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drh4f26d6c2004-05-26 23:25:30 +00001/*
2** 2004 May 26
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**
13** This file contains code use to implement APIs that are part of the
14** VDBE.
15*/
16#include "sqliteInt.h"
17#include "vdbeInt.h"
18
shaneeec556d2008-10-12 00:27:53 +000019#ifndef SQLITE_OMIT_DEPRECATED
drhd89bd002005-01-22 03:03:54 +000020/*
21** Return TRUE (non-zero) of the statement supplied as an argument needs
22** to be recompiled. A statement needs to be recompiled whenever the
23** execution environment changes in a way that would alter the program
24** that sqlite3_prepare() generates. For example, if new functions or
25** collating sequences are registered or if an authorizer function is
26** added or changed.
drhd89bd002005-01-22 03:03:54 +000027*/
28int sqlite3_expired(sqlite3_stmt *pStmt){
29 Vdbe *p = (Vdbe*)pStmt;
30 return p==0 || p->expired;
31}
shaneeec556d2008-10-12 00:27:53 +000032#endif
drhd89bd002005-01-22 03:03:54 +000033
drhe30f4422007-08-21 16:15:55 +000034/*
drh413c3d32010-02-23 20:11:56 +000035** Check on a Vdbe to make sure it has not been finalized. Log
36** an error and return true if it has been finalized (or is otherwise
37** invalid). Return false if it is ok.
38*/
39static int vdbeSafety(Vdbe *p){
40 if( p->db==0 ){
41 sqlite3_log(SQLITE_MISUSE, "API called with finalized prepared statement");
42 return 1;
43 }else{
44 return 0;
45 }
46}
47static int vdbeSafetyNotNull(Vdbe *p){
48 if( p==0 ){
49 sqlite3_log(SQLITE_MISUSE, "API called with NULL prepared statement");
50 return 1;
51 }else{
52 return vdbeSafety(p);
53 }
54}
55
drh201e0c62015-07-14 14:48:50 +000056#ifndef SQLITE_OMIT_TRACE
57/*
58** Invoke the profile callback. This routine is only called if we already
59** know that the profile callback is defined and needs to be invoked.
60*/
61static SQLITE_NOINLINE void invokeProfileCallback(sqlite3 *db, Vdbe *p){
62 sqlite3_int64 iNow;
drh3d2a5292016-07-13 22:55:01 +000063 sqlite3_int64 iElapse;
drh201e0c62015-07-14 14:48:50 +000064 assert( p->startTime>0 );
drh04c67472018-12-04 14:33:02 +000065 assert( (db->mTrace & (SQLITE_TRACE_PROFILE|SQLITE_TRACE_XPROFILE))!=0 );
drh201e0c62015-07-14 14:48:50 +000066 assert( db->init.busy==0 );
67 assert( p->zSql!=0 );
68 sqlite3OsCurrentTimeInt64(db->pVfs, &iNow);
drh3d2a5292016-07-13 22:55:01 +000069 iElapse = (iNow - p->startTime)*1000000;
drh07891f02019-04-14 00:40:29 +000070#ifndef SQLITE_OMIT_DEPRECATED
drh3d2a5292016-07-13 22:55:01 +000071 if( db->xProfile ){
72 db->xProfile(db->pProfileArg, p->zSql, iElapse);
73 }
drh04c67472018-12-04 14:33:02 +000074#endif
drh3d2a5292016-07-13 22:55:01 +000075 if( db->mTrace & SQLITE_TRACE_PROFILE ){
drh08b92082020-08-10 14:18:00 +000076 db->trace.xV2(SQLITE_TRACE_PROFILE, db->pTraceArg, p, (void*)&iElapse);
drh3d2a5292016-07-13 22:55:01 +000077 }
drh201e0c62015-07-14 14:48:50 +000078 p->startTime = 0;
79}
80/*
81** The checkProfileCallback(DB,P) macro checks to see if a profile callback
82** is needed, and it invokes the callback if it is needed.
83*/
84# define checkProfileCallback(DB,P) \
85 if( ((P)->startTime)>0 ){ invokeProfileCallback(DB,P); }
86#else
87# define checkProfileCallback(DB,P) /*no-op*/
88#endif
89
drh413c3d32010-02-23 20:11:56 +000090/*
drhe30f4422007-08-21 16:15:55 +000091** The following routine destroys a virtual machine that is created by
92** the sqlite3_compile() routine. The integer returned is an SQLITE_
93** success/failure code that describes the result of executing the virtual
94** machine.
95**
96** This routine sets the error code and string returned by
97** sqlite3_errcode(), sqlite3_errmsg() and sqlite3_errmsg16().
98*/
99int sqlite3_finalize(sqlite3_stmt *pStmt){
100 int rc;
101 if( pStmt==0 ){
drh65bafa62010-09-29 01:54:00 +0000102 /* IMPLEMENTATION-OF: R-57228-12904 Invoking sqlite3_finalize() on a NULL
103 ** pointer is a harmless no-op. */
drhe30f4422007-08-21 16:15:55 +0000104 rc = SQLITE_OK;
105 }else{
106 Vdbe *v = (Vdbe*)pStmt;
danielk1977238746a2009-03-19 18:51:06 +0000107 sqlite3 *db = v->db;
drh413c3d32010-02-23 20:11:56 +0000108 if( vdbeSafety(v) ) return SQLITE_MISUSE_BKPT;
drh4245c402012-06-02 14:32:21 +0000109 sqlite3_mutex_enter(db->mutex);
drh201e0c62015-07-14 14:48:50 +0000110 checkProfileCallback(db, v);
drhe30f4422007-08-21 16:15:55 +0000111 rc = sqlite3VdbeFinalize(v);
danielk1977238746a2009-03-19 18:51:06 +0000112 rc = sqlite3ApiExit(db, rc);
drh4245c402012-06-02 14:32:21 +0000113 sqlite3LeaveMutexAndCloseZombie(db);
drhe30f4422007-08-21 16:15:55 +0000114 }
115 return rc;
116}
117
118/*
119** Terminate the current execution of an SQL statement and reset it
120** back to its starting state so that it can be reused. A success code from
121** the prior execution is returned.
122**
123** This routine sets the error code and string returned by
124** sqlite3_errcode(), sqlite3_errmsg() and sqlite3_errmsg16().
125*/
126int sqlite3_reset(sqlite3_stmt *pStmt){
127 int rc;
128 if( pStmt==0 ){
129 rc = SQLITE_OK;
130 }else{
131 Vdbe *v = (Vdbe*)pStmt;
drh201e0c62015-07-14 14:48:50 +0000132 sqlite3 *db = v->db;
133 sqlite3_mutex_enter(db->mutex);
134 checkProfileCallback(db, v);
drhc890fec2008-08-01 20:10:08 +0000135 rc = sqlite3VdbeReset(v);
drh124c0b42011-06-01 18:15:55 +0000136 sqlite3VdbeRewind(v);
drh201e0c62015-07-14 14:48:50 +0000137 assert( (rc & (db->errMask))==rc );
138 rc = sqlite3ApiExit(db, rc);
139 sqlite3_mutex_leave(db->mutex);
drhe30f4422007-08-21 16:15:55 +0000140 }
141 return rc;
142}
143
144/*
145** Set all the parameters in the compiled SQL statement to NULL.
146*/
147int sqlite3_clear_bindings(sqlite3_stmt *pStmt){
148 int i;
149 int rc = SQLITE_OK;
drh7297d1f2008-05-09 14:39:44 +0000150 Vdbe *p = (Vdbe*)pStmt;
drh18472fa2008-10-07 15:25:48 +0000151#if SQLITE_THREADSAFE
drh7e8b8482008-01-23 03:03:05 +0000152 sqlite3_mutex *mutex = ((Vdbe*)pStmt)->db->mutex;
153#endif
154 sqlite3_mutex_enter(mutex);
drh7297d1f2008-05-09 14:39:44 +0000155 for(i=0; i<p->nVar; i++){
156 sqlite3VdbeMemRelease(&p->aVar[i]);
157 p->aVar[i].flags = MEM_Null;
drhe30f4422007-08-21 16:15:55 +0000158 }
drh2c2f3922017-06-01 00:54:35 +0000159 assert( (p->prepFlags & SQLITE_PREPARE_SAVESQL)!=0 || p->expmask==0 );
danbda4cb82017-02-23 16:30:16 +0000160 if( p->expmask ){
danc94b8592009-10-20 07:01:24 +0000161 p->expired = 1;
162 }
drh7e8b8482008-01-23 03:03:05 +0000163 sqlite3_mutex_leave(mutex);
drhe30f4422007-08-21 16:15:55 +0000164 return rc;
165}
166
167
drh4f26d6c2004-05-26 23:25:30 +0000168/**************************** sqlite3_value_ *******************************
169** The following routines extract information from a Mem or sqlite3_value
170** structure.
171*/
172const void *sqlite3_value_blob(sqlite3_value *pVal){
173 Mem *p = (Mem*)pVal;
174 if( p->flags & (MEM_Blob|MEM_Str) ){
drhff535a22016-09-20 01:46:15 +0000175 if( ExpandBlob(p)!=SQLITE_OK ){
dana4d5ae82015-07-24 16:24:37 +0000176 assert( p->flags==MEM_Null && p->z==0 );
177 return 0;
178 }
drh1f0feef2007-05-15 13:27:07 +0000179 p->flags |= MEM_Blob;
drh42262532010-09-08 16:30:36 +0000180 return p->n ? p->z : 0;
drh4f26d6c2004-05-26 23:25:30 +0000181 }else{
182 return sqlite3_value_text(pVal);
183 }
184}
185int sqlite3_value_bytes(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000186 return sqlite3ValueBytes(pVal, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +0000187}
188int sqlite3_value_bytes16(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000189 return sqlite3ValueBytes(pVal, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +0000190}
191double sqlite3_value_double(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +0000192 return sqlite3VdbeRealValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +0000193}
194int sqlite3_value_int(sqlite3_value *pVal){
drhb27b7f52008-12-10 18:03:45 +0000195 return (int)sqlite3VdbeIntValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +0000196}
drhefad9992004-06-22 12:13:55 +0000197sqlite_int64 sqlite3_value_int64(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +0000198 return sqlite3VdbeIntValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +0000199}
drhbcdf78a2015-09-10 20:34:56 +0000200unsigned int sqlite3_value_subtype(sqlite3_value *pVal){
dan5b6c8e42016-01-30 15:46:03 +0000201 Mem *pMem = (Mem*)pVal;
202 return ((pMem->flags & MEM_Subtype) ? pMem->eSubtype : 0);
drhbcdf78a2015-09-10 20:34:56 +0000203}
drhae3ec3f2017-07-17 00:40:19 +0000204void *sqlite3_value_pointer(sqlite3_value *pVal, const char *zPType){
drh3a96a5d2017-06-30 23:09:03 +0000205 Mem *p = (Mem*)pVal;
drha0024e62017-07-27 15:53:24 +0000206 if( (p->flags&(MEM_TypeMask|MEM_Term|MEM_Subtype)) ==
207 (MEM_Null|MEM_Term|MEM_Subtype)
drhae3ec3f2017-07-17 00:40:19 +0000208 && zPType!=0
drha0024e62017-07-27 15:53:24 +0000209 && p->eSubtype=='p'
drh22930062017-07-27 03:48:02 +0000210 && strcmp(p->u.zPType, zPType)==0
drhae3ec3f2017-07-17 00:40:19 +0000211 ){
drh22930062017-07-27 03:48:02 +0000212 return (void*)p->z;
drh3a96a5d2017-06-30 23:09:03 +0000213 }else{
214 return 0;
215 }
216}
drh4f26d6c2004-05-26 23:25:30 +0000217const unsigned char *sqlite3_value_text(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000218 return (const unsigned char *)sqlite3ValueText(pVal, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +0000219}
drh6c626082004-11-14 21:56:29 +0000220#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +0000221const void *sqlite3_value_text16(sqlite3_value* pVal){
drhb21c8cd2007-08-21 19:33:56 +0000222 return sqlite3ValueText(pVal, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +0000223}
danielk1977d8123362004-06-12 09:25:12 +0000224const void *sqlite3_value_text16be(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000225 return sqlite3ValueText(pVal, SQLITE_UTF16BE);
danielk1977d8123362004-06-12 09:25:12 +0000226}
227const void *sqlite3_value_text16le(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000228 return sqlite3ValueText(pVal, SQLITE_UTF16LE);
danielk1977d8123362004-06-12 09:25:12 +0000229}
drh6c626082004-11-14 21:56:29 +0000230#endif /* SQLITE_OMIT_UTF16 */
drh22ec1342015-02-27 00:33:15 +0000231/* EVIDENCE-OF: R-12793-43283 Every value in SQLite has one of five
232** fundamental datatypes: 64-bit signed integer 64-bit IEEE floating
233** point number string BLOB NULL
234*/
drh4f26d6c2004-05-26 23:25:30 +0000235int sqlite3_value_type(sqlite3_value* pVal){
drh1b27b8c2014-02-10 03:21:57 +0000236 static const u8 aType[] = {
drhf2566c42019-05-03 17:08:16 +0000237 SQLITE_BLOB, /* 0x00 (not possible) */
238 SQLITE_NULL, /* 0x01 NULL */
239 SQLITE_TEXT, /* 0x02 TEXT */
240 SQLITE_NULL, /* 0x03 (not possible) */
241 SQLITE_INTEGER, /* 0x04 INTEGER */
242 SQLITE_NULL, /* 0x05 (not possible) */
243 SQLITE_INTEGER, /* 0x06 INTEGER + TEXT */
244 SQLITE_NULL, /* 0x07 (not possible) */
245 SQLITE_FLOAT, /* 0x08 FLOAT */
246 SQLITE_NULL, /* 0x09 (not possible) */
247 SQLITE_FLOAT, /* 0x0a FLOAT + TEXT */
248 SQLITE_NULL, /* 0x0b (not possible) */
249 SQLITE_INTEGER, /* 0x0c (not possible) */
250 SQLITE_NULL, /* 0x0d (not possible) */
251 SQLITE_INTEGER, /* 0x0e (not possible) */
252 SQLITE_NULL, /* 0x0f (not possible) */
253 SQLITE_BLOB, /* 0x10 BLOB */
254 SQLITE_NULL, /* 0x11 (not possible) */
255 SQLITE_TEXT, /* 0x12 (not possible) */
256 SQLITE_NULL, /* 0x13 (not possible) */
257 SQLITE_INTEGER, /* 0x14 INTEGER + BLOB */
258 SQLITE_NULL, /* 0x15 (not possible) */
259 SQLITE_INTEGER, /* 0x16 (not possible) */
260 SQLITE_NULL, /* 0x17 (not possible) */
261 SQLITE_FLOAT, /* 0x18 FLOAT + BLOB */
262 SQLITE_NULL, /* 0x19 (not possible) */
263 SQLITE_FLOAT, /* 0x1a (not possible) */
264 SQLITE_NULL, /* 0x1b (not possible) */
265 SQLITE_INTEGER, /* 0x1c (not possible) */
266 SQLITE_NULL, /* 0x1d (not possible) */
267 SQLITE_INTEGER, /* 0x1e (not possible) */
268 SQLITE_NULL, /* 0x1f (not possible) */
269 SQLITE_FLOAT, /* 0x20 INTREAL */
270 SQLITE_NULL, /* 0x21 (not possible) */
271 SQLITE_TEXT, /* 0x22 INTREAL + TEXT */
272 SQLITE_NULL, /* 0x23 (not possible) */
273 SQLITE_FLOAT, /* 0x24 (not possible) */
274 SQLITE_NULL, /* 0x25 (not possible) */
275 SQLITE_FLOAT, /* 0x26 (not possible) */
276 SQLITE_NULL, /* 0x27 (not possible) */
277 SQLITE_FLOAT, /* 0x28 (not possible) */
278 SQLITE_NULL, /* 0x29 (not possible) */
279 SQLITE_FLOAT, /* 0x2a (not possible) */
280 SQLITE_NULL, /* 0x2b (not possible) */
281 SQLITE_FLOAT, /* 0x2c (not possible) */
282 SQLITE_NULL, /* 0x2d (not possible) */
283 SQLITE_FLOAT, /* 0x2e (not possible) */
284 SQLITE_NULL, /* 0x2f (not possible) */
285 SQLITE_BLOB, /* 0x30 (not possible) */
286 SQLITE_NULL, /* 0x31 (not possible) */
287 SQLITE_TEXT, /* 0x32 (not possible) */
288 SQLITE_NULL, /* 0x33 (not possible) */
289 SQLITE_FLOAT, /* 0x34 (not possible) */
290 SQLITE_NULL, /* 0x35 (not possible) */
291 SQLITE_FLOAT, /* 0x36 (not possible) */
292 SQLITE_NULL, /* 0x37 (not possible) */
293 SQLITE_FLOAT, /* 0x38 (not possible) */
294 SQLITE_NULL, /* 0x39 (not possible) */
295 SQLITE_FLOAT, /* 0x3a (not possible) */
296 SQLITE_NULL, /* 0x3b (not possible) */
297 SQLITE_FLOAT, /* 0x3c (not possible) */
298 SQLITE_NULL, /* 0x3d (not possible) */
299 SQLITE_FLOAT, /* 0x3e (not possible) */
300 SQLITE_NULL, /* 0x3f (not possible) */
drh1b27b8c2014-02-10 03:21:57 +0000301 };
drhde7109e2019-05-02 17:45:52 +0000302#ifdef SQLITE_DEBUG
303 {
304 int eType = SQLITE_BLOB;
305 if( pVal->flags & MEM_Null ){
306 eType = SQLITE_NULL;
drh169f0772019-05-02 21:36:26 +0000307 }else if( pVal->flags & (MEM_Real|MEM_IntReal) ){
drhde7109e2019-05-02 17:45:52 +0000308 eType = SQLITE_FLOAT;
drh169f0772019-05-02 21:36:26 +0000309 }else if( pVal->flags & MEM_Int ){
310 eType = SQLITE_INTEGER;
drhde7109e2019-05-02 17:45:52 +0000311 }else if( pVal->flags & MEM_Str ){
312 eType = SQLITE_TEXT;
313 }
314 assert( eType == aType[pVal->flags&MEM_AffMask] );
315 }
316#endif
mistachkinafc14f72014-03-05 01:29:18 +0000317 return aType[pVal->flags&MEM_AffMask];
drh4f26d6c2004-05-26 23:25:30 +0000318}
319
drhce2fbd12018-01-12 21:00:14 +0000320/* Return true if a parameter to xUpdate represents an unchanged column */
321int sqlite3_value_nochange(sqlite3_value *pVal){
322 return (pVal->flags&(MEM_Null|MEM_Zero))==(MEM_Null|MEM_Zero);
323}
324
drh57b1a3e2019-03-29 11:13:37 +0000325/* Return true if a parameter value originated from an sqlite3_bind() */
326int sqlite3_value_frombind(sqlite3_value *pVal){
327 return (pVal->flags&MEM_FromBind)!=0;
328}
329
drh4f03f412015-05-20 21:28:32 +0000330/* Make a copy of an sqlite3_value object
331*/
332sqlite3_value *sqlite3_value_dup(const sqlite3_value *pOrig){
333 sqlite3_value *pNew;
334 if( pOrig==0 ) return 0;
335 pNew = sqlite3_malloc( sizeof(*pNew) );
336 if( pNew==0 ) return 0;
337 memset(pNew, 0, sizeof(*pNew));
338 memcpy(pNew, pOrig, MEMCELLSIZE);
339 pNew->flags &= ~MEM_Dyn;
340 pNew->db = 0;
341 if( pNew->flags&(MEM_Str|MEM_Blob) ){
drh10ca5b42015-05-22 21:04:54 +0000342 pNew->flags &= ~(MEM_Static|MEM_Dyn);
343 pNew->flags |= MEM_Ephem;
344 if( sqlite3VdbeMemMakeWriteable(pNew)!=SQLITE_OK ){
345 sqlite3ValueFree(pNew);
346 pNew = 0;
drh4f03f412015-05-20 21:28:32 +0000347 }
348 }
349 return pNew;
350}
351
352/* Destroy an sqlite3_value object previously obtained from
353** sqlite3_value_dup().
354*/
355void sqlite3_value_free(sqlite3_value *pOld){
356 sqlite3ValueFree(pOld);
357}
358
359
drh4f26d6c2004-05-26 23:25:30 +0000360/**************************** sqlite3_result_ *******************************
361** The following routines are used by user-defined functions to specify
362** the function result.
drh4c8555f2009-06-25 01:47:11 +0000363**
peter.d.reid60ec9142014-09-06 16:39:46 +0000364** The setStrOrError() function calls sqlite3VdbeMemSetStr() to store the
drhdbe349d2021-10-13 13:00:34 +0000365** result as a string or blob. Appropriate errors are set if the string/blob
366** is too big or if an OOM occurs.
drhda4ca9d2014-09-09 17:27:35 +0000367**
368** The invokeValueDestructor(P,X) routine invokes destructor function X()
369** on value P is not going to be used and need to be destroyed.
drh4f26d6c2004-05-26 23:25:30 +0000370*/
drh4c8555f2009-06-25 01:47:11 +0000371static void setResultStrOrError(
372 sqlite3_context *pCtx, /* Function context */
373 const char *z, /* String pointer */
374 int n, /* Bytes in string, or negative */
375 u8 enc, /* Encoding of z. 0 for BLOBs */
376 void (*xDel)(void*) /* Destructor function */
377){
drhdbe349d2021-10-13 13:00:34 +0000378 int rc = sqlite3VdbeMemSetStr(pCtx->pOut, z, n, enc, xDel);
379 if( rc ){
380 if( rc==SQLITE_TOOBIG ){
381 sqlite3_result_error_toobig(pCtx);
382 }else{
383 /* The only errors possible from sqlite3VdbeMemSetStr are
384 ** SQLITE_TOOBIG and SQLITE_NOMEM */
385 assert( rc==SQLITE_NOMEM );
386 sqlite3_result_error_nomem(pCtx);
387 }
drh4c8555f2009-06-25 01:47:11 +0000388 }
389}
drhda4ca9d2014-09-09 17:27:35 +0000390static int invokeValueDestructor(
391 const void *p, /* Value to destroy */
392 void (*xDel)(void*), /* The destructor */
393 sqlite3_context *pCtx /* Set a SQLITE_TOOBIG error if no NULL */
394){
drhfc59a952014-09-11 23:34:55 +0000395 assert( xDel!=SQLITE_DYNAMIC );
drhda4ca9d2014-09-09 17:27:35 +0000396 if( xDel==0 ){
397 /* noop */
398 }else if( xDel==SQLITE_TRANSIENT ){
399 /* noop */
drhda4ca9d2014-09-09 17:27:35 +0000400 }else{
401 xDel((void*)p);
402 }
drhd6228552021-06-09 14:45:02 +0000403 sqlite3_result_error_toobig(pCtx);
drhda4ca9d2014-09-09 17:27:35 +0000404 return SQLITE_TOOBIG;
405}
drh4f26d6c2004-05-26 23:25:30 +0000406void sqlite3_result_blob(
407 sqlite3_context *pCtx,
408 const void *z,
409 int n,
danielk1977d8123362004-06-12 09:25:12 +0000410 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000411){
drh5708d2d2005-06-22 10:53:59 +0000412 assert( n>=0 );
drh9bd038f2014-08-27 14:14:06 +0000413 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh4c8555f2009-06-25 01:47:11 +0000414 setResultStrOrError(pCtx, z, n, 0, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000415}
drhda4ca9d2014-09-09 17:27:35 +0000416void sqlite3_result_blob64(
417 sqlite3_context *pCtx,
418 const void *z,
419 sqlite3_uint64 n,
420 void (*xDel)(void *)
421){
422 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drhfc59a952014-09-11 23:34:55 +0000423 assert( xDel!=SQLITE_DYNAMIC );
drhda4ca9d2014-09-09 17:27:35 +0000424 if( n>0x7fffffff ){
425 (void)invokeValueDestructor(z, xDel, pCtx);
426 }else{
427 setResultStrOrError(pCtx, z, (int)n, 0, xDel);
428 }
429}
drh4f26d6c2004-05-26 23:25:30 +0000430void sqlite3_result_double(sqlite3_context *pCtx, double rVal){
drh9bd038f2014-08-27 14:14:06 +0000431 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
432 sqlite3VdbeMemSetDouble(pCtx->pOut, rVal);
drh4f26d6c2004-05-26 23:25:30 +0000433}
434void sqlite3_result_error(sqlite3_context *pCtx, const char *z, int n){
drh9bd038f2014-08-27 14:14:06 +0000435 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh69544ec2008-02-06 14:11:34 +0000436 pCtx->isError = SQLITE_ERROR;
drh9bd038f2014-08-27 14:14:06 +0000437 sqlite3VdbeMemSetStr(pCtx->pOut, z, n, SQLITE_UTF8, SQLITE_TRANSIENT);
drh4f26d6c2004-05-26 23:25:30 +0000438}
danielk1977a1686c92006-01-23 07:52:37 +0000439#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +0000440void sqlite3_result_error16(sqlite3_context *pCtx, const void *z, int n){
drh9bd038f2014-08-27 14:14:06 +0000441 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh69544ec2008-02-06 14:11:34 +0000442 pCtx->isError = SQLITE_ERROR;
drh9bd038f2014-08-27 14:14:06 +0000443 sqlite3VdbeMemSetStr(pCtx->pOut, z, n, SQLITE_UTF16NATIVE, SQLITE_TRANSIENT);
drh4f26d6c2004-05-26 23:25:30 +0000444}
danielk1977a1686c92006-01-23 07:52:37 +0000445#endif
drhf4479502004-05-27 03:12:53 +0000446void sqlite3_result_int(sqlite3_context *pCtx, int iVal){
drh9bd038f2014-08-27 14:14:06 +0000447 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
448 sqlite3VdbeMemSetInt64(pCtx->pOut, (i64)iVal);
drh4f26d6c2004-05-26 23:25:30 +0000449}
450void sqlite3_result_int64(sqlite3_context *pCtx, i64 iVal){
drh9bd038f2014-08-27 14:14:06 +0000451 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
452 sqlite3VdbeMemSetInt64(pCtx->pOut, iVal);
drh4f26d6c2004-05-26 23:25:30 +0000453}
454void sqlite3_result_null(sqlite3_context *pCtx){
drh9bd038f2014-08-27 14:14:06 +0000455 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
456 sqlite3VdbeMemSetNull(pCtx->pOut);
drh4f26d6c2004-05-26 23:25:30 +0000457}
drh22930062017-07-27 03:48:02 +0000458void sqlite3_result_pointer(
459 sqlite3_context *pCtx,
460 void *pPtr,
461 const char *zPType,
462 void (*xDestructor)(void*)
463){
drh3a96a5d2017-06-30 23:09:03 +0000464 Mem *pOut = pCtx->pOut;
465 assert( sqlite3_mutex_held(pOut->db->mutex) );
drh526740b2017-08-24 13:55:46 +0000466 sqlite3VdbeMemRelease(pOut);
467 pOut->flags = MEM_Null;
drh22930062017-07-27 03:48:02 +0000468 sqlite3VdbeMemSetPointer(pOut, pPtr, zPType, xDestructor);
drh3a96a5d2017-06-30 23:09:03 +0000469}
drhbcdf78a2015-09-10 20:34:56 +0000470void sqlite3_result_subtype(sqlite3_context *pCtx, unsigned int eSubtype){
dan5b6c8e42016-01-30 15:46:03 +0000471 Mem *pOut = pCtx->pOut;
472 assert( sqlite3_mutex_held(pOut->db->mutex) );
473 pOut->eSubtype = eSubtype & 0xff;
474 pOut->flags |= MEM_Subtype;
drhbcdf78a2015-09-10 20:34:56 +0000475}
drh4f26d6c2004-05-26 23:25:30 +0000476void sqlite3_result_text(
477 sqlite3_context *pCtx,
478 const char *z,
479 int n,
danielk1977d8123362004-06-12 09:25:12 +0000480 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000481){
drh9bd038f2014-08-27 14:14:06 +0000482 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh4c8555f2009-06-25 01:47:11 +0000483 setResultStrOrError(pCtx, z, n, SQLITE_UTF8, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000484}
drhbbf483f2014-09-09 20:30:24 +0000485void sqlite3_result_text64(
drhda4ca9d2014-09-09 17:27:35 +0000486 sqlite3_context *pCtx,
487 const char *z,
488 sqlite3_uint64 n,
489 void (*xDel)(void *),
490 unsigned char enc
491){
492 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drhfc59a952014-09-11 23:34:55 +0000493 assert( xDel!=SQLITE_DYNAMIC );
drh79f7af92014-10-03 16:00:51 +0000494 if( enc==SQLITE_UTF16 ) enc = SQLITE_UTF16NATIVE;
drhda4ca9d2014-09-09 17:27:35 +0000495 if( n>0x7fffffff ){
496 (void)invokeValueDestructor(z, xDel, pCtx);
497 }else{
498 setResultStrOrError(pCtx, z, (int)n, enc, xDel);
499 }
500}
drh6c626082004-11-14 21:56:29 +0000501#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +0000502void sqlite3_result_text16(
503 sqlite3_context *pCtx,
504 const void *z,
505 int n,
danielk1977d8123362004-06-12 09:25:12 +0000506 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000507){
drh9bd038f2014-08-27 14:14:06 +0000508 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh4c8555f2009-06-25 01:47:11 +0000509 setResultStrOrError(pCtx, z, n, SQLITE_UTF16NATIVE, xDel);
danielk1977d8123362004-06-12 09:25:12 +0000510}
511void sqlite3_result_text16be(
512 sqlite3_context *pCtx,
513 const void *z,
514 int n,
515 void (*xDel)(void *)
516){
drh9bd038f2014-08-27 14:14:06 +0000517 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh4c8555f2009-06-25 01:47:11 +0000518 setResultStrOrError(pCtx, z, n, SQLITE_UTF16BE, xDel);
danielk1977d8123362004-06-12 09:25:12 +0000519}
520void sqlite3_result_text16le(
521 sqlite3_context *pCtx,
522 const void *z,
523 int n,
524 void (*xDel)(void *)
525){
drh9bd038f2014-08-27 14:14:06 +0000526 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh4c8555f2009-06-25 01:47:11 +0000527 setResultStrOrError(pCtx, z, n, SQLITE_UTF16LE, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000528}
drh6c626082004-11-14 21:56:29 +0000529#endif /* SQLITE_OMIT_UTF16 */
drh4f26d6c2004-05-26 23:25:30 +0000530void sqlite3_result_value(sqlite3_context *pCtx, sqlite3_value *pValue){
drh9bd038f2014-08-27 14:14:06 +0000531 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
532 sqlite3VdbeMemCopy(pCtx->pOut, pValue);
drh4f26d6c2004-05-26 23:25:30 +0000533}
drhb026e052007-05-02 01:34:31 +0000534void sqlite3_result_zeroblob(sqlite3_context *pCtx, int n){
drh9bd038f2014-08-27 14:14:06 +0000535 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
536 sqlite3VdbeMemSetZeroBlob(pCtx->pOut, n);
drhb026e052007-05-02 01:34:31 +0000537}
dana4d5ae82015-07-24 16:24:37 +0000538int sqlite3_result_zeroblob64(sqlite3_context *pCtx, u64 n){
539 Mem *pOut = pCtx->pOut;
540 assert( sqlite3_mutex_held(pOut->db->mutex) );
drh6bacdc22015-07-24 17:14:03 +0000541 if( n>(u64)pOut->db->aLimit[SQLITE_LIMIT_LENGTH] ){
dana4d5ae82015-07-24 16:24:37 +0000542 return SQLITE_TOOBIG;
543 }
dana32536b2021-11-08 19:35:26 +0000544#ifndef SQLITE_OMIT_INCRBLOB
dana4d5ae82015-07-24 16:24:37 +0000545 sqlite3VdbeMemSetZeroBlob(pCtx->pOut, (int)n);
546 return SQLITE_OK;
dana32536b2021-11-08 19:35:26 +0000547#else
548 return sqlite3VdbeMemSetZeroBlob(pCtx->pOut, (int)n);
549#endif
dana4d5ae82015-07-24 16:24:37 +0000550}
drh69544ec2008-02-06 14:11:34 +0000551void sqlite3_result_error_code(sqlite3_context *pCtx, int errCode){
drhf09ac0b2018-01-23 03:44:06 +0000552 pCtx->isError = errCode ? errCode : -1;
drh983b5ee2015-02-13 12:05:56 +0000553#ifdef SQLITE_DEBUG
drh96f4ad22015-03-12 21:02:36 +0000554 if( pCtx->pVdbe ) pCtx->pVdbe->rcApp = errCode;
drh983b5ee2015-02-13 12:05:56 +0000555#endif
drh9bd038f2014-08-27 14:14:06 +0000556 if( pCtx->pOut->flags & MEM_Null ){
557 sqlite3VdbeMemSetStr(pCtx->pOut, sqlite3ErrStr(errCode), -1,
drh51c7d862009-04-27 18:46:06 +0000558 SQLITE_UTF8, SQLITE_STATIC);
559 }
drh69544ec2008-02-06 14:11:34 +0000560}
drh4f26d6c2004-05-26 23:25:30 +0000561
drha0206bc2007-05-08 15:15:02 +0000562/* Force an SQLITE_TOOBIG error. */
563void sqlite3_result_error_toobig(sqlite3_context *pCtx){
drh9bd038f2014-08-27 14:14:06 +0000564 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drhbb4957f2008-03-20 14:03:29 +0000565 pCtx->isError = SQLITE_TOOBIG;
drh9bd038f2014-08-27 14:14:06 +0000566 sqlite3VdbeMemSetStr(pCtx->pOut, "string or blob too big", -1,
drhbb4957f2008-03-20 14:03:29 +0000567 SQLITE_UTF8, SQLITE_STATIC);
drha0206bc2007-05-08 15:15:02 +0000568}
569
danielk1977a1644fd2007-08-29 12:31:25 +0000570/* An SQLITE_NOMEM error. */
571void sqlite3_result_error_nomem(sqlite3_context *pCtx){
drh9bd038f2014-08-27 14:14:06 +0000572 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
573 sqlite3VdbeMemSetNull(pCtx->pOut);
mistachkinfad30392016-02-13 23:43:46 +0000574 pCtx->isError = SQLITE_NOMEM_BKPT;
drh4a642b62016-02-05 01:55:27 +0000575 sqlite3OomFault(pCtx->pOut->db);
danielk1977a1644fd2007-08-29 12:31:25 +0000576}
drh4f26d6c2004-05-26 23:25:30 +0000577
drh0c8f4032019-05-03 21:17:28 +0000578#ifndef SQLITE_UNTESTABLE
579/* Force the INT64 value currently stored as the result to be
580** a MEM_IntReal value. See the SQLITE_TESTCTRL_RESULT_INTREAL
581** test-control.
582*/
583void sqlite3ResultIntReal(sqlite3_context *pCtx){
584 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
585 if( pCtx->pOut->flags & MEM_Int ){
586 pCtx->pOut->flags &= ~MEM_Int;
587 pCtx->pOut->flags |= MEM_IntReal;
588 }
589}
590#endif
591
592
dan5cf53532010-05-01 16:40:20 +0000593/*
594** This function is called after a transaction has been committed. It
595** invokes callbacks registered with sqlite3_wal_hook() as required.
596*/
drh7ed91f22010-04-29 22:34:07 +0000597static int doWalCallbacks(sqlite3 *db){
dan8d22a172010-04-19 18:03:51 +0000598 int rc = SQLITE_OK;
dan5cf53532010-05-01 16:40:20 +0000599#ifndef SQLITE_OMIT_WAL
600 int i;
dan8d22a172010-04-19 18:03:51 +0000601 for(i=0; i<db->nDb; i++){
602 Btree *pBt = db->aDb[i].pBt;
603 if( pBt ){
drhef15c6e2014-12-12 01:27:17 +0000604 int nEntry;
605 sqlite3BtreeEnter(pBt);
606 nEntry = sqlite3PagerWalCallback(sqlite3BtreePager(pBt));
607 sqlite3BtreeLeave(pBt);
drh59533aa2017-08-02 18:28:26 +0000608 if( nEntry>0 && db->xWalCallback && rc==SQLITE_OK ){
drh69c33822016-08-18 14:33:11 +0000609 rc = db->xWalCallback(db->pWalArg, db, db->aDb[i].zDbSName, nEntry);
dan8d22a172010-04-19 18:03:51 +0000610 }
611 }
612 }
dan5cf53532010-05-01 16:40:20 +0000613#endif
dan8d22a172010-04-19 18:03:51 +0000614 return rc;
615}
616
drh201e0c62015-07-14 14:48:50 +0000617
drh4f26d6c2004-05-26 23:25:30 +0000618/*
619** Execute the statement pStmt, either until a row of data is ready, the
620** statement is completely executed or an error occurs.
drhb900aaf2006-11-09 00:24:53 +0000621**
622** This routine implements the bulk of the logic behind the sqlite_step()
623** API. The only thing omitted is the automatic recompile if a
624** schema change has occurred. That detail is handled by the
625** outer sqlite3_step() wrapper procedure.
drh4f26d6c2004-05-26 23:25:30 +0000626*/
drhb900aaf2006-11-09 00:24:53 +0000627static int sqlite3Step(Vdbe *p){
drh9bb575f2004-09-06 17:24:11 +0000628 sqlite3 *db;
drh4f26d6c2004-05-26 23:25:30 +0000629 int rc;
630
danielk1977a185ddb2007-11-15 16:04:15 +0000631 assert(p);
drh17b74812021-02-03 18:32:25 +0000632 if( p->iVdbeMagic!=VDBE_MAGIC_RUN ){
drh3674bfd2010-04-17 12:53:19 +0000633 /* We used to require that sqlite3_reset() be called before retrying
drh602acb42011-01-17 17:42:37 +0000634 ** sqlite3_step() after any error or after SQLITE_DONE. But beginning
635 ** with version 3.7.0, we changed this so that sqlite3_reset() would
636 ** be called automatically instead of throwing the SQLITE_MISUSE error.
637 ** This "automatic-reset" change is not technically an incompatibility,
638 ** since any application that receives an SQLITE_MISUSE is broken by
639 ** definition.
640 **
641 ** Nevertheless, some published applications that were originally written
642 ** for version 3.6.23 or earlier do in fact depend on SQLITE_MISUSE
drhb8a45bb2011-12-31 21:51:55 +0000643 ** returns, and those were broken by the automatic-reset change. As a
drh602acb42011-01-17 17:42:37 +0000644 ** a work-around, the SQLITE_OMIT_AUTORESET compile-time restores the
645 ** legacy behavior of returning SQLITE_MISUSE for cases where the
646 ** previous sqlite3_step() returned something other than a SQLITE_LOCKED
647 ** or SQLITE_BUSY error.
drh3674bfd2010-04-17 12:53:19 +0000648 */
drh602acb42011-01-17 17:42:37 +0000649#ifdef SQLITE_OMIT_AUTORESET
drh983b5ee2015-02-13 12:05:56 +0000650 if( (rc = p->rc&0xff)==SQLITE_BUSY || rc==SQLITE_LOCKED ){
drh602acb42011-01-17 17:42:37 +0000651 sqlite3_reset((sqlite3_stmt*)p);
652 }else{
653 return SQLITE_MISUSE_BKPT;
654 }
655#else
drh3674bfd2010-04-17 12:53:19 +0000656 sqlite3_reset((sqlite3_stmt*)p);
drh602acb42011-01-17 17:42:37 +0000657#endif
drhf1bfe9a2007-10-17 01:44:20 +0000658 }
659
dan14d4cc42010-01-20 14:25:37 +0000660 /* Check that malloc() has not failed. If it has, return early. */
drh17435752007-08-16 04:30:38 +0000661 db = p->db;
drhc456e572008-08-11 18:44:58 +0000662 if( db->mallocFailed ){
dan14d4cc42010-01-20 14:25:37 +0000663 p->rc = SQLITE_NOMEM;
mistachkinfad30392016-02-13 23:43:46 +0000664 return SQLITE_NOMEM_BKPT;
drhc456e572008-08-11 18:44:58 +0000665 }
danielk1977261919c2005-12-06 12:52:59 +0000666
drhcfc07832018-12-11 12:51:46 +0000667 if( p->pc<0 && p->expired ){
drhbee80652010-02-25 21:27:58 +0000668 p->rc = SQLITE_SCHEMA;
drhb900aaf2006-11-09 00:24:53 +0000669 rc = SQLITE_ERROR;
drh5cbb4422020-06-29 13:12:42 +0000670 if( (p->prepFlags & SQLITE_PREPARE_SAVESQL)!=0 ){
671 /* If this statement was prepared using saved SQL and an
672 ** error has occurred, then return the error code in p->rc to the
673 ** caller. Set the error code in the database handle to the same value.
674 */
675 rc = sqlite3VdbeTransferError(p);
676 }
drhb900aaf2006-11-09 00:24:53 +0000677 goto end_of_step;
danielk1977a21c6b62005-01-24 10:25:59 +0000678 }
danielk19771d850a72004-05-31 08:26:49 +0000679 if( p->pc<0 ){
drh15ca1df2006-07-26 13:43:30 +0000680 /* If there are no other statements currently running, then
681 ** reset the interrupt flag. This prevents a call to sqlite3_interrupt
682 ** from interrupting a statement that has not yet started.
683 */
drh4f7d3a52013-06-27 23:54:02 +0000684 if( db->nVdbeActive==0 ){
dan892edb62020-03-30 13:35:05 +0000685 AtomicStore(&db->u1.isInterrupted, 0);
drh15ca1df2006-07-26 13:43:30 +0000686 }
687
drh888e16e2013-07-09 13:05:49 +0000688 assert( db->nVdbeWrite>0 || db->autoCommit==0
dancb3e4b72013-07-03 19:53:05 +0000689 || (db->nDeferredCons==0 && db->nDeferredImmCons==0)
690 );
dan1da40a32009-09-19 17:00:31 +0000691
drh19e2d372005-08-29 23:00:03 +0000692#ifndef SQLITE_OMIT_TRACE
drh04c67472018-12-04 14:33:02 +0000693 if( (db->mTrace & (SQLITE_TRACE_PROFILE|SQLITE_TRACE_XPROFILE))!=0
drh3d2a5292016-07-13 22:55:01 +0000694 && !db->init.busy && p->zSql ){
drhb7e8ea22010-05-03 14:32:30 +0000695 sqlite3OsCurrentTimeInt64(db->pVfs, &p->startTime);
drh201e0c62015-07-14 14:48:50 +0000696 }else{
697 assert( p->startTime==0 );
drh19e2d372005-08-29 23:00:03 +0000698 }
699#endif
drhc16a03b2004-09-15 13:38:10 +0000700
drh4f7d3a52013-06-27 23:54:02 +0000701 db->nVdbeActive++;
702 if( p->readOnly==0 ) db->nVdbeWrite++;
drh1713afb2013-06-28 01:24:57 +0000703 if( p->bIsReader ) db->nVdbeRead++;
danielk19771d850a72004-05-31 08:26:49 +0000704 p->pc = 0;
705 }
drh983b5ee2015-02-13 12:05:56 +0000706#ifdef SQLITE_DEBUG
707 p->rcApp = SQLITE_OK;
708#endif
drhb7f91642004-10-31 02:22:47 +0000709#ifndef SQLITE_OMIT_EXPLAIN
drh4f26d6c2004-05-26 23:25:30 +0000710 if( p->explain ){
711 rc = sqlite3VdbeList(p);
drhb7f91642004-10-31 02:22:47 +0000712 }else
713#endif /* SQLITE_OMIT_EXPLAIN */
714 {
drh4f7d3a52013-06-27 23:54:02 +0000715 db->nVdbeExec++;
drh4f26d6c2004-05-26 23:25:30 +0000716 rc = sqlite3VdbeExec(p);
drh4f7d3a52013-06-27 23:54:02 +0000717 db->nVdbeExec--;
drh4f26d6c2004-05-26 23:25:30 +0000718 }
719
drhb7de8272018-12-04 13:51:26 +0000720 if( rc!=SQLITE_ROW ){
drh19e2d372005-08-29 23:00:03 +0000721#ifndef SQLITE_OMIT_TRACE
drhb7de8272018-12-04 13:51:26 +0000722 /* If the statement completed successfully, invoke the profile callback */
723 checkProfileCallback(db, p);
drh19e2d372005-08-29 23:00:03 +0000724#endif
725
drhb7de8272018-12-04 13:51:26 +0000726 if( rc==SQLITE_DONE && db->autoCommit ){
727 assert( p->rc==SQLITE_OK );
728 p->rc = doWalCallbacks(db);
729 if( p->rc!=SQLITE_OK ){
730 rc = SQLITE_ERROR;
731 }
drh5cbb4422020-06-29 13:12:42 +0000732 }else if( rc!=SQLITE_DONE && (p->prepFlags & SQLITE_PREPARE_SAVESQL)!=0 ){
733 /* If this statement was prepared using saved SQL and an
734 ** error has occurred, then return the error code in p->rc to the
735 ** caller. Set the error code in the database handle to the same value.
736 */
737 rc = sqlite3VdbeTransferError(p);
dan8d22a172010-04-19 18:03:51 +0000738 }
739 }
740
drh80cc85b2008-07-23 21:07:25 +0000741 db->errCode = rc;
danielk1977357864e2009-03-25 15:43:08 +0000742 if( SQLITE_NOMEM==sqlite3ApiExit(p->db, p->rc) ){
mistachkinfad30392016-02-13 23:43:46 +0000743 p->rc = SQLITE_NOMEM_BKPT;
drh5cbb4422020-06-29 13:12:42 +0000744 if( (p->prepFlags & SQLITE_PREPARE_SAVESQL)!=0 ) rc = p->rc;
drhb900aaf2006-11-09 00:24:53 +0000745 }
danielk1977357864e2009-03-25 15:43:08 +0000746end_of_step:
drh5cbb4422020-06-29 13:12:42 +0000747 /* There are only a limited number of result codes allowed from the
748 ** statements prepared using the legacy sqlite3_prepare() interface */
749 assert( (p->prepFlags & SQLITE_PREPARE_SAVESQL)!=0
750 || rc==SQLITE_ROW || rc==SQLITE_DONE || rc==SQLITE_ERROR
drhcbd8db32015-08-20 17:18:32 +0000751 || (rc&0xff)==SQLITE_BUSY || rc==SQLITE_MISUSE
danielk1977357864e2009-03-25 15:43:08 +0000752 );
danielk1977357864e2009-03-25 15:43:08 +0000753 return (rc&db->errMask);
drhb900aaf2006-11-09 00:24:53 +0000754}
755
756/*
757** This is the top-level implementation of sqlite3_step(). Call
758** sqlite3Step() to do most of the work. If a schema error occurs,
759** call sqlite3Reprepare() and try again.
760*/
drhb900aaf2006-11-09 00:24:53 +0000761int sqlite3_step(sqlite3_stmt *pStmt){
drha6129fa2010-02-24 17:15:19 +0000762 int rc = SQLITE_OK; /* Result from sqlite3Step() */
drha6129fa2010-02-24 17:15:19 +0000763 Vdbe *v = (Vdbe*)pStmt; /* the prepared statement */
764 int cnt = 0; /* Counter to prevent infinite loop of reprepares */
765 sqlite3 *db; /* The database connection */
766
drh413c3d32010-02-23 20:11:56 +0000767 if( vdbeSafetyNotNull(v) ){
768 return SQLITE_MISUSE_BKPT;
danielk19778e556522007-11-13 10:30:24 +0000769 }
drh413c3d32010-02-23 20:11:56 +0000770 db = v->db;
771 sqlite3_mutex_enter(db->mutex);
drh37f58e92012-09-04 21:34:26 +0000772 v->doingRerun = 0;
drh413c3d32010-02-23 20:11:56 +0000773 while( (rc = sqlite3Step(v))==SQLITE_SCHEMA
drh2c7946a2014-08-19 20:27:40 +0000774 && cnt++ < SQLITE_MAX_SCHEMA_RETRY ){
775 int savedPc = v->pc;
drh754ee282017-08-02 19:04:37 +0000776 rc = sqlite3Reprepare(v);
777 if( rc!=SQLITE_OK ){
778 /* This case occurs after failing to recompile an sql statement.
779 ** The error message from the SQL compiler has already been loaded
780 ** into the database handle. This block copies the error message
781 ** from the database handle into the statement and sets the statement
782 ** program counter to 0 to ensure that when the statement is
783 ** finalized or reset the parser error message is available via
784 ** sqlite3_errmsg() and sqlite3_errcode().
785 */
786 const char *zErr = (const char *)sqlite3_value_text(db->pErr);
787 sqlite3DbFree(db, v->zErrMsg);
788 if( !db->mallocFailed ){
789 v->zErrMsg = sqlite3DbStrDup(db, zErr);
790 v->rc = rc = sqlite3ApiExit(db, rc);
791 } else {
792 v->zErrMsg = 0;
793 v->rc = rc = SQLITE_NOMEM_BKPT;
794 }
795 break;
796 }
drh413c3d32010-02-23 20:11:56 +0000797 sqlite3_reset(pStmt);
drh5f58ae72014-08-19 20:41:36 +0000798 if( savedPc>=0 ) v->doingRerun = 1;
dan08f5f4c2011-06-27 19:37:23 +0000799 assert( v->expired==0 );
drh413c3d32010-02-23 20:11:56 +0000800 }
drh413c3d32010-02-23 20:11:56 +0000801 sqlite3_mutex_leave(db->mutex);
danielk197776e8d1a2006-01-18 18:22:43 +0000802 return rc;
drh4f26d6c2004-05-26 23:25:30 +0000803}
804
drh95a7b3e2013-09-16 12:57:19 +0000805
drh4f26d6c2004-05-26 23:25:30 +0000806/*
drheb2e1762004-05-27 01:53:56 +0000807** Extract the user data from a sqlite3_context structure and return a
808** pointer to it.
809*/
810void *sqlite3_user_data(sqlite3_context *p){
811 assert( p && p->pFunc );
812 return p->pFunc->pUserData;
813}
814
815/*
drhfa4a4b92008-03-19 21:45:51 +0000816** Extract the user data from a sqlite3_context structure and return a
817** pointer to it.
drh9f129f42010-08-31 15:27:32 +0000818**
819** IMPLEMENTATION-OF: R-46798-50301 The sqlite3_context_db_handle() interface
820** returns a copy of the pointer to the database connection (the 1st
821** parameter) of the sqlite3_create_function() and
822** sqlite3_create_function16() routines that originally registered the
823** application defined function.
drhfa4a4b92008-03-19 21:45:51 +0000824*/
825sqlite3 *sqlite3_context_db_handle(sqlite3_context *p){
drha46a4a62015-09-08 21:12:53 +0000826 assert( p && p->pOut );
drh9bd038f2014-08-27 14:14:06 +0000827 return p->pOut->db;
drhfa4a4b92008-03-19 21:45:51 +0000828}
829
830/*
drh6f390be2018-01-11 17:04:26 +0000831** If this routine is invoked from within an xColumn method of a virtual
832** table, then it returns true if and only if the the call is during an
833** UPDATE operation and the value of the column will not be modified
834** by the UPDATE.
835**
836** If this routine is called from any context other than within the
837** xColumn method of a virtual table, then the return value is meaningless
838** and arbitrary.
839**
840** Virtual table implements might use this routine to optimize their
841** performance by substituting a NULL result, or some other light-weight
842** value, as a signal to the xUpdate routine that the column is unchanged.
843*/
844int sqlite3_vtab_nochange(sqlite3_context *p){
845 assert( p );
drhce2fbd12018-01-12 21:00:14 +0000846 return sqlite3_value_nochange(p->pOut);
drh6f390be2018-01-11 17:04:26 +0000847}
848
849/*
drh0fe7e7d2022-02-01 14:58:29 +0000850** Implementation of sqlite3_vtab_in_first() (if bNext==0) and
851** sqlite3_vtab_in_next() (if bNext!=0).
852*/
drh30e314e2022-02-02 14:36:58 +0000853static int valueFromValueList(
854 sqlite3_value *pVal, /* Pointer to the ValueList object */
855 sqlite3_value **ppOut, /* Store the next value from the list here */
856 int bNext /* 1 for _next(). 0 for _first() */
857){
drhb30298d2022-02-01 21:59:43 +0000858 int rc;
drh30e314e2022-02-02 14:36:58 +0000859 ValueList *pRhs;
860
drh0fe7e7d2022-02-01 14:58:29 +0000861 *ppOut = 0;
drhb30298d2022-02-01 21:59:43 +0000862 if( pVal==0 ) return SQLITE_MISUSE;
drh30e314e2022-02-02 14:36:58 +0000863 pRhs = (ValueList*)sqlite3_value_pointer(pVal, "ValueList");
864 if( pRhs==0 ) return SQLITE_MISUSE;
drhb30298d2022-02-01 21:59:43 +0000865 if( bNext ){
drh30e314e2022-02-02 14:36:58 +0000866 rc = sqlite3BtreeNext(pRhs->pCsr, 0);
drhb30298d2022-02-01 21:59:43 +0000867 }else{
868 int dummy = 0;
drh30e314e2022-02-02 14:36:58 +0000869 rc = sqlite3BtreeFirst(pRhs->pCsr, &dummy);
drh3d7a69e2022-02-02 16:24:01 +0000870 assert( rc==SQLITE_OK || sqlite3BtreeEof(pRhs->pCsr) );
871 if( sqlite3BtreeEof(pRhs->pCsr) ) rc = SQLITE_DONE;
drhb30298d2022-02-01 21:59:43 +0000872 }
873 if( rc==SQLITE_OK ){
drh30e314e2022-02-02 14:36:58 +0000874 u32 sz; /* Size of current row in bytes */
875 Mem sMem; /* Raw content of current row */
876 memset(&sMem, 0, sizeof(sMem));
877 sz = sqlite3BtreePayloadSize(pRhs->pCsr);
878 rc = sqlite3VdbeMemFromBtreeZeroOffset(pRhs->pCsr,(int)sz,&sMem);
879 if( rc==SQLITE_OK ){
880 u8 *zBuf = (u8*)sMem.z;
881 u32 iSerial;
882 sqlite3_value *pOut = pRhs->pOut;
883 int iOff = 1 + getVarint32(&zBuf[1], iSerial);
884 sqlite3VdbeSerialGet(&zBuf[iOff], iSerial, pOut);
drh38d1e442022-02-02 15:10:45 +0000885 pOut->enc = ENC(pOut->db);
drh30e314e2022-02-02 14:36:58 +0000886 if( (pOut->flags & MEM_Ephem)!=0 && sqlite3VdbeMemMakeWriteable(pOut) ){
887 rc = SQLITE_NOMEM;
888 }else{
889 *ppOut = pOut;
890 }
891 }
892 sqlite3VdbeMemRelease(&sMem);
drh0fe7e7d2022-02-01 14:58:29 +0000893 }
894 return rc;
895}
896
897/*
898** Set the iterator value pVal to point to the first value in the set.
899** Set (*ppOut) to point to this value before returning.
900*/
901int sqlite3_vtab_in_first(sqlite3_value *pVal, sqlite3_value **ppOut){
drh30e314e2022-02-02 14:36:58 +0000902 return valueFromValueList(pVal, ppOut, 0);
drh0fe7e7d2022-02-01 14:58:29 +0000903}
904
905/*
906** Set the iterator value pVal to point to the next value in the set.
907** Set (*ppOut) to point to this value before returning.
908*/
909int sqlite3_vtab_in_next(sqlite3_value *pVal, sqlite3_value **ppOut){
drh30e314e2022-02-02 14:36:58 +0000910 return valueFromValueList(pVal, ppOut, 1);
drh0fe7e7d2022-02-01 14:58:29 +0000911}
912
913/*
drha9e03b12015-03-12 06:46:52 +0000914** Return the current time for a statement. If the current time
915** is requested more than once within the same run of a single prepared
916** statement, the exact same time is returned for each invocation regardless
917** of the amount of time that elapses between invocations. In other words,
918** the time returned is always the time of the first call.
drh95a7b3e2013-09-16 12:57:19 +0000919*/
920sqlite3_int64 sqlite3StmtCurrentTime(sqlite3_context *p){
drh95a7b3e2013-09-16 12:57:19 +0000921 int rc;
drh175b8f02019-08-08 15:24:17 +0000922#ifndef SQLITE_ENABLE_STAT4
drh3df79a92015-03-12 23:48:27 +0000923 sqlite3_int64 *piTime = &p->pVdbe->iCurrentTime;
drha9e03b12015-03-12 06:46:52 +0000924 assert( p->pVdbe!=0 );
925#else
drh3df79a92015-03-12 23:48:27 +0000926 sqlite3_int64 iTime = 0;
drha9e03b12015-03-12 06:46:52 +0000927 sqlite3_int64 *piTime = p->pVdbe!=0 ? &p->pVdbe->iCurrentTime : &iTime;
drha9e03b12015-03-12 06:46:52 +0000928#endif
drh3df79a92015-03-12 23:48:27 +0000929 if( *piTime==0 ){
drha9e03b12015-03-12 06:46:52 +0000930 rc = sqlite3OsCurrentTimeInt64(p->pOut->db->pVfs, piTime);
931 if( rc ) *piTime = 0;
drh95a7b3e2013-09-16 12:57:19 +0000932 }
drha9e03b12015-03-12 06:46:52 +0000933 return *piTime;
drh95a7b3e2013-09-16 12:57:19 +0000934}
935
936/*
drh9de4a172014-08-23 18:17:19 +0000937** Create a new aggregate context for p and return a pointer to
938** its pMem->z element.
939*/
940static SQLITE_NOINLINE void *createAggContext(sqlite3_context *p, int nByte){
941 Mem *pMem = p->pMem;
942 assert( (pMem->flags & MEM_Agg)==0 );
943 if( nByte<=0 ){
drh0725cab2014-09-17 14:52:46 +0000944 sqlite3VdbeMemSetNull(pMem);
drh9de4a172014-08-23 18:17:19 +0000945 pMem->z = 0;
946 }else{
drh322f2852014-09-19 00:43:39 +0000947 sqlite3VdbeMemClearAndResize(pMem, nByte);
drh9de4a172014-08-23 18:17:19 +0000948 pMem->flags = MEM_Agg;
949 pMem->u.pDef = p->pFunc;
950 if( pMem->z ){
951 memset(pMem->z, 0, nByte);
952 }
953 }
954 return (void*)pMem->z;
955}
956
957/*
drheb2e1762004-05-27 01:53:56 +0000958** Allocate or return the aggregate context for a user function. A new
959** context is allocated on the first call. Subsequent calls return the
960** same context that was returned on prior calls.
drheb2e1762004-05-27 01:53:56 +0000961*/
962void *sqlite3_aggregate_context(sqlite3_context *p, int nByte){
drh2d801512016-01-14 22:19:58 +0000963 assert( p && p->pFunc && p->pFunc->xFinalize );
drh9bd038f2014-08-27 14:14:06 +0000964 assert( sqlite3_mutex_held(p->pOut->db->mutex) );
drhd68eee02009-12-11 03:44:18 +0000965 testcase( nByte<0 );
drh9de4a172014-08-23 18:17:19 +0000966 if( (p->pMem->flags & MEM_Agg)==0 ){
967 return createAggContext(p, nByte);
968 }else{
969 return (void*)p->pMem->z;
drheb2e1762004-05-27 01:53:56 +0000970 }
drheb2e1762004-05-27 01:53:56 +0000971}
972
973/*
peter.d.reid60ec9142014-09-06 16:39:46 +0000974** Return the auxiliary data pointer, if any, for the iArg'th argument to
danielk1977682f68b2004-06-05 10:22:17 +0000975** the user-function defined by pCtx.
drhf7fa4e72017-05-11 15:20:18 +0000976**
977** The left-most argument is 0.
978**
979** Undocumented behavior: If iArg is negative then access a cache of
980** auxiliary data pointers that is available to all functions within a
981** single prepared statement. The iArg values must match.
danielk1977682f68b2004-06-05 10:22:17 +0000982*/
983void *sqlite3_get_auxdata(sqlite3_context *pCtx, int iArg){
dan0c547792013-07-18 17:12:08 +0000984 AuxData *pAuxData;
drhb21c8cd2007-08-21 19:33:56 +0000985
drh9bd038f2014-08-27 14:14:06 +0000986 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh175b8f02019-08-08 15:24:17 +0000987#if SQLITE_ENABLE_STAT4
dan18bf8072015-03-11 20:06:40 +0000988 if( pCtx->pVdbe==0 ) return 0;
drha9e03b12015-03-12 06:46:52 +0000989#else
990 assert( pCtx->pVdbe!=0 );
991#endif
drhe6941392017-05-10 19:42:52 +0000992 for(pAuxData=pCtx->pVdbe->pAuxData; pAuxData; pAuxData=pAuxData->pNextAux){
drhf7fa4e72017-05-11 15:20:18 +0000993 if( pAuxData->iAuxArg==iArg && (pAuxData->iAuxOp==pCtx->iOp || iArg<0) ){
drhe6941392017-05-10 19:42:52 +0000994 return pAuxData->pAux;
995 }
danielk1977682f68b2004-06-05 10:22:17 +0000996 }
drhe6941392017-05-10 19:42:52 +0000997 return 0;
danielk1977682f68b2004-06-05 10:22:17 +0000998}
999
1000/*
peter.d.reid60ec9142014-09-06 16:39:46 +00001001** Set the auxiliary data pointer and delete function, for the iArg'th
danielk1977682f68b2004-06-05 10:22:17 +00001002** argument to the user-function defined by pCtx. Any previous value is
1003** deleted by calling the delete function specified when it was set.
drhf7fa4e72017-05-11 15:20:18 +00001004**
1005** The left-most argument is 0.
1006**
1007** Undocumented behavior: If iArg is negative then make the data available
1008** to all functions within the current prepared statement using iArg as an
1009** access code.
danielk1977682f68b2004-06-05 10:22:17 +00001010*/
1011void sqlite3_set_auxdata(
1012 sqlite3_context *pCtx,
1013 int iArg,
1014 void *pAux,
1015 void (*xDelete)(void*)
1016){
dan0c547792013-07-18 17:12:08 +00001017 AuxData *pAuxData;
1018 Vdbe *pVdbe = pCtx->pVdbe;
danielk1977682f68b2004-06-05 10:22:17 +00001019
drh9bd038f2014-08-27 14:14:06 +00001020 assert( sqlite3_mutex_held(pCtx->pOut->db->mutex) );
drh175b8f02019-08-08 15:24:17 +00001021#ifdef SQLITE_ENABLE_STAT4
dan18bf8072015-03-11 20:06:40 +00001022 if( pVdbe==0 ) goto failed;
drha9e03b12015-03-12 06:46:52 +00001023#else
1024 assert( pVdbe!=0 );
1025#endif
danielk1977682f68b2004-06-05 10:22:17 +00001026
drhe6941392017-05-10 19:42:52 +00001027 for(pAuxData=pVdbe->pAuxData; pAuxData; pAuxData=pAuxData->pNextAux){
drhf7fa4e72017-05-11 15:20:18 +00001028 if( pAuxData->iAuxArg==iArg && (pAuxData->iAuxOp==pCtx->iOp || iArg<0) ){
1029 break;
1030 }
dan0c547792013-07-18 17:12:08 +00001031 }
1032 if( pAuxData==0 ){
1033 pAuxData = sqlite3DbMallocZero(pVdbe->db, sizeof(AuxData));
1034 if( !pAuxData ) goto failed;
drhe6941392017-05-10 19:42:52 +00001035 pAuxData->iAuxOp = pCtx->iOp;
1036 pAuxData->iAuxArg = iArg;
1037 pAuxData->pNextAux = pVdbe->pAuxData;
dan0c547792013-07-18 17:12:08 +00001038 pVdbe->pAuxData = pAuxData;
drhf09ac0b2018-01-23 03:44:06 +00001039 if( pCtx->isError==0 ) pCtx->isError = -1;
drhe6941392017-05-10 19:42:52 +00001040 }else if( pAuxData->xDeleteAux ){
1041 pAuxData->xDeleteAux(pAuxData->pAux);
danielk1977682f68b2004-06-05 10:22:17 +00001042 }
dan0c547792013-07-18 17:12:08 +00001043
danielk1977682f68b2004-06-05 10:22:17 +00001044 pAuxData->pAux = pAux;
drhe6941392017-05-10 19:42:52 +00001045 pAuxData->xDeleteAux = xDelete;
danielk1977e0fc5262007-07-26 06:50:05 +00001046 return;
1047
1048failed:
1049 if( xDelete ){
1050 xDelete(pAux);
1051 }
danielk1977682f68b2004-06-05 10:22:17 +00001052}
1053
shaneeec556d2008-10-12 00:27:53 +00001054#ifndef SQLITE_OMIT_DEPRECATED
danielk1977682f68b2004-06-05 10:22:17 +00001055/*
peter.d.reid60ec9142014-09-06 16:39:46 +00001056** Return the number of times the Step function of an aggregate has been
drheb2e1762004-05-27 01:53:56 +00001057** called.
1058**
drhcf85a512006-02-09 18:35:29 +00001059** This function is deprecated. Do not use it for new code. It is
1060** provide only to avoid breaking legacy code. New aggregate function
1061** implementations should keep their own counts within their aggregate
1062** context.
drheb2e1762004-05-27 01:53:56 +00001063*/
1064int sqlite3_aggregate_count(sqlite3_context *p){
drh2d801512016-01-14 22:19:58 +00001065 assert( p && p->pMem && p->pFunc && p->pFunc->xFinalize );
drhabfcea22005-09-06 20:36:48 +00001066 return p->pMem->n;
drheb2e1762004-05-27 01:53:56 +00001067}
shaneeec556d2008-10-12 00:27:53 +00001068#endif
drheb2e1762004-05-27 01:53:56 +00001069
1070/*
drh4f26d6c2004-05-26 23:25:30 +00001071** Return the number of columns in the result set for the statement pStmt.
1072*/
1073int sqlite3_column_count(sqlite3_stmt *pStmt){
1074 Vdbe *pVm = (Vdbe *)pStmt;
drh1bcdb0c2004-08-28 14:49:46 +00001075 return pVm ? pVm->nResColumn : 0;
drh4f26d6c2004-05-26 23:25:30 +00001076}
1077
1078/*
1079** Return the number of values available from the current row of the
1080** currently executing statement pStmt.
1081*/
1082int sqlite3_data_count(sqlite3_stmt *pStmt){
1083 Vdbe *pVm = (Vdbe *)pStmt;
drhd4e70eb2008-01-02 00:34:36 +00001084 if( pVm==0 || pVm->pResultSet==0 ) return 0;
drh4f26d6c2004-05-26 23:25:30 +00001085 return pVm->nResColumn;
1086}
1087
dan46c47d42011-03-01 18:42:07 +00001088/*
1089** Return a pointer to static memory containing an SQL NULL value.
1090*/
1091static const Mem *columnNullValue(void){
1092 /* Even though the Mem structure contains an element
drhb1a1c292014-03-05 12:47:55 +00001093 ** of type i64, on certain architectures (x86) with certain compiler
dan46c47d42011-03-01 18:42:07 +00001094 ** switches (-Os), gcc may align this Mem object on a 4-byte boundary
1095 ** instead of an 8-byte one. This all works fine, except that when
1096 ** running with SQLITE_DEBUG defined the SQLite code sometimes assert()s
1097 ** that a Mem structure is located on an 8-byte boundary. To prevent
drhb1a1c292014-03-05 12:47:55 +00001098 ** these assert()s from failing, when building with SQLITE_DEBUG defined
1099 ** using gcc, we force nullMem to be 8-byte aligned using the magical
dan46c47d42011-03-01 18:42:07 +00001100 ** __attribute__((aligned(8))) macro. */
1101 static const Mem nullMem
1102#if defined(SQLITE_DEBUG) && defined(__GNUC__)
drhb1a1c292014-03-05 12:47:55 +00001103 __attribute__((aligned(8)))
dan46c47d42011-03-01 18:42:07 +00001104#endif
drh035e5632014-09-16 14:16:31 +00001105 = {
drh3329a632014-09-18 01:21:43 +00001106 /* .u = */ {0},
drh8faee872015-09-19 18:08:13 +00001107 /* .flags = */ (u16)MEM_Null,
1108 /* .enc = */ (u8)0,
1109 /* .eSubtype = */ (u8)0,
1110 /* .n = */ (int)0,
1111 /* .z = */ (char*)0,
1112 /* .zMalloc = */ (char*)0,
1113 /* .szMalloc = */ (int)0,
1114 /* .uTemp = */ (u32)0,
1115 /* .db = */ (sqlite3*)0,
1116 /* .xDel = */ (void(*)(void*))0,
drhb1a1c292014-03-05 12:47:55 +00001117#ifdef SQLITE_DEBUG
drh8faee872015-09-19 18:08:13 +00001118 /* .pScopyFrom = */ (Mem*)0,
drh58773a52018-06-12 13:52:23 +00001119 /* .mScopyFlags= */ 0,
1120#endif
drh035e5632014-09-16 14:16:31 +00001121 };
dan46c47d42011-03-01 18:42:07 +00001122 return &nullMem;
1123}
drh4f26d6c2004-05-26 23:25:30 +00001124
1125/*
1126** Check to see if column iCol of the given statement is valid. If
1127** it is, return a pointer to the Mem for the value of that column.
1128** If iCol is not valid, return a pointer to a Mem which has a value
1129** of NULL.
1130*/
1131static Mem *columnMem(sqlite3_stmt *pStmt, int i){
drh32bc3f62007-08-21 20:25:39 +00001132 Vdbe *pVm;
drh32bc3f62007-08-21 20:25:39 +00001133 Mem *pOut;
1134
1135 pVm = (Vdbe *)pStmt;
drh28f17012016-09-22 21:37:18 +00001136 if( pVm==0 ) return (Mem*)columnNullValue();
1137 assert( pVm->db );
1138 sqlite3_mutex_enter(pVm->db->mutex);
1139 if( pVm->pResultSet!=0 && i<pVm->nResColumn && i>=0 ){
drhd4e70eb2008-01-02 00:34:36 +00001140 pOut = &pVm->pResultSet[i];
drh32bc3f62007-08-21 20:25:39 +00001141 }else{
drh28f17012016-09-22 21:37:18 +00001142 sqlite3Error(pVm->db, SQLITE_RANGE);
dan46c47d42011-03-01 18:42:07 +00001143 pOut = (Mem*)columnNullValue();
drh4f26d6c2004-05-26 23:25:30 +00001144 }
drh32bc3f62007-08-21 20:25:39 +00001145 return pOut;
drh4f26d6c2004-05-26 23:25:30 +00001146}
1147
danielk19772e588c72005-12-09 14:25:08 +00001148/*
1149** This function is called after invoking an sqlite3_value_XXX function on a
1150** column value (i.e. a value returned by evaluating an SQL expression in the
1151** select list of a SELECT statement) that may cause a malloc() failure. If
1152** malloc() has failed, the threads mallocFailed flag is cleared and the result
1153** code of statement pStmt set to SQLITE_NOMEM.
1154**
drh32bc3f62007-08-21 20:25:39 +00001155** Specifically, this is called from within:
danielk19772e588c72005-12-09 14:25:08 +00001156**
1157** sqlite3_column_int()
1158** sqlite3_column_int64()
1159** sqlite3_column_text()
1160** sqlite3_column_text16()
1161** sqlite3_column_real()
1162** sqlite3_column_bytes()
1163** sqlite3_column_bytes16()
drh42262532010-09-08 16:30:36 +00001164** sqiite3_column_blob()
danielk19772e588c72005-12-09 14:25:08 +00001165*/
1166static void columnMallocFailure(sqlite3_stmt *pStmt)
1167{
1168 /* If malloc() failed during an encoding conversion within an
1169 ** sqlite3_column_XXX API, then set the return code of the statement to
1170 ** SQLITE_NOMEM. The next call to _step() (if any) will return SQLITE_ERROR
1171 ** and _finalize() will return NOMEM.
1172 */
danielk197754f01982006-01-18 15:25:17 +00001173 Vdbe *p = (Vdbe *)pStmt;
drh32bc3f62007-08-21 20:25:39 +00001174 if( p ){
drh28f17012016-09-22 21:37:18 +00001175 assert( p->db!=0 );
1176 assert( sqlite3_mutex_held(p->db->mutex) );
drh32bc3f62007-08-21 20:25:39 +00001177 p->rc = sqlite3ApiExit(p->db, p->rc);
1178 sqlite3_mutex_leave(p->db->mutex);
1179 }
danielk19772e588c72005-12-09 14:25:08 +00001180}
1181
drh4f26d6c2004-05-26 23:25:30 +00001182/**************************** sqlite3_column_ *******************************
1183** The following routines are used to access elements of the current row
1184** in the result set.
1185*/
danielk1977c572ef72004-05-27 09:28:41 +00001186const void *sqlite3_column_blob(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001187 const void *val;
danielk19772e588c72005-12-09 14:25:08 +00001188 val = sqlite3_value_blob( columnMem(pStmt,i) );
danielk1977c9cf9012007-05-30 10:36:47 +00001189 /* Even though there is no encoding conversion, value_blob() might
1190 ** need to call malloc() to expand the result of a zeroblob()
1191 ** expression.
1192 */
1193 columnMallocFailure(pStmt);
danielk19772e588c72005-12-09 14:25:08 +00001194 return val;
danielk1977c572ef72004-05-27 09:28:41 +00001195}
drh4f26d6c2004-05-26 23:25:30 +00001196int sqlite3_column_bytes(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001197 int val = sqlite3_value_bytes( columnMem(pStmt,i) );
1198 columnMallocFailure(pStmt);
1199 return val;
drh4f26d6c2004-05-26 23:25:30 +00001200}
1201int sqlite3_column_bytes16(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001202 int val = sqlite3_value_bytes16( columnMem(pStmt,i) );
1203 columnMallocFailure(pStmt);
1204 return val;
drh4f26d6c2004-05-26 23:25:30 +00001205}
1206double sqlite3_column_double(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001207 double val = sqlite3_value_double( columnMem(pStmt,i) );
1208 columnMallocFailure(pStmt);
1209 return val;
drh4f26d6c2004-05-26 23:25:30 +00001210}
1211int sqlite3_column_int(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001212 int val = sqlite3_value_int( columnMem(pStmt,i) );
1213 columnMallocFailure(pStmt);
1214 return val;
drh4f26d6c2004-05-26 23:25:30 +00001215}
drhefad9992004-06-22 12:13:55 +00001216sqlite_int64 sqlite3_column_int64(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001217 sqlite_int64 val = sqlite3_value_int64( columnMem(pStmt,i) );
1218 columnMallocFailure(pStmt);
1219 return val;
drh4f26d6c2004-05-26 23:25:30 +00001220}
1221const unsigned char *sqlite3_column_text(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001222 const unsigned char *val = sqlite3_value_text( columnMem(pStmt,i) );
1223 columnMallocFailure(pStmt);
1224 return val;
drh4f26d6c2004-05-26 23:25:30 +00001225}
drhd1e47332005-06-26 17:55:33 +00001226sqlite3_value *sqlite3_column_value(sqlite3_stmt *pStmt, int i){
danielk1977d0ffa1e2008-10-13 10:37:49 +00001227 Mem *pOut = columnMem(pStmt, i);
1228 if( pOut->flags&MEM_Static ){
1229 pOut->flags &= ~MEM_Static;
1230 pOut->flags |= MEM_Ephem;
1231 }
drh32bc3f62007-08-21 20:25:39 +00001232 columnMallocFailure(pStmt);
danielk1977d0ffa1e2008-10-13 10:37:49 +00001233 return (sqlite3_value *)pOut;
drhd1e47332005-06-26 17:55:33 +00001234}
drh6c626082004-11-14 21:56:29 +00001235#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +00001236const void *sqlite3_column_text16(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +00001237 const void *val = sqlite3_value_text16( columnMem(pStmt,i) );
1238 columnMallocFailure(pStmt);
1239 return val;
drh4f26d6c2004-05-26 23:25:30 +00001240}
drh6c626082004-11-14 21:56:29 +00001241#endif /* SQLITE_OMIT_UTF16 */
drh4f26d6c2004-05-26 23:25:30 +00001242int sqlite3_column_type(sqlite3_stmt *pStmt, int i){
drh32bc3f62007-08-21 20:25:39 +00001243 int iType = sqlite3_value_type( columnMem(pStmt,i) );
1244 columnMallocFailure(pStmt);
1245 return iType;
drh4f26d6c2004-05-26 23:25:30 +00001246}
1247
drh5e2517e2004-09-24 23:59:12 +00001248/*
1249** Convert the N-th element of pStmt->pColName[] into a string using
1250** xFunc() then return that string. If N is out of range, return 0.
drhe590fbd2005-05-20 19:36:01 +00001251**
1252** There are up to 5 names for each column. useType determines which
1253** name is returned. Here are the names:
1254**
1255** 0 The column name as it should be displayed for output
1256** 1 The datatype name for the column
1257** 2 The name of the database that the column derives from
1258** 3 The name of the table that the column derives from
1259** 4 The name of the table column that the result column derives from
1260**
1261** If the result is not a simple column reference (if it is an expression
1262** or a constant) then useTypes 2, 3, and 4 return NULL.
drh5e2517e2004-09-24 23:59:12 +00001263*/
1264static const void *columnName(
drh8cf92892019-02-20 18:13:57 +00001265 sqlite3_stmt *pStmt, /* The statement */
1266 int N, /* Which column to get the name for */
1267 int useUtf16, /* True to return the name as UTF16 */
1268 int useType /* What type of name */
drh5e2517e2004-09-24 23:59:12 +00001269){
drh9ca95732014-10-24 00:35:58 +00001270 const void *ret;
1271 Vdbe *p;
drh32bc3f62007-08-21 20:25:39 +00001272 int n;
drh9ca95732014-10-24 00:35:58 +00001273 sqlite3 *db;
1274#ifdef SQLITE_ENABLE_API_ARMOR
1275 if( pStmt==0 ){
1276 (void)SQLITE_MISUSE_BKPT;
1277 return 0;
1278 }
1279#endif
1280 ret = 0;
1281 p = (Vdbe *)pStmt;
1282 db = p->db;
drh9b4ea4a2009-04-10 20:32:00 +00001283 assert( db!=0 );
1284 n = sqlite3_column_count(pStmt);
1285 if( N<n && N>=0 ){
1286 N += useType*n;
1287 sqlite3_mutex_enter(db->mutex);
1288 assert( db->mallocFailed==0 );
dan4474e862019-03-04 07:15:57 +00001289#ifndef SQLITE_OMIT_UTF16
drh8cf92892019-02-20 18:13:57 +00001290 if( useUtf16 ){
1291 ret = sqlite3_value_text16((sqlite3_value*)&p->aColName[N]);
dan4474e862019-03-04 07:15:57 +00001292 }else
1293#endif
1294 {
drh8cf92892019-02-20 18:13:57 +00001295 ret = sqlite3_value_text((sqlite3_value*)&p->aColName[N]);
1296 }
1297 /* A malloc may have failed inside of the _text() call. If this
drh9b4ea4a2009-04-10 20:32:00 +00001298 ** is the case, clear the mallocFailed flag and return NULL.
1299 */
1300 if( db->mallocFailed ){
drh4a642b62016-02-05 01:55:27 +00001301 sqlite3OomClear(db);
drh9b4ea4a2009-04-10 20:32:00 +00001302 ret = 0;
drh32bc3f62007-08-21 20:25:39 +00001303 }
drh9b4ea4a2009-04-10 20:32:00 +00001304 sqlite3_mutex_leave(db->mutex);
drh5e2517e2004-09-24 23:59:12 +00001305 }
danielk197700fd9572005-12-07 06:27:43 +00001306 return ret;
drh5e2517e2004-09-24 23:59:12 +00001307}
1308
drh4f26d6c2004-05-26 23:25:30 +00001309/*
1310** Return the name of the Nth column of the result set returned by SQL
1311** statement pStmt.
1312*/
1313const char *sqlite3_column_name(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001314 return columnName(pStmt, N, 0, COLNAME_NAME);
drh4f26d6c2004-05-26 23:25:30 +00001315}
drhe590fbd2005-05-20 19:36:01 +00001316#ifndef SQLITE_OMIT_UTF16
1317const void *sqlite3_column_name16(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001318 return columnName(pStmt, N, 1, COLNAME_NAME);
drhe590fbd2005-05-20 19:36:01 +00001319}
1320#endif
drh4f26d6c2004-05-26 23:25:30 +00001321
1322/*
drh3f913572008-03-22 01:07:17 +00001323** Constraint: If you have ENABLE_COLUMN_METADATA then you must
1324** not define OMIT_DECLTYPE.
1325*/
1326#if defined(SQLITE_OMIT_DECLTYPE) && defined(SQLITE_ENABLE_COLUMN_METADATA)
1327# error "Must not define both SQLITE_OMIT_DECLTYPE \
1328 and SQLITE_ENABLE_COLUMN_METADATA"
1329#endif
1330
1331#ifndef SQLITE_OMIT_DECLTYPE
1332/*
drh6c626082004-11-14 21:56:29 +00001333** Return the column declaration type (if applicable) of the 'i'th column
drhe590fbd2005-05-20 19:36:01 +00001334** of the result set of SQL statement pStmt.
drh6c626082004-11-14 21:56:29 +00001335*/
1336const char *sqlite3_column_decltype(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001337 return columnName(pStmt, N, 0, COLNAME_DECLTYPE);
drh6c626082004-11-14 21:56:29 +00001338}
drh6c626082004-11-14 21:56:29 +00001339#ifndef SQLITE_OMIT_UTF16
danielk197776d505b2004-05-28 13:13:02 +00001340const void *sqlite3_column_decltype16(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001341 return columnName(pStmt, N, 1, COLNAME_DECLTYPE);
drh4f26d6c2004-05-26 23:25:30 +00001342}
drh6c626082004-11-14 21:56:29 +00001343#endif /* SQLITE_OMIT_UTF16 */
drh3f913572008-03-22 01:07:17 +00001344#endif /* SQLITE_OMIT_DECLTYPE */
drh4f26d6c2004-05-26 23:25:30 +00001345
danielk19774b1ae992006-02-10 03:06:10 +00001346#ifdef SQLITE_ENABLE_COLUMN_METADATA
drhe590fbd2005-05-20 19:36:01 +00001347/*
1348** Return the name of the database from which a result column derives.
1349** NULL is returned if the result column is an expression or constant or
peter.d.reid60ec9142014-09-06 16:39:46 +00001350** anything else which is not an unambiguous reference to a database column.
drhe590fbd2005-05-20 19:36:01 +00001351*/
1352const char *sqlite3_column_database_name(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001353 return columnName(pStmt, N, 0, COLNAME_DATABASE);
drhe590fbd2005-05-20 19:36:01 +00001354}
1355#ifndef SQLITE_OMIT_UTF16
1356const void *sqlite3_column_database_name16(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001357 return columnName(pStmt, N, 1, COLNAME_DATABASE);
drhe590fbd2005-05-20 19:36:01 +00001358}
1359#endif /* SQLITE_OMIT_UTF16 */
1360
1361/*
1362** Return the name of the table from which a result column derives.
1363** NULL is returned if the result column is an expression or constant or
peter.d.reid60ec9142014-09-06 16:39:46 +00001364** anything else which is not an unambiguous reference to a database column.
drhe590fbd2005-05-20 19:36:01 +00001365*/
1366const char *sqlite3_column_table_name(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001367 return columnName(pStmt, N, 0, COLNAME_TABLE);
drhe590fbd2005-05-20 19:36:01 +00001368}
1369#ifndef SQLITE_OMIT_UTF16
1370const void *sqlite3_column_table_name16(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001371 return columnName(pStmt, N, 1, COLNAME_TABLE);
drhe590fbd2005-05-20 19:36:01 +00001372}
1373#endif /* SQLITE_OMIT_UTF16 */
1374
1375/*
1376** Return the name of the table column from which a result column derives.
1377** NULL is returned if the result column is an expression or constant or
peter.d.reid60ec9142014-09-06 16:39:46 +00001378** anything else which is not an unambiguous reference to a database column.
drhe590fbd2005-05-20 19:36:01 +00001379*/
1380const char *sqlite3_column_origin_name(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001381 return columnName(pStmt, N, 0, COLNAME_COLUMN);
drhe590fbd2005-05-20 19:36:01 +00001382}
1383#ifndef SQLITE_OMIT_UTF16
1384const void *sqlite3_column_origin_name16(sqlite3_stmt *pStmt, int N){
drh8cf92892019-02-20 18:13:57 +00001385 return columnName(pStmt, N, 1, COLNAME_COLUMN);
drhe590fbd2005-05-20 19:36:01 +00001386}
1387#endif /* SQLITE_OMIT_UTF16 */
danielk19774b1ae992006-02-10 03:06:10 +00001388#endif /* SQLITE_ENABLE_COLUMN_METADATA */
drhe590fbd2005-05-20 19:36:01 +00001389
1390
drh4f26d6c2004-05-26 23:25:30 +00001391/******************************* sqlite3_bind_ ***************************
1392**
1393** Routines used to attach values to wildcards in a compiled SQL statement.
1394*/
1395/*
1396** Unbind the value bound to variable i in virtual machine p. This is the
1397** the same as binding a NULL value to the column. If the "i" parameter is
1398** out of range, then SQLITE_RANGE is returned. Othewise SQLITE_OK.
1399**
drh488e7b62008-10-06 12:46:43 +00001400** A successful evaluation of this routine acquires the mutex on p.
1401** the mutex is released if any kind of error occurs.
1402**
drh4f26d6c2004-05-26 23:25:30 +00001403** The error code stored in database p->db is overwritten with the return
1404** value in any case.
1405*/
1406static int vdbeUnbind(Vdbe *p, int i){
1407 Mem *pVar;
drh413c3d32010-02-23 20:11:56 +00001408 if( vdbeSafetyNotNull(p) ){
1409 return SQLITE_MISUSE_BKPT;
1410 }
drh488e7b62008-10-06 12:46:43 +00001411 sqlite3_mutex_enter(p->db->mutex);
drh17b74812021-02-03 18:32:25 +00001412 if( p->iVdbeMagic!=VDBE_MAGIC_RUN || p->pc>=0 ){
drh13f40da2014-08-22 18:00:11 +00001413 sqlite3Error(p->db, SQLITE_MISUSE);
drh488e7b62008-10-06 12:46:43 +00001414 sqlite3_mutex_leave(p->db->mutex);
drh413c3d32010-02-23 20:11:56 +00001415 sqlite3_log(SQLITE_MISUSE,
1416 "bind on a busy prepared statement: [%s]", p->zSql);
1417 return SQLITE_MISUSE_BKPT;
drh4f26d6c2004-05-26 23:25:30 +00001418 }
1419 if( i<1 || i>p->nVar ){
drh13f40da2014-08-22 18:00:11 +00001420 sqlite3Error(p->db, SQLITE_RANGE);
drh488e7b62008-10-06 12:46:43 +00001421 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001422 return SQLITE_RANGE;
1423 }
1424 i--;
drh290c1942004-08-21 17:54:45 +00001425 pVar = &p->aVar[i];
danielk1977d8123362004-06-12 09:25:12 +00001426 sqlite3VdbeMemRelease(pVar);
drh4f26d6c2004-05-26 23:25:30 +00001427 pVar->flags = MEM_Null;
drh368bfe82018-12-11 12:20:41 +00001428 p->db->errCode = SQLITE_OK;
dan937d0de2009-10-15 18:35:38 +00001429
dan1d2ce4f2009-10-19 18:11:09 +00001430 /* If the bit corresponding to this variable in Vdbe.expmask is set, then
1431 ** binding a new value to this variable invalidates the current query plan.
drha7044002010-09-14 18:22:59 +00001432 **
drhbbf6d432020-05-15 15:03:51 +00001433 ** IMPLEMENTATION-OF: R-57496-20354 If the specific value bound to a host
drha7044002010-09-14 18:22:59 +00001434 ** parameter in the WHERE clause might influence the choice of query plan
1435 ** for a statement, then the statement will be automatically recompiled,
1436 ** as if there had been a schema change, on the first sqlite3_step() call
1437 ** following any change to the bindings of that parameter.
dan1d2ce4f2009-10-19 18:11:09 +00001438 */
drh2c2f3922017-06-01 00:54:35 +00001439 assert( (p->prepFlags & SQLITE_PREPARE_SAVESQL)!=0 || p->expmask==0 );
drh29967962017-03-03 21:51:40 +00001440 if( p->expmask!=0 && (p->expmask & (i>=31 ? 0x80000000 : (u32)1<<i))!=0 ){
dan937d0de2009-10-15 18:35:38 +00001441 p->expired = 1;
1442 }
drh4f26d6c2004-05-26 23:25:30 +00001443 return SQLITE_OK;
1444}
1445
1446/*
drh5e2517e2004-09-24 23:59:12 +00001447** Bind a text or BLOB value.
drh4f26d6c2004-05-26 23:25:30 +00001448*/
drh5e2517e2004-09-24 23:59:12 +00001449static int bindText(
drh605264d2007-08-21 15:13:19 +00001450 sqlite3_stmt *pStmt, /* The statement to bind against */
1451 int i, /* Index of the parameter to bind */
1452 const void *zData, /* Pointer to the data to be bound */
drhd6228552021-06-09 14:45:02 +00001453 i64 nData, /* Number of bytes of data to be bound */
drh605264d2007-08-21 15:13:19 +00001454 void (*xDel)(void*), /* Destructor for the data */
drhb27b7f52008-12-10 18:03:45 +00001455 u8 encoding /* Encoding for the data */
drh4f26d6c2004-05-26 23:25:30 +00001456){
1457 Vdbe *p = (Vdbe *)pStmt;
1458 Mem *pVar;
1459 int rc;
1460
1461 rc = vdbeUnbind(p, i);
drh488e7b62008-10-06 12:46:43 +00001462 if( rc==SQLITE_OK ){
1463 if( zData!=0 ){
1464 pVar = &p->aVar[i-1];
1465 rc = sqlite3VdbeMemSetStr(pVar, zData, nData, encoding, xDel);
1466 if( rc==SQLITE_OK && encoding!=0 ){
1467 rc = sqlite3VdbeChangeEncoding(pVar, ENC(p->db));
1468 }
drhe70d01f2017-05-29 22:44:18 +00001469 if( rc ){
1470 sqlite3Error(p->db, rc);
1471 rc = sqlite3ApiExit(p->db, rc);
1472 }
drh27641702007-08-22 02:56:42 +00001473 }
drh488e7b62008-10-06 12:46:43 +00001474 sqlite3_mutex_leave(p->db->mutex);
drh94bb2ba2010-10-14 01:16:32 +00001475 }else if( xDel!=SQLITE_STATIC && xDel!=SQLITE_TRANSIENT ){
drh6fec9ee2010-10-12 02:13:32 +00001476 xDel((void*)zData);
drh4f26d6c2004-05-26 23:25:30 +00001477 }
drh605264d2007-08-21 15:13:19 +00001478 return rc;
drh4f26d6c2004-05-26 23:25:30 +00001479}
drh5e2517e2004-09-24 23:59:12 +00001480
1481
1482/*
1483** Bind a blob value to an SQL statement variable.
1484*/
1485int sqlite3_bind_blob(
1486 sqlite3_stmt *pStmt,
1487 int i,
1488 const void *zData,
1489 int nData,
1490 void (*xDel)(void*)
1491){
drh5b081d82016-02-18 01:29:12 +00001492#ifdef SQLITE_ENABLE_API_ARMOR
1493 if( nData<0 ) return SQLITE_MISUSE_BKPT;
1494#endif
drh5e2517e2004-09-24 23:59:12 +00001495 return bindText(pStmt, i, zData, nData, xDel, 0);
1496}
drhda4ca9d2014-09-09 17:27:35 +00001497int sqlite3_bind_blob64(
1498 sqlite3_stmt *pStmt,
1499 int i,
1500 const void *zData,
1501 sqlite3_uint64 nData,
1502 void (*xDel)(void*)
1503){
drhfc59a952014-09-11 23:34:55 +00001504 assert( xDel!=SQLITE_DYNAMIC );
drhd6228552021-06-09 14:45:02 +00001505 return bindText(pStmt, i, zData, nData, xDel, 0);
drhda4ca9d2014-09-09 17:27:35 +00001506}
drh4f26d6c2004-05-26 23:25:30 +00001507int sqlite3_bind_double(sqlite3_stmt *pStmt, int i, double rValue){
1508 int rc;
1509 Vdbe *p = (Vdbe *)pStmt;
drh4f26d6c2004-05-26 23:25:30 +00001510 rc = vdbeUnbind(p, i);
1511 if( rc==SQLITE_OK ){
drh290c1942004-08-21 17:54:45 +00001512 sqlite3VdbeMemSetDouble(&p->aVar[i-1], rValue);
drh488e7b62008-10-06 12:46:43 +00001513 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001514 }
danielk1977f4618892004-06-28 13:09:11 +00001515 return rc;
drh4f26d6c2004-05-26 23:25:30 +00001516}
1517int sqlite3_bind_int(sqlite3_stmt *p, int i, int iValue){
drhefad9992004-06-22 12:13:55 +00001518 return sqlite3_bind_int64(p, i, (i64)iValue);
drh4f26d6c2004-05-26 23:25:30 +00001519}
drhefad9992004-06-22 12:13:55 +00001520int sqlite3_bind_int64(sqlite3_stmt *pStmt, int i, sqlite_int64 iValue){
drh4f26d6c2004-05-26 23:25:30 +00001521 int rc;
1522 Vdbe *p = (Vdbe *)pStmt;
1523 rc = vdbeUnbind(p, i);
1524 if( rc==SQLITE_OK ){
drh290c1942004-08-21 17:54:45 +00001525 sqlite3VdbeMemSetInt64(&p->aVar[i-1], iValue);
drh488e7b62008-10-06 12:46:43 +00001526 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001527 }
1528 return rc;
1529}
drh605264d2007-08-21 15:13:19 +00001530int sqlite3_bind_null(sqlite3_stmt *pStmt, int i){
1531 int rc;
1532 Vdbe *p = (Vdbe*)pStmt;
drh605264d2007-08-21 15:13:19 +00001533 rc = vdbeUnbind(p, i);
drh488e7b62008-10-06 12:46:43 +00001534 if( rc==SQLITE_OK ){
1535 sqlite3_mutex_leave(p->db->mutex);
1536 }
drh605264d2007-08-21 15:13:19 +00001537 return rc;
drh4f26d6c2004-05-26 23:25:30 +00001538}
drh22930062017-07-27 03:48:02 +00001539int sqlite3_bind_pointer(
1540 sqlite3_stmt *pStmt,
1541 int i,
1542 void *pPtr,
1543 const char *zPTtype,
1544 void (*xDestructor)(void*)
1545){
drh3a96a5d2017-06-30 23:09:03 +00001546 int rc;
1547 Vdbe *p = (Vdbe*)pStmt;
1548 rc = vdbeUnbind(p, i);
1549 if( rc==SQLITE_OK ){
drh22930062017-07-27 03:48:02 +00001550 sqlite3VdbeMemSetPointer(&p->aVar[i-1], pPtr, zPTtype, xDestructor);
drh3a96a5d2017-06-30 23:09:03 +00001551 sqlite3_mutex_leave(p->db->mutex);
drh34fcf362017-07-27 16:42:36 +00001552 }else if( xDestructor ){
1553 xDestructor(pPtr);
drh3a96a5d2017-06-30 23:09:03 +00001554 }
1555 return rc;
1556}
drh4f26d6c2004-05-26 23:25:30 +00001557int sqlite3_bind_text(
1558 sqlite3_stmt *pStmt,
1559 int i,
1560 const char *zData,
1561 int nData,
danielk1977d8123362004-06-12 09:25:12 +00001562 void (*xDel)(void*)
drh4f26d6c2004-05-26 23:25:30 +00001563){
drh5e2517e2004-09-24 23:59:12 +00001564 return bindText(pStmt, i, zData, nData, xDel, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +00001565}
drhbbf483f2014-09-09 20:30:24 +00001566int sqlite3_bind_text64(
drhda4ca9d2014-09-09 17:27:35 +00001567 sqlite3_stmt *pStmt,
1568 int i,
1569 const char *zData,
1570 sqlite3_uint64 nData,
1571 void (*xDel)(void*),
1572 unsigned char enc
1573){
drhfc59a952014-09-11 23:34:55 +00001574 assert( xDel!=SQLITE_DYNAMIC );
drhd6228552021-06-09 14:45:02 +00001575 if( enc==SQLITE_UTF16 ) enc = SQLITE_UTF16NATIVE;
1576 return bindText(pStmt, i, zData, nData, xDel, enc);
drhda4ca9d2014-09-09 17:27:35 +00001577}
drh6c626082004-11-14 21:56:29 +00001578#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +00001579int sqlite3_bind_text16(
1580 sqlite3_stmt *pStmt,
1581 int i,
1582 const void *zData,
1583 int nData,
danielk1977d8123362004-06-12 09:25:12 +00001584 void (*xDel)(void*)
drh4f26d6c2004-05-26 23:25:30 +00001585){
drh5e2517e2004-09-24 23:59:12 +00001586 return bindText(pStmt, i, zData, nData, xDel, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +00001587}
drh6c626082004-11-14 21:56:29 +00001588#endif /* SQLITE_OMIT_UTF16 */
danielk197726e41442006-06-14 15:16:35 +00001589int sqlite3_bind_value(sqlite3_stmt *pStmt, int i, const sqlite3_value *pValue){
1590 int rc;
drh1b27b8c2014-02-10 03:21:57 +00001591 switch( sqlite3_value_type((sqlite3_value*)pValue) ){
drh29def562009-04-14 12:43:33 +00001592 case SQLITE_INTEGER: {
1593 rc = sqlite3_bind_int64(pStmt, i, pValue->u.i);
1594 break;
1595 }
1596 case SQLITE_FLOAT: {
dan63a47332022-02-11 16:10:18 +00001597 assert( pValue->flags & (MEM_Real|MEM_IntReal) );
1598 rc = sqlite3_bind_double(pStmt, i,
1599 (pValue->flags & MEM_Real) ? pValue->u.r : (double)pValue->u.i
1600 );
drh29def562009-04-14 12:43:33 +00001601 break;
1602 }
1603 case SQLITE_BLOB: {
1604 if( pValue->flags & MEM_Zero ){
1605 rc = sqlite3_bind_zeroblob(pStmt, i, pValue->u.nZero);
1606 }else{
1607 rc = sqlite3_bind_blob(pStmt, i, pValue->z, pValue->n,SQLITE_TRANSIENT);
1608 }
1609 break;
1610 }
1611 case SQLITE_TEXT: {
drhac80db72009-04-14 12:58:20 +00001612 rc = bindText(pStmt,i, pValue->z, pValue->n, SQLITE_TRANSIENT,
1613 pValue->enc);
1614 break;
1615 }
1616 default: {
1617 rc = sqlite3_bind_null(pStmt, i);
drh29def562009-04-14 12:43:33 +00001618 break;
1619 }
danielk197726e41442006-06-14 15:16:35 +00001620 }
1621 return rc;
1622}
drhb026e052007-05-02 01:34:31 +00001623int sqlite3_bind_zeroblob(sqlite3_stmt *pStmt, int i, int n){
1624 int rc;
1625 Vdbe *p = (Vdbe *)pStmt;
1626 rc = vdbeUnbind(p, i);
1627 if( rc==SQLITE_OK ){
dana32536b2021-11-08 19:35:26 +00001628#ifndef SQLITE_OMIT_INCRBLOB
drhb026e052007-05-02 01:34:31 +00001629 sqlite3VdbeMemSetZeroBlob(&p->aVar[i-1], n);
dana32536b2021-11-08 19:35:26 +00001630#else
1631 rc = sqlite3VdbeMemSetZeroBlob(&p->aVar[i-1], n);
1632#endif
drh488e7b62008-10-06 12:46:43 +00001633 sqlite3_mutex_leave(p->db->mutex);
drhb026e052007-05-02 01:34:31 +00001634 }
1635 return rc;
1636}
dan80c03022015-07-24 17:36:34 +00001637int sqlite3_bind_zeroblob64(sqlite3_stmt *pStmt, int i, sqlite3_uint64 n){
1638 int rc;
1639 Vdbe *p = (Vdbe *)pStmt;
1640 sqlite3_mutex_enter(p->db->mutex);
1641 if( n>(u64)p->db->aLimit[SQLITE_LIMIT_LENGTH] ){
1642 rc = SQLITE_TOOBIG;
1643 }else{
1644 assert( (n & 0x7FFFFFFF)==n );
1645 rc = sqlite3_bind_zeroblob(pStmt, i, n);
1646 }
1647 rc = sqlite3ApiExit(p->db, rc);
1648 sqlite3_mutex_leave(p->db->mutex);
1649 return rc;
1650}
drh75f6a032004-07-15 14:15:00 +00001651
1652/*
1653** Return the number of wildcards that can be potentially bound to.
1654** This routine is added to support DBD::SQLite.
drh75f6a032004-07-15 14:15:00 +00001655*/
1656int sqlite3_bind_parameter_count(sqlite3_stmt *pStmt){
drh92febd92004-08-20 18:34:20 +00001657 Vdbe *p = (Vdbe*)pStmt;
1658 return p ? p->nVar : 0;
drh75f6a032004-07-15 14:15:00 +00001659}
drh895d7472004-08-20 16:02:39 +00001660
1661/*
drhfa6bc002004-09-07 16:19:52 +00001662** Return the name of a wildcard parameter. Return NULL if the index
1663** is out of range or if the wildcard is unnamed.
1664**
1665** The result is always UTF-8.
1666*/
1667const char *sqlite3_bind_parameter_name(sqlite3_stmt *pStmt, int i){
1668 Vdbe *p = (Vdbe*)pStmt;
drh9bf755c2016-12-23 03:59:31 +00001669 if( p==0 ) return 0;
1670 return sqlite3VListNumToName(p->pVList, i);
drh895d7472004-08-20 16:02:39 +00001671}
drhfa6bc002004-09-07 16:19:52 +00001672
1673/*
1674** Given a wildcard parameter name, return the index of the variable
1675** with that name. If there is no variable with the given name,
1676** return 0.
1677*/
drh5f18a222009-11-26 14:01:53 +00001678int sqlite3VdbeParameterIndex(Vdbe *p, const char *zName, int nName){
drh9bf755c2016-12-23 03:59:31 +00001679 if( p==0 || zName==0 ) return 0;
1680 return sqlite3VListNameToNum(p->pVList, zName, nName);
drhfa6bc002004-09-07 16:19:52 +00001681}
drh5f18a222009-11-26 14:01:53 +00001682int sqlite3_bind_parameter_index(sqlite3_stmt *pStmt, const char *zName){
1683 return sqlite3VdbeParameterIndex((Vdbe*)pStmt, zName, sqlite3Strlen30(zName));
1684}
drhf8db1bc2005-04-22 02:38:37 +00001685
drh51942bc2005-06-12 22:01:42 +00001686/*
drhf8db1bc2005-04-22 02:38:37 +00001687** Transfer all bindings from the first statement over to the second.
drhf8db1bc2005-04-22 02:38:37 +00001688*/
shane145834a2008-09-04 12:03:42 +00001689int sqlite3TransferBindings(sqlite3_stmt *pFromStmt, sqlite3_stmt *pToStmt){
drhf8db1bc2005-04-22 02:38:37 +00001690 Vdbe *pFrom = (Vdbe*)pFromStmt;
1691 Vdbe *pTo = (Vdbe*)pToStmt;
drh0f5ea0b2009-04-09 14:02:44 +00001692 int i;
1693 assert( pTo->db==pFrom->db );
1694 assert( pTo->nVar==pFrom->nVar );
drh27641702007-08-22 02:56:42 +00001695 sqlite3_mutex_enter(pTo->db->mutex);
drh0f5ea0b2009-04-09 14:02:44 +00001696 for(i=0; i<pFrom->nVar; i++){
drh643167f2008-01-22 21:30:53 +00001697 sqlite3VdbeMemMove(&pTo->aVar[i], &pFrom->aVar[i]);
drhf8db1bc2005-04-22 02:38:37 +00001698 }
drh27641702007-08-22 02:56:42 +00001699 sqlite3_mutex_leave(pTo->db->mutex);
drh0f5ea0b2009-04-09 14:02:44 +00001700 return SQLITE_OK;
drhf8db1bc2005-04-22 02:38:37 +00001701}
drh51942bc2005-06-12 22:01:42 +00001702
shaneeec556d2008-10-12 00:27:53 +00001703#ifndef SQLITE_OMIT_DEPRECATED
drh51942bc2005-06-12 22:01:42 +00001704/*
shane145834a2008-09-04 12:03:42 +00001705** Deprecated external interface. Internal/core SQLite code
1706** should call sqlite3TransferBindings.
drh0f5ea0b2009-04-09 14:02:44 +00001707**
peter.d.reid60ec9142014-09-06 16:39:46 +00001708** It is misuse to call this routine with statements from different
drh0f5ea0b2009-04-09 14:02:44 +00001709** database connections. But as this is a deprecated interface, we
1710** will not bother to check for that condition.
1711**
1712** If the two statements contain a different number of bindings, then
1713** an SQLITE_ERROR is returned. Nothing else can go wrong, so otherwise
1714** SQLITE_OK is returned.
shane145834a2008-09-04 12:03:42 +00001715*/
1716int sqlite3_transfer_bindings(sqlite3_stmt *pFromStmt, sqlite3_stmt *pToStmt){
drh0f5ea0b2009-04-09 14:02:44 +00001717 Vdbe *pFrom = (Vdbe*)pFromStmt;
1718 Vdbe *pTo = (Vdbe*)pToStmt;
1719 if( pFrom->nVar!=pTo->nVar ){
1720 return SQLITE_ERROR;
1721 }
drh2c2f3922017-06-01 00:54:35 +00001722 assert( (pTo->prepFlags & SQLITE_PREPARE_SAVESQL)!=0 || pTo->expmask==0 );
danbda4cb82017-02-23 16:30:16 +00001723 if( pTo->expmask ){
danc94b8592009-10-20 07:01:24 +00001724 pTo->expired = 1;
1725 }
drh2c2f3922017-06-01 00:54:35 +00001726 assert( (pFrom->prepFlags & SQLITE_PREPARE_SAVESQL)!=0 || pFrom->expmask==0 );
danbda4cb82017-02-23 16:30:16 +00001727 if( pFrom->expmask ){
danc94b8592009-10-20 07:01:24 +00001728 pFrom->expired = 1;
1729 }
shane145834a2008-09-04 12:03:42 +00001730 return sqlite3TransferBindings(pFromStmt, pToStmt);
1731}
shaneeec556d2008-10-12 00:27:53 +00001732#endif
shane145834a2008-09-04 12:03:42 +00001733
1734/*
drh51942bc2005-06-12 22:01:42 +00001735** Return the sqlite3* database handle to which the prepared statement given
1736** in the argument belongs. This is the same database handle that was
1737** the first argument to the sqlite3_prepare() that was used to create
1738** the statement in the first place.
1739*/
1740sqlite3 *sqlite3_db_handle(sqlite3_stmt *pStmt){
1741 return pStmt ? ((Vdbe*)pStmt)->db : 0;
1742}
drhbb5a9c32008-06-19 02:52:25 +00001743
1744/*
drhf03d9cc2010-11-16 23:10:25 +00001745** Return true if the prepared statement is guaranteed to not modify the
1746** database.
1747*/
1748int sqlite3_stmt_readonly(sqlite3_stmt *pStmt){
1749 return pStmt ? ((Vdbe*)pStmt)->readOnly : 1;
1750}
1751
1752/*
drh39c5c4a2019-03-06 14:53:27 +00001753** Return 1 if the statement is an EXPLAIN and return 2 if the
1754** statement is an EXPLAIN QUERY PLAN
1755*/
1756int sqlite3_stmt_isexplain(sqlite3_stmt *pStmt){
1757 return pStmt ? ((Vdbe*)pStmt)->explain : 0;
1758}
1759
1760/*
drh2fb66932011-11-25 17:21:47 +00001761** Return true if the prepared statement is in need of being reset.
1762*/
1763int sqlite3_stmt_busy(sqlite3_stmt *pStmt){
1764 Vdbe *v = (Vdbe*)pStmt;
drh17b74812021-02-03 18:32:25 +00001765 return v!=0 && v->iVdbeMagic==VDBE_MAGIC_RUN && v->pc>=0;
drh2fb66932011-11-25 17:21:47 +00001766}
1767
1768/*
drhbb5a9c32008-06-19 02:52:25 +00001769** Return a pointer to the next prepared statement after pStmt associated
1770** with database connection pDb. If pStmt is NULL, return the first
1771** prepared statement for the database connection. Return NULL if there
1772** are no more.
1773*/
1774sqlite3_stmt *sqlite3_next_stmt(sqlite3 *pDb, sqlite3_stmt *pStmt){
1775 sqlite3_stmt *pNext;
drh9ca95732014-10-24 00:35:58 +00001776#ifdef SQLITE_ENABLE_API_ARMOR
1777 if( !sqlite3SafetyCheckOk(pDb) ){
1778 (void)SQLITE_MISUSE_BKPT;
1779 return 0;
1780 }
1781#endif
drhbb5a9c32008-06-19 02:52:25 +00001782 sqlite3_mutex_enter(pDb->mutex);
1783 if( pStmt==0 ){
1784 pNext = (sqlite3_stmt*)pDb->pVdbe;
1785 }else{
1786 pNext = (sqlite3_stmt*)((Vdbe*)pStmt)->pNext;
1787 }
1788 sqlite3_mutex_leave(pDb->mutex);
1789 return pNext;
1790}
drhd1d38482008-10-07 23:46:38 +00001791
1792/*
1793** Return the value of a status counter for a prepared statement
1794*/
1795int sqlite3_stmt_status(sqlite3_stmt *pStmt, int op, int resetFlag){
1796 Vdbe *pVdbe = (Vdbe*)pStmt;
drh9ca95732014-10-24 00:35:58 +00001797 u32 v;
1798#ifdef SQLITE_ENABLE_API_ARMOR
dan68cf69e2018-03-14 08:27:39 +00001799 if( !pStmt
1800 || (op!=SQLITE_STMTSTATUS_MEMUSED && (op<0||op>=ArraySize(pVdbe->aCounter)))
1801 ){
drh9ca95732014-10-24 00:35:58 +00001802 (void)SQLITE_MISUSE_BKPT;
1803 return 0;
1804 }
1805#endif
drh3528f6b2017-05-31 16:21:54 +00001806 if( op==SQLITE_STMTSTATUS_MEMUSED ){
1807 sqlite3 *db = pVdbe->db;
1808 sqlite3_mutex_enter(db->mutex);
1809 v = 0;
1810 db->pnBytesFreed = (int*)&v;
1811 sqlite3VdbeClearObject(db, pVdbe);
1812 sqlite3DbFree(db, pVdbe);
1813 db->pnBytesFreed = 0;
1814 sqlite3_mutex_leave(db->mutex);
1815 }else{
1816 v = pVdbe->aCounter[op];
1817 if( resetFlag ) pVdbe->aCounter[op] = 0;
1818 }
drh9b47ee32013-08-20 03:13:51 +00001819 return (int)v;
drhd1d38482008-10-07 23:46:38 +00001820}
dan46c47d42011-03-01 18:42:07 +00001821
drh557341e2016-07-23 02:07:26 +00001822/*
1823** Return the SQL associated with a prepared statement
1824*/
1825const char *sqlite3_sql(sqlite3_stmt *pStmt){
1826 Vdbe *p = (Vdbe *)pStmt;
1827 return p ? p->zSql : 0;
1828}
1829
1830/*
1831** Return the SQL associated with a prepared statement with
1832** bound parameters expanded. Space to hold the returned string is
1833** obtained from sqlite3_malloc(). The caller is responsible for
1834** freeing the returned string by passing it to sqlite3_free().
1835**
1836** The SQLITE_TRACE_SIZE_LIMIT puts an upper bound on the size of
1837** expanded bound parameters.
1838*/
1839char *sqlite3_expanded_sql(sqlite3_stmt *pStmt){
1840#ifdef SQLITE_OMIT_TRACE
1841 return 0;
1842#else
1843 char *z = 0;
1844 const char *zSql = sqlite3_sql(pStmt);
1845 if( zSql ){
1846 Vdbe *p = (Vdbe *)pStmt;
1847 sqlite3_mutex_enter(p->db->mutex);
1848 z = sqlite3VdbeExpandSql(p, zSql);
1849 sqlite3_mutex_leave(p->db->mutex);
1850 }
1851 return z;
1852#endif
1853}
1854
mistachkin8bee11a2018-10-29 17:53:23 +00001855#ifdef SQLITE_ENABLE_NORMALIZE
1856/*
1857** Return the normalized SQL associated with a prepared statement.
1858*/
1859const char *sqlite3_normalized_sql(sqlite3_stmt *pStmt){
1860 Vdbe *p = (Vdbe *)pStmt;
drh707821f2018-12-05 13:39:06 +00001861 if( p==0 ) return 0;
drh1a6c2b12018-12-10 20:01:40 +00001862 if( p->zNormSql==0 && ALWAYS(p->zSql!=0) ){
drh1f169fe2018-12-06 01:08:58 +00001863 sqlite3_mutex_enter(p->db->mutex);
drh1a6c2b12018-12-10 20:01:40 +00001864 p->zNormSql = sqlite3Normalize(p, p->zSql);
drh1f169fe2018-12-06 01:08:58 +00001865 sqlite3_mutex_leave(p->db->mutex);
drh707821f2018-12-05 13:39:06 +00001866 }
1867 return p->zNormSql;
mistachkin8bee11a2018-10-29 17:53:23 +00001868}
1869#endif /* SQLITE_ENABLE_NORMALIZE */
1870
drh9b1c62d2011-03-30 21:04:43 +00001871#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
dan37db03b2011-03-16 19:59:18 +00001872/*
dan93bca692011-09-14 19:41:44 +00001873** Allocate and populate an UnpackedRecord structure based on the serialized
1874** record in nKey/pKey. Return a pointer to the new UnpackedRecord structure
1875** if successful, or a NULL pointer if an OOM error is encountered.
1876*/
1877static UnpackedRecord *vdbeUnpackRecord(
1878 KeyInfo *pKeyInfo,
1879 int nKey,
1880 const void *pKey
1881){
dan93bca692011-09-14 19:41:44 +00001882 UnpackedRecord *pRet; /* Return value */
1883
drha582b012016-12-21 19:45:54 +00001884 pRet = sqlite3VdbeAllocUnpackedRecord(pKeyInfo);
dan93bca692011-09-14 19:41:44 +00001885 if( pRet ){
drha485ad12017-08-02 22:43:14 +00001886 memset(pRet->aMem, 0, sizeof(Mem)*(pKeyInfo->nKeyField+1));
dan93bca692011-09-14 19:41:44 +00001887 sqlite3VdbeRecordUnpack(pKeyInfo, nKey, pKey, pRet);
1888 }
1889 return pRet;
1890}
1891
1892/*
dan37db03b2011-03-16 19:59:18 +00001893** This function is called from within a pre-update callback to retrieve
1894** a field of the row currently being updated or deleted.
1895*/
dan46c47d42011-03-01 18:42:07 +00001896int sqlite3_preupdate_old(sqlite3 *db, int iIdx, sqlite3_value **ppValue){
1897 PreUpdate *p = db->pPreUpdate;
dan7271d7a2017-01-25 18:53:27 +00001898 Mem *pMem;
dan46c47d42011-03-01 18:42:07 +00001899 int rc = SQLITE_OK;
1900
dan37db03b2011-03-16 19:59:18 +00001901 /* Test that this call is being made from within an SQLITE_DELETE or
1902 ** SQLITE_UPDATE pre-update callback, and that iIdx is within range. */
dan46c47d42011-03-01 18:42:07 +00001903 if( !p || p->op==SQLITE_INSERT ){
1904 rc = SQLITE_MISUSE_BKPT;
1905 goto preupdate_old_out;
1906 }
dancb9a3642017-01-30 19:44:53 +00001907 if( p->pPk ){
drhb9bcf7c2019-10-19 13:29:10 +00001908 iIdx = sqlite3TableColumnToIndex(p->pPk, iIdx);
dancb9a3642017-01-30 19:44:53 +00001909 }
dan46c47d42011-03-01 18:42:07 +00001910 if( iIdx>=p->pCsr->nField || iIdx<0 ){
1911 rc = SQLITE_RANGE;
1912 goto preupdate_old_out;
1913 }
1914
dan37db03b2011-03-16 19:59:18 +00001915 /* If the old.* record has not yet been loaded into memory, do so now. */
dan46c47d42011-03-01 18:42:07 +00001916 if( p->pUnpacked==0 ){
dan12ca0b52011-03-21 16:17:42 +00001917 u32 nRec;
1918 u8 *aRec;
dan46c47d42011-03-01 18:42:07 +00001919
drh3ab4ffc2021-11-11 11:23:08 +00001920 assert( p->pCsr->eCurType==CURTYPE_BTREE );
drha7c90c42016-06-04 20:37:10 +00001921 nRec = sqlite3BtreePayloadSize(p->pCsr->uc.pCursor);
dan12ca0b52011-03-21 16:17:42 +00001922 aRec = sqlite3DbMallocRaw(db, nRec);
1923 if( !aRec ) goto preupdate_old_out;
drhcb3cabd2016-11-25 19:18:28 +00001924 rc = sqlite3BtreePayload(p->pCsr->uc.pCursor, 0, nRec, aRec);
dan12ca0b52011-03-21 16:17:42 +00001925 if( rc==SQLITE_OK ){
dan93bca692011-09-14 19:41:44 +00001926 p->pUnpacked = vdbeUnpackRecord(&p->keyinfo, nRec, aRec);
dan12ca0b52011-03-21 16:17:42 +00001927 if( !p->pUnpacked ) rc = SQLITE_NOMEM;
1928 }
dan46c47d42011-03-01 18:42:07 +00001929 if( rc!=SQLITE_OK ){
dan12ca0b52011-03-21 16:17:42 +00001930 sqlite3DbFree(db, aRec);
dan46c47d42011-03-01 18:42:07 +00001931 goto preupdate_old_out;
1932 }
dan12ca0b52011-03-21 16:17:42 +00001933 p->aRecord = aRec;
dan46c47d42011-03-01 18:42:07 +00001934 }
1935
dan7271d7a2017-01-25 18:53:27 +00001936 pMem = *ppValue = &p->pUnpacked->aMem[iIdx];
1937 if( iIdx==p->pTab->iPKey ){
1938 sqlite3VdbeMemSetInt64(pMem, p->iKey1);
1939 }else if( iIdx>=p->pUnpacked->nField ){
dan46c47d42011-03-01 18:42:07 +00001940 *ppValue = (sqlite3_value *)columnNullValue();
dan7271d7a2017-01-25 18:53:27 +00001941 }else if( p->pTab->aCol[iIdx].affinity==SQLITE_AFF_REAL ){
drh169f0772019-05-02 21:36:26 +00001942 if( pMem->flags & (MEM_Int|MEM_IntReal) ){
drh3242c692019-05-04 01:29:13 +00001943 testcase( pMem->flags & MEM_Int );
1944 testcase( pMem->flags & MEM_IntReal );
dan7271d7a2017-01-25 18:53:27 +00001945 sqlite3VdbeMemRealify(pMem);
dan319eeb72011-03-19 08:38:50 +00001946 }
dan46c47d42011-03-01 18:42:07 +00001947 }
1948
1949 preupdate_old_out:
drhe1ed0b02014-08-26 02:15:07 +00001950 sqlite3Error(db, rc);
dan46c47d42011-03-01 18:42:07 +00001951 return sqlite3ApiExit(db, rc);
1952}
drh9b1c62d2011-03-30 21:04:43 +00001953#endif /* SQLITE_ENABLE_PREUPDATE_HOOK */
dan46c47d42011-03-01 18:42:07 +00001954
drh9b1c62d2011-03-30 21:04:43 +00001955#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
dan37db03b2011-03-16 19:59:18 +00001956/*
1957** This function is called from within a pre-update callback to retrieve
1958** the number of columns in the row being updated, deleted or inserted.
1959*/
dan46c47d42011-03-01 18:42:07 +00001960int sqlite3_preupdate_count(sqlite3 *db){
1961 PreUpdate *p = db->pPreUpdate;
drha485ad12017-08-02 22:43:14 +00001962 return (p ? p->keyinfo.nKeyField : 0);
dan46c47d42011-03-01 18:42:07 +00001963}
drh9b1c62d2011-03-30 21:04:43 +00001964#endif /* SQLITE_ENABLE_PREUPDATE_HOOK */
dan46c47d42011-03-01 18:42:07 +00001965
drh9b1c62d2011-03-30 21:04:43 +00001966#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
dan37db03b2011-03-16 19:59:18 +00001967/*
dan1e7a2d42011-03-22 18:45:29 +00001968** This function is designed to be called from within a pre-update callback
1969** only. It returns zero if the change that caused the callback was made
1970** immediately by a user SQL statement. Or, if the change was made by a
1971** trigger program, it returns the number of trigger programs currently
1972** on the stack (1 for a top-level trigger, 2 for a trigger fired by a
1973** top-level trigger etc.).
1974**
1975** For the purposes of the previous paragraph, a foreign key CASCADE, SET NULL
1976** or SET DEFAULT action is considered a trigger.
1977*/
1978int sqlite3_preupdate_depth(sqlite3 *db){
1979 PreUpdate *p = db->pPreUpdate;
1980 return (p ? p->v->nFrame : 0);
1981}
drh9b1c62d2011-03-30 21:04:43 +00001982#endif /* SQLITE_ENABLE_PREUPDATE_HOOK */
dan1e7a2d42011-03-22 18:45:29 +00001983
drh9b1c62d2011-03-30 21:04:43 +00001984#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
dan1e7a2d42011-03-22 18:45:29 +00001985/*
dana23a8732021-04-21 20:52:17 +00001986** This function is designed to be called from within a pre-update callback
1987** only.
1988*/
1989int sqlite3_preupdate_blobwrite(sqlite3 *db){
1990 PreUpdate *p = db->pPreUpdate;
1991 return (p ? p->iBlobWrite : -1);
1992}
1993#endif
1994
1995#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
1996/*
dan37db03b2011-03-16 19:59:18 +00001997** This function is called from within a pre-update callback to retrieve
1998** a field of the row currently being updated or inserted.
1999*/
2000int sqlite3_preupdate_new(sqlite3 *db, int iIdx, sqlite3_value **ppValue){
dan46c47d42011-03-01 18:42:07 +00002001 PreUpdate *p = db->pPreUpdate;
2002 int rc = SQLITE_OK;
dan37db03b2011-03-16 19:59:18 +00002003 Mem *pMem;
dan46c47d42011-03-01 18:42:07 +00002004
dan37db03b2011-03-16 19:59:18 +00002005 if( !p || p->op==SQLITE_DELETE ){
dan46c47d42011-03-01 18:42:07 +00002006 rc = SQLITE_MISUSE_BKPT;
dan37db03b2011-03-16 19:59:18 +00002007 goto preupdate_new_out;
dan46c47d42011-03-01 18:42:07 +00002008 }
dancb9a3642017-01-30 19:44:53 +00002009 if( p->pPk && p->op!=SQLITE_UPDATE ){
drhb9bcf7c2019-10-19 13:29:10 +00002010 iIdx = sqlite3TableColumnToIndex(p->pPk, iIdx);
dancb9a3642017-01-30 19:44:53 +00002011 }
dan46c47d42011-03-01 18:42:07 +00002012 if( iIdx>=p->pCsr->nField || iIdx<0 ){
2013 rc = SQLITE_RANGE;
dan37db03b2011-03-16 19:59:18 +00002014 goto preupdate_new_out;
dan46c47d42011-03-01 18:42:07 +00002015 }
dan46c47d42011-03-01 18:42:07 +00002016
dan37db03b2011-03-16 19:59:18 +00002017 if( p->op==SQLITE_INSERT ){
2018 /* For an INSERT, memory cell p->iNewReg contains the serialized record
2019 ** that is being inserted. Deserialize it. */
2020 UnpackedRecord *pUnpack = p->pNewUnpacked;
2021 if( !pUnpack ){
2022 Mem *pData = &p->v->aMem[p->iNewReg];
drhff535a22016-09-20 01:46:15 +00002023 rc = ExpandBlob(pData);
dan37db03b2011-03-16 19:59:18 +00002024 if( rc!=SQLITE_OK ) goto preupdate_new_out;
dan93bca692011-09-14 19:41:44 +00002025 pUnpack = vdbeUnpackRecord(&p->keyinfo, pData->n, pData->z);
dan37db03b2011-03-16 19:59:18 +00002026 if( !pUnpack ){
2027 rc = SQLITE_NOMEM;
2028 goto preupdate_new_out;
2029 }
2030 p->pNewUnpacked = pUnpack;
2031 }
dan2a86c192017-01-25 17:44:13 +00002032 pMem = &pUnpack->aMem[iIdx];
2033 if( iIdx==p->pTab->iPKey ){
2034 sqlite3VdbeMemSetInt64(pMem, p->iKey2);
2035 }else if( iIdx>=pUnpack->nField ){
dan37db03b2011-03-16 19:59:18 +00002036 pMem = (sqlite3_value *)columnNullValue();
dan37db03b2011-03-16 19:59:18 +00002037 }
2038 }else{
2039 /* For an UPDATE, memory cell (p->iNewReg+1+iIdx) contains the required
2040 ** value. Make a copy of the cell contents and return a pointer to it.
2041 ** It is not safe to return a pointer to the memory cell itself as the
2042 ** caller may modify the value text encoding.
2043 */
2044 assert( p->op==SQLITE_UPDATE );
2045 if( !p->aNew ){
2046 p->aNew = (Mem *)sqlite3DbMallocZero(db, sizeof(Mem) * p->pCsr->nField);
2047 if( !p->aNew ){
2048 rc = SQLITE_NOMEM;
2049 goto preupdate_new_out;
2050 }
2051 }
drh304637c2011-03-18 16:47:27 +00002052 assert( iIdx>=0 && iIdx<p->pCsr->nField );
dan37db03b2011-03-16 19:59:18 +00002053 pMem = &p->aNew[iIdx];
2054 if( pMem->flags==0 ){
dane43635a2016-10-21 21:21:45 +00002055 if( iIdx==p->pTab->iPKey ){
dan319eeb72011-03-19 08:38:50 +00002056 sqlite3VdbeMemSetInt64(pMem, p->iKey2);
2057 }else{
2058 rc = sqlite3VdbeMemCopy(pMem, &p->v->aMem[p->iNewReg+1+iIdx]);
2059 if( rc!=SQLITE_OK ) goto preupdate_new_out;
2060 }
dan37db03b2011-03-16 19:59:18 +00002061 }
2062 }
2063 *ppValue = pMem;
2064
2065 preupdate_new_out:
drhe1ed0b02014-08-26 02:15:07 +00002066 sqlite3Error(db, rc);
dan46c47d42011-03-01 18:42:07 +00002067 return sqlite3ApiExit(db, rc);
2068}
drh9b1c62d2011-03-30 21:04:43 +00002069#endif /* SQLITE_ENABLE_PREUPDATE_HOOK */
drh04e8a582014-11-18 21:20:57 +00002070
dan6f9702e2014-11-01 20:38:06 +00002071#ifdef SQLITE_ENABLE_STMT_SCANSTATUS
dan04489b62014-10-31 20:11:32 +00002072/*
2073** Return status data for a single loop within query pStmt.
2074*/
2075int sqlite3_stmt_scanstatus(
drhd1a1c232014-11-03 16:35:55 +00002076 sqlite3_stmt *pStmt, /* Prepared statement being queried */
dan04489b62014-10-31 20:11:32 +00002077 int idx, /* Index of loop to report on */
drhd1a1c232014-11-03 16:35:55 +00002078 int iScanStatusOp, /* Which metric to return */
2079 void *pOut /* OUT: Write the answer here */
dan04489b62014-10-31 20:11:32 +00002080){
2081 Vdbe *p = (Vdbe*)pStmt;
dan037b5322014-11-03 11:25:32 +00002082 ScanStatus *pScan;
dan6f9702e2014-11-01 20:38:06 +00002083 if( idx<0 || idx>=p->nScan ) return 1;
2084 pScan = &p->aScan[idx];
drhd1a1c232014-11-03 16:35:55 +00002085 switch( iScanStatusOp ){
2086 case SQLITE_SCANSTAT_NLOOP: {
2087 *(sqlite3_int64*)pOut = p->anExec[pScan->addrLoop];
2088 break;
2089 }
2090 case SQLITE_SCANSTAT_NVISIT: {
2091 *(sqlite3_int64*)pOut = p->anExec[pScan->addrVisit];
2092 break;
2093 }
2094 case SQLITE_SCANSTAT_EST: {
drh518140e2014-11-06 03:55:10 +00002095 double r = 1.0;
2096 LogEst x = pScan->nEst;
2097 while( x<100 ){
2098 x += 10;
2099 r *= 0.5;
2100 }
2101 *(double*)pOut = r*sqlite3LogEstToInt(x);
drhd1a1c232014-11-03 16:35:55 +00002102 break;
2103 }
2104 case SQLITE_SCANSTAT_NAME: {
dand72219d2014-11-03 16:39:37 +00002105 *(const char**)pOut = pScan->zName;
drhd1a1c232014-11-03 16:35:55 +00002106 break;
2107 }
2108 case SQLITE_SCANSTAT_EXPLAIN: {
2109 if( pScan->addrExplain ){
2110 *(const char**)pOut = p->aOp[ pScan->addrExplain ].p4.z;
2111 }else{
2112 *(const char**)pOut = 0;
2113 }
2114 break;
2115 }
drhc6652b12014-11-06 04:42:20 +00002116 case SQLITE_SCANSTAT_SELECTID: {
2117 if( pScan->addrExplain ){
2118 *(int*)pOut = p->aOp[ pScan->addrExplain ].p1;
2119 }else{
2120 *(int*)pOut = -1;
2121 }
2122 break;
2123 }
drhd1a1c232014-11-03 16:35:55 +00002124 default: {
2125 return 1;
dan6f9702e2014-11-01 20:38:06 +00002126 }
2127 }
dan04489b62014-10-31 20:11:32 +00002128 return 0;
2129}
2130
2131/*
2132** Zero all counters associated with the sqlite3_stmt_scanstatus() data.
2133*/
2134void sqlite3_stmt_scanstatus_reset(sqlite3_stmt *pStmt){
2135 Vdbe *p = (Vdbe*)pStmt;
dan6f9702e2014-11-01 20:38:06 +00002136 memset(p->anExec, 0, p->nOp * sizeof(i64));
dan04489b62014-10-31 20:11:32 +00002137}
dan6f9702e2014-11-01 20:38:06 +00002138#endif /* SQLITE_ENABLE_STMT_SCANSTATUS */