mariadb/sql/ha_myisammrg.cc
unknown 43044b685f Fix for SAFE_MUTEX + MERGE tables
Docs/manual.texi:
  Fix for release
include/my_pthread.h:
  Fix for SAFE_MUTEX for windows
include/myisammrg.h:
  Fix for empty MERGE tables
myisam/ft_stopwords.c:
  Free used memory
myisammrg/myrg_open.c:
  Fix for empty MERGE tables
myisammrg/myrg_queue.c:
  Fix for empty MERGE tables
myisammrg/myrg_rfirst.c:
  cleanup
myisammrg/myrg_rkey.c:
  cleanup
mysys/my_thr_init.c:
  Fix SAFE_MUTEX for windows
mysys/my_winthread.c:
  Fix SAFE_MUTEX for windows
mysys/thr_mutex.c:
  Fix SAFE_MUTEX for windows
sql/ha_myisammrg.cc:
  Fix for empty MERGE tables
sql/mysqld.cc:
  Fix type
2000-09-21 01:58:38 +03:00

239 lines
6.7 KiB
C++

/* Copyright (C) 2000 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; either version 2 of the License, or
(at your option) any later version.
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 */
#ifdef __GNUC__
#pragma implementation // gcc: Class implementation
#endif
#include "mysql_priv.h"
#include <m_ctype.h>
#include "ha_myisammrg.h"
#ifndef MASTER
#include "../srclib/myisammrg/mymrgdef.h"
#else
#include "../myisammrg/mymrgdef.h"
#endif
/*****************************************************************************
** MyISAM MERGE tables
*****************************************************************************/
const char **ha_myisammrg::bas_ext() const
{ static const char *ext[]= { ".MRG", NullS }; return ext; }
int ha_myisammrg::open(const char *name, int mode, int test_if_locked)
{
char name_buff[FN_REFLEN];
if (!(file=myrg_open(fn_format(name_buff,name,"","",2 | 4), mode,
test_if_locked)))
return (my_errno ? my_errno : -1);
if (!(test_if_locked == HA_OPEN_WAIT_IF_LOCKED ||
test_if_locked == HA_OPEN_ABORT_IF_LOCKED))
myrg_extra(file,HA_EXTRA_NO_WAIT_LOCK);
info(HA_STATUS_NO_LOCK | HA_STATUS_VARIABLE | HA_STATUS_CONST);
if (!(test_if_locked & HA_OPEN_WAIT_IF_LOCKED))
myrg_extra(file,HA_EXTRA_WAIT_LOCK);
if (table->reclength != mean_rec_length && mean_rec_length)
{
DBUG_PRINT("error",("reclength: %d mean_rec_length: %d",
table->reclength, mean_rec_length));
myrg_close(file);
file=0;
return my_errno=HA_ERR_WRONG_TABLE_DEF;
}
return (0);
}
int ha_myisammrg::close(void)
{
return myrg_close(file);
}
int ha_myisammrg::write_row(byte * buf)
{
return (my_errno=HA_ERR_WRONG_COMMAND);
}
int ha_myisammrg::update_row(const byte * old_data, byte * new_data)
{
statistic_increment(ha_update_count,&LOCK_status);
if (table->time_stamp)
update_timestamp(new_data+table->time_stamp-1);
return myrg_update(file,old_data,new_data);
}
int ha_myisammrg::delete_row(const byte * buf)
{
statistic_increment(ha_delete_count,&LOCK_status);
return myrg_delete(file,buf);
}
int ha_myisammrg::index_read(byte * buf, const byte * key,
uint key_len, enum ha_rkey_function find_flag)
{
// return (my_errno=HA_ERR_WRONG_COMMAND);
statistic_increment(ha_read_key_count,&LOCK_status);
int error=myrg_rkey(file,buf,active_index, key, key_len, find_flag);
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
int ha_myisammrg::index_read_idx(byte * buf, uint index, const byte * key,
uint key_len, enum ha_rkey_function find_flag)
{
// return (my_errno=HA_ERR_WRONG_COMMAND);
statistic_increment(ha_read_key_count,&LOCK_status);
int error=myrg_rkey(file,buf,index, key, key_len, find_flag);
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
int ha_myisammrg::index_next(byte * buf)
{
// return (my_errno=HA_ERR_WRONG_COMMAND);
statistic_increment(ha_read_next_count,&LOCK_status);
int error=myrg_rnext(file,buf,active_index);
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
int ha_myisammrg::index_prev(byte * buf)
{
// return (my_errno=HA_ERR_WRONG_COMMAND);
statistic_increment(ha_read_prev_count,&LOCK_status);
int error=myrg_rprev(file,buf, active_index);
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
int ha_myisammrg::index_first(byte * buf)
{
// return (my_errno=HA_ERR_WRONG_COMMAND);
statistic_increment(ha_read_first_count,&LOCK_status);
int error=myrg_rfirst(file, buf, active_index);
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
int ha_myisammrg::index_last(byte * buf)
{
// return (my_errno=HA_ERR_WRONG_COMMAND);
statistic_increment(ha_read_last_count,&LOCK_status);
int error=myrg_rlast(file, buf, active_index);
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
int ha_myisammrg::rnd_init(bool scan)
{
return myrg_extra(file,HA_EXTRA_RESET);
}
int ha_myisammrg::rnd_next(byte *buf)
{
statistic_increment(ha_read_rnd_next_count,&LOCK_status);
int error=myrg_rrnd(file, buf, HA_OFFSET_ERROR);
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
int ha_myisammrg::rnd_pos(byte * buf, byte *pos)
{
statistic_increment(ha_read_rnd_count,&LOCK_status);
int error=myrg_rrnd(file, buf, ha_get_ptr(pos,ref_length));
table->status=error ? STATUS_NOT_FOUND: 0;
return error;
}
void ha_myisammrg::position(const byte *record)
{
ulonglong position= myrg_position(file);
ha_store_ptr(ref, ref_length, (my_off_t) position);
}
void ha_myisammrg::info(uint flag)
{
MYMERGE_INFO info;
(void) myrg_status(file,&info,flag);
records = (ha_rows) info.records;
deleted = (ha_rows) info.deleted;
data_file_length=info.data_file_length;
errkey = info.errkey;
table->keys_in_use=(((key_map) 1) << table->keys)- (key_map) 1;
table->db_options_in_use = info.options;
mean_rec_length=info.reclength;
block_size=0;
update_time=0;
ref_length=6; // Should be big enough
}
int ha_myisammrg::extra(enum ha_extra_function operation)
{
return myrg_extra(file,operation);
}
int ha_myisammrg::reset(void)
{
return myrg_extra(file,HA_EXTRA_RESET);
}
int ha_myisammrg::external_lock(THD *thd, int lock_type)
{
return myrg_lock_database(file,lock_type);
}
uint ha_myisammrg::lock_count(void) const
{
return file->tables;
}
THR_LOCK_DATA **ha_myisammrg::store_lock(THD *thd,
THR_LOCK_DATA **to,
enum thr_lock_type lock_type)
{
MYRG_TABLE *table;
for (table=file->open_tables ; table != file->end_table ; table++)
{
*(to++)= &table->table->lock;
if (lock_type != TL_IGNORE && table->table->lock.type == TL_UNLOCK)
table->table->lock.type=lock_type;
}
return to;
}
int ha_myisammrg::create(const char *name, register TABLE *form,
HA_CREATE_INFO *create_info)
{
char buff[FN_REFLEN],**table_names,**pos;
TABLE_LIST *tables= (TABLE_LIST*) create_info->merge_list.first;
DBUG_ENTER("ha_myisammrg::create");
if (!(table_names= (char**) sql_alloc((create_info->merge_list.elements+1)*
sizeof(char*))))
DBUG_RETURN(1);
for (pos=table_names ; tables ; tables=tables->next)
*pos++= tables->real_name;
*pos=0;
DBUG_RETURN(myrg_create(fn_format(buff,name,"","",2+4+16),
(const char **) table_names, (my_bool) 0));
}