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	 062f8eb37d
			
		
	
	
	062f8eb37d
	
	
	
		
			
			the information about index algorithm was stored in two places inconsistently split between both. BTREE index could have key->algorithm == HA_KEY_ALG_BTREE, if the user explicitly specified USING BTREE or HA_KEY_ALG_UNDEF, if not. RTREE index had key->algorithm == HA_KEY_ALG_RTREE and always had key->flags & HA_SPATIAL FULLTEXT index had key->algorithm == HA_KEY_ALG_FULLTEXT and always had key->flags & HA_FULLTEXT HASH index had key->algorithm == HA_KEY_ALG_HASH or HA_KEY_ALG_UNDEF long unique index always had key->algorithm == HA_KEY_ALG_LONG_HASH In this commit: All indexes except BTREE and HASH always have key->algorithm set, HA_SPATIAL and HA_FULLTEXT flags are not used anymore (except for storage to keep frms backward compatible). As a side effect ALTER TABLE now detects FULLTEXT index renames correctly
		
			
				
	
	
		
			808 lines
		
	
	
	
		
			22 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			808 lines
		
	
	
	
		
			22 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /* Copyright (C) 2006 MySQL AB & MySQL Finland AB & TCX DataKonsult AB
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|    Copyright (c) 2020, MariaDB Corporation.
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| 
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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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| 
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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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| 
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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 Street, Fifth Floor, Boston, MA 02110-1335 USA */
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| 
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| /* Functions to handle keys */
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| 
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| #include "maria_def.h"
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| #include "m_ctype.h"
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| #include "ma_sp_defs.h"
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| #include "ma_blockrec.h"                        /* For ROW_FLAG_TRANSID */
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| #include "trnman.h"
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| #ifdef HAVE_IEEEFP_H
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| #include <ieeefp.h>
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| #endif
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| 
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| #define CHECK_KEYS                              /* Enable safety checks */
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| 
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| static int _ma_put_key_in_record(MARIA_HA *info, uint keynr,
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|                                  my_bool unpack_blobs, uchar *record);
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| 
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| #define FIX_LENGTH(cs, pos, length, char_length)                            \
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|             do {                                                            \
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|               if (length > char_length)                                     \
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|                 char_length= (uint) my_ci_charpos(cs, (const char *) pos,   \
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|                                                       (const char *) pos+length, \
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|                                                       char_length);         \
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|               set_if_smaller(char_length,length);                           \
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|             } while(0)
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| 
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| 
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| /**
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|   Store trid in a packed format as part of a key
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| 
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|   @fn    transid_store_packed
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|   @param info   Maria handler
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|   @param to     End of key to which we should store a packed transid
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|   @param trid   Trid to be stored
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| 
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|   @notes
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| 
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|   Keys that have a transid has the lowest bit set for the last byte of the key
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|   This function sets this bit for the key.
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| 
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|   Trid is max 6 bytes long
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| 
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|   First Trid it's converted to a smaller number by using
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|   trid= trid - create_trid.
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|   Then trid is then shifted up one bit so that we can use the
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|   lowest bit as a marker if it's followed by another trid.
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| 
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|   Trid is then stored as follows:
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| 
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|   if trid < 256-12
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|     one byte
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|   else
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|     one byte prefix length_of_trid_in_bytes + 249 followed by data
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|     in high-byte-first order
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| 
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|   Prefix bytes 244 to 249 are reserved for negative transid, that can be used
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|   when we pack transid relative to each other on a key block.
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| 
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|   We have to store transid in high-byte-first order so that we can compare
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|   them unpacked byte per byte and as soon we find a difference we know
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|   which is smaller.
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| 
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|   For example, assuming we the following data:
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| 
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|   key_data:               1                (4 byte integer)
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|   pointer_to_row:         2 << 8 + 3 = 515 (page 2, row 3)
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|   table_create_transid    1000             Defined at create table time and
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|                                            stored in table definition
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|   transid                 1010	           Transaction that created row
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|   delete_transid          2011             Transaction that deleted row
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| 
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|   In addition we assume the table is created with a data pointer length
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|   of 4 bytes (this is automatically calculated based on the medium
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|   length of rows and the given max number of rows)
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| 
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|   The binary data for the key would then look like this in hex:
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| 
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|   00 00 00 01     Key data (1 stored high byte first)
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|   00 00 00 47	  (515 << 1) + 1         ;  The last 1 is marker that key cont.
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|   15              ((1010-1000) << 1) + 1 ;  The last 1 is marker that key cont.
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|   FB 07 E6        Length byte (FE = 249 + 2 means 2 bytes) and 
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|                   ((2011 - 1000) << 1) = 07 E6
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| */
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| 
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| uint transid_store_packed(MARIA_HA *info, uchar *to, ulonglong trid)
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| {
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|   uchar *start;
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|   uint length;
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|   uchar buff[8];
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|   DBUG_ASSERT(trid < (1LL << (MARIA_MAX_PACK_TRANSID_SIZE*8)));
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|   DBUG_ASSERT(trid >= info->s->state.create_trid);
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| 
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|   trid= (trid - info->s->state.create_trid) << 1;
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| 
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|   /* Mark that key contains transid */
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|   to[-1]|= 1;
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| 
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|   if (trid < MARIA_MIN_TRANSID_PACK_OFFSET)
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|   {
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|     to[0]= (uchar) trid;
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|     return 1;
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|   }
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|   start= to;
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| 
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|   /* store things in low-byte-first-order in buff */
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|   to= buff;
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|   do
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|   {
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|     *to++= (uchar) trid;
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|     trid= trid>>8;
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|   } while (trid);
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| 
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|   length= (uint) (to - buff);
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|   /* Store length prefix */
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|   start[0]= (uchar) (length + MARIA_TRANSID_PACK_OFFSET);
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|   start++;
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|   /* Copy things in high-byte-first order to output buffer */
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|   do
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|   {
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|     *start++= *--to;
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|   } while (to != buff);
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|   return length+1;
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| }
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| 
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| 
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| /**
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|    Read packed transid
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| 
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|    @fn    transid_get_packed
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|    @param info   Maria handler
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|    @param from	 Transid is stored here
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| 
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|    See transid_store_packed() for how transid is packed
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| 
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| */
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| 
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| ulonglong transid_get_packed(MARIA_SHARE *share, const uchar *from)
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| {
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|   ulonglong value;
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|   uint length;
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| 
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|   if (from[0] < MARIA_MIN_TRANSID_PACK_OFFSET)
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|     value= (ulonglong) from[0];
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|   else
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|   {
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|     value= 0;
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|     for (length= (uint) (from[0] - MARIA_TRANSID_PACK_OFFSET),
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|            value= (ulonglong) from[1], from+=2;
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|          --length ;
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|          from++)
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|       value= (value << 8) + ((ulonglong) *from);
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|   }
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|   return (value >> 1) + share->state.create_trid;
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| }
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| 
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| 
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| /*
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|   Make a normal (not spatial or fulltext) intern key from a record
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| 
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|   SYNOPSIS
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|     _ma_make_key()
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|     info		MyiSAM handler
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|     int_key		Store created key here
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|     keynr		key number
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|     key			Buffer used to store key data
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|     record		Record
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|     filepos		Position to record in the data file
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| 
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|   NOTES
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|     This is used to generate keys from the record on insert, update and delete
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| 
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|   RETURN
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|     key
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| */
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| 
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| MARIA_KEY *_ma_make_key(MARIA_HA *info, MARIA_KEY *int_key, uint keynr,
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|                         uchar *key, const uchar *record,
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|                         MARIA_RECORD_POS filepos, ulonglong trid)
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| {
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|   const uchar *pos;
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|   reg1 HA_KEYSEG *keyseg;
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|   my_bool is_ft;
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|   DBUG_ENTER("_ma_make_key");
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| 
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|   int_key->data= key;
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|   int_key->flag= 0;                             /* Always return full key */
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|   int_key->keyinfo= info->s->keyinfo + keynr;
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| 
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|   is_ft= int_key->keyinfo->key_alg == HA_KEY_ALG_FULLTEXT;
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|   for (keyseg= int_key->keyinfo->seg ; keyseg->type ;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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|     uint char_length;
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|     CHARSET_INFO *cs=keyseg->charset;
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| 
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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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| 	*key++= 0;				/* NULL in key */
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| 	continue;
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|       }
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|       *key++=1;					/* Not NULL */
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|     }
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| 
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|     char_length= ((!is_ft && cs && cs->mbmaxlen > 1) ? length/cs->mbmaxlen :
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|                   length);
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| 
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|     pos= record+keyseg->start;
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|     if (type == HA_KEYTYPE_BIT)
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|     {
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|       if (keyseg->bit_length)
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|       {
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|         uchar bits= get_rec_bits(record + keyseg->bit_pos,
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|                                  keyseg->bit_start, keyseg->bit_length);
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|         *key++= (char) bits;
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|         length--;
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|       }
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|       memcpy(key, pos, length);
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|       key+= length;
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|       continue;
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|     }
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|     if (keyseg->flag & HA_SPACE_PACK)
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|     {
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|       if (type != HA_KEYTYPE_NUM)
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|       {
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|         length= (uint) my_ci_lengthsp(cs, (const char*)pos, length);
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|       }
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|       else
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|       {
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|         const uchar *end= pos + length;
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| 	while (pos < end && pos[0] == ' ')
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| 	  pos++;
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| 	length= (uint) (end-pos);
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|       }
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|       FIX_LENGTH(cs, pos, length, char_length);
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|       store_key_length_inc(key,char_length);
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|       memcpy(key, pos, (size_t) char_length);
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|       key+=char_length;
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|       continue;
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|     }
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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 == 1 ? 1 : 2);
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|       uint tmp_length= (pack_length == 1 ? (uint) *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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|       FIX_LENGTH(cs, pos, length, char_length);
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|       store_key_length_inc(key,char_length);
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|       memcpy(key,pos,(size_t) char_length);
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|       key+= char_length;
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|       continue;
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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= _ma_calc_blob_length(keyseg->bit_start,pos);
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|       uchar *blob_pos;
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|       memcpy(&blob_pos, pos+keyseg->bit_start,sizeof(char*));
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|       set_if_smaller(length,tmp_length);
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|       FIX_LENGTH(cs, blob_pos, length, char_length);
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|       store_key_length_inc(key,char_length);
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|       memcpy(key, blob_pos, (size_t) char_length);
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|       key+= char_length;
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|       continue;
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|     }
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|     else if (keyseg->flag & HA_SWAP_KEY)
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|     {						/* Numerical column */
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|       if (type == HA_KEYTYPE_FLOAT)
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|       {
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| 	if (isnan(get_float(pos)))
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| 	{
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| 	  /* Replace NAN with zero */
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| 	  bzero(key,length);
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| 	  key+=length;
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| 	  continue;
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| 	}
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|       }
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|       else if (type == HA_KEYTYPE_DOUBLE)
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|       {
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| 	double nr;
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| 	float8get(nr,pos);
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| 	if (isnan(nr))
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| 	{
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| 	  bzero(key,length);
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| 	  key+=length;
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| 	  continue;
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| 	}
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|       }
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|       pos+=length;
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|       while (length--)
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|       {
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| 	*key++ = *--pos;
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|       }
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|       continue;
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|     }
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|     FIX_LENGTH(cs, pos, length, char_length);
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|     memcpy(key, pos, char_length);
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|     if (length > char_length)
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|       my_ci_fill(cs, (char*) key+char_length, length-char_length, ' ');
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|     key+= length;
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|   }
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|   _ma_dpointer(info->s, key, filepos);
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|   int_key->data_length= (uint)(key - int_key->data);
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|   int_key->ref_length= info->s->rec_reflength;
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|   int_key->flag= 0;
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|   if (_ma_have_versioning(info) && trid)
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|   {
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|     int_key->ref_length+= transid_store_packed(info,
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|                                                key + int_key->ref_length,
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|                                                (TrID) trid);
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|     int_key->flag|= SEARCH_USER_KEY_HAS_TRANSID;
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|   }
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| 
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|   DBUG_PRINT("exit",("keynr: %d",keynr));
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|   DBUG_DUMP_KEY("key", int_key);
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|   DBUG_EXECUTE("key", _ma_print_key(DBUG_FILE, int_key););
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|   DBUG_RETURN(int_key);
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| } /* _ma_make_key */
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| 
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| 
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| /*
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|   Pack a key to intern format from given format (c_rkey)
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| 
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|   SYNOPSIS
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|     _ma_pack_key()
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|     info		MARIA handler
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|     int_key		Store key here
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|     keynr		key number
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|     key			Buffer for key data
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|     old			Original not packed key
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|     keypart_map         bitmap of used keyparts
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|     last_used_keyseg	out parameter.  May be NULL
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| 
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|    RETURN
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|    int_key
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| 
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|      last_use_keyseg    Store pointer to the keyseg after the last used one
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| */
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| 
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| MARIA_KEY *_ma_pack_key(register MARIA_HA *info, MARIA_KEY *int_key,
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|                         uint keynr, uchar *key,
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|                         const uchar *old, key_part_map keypart_map,
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|                         HA_KEYSEG **last_used_keyseg)
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| {
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|   HA_KEYSEG *keyseg;
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|   my_bool is_ft;
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|   DBUG_ENTER("_ma_pack_key");
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| 
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|   int_key->data= key;
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|   int_key->keyinfo= info->s->keyinfo + keynr;
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| 
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|   /* "one part" rtree key is 2*SPDIMS part key in Maria */
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|   if (int_key->keyinfo->key_alg == HA_KEY_ALG_RTREE)
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|     keypart_map= (((key_part_map)1) << (2*SPDIMS)) - 1;
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| 
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|   /* only key prefixes are supported */
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|   DBUG_ASSERT(((keypart_map+1) & keypart_map) == 0);
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| 
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|   is_ft= int_key->keyinfo->key_alg == HA_KEY_ALG_FULLTEXT;
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|   for (keyseg=int_key->keyinfo->seg ; keyseg->type && keypart_map;
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|        old+= keyseg->length, 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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|     uint char_length;
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|     const uchar *pos;
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|     CHARSET_INFO *cs=keyseg->charset;
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| 
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|     keypart_map>>= 1;
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|     if (keyseg->null_bit)
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|     {
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|       if (!(*key++= (char) 1-*old++))			/* Copy null marker */
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|       {
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|         if (keyseg->flag & (HA_VAR_LENGTH_PART | HA_BLOB_PART))
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|           old+= 2;
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| 	continue;					/* Found NULL */
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|       }
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|     }
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|     char_length= ((!is_ft && cs && cs->mbmaxlen > 1) ? length/cs->mbmaxlen :
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|                   length);
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|     pos= old;
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|     if (keyseg->flag & HA_SPACE_PACK)
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|     {
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|       const uchar *end= pos + length;
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|       if (type == HA_KEYTYPE_NUM)
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|       {
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| 	while (pos < end && pos[0] == ' ')
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| 	  pos++;
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|       }
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|       else if (type != HA_KEYTYPE_BINARY)
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|       {
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| 	while (end > pos && end[-1] == ' ')
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| 	  end--;
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|       }
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|       length=(uint) (end-pos);
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|       FIX_LENGTH(cs, pos, length, char_length);
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|       store_key_length_inc(key,char_length);
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|       memcpy(key,pos,(size_t) char_length);
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|       key+= char_length;
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|       continue;
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|     }
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|     else if (keyseg->flag & (HA_VAR_LENGTH_PART | HA_BLOB_PART))
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|     {
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|       /* Length of key-part used with maria_rkey() always 2 */
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|       uint tmp_length=uint2korr(pos);
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|       pos+=2;
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|       set_if_smaller(length,tmp_length);	/* Safety */
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|       FIX_LENGTH(cs, pos, length, char_length);
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|       store_key_length_inc(key,char_length);
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|       old+=2;					/* Skip length */
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|       memcpy(key, pos,(size_t) char_length);
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|       key+= char_length;
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|       continue;
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|     }
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|     else if (keyseg->flag & HA_SWAP_KEY)
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|     {						/* Numerical column */
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|       pos+=length;
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|       while (length--)
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| 	*key++ = *--pos;
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|       continue;
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|     }
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|     FIX_LENGTH(cs, pos, length, char_length);
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|     memcpy(key, pos, char_length);
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|     if (length > char_length)
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|       my_ci_fill(cs, (char*) key+char_length, length-char_length, ' ');
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|     key+= length;
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|   }
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|   if (last_used_keyseg)
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|     *last_used_keyseg= keyseg;
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| 
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|   /* set flag to SEARCH_PART_KEY if we are not using all key parts */
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|   int_key->flag= keyseg->type ? SEARCH_PART_KEY : 0;
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|   int_key->ref_length= 0;
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|   int_key->data_length= (uint)(key - int_key->data);
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| 
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|   DBUG_PRINT("exit", ("length: %u", int_key->data_length));
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|   DBUG_RETURN(int_key);
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| } /* _ma_pack_key */
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| 
 | |
| 
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| /**
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|    Copy a key
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| */
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| 
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| void _ma_copy_key(MARIA_KEY *to, const MARIA_KEY *from)
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| {
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|   memcpy(to->data, from->data, from->data_length + from->ref_length);
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|   to->keyinfo=     from->keyinfo;
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|   to->data_length= from->data_length;
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|   to->ref_length=  from->ref_length;
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|   to->flag=        from->flag;
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| }
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| 
 | |
| 
 | |
| /*
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|   Store found key in record
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| 
 | |
|   SYNOPSIS
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|     _ma_put_key_in_record()
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|     info		MARIA handler
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|     keynr		Key number that was used
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|     unpack_blobs        TRUE  <=> Unpack blob columns
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|                         FALSE <=> Skip them. This is used by index condition 
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|                                   pushdown check function
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|     record 		Store key here
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| 
 | |
|     Last read key is in info->lastkey
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| 
 | |
|  NOTES
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|    Used when only-keyread is wanted
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| 
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|  RETURN
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|    0   ok
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|    1   error
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| */
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| 
 | |
| static int _ma_put_key_in_record(register MARIA_HA *info, uint keynr,
 | |
| 				 my_bool unpack_blobs, uchar *record)
 | |
| {
 | |
|   reg2 uchar *key;
 | |
|   uchar *pos,*key_end;
 | |
|   reg1 HA_KEYSEG *keyseg;
 | |
|   uchar *blob_ptr;
 | |
|   DBUG_ENTER("_ma_put_key_in_record");
 | |
| 
 | |
|   blob_ptr= info->lastkey_buff2;         /* Place to put blob parts */
 | |
|   key= info->last_key.data;               /* Key that was read */
 | |
|   key_end= key + info->last_key.data_length;
 | |
|   for (keyseg=info->s->keyinfo[keynr].seg ; keyseg->type ;keyseg++)
 | |
|   {
 | |
|     if (keyseg->null_bit)
 | |
|     {
 | |
|       if (!*key++)
 | |
|       {
 | |
| 	record[keyseg->null_pos]|= keyseg->null_bit;
 | |
| 	continue;
 | |
|       }
 | |
|       record[keyseg->null_pos]&= ~keyseg->null_bit;
 | |
|     }
 | |
|     if (keyseg->type == HA_KEYTYPE_BIT)
 | |
|     {
 | |
|       uint length= keyseg->length;
 | |
| 
 | |
|       if (keyseg->bit_length)
 | |
|       {
 | |
|         uchar bits= *key++;
 | |
|         set_rec_bits(bits, record + keyseg->bit_pos, keyseg->bit_start,
 | |
|                      keyseg->bit_length);
 | |
|         length--;
 | |
|       }
 | |
|       else
 | |
|       {
 | |
|         clr_rec_bits(record + keyseg->bit_pos, keyseg->bit_start,
 | |
|                      keyseg->bit_length);
 | |
|       }
 | |
|       memcpy(record + keyseg->start, key, length);
 | |
|       key+= length;
 | |
|       continue;
 | |
|     }
 | |
|     if (keyseg->flag & HA_SPACE_PACK)
 | |
|     {
 | |
|       uint length;
 | |
|       get_key_length(length,key);
 | |
| #ifdef CHECK_KEYS
 | |
|       if (length > keyseg->length || key+length > key_end)
 | |
| 	goto err;
 | |
| #endif
 | |
|       pos= record+keyseg->start;
 | |
|       if (keyseg->type != (int) HA_KEYTYPE_NUM)
 | |
|       {
 | |
|         memcpy(pos,key,(size_t) length);
 | |
|         my_ci_fill(keyseg->charset, (char*) pos + length,
 | |
|                                     keyseg->length - length,
 | |
|                                     ' ');
 | |
|       }
 | |
|       else
 | |
|       {
 | |
| 	bfill(pos,keyseg->length-length,' ');
 | |
| 	memcpy(pos+keyseg->length-length,key,(size_t) length);
 | |
|       }
 | |
|       key+=length;
 | |
|       continue;
 | |
|     }
 | |
| 
 | |
|     if (keyseg->flag & HA_VAR_LENGTH_PART)
 | |
|     {
 | |
|       uint length;
 | |
|       get_key_length(length,key);
 | |
| #ifdef CHECK_KEYS
 | |
|       if (length > keyseg->length || key+length > key_end)
 | |
| 	goto err;
 | |
| #endif
 | |
|       /* Store key length */
 | |
|       if (keyseg->bit_start == 1)
 | |
|         *(uchar*) (record+keyseg->start)= (uchar) length;
 | |
|       else
 | |
|         int2store(record+keyseg->start, length);
 | |
|       /* And key data */
 | |
|       memcpy(record+keyseg->start + keyseg->bit_start, key, length);
 | |
|       key+= length;
 | |
|     }
 | |
|     else if (keyseg->flag & HA_BLOB_PART)
 | |
|     {
 | |
|       uint length;
 | |
|       get_key_length(length,key);
 | |
| #ifdef CHECK_KEYS
 | |
|       if (length > keyseg->length || key+length > key_end)
 | |
| 	goto err;
 | |
| #endif
 | |
|       if (unpack_blobs)
 | |
|       {
 | |
|         memcpy(record+keyseg->start+keyseg->bit_start,
 | |
|                &blob_ptr, sizeof(char*));
 | |
|         memcpy(blob_ptr,key,length);
 | |
|         blob_ptr+=length;
 | |
| 
 | |
|         /* The above changed info->lastkey2. Inform maria_rnext_same(). */
 | |
|         info->update&= ~HA_STATE_RNEXT_SAME;
 | |
| 
 | |
|         _ma_store_blob_length(record+keyseg->start,
 | |
|                               (uint) keyseg->bit_start,length);
 | |
|       }
 | |
|       key+=length;
 | |
|     }
 | |
|     else if (keyseg->flag & HA_SWAP_KEY)
 | |
|     {
 | |
|       uchar *to=  record+keyseg->start+keyseg->length;
 | |
|       uchar *end= key+keyseg->length;
 | |
| #ifdef CHECK_KEYS
 | |
|       if (end > key_end)
 | |
| 	goto err;
 | |
| #endif
 | |
|       do
 | |
|       {
 | |
| 	 *--to= *key++;
 | |
|       } while (key != end);
 | |
|       continue;
 | |
|     }
 | |
|     else
 | |
|     {
 | |
| #ifdef CHECK_KEYS
 | |
|       if (key+keyseg->length > key_end)
 | |
| 	goto err;
 | |
| #endif
 | |
|       memcpy(record+keyseg->start, key, (size_t) keyseg->length);
 | |
|       key+= keyseg->length;
 | |
|     }
 | |
|   }
 | |
|   DBUG_RETURN(0);
 | |
| 
 | |
| err:
 | |
|   DBUG_PRINT("info",("error"));
 | |
|   DBUG_RETURN(1);				/* Crashed row */
 | |
| } /* _ma_put_key_in_record */
 | |
| 
 | |
| 
 | |
| 	/* Here when key reads are used */
 | |
| 
 | |
| int _ma_read_key_record(MARIA_HA *info, uchar *buf, MARIA_RECORD_POS filepos)
 | |
| {
 | |
|   fast_ma_writeinfo(info);
 | |
|   if (filepos != HA_OFFSET_ERROR)
 | |
|   {
 | |
|     if (info->lastinx >= 0)
 | |
|     {				/* Read only key */
 | |
|       if (_ma_put_key_in_record(info, (uint)info->lastinx, TRUE, buf))
 | |
|       {
 | |
|         _ma_set_fatal_error(info, HA_ERR_CRASHED);
 | |
| 	return -1;
 | |
|       }
 | |
|       info->update|= HA_STATE_AKTIV; /* We should find a record */
 | |
|       return 0;
 | |
|     }
 | |
|     my_errno=HA_ERR_WRONG_INDEX;
 | |
|   }
 | |
|   return(-1);				/* Wrong data to read */
 | |
| }
 | |
| 
 | |
| 
 | |
| 
 | |
| /*
 | |
|   Save current key tuple to record and call index condition check function
 | |
| 
 | |
|   SYNOPSIS
 | |
|     ma_check_index_cond()
 | |
|       info    MyISAM handler
 | |
|       keynr   Index we're running a scan on
 | |
|       record  Record buffer to use (it is assumed that index check function 
 | |
|               will look for column values there)
 | |
| 
 | |
|   RETURN
 | |
|     CHECK_ERROR         Error ; my_errno set to HA_ERR_CRASHED
 | |
|     CHECK_NEG           Index condition is not satisfied, continue scanning
 | |
|     CHECK_POS           Index condition is satisfied
 | |
|     CHECK_OUT_OF_RANGE  Index condition is not satisfied, end the scan.
 | |
|                       my_errno set to HA_ERR_END_OF_FILE
 | |
| 
 | |
|     info->cur_row.lastpos is set to HA_OFFSET_ERROR in case of CHECK_ERROR or
 | |
|     CHECK_OUT_OF_RANGE to indicate that we don't have any active row.
 | |
| */
 | |
| 
 | |
| check_result_t ma_check_index_cond_real(register MARIA_HA *info, uint keynr,
 | |
|                                         uchar *record)
 | |
| {
 | |
|   check_result_t res= CHECK_POS;
 | |
|   DBUG_ASSERT(info->index_cond_func || info->rowid_filter_func);
 | |
| 
 | |
|   if (_ma_put_key_in_record(info, keynr, FALSE, record))
 | |
|   {
 | |
|     /* Impossible case; Can only happen if bug in code */
 | |
|     _ma_print_error(info, HA_ERR_CRASHED, 0);
 | |
|     info->cur_row.lastpos= HA_OFFSET_ERROR;   /* No active record */
 | |
|     my_errno= HA_ERR_CRASHED;
 | |
|     return CHECK_ERROR;
 | |
|   }
 | |
| 
 | |
|   if (info->index_cond_func)
 | |
|   {
 | |
|     if ((res= info->index_cond_func(info->index_cond_func_arg)) ==
 | |
|         CHECK_OUT_OF_RANGE)
 | |
|     {
 | |
|       /* We got beyond the end of scanned range */
 | |
|       info->cur_row.lastpos= HA_OFFSET_ERROR;   /* No active record */
 | |
|       my_errno= HA_ERR_END_OF_FILE;
 | |
|       return res;
 | |
|     }
 | |
|     /*
 | |
|       If we got an error, out-of-range condition, or ICP condition computed to
 | |
|       FALSE - we don't need to check the Rowid Filter.
 | |
|     */
 | |
|     if (res != CHECK_POS)
 | |
|       return res;
 | |
|   }
 | |
| 
 | |
|   /* Check the Rowid Filter, if present */
 | |
|   if (info->rowid_filter_func)
 | |
|   {
 | |
|     if ((res= info->rowid_filter_func(info->rowid_filter_func_arg)) ==
 | |
|         CHECK_OUT_OF_RANGE)
 | |
|     {
 | |
|       /* We got beyond the end of scanned range */
 | |
|       info->cur_row.lastpos= HA_OFFSET_ERROR;   /* No active record */
 | |
|       my_errno= HA_ERR_END_OF_FILE;
 | |
|     }
 | |
|   }
 | |
|   return res;
 | |
| }
 | |
| 
 | |
| 
 | |
| /*
 | |
|   Retrieve auto_increment info
 | |
| 
 | |
|   SYNOPSIS
 | |
|     retrieve_auto_increment()
 | |
|     key                         Auto-increment key
 | |
|     key_type                    Key's type
 | |
| 
 | |
|   NOTE
 | |
|     'key' should in "record" format, that is, how it is packed in a record
 | |
|     (this matters with HA_SWAP_KEY).
 | |
| 
 | |
|   IMPLEMENTATION
 | |
|     For signed columns we don't retrieve the auto increment value if it's
 | |
|     less than zero.
 | |
| */
 | |
| 
 | |
| ulonglong ma_retrieve_auto_increment(const uchar *key, uint8 key_type)
 | |
| {
 | |
|   ulonglong value= 0;			/* Store unsigned values here */
 | |
|   longlong s_value= 0;			/* Store signed values here */
 | |
| 
 | |
|   switch (key_type) {
 | |
|   case HA_KEYTYPE_INT8:
 | |
|     s_value= (longlong) *(const signed char*) key;
 | |
|     break;
 | |
|   case HA_KEYTYPE_BINARY:
 | |
|     value=(ulonglong)  *key;
 | |
|     break;
 | |
|   case HA_KEYTYPE_SHORT_INT:
 | |
|     s_value= (longlong) sint2korr(key);
 | |
|     break;
 | |
|   case HA_KEYTYPE_USHORT_INT:
 | |
|     value=(ulonglong) uint2korr(key);
 | |
|     break;
 | |
|   case HA_KEYTYPE_LONG_INT:
 | |
|     s_value= (longlong) sint4korr(key);
 | |
|     break;
 | |
|   case HA_KEYTYPE_ULONG_INT:
 | |
|     value=(ulonglong) uint4korr(key);
 | |
|     break;
 | |
|   case HA_KEYTYPE_INT24:
 | |
|     s_value= (longlong) sint3korr(key);
 | |
|     break;
 | |
|   case HA_KEYTYPE_UINT24:
 | |
|     value=(ulonglong) uint3korr(key);
 | |
|     break;
 | |
|   case HA_KEYTYPE_FLOAT:                        /* This shouldn't be used */
 | |
|   {
 | |
|     float f_1;
 | |
|     float4get(f_1,key);
 | |
|     /* Ignore negative values */
 | |
|     value = (f_1 < (float) 0.0) ? 0 : (ulonglong) f_1;
 | |
|     break;
 | |
|   }
 | |
|   case HA_KEYTYPE_DOUBLE:                       /* This shouldn't be used */
 | |
|   {
 | |
|     double f_1;
 | |
|     float8get(f_1,key);
 | |
|     /* Ignore negative values */
 | |
|     value = (f_1 < 0.0) ? 0 : (ulonglong) f_1;
 | |
|     break;
 | |
|   }
 | |
|   case HA_KEYTYPE_LONGLONG:
 | |
|     s_value= sint8korr(key);
 | |
|     break;
 | |
|   case HA_KEYTYPE_ULONGLONG:
 | |
|     value= uint8korr(key);
 | |
|     break;
 | |
|   default:
 | |
|     DBUG_ASSERT(0);
 | |
|     value=0;                                    /* Error */
 | |
|     break;
 | |
|   }
 | |
| 
 | |
|   /*
 | |
|     The following code works becasue if s_value < 0 then value is 0
 | |
|     and if s_value == 0 then value will contain either s_value or the
 | |
|     correct value.
 | |
|   */
 | |
|   return (s_value > 0) ? (ulonglong) s_value : value;
 | |
| }
 |