mirror of
https://github.com/MariaDB/server.git
synced 2025-01-24 15:54:37 +01:00
0f3d4b2f76
Fixed bug in Aria when replacing short keys with long keys and a key tree both overflow and underflow at same time. Fixed several bugs when generating recovery logs when using RGQ with replacing long keys with short keys and vice versa. Lots of new DBUG_ASSERT()'s Added more information to recovery log to make it easier to know from where log entry orginated. Introduced MARIA_PAGE->org_size that tells what the size of the page was in last log entry. This allows us to find out if all key changes for index page was logged. Small code cleanups: - Introduced _ma_log_key_changes() to log crc of key page changes - Added share->max_index_block_size as max size of data one can put in key block (block_size - KEYPAGE_CHECKSUM_SIZE) This will later simplify adding a directory to index pages. - Write page number instead of page postition to DBUG log mysql-test/lib/v1/mysql-test-run.pl: Use --general-log instead of --log to disable warning when using RQG sql/mysqld.cc: If we have already sent ok to client when we get an error, log this to stderr Don't disable option --log-output if CSV engine is not supported. storage/maria/ha_maria.cc: Log queries to recovery log also in LOCK TABLES storage/maria/ma_check.c: If param->max_trid is set, use this value instead of max_trid_in_system(). This is used by recovery to set max_trid to max seen trid so far. keyinfo->block_length - KEYPAGE_CHECKSUM_SIZE -> max_index_block_size (Style optimization) storage/maria/ma_delete.c: Mark tables crashed early Write page number instead of page position to debug log. Added parameter to ma_log_delete() and ma_log_prefix() that is logged so that we can find where wrong log entries where generated. Fixed bug where a page was not proplerly written when same key tree had both an overflow and underflow when deleting a key. keyinfo->block_length - KEYPAGE_CHECKSUM_SIZE => max_index_block_size (Style optimization) ma_log_delete() now has extra parameter of how many bytes from end of page should be appended to log for page (for page overflows) storage/maria/ma_key_recover.c: Added extra parameter to ma_log_prefix() to indicate what caused log entry. Update MARIA_PAGE->org_size when logging info about page. Much more DBUG_ASSERT()'s. Fix some bugs in maria_log_add() to handle page overflows. Added _ma_log_key_changes() to log crc of key page changes. If EXTRA_STORE_FULL_PAGE_IN_KEY_CHANGES is defines, log the resulting pages to log so one can trivally see how the resulting page should have looked like (for errors in CRC values) storage/maria/ma_key_recover.h: Added _ma_log_key_changes() which is only called if EXTRA_DEBUG_KEY_CHANGES is defined. Updated function prototypes. storage/maria/ma_loghandler.h: Added more values to en_key_debug, to get more exact location where things went wrong when logging to recovery log. storage/maria/ma_open.c: Initialize share->max_index_block_size storage/maria/ma_page.c: Added updating and testing of MARIA_PAGE->org_size Write page number instead of page postition to DBUG log Generate error if we read page with wrong data. Removed wrong assert: key_del_current != share->state.key_del. Simplify _ma_log_compact_keypage() storage/maria/ma_recovery.c: Set param.max_trid to max seen trid before running repair table (used for alter table to create index) storage/maria/ma_rt_key.c: Update call to _ma_log_delete() storage/maria/ma_rt_split.c: Use _ma_log_key_changes() Update MARIA_PAGE->org_size storage/maria/ma_unique.c: Remove casts storage/maria/ma_write.c: keyinfo->block_length - KEYPAGE_CHECKSUM_SIZE => share->max_index_block_length. Updated calls to _ma_log_prefix() Changed code to use _ma_log_key_changes() Update ma_page->org_size Fixed bug in _ma_log_split() for pages that overflow Added KEY_OP_DEBUG logging to functions Log KEYPAGE_FLAG in all log entries storage/maria/maria_def.h: Added SHARE->max_index_block_size Added MARIA_PAGE->org_size storage/maria/trnman.c: Reset flags for new transaction.
619 lines
20 KiB
C
619 lines
20 KiB
C
/* Copyright (C) 2006 MySQL AB & MySQL Finland AB & TCX DataKonsult 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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/*
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Read and write key blocks
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The basic structure of a key block is as follows:
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LSN 7 (LSN_STORE_SIZE); Log number for last change;
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Only for transactional pages
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PACK_TRANSID 6 (TRANSID_SIZE); Relative transid to pack page transid's
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Only for transactional pages
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KEYNR 1 (KEYPAGE_KEYID_SIZE) Which index this page belongs to
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FLAG 1 (KEYPAGE_FLAG_SIZE) Flags for page
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PAGE_SIZE 2 (KEYPAGE_USED_SIZE) How much of the page is used.
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high-byte-first
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The flag is a combination of the following values:
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KEYPAGE_FLAG_ISNOD Page is a node
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KEYPAGE_FLAG_HAS_TRANSID There may be a transid on the page.
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After this we store key data, either packed or not packed, directly
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after each other. If the page is a node flag, there is a pointer to
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the next key page at page start and after each key.
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At end of page the last KEYPAGE_CHECKSUM_SIZE bytes are reserved for a
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page checksum.
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*/
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#include "maria_def.h"
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#include "trnman.h"
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#include "ma_key_recover.h"
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/**
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Fill MARIA_PAGE structure for usage with _ma_write_keypage
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*/
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void _ma_page_setup(MARIA_PAGE *page, MARIA_HA *info,
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const MARIA_KEYDEF *keyinfo, my_off_t pos,
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uchar *buff)
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{
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MARIA_SHARE *share= info->s;
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page->info= info;
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page->keyinfo= keyinfo;
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page->buff= buff;
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page->pos= pos;
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page->size= _ma_get_page_used(share, buff);
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page->org_size= page->size;
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page->flag= _ma_get_keypage_flag(share, buff);
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page->node= ((page->flag & KEYPAGE_FLAG_ISNOD) ?
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share->base.key_reflength : 0);
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}
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#ifdef IDENTICAL_PAGES_AFTER_RECOVERY
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void page_cleanup(MARIA_SHARE *share, MARIA_PAGE *page)
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{
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uint length= page->size;
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DBUG_ASSERT(length <= share->max_index_block_size);
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bzero(page->buff + length, share->block_size - length);
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}
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#endif
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/**
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Fetch a key-page in memory
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@fn _ma_fetch_keypage()
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@param page Fill this struct with information about read page
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@param info Maria handler
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@param keyinfo Key definition for used key
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@param pos Position for page (in bytes)
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@param lock Lock type for page
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@param level Importance of page; Priority for page cache
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@param buff Buffer to use for page
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@param return_buffer Set to 1 if we want to force useage of buff
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@return
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@retval 0 ok
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@retval 1 error
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*/
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my_bool _ma_fetch_keypage(MARIA_PAGE *page, MARIA_HA *info,
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const MARIA_KEYDEF *keyinfo,
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my_off_t pos, enum pagecache_page_lock lock,
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int level, uchar *buff,
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my_bool return_buffer __attribute__ ((unused)))
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{
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uchar *tmp;
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MARIA_PINNED_PAGE page_link;
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MARIA_SHARE *share= info->s;
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uint block_size= share->block_size;
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DBUG_ENTER("_ma_fetch_keypage");
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DBUG_PRINT("enter",("page: %lu", (ulong) (pos / block_size)));
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tmp= pagecache_read(share->pagecache, &share->kfile,
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(pgcache_page_no_t) (pos / block_size), level, buff,
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share->page_type, lock, &page_link.link);
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if (lock != PAGECACHE_LOCK_LEFT_UNLOCKED)
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{
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DBUG_ASSERT(lock == PAGECACHE_LOCK_WRITE || PAGECACHE_LOCK_READ);
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page_link.unlock= (lock == PAGECACHE_LOCK_WRITE ?
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PAGECACHE_LOCK_WRITE_UNLOCK :
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PAGECACHE_LOCK_READ_UNLOCK);
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page_link.changed= 0;
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push_dynamic(&info->pinned_pages, (void*) &page_link);
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page->link_offset= info->pinned_pages.elements-1;
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}
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if (tmp == info->buff)
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info->keyread_buff_used=1;
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else if (!tmp)
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{
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DBUG_PRINT("error",("Got errno: %d from pagecache_read",my_errno));
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info->last_keypage=HA_OFFSET_ERROR;
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maria_print_error(share, HA_ERR_CRASHED);
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my_errno=HA_ERR_CRASHED;
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DBUG_RETURN(1);
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}
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info->last_keypage= pos;
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/*
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Setup page structure to make pages easy to use
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This is same as page_fill_info, but here inlined as this si used
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so often.
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*/
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page->info= info;
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page->keyinfo= keyinfo;
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page->buff= tmp;
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page->pos= pos;
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page->size= _ma_get_page_used(share, tmp);
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page->org_size= page->size; /* For debugging */
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page->flag= _ma_get_keypage_flag(share, tmp);
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page->node= ((page->flag & KEYPAGE_FLAG_ISNOD) ?
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share->base.key_reflength : 0);
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#ifdef EXTRA_DEBUG
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{
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uint page_size= page->size;
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if (page_size < 4 || page_size > share->max_index_block_size ||
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_ma_get_keynr(share, tmp) != keyinfo->key_nr)
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{
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DBUG_PRINT("error",("page %lu had wrong page length: %u keynr: %u",
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(ulong) (pos / block_size), page_size,
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_ma_get_keynr(share, tmp)));
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DBUG_DUMP("page", tmp, page_size);
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info->last_keypage = HA_OFFSET_ERROR;
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maria_print_error(share, HA_ERR_CRASHED);
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my_errno= HA_ERR_CRASHED;
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DBUG_RETURN(1);
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}
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}
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#endif
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DBUG_RETURN(0);
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} /* _ma_fetch_keypage */
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/* Write a key-page on disk */
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my_bool _ma_write_keypage(MARIA_PAGE *page, enum pagecache_page_lock lock,
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int level)
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{
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MARIA_SHARE *share= page->info->s;
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uint block_size= share->block_size;
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uchar *buff= page->buff;
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my_bool res;
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MARIA_PINNED_PAGE page_link;
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DBUG_ENTER("_ma_write_keypage");
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/*
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The following ensures that for transactional tables we have logged
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all changes that changes the page size (as the logging code sets
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page->org_size)
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*/
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DBUG_ASSERT(!share->now_transactional || page->size == page->org_size);
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#ifdef EXTRA_DEBUG /* Safety check */
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{
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uint page_length, nod_flag;
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page_length= _ma_get_page_used(share, buff);
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nod_flag= _ma_test_if_nod(share, buff);
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DBUG_ASSERT(page->size == page_length);
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DBUG_ASSERT(page->flag == _ma_get_keypage_flag(share, buff));
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if (page->pos < share->base.keystart ||
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page->pos+block_size > share->state.state.key_file_length ||
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(page->pos & (maria_block_size-1)))
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{
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DBUG_PRINT("error",("Trying to write inside key status region: "
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"key_start: %lu length: %lu page_pos: %lu",
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(long) share->base.keystart,
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(long) share->state.state.key_file_length,
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(long) page->pos));
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my_errno=EINVAL;
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DBUG_ASSERT(0);
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DBUG_RETURN(1);
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}
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DBUG_PRINT("page",("write page at: %lu",(ulong) (page->pos / block_size)));
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DBUG_DUMP("buff", buff, page_length);
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DBUG_ASSERT(page_length >= share->keypage_header + nod_flag +
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page->keyinfo->minlength || maria_in_recovery);
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}
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#endif
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/* Verify that keynr is correct */
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DBUG_ASSERT(_ma_get_keynr(share, buff) == page->keyinfo->key_nr);
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#if defined(EXTRA_DEBUG) && defined(HAVE_valgrind) && defined(NOT_ANYMORE)
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{
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/* This is here to catch uninitialized bytes */
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uint length= page->size;
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ulong crc= my_checksum(0, buff, length);
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int4store(buff + block_size - KEYPAGE_CHECKSUM_SIZE, crc);
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}
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#endif
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page_cleanup(share, page);
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res= pagecache_write(share->pagecache,
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&share->kfile,
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(pgcache_page_no_t) (page->pos / block_size),
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level, buff, share->page_type,
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lock,
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lock == PAGECACHE_LOCK_LEFT_WRITELOCKED ?
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PAGECACHE_PIN_LEFT_PINNED :
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(lock == PAGECACHE_LOCK_WRITE_UNLOCK ?
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PAGECACHE_UNPIN : PAGECACHE_PIN),
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PAGECACHE_WRITE_DELAY, &page_link.link,
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LSN_IMPOSSIBLE);
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if (lock == PAGECACHE_LOCK_WRITE)
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{
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/* It was not locked before, we have to unlock it when we unpin pages */
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page_link.unlock= PAGECACHE_LOCK_WRITE_UNLOCK;
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page_link.changed= 1;
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push_dynamic(&page->info->pinned_pages, (void*) &page_link);
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}
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DBUG_RETURN(res);
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}
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/**
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@brief Put page in free list
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@fn _ma_dispose()
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@param info Maria handle
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@param pos Address to page
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@param page_not_read 1 if page has not yet been read
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@note
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The page at 'pos' must have been read with a write lock.
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This function does logging (unlike _ma_new()).
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@return
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@retval 0 ok
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@retval 1 error
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*/
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int _ma_dispose(register MARIA_HA *info, my_off_t pos, my_bool page_not_read)
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{
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my_off_t old_link;
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uchar buff[MAX_KEYPAGE_HEADER_SIZE+ 8 + 2];
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ulonglong page_no;
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MARIA_SHARE *share= info->s;
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MARIA_PINNED_PAGE page_link;
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uint block_size= share->block_size;
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int result= 0;
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enum pagecache_page_lock lock_method;
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enum pagecache_page_pin pin_method;
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DBUG_ENTER("_ma_dispose");
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DBUG_PRINT("enter",("page: %lu", (ulong) (pos / block_size)));
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DBUG_ASSERT(pos % block_size == 0);
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(void) _ma_lock_key_del(info, 0);
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old_link= share->key_del_current;
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share->key_del_current= pos;
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page_no= pos / block_size;
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bzero(buff, share->keypage_header);
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_ma_store_keynr(share, buff, (uchar) MARIA_DELETE_KEY_NR);
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_ma_store_page_used(share, buff, share->keypage_header + 8);
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mi_sizestore(buff + share->keypage_header, old_link);
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share->state.changed|= STATE_NOT_SORTED_PAGES;
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if (share->now_transactional)
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{
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LSN lsn;
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uchar log_data[FILEID_STORE_SIZE + PAGE_STORE_SIZE * 2];
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LEX_CUSTRING log_array[TRANSLOG_INTERNAL_PARTS + 1];
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my_off_t page;
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/* Store address of deleted page */
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page_store(log_data + FILEID_STORE_SIZE, page_no);
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/* Store link to next unused page (the link that is written to page) */
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page= (old_link == HA_OFFSET_ERROR ? IMPOSSIBLE_PAGE_NO :
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old_link / block_size);
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page_store(log_data + FILEID_STORE_SIZE + PAGE_STORE_SIZE, page);
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log_array[TRANSLOG_INTERNAL_PARTS + 0].str= log_data;
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log_array[TRANSLOG_INTERNAL_PARTS + 0].length= sizeof(log_data);
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if (translog_write_record(&lsn, LOGREC_REDO_INDEX_FREE_PAGE,
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info->trn, info,
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(translog_size_t) sizeof(log_data),
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TRANSLOG_INTERNAL_PARTS + 1, log_array,
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log_data, NULL))
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result= 1;
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}
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if (page_not_read)
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{
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lock_method= PAGECACHE_LOCK_WRITE;
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pin_method= PAGECACHE_PIN;
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}
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else
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{
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lock_method= PAGECACHE_LOCK_LEFT_WRITELOCKED;
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pin_method= PAGECACHE_PIN_LEFT_PINNED;
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}
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if (pagecache_write_part(share->pagecache,
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&share->kfile, (pgcache_page_no_t) page_no,
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PAGECACHE_PRIORITY_LOW, buff,
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share->page_type,
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lock_method, pin_method,
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PAGECACHE_WRITE_DELAY, &page_link.link,
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LSN_IMPOSSIBLE,
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0, share->keypage_header + 8))
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result= 1;
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#ifdef IDENTICAL_PAGES_AFTER_RECOVERY
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{
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uchar *page_buff= pagecache_block_link_to_buffer(page_link.link);
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bzero(page_buff + share->keypage_header + 8,
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block_size - share->keypage_header - 8 - KEYPAGE_CHECKSUM_SIZE);
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}
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#endif
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if (page_not_read)
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{
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/* It was not locked before, we have to unlock it when we unpin pages */
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page_link.unlock= PAGECACHE_LOCK_WRITE_UNLOCK;
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page_link.changed= 1;
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push_dynamic(&info->pinned_pages, (void*) &page_link);
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}
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DBUG_RETURN(result);
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} /* _ma_dispose */
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/**
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@brief Get address for free page to use
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@fn _ma_new()
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@param info Maria handle
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@param level Type of key block (caching priority for pagecache)
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@param page_link Pointer to page in page cache if read. One can
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check if this is used by checking if
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page_link->changed != 0
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@note Logging of this is left to the caller (so that the "new"ing and the
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first changes done to this new page can be logged as one single entry - one
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single _ma_log_new()) call).
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@return
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HA_OFFSET_ERROR File is full or page read error
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# Page address to use
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*/
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my_off_t _ma_new(register MARIA_HA *info, int level,
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MARIA_PINNED_PAGE **page_link)
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{
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my_off_t pos;
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MARIA_SHARE *share= info->s;
|
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uint block_size= share->block_size;
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DBUG_ENTER("_ma_new");
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||
|
||
if (_ma_lock_key_del(info, 1))
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{
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pthread_mutex_lock(&share->intern_lock);
|
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pos= share->state.state.key_file_length;
|
||
if (pos >= share->base.max_key_file_length - block_size)
|
||
{
|
||
my_errno=HA_ERR_INDEX_FILE_FULL;
|
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pthread_mutex_unlock(&share->intern_lock);
|
||
DBUG_RETURN(HA_OFFSET_ERROR);
|
||
}
|
||
share->state.state.key_file_length+= block_size;
|
||
/* Following is for not transactional tables */
|
||
info->state->key_file_length= share->state.state.key_file_length;
|
||
pthread_mutex_unlock(&share->intern_lock);
|
||
(*page_link)->changed= 0;
|
||
(*page_link)->write_lock= PAGECACHE_LOCK_WRITE;
|
||
}
|
||
else
|
||
{
|
||
uchar *buff;
|
||
pos= share->key_del_current; /* Protected */
|
||
DBUG_ASSERT(share->pagecache->block_size == block_size);
|
||
if (!(buff= pagecache_read(share->pagecache,
|
||
&share->kfile,
|
||
(pgcache_page_no_t) (pos / block_size), level,
|
||
0, share->page_type,
|
||
PAGECACHE_LOCK_WRITE, &(*page_link)->link)))
|
||
pos= HA_OFFSET_ERROR;
|
||
else
|
||
{
|
||
/*
|
||
Next deleted page's number is in the header of the present page
|
||
(single linked list):
|
||
*/
|
||
#ifndef DBUG_OFF
|
||
my_off_t key_del_current;
|
||
#endif
|
||
share->key_del_current= mi_sizekorr(buff+share->keypage_header);
|
||
#ifndef DBUG_OFF
|
||
key_del_current= share->key_del_current;
|
||
DBUG_ASSERT((key_del_current != 0) &&
|
||
((key_del_current == HA_OFFSET_ERROR) ||
|
||
(key_del_current <=
|
||
(share->state.state.key_file_length - block_size))));
|
||
#endif
|
||
}
|
||
|
||
(*page_link)->unlock= PAGECACHE_LOCK_WRITE_UNLOCK;
|
||
(*page_link)->write_lock= PAGECACHE_LOCK_WRITE;
|
||
/*
|
||
We have to mark it changed as _ma_flush_pending_blocks() uses
|
||
'changed' to know if we used the page cache or not
|
||
*/
|
||
(*page_link)->changed= 1;
|
||
push_dynamic(&info->pinned_pages, (void*) *page_link);
|
||
*page_link= dynamic_element(&info->pinned_pages,
|
||
info->pinned_pages.elements-1,
|
||
MARIA_PINNED_PAGE *);
|
||
}
|
||
share->state.changed|= STATE_NOT_SORTED_PAGES;
|
||
DBUG_PRINT("exit",("Pos: %ld",(long) pos));
|
||
DBUG_RETURN(pos);
|
||
} /* _ma_new */
|
||
|
||
|
||
/**
|
||
Log compactation of a index page
|
||
*/
|
||
|
||
static my_bool _ma_log_compact_keypage(MARIA_PAGE *ma_page,
|
||
TrID min_read_from)
|
||
{
|
||
LSN lsn;
|
||
uchar log_data[FILEID_STORE_SIZE + PAGE_STORE_SIZE + 1 + 7 + TRANSID_SIZE];
|
||
uchar *log_pos;
|
||
LEX_CUSTRING log_array[TRANSLOG_INTERNAL_PARTS + 1];
|
||
MARIA_HA *info= ma_page->info;
|
||
MARIA_SHARE *share= info->s;
|
||
uint translog_parts, extra_length;
|
||
my_off_t page= ma_page->pos;
|
||
DBUG_ENTER("_ma_log_compact_keypage");
|
||
DBUG_PRINT("enter", ("page: %lu", (ulong) (page / share->block_size)));
|
||
|
||
/* Store address of new root page */
|
||
page/= share->block_size;
|
||
page_store(log_data + FILEID_STORE_SIZE, page);
|
||
|
||
log_pos= log_data + FILEID_STORE_SIZE + PAGE_STORE_SIZE;
|
||
|
||
log_pos[0]= KEY_OP_COMPACT_PAGE;
|
||
transid_store(log_pos + 1, min_read_from);
|
||
log_pos+= 1 + TRANSID_SIZE;
|
||
|
||
log_array[TRANSLOG_INTERNAL_PARTS + 0].str= log_data;
|
||
log_array[TRANSLOG_INTERNAL_PARTS + 0].length= (uint) (log_pos -
|
||
log_data);
|
||
translog_parts= 1;
|
||
extra_length= 0;
|
||
|
||
_ma_log_key_changes(ma_page,
|
||
log_array + TRANSLOG_INTERNAL_PARTS + translog_parts,
|
||
log_pos, &extra_length, &translog_parts);
|
||
/* Remember new page length for future log entires for same page */
|
||
ma_page->org_size= ma_page->size;
|
||
|
||
if (translog_write_record(&lsn, LOGREC_REDO_INDEX,
|
||
info->trn, info,
|
||
log_array[TRANSLOG_INTERNAL_PARTS +
|
||
0].length + extra_length,
|
||
TRANSLOG_INTERNAL_PARTS + translog_parts,
|
||
log_array, log_data, NULL))
|
||
DBUG_RETURN(1);
|
||
DBUG_RETURN(0);
|
||
}
|
||
|
||
|
||
/**
|
||
Remove all transaction id's less than given one from a key page
|
||
|
||
@fn _ma_compact_keypage()
|
||
@param keyinfo Key handler
|
||
@param page_pos Page position on disk
|
||
@param page Buffer for page
|
||
@param min_read_from Remove all trids from page less than this
|
||
|
||
@retval 0 Ok
|
||
<20>retval 1 Error; my_errno contains the error
|
||
*/
|
||
|
||
my_bool _ma_compact_keypage(MARIA_PAGE *ma_page, TrID min_read_from)
|
||
{
|
||
MARIA_HA *info= ma_page->info;
|
||
MARIA_SHARE *share= info->s;
|
||
MARIA_KEY key;
|
||
uchar *page, *endpos, *start_of_empty_space;
|
||
uint page_flag, nod_flag, saved_space;
|
||
my_bool page_has_transid;
|
||
DBUG_ENTER("_ma_compact_keypage");
|
||
|
||
page_flag= ma_page->flag;
|
||
if (!(page_flag & KEYPAGE_FLAG_HAS_TRANSID))
|
||
DBUG_RETURN(0); /* No transaction id on page */
|
||
|
||
nod_flag= ma_page->node;
|
||
page= ma_page->buff;
|
||
endpos= page + ma_page->size;
|
||
key.data= info->lastkey_buff;
|
||
key.keyinfo= (MARIA_KEYDEF*) ma_page->keyinfo;
|
||
|
||
page_has_transid= 0;
|
||
page+= share->keypage_header + nod_flag;
|
||
key.data[0]= 0; /* safety */
|
||
start_of_empty_space= 0;
|
||
saved_space= 0;
|
||
do
|
||
{
|
||
if (!(page= (*ma_page->keyinfo->skip_key)(&key, 0, 0, page)))
|
||
{
|
||
DBUG_PRINT("error",("Couldn't find last key: page_pos: 0x%lx",
|
||
(long) page));
|
||
maria_print_error(share, HA_ERR_CRASHED);
|
||
my_errno=HA_ERR_CRASHED;
|
||
DBUG_RETURN(1);
|
||
}
|
||
if (key_has_transid(page-1))
|
||
{
|
||
uint transid_length;
|
||
transid_length= transid_packed_length(page);
|
||
|
||
if (min_read_from == ~(TrID) 0 ||
|
||
min_read_from < transid_get_packed(share, page))
|
||
{
|
||
page[-1]&= 254; /* Remove transid marker */
|
||
transid_length= transid_packed_length(page);
|
||
if (start_of_empty_space)
|
||
{
|
||
/* Move block before the transid up in page */
|
||
uint copy_length= (uint) (page - start_of_empty_space) - saved_space;
|
||
memmove(start_of_empty_space, start_of_empty_space + saved_space,
|
||
copy_length);
|
||
start_of_empty_space+= copy_length;
|
||
}
|
||
else
|
||
start_of_empty_space= page;
|
||
saved_space+= transid_length;
|
||
}
|
||
else
|
||
page_has_transid= 1; /* At least one id left */
|
||
page+= transid_length;
|
||
}
|
||
page+= nod_flag;
|
||
} while (page < endpos);
|
||
|
||
DBUG_ASSERT(page == endpos);
|
||
|
||
if (start_of_empty_space)
|
||
{
|
||
/*
|
||
Move last block down
|
||
This is always true if any transid was removed
|
||
*/
|
||
uint copy_length= (uint) (endpos - start_of_empty_space) - saved_space;
|
||
|
||
if (copy_length)
|
||
memmove(start_of_empty_space, start_of_empty_space + saved_space,
|
||
copy_length);
|
||
ma_page->size= (uint) (start_of_empty_space + copy_length - ma_page->buff);
|
||
page_store_size(share, ma_page);
|
||
}
|
||
|
||
if (!page_has_transid)
|
||
{
|
||
ma_page->flag&= ~KEYPAGE_FLAG_HAS_TRANSID;
|
||
_ma_store_keypage_flag(share, ma_page->buff, ma_page->flag);
|
||
/* Clear packed transid (in case of zerofill) */
|
||
bzero(ma_page->buff + LSN_STORE_SIZE, TRANSID_SIZE);
|
||
}
|
||
|
||
if (share->now_transactional)
|
||
{
|
||
if (_ma_log_compact_keypage(ma_page, min_read_from))
|
||
DBUG_RETURN(1);
|
||
}
|
||
DBUG_RETURN(0);
|
||
}
|