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drhdc04c582002-02-24 01:55:15 +00001/*
2** 2002 February 23
3**
4** The author disclaims copyright to this source code. In place of
5** a legal notice, here is a blessing:
6**
7** May you do good and not evil.
8** May you find forgiveness for yourself and forgive others.
9** May you share freely, never taking more than you give.
10**
11*************************************************************************
12** This file contains the C functions that implement various SQL
13** functions of SQLite.
14**
15** There is only one exported symbol in this file - the function
16** sqliteRegisterBuildinFunctions() found at the bottom of the file.
17** All other code has file scope.
18**
drh739105c2002-05-29 23:22:23 +000019** $Id: func.c,v 1.18 2002/05/29 23:22:23 drh Exp $
drhdc04c582002-02-24 01:55:15 +000020*/
21#include <ctype.h>
drhd3a149e2002-02-24 17:12:53 +000022#include <math.h>
23#include <stdlib.h>
drh0bce8352002-02-28 00:41:10 +000024#include <assert.h>
25#include "sqliteInt.h"
26
27/*
28** Implementation of the non-aggregate min() and max() functions
29*/
30static void minFunc(sqlite_func *context, int argc, const char **argv){
31 const char *zBest;
32 int i;
33
drh89425d52002-02-28 03:04:48 +000034 if( argc==0 ) return;
drh0bce8352002-02-28 00:41:10 +000035 zBest = argv[0];
drh8912d102002-05-26 21:34:58 +000036 if( zBest==0 ) return;
drh0bce8352002-02-28 00:41:10 +000037 for(i=1; i<argc; i++){
drh8912d102002-05-26 21:34:58 +000038 if( argv[i]==0 ) return;
drh0bce8352002-02-28 00:41:10 +000039 if( sqliteCompare(argv[i], zBest)<0 ){
40 zBest = argv[i];
41 }
42 }
43 sqlite_set_result_string(context, zBest, -1);
44}
45static void maxFunc(sqlite_func *context, int argc, const char **argv){
46 const char *zBest;
47 int i;
48
drh89425d52002-02-28 03:04:48 +000049 if( argc==0 ) return;
drh0bce8352002-02-28 00:41:10 +000050 zBest = argv[0];
drh8912d102002-05-26 21:34:58 +000051 if( zBest==0 ) return;
drh0bce8352002-02-28 00:41:10 +000052 for(i=1; i<argc; i++){
drh8912d102002-05-26 21:34:58 +000053 if( argv[i]==0 ) return;
drh0bce8352002-02-28 00:41:10 +000054 if( sqliteCompare(argv[i], zBest)>0 ){
55 zBest = argv[i];
56 }
57 }
58 sqlite_set_result_string(context, zBest, -1);
59}
60
61/*
62** Implementation of the length() function
63*/
64static void lengthFunc(sqlite_func *context, int argc, const char **argv){
65 const char *z;
66 int len;
67
68 assert( argc==1 );
69 z = argv[0];
drh8912d102002-05-26 21:34:58 +000070 if( z==0 ) return;
drh0bce8352002-02-28 00:41:10 +000071#ifdef SQLITE_UTF8
drh8912d102002-05-26 21:34:58 +000072 for(len=0; *z; z++){ if( (0xc0&*z)!=0x80 ) len++; }
drh0bce8352002-02-28 00:41:10 +000073#else
drh8912d102002-05-26 21:34:58 +000074 len = strlen(z);
drh0bce8352002-02-28 00:41:10 +000075#endif
drh0bce8352002-02-28 00:41:10 +000076 sqlite_set_result_int(context, len);
77}
78
79/*
80** Implementation of the abs() function
81*/
82static void absFunc(sqlite_func *context, int argc, const char **argv){
83 const char *z;
84 assert( argc==1 );
85 z = argv[0];
drh8912d102002-05-26 21:34:58 +000086 if( z==0 ) return;
87 if( z[0]=='-' && isdigit(z[1]) ) z++;
drh0bce8352002-02-28 00:41:10 +000088 sqlite_set_result_string(context, z, -1);
89}
90
91/*
92** Implementation of the substr() function
93*/
94static void substrFunc(sqlite_func *context, int argc, const char **argv){
95 const char *z;
96#ifdef SQLITE_UTF8
97 const char *z2;
98 int i;
99#endif
100 int p1, p2, len;
101 assert( argc==3 );
102 z = argv[0];
103 if( z==0 ) return;
104 p1 = atoi(argv[1]?argv[1]:0);
105 p2 = atoi(argv[2]?argv[2]:0);
106#ifdef SQLITE_UTF8
drh47c8a672002-02-28 04:00:12 +0000107 for(len=0, z2=z; *z2; z2++){ if( (0xc0&*z2)!=0x80 ) len++; }
drh0bce8352002-02-28 00:41:10 +0000108#else
109 len = strlen(z);
110#endif
111 if( p1<0 ){
drh89425d52002-02-28 03:04:48 +0000112 p1 += len;
drh653bc752002-02-28 03:31:10 +0000113 if( p1<0 ){
114 p2 += p1;
115 p1 = 0;
116 }
drh0bce8352002-02-28 00:41:10 +0000117 }else if( p1>0 ){
118 p1--;
119 }
120 if( p1+p2>len ){
121 p2 = len-p1;
122 }
123#ifdef SQLITE_UTF8
124 for(i=0; i<p1; i++){
125 assert( z[i] );
drh47c8a672002-02-28 04:00:12 +0000126 if( (z[i]&0xc0)==0x80 ) p1++;
drh0bce8352002-02-28 00:41:10 +0000127 }
drh47c8a672002-02-28 04:00:12 +0000128 while( z[i] && (z[i]&0xc0)==0x80 ){ i++; p1++; }
drh0bce8352002-02-28 00:41:10 +0000129 for(; i<p1+p2; i++){
130 assert( z[i] );
drh47c8a672002-02-28 04:00:12 +0000131 if( (z[i]&0xc0)==0x80 ) p2++;
drh0bce8352002-02-28 00:41:10 +0000132 }
drh47c8a672002-02-28 04:00:12 +0000133 while( z[i] && (z[i]&0xc0)==0x80 ){ i++; p2++; }
drh0bce8352002-02-28 00:41:10 +0000134#endif
drh653bc752002-02-28 03:31:10 +0000135 if( p2<0 ) p2 = 0;
drh0bce8352002-02-28 00:41:10 +0000136 sqlite_set_result_string(context, &z[p1], p2);
137}
138
139/*
140** Implementation of the round() function
141*/
142static void roundFunc(sqlite_func *context, int argc, const char **argv){
143 int n;
144 double r;
145 char zBuf[100];
146 assert( argc==1 || argc==2 );
drh8912d102002-05-26 21:34:58 +0000147 if( argv[0]==0 || (argc==2 && argv[1]==0) ) return;
148 n = argc==2 ? atoi(argv[1]) : 0;
drh0bce8352002-02-28 00:41:10 +0000149 if( n>30 ) n = 30;
150 if( n<0 ) n = 0;
drh8912d102002-05-26 21:34:58 +0000151 r = atof(argv[0]);
drh0bce8352002-02-28 00:41:10 +0000152 sprintf(zBuf,"%.*f",n,r);
153 sqlite_set_result_string(context, zBuf, -1);
154}
drhdc04c582002-02-24 01:55:15 +0000155
156/*
157** Implementation of the upper() and lower() SQL functions.
158*/
drh1350b032002-02-27 19:00:20 +0000159static void upperFunc(sqlite_func *context, int argc, const char **argv){
drhdc04c582002-02-24 01:55:15 +0000160 char *z;
161 int i;
162 if( argc<1 || argv[0]==0 ) return;
163 z = sqlite_set_result_string(context, argv[0], -1);
164 if( z==0 ) return;
165 for(i=0; z[i]; i++){
166 if( islower(z[i]) ) z[i] = toupper(z[i]);
167 }
168}
drh1350b032002-02-27 19:00:20 +0000169static void lowerFunc(sqlite_func *context, int argc, const char **argv){
drhdc04c582002-02-24 01:55:15 +0000170 char *z;
171 int i;
172 if( argc<1 || argv[0]==0 ) return;
173 z = sqlite_set_result_string(context, argv[0], -1);
174 if( z==0 ) return;
175 for(i=0; z[i]; i++){
176 if( isupper(z[i]) ) z[i] = tolower(z[i]);
177 }
178}
179
180/*
drhfbc99082002-02-28 03:14:18 +0000181** Implementation of the IFNULL(), NVL(), and COALESCE() functions.
182** All three do the same thing. They return the first argument
183** non-NULL argument.
drh3212e182002-02-28 00:46:26 +0000184*/
185static void ifnullFunc(sqlite_func *context, int argc, const char **argv){
drhfbc99082002-02-28 03:14:18 +0000186 int i;
187 for(i=0; i<argc; i++){
188 if( argv[i] ){
189 sqlite_set_result_string(context, argv[i], -1);
190 break;
191 }
192 }
drh3212e182002-02-28 00:46:26 +0000193}
194
195/*
drhf9ffac92002-03-02 19:00:31 +0000196** Implementation of random(). Return a random integer.
197*/
198static void randomFunc(sqlite_func *context, int argc, const char **argv){
199 sqlite_set_result_int(context, sqliteRandomInteger());
200}
201
202/*
drh6ed41ad2002-04-06 14:10:47 +0000203** Implementation of the last_insert_rowid() SQL function. The return
204** value is the same as the sqlite_last_insert_rowid() API function.
205*/
drh0ac65892002-04-20 14:24:41 +0000206static void last_insert_rowid(sqlite_func *context, int arg, const char **argv){
drh6ed41ad2002-04-06 14:10:47 +0000207 sqlite *db = sqlite_user_data(context);
208 sqlite_set_result_int(context, sqlite_last_insert_rowid(db));
209}
210
211/*
drh0ac65892002-04-20 14:24:41 +0000212** Implementation of the like() SQL function. This function implements
213** the build-in LIKE operator. The first argument to the function is the
214** string and the second argument is the pattern. So, the SQL statements:
215**
216** A LIKE B
217**
218** is implemented as like(A,B).
219*/
220static void likeFunc(sqlite_func *context, int arg, const char **argv){
drh8912d102002-05-26 21:34:58 +0000221 if( argv[0]==0 || argv[1]==0 ) return;
222 sqlite_set_result_int(context, sqliteLikeCompare(argv[0], argv[1]));
drh0ac65892002-04-20 14:24:41 +0000223}
224
225/*
226** Implementation of the glob() SQL function. This function implements
227** the build-in GLOB operator. The first argument to the function is the
228** string and the second argument is the pattern. So, the SQL statements:
229**
230** A GLOB B
231**
232** is implemented as glob(A,B).
233*/
234static void globFunc(sqlite_func *context, int arg, const char **argv){
drh8912d102002-05-26 21:34:58 +0000235 if( argv[0]==0 || argv[1]==0 ) return;
236 sqlite_set_result_int(context, sqliteGlobCompare(argv[0], argv[1]));
237}
238
239/*
240** Implementation of the NULLIF(x,y) function. The result is the first
241** argument if the arguments are different. The result is NULL if the
242** arguments are equal to each other.
243*/
244static void nullifFunc(sqlite_func *context, int argc, const char **argv){
245 if( argv[0]!=0 && sqliteCompare(argv[0],argv[1])!=0 ){
246 sqlite_set_result_string(context, argv[0], -1);
247 }
drh0ac65892002-04-20 14:24:41 +0000248}
249
250/*
drhd3a149e2002-02-24 17:12:53 +0000251** An instance of the following structure holds the context of a
drhdd5baa92002-02-27 19:50:59 +0000252** sum() or avg() aggregate computation.
253*/
254typedef struct SumCtx SumCtx;
255struct SumCtx {
256 double sum; /* Sum of terms */
drh739105c2002-05-29 23:22:23 +0000257 int cnt; /* Number of elements summed */
drhdd5baa92002-02-27 19:50:59 +0000258};
259
260/*
261** Routines used to compute the sum or average.
262*/
263static void sumStep(sqlite_func *context, int argc, const char **argv){
264 SumCtx *p;
drhdd5baa92002-02-27 19:50:59 +0000265 if( argc<1 ) return;
266 p = sqlite_aggregate_context(context, sizeof(*p));
drh739105c2002-05-29 23:22:23 +0000267 if( p && argv[0] ){
268 p->sum += atof(argv[0]);
269 p->cnt++;
270 }
drhdd5baa92002-02-27 19:50:59 +0000271}
272static void sumFinalize(sqlite_func *context){
273 SumCtx *p;
274 p = sqlite_aggregate_context(context, sizeof(*p));
drh89425d52002-02-28 03:04:48 +0000275 sqlite_set_result_double(context, p ? p->sum : 0.0);
drhdd5baa92002-02-27 19:50:59 +0000276}
277static void avgFinalize(sqlite_func *context){
278 SumCtx *p;
drhdd5baa92002-02-27 19:50:59 +0000279 p = sqlite_aggregate_context(context, sizeof(*p));
drh739105c2002-05-29 23:22:23 +0000280 if( p && p->cnt>0 ){
281 sqlite_set_result_double(context, p->sum/(double)p->cnt);
drhdd5baa92002-02-27 19:50:59 +0000282 }
283}
284
285/*
286** An instance of the following structure holds the context of a
drha2ed5602002-02-26 23:55:31 +0000287** variance or standard deviation computation.
drhd3a149e2002-02-24 17:12:53 +0000288*/
289typedef struct StdDevCtx StdDevCtx;
290struct StdDevCtx {
291 double sum; /* Sum of terms */
292 double sum2; /* Sum of the squares of terms */
drh739105c2002-05-29 23:22:23 +0000293 int cnt; /* Number of terms counted */
drhd3a149e2002-02-24 17:12:53 +0000294};
295
drhef2daf52002-03-04 02:26:15 +0000296#if 0 /* Omit because math library is required */
drhd3a149e2002-02-24 17:12:53 +0000297/*
298** Routines used to compute the standard deviation as an aggregate.
299*/
drh1350b032002-02-27 19:00:20 +0000300static void stdDevStep(sqlite_func *context, int argc, const char **argv){
drhd3a149e2002-02-24 17:12:53 +0000301 StdDevCtx *p;
302 double x;
drh1350b032002-02-27 19:00:20 +0000303 if( argc<1 ) return;
304 p = sqlite_aggregate_context(context, sizeof(*p));
drh739105c2002-05-29 23:22:23 +0000305 if( p && argv[0] ){
306 x = atof(argv[0]);
307 p->sum += x;
308 p->sum2 += x*x;
309 p->cnt++;
310 }
drhd3a149e2002-02-24 17:12:53 +0000311}
drh1350b032002-02-27 19:00:20 +0000312static void stdDevFinalize(sqlite_func *context){
drhdd5baa92002-02-27 19:50:59 +0000313 double rN = sqlite_aggregate_count(context);
drh1350b032002-02-27 19:00:20 +0000314 StdDevCtx *p = sqlite_aggregate_context(context, sizeof(*p));
drh739105c2002-05-29 23:22:23 +0000315 if( p && p->cnt>1 ){
316 double rCnt = cnt;
drhd3a149e2002-02-24 17:12:53 +0000317 sqlite_set_result_double(context,
drh739105c2002-05-29 23:22:23 +0000318 sqrt((p->sum2 - p->sum*p->sum/rCnt)/(rCnt-1.0)));
drhd3a149e2002-02-24 17:12:53 +0000319 }
drhd3a149e2002-02-24 17:12:53 +0000320}
drhef2daf52002-03-04 02:26:15 +0000321#endif
drhd3a149e2002-02-24 17:12:53 +0000322
drh0bce8352002-02-28 00:41:10 +0000323/*
324** The following structure keeps track of state information for the
325** count() aggregate function.
326*/
327typedef struct CountCtx CountCtx;
328struct CountCtx {
329 int n;
330};
drhdd5baa92002-02-27 19:50:59 +0000331
drh0bce8352002-02-28 00:41:10 +0000332/*
333** Routines to implement the count() aggregate function.
334*/
335static void countStep(sqlite_func *context, int argc, const char **argv){
336 CountCtx *p;
337 p = sqlite_aggregate_context(context, sizeof(*p));
338 if( (argc==0 || argv[0]) && p ){
339 p->n++;
340 }
341}
342static void countFinalize(sqlite_func *context){
343 CountCtx *p;
344 p = sqlite_aggregate_context(context, sizeof(*p));
drhf55f25f2002-02-28 01:46:11 +0000345 sqlite_set_result_int(context, p ? p->n : 0);
drh0bce8352002-02-28 00:41:10 +0000346}
347
348/*
349** This function tracks state information for the min() and max()
350** aggregate functions.
351*/
352typedef struct MinMaxCtx MinMaxCtx;
353struct MinMaxCtx {
354 char *z; /* The best so far */
355 char zBuf[28]; /* Space that can be used for storage */
356};
357
358/*
359** Routines to implement min() and max() aggregate functions.
360*/
361static void minStep(sqlite_func *context, int argc, const char **argv){
362 MinMaxCtx *p;
363 p = sqlite_aggregate_context(context, sizeof(*p));
drh739105c2002-05-29 23:22:23 +0000364 if( p==0 || argc<1 || argv[0]==0 ) return;
drh0bce8352002-02-28 00:41:10 +0000365 if( sqlite_aggregate_count(context)==1 || sqliteCompare(argv[0],p->z)<0 ){
drh8912d102002-05-26 21:34:58 +0000366 int len;
drh0bce8352002-02-28 00:41:10 +0000367 if( p->z && p->z!=p->zBuf ){
368 sqliteFree(p->z);
369 }
drh8912d102002-05-26 21:34:58 +0000370 len = strlen(argv[0]);
371 if( len < sizeof(p->zBuf) ){
372 p->z = p->zBuf;
drh0bce8352002-02-28 00:41:10 +0000373 }else{
drh8912d102002-05-26 21:34:58 +0000374 p->z = sqliteMalloc( len+1 );
375 if( p->z==0 ) return;
drh0bce8352002-02-28 00:41:10 +0000376 }
drh8912d102002-05-26 21:34:58 +0000377 strcpy(p->z, argv[0]);
drh0bce8352002-02-28 00:41:10 +0000378 }
379}
380static void maxStep(sqlite_func *context, int argc, const char **argv){
381 MinMaxCtx *p;
382 p = sqlite_aggregate_context(context, sizeof(*p));
drh739105c2002-05-29 23:22:23 +0000383 if( p==0 || argc<1 || argv[0]==0 ) return;
drh0bce8352002-02-28 00:41:10 +0000384 if( sqlite_aggregate_count(context)==1 || sqliteCompare(argv[0],p->z)>0 ){
drh8912d102002-05-26 21:34:58 +0000385 int len;
drh0bce8352002-02-28 00:41:10 +0000386 if( p->z && p->z!=p->zBuf ){
387 sqliteFree(p->z);
388 }
drh8912d102002-05-26 21:34:58 +0000389 len = strlen(argv[0]);
390 if( len < sizeof(p->zBuf) ){
391 p->z = p->zBuf;
drh0bce8352002-02-28 00:41:10 +0000392 }else{
drh8912d102002-05-26 21:34:58 +0000393 p->z = sqliteMalloc( len+1 );
394 if( p->z==0 ) return;
drh0bce8352002-02-28 00:41:10 +0000395 }
drh8912d102002-05-26 21:34:58 +0000396 strcpy(p->z, argv[0]);
drh0bce8352002-02-28 00:41:10 +0000397 }
398}
399static void minMaxFinalize(sqlite_func *context){
400 MinMaxCtx *p;
401 p = sqlite_aggregate_context(context, sizeof(*p));
drh739105c2002-05-29 23:22:23 +0000402 if( p && p->z ){
drh0bce8352002-02-28 00:41:10 +0000403 sqlite_set_result_string(context, p->z, strlen(p->z));
404 }
405 if( p && p->z && p->z!=p->zBuf ){
406 sqliteFree(p->z);
407 }
408}
drhdd5baa92002-02-27 19:50:59 +0000409
drhd3a149e2002-02-24 17:12:53 +0000410/*
drha2ed5602002-02-26 23:55:31 +0000411** This function registered all of the above C functions as SQL
412** functions. This should be the only routine in this file with
413** external linkage.
drhdc04c582002-02-24 01:55:15 +0000414*/
415void sqliteRegisterBuildinFunctions(sqlite *db){
drh0bce8352002-02-28 00:41:10 +0000416 static struct {
417 char *zName;
418 int nArg;
419 void (*xFunc)(sqlite_func*,int,const char**);
420 } aFuncs[] = {
drhfbc99082002-02-28 03:14:18 +0000421 { "min", -1, minFunc },
422 { "min", 0, 0 },
423 { "max", -1, maxFunc },
424 { "max", 0, 0 },
425 { "length", 1, lengthFunc },
426 { "substr", 3, substrFunc },
427 { "abs", 1, absFunc },
428 { "round", 1, roundFunc },
429 { "round", 2, roundFunc },
430 { "upper", 1, upperFunc },
431 { "lower", 1, lowerFunc },
432 { "coalesce", -1, ifnullFunc },
433 { "coalesce", 0, 0 },
434 { "coalesce", 1, 0 },
drh739105c2002-05-29 23:22:23 +0000435 { "ifnull", 2, ifnullFunc },
drhf9ffac92002-03-02 19:00:31 +0000436 { "random", -1, randomFunc },
drh0ac65892002-04-20 14:24:41 +0000437 { "like", 2, likeFunc },
438 { "glob", 2, globFunc },
drh8912d102002-05-26 21:34:58 +0000439 { "nullif", 2, nullifFunc },
drh0bce8352002-02-28 00:41:10 +0000440 };
441 static struct {
442 char *zName;
443 int nArg;
444 void (*xStep)(sqlite_func*,int,const char**);
445 void (*xFinalize)(sqlite_func*);
446 } aAggs[] = {
447 { "min", 1, minStep, minMaxFinalize },
448 { "max", 1, maxStep, minMaxFinalize },
449 { "sum", 1, sumStep, sumFinalize },
450 { "avg", 1, sumStep, avgFinalize },
451 { "count", 0, countStep, countFinalize },
452 { "count", 1, countStep, countFinalize },
drhef2daf52002-03-04 02:26:15 +0000453#if 0
drh0bce8352002-02-28 00:41:10 +0000454 { "stddev", 1, stdDevStep, stdDevFinalize },
drhef2daf52002-03-04 02:26:15 +0000455#endif
drh0bce8352002-02-28 00:41:10 +0000456 };
457 int i;
458
459 for(i=0; i<sizeof(aFuncs)/sizeof(aFuncs[0]); i++){
460 sqlite_create_function(db, aFuncs[i].zName,
461 aFuncs[i].nArg, aFuncs[i].xFunc, 0);
462 }
drh6ed41ad2002-04-06 14:10:47 +0000463 sqlite_create_function(db, "last_insert_rowid", 0,
464 last_insert_rowid, db);
drh0bce8352002-02-28 00:41:10 +0000465 for(i=0; i<sizeof(aAggs)/sizeof(aAggs[0]); i++){
466 sqlite_create_aggregate(db, aAggs[i].zName,
467 aAggs[i].nArg, aAggs[i].xStep, aAggs[i].xFinalize, 0);
468 }
drhdc04c582002-02-24 01:55:15 +0000469}