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https://github.com/MariaDB/server.git
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233 lines
6.6 KiB
C
233 lines
6.6 KiB
C
/*
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Copyright (c) 2000, 2010, Oracle and/or its affiliates
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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., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */
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/* Functions to check if a row is unique */
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#include "myisamdef.h"
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#include <m_ctype.h>
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my_bool mi_check_unique(MI_INFO *info, MI_UNIQUEDEF *def, uchar *record,
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ha_checksum unique_hash, my_off_t disk_pos)
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{
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my_off_t lastpos=info->lastpos;
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MI_KEYDEF *key= &info->s->keyinfo[def->key];
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uchar *key_buff=info->lastkey2;
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DBUG_ENTER("mi_check_unique");
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mi_unique_store(record+key->seg->start, unique_hash);
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_mi_make_key(info,def->key,key_buff,record,0);
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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 (_mi_search(info,info->s->keyinfo+def->key,key_buff,MI_UNIQUE_HASH_LENGTH,
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SEARCH_FIND,info->s->state.key_root[def->key]))
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{
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info->page_changed=1; /* Can't optimize read next */
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info->lastpos= lastpos;
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DBUG_RETURN(0); /* No matching rows */
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}
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for (;;)
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{
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if (info->lastpos != disk_pos &&
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!(*info->s->compare_unique)(info,def,record,info->lastpos))
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{
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my_errno=HA_ERR_FOUND_DUPP_UNIQUE;
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info->errkey= (int) def->key;
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info->dupp_key_pos= info->lastpos;
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info->page_changed=1; /* Can't optimize read next */
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info->lastpos=lastpos;
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DBUG_PRINT("info",("Found duplicate"));
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DBUG_RETURN(1); /* Found identical */
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}
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if (_mi_search_next(info,info->s->keyinfo+def->key, info->lastkey,
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MI_UNIQUE_HASH_LENGTH, SEARCH_BIGGER,
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info->s->state.key_root[def->key]) ||
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memcmp(info->lastkey, key_buff, MI_UNIQUE_HASH_LENGTH))
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{
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info->page_changed=1; /* Can't optimize read next */
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info->lastpos=lastpos;
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DBUG_RETURN(0); /* end of tree */
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}
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}
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}
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/*
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Calculate a hash for a row
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TODO
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Add support for bit fields
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*/
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ha_checksum mi_unique_hash(MI_UNIQUEDEF *def, const uchar *record)
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{
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const uchar *pos, *end;
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ha_checksum crc= 0;
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ulong seed1=0, seed2= 4;
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HA_KEYSEG *keyseg;
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for (keyseg=def->seg ; keyseg < def->end ; keyseg++)
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{
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enum ha_base_keytype type=(enum ha_base_keytype) keyseg->type;
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uint length=keyseg->length;
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if (keyseg->null_bit)
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{
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if (record[keyseg->null_pos] & keyseg->null_bit)
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{
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/*
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Change crc in a way different from an empty string or 0.
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(This is an optimisation; The code will work even if this isn't
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done)
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*/
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crc=((crc << 8) + 511+
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(crc >> (8*sizeof(ha_checksum)-8)));
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continue;
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}
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}
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pos= record+keyseg->start;
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if (keyseg->flag & HA_VAR_LENGTH_PART)
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{
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uint pack_length= keyseg->bit_start;
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uint tmp_length= (pack_length == 1 ? (uint) *(uchar*) pos :
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uint2korr(pos));
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pos+= pack_length; /* Skip VARCHAR length */
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set_if_smaller(length,tmp_length);
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}
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else if (keyseg->flag & HA_BLOB_PART)
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{
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uint tmp_length=_mi_calc_blob_length(keyseg->bit_start,pos);
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memcpy(&pos, pos+keyseg->bit_start, sizeof(char*));
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if (!length || length > tmp_length)
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length=tmp_length; /* The whole blob */
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}
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end= pos+length;
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if (type == HA_KEYTYPE_TEXT || type == HA_KEYTYPE_VARTEXT1 ||
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type == HA_KEYTYPE_VARTEXT2)
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{
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keyseg->charset->coll->hash_sort(keyseg->charset,
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(const uchar*) pos, length, &seed1,
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&seed2);
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crc^= seed1;
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}
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else
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while (pos != end)
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crc=((crc << 8) +
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(((uchar) *(uchar*) pos++))) +
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(crc >> (8*sizeof(ha_checksum)-8));
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}
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return crc;
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}
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/*
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compare unique key for two rows
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TODO
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Add support for bit fields
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RETURN
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0 if both rows have equal unique value
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# Rows are different
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*/
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int mi_unique_comp(MI_UNIQUEDEF *def, const uchar *a, const uchar *b,
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my_bool null_are_equal)
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{
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const uchar *pos_a, *pos_b, *end;
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HA_KEYSEG *keyseg;
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for (keyseg=def->seg ; keyseg < def->end ; keyseg++)
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{
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enum ha_base_keytype type=(enum ha_base_keytype) keyseg->type;
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uint a_length, b_length;
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a_length= b_length= keyseg->length;
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/* If part is NULL it's regarded as different */
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if (keyseg->null_bit)
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{
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uint tmp;
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if ((tmp=(a[keyseg->null_pos] & keyseg->null_bit)) !=
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(uint) (b[keyseg->null_pos] & keyseg->null_bit))
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return 1;
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if (tmp)
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{
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if (!null_are_equal)
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return 1;
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continue;
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}
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}
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pos_a= a+keyseg->start;
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pos_b= b+keyseg->start;
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if (keyseg->flag & HA_VAR_LENGTH_PART)
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{
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uint pack_length= keyseg->bit_start;
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if (pack_length == 1)
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{
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a_length= (uint) *(uchar*) pos_a++;
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b_length= (uint) *(uchar*) pos_b++;
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}
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else
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{
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a_length= uint2korr(pos_a);
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b_length= uint2korr(pos_b);
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pos_a+= 2; /* Skip VARCHAR length */
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pos_b+= 2;
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}
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set_if_smaller(a_length, keyseg->length); /* Safety */
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set_if_smaller(b_length, keyseg->length); /* safety */
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}
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else if (keyseg->flag & HA_BLOB_PART)
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{
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/* Only compare 'length' characters if length != 0 */
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a_length= _mi_calc_blob_length(keyseg->bit_start,pos_a);
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b_length= _mi_calc_blob_length(keyseg->bit_start,pos_b);
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/* Check that a and b are of equal length */
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if (keyseg->length)
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{
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/*
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This is used in some cases when we are not interested in comparing
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the whole length of the blob.
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*/
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set_if_smaller(a_length, keyseg->length);
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set_if_smaller(b_length, keyseg->length);
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}
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memcpy(&pos_a, pos_a+keyseg->bit_start, sizeof(char*));
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memcpy(&pos_b, pos_b+keyseg->bit_start, sizeof(char*));
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}
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if (type == HA_KEYTYPE_TEXT || type == HA_KEYTYPE_VARTEXT1 ||
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type == HA_KEYTYPE_VARTEXT2)
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{
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if (ha_compare_text(keyseg->charset, (uchar *) pos_a, a_length,
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(uchar *) pos_b, b_length, 0, 1))
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return 1;
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}
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else
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{
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if (a_length != b_length)
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return 1;
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end= pos_a+a_length;
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while (pos_a != end)
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{
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if (*pos_a++ != *pos_b++)
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return 1;
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}
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}
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}
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return 0;
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}
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