[205] | 1 | /*
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| 2 | ** 2002 February 23
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| 3 | **
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| 4 | ** The author disclaims copyright to this source code. In place of
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| 5 | ** a legal notice, here is a blessing:
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| 6 | **
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| 7 | ** May you do good and not evil.
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| 8 | ** May you find forgiveness for yourself and forgive others.
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| 9 | ** May you share freely, never taking more than you give.
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| 10 | **
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| 11 | *************************************************************************
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| 12 | ** This file contains the C functions that implement various SQL
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| 13 | ** functions of SQLite.
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| 14 | **
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| 15 | ** There is only one exported symbol in this file - the function
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| 16 | ** sqliteRegisterBuildinFunctions() found at the bottom of the file.
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| 17 | ** All other code has file scope.
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| 18 | **
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| 19 | ** $Id: func.c,v 1.43.2.3 2004/07/18 23:03:11 drh Exp $
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| 20 | */
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| 21 | #include <ctype.h>
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| 22 | #include <math.h>
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| 23 | #include <stdlib.h>
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| 24 | #include <assert.h>
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| 25 | #include "sqliteInt.h"
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| 26 | #include "os.h"
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| 27 |
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| 28 | /*
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| 29 | ** Implementation of the non-aggregate min() and max() functions
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| 30 | */
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| 31 | static void minmaxFunc(sqlite_func *context, int argc, const char **argv){
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| 32 | const char *zBest;
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| 33 | int i;
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| 34 | int (*xCompare)(const char*, const char*);
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| 35 | int mask; /* 0 for min() or 0xffffffff for max() */
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| 36 |
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| 37 | if( argc==0 ) return;
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| 38 | mask = (int)sqlite_user_data(context);
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| 39 | zBest = argv[0];
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| 40 | if( zBest==0 ) return;
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| 41 | if( argv[1][0]=='n' ){
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| 42 | xCompare = sqliteCompare;
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| 43 | }else{
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| 44 | xCompare = strcmp;
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| 45 | }
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| 46 | for(i=2; i<argc; i+=2){
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| 47 | if( argv[i]==0 ) return;
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| 48 | if( (xCompare(argv[i], zBest)^mask)<0 ){
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| 49 | zBest = argv[i];
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| 50 | }
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| 51 | }
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| 52 | sqlite_set_result_string(context, zBest, -1);
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| 53 | }
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| 54 |
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| 55 | /*
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| 56 | ** Return the type of the argument.
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| 57 | */
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| 58 | static void typeofFunc(sqlite_func *context, int argc, const char **argv){
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| 59 | assert( argc==2 );
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| 60 | sqlite_set_result_string(context, argv[1], -1);
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| 61 | }
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| 62 |
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| 63 | /*
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| 64 | ** Implementation of the length() function
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| 65 | */
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| 66 | static void lengthFunc(sqlite_func *context, int argc, const char **argv){
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| 67 | const char *z;
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| 68 | int len;
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| 69 |
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| 70 | assert( argc==1 );
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| 71 | z = argv[0];
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| 72 | if( z==0 ) return;
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| 73 | #ifdef SQLITE_UTF8
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| 74 | for(len=0; *z; z++){ if( (0xc0&*z)!=0x80 ) len++; }
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| 75 | #else
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| 76 | len = strlen(z);
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| 77 | #endif
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| 78 | sqlite_set_result_int(context, len);
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| 79 | }
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| 80 |
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| 81 | /*
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| 82 | ** Implementation of the abs() function
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| 83 | */
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| 84 | static void absFunc(sqlite_func *context, int argc, const char **argv){
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| 85 | const char *z;
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| 86 | assert( argc==1 );
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| 87 | z = argv[0];
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| 88 | if( z==0 ) return;
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| 89 | if( z[0]=='-' && isdigit(z[1]) ) z++;
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| 90 | sqlite_set_result_string(context, z, -1);
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| 91 | }
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| 92 |
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| 93 | /*
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| 94 | ** Implementation of the substr() function
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| 95 | */
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| 96 | static void substrFunc(sqlite_func *context, int argc, const char **argv){
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| 97 | const char *z;
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| 98 | #ifdef SQLITE_UTF8
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| 99 | const char *z2;
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| 100 | int i;
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| 101 | #endif
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| 102 | int p1, p2, len;
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| 103 | assert( argc==3 );
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| 104 | z = argv[0];
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| 105 | if( z==0 ) return;
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| 106 | p1 = atoi(argv[1]?argv[1]:0);
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| 107 | p2 = atoi(argv[2]?argv[2]:0);
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| 108 | #ifdef SQLITE_UTF8
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| 109 | for(len=0, z2=z; *z2; z2++){ if( (0xc0&*z2)!=0x80 ) len++; }
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| 110 | #else
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| 111 | len = strlen(z);
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| 112 | #endif
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| 113 | if( p1<0 ){
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| 114 | p1 += len;
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| 115 | if( p1<0 ){
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| 116 | p2 += p1;
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| 117 | p1 = 0;
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| 118 | }
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| 119 | }else if( p1>0 ){
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| 120 | p1--;
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| 121 | }
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| 122 | if( p1+p2>len ){
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| 123 | p2 = len-p1;
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| 124 | }
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| 125 | #ifdef SQLITE_UTF8
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| 126 | for(i=0; i<p1 && z[i]; i++){
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| 127 | if( (z[i]&0xc0)==0x80 ) p1++;
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| 128 | }
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| 129 | while( z[i] && (z[i]&0xc0)==0x80 ){ i++; p1++; }
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| 130 | for(; i<p1+p2 && z[i]; i++){
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| 131 | if( (z[i]&0xc0)==0x80 ) p2++;
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| 132 | }
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| 133 | while( z[i] && (z[i]&0xc0)==0x80 ){ i++; p2++; }
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| 134 | #endif
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| 135 | if( p2<0 ) p2 = 0;
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| 136 | sqlite_set_result_string(context, &z[p1], p2);
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| 137 | }
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| 138 |
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| 139 | /*
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| 140 | ** Implementation of the round() function
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| 141 | */
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| 142 | static void roundFunc(sqlite_func *context, int argc, const char **argv){
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| 143 | int n;
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| 144 | double r;
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| 145 | char zBuf[100];
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| 146 | assert( argc==1 || argc==2 );
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| 147 | if( argv[0]==0 || (argc==2 && argv[1]==0) ) return;
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| 148 | n = argc==2 ? atoi(argv[1]) : 0;
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| 149 | if( n>30 ) n = 30;
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| 150 | if( n<0 ) n = 0;
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| 151 | r = sqliteAtoF(argv[0], 0);
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| 152 | sprintf(zBuf,"%.*f",n,r);
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| 153 | sqlite_set_result_string(context, zBuf, -1);
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| 154 | }
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| 155 |
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| 156 | /*
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| 157 | ** Implementation of the upper() and lower() SQL functions.
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| 158 | */
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| 159 | static void upperFunc(sqlite_func *context, int argc, const char **argv){
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| 160 | unsigned char *z;
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| 161 | int i;
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| 162 | if( argc<1 || argv[0]==0 ) return;
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| 163 | z = (unsigned char*)sqlite_set_result_string(context, argv[0], -1);
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| 164 | if( z==0 ) return;
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| 165 | for(i=0; z[i]; i++){
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| 166 | if( islower(z[i]) ) z[i] = toupper(z[i]);
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| 167 | }
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| 168 | }
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| 169 | static void lowerFunc(sqlite_func *context, int argc, const char **argv){
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| 170 | unsigned char *z;
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| 171 | int i;
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| 172 | if( argc<1 || argv[0]==0 ) return;
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| 173 | z = (unsigned char*)sqlite_set_result_string(context, argv[0], -1);
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| 174 | if( z==0 ) return;
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| 175 | for(i=0; z[i]; i++){
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| 176 | if( isupper(z[i]) ) z[i] = tolower(z[i]);
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| 177 | }
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| 178 | }
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| 179 |
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| 180 | /*
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| 181 | ** Implementation of the IFNULL(), NVL(), and COALESCE() functions.
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| 182 | ** All three do the same thing. They return the first non-NULL
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| 183 | ** argument.
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| 184 | */
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| 185 | static void ifnullFunc(sqlite_func *context, int argc, const char **argv){
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| 186 | int i;
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| 187 | for(i=0; i<argc; i++){
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| 188 | if( argv[i] ){
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| 189 | sqlite_set_result_string(context, argv[i], -1);
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| 190 | break;
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| 191 | }
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| 192 | }
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| 193 | }
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| 194 |
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| 195 | /*
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| 196 | ** Implementation of random(). Return a random integer.
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| 197 | */
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| 198 | static void randomFunc(sqlite_func *context, int argc, const char **argv){
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| 199 | int r;
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| 200 | sqliteRandomness(sizeof(r), &r);
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| 201 | sqlite_set_result_int(context, r);
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| 202 | }
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| 203 |
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| 204 | /*
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| 205 | ** Implementation of the last_insert_rowid() SQL function. The return
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| 206 | ** value is the same as the sqlite_last_insert_rowid() API function.
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| 207 | */
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| 208 | static void last_insert_rowid(sqlite_func *context, int arg, const char **argv){
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| 209 | sqlite *db = sqlite_user_data(context);
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| 210 | sqlite_set_result_int(context, sqlite_last_insert_rowid(db));
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| 211 | }
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| 212 |
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| 213 | /*
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| 214 | ** Implementation of the change_count() SQL function. The return
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| 215 | ** value is the same as the sqlite_changes() API function.
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| 216 | */
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| 217 | static void change_count(sqlite_func *context, int arg, const char **argv){
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| 218 | sqlite *db = sqlite_user_data(context);
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| 219 | sqlite_set_result_int(context, sqlite_changes(db));
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| 220 | }
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| 221 |
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| 222 | /*
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| 223 | ** Implementation of the last_statement_change_count() SQL function. The
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| 224 | ** return value is the same as the sqlite_last_statement_changes() API function.
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| 225 | */
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| 226 | static void last_statement_change_count(sqlite_func *context, int arg,
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| 227 | const char **argv){
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| 228 | sqlite *db = sqlite_user_data(context);
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| 229 | sqlite_set_result_int(context, sqlite_last_statement_changes(db));
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| 230 | }
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| 231 |
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| 232 | /*
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| 233 | ** Implementation of the like() SQL function. This function implements
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| 234 | ** the build-in LIKE operator. The first argument to the function is the
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| 235 | ** string and the second argument is the pattern. So, the SQL statements:
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| 236 | **
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| 237 | ** A LIKE B
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| 238 | **
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| 239 | ** is implemented as like(A,B).
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| 240 | */
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| 241 | static void likeFunc(sqlite_func *context, int arg, const char **argv){
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| 242 | if( argv[0]==0 || argv[1]==0 ) return;
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| 243 | sqlite_set_result_int(context,
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| 244 | sqliteLikeCompare((const unsigned char*)argv[0],
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| 245 | (const unsigned char*)argv[1]));
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| 246 | }
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| 247 |
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| 248 | /*
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| 249 | ** Implementation of the glob() SQL function. This function implements
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| 250 | ** the build-in GLOB operator. The first argument to the function is the
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| 251 | ** string and the second argument is the pattern. So, the SQL statements:
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| 252 | **
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| 253 | ** A GLOB B
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| 254 | **
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| 255 | ** is implemented as glob(A,B).
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| 256 | */
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| 257 | static void globFunc(sqlite_func *context, int arg, const char **argv){
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| 258 | if( argv[0]==0 || argv[1]==0 ) return;
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| 259 | sqlite_set_result_int(context,
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| 260 | sqliteGlobCompare((const unsigned char*)argv[0],
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| 261 | (const unsigned char*)argv[1]));
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| 262 | }
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| 263 |
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| 264 | /*
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| 265 | ** Implementation of the NULLIF(x,y) function. The result is the first
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| 266 | ** argument if the arguments are different. The result is NULL if the
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| 267 | ** arguments are equal to each other.
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| 268 | */
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| 269 | static void nullifFunc(sqlite_func *context, int argc, const char **argv){
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| 270 | if( argv[0]!=0 && sqliteCompare(argv[0],argv[1])!=0 ){
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| 271 | sqlite_set_result_string(context, argv[0], -1);
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| 272 | }
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| 273 | }
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| 274 |
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| 275 | /*
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| 276 | ** Implementation of the VERSION(*) function. The result is the version
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| 277 | ** of the SQLite library that is running.
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| 278 | */
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| 279 | static void versionFunc(sqlite_func *context, int argc, const char **argv){
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| 280 | sqlite_set_result_string(context, sqlite_version, -1);
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| 281 | }
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| 282 |
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| 283 | /*
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| 284 | ** EXPERIMENTAL - This is not an official function. The interface may
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| 285 | ** change. This function may disappear. Do not write code that depends
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| 286 | ** on this function.
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| 287 | **
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| 288 | ** Implementation of the QUOTE() function. This function takes a single
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| 289 | ** argument. If the argument is numeric, the return value is the same as
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| 290 | ** the argument. If the argument is NULL, the return value is the string
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| 291 | ** "NULL". Otherwise, the argument is enclosed in single quotes with
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| 292 | ** single-quote escapes.
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| 293 | */
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| 294 | static void quoteFunc(sqlite_func *context, int argc, const char **argv){
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| 295 | if( argc<1 ) return;
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| 296 | if( argv[0]==0 ){
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| 297 | sqlite_set_result_string(context, "NULL", 4);
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| 298 | }else if( sqliteIsNumber(argv[0]) ){
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| 299 | sqlite_set_result_string(context, argv[0], -1);
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| 300 | }else{
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| 301 | int i,j,n;
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| 302 | char *z;
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| 303 | for(i=n=0; argv[0][i]; i++){ if( argv[0][i]=='\'' ) n++; }
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| 304 | z = sqliteMalloc( i+n+3 );
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| 305 | if( z==0 ) return;
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| 306 | z[0] = '\'';
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| 307 | for(i=0, j=1; argv[0][i]; i++){
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| 308 | z[j++] = argv[0][i];
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| 309 | if( argv[0][i]=='\'' ){
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| 310 | z[j++] = '\'';
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| 311 | }
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| 312 | }
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| 313 | z[j++] = '\'';
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| 314 | z[j] = 0;
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| 315 | sqlite_set_result_string(context, z, j);
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| 316 | sqliteFree(z);
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| 317 | }
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| 318 | }
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| 319 |
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| 320 | #ifdef SQLITE_SOUNDEX
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| 321 | /*
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| 322 | ** Compute the soundex encoding of a word.
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| 323 | */
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| 324 | static void soundexFunc(sqlite_func *context, int argc, const char **argv){
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| 325 | char zResult[8];
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| 326 | const char *zIn;
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| 327 | int i, j;
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| 328 | static const unsigned char iCode[] = {
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| 329 | 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
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| 330 | 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
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| 331 | 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
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| 332 | 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
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| 333 | 0, 0, 1, 2, 3, 0, 1, 2, 0, 0, 2, 2, 4, 5, 5, 0,
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| 334 | 1, 2, 6, 2, 3, 0, 1, 0, 2, 0, 2, 0, 0, 0, 0, 0,
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| 335 | 0, 0, 1, 2, 3, 0, 1, 2, 0, 0, 2, 2, 4, 5, 5, 0,
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| 336 | 1, 2, 6, 2, 3, 0, 1, 0, 2, 0, 2, 0, 0, 0, 0, 0,
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| 337 | };
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| 338 | assert( argc==1 );
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| 339 | zIn = argv[0];
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| 340 | for(i=0; zIn[i] && !isalpha(zIn[i]); i++){}
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| 341 | if( zIn[i] ){
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| 342 | zResult[0] = toupper(zIn[i]);
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| 343 | for(j=1; j<4 && zIn[i]; i++){
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| 344 | int code = iCode[zIn[i]&0x7f];
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| 345 | if( code>0 ){
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| 346 | zResult[j++] = code + '0';
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| 347 | }
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| 348 | }
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| 349 | while( j<4 ){
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| 350 | zResult[j++] = '0';
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| 351 | }
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| 352 | zResult[j] = 0;
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| 353 | sqlite_set_result_string(context, zResult, 4);
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| 354 | }else{
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| 355 | sqlite_set_result_string(context, "?000", 4);
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| 356 | }
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| 357 | }
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| 358 | #endif
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| 359 |
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| 360 | #ifdef SQLITE_TEST
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| 361 | /*
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| 362 | ** This function generates a string of random characters. Used for
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| 363 | ** generating test data.
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| 364 | */
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| 365 | static void randStr(sqlite_func *context, int argc, const char **argv){
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| 366 | static const unsigned char zSrc[] =
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| 367 | "abcdefghijklmnopqrstuvwxyz"
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| 368 | "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
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| 369 | "0123456789"
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| 370 | ".-!,:*^+=_|?/<> ";
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| 371 | int iMin, iMax, n, r, i;
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| 372 | unsigned char zBuf[1000];
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| 373 | if( argc>=1 ){
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| 374 | iMin = atoi(argv[0]);
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| 375 | if( iMin<0 ) iMin = 0;
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| 376 | if( iMin>=sizeof(zBuf) ) iMin = sizeof(zBuf)-1;
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| 377 | }else{
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| 378 | iMin = 1;
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| 379 | }
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| 380 | if( argc>=2 ){
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| 381 | iMax = atoi(argv[1]);
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| 382 | if( iMax<iMin ) iMax = iMin;
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| 383 | if( iMax>=sizeof(zBuf) ) iMax = sizeof(zBuf)-1;
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| 384 | }else{
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| 385 | iMax = 50;
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| 386 | }
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| 387 | n = iMin;
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| 388 | if( iMax>iMin ){
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| 389 | sqliteRandomness(sizeof(r), &r);
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| 390 | r &= 0x7fffffff;
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| 391 | n += r%(iMax + 1 - iMin);
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| 392 | }
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| 393 | assert( n<sizeof(zBuf) );
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| 394 | sqliteRandomness(n, zBuf);
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| 395 | for(i=0; i<n; i++){
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| 396 | zBuf[i] = zSrc[zBuf[i]%(sizeof(zSrc)-1)];
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| 397 | }
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| 398 | zBuf[n] = 0;
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| 399 | sqlite_set_result_string(context, zBuf, n);
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| 400 | }
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| 401 | #endif
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| 402 |
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| 403 | /*
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| 404 | ** An instance of the following structure holds the context of a
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| 405 | ** sum() or avg() aggregate computation.
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| 406 | */
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| 407 | typedef struct SumCtx SumCtx;
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| 408 | struct SumCtx {
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| 409 | double sum; /* Sum of terms */
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| 410 | int cnt; /* Number of elements summed */
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| 411 | };
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| 412 |
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| 413 | /*
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| 414 | ** Routines used to compute the sum or average.
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| 415 | */
|
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| 416 | static void sumStep(sqlite_func *context, int argc, const char **argv){
|
---|
| 417 | SumCtx *p;
|
---|
| 418 | if( argc<1 ) return;
|
---|
| 419 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 420 | if( p && argv[0] ){
|
---|
| 421 | p->sum += sqliteAtoF(argv[0], 0);
|
---|
| 422 | p->cnt++;
|
---|
| 423 | }
|
---|
| 424 | }
|
---|
| 425 | static void sumFinalize(sqlite_func *context){
|
---|
| 426 | SumCtx *p;
|
---|
| 427 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 428 | sqlite_set_result_double(context, p ? p->sum : 0.0);
|
---|
| 429 | }
|
---|
| 430 | static void avgFinalize(sqlite_func *context){
|
---|
| 431 | SumCtx *p;
|
---|
| 432 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 433 | if( p && p->cnt>0 ){
|
---|
| 434 | sqlite_set_result_double(context, p->sum/(double)p->cnt);
|
---|
| 435 | }
|
---|
| 436 | }
|
---|
| 437 |
|
---|
| 438 | /*
|
---|
| 439 | ** An instance of the following structure holds the context of a
|
---|
| 440 | ** variance or standard deviation computation.
|
---|
| 441 | */
|
---|
| 442 | typedef struct StdDevCtx StdDevCtx;
|
---|
| 443 | struct StdDevCtx {
|
---|
| 444 | double sum; /* Sum of terms */
|
---|
| 445 | double sum2; /* Sum of the squares of terms */
|
---|
| 446 | int cnt; /* Number of terms counted */
|
---|
| 447 | };
|
---|
| 448 |
|
---|
| 449 | #if 0 /* Omit because math library is required */
|
---|
| 450 | /*
|
---|
| 451 | ** Routines used to compute the standard deviation as an aggregate.
|
---|
| 452 | */
|
---|
| 453 | static void stdDevStep(sqlite_func *context, int argc, const char **argv){
|
---|
| 454 | StdDevCtx *p;
|
---|
| 455 | double x;
|
---|
| 456 | if( argc<1 ) return;
|
---|
| 457 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 458 | if( p && argv[0] ){
|
---|
| 459 | x = sqliteAtoF(argv[0], 0);
|
---|
| 460 | p->sum += x;
|
---|
| 461 | p->sum2 += x*x;
|
---|
| 462 | p->cnt++;
|
---|
| 463 | }
|
---|
| 464 | }
|
---|
| 465 | static void stdDevFinalize(sqlite_func *context){
|
---|
| 466 | double rN = sqlite_aggregate_count(context);
|
---|
| 467 | StdDevCtx *p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 468 | if( p && p->cnt>1 ){
|
---|
| 469 | double rCnt = cnt;
|
---|
| 470 | sqlite_set_result_double(context,
|
---|
| 471 | sqrt((p->sum2 - p->sum*p->sum/rCnt)/(rCnt-1.0)));
|
---|
| 472 | }
|
---|
| 473 | }
|
---|
| 474 | #endif
|
---|
| 475 |
|
---|
| 476 | /*
|
---|
| 477 | ** The following structure keeps track of state information for the
|
---|
| 478 | ** count() aggregate function.
|
---|
| 479 | */
|
---|
| 480 | typedef struct CountCtx CountCtx;
|
---|
| 481 | struct CountCtx {
|
---|
| 482 | int n;
|
---|
| 483 | };
|
---|
| 484 |
|
---|
| 485 | /*
|
---|
| 486 | ** Routines to implement the count() aggregate function.
|
---|
| 487 | */
|
---|
| 488 | static void countStep(sqlite_func *context, int argc, const char **argv){
|
---|
| 489 | CountCtx *p;
|
---|
| 490 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 491 | if( (argc==0 || argv[0]) && p ){
|
---|
| 492 | p->n++;
|
---|
| 493 | }
|
---|
| 494 | }
|
---|
| 495 | static void countFinalize(sqlite_func *context){
|
---|
| 496 | CountCtx *p;
|
---|
| 497 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 498 | sqlite_set_result_int(context, p ? p->n : 0);
|
---|
| 499 | }
|
---|
| 500 |
|
---|
| 501 | /*
|
---|
| 502 | ** This function tracks state information for the min() and max()
|
---|
| 503 | ** aggregate functions.
|
---|
| 504 | */
|
---|
| 505 | typedef struct MinMaxCtx MinMaxCtx;
|
---|
| 506 | struct MinMaxCtx {
|
---|
| 507 | char *z; /* The best so far */
|
---|
| 508 | char zBuf[28]; /* Space that can be used for storage */
|
---|
| 509 | };
|
---|
| 510 |
|
---|
| 511 | /*
|
---|
| 512 | ** Routines to implement min() and max() aggregate functions.
|
---|
| 513 | */
|
---|
| 514 | static void minmaxStep(sqlite_func *context, int argc, const char **argv){
|
---|
| 515 | MinMaxCtx *p;
|
---|
| 516 | int (*xCompare)(const char*, const char*);
|
---|
| 517 | int mask; /* 0 for min() or 0xffffffff for max() */
|
---|
| 518 |
|
---|
| 519 | assert( argc==2 );
|
---|
| 520 | if( argv[0]==0 ) return; /* Ignore NULL values */
|
---|
| 521 | if( argv[1][0]=='n' ){
|
---|
| 522 | xCompare = sqliteCompare;
|
---|
| 523 | }else{
|
---|
| 524 | xCompare = strcmp;
|
---|
| 525 | }
|
---|
| 526 | mask = (int)sqlite_user_data(context);
|
---|
| 527 | assert( mask==0 || mask==-1 );
|
---|
| 528 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 529 | if( p==0 || argc<1 ) return;
|
---|
| 530 | if( p->z==0 || (xCompare(argv[0],p->z)^mask)<0 ){
|
---|
| 531 | int len;
|
---|
| 532 | if( p->zBuf[0] ){
|
---|
| 533 | sqliteFree(p->z);
|
---|
| 534 | }
|
---|
| 535 | len = strlen(argv[0]);
|
---|
| 536 | if( len < sizeof(p->zBuf)-1 ){
|
---|
| 537 | p->z = &p->zBuf[1];
|
---|
| 538 | p->zBuf[0] = 0;
|
---|
| 539 | }else{
|
---|
| 540 | p->z = sqliteMalloc( len+1 );
|
---|
| 541 | p->zBuf[0] = 1;
|
---|
| 542 | if( p->z==0 ) return;
|
---|
| 543 | }
|
---|
| 544 | strcpy(p->z, argv[0]);
|
---|
| 545 | }
|
---|
| 546 | }
|
---|
| 547 | static void minMaxFinalize(sqlite_func *context){
|
---|
| 548 | MinMaxCtx *p;
|
---|
| 549 | p = sqlite_aggregate_context(context, sizeof(*p));
|
---|
| 550 | if( p && p->z && p->zBuf[0]<2 ){
|
---|
| 551 | sqlite_set_result_string(context, p->z, strlen(p->z));
|
---|
| 552 | }
|
---|
| 553 | if( p && p->zBuf[0] ){
|
---|
| 554 | sqliteFree(p->z);
|
---|
| 555 | }
|
---|
| 556 | }
|
---|
| 557 |
|
---|
| 558 | /*
|
---|
| 559 | ** This function registered all of the above C functions as SQL
|
---|
| 560 | ** functions. This should be the only routine in this file with
|
---|
| 561 | ** external linkage.
|
---|
| 562 | */
|
---|
| 563 | void sqliteRegisterBuiltinFunctions(sqlite *db){
|
---|
| 564 | static struct {
|
---|
| 565 | char *zName;
|
---|
| 566 | signed char nArg;
|
---|
| 567 | signed char dataType;
|
---|
| 568 | u8 argType; /* 0: none. 1: db 2: (-1) */
|
---|
| 569 | void (*xFunc)(sqlite_func*,int,const char**);
|
---|
| 570 | } aFuncs[] = {
|
---|
| 571 | { "min", -1, SQLITE_ARGS, 0, minmaxFunc },
|
---|
| 572 | { "min", 0, 0, 0, 0 },
|
---|
| 573 | { "max", -1, SQLITE_ARGS, 2, minmaxFunc },
|
---|
| 574 | { "max", 0, 0, 2, 0 },
|
---|
| 575 | { "typeof", 1, SQLITE_TEXT, 0, typeofFunc },
|
---|
| 576 | { "length", 1, SQLITE_NUMERIC, 0, lengthFunc },
|
---|
| 577 | { "substr", 3, SQLITE_TEXT, 0, substrFunc },
|
---|
| 578 | { "abs", 1, SQLITE_NUMERIC, 0, absFunc },
|
---|
| 579 | { "round", 1, SQLITE_NUMERIC, 0, roundFunc },
|
---|
| 580 | { "round", 2, SQLITE_NUMERIC, 0, roundFunc },
|
---|
| 581 | { "upper", 1, SQLITE_TEXT, 0, upperFunc },
|
---|
| 582 | { "lower", 1, SQLITE_TEXT, 0, lowerFunc },
|
---|
| 583 | { "coalesce", -1, SQLITE_ARGS, 0, ifnullFunc },
|
---|
| 584 | { "coalesce", 0, 0, 0, 0 },
|
---|
| 585 | { "coalesce", 1, 0, 0, 0 },
|
---|
| 586 | { "ifnull", 2, SQLITE_ARGS, 0, ifnullFunc },
|
---|
| 587 | { "random", -1, SQLITE_NUMERIC, 0, randomFunc },
|
---|
| 588 | { "like", 2, SQLITE_NUMERIC, 0, likeFunc },
|
---|
| 589 | { "glob", 2, SQLITE_NUMERIC, 0, globFunc },
|
---|
| 590 | { "nullif", 2, SQLITE_ARGS, 0, nullifFunc },
|
---|
| 591 | { "sqlite_version",0,SQLITE_TEXT, 0, versionFunc},
|
---|
| 592 | { "quote", 1, SQLITE_ARGS, 0, quoteFunc },
|
---|
| 593 | { "last_insert_rowid", 0, SQLITE_NUMERIC, 1, last_insert_rowid },
|
---|
| 594 | { "change_count", 0, SQLITE_NUMERIC, 1, change_count },
|
---|
| 595 | { "last_statement_change_count",
|
---|
| 596 | 0, SQLITE_NUMERIC, 1, last_statement_change_count },
|
---|
| 597 | #ifdef SQLITE_SOUNDEX
|
---|
| 598 | { "soundex", 1, SQLITE_TEXT, 0, soundexFunc},
|
---|
| 599 | #endif
|
---|
| 600 | #ifdef SQLITE_TEST
|
---|
| 601 | { "randstr", 2, SQLITE_TEXT, 0, randStr },
|
---|
| 602 | #endif
|
---|
| 603 | };
|
---|
| 604 | static struct {
|
---|
| 605 | char *zName;
|
---|
| 606 | signed char nArg;
|
---|
| 607 | signed char dataType;
|
---|
| 608 | u8 argType;
|
---|
| 609 | void (*xStep)(sqlite_func*,int,const char**);
|
---|
| 610 | void (*xFinalize)(sqlite_func*);
|
---|
| 611 | } aAggs[] = {
|
---|
| 612 | { "min", 1, 0, 0, minmaxStep, minMaxFinalize },
|
---|
| 613 | { "max", 1, 0, 2, minmaxStep, minMaxFinalize },
|
---|
| 614 | { "sum", 1, SQLITE_NUMERIC, 0, sumStep, sumFinalize },
|
---|
| 615 | { "avg", 1, SQLITE_NUMERIC, 0, sumStep, avgFinalize },
|
---|
| 616 | { "count", 0, SQLITE_NUMERIC, 0, countStep, countFinalize },
|
---|
| 617 | { "count", 1, SQLITE_NUMERIC, 0, countStep, countFinalize },
|
---|
| 618 | #if 0
|
---|
| 619 | { "stddev", 1, SQLITE_NUMERIC, 0, stdDevStep, stdDevFinalize },
|
---|
| 620 | #endif
|
---|
| 621 | };
|
---|
| 622 | static const char *azTypeFuncs[] = { "min", "max", "typeof" };
|
---|
| 623 | int i;
|
---|
| 624 |
|
---|
| 625 | for(i=0; i<sizeof(aFuncs)/sizeof(aFuncs[0]); i++){
|
---|
| 626 | void *pArg;
|
---|
| 627 | switch( aFuncs[i].argType ){
|
---|
| 628 | case 0: pArg = 0; break;
|
---|
| 629 | case 1: pArg = db; break;
|
---|
| 630 | case 2: pArg = (void*)(-1); break;
|
---|
| 631 | }
|
---|
| 632 | sqlite_create_function(db, aFuncs[i].zName,
|
---|
| 633 | aFuncs[i].nArg, aFuncs[i].xFunc, pArg);
|
---|
| 634 | if( aFuncs[i].xFunc ){
|
---|
| 635 | sqlite_function_type(db, aFuncs[i].zName, aFuncs[i].dataType);
|
---|
| 636 | }
|
---|
| 637 | }
|
---|
| 638 | for(i=0; i<sizeof(aAggs)/sizeof(aAggs[0]); i++){
|
---|
| 639 | void *pArg;
|
---|
| 640 | switch( aAggs[i].argType ){
|
---|
| 641 | case 0: pArg = 0; break;
|
---|
| 642 | case 1: pArg = db; break;
|
---|
| 643 | case 2: pArg = (void*)(-1); break;
|
---|
| 644 | }
|
---|
| 645 | sqlite_create_aggregate(db, aAggs[i].zName,
|
---|
| 646 | aAggs[i].nArg, aAggs[i].xStep, aAggs[i].xFinalize, pArg);
|
---|
| 647 | sqlite_function_type(db, aAggs[i].zName, aAggs[i].dataType);
|
---|
| 648 | }
|
---|
| 649 | for(i=0; i<sizeof(azTypeFuncs)/sizeof(azTypeFuncs[0]); i++){
|
---|
| 650 | int n = strlen(azTypeFuncs[i]);
|
---|
| 651 | FuncDef *p = sqliteHashFind(&db->aFunc, azTypeFuncs[i], n);
|
---|
| 652 | while( p ){
|
---|
| 653 | p->includeTypes = 1;
|
---|
| 654 | p = p->pNext;
|
---|
| 655 | }
|
---|
| 656 | }
|
---|
| 657 | sqliteRegisterDateTimeFunctions(db);
|
---|
| 658 | }
|
---|