIGINT */
|
|
DBUG_RETURN(0);
|
|
|
|
err:
|
|
save_errno=my_errno;
|
|
if (my_errno == HA_ERR_FOUND_DUPP_KEY || my_errno == HA_ERR_RECORD_FILE_FULL ||
|
|
my_errno == HA_ERR_NULL_IN_SPATIAL || my_errno == HA_ERR_OUT_OF_MEM)
|
|
{
|
|
if (info->bulk_insert)
|
|
{
|
|
uint j;
|
|
for (j=0 ; j < share->base.keys ; j++)
|
|
mi_flush_bulk_insert(info, j);
|
|
}
|
|
info->errkey= (int) i;
|
|
while ( i-- > 0)
|
|
{
|
|
if (mi_is_key_active(share->state.key_map, i))
|
|
{
|
|
my_bool local_lock_tree= (lock_tree &&
|
|
!(info->bulk_insert &&
|
|
is_tree_inited(&info->bulk_insert[i])));
|
|
if (local_lock_tree)
|
|
rw_wrlock(&share->key_root_lock[i]);
|
|
if (share->keyinfo[i].flag & HA_FULLTEXT)
|
|
{
|
|
if (_mi_ft_del(info,i, buff,record,filepos))
|
|
{
|
|
if (local_lock_tree)
|
|
rw_unlock(&share->key_root_lock[i]);
|
|
break;
|
|
}
|
|
}
|
|
else
|
|
{
|
|
uint key_length=_mi_make_key(info,i,buff,record,filepos);
|
|
if (_mi_ck_delete(info,i,buff,key_length))
|
|
{
|
|
if (local_lock_tree)
|
|
rw_unlock(&share->key_root_lock[i]);
|
|
break;
|
|
}
|
|
}
|
|
if (local_lock_tree)
|
|
rw_unlock(&share->key_root_lock[i]);
|
|
}
|
|
}
|
|
}
|
|
else
|
|
{
|
|
mi_print_error(info->s, HA_ERR_CRASHED);
|
|
mi_mark_crashed(info);
|
|
}
|
|
info->update= (HA_STATE_CHANGED | HA_STATE_WRITTEN | HA_STATE_ROW_CHANGED);
|
|
my_errno=save_errno;
|
|
err2:
|
|
save_errno=my_errno;
|
|
myisam_log_record(MI_LOG_WRITE,info,record,filepos,my_errno);
|
|
VOID(_mi_writeinfo(info,WRITEINFO_UPDATE_KEYFILE));
|
|
allow_break(); /* Allow SIGHUP & SIGINT */
|
|
DBUG_RETURN(my_errno=save_errno);
|
|
} /* mi_write */
|
|
|
|
|
|
/* Write one key to btree */
|
|
|
|
int _mi_ck_write(MI_INFO *info, uint keynr, uchar *key, uint key_length)
|
|
{
|
|
DBUG_ENTER("_mi_ck_write");
|
|
|
|
if (info->bulk_insert && is_tree_inited(&info->bulk_insert[keynr]))
|
|
{
|
|
DBUG_RETURN(_mi_ck_write_tree(info, keynr, key, key_length));
|
|
}
|
|
else
|
|
{
|
|
DBUG_RETURN(_mi_ck_write_btree(info, keynr, key, key_length));
|
|
}
|
|
} /* _mi_ck_write */
|
|
|
|
|
|
/**********************************************************************
|
|
* Normal insert code *
|
|
**********************************************************************/
|
|
|
|
int _mi_ck_write_btree(register MI_INFO *info, uint keynr, uchar *key,
|
|
uint key_length)
|
|
{
|
|
int error;
|
|
uint comp_flag;
|
|
MI_KEYDEF *keyinfo=info->s->keyinfo+keynr;
|
|
my_off_t *root=&info->s->state.key_root[keynr];
|
|
DBUG_ENTER("_mi_ck_write_btree");
|
|
|
|
if (keyinfo->flag & HA_SORT_ALLOWS_SAME)
|
|
comp_flag=SEARCH_BIGGER; /* Put after same key */
|
|
else if (keyinfo->flag & (HA_NOSAME|HA_FULLTEXT))
|
|
{
|
|
comp_flag=SEARCH_FIND | SEARCH_UPDATE | SEARCH_INSERT; /* No duplicates */
|
|
if (keyinfo->flag & HA_NULL_ARE_EQUAL)
|
|
comp_flag|= SEARCH_NULL_ARE_EQUAL;
|
|
}
|
|
else
|
|
comp_flag=SEARCH_SAME; /* Keys in rec-pos order */
|
|
|
|
error=_mi_ck_real_write_btree(info, keyinfo, key, key_length,
|
|
root, comp_flag);
|
|
if (info->ft1_to_ft2)
|
|
{
|
|
if (!error)
|
|
error= _mi_ft_convert_to_ft2(info, keynr, key);
|
|
delete_dynamic(info->ft1_to_ft2);
|
|
my_free((uchar*)info->ft1_to_ft2, MYF(0));
|
|
info->ft1_to_ft2=0;
|
|
}
|
|
DBUG_RETURN(error);
|
|
} /* _mi_ck_write_btree */
|
|
|
|
int _mi_ck_real_write_btree(MI_INFO *info, MI_KEYDEF *keyinfo,
|
|
uchar *key, uint key_length, my_off_t *root, uint comp_flag)
|
|
{
|
|
int error;
|
|
DBUG_ENTER("_mi_ck_real_write_btree");
|
|
/* key_length parameter is used only if comp_flag is SEARCH_FIND */
|
|
if (*root == HA_OFFSET_ERROR ||
|
|
(error=w_search(info, keyinfo, comp_flag, key, key_length,
|
|
*root, (uchar *) 0, (uchar*) 0,
|
|
(my_off_t) 0, 1)) > 0)
|
|
error=_mi_enlarge_root(info,keyinfo,key,root);
|
|
DBUG_RETURN(error);
|
|
} /* _mi_ck_real_write_btree */
|
|
|
|
|
|
/* Make a new root with key as only pointer */
|
|
|
|
int _mi_enlarge_root(MI_INFO *info, MI_KEYDEF *keyinfo, uchar *key,
|
|
my_off_t *root)
|
|
{
|
|
uint t_length,nod_flag;
|
|
MI_KEY_PARAM s_temp;
|
|
MYISAM_SHARE *share=info->s;
|
|
DBUG_ENTER("_mi_enlarge_root");
|
|
|
|
nod_flag= (*root != HA_OFFSET_ERROR) ? share->base.key_reflength : 0;
|
|
_mi_kpointer(info,info->buff+2,*root); /* if nod */
|
|
t_length=(*keyinfo->pack_key)(keyinfo,nod_flag,(uchar*) 0,
|
|
(uchar*) 0, (uchar*) 0, key,&s_temp);
|
|
mi_putint(info->buff,t_length+2+nod_flag,nod_flag);
|
|
(*keyinfo->store_key)(keyinfo,info->buff+2+nod_flag,&s_temp);
|
|
info->buff_used=info->page_changed=1; /* info->buff is used */
|
|
if ((*root= _mi_new(info,keyinfo,DFLT_INIT_HITS)) == HA_OFFSET_ERROR ||
|
|
_mi_write_keypage(info,keyinfo,*root,DFLT_INIT_HITS,info->buff))
|
|
DBUG_RETURN(-1);
|
|
DBUG_RETURN(0);
|
|
} /* _mi_enlarge_root */
|
|
|
|
|
|
/*
|
|
Search after a position for a key and store it there
|
|
Returns -1 = error
|
|
0 = ok
|
|
1 = key should be stored in higher tree
|
|
*/
|
|
|
|
static int w_search(register MI_INFO *info, register MI_KEYDEF *keyinfo,
|
|
uint comp_flag, uchar *key, uint key_length, my_off_t page,
|
|
uchar *father_buff, uchar *father_keypos,
|
|
my_off_t father_page, my_bool insert_last)
|
|
{
|
|
int error,flag;
|
|
uint nod_flag, search_key_length;
|
|
uchar *temp_buff,*keypos;
|
|
uchar keybuff[HA_MAX_KEY_BUFF];
|
|
my_bool was_last_key;
|
|
my_off_t next_page, dupp_key_pos;
|
|
DBUG_ENTER("w_search");
|
|
DBUG_PRINT("enter",("page: %ld", (long) page));
|
|
|
|
search_key_length= (comp_flag & SEARCH_FIND) ? key_length : USE_WHOLE_KEY;
|
|
if (!(temp_buff= (uchar*) my_alloca((uint) keyinfo->block_length+
|
|
HA_MAX_KEY_BUFF*2)))
|
|
DBUG_RETURN(-1);
|
|
if (!_mi_fetch_keypage(info,keyinfo,page,DFLT_INIT_HITS,temp_buff,0))
|
|
goto err;
|
|
|
|
flag=(*keyinfo->bin_search)(info,keyinfo,temp_buff,key,search_key_length,
|
|
comp_flag, &keypos, keybuff, &was_last_key);
|
|
nod_flag=mi_test_if_nod(temp_buff);
|
|
if (flag == 0)
|
|
{
|
|
uint tmp_key_length;
|
|
/* get position to record with duplicated key */
|
|
tmp_key_length=(*keyinfo->get_key)(keyinfo,nod_flag,&keypos,keybuff);
|
|
if (tmp_key_length)
|
|
dupp_key_pos=_mi_dpos(info,0,keybuff+tmp_key_length);
|
|
else
|
|
dupp_key_pos= HA_OFFSET_ERROR;
|
|
|
|
if (keyinfo->flag & HA_FULLTEXT)
|
|
{
|
|
uint off;
|
|
int subkeys;
|
|
|
|
get_key_full_length_rdonly(off, keybuff);
|
|
subkeys=ft_sintXkorr(keybuff+off);
|
|
comp_flag=SEARCH_SAME;
|
|
if (subkeys >= 0)
|
|
{
|
|
/* normal word, one-level tree structure */
|
|
flag=(*keyinfo->bin_search)(info, keyinfo, temp_buff, key,
|
|
USE_WHOLE_KEY, comp_flag,
|
|
&keypos, keybuff, &was_last_key);
|
|
}
|
|
else
|
|
{
|
|
/* popular word. two-level tree. going down */
|
|
my_off_t root=dupp_key_pos;
|
|
keyinfo=&info->s->ft2_keyinfo;
|
|
get_key_full_length_rdonly(off, key);
|
|
key+=off;
|
|
keypos-=keyinfo->keylength+nod_flag; /* we'll modify key entry 'in vivo' */
|
|
error=_mi_ck_real_write_btree(info, keyinfo, key, 0,
|
|
&root, comp_flag);
|
|
_mi_dpointer(info, keypos+HA_FT_WLEN, root);
|
|
subkeys--; /* should there be underflow protection ? */
|
|
DBUG_ASSERT(subkeys < 0);
|
|
ft_intXstore(keypos, subkeys);
|
|
if (!error)
|
|
error=_mi_write_keypage(info,keyinfo,page,DFLT_INIT_HITS,temp_buff);
|
|
my_afree((uchar*) temp_buff);
|
|
DBUG_RETURN(error);
|
|
}
|
|
}
|
|
else /* not HA_FULLTEXT, normal HA_NOSAME key */
|
|
{
|
|
info->dupp_key_pos= dupp_key_pos;
|
|
my_afree((uchar*) temp_buff);
|
|
my_errno=HA_ERR_FOUND_DUPP_KEY;
|
|
DBUG_RETURN(-1);
|
|
}
|
|
}
|
|
if (flag == MI_FOUND_WRONG_KEY)
|
|
DBUG_RETURN(-1);
|
|
if (!was_last_key)
|
|
insert_last=0;
|
|
next_page=_mi_kpos(nod_flag,keypos);
|
|
if (next_page == HA_OFFSET_ERROR ||
|
|
(error=w_search(info, keyinfo, comp_flag, key, key_length, next_page,
|
|
temp_buff, keypos, page, insert_last)) >0)
|
|
{
|
|
error=_mi_insert(info,keyinfo,key,temp_buff,keypos,keybuff,father_buff,
|
|
father_keypos,father_page, insert_last);
|
|
if (_mi_write_keypage(info,keyinfo,page,DFLT_INIT_HITS,temp_buff))
|
|
goto err;
|
|
}
|
|
my_afree((uchar*) temp_buff);
|
|
DBUG_RETURN(error);
|
|
err:
|
|
my_afree((uchar*) temp_buff);
|
|
DBUG_PRINT("exit",("Error: %d",my_errno));
|
|
DBUG_RETURN (-1);
|
|
} /* w_search */
|
|
|
|
|
|
/*
|
|
Insert new key.
|
|
|
|
SYNOPSIS
|
|
_mi_insert()
|
|
info Open table information.
|
|
keyinfo Key definition information.
|
|
key New key.
|
|
anc_buff Key page (beginning).
|
|
key_pos Position in key page where to insert.
|
|
key_buff Copy of previous key.
|
|
father_buff parent key page for balancing.
|
|
father_key_pos position in parent key page for balancing.
|
|
father_page position of parent key page in file.
|
|
insert_last If to append at end of page.
|
|
|
|
DESCRIPTION
|
|
Insert new key at right of key_pos.
|
|
|
|
RETURN
|
|
2 if key contains key to upper level.
|
|
0 OK.
|
|
< 0 Error.
|
|
*/
|
|
|
|
int _mi_insert(register MI_INFO *info, register MI_KEYDEF *keyinfo,
|
|
uchar *key, uchar *anc_buff, uchar *key_pos, uchar *key_buff,
|
|
uchar *father_buff, uchar *father_key_pos, my_off_t father_page,
|
|
my_bool insert_last)
|
|
{
|
|
uint a_length,nod_flag;
|
|
int t_length;
|
|
uchar *endpos, *prev_key;
|
|
MI_KEY_PARAM s_temp;
|
|
DBUG_ENTER("_mi_insert");
|
|
DBUG_PRINT("enter",("key_pos: 0x%lx", (long) key_pos));
|
|
DBUG_EXECUTE("key",_mi_print_key(DBUG_FILE,keyinfo->seg,key,USE_WHOLE_KEY););
|
|
|
|
nod_flag=mi_test_if_nod(anc_buff);
|
|
a_length=mi_getint(anc_buff);
|
|
endpos= anc_buff+ a_length;
|
|
prev_key=(key_pos == anc_buff+2+nod_flag ? (uchar*) 0 : key_buff);
|
|
t_length=(*keyinfo->pack_key)(keyinfo,nod_flag,
|
|
(key_pos == endpos ? (uchar*) 0 : key_pos),
|
|
prev_key, prev_key,
|
|
key,&s_temp);
|
|
#ifndef DBUG_OFF
|
|
if (key_pos != anc_buff+2+nod_flag && (keyinfo->flag &
|
|
(HA_BINARY_PACK_KEY | HA_PACK_KEY)))
|
|
{
|
|
DBUG_DUMP("prev_key",(uchar*) key_buff,_mi_keylength(keyinfo,key_buff));
|
|
}
|
|
if (keyinfo->flag & HA_PACK_KEY)
|
|
{
|
|
DBUG_PRINT("test",("t_length: %d ref_len: %d",
|
|
t_length,s_temp.ref_length));
|
|
DBUG_PRINT("test",("n_ref_len: %d n_length: %d key_pos: 0x%lx",
|
|
s_temp.n_ref_length,s_temp.n_length, (long) s_temp.key));
|
|
}
|
|
#endif
|
|
if (t_length > 0)
|
|
{
|
|
if (t_length >= keyinfo->maxlength*2+MAX_POINTER_LENGTH)
|
|
{
|
|
mi_print_error(info->s, HA_ERR_CRASHED);
|
|
my_errno=HA_ERR_CRASHED;
|
|
DBUG_RETURN(-1);
|
|
}
|
|
bmove_upp((uchar*) endpos+t_length,(uchar*) endpos,(uint) (endpos-key_pos));
|
|
}
|
|
else
|
|
{
|
|
if (-t_length >= keyinfo->maxlength*2+MAX_POINTER_LENGTH)
|
|
{
|
|
mi_print_error(info->s, HA_ERR_CRASHED);
|
|
my_errno=HA_ERR_CRASHED;
|
|
DBUG_RETURN(-1);
|
|
}
|
|
bmove(key_pos,key_pos-t_length,(uint) (endpos-key_pos)+t_length);
|
|
}
|
|
(*keyinfo->store_key)(keyinfo,key_pos,&s_temp);
|
|
a_length+=t_length;
|
|
mi_putint(anc_buff,a_length,nod_flag);
|
|
if (a_length <= keyinfo->block_length)
|
|
{
|
|
if (keyinfo->block_length - a_length < 32 &&
|
|
keyinfo->flag & HA_FULLTEXT && key_pos == endpos &&
|
|
info->s->base.key_reflength <= info->s->base.rec_reflength &&
|
|
info->s->options & (HA_OPTION_PACK_RECORD | HA_OPTION_COMPRESS_RECORD))
|
|
{
|
|
/*
|
|
Normal word. One-level tree. Page is almost full.
|
|
Let's consider converting.
|
|
We'll compare 'key' and the first key at anc_buff
|
|
*/
|
|
uchar *a=key, *b=anc_buff+2+nod_flag;
|
|
uint alen, blen, ft2len=info->s->ft2_keyinfo.keylength;
|
|
/* the very first key on the page is always unpacked */
|
|
DBUG_ASSERT((*b & 128) == 0);
|
|
#if HA_FT_MAXLEN >= 127
|
|
blen= mi_uint2korr(b); b+=2;
|
|
#else
|
|
blen= *b++;
|
|
#endif
|
|
get_key_length(alen,a);
|
|
DBUG_ASSERT(info->ft1_to_ft2==0);
|
|
if (alen == blen &&
|
|
ha_compare_text(keyinfo->seg->charset, a, alen, b, blen, 0, 0)==0)
|
|
{
|
|
/* yup. converting */
|
|
info->ft1_to_ft2=(DYNAMIC_ARRAY *)
|
|
my_malloc(sizeof(DYNAMIC_ARRAY), MYF(MY_WME));
|
|
my_init_dynamic_array(info->ft1_to_ft2, ft2len, 300, 50);
|
|
|
|
/*
|
|
now, adding all keys from the page to dynarray
|
|
if the page is a leaf (if not keys will be deleted later)
|
|
*/
|
|
if (!nod_flag)
|
|
{
|
|
/* let's leave the first key on the page, though, because
|
|
we cannot easily dispatch an empty page here */
|
|
b+=blen+ft2len+2;
|
|
for (a=anc_buff+a_length ; b < a ; b+=ft2len+2)
|
|
insert_dynamic(info->ft1_to_ft2, b);
|
|
|
|
/* fixing the page's length - it contains only one key now */
|
|
mi_putint(anc_buff,2+blen+ft2len+2,0);
|
|
}
|
|
/* the rest will be done when we're back from recursion */
|
|
}
|
|
}
|
|
DBUG_RETURN(0); /* There is room on page */
|
|
}
|
|
/* Page is full */
|
|
if (nod_flag)
|
|
insert_last=0;
|
|
if (!(keyinfo->flag & (HA_VAR_LENGTH_KEY | HA_BINARY_PACK_KEY)) &&
|
|
father_buff && !insert_last)
|
|
DBUG_RETURN(_mi_balance_page(info,keyinfo,key,anc_buff,father_buff,
|
|
father_key_pos,father_page));
|
|
DBUG_RETURN(_mi_split_page(info,keyinfo,key,anc_buff,key_buff, insert_last));
|
|
} /* _mi_insert */
|
|
|
|
|
|
/* split a full page in two and assign emerging item to key */
|
|
|
|
int _mi_split_page(register MI_INFO *info, register MI_KEYDEF *keyinfo,
|
|
uchar *key, uchar *buff, uchar *key_buff,
|
|
my_bool insert_last_key)
|
|
{
|
|
uint length,a_length,key_ref_length,t_length,nod_flag,key_length;
|
|
uchar *key_pos,*pos, *after_key;
|
|
my_off_t new_pos;
|
|
MI_KEY_PARAM s_temp;
|
|
DBUG_ENTER("mi_split_page");
|
|
LINT_INIT(after_key);
|
|
DBUG_DUMP("buff",(uchar*) buff,mi_getint(buff));
|
|
|
|
if (info->s->keyinfo+info->lastinx == keyinfo)
|
|
info->page_changed=1; /* Info->buff is used */
|
|
info->buff_used=1;
|
|
nod_flag=mi_test_if_nod(buff);
|
|
key_ref_length=2+nod_flag;
|
|
if (insert_last_key)
|
|
key_pos=_mi_find_last_pos(keyinfo,buff,key_buff, &key_length, &after_key);
|
|
else
|
|
key_pos=_mi_find_half_pos(nod_flag,keyinfo,buff,key_buff, &key_length,
|
|
&after_key);
|
|
if (!key_pos)
|
|
DBUG_RETURN(-1);
|
|
|
|
length=(uint) (key_pos-buff);
|
|
a_length=mi_getint(buff);
|
|
mi_putint(buff,length,nod_flag);
|
|
|
|
key_pos=after_key;
|
|
if (nod_flag)
|
|
{
|
|
DBUG_PRINT("test",("Splitting nod"));
|
|
pos=key_pos-nod_flag;
|
|
memcpy((uchar*) info->buff+2,(uchar*) pos,(size_t) nod_flag);
|
|
}
|
|
|
|
/* Move middle item to key and pointer to new page */
|
|
if ((new_pos=_mi_new(info,keyinfo,DFLT_INIT_HITS)) == HA_OFFSET_ERROR)
|
|
DBUG_RETURN(-1);
|
|
_mi_kpointer(info,_mi_move_key(keyinfo,key,key_buff),new_pos);
|
|
|
|
/* Store new page */
|
|
if (!(*keyinfo->get_key)(keyinfo,nod_flag,&key_pos,key_buff))
|
|
DBUG_RETURN(-1);
|
|
|
|
t_length=(*keyinfo->pack_key)(keyinfo,nod_flag,(uchar *) 0,
|
|
(uchar*) 0, (uchar*) 0,
|
|
key_buff, &s_temp);
|
|
length=(uint) ((buff+a_length)-key_pos);
|
|
memcpy((uchar*) info->buff+key_ref_length+t_length,(uchar*) key_pos,
|
|
(size_t) length);
|
|
(*keyinfo->store_key)(keyinfo,info->buff+key_ref_length,&s_temp);
|
|
mi_putint(info->buff,length+t_length+key_ref_length,nod_flag);
|
|
|
|
if (_mi_write_keypage(info,keyinfo,new_pos,DFLT_INIT_HITS,info->buff))
|
|
DBUG_RETURN(-1);
|
|
DBUG_DUMP("key",(uchar*) key,_mi_keylength(keyinfo,key));
|
|
DBUG_RETURN(2); /* Middle key up */
|
|
} /* _mi_split_page */
|
|
|
|
|
|
/*
|
|
Calculate how to much to move to split a page in two
|
|
Returns pointer to start of key.
|
|
key will contain the key.
|
|
return_key_length will contain the length of key
|
|
after_key will contain the position to where the next key starts
|
|
*/
|
|
|
|
uchar *_mi_find_half_pos(uint nod_flag, MI_KEYDEF *keyinfo, uchar *page,
|
|
uchar *key, uint *return_key_length,
|
|
uchar **after_key)
|
|
{
|
|
uint keys,length,key_ref_length;
|
|
uchar *end,*lastpos;
|
|
DBUG_ENTER("_mi_find_half_pos");
|
|
|
|
key_ref_length=2+nod_flag;
|
|
length=mi_getint(page)-key_ref_length;
|
|
page+=key_ref_length;
|
|
if (!(keyinfo->flag &
|
|
(HA_PACK_KEY | HA_SPACE_PACK_USED | HA_VAR_LENGTH_KEY |
|
|
HA_BINARY_PACK_KEY)))
|
|
{
|
|
key_ref_length=keyinfo->keylength+nod_flag;
|
|
keys=length/(key_ref_length*2);
|
|
*return_key_length=keyinfo->keylength;
|
|
end=page+keys*key_ref_length;
|
|
*after_key=end+key_ref_length;
|
|
memcpy(key,end,key_ref_length);
|
|
DBUG_RETURN(end);
|
|
}
|
|
|
|
end=page+length/2-key_ref_length; /* This is aprox. half */
|
|
*key='\0';
|
|
do
|
|
{
|
|
lastpos=page;
|
|
if (!(length=(*keyinfo->get_key)(keyinfo,nod_flag,&page,key)))
|
|
DBUG_RETURN(0);
|
|
} while (page < end);
|
|
*return_key_length=length;
|
|
*after_key=page;
|
|
DBUG_PRINT("exit",("returns: 0x%lx page: 0x%lx half: 0x%lx",
|
|
(long) lastpos, (long) page, (long) end));
|
|
DBUG_RETURN(lastpos);
|
|
} /* _mi_find_half_pos */
|
|
|
|
|
|
/*
|
|
Split buffer at last key
|
|
Returns pointer to the start of the key before the last key
|
|
key will contain the last key
|
|
*/
|
|
|
|
static uchar *_mi_find_last_pos(MI_KEYDEF *keyinfo, uchar *page,
|
|
uchar *key, uint *return_key_length,
|
|
uchar **after_key)
|
|
{
|
|
uint keys,length,last_length,key_ref_length;
|
|
uchar *end,*lastpos,*prevpos;
|
|
uchar key_buff[HA_MAX_KEY_BUFF];
|
|
DBUG_ENTER("_mi_find_last_pos");
|
|
|
|
key_ref_length=2;
|
|
length=mi_getint(page)-key_ref_length;
|
|
page+=key_ref_length;
|
|
if (!(keyinfo->flag &
|
|
(HA_PACK_KEY | HA_SPACE_PACK_USED | HA_VAR_LENGTH_KEY |
|
|
HA_BINARY_PACK_KEY)))
|
|
{
|
|
keys=length/keyinfo->keylength-2;
|
|
*return_key_length=length=keyinfo->keylength;
|
|
end=page+keys*length;
|
|
*after_key=end+length;
|
|
memcpy(key,end,length);
|
|
DBUG_RETURN(end);
|
|
}
|
|
|
|
LINT_INIT(prevpos);
|
|
LINT_INIT(last_length);
|
|
end=page+length-key_ref_length;
|
|
*key='\0';
|
|
length=0;
|
|
lastpos=page;
|
|
while (page < end)
|
|
{
|
|
prevpos=lastpos; lastpos=page;
|
|
last_length=length;
|
|
memcpy(key, key_buff, length); /* previous key */
|
|
if (!(length=(*keyinfo->get_key)(keyinfo,0,&page,key_buff)))
|
|
{
|
|
mi_print_error(keyinfo->share, HA_ERR_CRASHED);
|
|
my_errno=HA_ERR_CRASHED;
|
|
DBUG_RETURN(0);
|
|
}
|
|
}
|
|
*return_key_length=last_length;
|
|
*after_key=lastpos;
|
|
DBUG_PRINT("exit",("returns: 0x%lx page: 0x%lx end: 0x%lx",
|
|
(long) prevpos,(long) page,(long) end));
|
|
DBUG_RETURN(prevpos);
|
|
} /* _mi_find_last_pos */
|
|
|
|
|
|
/* Balance page with not packed keys with page on right/left */
|
|
/* returns 0 if balance was done */
|
|
|
|
static int _mi_balance_page(register MI_INFO *info, MI_KEYDEF *keyinfo,
|
|
uchar *key, uchar *curr_buff, uchar *father_buff,
|
|
uchar *father_key_pos, my_off_t father_page)
|
|
{
|
|
my_bool right;
|
|
uint k_length,father_length,father_keylength,nod_flag,curr_keylength,
|
|
right_length,left_length,new_right_length,new_left_length,extra_length,
|
|
length,keys;
|
|
uchar *pos,*buff,*extra_buff;
|
|
my_off_t next_page,new_pos;
|
|
uchar tmp_part_key[HA_MAX_KEY_BUFF];
|
|
DBUG_ENTER("_mi_balance_page");
|
|
|
|
k_length=keyinfo->keylength;
|
|
father_length=mi_getint(father_buff);
|
|
father_keylength=k_length+info->s->base.key_reflength;
|
|
nod_flag=mi_test_if_nod(curr_buff);
|
|
curr_keylength=k_length+nod_flag;
|
|
info->page_changed=1;
|
|
|
|
if ((father_key_pos != father_buff+father_length &&
|
|
(info->state->records & 1)) ||
|
|
father_key_pos == father_buff+2+info->s->base.key_reflength)
|
|
{
|
|
right=1;
|
|
next_page= _mi_kpos(info->s->base.key_reflength,
|
|
father_key_pos+father_keylength);
|
|
buff=info->buff;
|
|
DBUG_PRINT("test",("use right page: %lu", (ulong) next_page));
|
|
}
|
|
else
|
|
{
|
|
right=0;
|
|
father_key_pos-=father_keylength;
|
|
next_page= _mi_kpos(info->s->base.key_reflength,father_key_pos);
|
|
/* Fix that curr_buff is to left */
|
|
buff=curr_buff; curr_buff=info->buff;
|
|
DBUG_PRINT("test",("use left page: %lu", (ulong) next_page));
|
|
} /* father_key_pos ptr to parting key */
|
|
|
|
if (!_mi_fetch_keypage(info,keyinfo,next_page,DFLT_INIT_HITS,info->buff,0))
|
|
goto err;
|
|
DBUG_DUMP("next",(uchar*) info->buff,mi_getint(info->buff));
|
|
|
|
/* Test if there is room to share keys */
|
|
|
|
left_length=mi_getint(curr_buff);
|
|
right_length=mi_getint(buff);
|
|
keys=(left_length+right_length-4-nod_flag*2)/curr_keylength;
|
|
|
|
if ((right ? right_length : left_length) + curr_keylength <=
|
|
keyinfo->block_length)
|
|
{ /* Merge buffs */
|
|
new_left_length=2+nod_flag+(keys/2)*curr_keylength;
|
|
new_right_length=2+nod_flag+((keys+1)/2)*curr_keylength;
|
|
mi_putint(curr_buff,new_left_length,nod_flag);
|
|
mi_putint(buff,new_right_length,nod_flag);
|
|
|
|
if (left_length < new_left_length)
|
|
{ /* Move keys buff -> leaf */
|
|
pos=curr_buff+left_length;
|
|
memcpy((uchar*) pos,(uchar*) father_key_pos, (size_t) k_length);
|
|
memcpy((uchar*) pos+k_length, (uchar*) buff+2,
|
|
(size_t) (length=new_left_length - left_length - k_length));
|
|
pos=buff+2+length;
|
|
memcpy((uchar*) father_key_pos,(uchar*) pos,(size_t) k_length);
|
|
bmove((uchar*) buff+2,(uchar*) pos+k_length,new_right_length);
|
|
}
|
|
else
|
|
{ /* Move keys -> buff */
|
|
|
|
bmove_upp((uchar*) buff+new_right_length,(uchar*) buff+right_length,
|
|
right_length-2);
|
|
length=new_right_length-right_length-k_length;
|
|
memcpy((uchar*) buff+2+length,father_key_pos,(size_t) k_length);
|
|
pos=curr_buff+new_left_length;
|
|
memcpy((uchar*) father_key_pos,(uchar*) pos,(size_t) k_length);
|
|
memcpy((uchar*) buff+2,(uchar*) pos+k_length,(size_t) length);
|
|
}
|
|
|
|
if (_mi_write_keypage(info,keyinfo,next_page,DFLT_INIT_HITS,info->buff) ||
|
|
_mi_write_keypage(info,keyinfo,father_page,DFLT_INIT_HITS,father_buff))
|
|
goto err;
|
|
DBUG_RETURN(0);
|
|
}
|
|
|
|
/* curr_buff[] and buff[] are full, lets split and make new nod */
|
|
|
|
extra_buff=info->buff+info->s->base.max_key_block_length;
|
|
new_left_length=new_right_length=2+nod_flag+(keys+1)/3*curr_keylength;
|
|
if (keys == 5) /* Too few keys to balance */
|
|
new_left_length-=curr_keylength;
|
|
extra_length=nod_flag+left_length+right_length-
|
|
new_left_length-new_right_length-curr_keylength;
|
|
DBUG_PRINT("info",("left_length: %d right_length: %d new_left_length: %d new_right_length: %d extra_length: %d",
|
|
left_length, right_length,
|
|
new_left_length, new_right_length,
|
|
extra_length));
|
|
mi_putint(curr_buff,new_left_length,nod_flag);
|
|
mi_putint(buff,new_right_length,nod_flag);
|
|
mi_putint(extra_buff,extra_length+2,nod_flag);
|
|
|
|
/* move first largest keys to new page */
|
|
pos=buff+right_length-extra_length;
|
|
memcpy((uchar*) extra_buff+2,pos,(size_t) extra_length);
|
|
/* Save new parting key */
|
|
memcpy(tmp_part_key, pos-k_length,k_length);
|
|
/* Make place for new keys */
|
|
bmove_upp((uchar*) buff+new_right_length,(uchar*) pos-k_length,
|
|
right_length-extra_length-k_length-2);
|
|
/* Copy keys from left page */
|
|
pos= curr_buff+new_left_length;
|
|
memcpy((uchar*) buff+2,(uchar*) pos+k_length,
|
|
(size_t) (length=left_length-new_left_length-k_length));
|
|
/* Copy old parting key */
|
|
memcpy((uchar*) buff+2+length,father_key_pos,(size_t) k_length);
|
|
|
|
/* Move new parting keys up to caller */
|
|
memcpy((uchar*) (right ? key : father_key_pos),pos,(size_t) k_length);
|
|
memcpy((uchar*) (right ? father_key_pos : key),tmp_part_key, k_length);
|
|
|
|
if ((new_pos=_mi_new(info,keyinfo,DFLT_INIT_HITS)) == HA_OFFSET_ERROR)
|
|
goto err;
|
|
_mi_kpointer(info,key+k_length,new_pos);
|
|
if (_mi_write_keypage(info,keyinfo,(right ? new_pos : next_page),
|
|
DFLT_INIT_HITS,info->buff) ||
|
|
_mi_write_keypage(info,keyinfo,(right ? next_page : new_pos),
|
|
DFLT_INIT_HITS,extra_buff))
|
|
goto err;
|
|
|
|
DBUG_RETURN(1); /* Middle key up */
|
|
|
|
err:
|
|
DBUG_RETURN(-1);
|
|
} /* _mi_balance_page */
|
|
|
|
/**********************************************************************
|
|
* Bulk insert code *
|
|
**********************************************************************/
|
|
|
|
typedef struct {
|
|
MI_INFO *info;
|
|
uint keynr;
|
|
} bulk_insert_param;
|
|
|
|
int _mi_ck_write_tree(register MI_INFO *info, uint keynr, uchar *key,
|
|
uint key_length)
|
|
{
|
|
int error;
|
|
DBUG_ENTER("_mi_ck_write_tree");
|
|
|
|
error= tree_insert(&info->bulk_insert[keynr], key,
|
|
key_length + info->s->rec_reflength,
|
|
info->bulk_insert[keynr].custom_arg) ? 0 : HA_ERR_OUT_OF_MEM ;
|
|
|
|
DBUG_RETURN(error);
|
|
} /* _mi_ck_write_tree */
|
|
|
|
|
|
/* typeof(_mi_keys_compare)=qsort_cmp2 */
|
|
|
|
static int keys_compare(bulk_insert_param *param, uchar *key1, uchar *key2)
|
|
{
|
|
uint not_used[2];
|
|
return ha_key_cmp(param->info->s->keyinfo[param->keynr].seg,
|
|
key1, key2, USE_WHOLE_KEY, SEARCH_SAME,
|
|
not_used);
|
|
}
|
|
|
|
|
|
static int keys_free(uchar *key, TREE_FREE mode, bulk_insert_param *param)
|
|
{
|
|
/*
|
|
Probably I can use info->lastkey here, but I'm not sure,
|
|
and to be safe I'd better use local lastkey.
|
|
*/
|
|
uchar lastkey[HA_MAX_KEY_BUFF];
|
|
uint keylen;
|
|
MI_KEYDEF *keyinfo;
|
|
|
|
switch (mode) {
|
|
case free_init:
|
|
if (param->info->s->concurrent_insert)
|
|
{
|
|
rw_wrlock(¶m->info->s->key_root_lock[param->keynr]);
|
|
param->info->s->keyinfo[param->keynr].version++;
|
|
}
|
|
return 0;
|
|
case free_free:
|
|
keyinfo=param->info->s->keyinfo+param->keynr;
|
|
keylen=_mi_keylength(keyinfo, key);
|
|
memcpy(lastkey, key, keylen);
|
|
return _mi_ck_write_btree(param->info,param->keynr,lastkey,
|
|
keylen - param->info->s->rec_reflength);
|
|
case free_end:
|
|
if (param->info->s->concurrent_insert)
|
|
rw_unlock(¶m->info->s->key_root_lock[param->keynr]);
|
|
return 0;
|
|
}
|
|
return -1;
|
|
}
|
|
|
|
|
|
int mi_init_bulk_insert(MI_INFO *info, ulong cache_size, ha_rows rows)
|
|
{
|
|
MYISAM_SHARE *share=info->s;
|
|
MI_KEYDEF *key=share->keyinfo;
|
|
bulk_insert_param *params;
|
|
uint i, num_keys, total_keylength;
|
|
ulonglong key_map;
|
|
DBUG_ENTER("_mi_init_bulk_insert");
|
|
DBUG_PRINT("enter",("cache_size: %lu", cache_size));
|
|
|
|
DBUG_ASSERT(!info->bulk_insert &&
|
|
(!rows || rows >= MI_MIN_ROWS_TO_USE_BULK_INSERT));
|
|
|
|
mi_clear_all_keys_active(key_map);
|
|
for (i=total_keylength=num_keys=0 ; i < share->base.keys ; i++)
|
|
{
|
|
if (! (key[i].flag & HA_NOSAME) && (share->base.auto_key != i + 1) &&
|
|
mi_is_key_active(share->state.key_map, i))
|
|
{
|
|
num_keys++;
|
|
mi_set_key_active(key_map, i);
|
|
total_keylength+=key[i].maxlength+TREE_ELEMENT_EXTRA_SIZE;
|
|
}
|
|
}
|
|
|
|
if (num_keys==0 ||
|
|
num_keys * MI_MIN_SIZE_BULK_INSERT_TREE > cache_size)
|
|
DBUG_RETURN(0);
|
|
|
|
if (rows && rows*total_keylength < cache_size)
|
|
cache_size= (ulong)rows;
|
|
else
|
|
cache_size/=total_keylength*16;
|
|
|
|
info->bulk_insert=(TREE *)
|
|
my_malloc((sizeof(TREE)*share->base.keys+
|
|
sizeof(bulk_insert_param)*num_keys),MYF(0));
|
|
|
|
if (!info->bulk_insert)
|
|
DBUG_RETURN(HA_ERR_OUT_OF_MEM);
|
|
|
|
params=(bulk_insert_param *)(info->bulk_insert+share->base.keys);
|
|
for (i=0 ; i < share->base.keys ; i++)
|
|
{
|
|
if (mi_is_key_active(key_map, i))
|
|
{
|
|
params->info=info;
|
|
params->keynr=i;
|
|
/* Only allocate a 16'th of the buffer at a time */
|
|
init_tree(&info->bulk_insert[i],
|
|
cache_size * key[i].maxlength,
|
|
cache_size * key[i].maxlength, 0,
|
|
(qsort_cmp2)keys_compare, 0,
|
|
(tree_element_free) keys_free, (void *)params++);
|
|
}
|
|
else
|
|
info->bulk_insert[i].root=0;
|
|
}
|
|
|
|
DBUG_RETURN(0);
|
|
}
|
|
|
|
void mi_flush_bulk_insert(MI_INFO *info, uint inx)
|
|
{
|
|
if (info->bulk_insert)
|
|
{
|
|
if (is_tree_inited(&info->bulk_insert[inx]))
|
|
reset_tree(&info->bulk_insert[inx]);
|
|
}
|
|
}
|
|
|
|
void mi_end_bulk_insert(MI_INFO *info)
|
|
{
|
|
if (info->bulk_insert)
|
|
{
|
|
uint i;
|
|
for (i=0 ; i < info->s->base.keys ; i++)
|
|
{
|
|
if (is_tree_inited(& info->bulk_insert[i]))
|
|
{
|
|
delete_tree(& info->bulk_insert[i]);
|
|
}
|
|
}
|
|
my_free((void *)info->bulk_insert, MYF(0));
|
|
info->bulk_insert=0;
|
|
}
|
|
}
|