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https://github.com/MariaDB/server.git
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Apart strict-aliasing warnings, fix the remaining warnings generated by GCC 4.4.4 -Wall and -Wextra flags. One major source of warnings was the in-house function my_bcmp which (unconventionally) took pointers to unsigned characters as the byte sequences to be compared. Since my_bcmp and bcmp are deprecated functions whose only difference with memcmp is the return value, every use of the function is replaced with memcmp as the special return value wasn't actually being used by any caller. There were also various other warnings, mostly due to type mismatches, missing return values, missing prototypes, dead code (unreachable) and ignored return values.
233 lines
6.6 KiB
C
233 lines
6.6 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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/* 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_fixed((uchar*) &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_fixed((uchar*) &pos_a,pos_a+keyseg->bit_start,sizeof(char*));
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memcpy_fixed((uchar*) &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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