mariadb/storage/maria/ma_range.c
unknown 2f6f08ed88 Added MARIA_SHARE *share to a lot of places to make code simpler
Changed info->s -> share to get more efficent code
Updated arguments to page accessor functions to use MARIA_SHARE * instead of MARIA_HA *.
Tested running tests in quick mode (no balance page on insert and only when critical on delete)
Fixed bug in underflow handling in quick mode
Fixed bug in log handler where it accessed not initialized variable
Fixed bug in log handler where it didn't free mutex in unlikely error condition
Removed double write of page in case of of some underflow conditions
Added DBUG_PRINT in safemutex lock/unlock


dbug/dbug.c:
  Compile without SAFE_MUTEX (to be able to use DBUG_PRINT in safe_mutex code)
  Use calls to get/set my_thread_var->dbug. (Make dbug independent of compile time options for mysys)
include/my_pthread.h:
  Added prototypes for my_thread_var_get_dbug() & my_thread_var_set_dbug()
mysql-test/lib/mtr_report.pl:
  Don't check warnings in log files if we are using --extern
mysys/my_thr_init.c:
  Added my_thread_var_get_dbug() & my_thread_var_set_dbug()
mysys/thr_mutex.c:
  Added DBUG printing of addresses to mutex for lock/unlock
storage/maria/ma_blockrec.c:
  Fixed comment
storage/maria/ma_check.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_close.c:
  Indentation fixes
storage/maria/ma_create.c:
  Calculate min_key_length correctly
storage/maria/ma_dbug.c:
  Indentation fixes
storage/maria/ma_delete.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
  Removed some writing of key pages that underflow (will be written by caller)
  Fixed crashing bug in underflow handling when using quick mode
storage/maria/ma_delete_all.c:
  Indentation fixes
storage/maria/ma_dynrec.c:
  Indentation fixes
storage/maria/ma_extra.c:
  Fixed indentation
  Removed old useless code
  Reset share->changed if we have written state
storage/maria/ma_ft_update.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_info.c:
  Indentation fixes
storage/maria/ma_key_recover.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_locking.c:
  Indentation fixes
storage/maria/ma_loghandler.c:
  Removed wrapper functions translog_mutex_lock and translog_mutex_unlock (safemutex now does same kind of printing)
  Renamed LOGREC_REDO_INSERT_ROW_BLOB to LOGREC_REDO_INSERT_NOT_USED to mark it free
  Fixed some DBUG_PRINT to ensure that convert-dbug-for-diff works
  Fixed bug in translog_flush() that caused log to stop syncing to disk
  Added missing mutex_unlock in case of error
storage/maria/ma_loghandler.h:
  Renamed LOGREC_REDO_INSERT_ROW_BLOB to LOGREC_REDO_INSERT_NOT_USED to mark it free
storage/maria/ma_open.c:
  Indentation fixes
storage/maria/ma_packrec.c:
  Indentation fixes
storage/maria/ma_page.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
  Added check that we never write a key page without content (except in recovery where a key page may temporary be without content)
storage/maria/ma_preload.c:
  Updated arguments to page accessor functions
storage/maria/ma_range.c:
  Updated arguments to page accessor functions
storage/maria/ma_rkey.c:
  Indentation fixes
storage/maria/ma_rprev.c:
  Indentation fixes
storage/maria/ma_rt_index.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_rt_index.h:
  Updated arguments to page accessor functions
storage/maria/ma_rt_key.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_rt_mbr.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_rt_split.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_search.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/ma_sort.c:
  Indentation fixes
storage/maria/ma_statrec.c:
  Indentation fixes
storage/maria/ma_test1.c:
  Added extra undo test
  Flush also keys in -u1, to ensure that the full log is flushed
storage/maria/ma_test2.c:
  Added extra undo test
  Flush also keys in -u1, to ensure that the full log is flushed
storage/maria/ma_test_recovery.expected:
  Updated results
storage/maria/ma_test_recovery:
  Added extra undo test
storage/maria/ma_update.c:
  Indentation fixes
storage/maria/ma_write.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
  Prepare for quick mode for insert (don't balance page)
storage/maria/maria_chk.c:
  Added MARIA_SHARE *share to a lot of places to make code simpler
  info->s -> share
  Updated arguments to page accessor functions
storage/maria/maria_def.h:
  Updated arguments to page accessor functions
2007-12-10 02:32:00 +02:00

297 lines
9.9 KiB
C

/* Copyright (C) 2006 MySQL AB & MySQL Finland AB & TCX DataKonsult AB
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; version 2 of the License.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */
/*
Gives a approximated number of how many records there is between two keys.
Used when optimizing querries.
*/
#include "maria_def.h"
#include "ma_rt_index.h"
static ha_rows _ma_record_pos(MARIA_HA *,const uchar *, key_part_map,
enum ha_rkey_function);
static double _ma_search_pos(MARIA_HA *, MARIA_KEYDEF *, uchar *,
uint, uint, my_off_t);
static uint _ma_keynr(MARIA_HA *, MARIA_KEYDEF *, uchar *, uchar *, uint *);
/**
@brief Estimate how many records there is in a given range
@param info MARIA handler
@param inx Index to use
@param min_key Min key. Is = 0 if no min range
@param max_key Max key. Is = 0 if no max range
@note
We should ONLY return 0 if there is no rows in range
@return Estimated number of rows or error
@retval HA_POS_ERROR error (or we can't estimate number of rows)
@retval number Estimated number of rows
*/
ha_rows maria_records_in_range(MARIA_HA *info, int inx, key_range *min_key,
key_range *max_key)
{
ha_rows start_pos,end_pos,res;
DBUG_ENTER("maria_records_in_range");
if ((inx = _ma_check_index(info,inx)) < 0)
DBUG_RETURN(HA_POS_ERROR);
if (fast_ma_readinfo(info))
DBUG_RETURN(HA_POS_ERROR);
info->update&= (HA_STATE_CHANGED+HA_STATE_ROW_CHANGED);
if (info->s->concurrent_insert)
rw_rdlock(&info->s->key_root_lock[inx]);
switch(info->s->keyinfo[inx].key_alg){
#ifdef HAVE_RTREE_KEYS
case HA_KEY_ALG_RTREE:
{
uchar *key_buff;
uint start_key_len;
/*
The problem is that the optimizer doesn't support
RTree keys properly at the moment.
Hope this will be fixed some day.
But now NULL in the min_key means that we
didn't make the task for the RTree key
and expect BTree functionality from it.
As it's not able to handle such request
we return the error.
*/
if (!min_key)
{
res= HA_POS_ERROR;
break;
}
key_buff= info->lastkey+info->s->base.max_key_length;
start_key_len= _ma_pack_key(info,inx, key_buff,
min_key->key, min_key->keypart_map,
(HA_KEYSEG**) 0);
res= maria_rtree_estimate(info, inx, key_buff, start_key_len,
maria_read_vec[min_key->flag]);
res= res ? res : 1; /* Don't return 0 */
break;
}
#endif
case HA_KEY_ALG_BTREE:
default:
start_pos= (min_key ?
_ma_record_pos(info, min_key->key, min_key->keypart_map,
min_key->flag) :
(ha_rows) 0);
end_pos= (max_key ?
_ma_record_pos(info, max_key->key, max_key->keypart_map,
max_key->flag) :
info->state->records + (ha_rows) 1);
res= (end_pos < start_pos ? (ha_rows) 0 :
(end_pos == start_pos ? (ha_rows) 1 : end_pos-start_pos));
if (start_pos == HA_POS_ERROR || end_pos == HA_POS_ERROR)
res=HA_POS_ERROR;
}
if (info->s->concurrent_insert)
rw_unlock(&info->s->key_root_lock[inx]);
fast_ma_writeinfo(info);
/**
@todo LOCK
If res==0 (no rows), if we need to guarantee repeatability of the search,
we will need to set a next-key lock in this statement.
Also SELECT COUNT(*)...
*/
DBUG_PRINT("info",("records: %ld",(ulong) (res)));
DBUG_RETURN(res);
}
/* Find relative position (in records) for key in index-tree */
static ha_rows _ma_record_pos(MARIA_HA *info, const uchar *key,
key_part_map keypart_map,
enum ha_rkey_function search_flag)
{
uint inx=(uint) info->lastinx, nextflag, key_len;
MARIA_KEYDEF *keyinfo=info->s->keyinfo+inx;
uchar *key_buff;
double pos;
DBUG_ENTER("_ma_record_pos");
DBUG_PRINT("enter",("search_flag: %d",search_flag));
DBUG_ASSERT(keypart_map);
key_buff=info->lastkey+info->s->base.max_key_length;
key_len= _ma_pack_key(info, inx, key_buff, key, keypart_map,
(HA_KEYSEG**) 0);
DBUG_EXECUTE("key", _ma_print_key(DBUG_FILE, keyinfo->seg,
key_buff, key_len););
nextflag=maria_read_vec[search_flag];
if (!(nextflag & (SEARCH_FIND | SEARCH_NO_FIND | SEARCH_LAST)))
key_len=USE_WHOLE_KEY;
/*
my_handler.c:mi_compare_text() has a flag 'skip_end_space'.
This is set in my_handler.c:ha_key_cmp() in dependence on the
compare flags 'nextflag' and the column type.
TEXT columns are of type HA_KEYTYPE_VARTEXT. In this case the
condition is skip_end_space= ((nextflag & (SEARCH_FIND |
SEARCH_UPDATE)) == SEARCH_FIND).
SEARCH_FIND is used for an exact key search. The combination
SEARCH_FIND | SEARCH_UPDATE is used in write/update/delete
operations with a comment like "Not real duplicates", whatever this
means. From the condition above we can see that 'skip_end_space' is
always false for these operations. The result is that trailing space
counts in key comparison and hence, emtpy strings ('', string length
zero, but not NULL) compare less that strings starting with control
characters and these in turn compare less than strings starting with
blanks.
When estimating the number of records in a key range, we request an
exact search for the minimum key. This translates into a plain
SEARCH_FIND flag. Using this alone would lead to a 'skip_end_space'
compare. Empty strings would be expected above control characters.
Their keys would not be found because they are located below control
characters.
This is the reason that we add the SEARCH_UPDATE flag here. It makes
the key estimation compare in the same way like key write operations
do. Olny so we will find the keys where they have been inserted.
Adding the flag unconditionally does not hurt as it is used in the
above mentioned condition only. So it can safely be used together
with other flags.
*/
pos= _ma_search_pos(info,keyinfo, key_buff, key_len,
nextflag | SEARCH_SAVE_BUFF | SEARCH_UPDATE,
info->s->state.key_root[inx]);
if (pos >= 0.0)
{
DBUG_PRINT("exit",("pos: %ld",(ulong) (pos*info->state->records)));
DBUG_RETURN((ulong) (pos*info->state->records+0.5));
}
DBUG_RETURN(HA_POS_ERROR);
}
/* This is a modified version of _ma_search */
/* Returns offset for key in indextable (decimal 0.0 <= x <= 1.0) */
static double _ma_search_pos(register MARIA_HA *info,
register MARIA_KEYDEF *keyinfo,
uchar *key, uint key_len, uint nextflag,
register my_off_t pos)
{
int flag;
uint nod_flag,keynr,max_keynr;
my_bool after_key;
uchar *keypos, *buff;
double offset;
DBUG_ENTER("_ma_search_pos");
LINT_INIT(max_keynr);
if (pos == HA_OFFSET_ERROR)
DBUG_RETURN(0.5);
if (!(buff= _ma_fetch_keypage(info,keyinfo, pos,
PAGECACHE_LOCK_LEFT_UNLOCKED, DFLT_INIT_HITS,
info->buff, 1, 0)))
goto err;
flag=(*keyinfo->bin_search)(info, keyinfo, buff, key, key_len, nextflag,
&keypos,info->lastkey, &after_key);
nod_flag=_ma_test_if_nod(info->s, buff);
keynr= _ma_keynr(info,keyinfo,buff,keypos,&max_keynr);
if (flag)
{
if (flag == MARIA_FOUND_WRONG_KEY)
DBUG_RETURN(-1); /* error */
/*
Didn't found match. keypos points at next (bigger) key
Try to find a smaller, better matching key.
Matches keynr + [0-1]
*/
if (flag > 0 && ! nod_flag)
offset= 1.0;
else if ((offset= _ma_search_pos(info,keyinfo,key,key_len,nextflag,
_ma_kpos(nod_flag,keypos))) < 0)
DBUG_RETURN(offset);
}
else
{
/*
Found match. Keypos points at the start of the found key
Matches keynr+1
*/
offset=1.0; /* Matches keynr+1 */
if ((nextflag & SEARCH_FIND) && nod_flag &&
((keyinfo->flag & (HA_NOSAME | HA_NULL_PART)) != HA_NOSAME ||
key_len != USE_WHOLE_KEY))
{
/*
There may be identical keys in the tree. Try to match on of those.
Matches keynr + [0-1]
*/
if ((offset= _ma_search_pos(info,keyinfo,key,key_len,SEARCH_FIND,
_ma_kpos(nod_flag,keypos))) < 0)
DBUG_RETURN(offset); /* Read error */
}
}
DBUG_PRINT("info",("keynr: %d offset: %g max_keynr: %d nod: %d flag: %d",
keynr,offset,max_keynr,nod_flag,flag));
DBUG_RETURN((keynr+offset)/(max_keynr+1));
err:
DBUG_PRINT("exit",("Error: %d",my_errno));
DBUG_RETURN (-1.0);
}
/* Get keynummer of current key and max number of keys in nod */
static uint _ma_keynr(MARIA_HA *info, register MARIA_KEYDEF *keyinfo,
uchar *page, uchar *keypos, uint *ret_max_key)
{
uint nod_flag, used_length, keynr, max_key;
uchar t_buff[HA_MAX_KEY_BUFF],*end;
_ma_get_used_and_nod(info->s, page, used_length, nod_flag);
end= page+ used_length;
page+= info->s->keypage_header + nod_flag;
if (!(keyinfo->flag & (HA_VAR_LENGTH_KEY | HA_BINARY_PACK_KEY)))
{
*ret_max_key= (uint) (end-page)/(keyinfo->keylength+nod_flag);
return (uint) (keypos-page)/(keyinfo->keylength+nod_flag);
}
max_key=keynr=0;
t_buff[0]=0; /* Safety */
while (page < end)
{
if (!(*keyinfo->get_key)(keyinfo,nod_flag,&page,t_buff))
return 0; /* Error */
max_key++;
if (page == keypos)
keynr=max_key;
}
*ret_max_key=max_key;
return(keynr);
}