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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.
danielk1977822a5162008-05-16 04:51:54 +000015**
danielk197762c14b32008-11-19 09:05:26 +000016** $Id: vdbeapi.c,v 1.149 2008/11/19 09:05:27 danielk1977 Exp $
drh4f26d6c2004-05-26 23:25:30 +000017*/
18#include "sqliteInt.h"
19#include "vdbeInt.h"
20
danielk197767e3da72008-08-21 12:19:44 +000021#if 0 && defined(SQLITE_ENABLE_MEMORY_MANAGEMENT)
danielk1977dfb316d2008-03-26 18:34:43 +000022/*
23** The following structure contains pointers to the end points of a
24** doubly-linked list of all compiled SQL statements that may be holding
25** buffers eligible for release when the sqlite3_release_memory() interface is
26** invoked. Access to this list is protected by the SQLITE_MUTEX_STATIC_LRU2
27** mutex.
28**
29** Statements are added to the end of this list when sqlite3_reset() is
30** called. They are removed either when sqlite3_step() or sqlite3_finalize()
31** is called. When statements are added to this list, the associated
32** register array (p->aMem[1..p->nMem]) may contain dynamic buffers that
33** can be freed using sqlite3VdbeReleaseMemory().
34**
35** When statements are added or removed from this list, the mutex
36** associated with the Vdbe being added or removed (Vdbe.db->mutex) is
37** already held. The LRU2 mutex is then obtained, blocking if necessary,
38** the linked-list pointers manipulated and the LRU2 mutex relinquished.
39*/
40struct StatementLruList {
41 Vdbe *pFirst;
42 Vdbe *pLast;
43};
44static struct StatementLruList sqlite3LruStatements;
45
46/*
47** Check that the list looks to be internally consistent. This is used
48** as part of an assert() statement as follows:
49**
50** assert( stmtLruCheck() );
51*/
drh26e4a8b2008-05-01 17:16:52 +000052#ifndef NDEBUG
danielk1977dfb316d2008-03-26 18:34:43 +000053static int stmtLruCheck(){
54 Vdbe *p;
55 for(p=sqlite3LruStatements.pFirst; p; p=p->pLruNext){
56 assert(p->pLruNext || p==sqlite3LruStatements.pLast);
57 assert(!p->pLruNext || p->pLruNext->pLruPrev==p);
58 assert(p->pLruPrev || p==sqlite3LruStatements.pFirst);
59 assert(!p->pLruPrev || p->pLruPrev->pLruNext==p);
60 }
61 return 1;
62}
drh26e4a8b2008-05-01 17:16:52 +000063#endif
danielk1977dfb316d2008-03-26 18:34:43 +000064
65/*
66** Add vdbe p to the end of the statement lru list. It is assumed that
67** p is not already part of the list when this is called. The lru list
68** is protected by the SQLITE_MUTEX_STATIC_LRU mutex.
69*/
70static void stmtLruAdd(Vdbe *p){
danielk197759f8c082008-06-18 17:09:10 +000071 sqlite3_mutex_enter(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_LRU2));
danielk1977dfb316d2008-03-26 18:34:43 +000072
73 if( p->pLruPrev || p->pLruNext || sqlite3LruStatements.pFirst==p ){
danielk197759f8c082008-06-18 17:09:10 +000074 sqlite3_mutex_leave(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_LRU2));
danielk1977dfb316d2008-03-26 18:34:43 +000075 return;
76 }
77
78 assert( stmtLruCheck() );
79
80 if( !sqlite3LruStatements.pFirst ){
81 assert( !sqlite3LruStatements.pLast );
82 sqlite3LruStatements.pFirst = p;
83 sqlite3LruStatements.pLast = p;
84 }else{
85 assert( !sqlite3LruStatements.pLast->pLruNext );
86 p->pLruPrev = sqlite3LruStatements.pLast;
87 sqlite3LruStatements.pLast->pLruNext = p;
88 sqlite3LruStatements.pLast = p;
89 }
90
91 assert( stmtLruCheck() );
92
danielk197759f8c082008-06-18 17:09:10 +000093 sqlite3_mutex_leave(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_LRU2));
danielk1977dfb316d2008-03-26 18:34:43 +000094}
95
96/*
97** Assuming the SQLITE_MUTEX_STATIC_LRU2 mutext is already held, remove
98** statement p from the least-recently-used statement list. If the
99** statement is not currently part of the list, this call is a no-op.
100*/
101static void stmtLruRemoveNomutex(Vdbe *p){
102 if( p->pLruPrev || p->pLruNext || p==sqlite3LruStatements.pFirst ){
103 assert( stmtLruCheck() );
104 if( p->pLruNext ){
105 p->pLruNext->pLruPrev = p->pLruPrev;
106 }else{
107 sqlite3LruStatements.pLast = p->pLruPrev;
108 }
109 if( p->pLruPrev ){
110 p->pLruPrev->pLruNext = p->pLruNext;
111 }else{
112 sqlite3LruStatements.pFirst = p->pLruNext;
113 }
114 p->pLruNext = 0;
115 p->pLruPrev = 0;
116 assert( stmtLruCheck() );
117 }
118}
119
120/*
121** Assuming the SQLITE_MUTEX_STATIC_LRU2 mutext is not held, remove
122** statement p from the least-recently-used statement list. If the
123** statement is not currently part of the list, this call is a no-op.
124*/
125static void stmtLruRemove(Vdbe *p){
danielk197759f8c082008-06-18 17:09:10 +0000126 sqlite3_mutex_enter(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_LRU2));
danielk1977dfb316d2008-03-26 18:34:43 +0000127 stmtLruRemoveNomutex(p);
danielk197759f8c082008-06-18 17:09:10 +0000128 sqlite3_mutex_leave(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_LRU2));
danielk1977dfb316d2008-03-26 18:34:43 +0000129}
130
131/*
132** Try to release n bytes of memory by freeing buffers associated
133** with the memory registers of currently unused vdbes.
134*/
135int sqlite3VdbeReleaseMemory(int n){
136 Vdbe *p;
137 Vdbe *pNext;
138 int nFree = 0;
139
danielk197759f8c082008-06-18 17:09:10 +0000140 sqlite3_mutex_enter(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_LRU2));
danielk1977dfb316d2008-03-26 18:34:43 +0000141 for(p=sqlite3LruStatements.pFirst; p && nFree<n; p=pNext){
142 pNext = p->pLruNext;
143
144 /* For each statement handle in the lru list, attempt to obtain the
145 ** associated database mutex. If it cannot be obtained, continue
146 ** to the next statement handle. It is not possible to block on
147 ** the database mutex - that could cause deadlock.
148 */
149 if( SQLITE_OK==sqlite3_mutex_try(p->db->mutex) ){
150 nFree += sqlite3VdbeReleaseBuffers(p);
151 stmtLruRemoveNomutex(p);
152 sqlite3_mutex_leave(p->db->mutex);
153 }
154 }
danielk197759f8c082008-06-18 17:09:10 +0000155 sqlite3_mutex_leave(sqlite3MutexAlloc(SQLITE_MUTEX_STATIC_LRU2));
danielk1977dfb316d2008-03-26 18:34:43 +0000156
157 return nFree;
158}
159
160/*
161** Call sqlite3Reprepare() on the statement. Remove it from the
162** lru list before doing so, as Reprepare() will free all the
163** memory register buffers anyway.
164*/
165int vdbeReprepare(Vdbe *p){
166 stmtLruRemove(p);
167 return sqlite3Reprepare(p);
168}
169
170#else /* !SQLITE_ENABLE_MEMORY_MANAGEMENT */
171 #define stmtLruRemove(x)
172 #define stmtLruAdd(x)
173 #define vdbeReprepare(x) sqlite3Reprepare(x)
174#endif
175
176
shaneeec556d2008-10-12 00:27:53 +0000177#ifndef SQLITE_OMIT_DEPRECATED
drhd89bd002005-01-22 03:03:54 +0000178/*
179** Return TRUE (non-zero) of the statement supplied as an argument needs
180** to be recompiled. A statement needs to be recompiled whenever the
181** execution environment changes in a way that would alter the program
182** that sqlite3_prepare() generates. For example, if new functions or
183** collating sequences are registered or if an authorizer function is
184** added or changed.
drhd89bd002005-01-22 03:03:54 +0000185*/
186int sqlite3_expired(sqlite3_stmt *pStmt){
187 Vdbe *p = (Vdbe*)pStmt;
188 return p==0 || p->expired;
189}
shaneeec556d2008-10-12 00:27:53 +0000190#endif
drhd89bd002005-01-22 03:03:54 +0000191
drhe30f4422007-08-21 16:15:55 +0000192/*
193** The following routine destroys a virtual machine that is created by
194** the sqlite3_compile() routine. The integer returned is an SQLITE_
195** success/failure code that describes the result of executing the virtual
196** machine.
197**
198** This routine sets the error code and string returned by
199** sqlite3_errcode(), sqlite3_errmsg() and sqlite3_errmsg16().
200*/
201int sqlite3_finalize(sqlite3_stmt *pStmt){
202 int rc;
203 if( pStmt==0 ){
204 rc = SQLITE_OK;
205 }else{
206 Vdbe *v = (Vdbe*)pStmt;
drh18472fa2008-10-07 15:25:48 +0000207#if SQLITE_THREADSAFE
drh86f8c192007-08-22 00:39:19 +0000208 sqlite3_mutex *mutex = v->db->mutex;
drh7e8b8482008-01-23 03:03:05 +0000209#endif
drh86f8c192007-08-22 00:39:19 +0000210 sqlite3_mutex_enter(mutex);
danielk1977dfb316d2008-03-26 18:34:43 +0000211 stmtLruRemove(v);
drhe30f4422007-08-21 16:15:55 +0000212 rc = sqlite3VdbeFinalize(v);
drh86f8c192007-08-22 00:39:19 +0000213 sqlite3_mutex_leave(mutex);
drhe30f4422007-08-21 16:15:55 +0000214 }
215 return rc;
216}
217
218/*
219** Terminate the current execution of an SQL statement and reset it
220** back to its starting state so that it can be reused. A success code from
221** the prior execution is returned.
222**
223** This routine sets the error code and string returned by
224** sqlite3_errcode(), sqlite3_errmsg() and sqlite3_errmsg16().
225*/
226int sqlite3_reset(sqlite3_stmt *pStmt){
227 int rc;
228 if( pStmt==0 ){
229 rc = SQLITE_OK;
230 }else{
231 Vdbe *v = (Vdbe*)pStmt;
232 sqlite3_mutex_enter(v->db->mutex);
drhc890fec2008-08-01 20:10:08 +0000233 rc = sqlite3VdbeReset(v);
danielk1977dfb316d2008-03-26 18:34:43 +0000234 stmtLruAdd(v);
drhe30f4422007-08-21 16:15:55 +0000235 sqlite3VdbeMakeReady(v, -1, 0, 0, 0);
236 assert( (rc & (v->db->errMask))==rc );
237 sqlite3_mutex_leave(v->db->mutex);
238 }
239 return rc;
240}
241
242/*
243** Set all the parameters in the compiled SQL statement to NULL.
244*/
245int sqlite3_clear_bindings(sqlite3_stmt *pStmt){
246 int i;
247 int rc = SQLITE_OK;
drh7297d1f2008-05-09 14:39:44 +0000248 Vdbe *p = (Vdbe*)pStmt;
drh18472fa2008-10-07 15:25:48 +0000249#if SQLITE_THREADSAFE
drh7e8b8482008-01-23 03:03:05 +0000250 sqlite3_mutex *mutex = ((Vdbe*)pStmt)->db->mutex;
251#endif
252 sqlite3_mutex_enter(mutex);
drh7297d1f2008-05-09 14:39:44 +0000253 for(i=0; i<p->nVar; i++){
254 sqlite3VdbeMemRelease(&p->aVar[i]);
255 p->aVar[i].flags = MEM_Null;
drhe30f4422007-08-21 16:15:55 +0000256 }
drh7e8b8482008-01-23 03:03:05 +0000257 sqlite3_mutex_leave(mutex);
drhe30f4422007-08-21 16:15:55 +0000258 return rc;
259}
260
261
drh4f26d6c2004-05-26 23:25:30 +0000262/**************************** sqlite3_value_ *******************************
263** The following routines extract information from a Mem or sqlite3_value
264** structure.
265*/
266const void *sqlite3_value_blob(sqlite3_value *pVal){
267 Mem *p = (Mem*)pVal;
268 if( p->flags & (MEM_Blob|MEM_Str) ){
drhb21c8cd2007-08-21 19:33:56 +0000269 sqlite3VdbeMemExpandBlob(p);
drh1f0feef2007-05-15 13:27:07 +0000270 p->flags &= ~MEM_Str;
271 p->flags |= MEM_Blob;
drh4f26d6c2004-05-26 23:25:30 +0000272 return p->z;
273 }else{
274 return sqlite3_value_text(pVal);
275 }
276}
277int sqlite3_value_bytes(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000278 return sqlite3ValueBytes(pVal, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +0000279}
280int sqlite3_value_bytes16(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000281 return sqlite3ValueBytes(pVal, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +0000282}
283double sqlite3_value_double(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +0000284 return sqlite3VdbeRealValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +0000285}
286int sqlite3_value_int(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +0000287 return sqlite3VdbeIntValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +0000288}
drhefad9992004-06-22 12:13:55 +0000289sqlite_int64 sqlite3_value_int64(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +0000290 return sqlite3VdbeIntValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +0000291}
292const unsigned char *sqlite3_value_text(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000293 return (const unsigned char *)sqlite3ValueText(pVal, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +0000294}
drh6c626082004-11-14 21:56:29 +0000295#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +0000296const void *sqlite3_value_text16(sqlite3_value* pVal){
drhb21c8cd2007-08-21 19:33:56 +0000297 return sqlite3ValueText(pVal, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +0000298}
danielk1977d8123362004-06-12 09:25:12 +0000299const void *sqlite3_value_text16be(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000300 return sqlite3ValueText(pVal, SQLITE_UTF16BE);
danielk1977d8123362004-06-12 09:25:12 +0000301}
302const void *sqlite3_value_text16le(sqlite3_value *pVal){
drhb21c8cd2007-08-21 19:33:56 +0000303 return sqlite3ValueText(pVal, SQLITE_UTF16LE);
danielk1977d8123362004-06-12 09:25:12 +0000304}
drh6c626082004-11-14 21:56:29 +0000305#endif /* SQLITE_OMIT_UTF16 */
drh4f26d6c2004-05-26 23:25:30 +0000306int sqlite3_value_type(sqlite3_value* pVal){
drhf4479502004-05-27 03:12:53 +0000307 return pVal->type;
drh4f26d6c2004-05-26 23:25:30 +0000308}
309
310/**************************** sqlite3_result_ *******************************
311** The following routines are used by user-defined functions to specify
312** the function result.
313*/
314void sqlite3_result_blob(
315 sqlite3_context *pCtx,
316 const void *z,
317 int n,
danielk1977d8123362004-06-12 09:25:12 +0000318 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000319){
drh5708d2d2005-06-22 10:53:59 +0000320 assert( n>=0 );
drh32bc3f62007-08-21 20:25:39 +0000321 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhb21c8cd2007-08-21 19:33:56 +0000322 sqlite3VdbeMemSetStr(&pCtx->s, z, n, 0, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000323}
324void sqlite3_result_double(sqlite3_context *pCtx, double rVal){
drh32bc3f62007-08-21 20:25:39 +0000325 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drh4f26d6c2004-05-26 23:25:30 +0000326 sqlite3VdbeMemSetDouble(&pCtx->s, rVal);
327}
328void sqlite3_result_error(sqlite3_context *pCtx, const char *z, int n){
drh32bc3f62007-08-21 20:25:39 +0000329 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drh69544ec2008-02-06 14:11:34 +0000330 pCtx->isError = SQLITE_ERROR;
drhb21c8cd2007-08-21 19:33:56 +0000331 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF8, SQLITE_TRANSIENT);
drh4f26d6c2004-05-26 23:25:30 +0000332}
danielk1977a1686c92006-01-23 07:52:37 +0000333#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +0000334void sqlite3_result_error16(sqlite3_context *pCtx, const void *z, int n){
drh32bc3f62007-08-21 20:25:39 +0000335 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drh69544ec2008-02-06 14:11:34 +0000336 pCtx->isError = SQLITE_ERROR;
drhb21c8cd2007-08-21 19:33:56 +0000337 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16NATIVE, SQLITE_TRANSIENT);
drh4f26d6c2004-05-26 23:25:30 +0000338}
danielk1977a1686c92006-01-23 07:52:37 +0000339#endif
drhf4479502004-05-27 03:12:53 +0000340void sqlite3_result_int(sqlite3_context *pCtx, int iVal){
drh32bc3f62007-08-21 20:25:39 +0000341 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drh4f26d6c2004-05-26 23:25:30 +0000342 sqlite3VdbeMemSetInt64(&pCtx->s, (i64)iVal);
343}
344void sqlite3_result_int64(sqlite3_context *pCtx, i64 iVal){
drh32bc3f62007-08-21 20:25:39 +0000345 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drh4f26d6c2004-05-26 23:25:30 +0000346 sqlite3VdbeMemSetInt64(&pCtx->s, iVal);
347}
348void sqlite3_result_null(sqlite3_context *pCtx){
drh32bc3f62007-08-21 20:25:39 +0000349 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhf4479502004-05-27 03:12:53 +0000350 sqlite3VdbeMemSetNull(&pCtx->s);
drh4f26d6c2004-05-26 23:25:30 +0000351}
352void sqlite3_result_text(
353 sqlite3_context *pCtx,
354 const char *z,
355 int n,
danielk1977d8123362004-06-12 09:25:12 +0000356 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000357){
drh32bc3f62007-08-21 20:25:39 +0000358 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhb21c8cd2007-08-21 19:33:56 +0000359 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF8, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000360}
drh6c626082004-11-14 21:56:29 +0000361#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +0000362void sqlite3_result_text16(
363 sqlite3_context *pCtx,
364 const void *z,
365 int n,
danielk1977d8123362004-06-12 09:25:12 +0000366 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000367){
drh32bc3f62007-08-21 20:25:39 +0000368 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhb21c8cd2007-08-21 19:33:56 +0000369 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16NATIVE, xDel);
danielk1977d8123362004-06-12 09:25:12 +0000370}
371void sqlite3_result_text16be(
372 sqlite3_context *pCtx,
373 const void *z,
374 int n,
375 void (*xDel)(void *)
376){
drh32bc3f62007-08-21 20:25:39 +0000377 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhb21c8cd2007-08-21 19:33:56 +0000378 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16BE, xDel);
danielk1977d8123362004-06-12 09:25:12 +0000379}
380void sqlite3_result_text16le(
381 sqlite3_context *pCtx,
382 const void *z,
383 int n,
384 void (*xDel)(void *)
385){
drh32bc3f62007-08-21 20:25:39 +0000386 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhb21c8cd2007-08-21 19:33:56 +0000387 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16LE, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000388}
drh6c626082004-11-14 21:56:29 +0000389#endif /* SQLITE_OMIT_UTF16 */
drh4f26d6c2004-05-26 23:25:30 +0000390void sqlite3_result_value(sqlite3_context *pCtx, sqlite3_value *pValue){
drh32bc3f62007-08-21 20:25:39 +0000391 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhb21c8cd2007-08-21 19:33:56 +0000392 sqlite3VdbeMemCopy(&pCtx->s, pValue);
drh4f26d6c2004-05-26 23:25:30 +0000393}
drhb026e052007-05-02 01:34:31 +0000394void sqlite3_result_zeroblob(sqlite3_context *pCtx, int n){
drh32bc3f62007-08-21 20:25:39 +0000395 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhb026e052007-05-02 01:34:31 +0000396 sqlite3VdbeMemSetZeroBlob(&pCtx->s, n);
397}
drh69544ec2008-02-06 14:11:34 +0000398void sqlite3_result_error_code(sqlite3_context *pCtx, int errCode){
399 pCtx->isError = errCode;
400}
drh4f26d6c2004-05-26 23:25:30 +0000401
drha0206bc2007-05-08 15:15:02 +0000402/* Force an SQLITE_TOOBIG error. */
403void sqlite3_result_error_toobig(sqlite3_context *pCtx){
drh32bc3f62007-08-21 20:25:39 +0000404 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhbb4957f2008-03-20 14:03:29 +0000405 pCtx->isError = SQLITE_TOOBIG;
406 sqlite3VdbeMemSetStr(&pCtx->s, "string or blob too big", -1,
407 SQLITE_UTF8, SQLITE_STATIC);
drha0206bc2007-05-08 15:15:02 +0000408}
409
danielk1977a1644fd2007-08-29 12:31:25 +0000410/* An SQLITE_NOMEM error. */
411void sqlite3_result_error_nomem(sqlite3_context *pCtx){
412 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
413 sqlite3VdbeMemSetNull(&pCtx->s);
drh69544ec2008-02-06 14:11:34 +0000414 pCtx->isError = SQLITE_NOMEM;
danielk1977a1644fd2007-08-29 12:31:25 +0000415 pCtx->s.db->mallocFailed = 1;
416}
drh4f26d6c2004-05-26 23:25:30 +0000417
418/*
419** Execute the statement pStmt, either until a row of data is ready, the
420** statement is completely executed or an error occurs.
drhb900aaf2006-11-09 00:24:53 +0000421**
422** This routine implements the bulk of the logic behind the sqlite_step()
423** API. The only thing omitted is the automatic recompile if a
424** schema change has occurred. That detail is handled by the
425** outer sqlite3_step() wrapper procedure.
drh4f26d6c2004-05-26 23:25:30 +0000426*/
drhb900aaf2006-11-09 00:24:53 +0000427static int sqlite3Step(Vdbe *p){
drh9bb575f2004-09-06 17:24:11 +0000428 sqlite3 *db;
drh4f26d6c2004-05-26 23:25:30 +0000429 int rc;
430
danielk1977a185ddb2007-11-15 16:04:15 +0000431 assert(p);
432 if( p->magic!=VDBE_MAGIC_RUN ){
drhf1bfe9a2007-10-17 01:44:20 +0000433 return SQLITE_MISUSE;
434 }
435
danielk1977efaaf572006-01-16 11:29:19 +0000436 /* Assert that malloc() has not failed */
drh17435752007-08-16 04:30:38 +0000437 db = p->db;
drhc456e572008-08-11 18:44:58 +0000438 if( db->mallocFailed ){
439 return SQLITE_NOMEM;
440 }
danielk1977261919c2005-12-06 12:52:59 +0000441
danielk1977a21c6b62005-01-24 10:25:59 +0000442 if( p->pc<=0 && p->expired ){
443 if( p->rc==SQLITE_OK ){
444 p->rc = SQLITE_SCHEMA;
445 }
drhb900aaf2006-11-09 00:24:53 +0000446 rc = SQLITE_ERROR;
447 goto end_of_step;
danielk1977a21c6b62005-01-24 10:25:59 +0000448 }
drh4f26d6c2004-05-26 23:25:30 +0000449 if( sqlite3SafetyOn(db) ){
450 p->rc = SQLITE_MISUSE;
451 return SQLITE_MISUSE;
452 }
danielk19771d850a72004-05-31 08:26:49 +0000453 if( p->pc<0 ){
drh15ca1df2006-07-26 13:43:30 +0000454 /* If there are no other statements currently running, then
455 ** reset the interrupt flag. This prevents a call to sqlite3_interrupt
456 ** from interrupting a statement that has not yet started.
457 */
458 if( db->activeVdbeCnt==0 ){
459 db->u1.isInterrupted = 0;
460 }
461
drh19e2d372005-08-29 23:00:03 +0000462#ifndef SQLITE_OMIT_TRACE
drh19e2d372005-08-29 23:00:03 +0000463 if( db->xProfile && !db->init.busy ){
464 double rNow;
danielk1977b4b47412007-08-17 15:53:36 +0000465 sqlite3OsCurrentTime(db->pVfs, &rNow);
drh19e2d372005-08-29 23:00:03 +0000466 p->startTime = (rNow - (int)rNow)*3600.0*24.0*1000000000.0;
467 }
468#endif
drhc16a03b2004-09-15 13:38:10 +0000469
danielk19771d850a72004-05-31 08:26:49 +0000470 db->activeVdbeCnt++;
drhad4a4b82008-11-05 16:37:34 +0000471 if( p->readOnly==0 ) db->writeVdbeCnt++;
danielk19771d850a72004-05-31 08:26:49 +0000472 p->pc = 0;
danielk1977dfb316d2008-03-26 18:34:43 +0000473 stmtLruRemove(p);
danielk19771d850a72004-05-31 08:26:49 +0000474 }
drhb7f91642004-10-31 02:22:47 +0000475#ifndef SQLITE_OMIT_EXPLAIN
drh4f26d6c2004-05-26 23:25:30 +0000476 if( p->explain ){
477 rc = sqlite3VdbeList(p);
drhb7f91642004-10-31 02:22:47 +0000478 }else
479#endif /* SQLITE_OMIT_EXPLAIN */
480 {
drh4f26d6c2004-05-26 23:25:30 +0000481 rc = sqlite3VdbeExec(p);
482 }
483
484 if( sqlite3SafetyOff(db) ){
485 rc = SQLITE_MISUSE;
486 }
487
drh19e2d372005-08-29 23:00:03 +0000488#ifndef SQLITE_OMIT_TRACE
489 /* Invoke the profile callback if there is one
490 */
drh949f9cd2008-01-12 21:35:57 +0000491 if( rc!=SQLITE_ROW && db->xProfile && !db->init.busy && p->nOp>0
492 && p->aOp[0].opcode==OP_Trace && p->aOp[0].p4.z!=0 ){
drh19e2d372005-08-29 23:00:03 +0000493 double rNow;
494 u64 elapseTime;
495
danielk1977b4b47412007-08-17 15:53:36 +0000496 sqlite3OsCurrentTime(db->pVfs, &rNow);
drh19e2d372005-08-29 23:00:03 +0000497 elapseTime = (rNow - (int)rNow)*3600.0*24.0*1000000000.0 - p->startTime;
drh949f9cd2008-01-12 21:35:57 +0000498 db->xProfile(db->pProfileArg, p->aOp[0].p4.z, elapseTime);
drh19e2d372005-08-29 23:00:03 +0000499 }
500#endif
501
drh80cc85b2008-07-23 21:07:25 +0000502 db->errCode = rc;
503 /*sqlite3Error(p->db, rc, 0);*/
danielk197776e8d1a2006-01-18 18:22:43 +0000504 p->rc = sqlite3ApiExit(p->db, p->rc);
drhb900aaf2006-11-09 00:24:53 +0000505end_of_step:
drh4ac285a2006-09-15 07:28:50 +0000506 assert( (rc&0xff)==rc );
drhb900aaf2006-11-09 00:24:53 +0000507 if( p->zSql && (rc&0xff)<SQLITE_ROW ){
508 /* This behavior occurs if sqlite3_prepare_v2() was used to build
509 ** the prepared statement. Return error codes directly */
drh80cc85b2008-07-23 21:07:25 +0000510 p->db->errCode = p->rc;
511 /* sqlite3Error(p->db, p->rc, 0); */
drhb900aaf2006-11-09 00:24:53 +0000512 return p->rc;
513 }else{
514 /* This is for legacy sqlite3_prepare() builds and when the code
515 ** is SQLITE_ROW or SQLITE_DONE */
516 return rc;
517 }
518}
519
520/*
521** This is the top-level implementation of sqlite3_step(). Call
522** sqlite3Step() to do most of the work. If a schema error occurs,
523** call sqlite3Reprepare() and try again.
524*/
525#ifdef SQLITE_OMIT_PARSER
526int sqlite3_step(sqlite3_stmt *pStmt){
danielk1977a185ddb2007-11-15 16:04:15 +0000527 int rc = SQLITE_MISUSE;
528 if( pStmt ){
529 Vdbe *v;
530 v = (Vdbe*)pStmt;
531 sqlite3_mutex_enter(v->db->mutex);
532 rc = sqlite3Step(v);
533 sqlite3_mutex_leave(v->db->mutex);
534 }
drhb21c8cd2007-08-21 19:33:56 +0000535 return rc;
drhb900aaf2006-11-09 00:24:53 +0000536}
537#else
538int sqlite3_step(sqlite3_stmt *pStmt){
danielk1977a185ddb2007-11-15 16:04:15 +0000539 int rc = SQLITE_MISUSE;
540 if( pStmt ){
541 int cnt = 0;
542 Vdbe *v = (Vdbe*)pStmt;
543 sqlite3 *db = v->db;
544 sqlite3_mutex_enter(db->mutex);
545 while( (rc = sqlite3Step(v))==SQLITE_SCHEMA
546 && cnt++ < 5
danielk1977dfb316d2008-03-26 18:34:43 +0000547 && vdbeReprepare(v) ){
danielk1977a185ddb2007-11-15 16:04:15 +0000548 sqlite3_reset(pStmt);
549 v->expired = 0;
danielk19778e556522007-11-13 10:30:24 +0000550 }
danielk1977a185ddb2007-11-15 16:04:15 +0000551 if( rc==SQLITE_SCHEMA && v->zSql && db->pErr ){
552 /* This case occurs after failing to recompile an sql statement.
553 ** The error message from the SQL compiler has already been loaded
554 ** into the database handle. This block copies the error message
555 ** from the database handle into the statement and sets the statement
556 ** program counter to 0 to ensure that when the statement is
557 ** finalized or reset the parser error message is available via
558 ** sqlite3_errmsg() and sqlite3_errcode().
559 */
560 const char *zErr = (const char *)sqlite3_value_text(db->pErr);
drh633e6d52008-07-28 19:34:53 +0000561 sqlite3DbFree(db, v->zErrMsg);
danielk1977a185ddb2007-11-15 16:04:15 +0000562 if( !db->mallocFailed ){
563 v->zErrMsg = sqlite3DbStrDup(db, zErr);
564 } else {
565 v->zErrMsg = 0;
566 v->rc = SQLITE_NOMEM;
567 }
568 }
569 rc = sqlite3ApiExit(db, rc);
570 sqlite3_mutex_leave(db->mutex);
danielk19778e556522007-11-13 10:30:24 +0000571 }
danielk197776e8d1a2006-01-18 18:22:43 +0000572 return rc;
drh4f26d6c2004-05-26 23:25:30 +0000573}
drhb900aaf2006-11-09 00:24:53 +0000574#endif
drh4f26d6c2004-05-26 23:25:30 +0000575
576/*
drheb2e1762004-05-27 01:53:56 +0000577** Extract the user data from a sqlite3_context structure and return a
578** pointer to it.
579*/
580void *sqlite3_user_data(sqlite3_context *p){
581 assert( p && p->pFunc );
582 return p->pFunc->pUserData;
583}
584
585/*
drhfa4a4b92008-03-19 21:45:51 +0000586** Extract the user data from a sqlite3_context structure and return a
587** pointer to it.
588*/
589sqlite3 *sqlite3_context_db_handle(sqlite3_context *p){
590 assert( p && p->pFunc );
591 return p->s.db;
592}
593
594/*
drhb7481e72006-09-16 21:45:14 +0000595** The following is the implementation of an SQL function that always
596** fails with an error message stating that the function is used in the
597** wrong context. The sqlite3_overload_function() API might construct
598** SQL function that use this routine so that the functions will exist
599** for name resolution but are actually overloaded by the xFindFunction
600** method of virtual tables.
601*/
602void sqlite3InvalidFunction(
603 sqlite3_context *context, /* The function calling context */
danielk197762c14b32008-11-19 09:05:26 +0000604 int NotUsed, /* Number of arguments to the function */
605 sqlite3_value **NotUsed2 /* Value of each argument */
drhb7481e72006-09-16 21:45:14 +0000606){
607 const char *zName = context->pFunc->zName;
608 char *zErr;
danielk197762c14b32008-11-19 09:05:26 +0000609 UNUSED_PARAMETER2(NotUsed, NotUsed2);
danielk19771e536952007-08-16 10:09:01 +0000610 zErr = sqlite3MPrintf(0,
drhb7481e72006-09-16 21:45:14 +0000611 "unable to use function %s in the requested context", zName);
612 sqlite3_result_error(context, zErr, -1);
danielk19771e536952007-08-16 10:09:01 +0000613 sqlite3_free(zErr);
drhb7481e72006-09-16 21:45:14 +0000614}
615
616/*
drheb2e1762004-05-27 01:53:56 +0000617** Allocate or return the aggregate context for a user function. A new
618** context is allocated on the first call. Subsequent calls return the
619** same context that was returned on prior calls.
drheb2e1762004-05-27 01:53:56 +0000620*/
621void *sqlite3_aggregate_context(sqlite3_context *p, int nByte){
drhb21c8cd2007-08-21 19:33:56 +0000622 Mem *pMem;
drh825c6622005-09-08 19:01:05 +0000623 assert( p && p->pFunc && p->pFunc->xStep );
drhb21c8cd2007-08-21 19:33:56 +0000624 assert( sqlite3_mutex_held(p->s.db->mutex) );
625 pMem = p->pMem;
drha10a34b2005-09-07 22:09:48 +0000626 if( (pMem->flags & MEM_Agg)==0 ){
627 if( nByte==0 ){
danielk19775f096132008-03-28 15:44:09 +0000628 sqlite3VdbeMemReleaseExternal(pMem);
629 pMem->flags = MEM_Null;
drha10a34b2005-09-07 22:09:48 +0000630 pMem->z = 0;
drheb2e1762004-05-27 01:53:56 +0000631 }else{
danielk19775f096132008-03-28 15:44:09 +0000632 sqlite3VdbeMemGrow(pMem, nByte, 0);
drha10a34b2005-09-07 22:09:48 +0000633 pMem->flags = MEM_Agg;
drh3c024d62007-03-30 11:23:45 +0000634 pMem->u.pDef = p->pFunc;
danielk19775f096132008-03-28 15:44:09 +0000635 if( pMem->z ){
636 memset(pMem->z, 0, nByte);
637 }
drheb2e1762004-05-27 01:53:56 +0000638 }
639 }
drhabfcea22005-09-06 20:36:48 +0000640 return (void*)pMem->z;
drheb2e1762004-05-27 01:53:56 +0000641}
642
643/*
danielk1977682f68b2004-06-05 10:22:17 +0000644** Return the auxilary data pointer, if any, for the iArg'th argument to
645** the user-function defined by pCtx.
646*/
647void *sqlite3_get_auxdata(sqlite3_context *pCtx, int iArg){
drhb21c8cd2007-08-21 19:33:56 +0000648 VdbeFunc *pVdbeFunc;
649
650 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
651 pVdbeFunc = pCtx->pVdbeFunc;
danielk1977682f68b2004-06-05 10:22:17 +0000652 if( !pVdbeFunc || iArg>=pVdbeFunc->nAux || iArg<0 ){
653 return 0;
654 }
drhf92c7ff2004-06-19 15:40:23 +0000655 return pVdbeFunc->apAux[iArg].pAux;
danielk1977682f68b2004-06-05 10:22:17 +0000656}
657
658/*
659** Set the auxilary data pointer and delete function, for the iArg'th
660** argument to the user-function defined by pCtx. Any previous value is
661** deleted by calling the delete function specified when it was set.
662*/
663void sqlite3_set_auxdata(
664 sqlite3_context *pCtx,
665 int iArg,
666 void *pAux,
667 void (*xDelete)(void*)
668){
669 struct AuxData *pAuxData;
drhf92c7ff2004-06-19 15:40:23 +0000670 VdbeFunc *pVdbeFunc;
danielk1977e0fc5262007-07-26 06:50:05 +0000671 if( iArg<0 ) goto failed;
danielk1977682f68b2004-06-05 10:22:17 +0000672
drhb21c8cd2007-08-21 19:33:56 +0000673 assert( sqlite3_mutex_held(pCtx->s.db->mutex) );
drhf92c7ff2004-06-19 15:40:23 +0000674 pVdbeFunc = pCtx->pVdbeFunc;
675 if( !pVdbeFunc || pVdbeFunc->nAux<=iArg ){
danielk197731dad9d2007-08-16 11:36:15 +0000676 int nAux = (pVdbeFunc ? pVdbeFunc->nAux : 0);
drhf92c7ff2004-06-19 15:40:23 +0000677 int nMalloc = sizeof(VdbeFunc) + sizeof(struct AuxData)*iArg;
danielk197726783a52007-08-29 14:06:22 +0000678 pVdbeFunc = sqlite3DbRealloc(pCtx->s.db, pVdbeFunc, nMalloc);
drh17435752007-08-16 04:30:38 +0000679 if( !pVdbeFunc ){
drh17435752007-08-16 04:30:38 +0000680 goto failed;
681 }
drh53f733c2005-09-16 02:38:09 +0000682 pCtx->pVdbeFunc = pVdbeFunc;
danielk197731dad9d2007-08-16 11:36:15 +0000683 memset(&pVdbeFunc->apAux[nAux], 0, sizeof(struct AuxData)*(iArg+1-nAux));
drh998da3a2004-06-19 15:22:56 +0000684 pVdbeFunc->nAux = iArg+1;
685 pVdbeFunc->pFunc = pCtx->pFunc;
danielk1977682f68b2004-06-05 10:22:17 +0000686 }
687
drhf92c7ff2004-06-19 15:40:23 +0000688 pAuxData = &pVdbeFunc->apAux[iArg];
danielk1977682f68b2004-06-05 10:22:17 +0000689 if( pAuxData->pAux && pAuxData->xDelete ){
690 pAuxData->xDelete(pAuxData->pAux);
691 }
692 pAuxData->pAux = pAux;
693 pAuxData->xDelete = xDelete;
danielk1977e0fc5262007-07-26 06:50:05 +0000694 return;
695
696failed:
697 if( xDelete ){
698 xDelete(pAux);
699 }
danielk1977682f68b2004-06-05 10:22:17 +0000700}
701
shaneeec556d2008-10-12 00:27:53 +0000702#ifndef SQLITE_OMIT_DEPRECATED
danielk1977682f68b2004-06-05 10:22:17 +0000703/*
drheb2e1762004-05-27 01:53:56 +0000704** Return the number of times the Step function of a aggregate has been
705** called.
706**
drhcf85a512006-02-09 18:35:29 +0000707** This function is deprecated. Do not use it for new code. It is
708** provide only to avoid breaking legacy code. New aggregate function
709** implementations should keep their own counts within their aggregate
710** context.
drheb2e1762004-05-27 01:53:56 +0000711*/
712int sqlite3_aggregate_count(sqlite3_context *p){
713 assert( p && p->pFunc && p->pFunc->xStep );
drhabfcea22005-09-06 20:36:48 +0000714 return p->pMem->n;
drheb2e1762004-05-27 01:53:56 +0000715}
shaneeec556d2008-10-12 00:27:53 +0000716#endif
drheb2e1762004-05-27 01:53:56 +0000717
718/*
drh4f26d6c2004-05-26 23:25:30 +0000719** Return the number of columns in the result set for the statement pStmt.
720*/
721int sqlite3_column_count(sqlite3_stmt *pStmt){
722 Vdbe *pVm = (Vdbe *)pStmt;
drh1bcdb0c2004-08-28 14:49:46 +0000723 return pVm ? pVm->nResColumn : 0;
drh4f26d6c2004-05-26 23:25:30 +0000724}
725
726/*
727** Return the number of values available from the current row of the
728** currently executing statement pStmt.
729*/
730int sqlite3_data_count(sqlite3_stmt *pStmt){
731 Vdbe *pVm = (Vdbe *)pStmt;
drhd4e70eb2008-01-02 00:34:36 +0000732 if( pVm==0 || pVm->pResultSet==0 ) return 0;
drh4f26d6c2004-05-26 23:25:30 +0000733 return pVm->nResColumn;
734}
735
736
737/*
738** Check to see if column iCol of the given statement is valid. If
739** it is, return a pointer to the Mem for the value of that column.
740** If iCol is not valid, return a pointer to a Mem which has a value
741** of NULL.
742*/
743static Mem *columnMem(sqlite3_stmt *pStmt, int i){
drh32bc3f62007-08-21 20:25:39 +0000744 Vdbe *pVm;
745 int vals;
746 Mem *pOut;
747
748 pVm = (Vdbe *)pStmt;
drhd4e70eb2008-01-02 00:34:36 +0000749 if( pVm && pVm->pResultSet!=0 && i<pVm->nResColumn && i>=0 ){
drh32bc3f62007-08-21 20:25:39 +0000750 sqlite3_mutex_enter(pVm->db->mutex);
751 vals = sqlite3_data_count(pStmt);
drhd4e70eb2008-01-02 00:34:36 +0000752 pOut = &pVm->pResultSet[i];
drh32bc3f62007-08-21 20:25:39 +0000753 }else{
rse867780a2008-03-29 12:39:39 +0000754 static const Mem nullMem = {{0}, 0.0, 0, "", 0, MEM_Null, SQLITE_NULL, 0, 0, 0 };
drh27641702007-08-22 02:56:42 +0000755 if( pVm->db ){
756 sqlite3_mutex_enter(pVm->db->mutex);
757 sqlite3Error(pVm->db, SQLITE_RANGE, 0);
758 }
drh32bc3f62007-08-21 20:25:39 +0000759 pOut = (Mem*)&nullMem;
drh4f26d6c2004-05-26 23:25:30 +0000760 }
drh32bc3f62007-08-21 20:25:39 +0000761 return pOut;
drh4f26d6c2004-05-26 23:25:30 +0000762}
763
danielk19772e588c72005-12-09 14:25:08 +0000764/*
765** This function is called after invoking an sqlite3_value_XXX function on a
766** column value (i.e. a value returned by evaluating an SQL expression in the
767** select list of a SELECT statement) that may cause a malloc() failure. If
768** malloc() has failed, the threads mallocFailed flag is cleared and the result
769** code of statement pStmt set to SQLITE_NOMEM.
770**
drh32bc3f62007-08-21 20:25:39 +0000771** Specifically, this is called from within:
danielk19772e588c72005-12-09 14:25:08 +0000772**
773** sqlite3_column_int()
774** sqlite3_column_int64()
775** sqlite3_column_text()
776** sqlite3_column_text16()
777** sqlite3_column_real()
778** sqlite3_column_bytes()
779** sqlite3_column_bytes16()
780**
781** But not for sqlite3_column_blob(), which never calls malloc().
782*/
783static void columnMallocFailure(sqlite3_stmt *pStmt)
784{
785 /* If malloc() failed during an encoding conversion within an
786 ** sqlite3_column_XXX API, then set the return code of the statement to
787 ** SQLITE_NOMEM. The next call to _step() (if any) will return SQLITE_ERROR
788 ** and _finalize() will return NOMEM.
789 */
danielk197754f01982006-01-18 15:25:17 +0000790 Vdbe *p = (Vdbe *)pStmt;
drh32bc3f62007-08-21 20:25:39 +0000791 if( p ){
792 p->rc = sqlite3ApiExit(p->db, p->rc);
793 sqlite3_mutex_leave(p->db->mutex);
794 }
danielk19772e588c72005-12-09 14:25:08 +0000795}
796
drh4f26d6c2004-05-26 23:25:30 +0000797/**************************** sqlite3_column_ *******************************
798** The following routines are used to access elements of the current row
799** in the result set.
800*/
danielk1977c572ef72004-05-27 09:28:41 +0000801const void *sqlite3_column_blob(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000802 const void *val;
danielk19772e588c72005-12-09 14:25:08 +0000803 val = sqlite3_value_blob( columnMem(pStmt,i) );
danielk1977c9cf9012007-05-30 10:36:47 +0000804 /* Even though there is no encoding conversion, value_blob() might
805 ** need to call malloc() to expand the result of a zeroblob()
806 ** expression.
807 */
808 columnMallocFailure(pStmt);
danielk19772e588c72005-12-09 14:25:08 +0000809 return val;
danielk1977c572ef72004-05-27 09:28:41 +0000810}
drh4f26d6c2004-05-26 23:25:30 +0000811int sqlite3_column_bytes(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000812 int val = sqlite3_value_bytes( columnMem(pStmt,i) );
813 columnMallocFailure(pStmt);
814 return val;
drh4f26d6c2004-05-26 23:25:30 +0000815}
816int sqlite3_column_bytes16(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000817 int val = sqlite3_value_bytes16( columnMem(pStmt,i) );
818 columnMallocFailure(pStmt);
819 return val;
drh4f26d6c2004-05-26 23:25:30 +0000820}
821double sqlite3_column_double(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000822 double val = sqlite3_value_double( columnMem(pStmt,i) );
823 columnMallocFailure(pStmt);
824 return val;
drh4f26d6c2004-05-26 23:25:30 +0000825}
826int sqlite3_column_int(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000827 int val = sqlite3_value_int( columnMem(pStmt,i) );
828 columnMallocFailure(pStmt);
829 return val;
drh4f26d6c2004-05-26 23:25:30 +0000830}
drhefad9992004-06-22 12:13:55 +0000831sqlite_int64 sqlite3_column_int64(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000832 sqlite_int64 val = sqlite3_value_int64( columnMem(pStmt,i) );
833 columnMallocFailure(pStmt);
834 return val;
drh4f26d6c2004-05-26 23:25:30 +0000835}
836const unsigned char *sqlite3_column_text(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000837 const unsigned char *val = sqlite3_value_text( columnMem(pStmt,i) );
838 columnMallocFailure(pStmt);
839 return val;
drh4f26d6c2004-05-26 23:25:30 +0000840}
drhd1e47332005-06-26 17:55:33 +0000841sqlite3_value *sqlite3_column_value(sqlite3_stmt *pStmt, int i){
danielk1977d0ffa1e2008-10-13 10:37:49 +0000842 Mem *pOut = columnMem(pStmt, i);
843 if( pOut->flags&MEM_Static ){
844 pOut->flags &= ~MEM_Static;
845 pOut->flags |= MEM_Ephem;
846 }
drh32bc3f62007-08-21 20:25:39 +0000847 columnMallocFailure(pStmt);
danielk1977d0ffa1e2008-10-13 10:37:49 +0000848 return (sqlite3_value *)pOut;
drhd1e47332005-06-26 17:55:33 +0000849}
drh6c626082004-11-14 21:56:29 +0000850#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +0000851const void *sqlite3_column_text16(sqlite3_stmt *pStmt, int i){
danielk19772e588c72005-12-09 14:25:08 +0000852 const void *val = sqlite3_value_text16( columnMem(pStmt,i) );
853 columnMallocFailure(pStmt);
854 return val;
drh4f26d6c2004-05-26 23:25:30 +0000855}
drh6c626082004-11-14 21:56:29 +0000856#endif /* SQLITE_OMIT_UTF16 */
drh4f26d6c2004-05-26 23:25:30 +0000857int sqlite3_column_type(sqlite3_stmt *pStmt, int i){
drh32bc3f62007-08-21 20:25:39 +0000858 int iType = sqlite3_value_type( columnMem(pStmt,i) );
859 columnMallocFailure(pStmt);
860 return iType;
drh4f26d6c2004-05-26 23:25:30 +0000861}
862
drh29d72102006-02-09 22:13:41 +0000863/* The following function is experimental and subject to change or
864** removal */
865/*int sqlite3_column_numeric_type(sqlite3_stmt *pStmt, int i){
866** return sqlite3_value_numeric_type( columnMem(pStmt,i) );
867**}
868*/
869
drh5e2517e2004-09-24 23:59:12 +0000870/*
871** Convert the N-th element of pStmt->pColName[] into a string using
872** xFunc() then return that string. If N is out of range, return 0.
drhe590fbd2005-05-20 19:36:01 +0000873**
874** There are up to 5 names for each column. useType determines which
875** name is returned. Here are the names:
876**
877** 0 The column name as it should be displayed for output
878** 1 The datatype name for the column
879** 2 The name of the database that the column derives from
880** 3 The name of the table that the column derives from
881** 4 The name of the table column that the result column derives from
882**
883** If the result is not a simple column reference (if it is an expression
884** or a constant) then useTypes 2, 3, and 4 return NULL.
drh5e2517e2004-09-24 23:59:12 +0000885*/
886static const void *columnName(
887 sqlite3_stmt *pStmt,
888 int N,
889 const void *(*xFunc)(Mem*),
890 int useType
891){
drh32bc3f62007-08-21 20:25:39 +0000892 const void *ret = 0;
drh5e2517e2004-09-24 23:59:12 +0000893 Vdbe *p = (Vdbe *)pStmt;
drh32bc3f62007-08-21 20:25:39 +0000894 int n;
895
drh5e2517e2004-09-24 23:59:12 +0000896
drh32bc3f62007-08-21 20:25:39 +0000897 if( p!=0 ){
898 n = sqlite3_column_count(pStmt);
899 if( N<n && N>=0 ){
900 N += useType*n;
drh153c62c2007-08-24 03:51:33 +0000901 sqlite3_mutex_enter(p->db->mutex);
drh32bc3f62007-08-21 20:25:39 +0000902 ret = xFunc(&p->aColName[N]);
903
drh32bc3f62007-08-21 20:25:39 +0000904 /* A malloc may have failed inside of the xFunc() call. If this
905 ** is the case, clear the mallocFailed flag and return NULL.
906 */
907 if( p->db && p->db->mallocFailed ){
908 p->db->mallocFailed = 0;
909 ret = 0;
910 }
drh153c62c2007-08-24 03:51:33 +0000911 sqlite3_mutex_leave(p->db->mutex);
drh32bc3f62007-08-21 20:25:39 +0000912 }
drh5e2517e2004-09-24 23:59:12 +0000913 }
danielk197700fd9572005-12-07 06:27:43 +0000914 return ret;
drh5e2517e2004-09-24 23:59:12 +0000915}
916
drh4f26d6c2004-05-26 23:25:30 +0000917/*
918** Return the name of the Nth column of the result set returned by SQL
919** statement pStmt.
920*/
921const char *sqlite3_column_name(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000922 return columnName(
923 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text, COLNAME_NAME);
drh4f26d6c2004-05-26 23:25:30 +0000924}
drhe590fbd2005-05-20 19:36:01 +0000925#ifndef SQLITE_OMIT_UTF16
926const void *sqlite3_column_name16(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000927 return columnName(
928 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text16, COLNAME_NAME);
drhe590fbd2005-05-20 19:36:01 +0000929}
930#endif
drh4f26d6c2004-05-26 23:25:30 +0000931
932/*
drh3f913572008-03-22 01:07:17 +0000933** Constraint: If you have ENABLE_COLUMN_METADATA then you must
934** not define OMIT_DECLTYPE.
935*/
936#if defined(SQLITE_OMIT_DECLTYPE) && defined(SQLITE_ENABLE_COLUMN_METADATA)
937# error "Must not define both SQLITE_OMIT_DECLTYPE \
938 and SQLITE_ENABLE_COLUMN_METADATA"
939#endif
940
941#ifndef SQLITE_OMIT_DECLTYPE
942/*
drh6c626082004-11-14 21:56:29 +0000943** Return the column declaration type (if applicable) of the 'i'th column
drhe590fbd2005-05-20 19:36:01 +0000944** of the result set of SQL statement pStmt.
drh6c626082004-11-14 21:56:29 +0000945*/
946const char *sqlite3_column_decltype(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000947 return columnName(
948 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text, COLNAME_DECLTYPE);
drh6c626082004-11-14 21:56:29 +0000949}
drh6c626082004-11-14 21:56:29 +0000950#ifndef SQLITE_OMIT_UTF16
danielk197776d505b2004-05-28 13:13:02 +0000951const void *sqlite3_column_decltype16(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000952 return columnName(
953 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text16, COLNAME_DECLTYPE);
drh4f26d6c2004-05-26 23:25:30 +0000954}
drh6c626082004-11-14 21:56:29 +0000955#endif /* SQLITE_OMIT_UTF16 */
drh3f913572008-03-22 01:07:17 +0000956#endif /* SQLITE_OMIT_DECLTYPE */
drh4f26d6c2004-05-26 23:25:30 +0000957
danielk19774b1ae992006-02-10 03:06:10 +0000958#ifdef SQLITE_ENABLE_COLUMN_METADATA
drhe590fbd2005-05-20 19:36:01 +0000959/*
960** Return the name of the database from which a result column derives.
961** NULL is returned if the result column is an expression or constant or
962** anything else which is not an unabiguous reference to a database column.
963*/
964const char *sqlite3_column_database_name(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000965 return columnName(
966 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text, COLNAME_DATABASE);
drhe590fbd2005-05-20 19:36:01 +0000967}
968#ifndef SQLITE_OMIT_UTF16
969const void *sqlite3_column_database_name16(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000970 return columnName(
971 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text16, COLNAME_DATABASE);
drhe590fbd2005-05-20 19:36:01 +0000972}
973#endif /* SQLITE_OMIT_UTF16 */
974
975/*
976** Return the name of the table from which a result column derives.
977** NULL is returned if the result column is an expression or constant or
978** anything else which is not an unabiguous reference to a database column.
979*/
980const char *sqlite3_column_table_name(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000981 return columnName(
982 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text, COLNAME_TABLE);
drhe590fbd2005-05-20 19:36:01 +0000983}
984#ifndef SQLITE_OMIT_UTF16
985const void *sqlite3_column_table_name16(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000986 return columnName(
987 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text16, COLNAME_TABLE);
drhe590fbd2005-05-20 19:36:01 +0000988}
989#endif /* SQLITE_OMIT_UTF16 */
990
991/*
992** Return the name of the table column from which a result column derives.
993** NULL is returned if the result column is an expression or constant or
994** anything else which is not an unabiguous reference to a database column.
995*/
996const char *sqlite3_column_origin_name(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +0000997 return columnName(
998 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text, COLNAME_COLUMN);
drhe590fbd2005-05-20 19:36:01 +0000999}
1000#ifndef SQLITE_OMIT_UTF16
1001const void *sqlite3_column_origin_name16(sqlite3_stmt *pStmt, int N){
danielk1977955de522006-02-10 02:27:42 +00001002 return columnName(
1003 pStmt, N, (const void*(*)(Mem*))sqlite3_value_text16, COLNAME_COLUMN);
drhe590fbd2005-05-20 19:36:01 +00001004}
1005#endif /* SQLITE_OMIT_UTF16 */
danielk19774b1ae992006-02-10 03:06:10 +00001006#endif /* SQLITE_ENABLE_COLUMN_METADATA */
drhe590fbd2005-05-20 19:36:01 +00001007
1008
drh4f26d6c2004-05-26 23:25:30 +00001009/******************************* sqlite3_bind_ ***************************
1010**
1011** Routines used to attach values to wildcards in a compiled SQL statement.
1012*/
1013/*
1014** Unbind the value bound to variable i in virtual machine p. This is the
1015** the same as binding a NULL value to the column. If the "i" parameter is
1016** out of range, then SQLITE_RANGE is returned. Othewise SQLITE_OK.
1017**
drh488e7b62008-10-06 12:46:43 +00001018** A successful evaluation of this routine acquires the mutex on p.
1019** the mutex is released if any kind of error occurs.
1020**
drh4f26d6c2004-05-26 23:25:30 +00001021** The error code stored in database p->db is overwritten with the return
1022** value in any case.
1023*/
1024static int vdbeUnbind(Vdbe *p, int i){
1025 Mem *pVar;
drh488e7b62008-10-06 12:46:43 +00001026 if( p==0 ) return SQLITE_MISUSE;
1027 sqlite3_mutex_enter(p->db->mutex);
1028 if( p->magic!=VDBE_MAGIC_RUN || p->pc>=0 ){
1029 sqlite3Error(p->db, SQLITE_MISUSE, 0);
1030 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001031 return SQLITE_MISUSE;
1032 }
1033 if( i<1 || i>p->nVar ){
1034 sqlite3Error(p->db, SQLITE_RANGE, 0);
drh488e7b62008-10-06 12:46:43 +00001035 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001036 return SQLITE_RANGE;
1037 }
1038 i--;
drh290c1942004-08-21 17:54:45 +00001039 pVar = &p->aVar[i];
danielk1977d8123362004-06-12 09:25:12 +00001040 sqlite3VdbeMemRelease(pVar);
drh4f26d6c2004-05-26 23:25:30 +00001041 pVar->flags = MEM_Null;
1042 sqlite3Error(p->db, SQLITE_OK, 0);
1043 return SQLITE_OK;
1044}
1045
1046/*
drh5e2517e2004-09-24 23:59:12 +00001047** Bind a text or BLOB value.
drh4f26d6c2004-05-26 23:25:30 +00001048*/
drh5e2517e2004-09-24 23:59:12 +00001049static int bindText(
drh605264d2007-08-21 15:13:19 +00001050 sqlite3_stmt *pStmt, /* The statement to bind against */
1051 int i, /* Index of the parameter to bind */
1052 const void *zData, /* Pointer to the data to be bound */
1053 int nData, /* Number of bytes of data to be bound */
1054 void (*xDel)(void*), /* Destructor for the data */
1055 int encoding /* Encoding for the data */
drh4f26d6c2004-05-26 23:25:30 +00001056){
1057 Vdbe *p = (Vdbe *)pStmt;
1058 Mem *pVar;
1059 int rc;
1060
1061 rc = vdbeUnbind(p, i);
drh488e7b62008-10-06 12:46:43 +00001062 if( rc==SQLITE_OK ){
1063 if( zData!=0 ){
1064 pVar = &p->aVar[i-1];
1065 rc = sqlite3VdbeMemSetStr(pVar, zData, nData, encoding, xDel);
1066 if( rc==SQLITE_OK && encoding!=0 ){
1067 rc = sqlite3VdbeChangeEncoding(pVar, ENC(p->db));
1068 }
1069 sqlite3Error(p->db, rc, 0);
1070 rc = sqlite3ApiExit(p->db, rc);
drh27641702007-08-22 02:56:42 +00001071 }
drh488e7b62008-10-06 12:46:43 +00001072 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001073 }
drh605264d2007-08-21 15:13:19 +00001074 return rc;
drh4f26d6c2004-05-26 23:25:30 +00001075}
drh5e2517e2004-09-24 23:59:12 +00001076
1077
1078/*
1079** Bind a blob value to an SQL statement variable.
1080*/
1081int sqlite3_bind_blob(
1082 sqlite3_stmt *pStmt,
1083 int i,
1084 const void *zData,
1085 int nData,
1086 void (*xDel)(void*)
1087){
1088 return bindText(pStmt, i, zData, nData, xDel, 0);
1089}
drh4f26d6c2004-05-26 23:25:30 +00001090int sqlite3_bind_double(sqlite3_stmt *pStmt, int i, double rValue){
1091 int rc;
1092 Vdbe *p = (Vdbe *)pStmt;
drh4f26d6c2004-05-26 23:25:30 +00001093 rc = vdbeUnbind(p, i);
1094 if( rc==SQLITE_OK ){
drh290c1942004-08-21 17:54:45 +00001095 sqlite3VdbeMemSetDouble(&p->aVar[i-1], rValue);
drh488e7b62008-10-06 12:46:43 +00001096 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001097 }
danielk1977f4618892004-06-28 13:09:11 +00001098 return rc;
drh4f26d6c2004-05-26 23:25:30 +00001099}
1100int sqlite3_bind_int(sqlite3_stmt *p, int i, int iValue){
drhefad9992004-06-22 12:13:55 +00001101 return sqlite3_bind_int64(p, i, (i64)iValue);
drh4f26d6c2004-05-26 23:25:30 +00001102}
drhefad9992004-06-22 12:13:55 +00001103int sqlite3_bind_int64(sqlite3_stmt *pStmt, int i, sqlite_int64 iValue){
drh4f26d6c2004-05-26 23:25:30 +00001104 int rc;
1105 Vdbe *p = (Vdbe *)pStmt;
1106 rc = vdbeUnbind(p, i);
1107 if( rc==SQLITE_OK ){
drh290c1942004-08-21 17:54:45 +00001108 sqlite3VdbeMemSetInt64(&p->aVar[i-1], iValue);
drh488e7b62008-10-06 12:46:43 +00001109 sqlite3_mutex_leave(p->db->mutex);
drh4f26d6c2004-05-26 23:25:30 +00001110 }
1111 return rc;
1112}
drh605264d2007-08-21 15:13:19 +00001113int sqlite3_bind_null(sqlite3_stmt *pStmt, int i){
1114 int rc;
1115 Vdbe *p = (Vdbe*)pStmt;
drh605264d2007-08-21 15:13:19 +00001116 rc = vdbeUnbind(p, i);
drh488e7b62008-10-06 12:46:43 +00001117 if( rc==SQLITE_OK ){
1118 sqlite3_mutex_leave(p->db->mutex);
1119 }
drh605264d2007-08-21 15:13:19 +00001120 return rc;
drh4f26d6c2004-05-26 23:25:30 +00001121}
1122int sqlite3_bind_text(
1123 sqlite3_stmt *pStmt,
1124 int i,
1125 const char *zData,
1126 int nData,
danielk1977d8123362004-06-12 09:25:12 +00001127 void (*xDel)(void*)
drh4f26d6c2004-05-26 23:25:30 +00001128){
drh5e2517e2004-09-24 23:59:12 +00001129 return bindText(pStmt, i, zData, nData, xDel, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +00001130}
drh6c626082004-11-14 21:56:29 +00001131#ifndef SQLITE_OMIT_UTF16
drh4f26d6c2004-05-26 23:25:30 +00001132int sqlite3_bind_text16(
1133 sqlite3_stmt *pStmt,
1134 int i,
1135 const void *zData,
1136 int nData,
danielk1977d8123362004-06-12 09:25:12 +00001137 void (*xDel)(void*)
drh4f26d6c2004-05-26 23:25:30 +00001138){
drh5e2517e2004-09-24 23:59:12 +00001139 return bindText(pStmt, i, zData, nData, xDel, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +00001140}
drh6c626082004-11-14 21:56:29 +00001141#endif /* SQLITE_OMIT_UTF16 */
danielk197726e41442006-06-14 15:16:35 +00001142int sqlite3_bind_value(sqlite3_stmt *pStmt, int i, const sqlite3_value *pValue){
1143 int rc;
1144 Vdbe *p = (Vdbe *)pStmt;
1145 rc = vdbeUnbind(p, i);
1146 if( rc==SQLITE_OK ){
drhb21c8cd2007-08-21 19:33:56 +00001147 rc = sqlite3VdbeMemCopy(&p->aVar[i-1], pValue);
danielk19771e740c62008-05-16 15:24:58 +00001148 if( rc==SQLITE_OK ){
1149 rc = sqlite3VdbeChangeEncoding(&p->aVar[i-1], ENC(p->db));
1150 }
drh488e7b62008-10-06 12:46:43 +00001151 sqlite3_mutex_leave(p->db->mutex);
danielk197726e41442006-06-14 15:16:35 +00001152 }
danielk19770bfbaa82008-10-07 14:06:11 +00001153 rc = sqlite3ApiExit(p->db, rc);
danielk197726e41442006-06-14 15:16:35 +00001154 return rc;
1155}
drhb026e052007-05-02 01:34:31 +00001156int sqlite3_bind_zeroblob(sqlite3_stmt *pStmt, int i, int n){
1157 int rc;
1158 Vdbe *p = (Vdbe *)pStmt;
1159 rc = vdbeUnbind(p, i);
1160 if( rc==SQLITE_OK ){
1161 sqlite3VdbeMemSetZeroBlob(&p->aVar[i-1], n);
drh488e7b62008-10-06 12:46:43 +00001162 sqlite3_mutex_leave(p->db->mutex);
drhb026e052007-05-02 01:34:31 +00001163 }
1164 return rc;
1165}
drh75f6a032004-07-15 14:15:00 +00001166
1167/*
1168** Return the number of wildcards that can be potentially bound to.
1169** This routine is added to support DBD::SQLite.
drh75f6a032004-07-15 14:15:00 +00001170*/
1171int sqlite3_bind_parameter_count(sqlite3_stmt *pStmt){
drh92febd92004-08-20 18:34:20 +00001172 Vdbe *p = (Vdbe*)pStmt;
1173 return p ? p->nVar : 0;
drh75f6a032004-07-15 14:15:00 +00001174}
drh895d7472004-08-20 16:02:39 +00001175
1176/*
drhfa6bc002004-09-07 16:19:52 +00001177** Create a mapping from variable numbers to variable names
1178** in the Vdbe.azVar[] array, if such a mapping does not already
1179** exist.
drh895d7472004-08-20 16:02:39 +00001180*/
drhfa6bc002004-09-07 16:19:52 +00001181static void createVarMap(Vdbe *p){
drh895d7472004-08-20 16:02:39 +00001182 if( !p->okVar ){
drh605264d2007-08-21 15:13:19 +00001183 sqlite3_mutex_enter(p->db->mutex);
1184 if( !p->okVar ){
1185 int j;
1186 Op *pOp;
1187 for(j=0, pOp=p->aOp; j<p->nOp; j++, pOp++){
1188 if( pOp->opcode==OP_Variable ){
1189 assert( pOp->p1>0 && pOp->p1<=p->nVar );
danielk19772dca4ac2008-01-03 11:50:29 +00001190 p->azVar[pOp->p1-1] = pOp->p4.z;
drh605264d2007-08-21 15:13:19 +00001191 }
drh895d7472004-08-20 16:02:39 +00001192 }
drh605264d2007-08-21 15:13:19 +00001193 p->okVar = 1;
drh895d7472004-08-20 16:02:39 +00001194 }
drh605264d2007-08-21 15:13:19 +00001195 sqlite3_mutex_leave(p->db->mutex);
drh895d7472004-08-20 16:02:39 +00001196 }
drhfa6bc002004-09-07 16:19:52 +00001197}
1198
1199/*
1200** Return the name of a wildcard parameter. Return NULL if the index
1201** is out of range or if the wildcard is unnamed.
1202**
1203** The result is always UTF-8.
1204*/
1205const char *sqlite3_bind_parameter_name(sqlite3_stmt *pStmt, int i){
1206 Vdbe *p = (Vdbe*)pStmt;
1207 if( p==0 || i<1 || i>p->nVar ){
1208 return 0;
1209 }
1210 createVarMap(p);
drh895d7472004-08-20 16:02:39 +00001211 return p->azVar[i-1];
1212}
drhfa6bc002004-09-07 16:19:52 +00001213
1214/*
1215** Given a wildcard parameter name, return the index of the variable
1216** with that name. If there is no variable with the given name,
1217** return 0.
1218*/
1219int sqlite3_bind_parameter_index(sqlite3_stmt *pStmt, const char *zName){
1220 Vdbe *p = (Vdbe*)pStmt;
1221 int i;
1222 if( p==0 ){
1223 return 0;
1224 }
1225 createVarMap(p);
drh6a8903c2004-12-10 18:00:04 +00001226 if( zName ){
1227 for(i=0; i<p->nVar; i++){
1228 const char *z = p->azVar[i];
1229 if( z && strcmp(z,zName)==0 ){
1230 return i+1;
1231 }
drhfa6bc002004-09-07 16:19:52 +00001232 }
1233 }
1234 return 0;
1235}
drhf8db1bc2005-04-22 02:38:37 +00001236
drh51942bc2005-06-12 22:01:42 +00001237/*
drhf8db1bc2005-04-22 02:38:37 +00001238** Transfer all bindings from the first statement over to the second.
1239** If the two statements contain a different number of bindings, then
1240** an SQLITE_ERROR is returned.
1241*/
shane145834a2008-09-04 12:03:42 +00001242int sqlite3TransferBindings(sqlite3_stmt *pFromStmt, sqlite3_stmt *pToStmt){
drhf8db1bc2005-04-22 02:38:37 +00001243 Vdbe *pFrom = (Vdbe*)pFromStmt;
1244 Vdbe *pTo = (Vdbe*)pToStmt;
1245 int i, rc = SQLITE_OK;
1246 if( (pFrom->magic!=VDBE_MAGIC_RUN && pFrom->magic!=VDBE_MAGIC_HALT)
drh27641702007-08-22 02:56:42 +00001247 || (pTo->magic!=VDBE_MAGIC_RUN && pTo->magic!=VDBE_MAGIC_HALT)
1248 || pTo->db!=pFrom->db ){
drhf8db1bc2005-04-22 02:38:37 +00001249 return SQLITE_MISUSE;
1250 }
1251 if( pFrom->nVar!=pTo->nVar ){
1252 return SQLITE_ERROR;
1253 }
drh27641702007-08-22 02:56:42 +00001254 sqlite3_mutex_enter(pTo->db->mutex);
drhf8db1bc2005-04-22 02:38:37 +00001255 for(i=0; rc==SQLITE_OK && i<pFrom->nVar; i++){
drh643167f2008-01-22 21:30:53 +00001256 sqlite3VdbeMemMove(&pTo->aVar[i], &pFrom->aVar[i]);
drhf8db1bc2005-04-22 02:38:37 +00001257 }
drh27641702007-08-22 02:56:42 +00001258 sqlite3_mutex_leave(pTo->db->mutex);
drh4ac285a2006-09-15 07:28:50 +00001259 assert( rc==SQLITE_OK || rc==SQLITE_NOMEM );
drhf8db1bc2005-04-22 02:38:37 +00001260 return rc;
1261}
drh51942bc2005-06-12 22:01:42 +00001262
shaneeec556d2008-10-12 00:27:53 +00001263#ifndef SQLITE_OMIT_DEPRECATED
drh51942bc2005-06-12 22:01:42 +00001264/*
shane145834a2008-09-04 12:03:42 +00001265** Deprecated external interface. Internal/core SQLite code
1266** should call sqlite3TransferBindings.
1267*/
1268int sqlite3_transfer_bindings(sqlite3_stmt *pFromStmt, sqlite3_stmt *pToStmt){
1269 return sqlite3TransferBindings(pFromStmt, pToStmt);
1270}
shaneeec556d2008-10-12 00:27:53 +00001271#endif
shane145834a2008-09-04 12:03:42 +00001272
1273/*
drh51942bc2005-06-12 22:01:42 +00001274** Return the sqlite3* database handle to which the prepared statement given
1275** in the argument belongs. This is the same database handle that was
1276** the first argument to the sqlite3_prepare() that was used to create
1277** the statement in the first place.
1278*/
1279sqlite3 *sqlite3_db_handle(sqlite3_stmt *pStmt){
1280 return pStmt ? ((Vdbe*)pStmt)->db : 0;
1281}
drhbb5a9c32008-06-19 02:52:25 +00001282
1283/*
1284** Return a pointer to the next prepared statement after pStmt associated
1285** with database connection pDb. If pStmt is NULL, return the first
1286** prepared statement for the database connection. Return NULL if there
1287** are no more.
1288*/
1289sqlite3_stmt *sqlite3_next_stmt(sqlite3 *pDb, sqlite3_stmt *pStmt){
1290 sqlite3_stmt *pNext;
1291 sqlite3_mutex_enter(pDb->mutex);
1292 if( pStmt==0 ){
1293 pNext = (sqlite3_stmt*)pDb->pVdbe;
1294 }else{
1295 pNext = (sqlite3_stmt*)((Vdbe*)pStmt)->pNext;
1296 }
1297 sqlite3_mutex_leave(pDb->mutex);
1298 return pNext;
1299}
drhd1d38482008-10-07 23:46:38 +00001300
1301/*
1302** Return the value of a status counter for a prepared statement
1303*/
1304int sqlite3_stmt_status(sqlite3_stmt *pStmt, int op, int resetFlag){
1305 Vdbe *pVdbe = (Vdbe*)pStmt;
1306 int v = pVdbe->aCounter[op-1];
1307 if( resetFlag ) pVdbe->aCounter[op-1] = 0;
1308 return v;
1309}