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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
19/**************************** sqlite3_value_ *******************************
20** The following routines extract information from a Mem or sqlite3_value
21** structure.
22*/
23const void *sqlite3_value_blob(sqlite3_value *pVal){
24 Mem *p = (Mem*)pVal;
25 if( p->flags & (MEM_Blob|MEM_Str) ){
26 return p->z;
27 }else{
28 return sqlite3_value_text(pVal);
29 }
30}
31int sqlite3_value_bytes(sqlite3_value *pVal){
danielk197713073932004-06-30 11:54:06 +000032 return sqlite3ValueBytes(pVal, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +000033}
34int sqlite3_value_bytes16(sqlite3_value *pVal){
danielk197713073932004-06-30 11:54:06 +000035 return sqlite3ValueBytes(pVal, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +000036}
37double sqlite3_value_double(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +000038 return sqlite3VdbeRealValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +000039}
40int sqlite3_value_int(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +000041 return sqlite3VdbeIntValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +000042}
drhefad9992004-06-22 12:13:55 +000043sqlite_int64 sqlite3_value_int64(sqlite3_value *pVal){
drh6a6124e2004-06-27 01:56:33 +000044 return sqlite3VdbeIntValue((Mem*)pVal);
drh4f26d6c2004-05-26 23:25:30 +000045}
46const unsigned char *sqlite3_value_text(sqlite3_value *pVal){
danielk1977dc8453f2004-06-12 00:42:34 +000047 return (const char *)sqlite3ValueText(pVal, SQLITE_UTF8);
drh4f26d6c2004-05-26 23:25:30 +000048}
49const void *sqlite3_value_text16(sqlite3_value* pVal){
danielk1977dc8453f2004-06-12 00:42:34 +000050 return sqlite3ValueText(pVal, SQLITE_UTF16NATIVE);
drh4f26d6c2004-05-26 23:25:30 +000051}
danielk1977d8123362004-06-12 09:25:12 +000052const void *sqlite3_value_text16be(sqlite3_value *pVal){
53 return sqlite3ValueText(pVal, SQLITE_UTF16BE);
54}
55const void *sqlite3_value_text16le(sqlite3_value *pVal){
56 return sqlite3ValueText(pVal, SQLITE_UTF16LE);
57}
drh4f26d6c2004-05-26 23:25:30 +000058int sqlite3_value_type(sqlite3_value* pVal){
drhf4479502004-05-27 03:12:53 +000059 return pVal->type;
drh4f26d6c2004-05-26 23:25:30 +000060}
61
62/**************************** sqlite3_result_ *******************************
63** The following routines are used by user-defined functions to specify
64** the function result.
65*/
66void sqlite3_result_blob(
67 sqlite3_context *pCtx,
68 const void *z,
69 int n,
danielk1977d8123362004-06-12 09:25:12 +000070 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +000071){
72 assert( n>0 );
danielk1977d8123362004-06-12 09:25:12 +000073 sqlite3VdbeMemSetStr(&pCtx->s, z, n, 0, xDel);
drh4f26d6c2004-05-26 23:25:30 +000074}
75void sqlite3_result_double(sqlite3_context *pCtx, double rVal){
76 sqlite3VdbeMemSetDouble(&pCtx->s, rVal);
77}
78void sqlite3_result_error(sqlite3_context *pCtx, const char *z, int n){
79 pCtx->isError = 1;
danielk1977d8123362004-06-12 09:25:12 +000080 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF8, SQLITE_TRANSIENT);
drh4f26d6c2004-05-26 23:25:30 +000081}
82void sqlite3_result_error16(sqlite3_context *pCtx, const void *z, int n){
83 pCtx->isError = 1;
danielk1977d8123362004-06-12 09:25:12 +000084 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16NATIVE, SQLITE_TRANSIENT);
drh4f26d6c2004-05-26 23:25:30 +000085}
drhf4479502004-05-27 03:12:53 +000086void sqlite3_result_int(sqlite3_context *pCtx, int iVal){
drh4f26d6c2004-05-26 23:25:30 +000087 sqlite3VdbeMemSetInt64(&pCtx->s, (i64)iVal);
88}
89void sqlite3_result_int64(sqlite3_context *pCtx, i64 iVal){
90 sqlite3VdbeMemSetInt64(&pCtx->s, iVal);
91}
92void sqlite3_result_null(sqlite3_context *pCtx){
drhf4479502004-05-27 03:12:53 +000093 sqlite3VdbeMemSetNull(&pCtx->s);
drh4f26d6c2004-05-26 23:25:30 +000094}
95void sqlite3_result_text(
96 sqlite3_context *pCtx,
97 const char *z,
98 int n,
danielk1977d8123362004-06-12 09:25:12 +000099 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000100){
danielk1977d8123362004-06-12 09:25:12 +0000101 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF8, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000102}
103void sqlite3_result_text16(
104 sqlite3_context *pCtx,
105 const void *z,
106 int n,
danielk1977d8123362004-06-12 09:25:12 +0000107 void (*xDel)(void *)
drh4f26d6c2004-05-26 23:25:30 +0000108){
danielk1977d8123362004-06-12 09:25:12 +0000109 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16NATIVE, xDel);
110}
111void sqlite3_result_text16be(
112 sqlite3_context *pCtx,
113 const void *z,
114 int n,
115 void (*xDel)(void *)
116){
117 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16BE, xDel);
118}
119void sqlite3_result_text16le(
120 sqlite3_context *pCtx,
121 const void *z,
122 int n,
123 void (*xDel)(void *)
124){
125 sqlite3VdbeMemSetStr(&pCtx->s, z, n, SQLITE_UTF16LE, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000126}
127void sqlite3_result_value(sqlite3_context *pCtx, sqlite3_value *pValue){
128 sqlite3VdbeMemCopy(&pCtx->s, pValue);
129}
130
131
132/*
133** Execute the statement pStmt, either until a row of data is ready, the
134** statement is completely executed or an error occurs.
135*/
136int sqlite3_step(sqlite3_stmt *pStmt){
137 Vdbe *p = (Vdbe*)pStmt;
drh9bb575f2004-09-06 17:24:11 +0000138 sqlite3 *db;
drh4f26d6c2004-05-26 23:25:30 +0000139 int rc;
140
drh1bcdb0c2004-08-28 14:49:46 +0000141 if( p==0 || p->magic!=VDBE_MAGIC_RUN ){
drh4f26d6c2004-05-26 23:25:30 +0000142 return SQLITE_MISUSE;
143 }
drh91b48aa2004-06-30 11:14:18 +0000144 if( p->aborted ){
145 return SQLITE_ABORT;
146 }
drh4f26d6c2004-05-26 23:25:30 +0000147 db = p->db;
148 if( sqlite3SafetyOn(db) ){
149 p->rc = SQLITE_MISUSE;
150 return SQLITE_MISUSE;
151 }
danielk19771d850a72004-05-31 08:26:49 +0000152 if( p->pc<0 ){
153 db->activeVdbeCnt++;
154 p->pc = 0;
155 }
drh4f26d6c2004-05-26 23:25:30 +0000156 if( p->explain ){
157 rc = sqlite3VdbeList(p);
158 }else{
159 rc = sqlite3VdbeExec(p);
160 }
161
162 if( sqlite3SafetyOff(db) ){
163 rc = SQLITE_MISUSE;
164 }
165
166 sqlite3Error(p->db, rc, p->zErrMsg);
167 return rc;
168}
169
170/*
drheb2e1762004-05-27 01:53:56 +0000171** Extract the user data from a sqlite3_context structure and return a
172** pointer to it.
173*/
174void *sqlite3_user_data(sqlite3_context *p){
175 assert( p && p->pFunc );
176 return p->pFunc->pUserData;
177}
178
179/*
180** Allocate or return the aggregate context for a user function. A new
181** context is allocated on the first call. Subsequent calls return the
182** same context that was returned on prior calls.
183**
184** This routine is defined here in vdbe.c because it depends on knowing
185** the internals of the sqlite3_context structure which is only defined in
186** this source file.
187*/
188void *sqlite3_aggregate_context(sqlite3_context *p, int nByte){
189 assert( p && p->pFunc && p->pFunc->xStep );
190 if( p->pAgg==0 ){
191 if( nByte<=NBFS ){
192 p->pAgg = (void*)p->s.z;
193 memset(p->pAgg, 0, nByte);
194 }else{
195 p->pAgg = sqliteMalloc( nByte );
196 }
197 }
198 return p->pAgg;
199}
200
201/*
danielk1977682f68b2004-06-05 10:22:17 +0000202** Return the auxilary data pointer, if any, for the iArg'th argument to
203** the user-function defined by pCtx.
204*/
205void *sqlite3_get_auxdata(sqlite3_context *pCtx, int iArg){
206 VdbeFunc *pVdbeFunc = pCtx->pVdbeFunc;
207 if( !pVdbeFunc || iArg>=pVdbeFunc->nAux || iArg<0 ){
208 return 0;
209 }
drhf92c7ff2004-06-19 15:40:23 +0000210 return pVdbeFunc->apAux[iArg].pAux;
danielk1977682f68b2004-06-05 10:22:17 +0000211}
212
213/*
214** Set the auxilary data pointer and delete function, for the iArg'th
215** argument to the user-function defined by pCtx. Any previous value is
216** deleted by calling the delete function specified when it was set.
217*/
218void sqlite3_set_auxdata(
219 sqlite3_context *pCtx,
220 int iArg,
221 void *pAux,
222 void (*xDelete)(void*)
223){
224 struct AuxData *pAuxData;
drhf92c7ff2004-06-19 15:40:23 +0000225 VdbeFunc *pVdbeFunc;
danielk1977682f68b2004-06-05 10:22:17 +0000226 if( iArg<0 ) return;
227
drhf92c7ff2004-06-19 15:40:23 +0000228 pVdbeFunc = pCtx->pVdbeFunc;
229 if( !pVdbeFunc || pVdbeFunc->nAux<=iArg ){
230 int nMalloc = sizeof(VdbeFunc) + sizeof(struct AuxData)*iArg;
231 pCtx->pVdbeFunc = pVdbeFunc = sqliteRealloc(pVdbeFunc, nMalloc);
drh998da3a2004-06-19 15:22:56 +0000232 if( !pVdbeFunc ) return;
drh0e3d7472004-06-19 17:33:07 +0000233 memset(&pVdbeFunc->apAux[pVdbeFunc->nAux], 0,
234 sizeof(struct AuxData)*(iArg+1-pVdbeFunc->nAux));
drh998da3a2004-06-19 15:22:56 +0000235 pVdbeFunc->nAux = iArg+1;
236 pVdbeFunc->pFunc = pCtx->pFunc;
danielk1977682f68b2004-06-05 10:22:17 +0000237 }
238
drhf92c7ff2004-06-19 15:40:23 +0000239 pAuxData = &pVdbeFunc->apAux[iArg];
danielk1977682f68b2004-06-05 10:22:17 +0000240 if( pAuxData->pAux && pAuxData->xDelete ){
241 pAuxData->xDelete(pAuxData->pAux);
242 }
243 pAuxData->pAux = pAux;
244 pAuxData->xDelete = xDelete;
245}
246
247/*
drheb2e1762004-05-27 01:53:56 +0000248** Return the number of times the Step function of a aggregate has been
249** called.
250**
251** This routine is defined here in vdbe.c because it depends on knowing
252** the internals of the sqlite3_context structure which is only defined in
253** this source file.
254*/
255int sqlite3_aggregate_count(sqlite3_context *p){
256 assert( p && p->pFunc && p->pFunc->xStep );
257 return p->cnt;
258}
259
260/*
drh4f26d6c2004-05-26 23:25:30 +0000261** Return the number of columns in the result set for the statement pStmt.
262*/
263int sqlite3_column_count(sqlite3_stmt *pStmt){
264 Vdbe *pVm = (Vdbe *)pStmt;
drh1bcdb0c2004-08-28 14:49:46 +0000265 return pVm ? pVm->nResColumn : 0;
drh4f26d6c2004-05-26 23:25:30 +0000266}
267
268/*
269** Return the number of values available from the current row of the
270** currently executing statement pStmt.
271*/
272int sqlite3_data_count(sqlite3_stmt *pStmt){
273 Vdbe *pVm = (Vdbe *)pStmt;
drh1bcdb0c2004-08-28 14:49:46 +0000274 if( pVm==0 || !pVm->resOnStack ) return 0;
drh4f26d6c2004-05-26 23:25:30 +0000275 return pVm->nResColumn;
276}
277
278
279/*
280** Check to see if column iCol of the given statement is valid. If
281** it is, return a pointer to the Mem for the value of that column.
282** If iCol is not valid, return a pointer to a Mem which has a value
283** of NULL.
284*/
285static Mem *columnMem(sqlite3_stmt *pStmt, int i){
286 Vdbe *pVm = (Vdbe *)pStmt;
287 int vals = sqlite3_data_count(pStmt);
288 if( i>=vals || i<0 ){
289 static Mem nullMem;
290 if( nullMem.flags==0 ){ nullMem.flags = MEM_Null; }
291 sqlite3Error(pVm->db, SQLITE_RANGE, 0);
292 return &nullMem;
293 }
294 return &pVm->pTos[(1-vals)+i];
295}
296
297/**************************** sqlite3_column_ *******************************
298** The following routines are used to access elements of the current row
299** in the result set.
300*/
danielk1977c572ef72004-05-27 09:28:41 +0000301const void *sqlite3_column_blob(sqlite3_stmt *pStmt, int i){
302 return sqlite3_value_blob( columnMem(pStmt,i) );
303}
drh4f26d6c2004-05-26 23:25:30 +0000304int sqlite3_column_bytes(sqlite3_stmt *pStmt, int i){
305 return sqlite3_value_bytes( columnMem(pStmt,i) );
306}
307int sqlite3_column_bytes16(sqlite3_stmt *pStmt, int i){
308 return sqlite3_value_bytes16( columnMem(pStmt,i) );
309}
310double sqlite3_column_double(sqlite3_stmt *pStmt, int i){
311 return sqlite3_value_double( columnMem(pStmt,i) );
312}
313int sqlite3_column_int(sqlite3_stmt *pStmt, int i){
314 return sqlite3_value_int( columnMem(pStmt,i) );
315}
drhefad9992004-06-22 12:13:55 +0000316sqlite_int64 sqlite3_column_int64(sqlite3_stmt *pStmt, int i){
drh4f26d6c2004-05-26 23:25:30 +0000317 return sqlite3_value_int64( columnMem(pStmt,i) );
318}
319const unsigned char *sqlite3_column_text(sqlite3_stmt *pStmt, int i){
320 return sqlite3_value_text( columnMem(pStmt,i) );
321}
322const void *sqlite3_column_text16(sqlite3_stmt *pStmt, int i){
323 return sqlite3_value_text16( columnMem(pStmt,i) );
324}
325int sqlite3_column_type(sqlite3_stmt *pStmt, int i){
326 return sqlite3_value_type( columnMem(pStmt,i) );
327}
328
329
330/*
331** Return the name of the Nth column of the result set returned by SQL
332** statement pStmt.
333*/
334const char *sqlite3_column_name(sqlite3_stmt *pStmt, int N){
335 Vdbe *p = (Vdbe *)pStmt;
336 Mem *pColName;
337
338 if( N>=sqlite3_column_count(pStmt) || N<0 ){
drh4f26d6c2004-05-26 23:25:30 +0000339 return 0;
340 }
341
342 pColName = &(p->aColName[N]);
343 return sqlite3_value_text(pColName);
344}
345
346/*
347** Return the name of the 'i'th column of the result set of SQL statement
348** pStmt, encoded as UTF-16.
349*/
350const void *sqlite3_column_name16(sqlite3_stmt *pStmt, int N){
351 Vdbe *p = (Vdbe *)pStmt;
352 Mem *pColName;
353
354 if( N>=sqlite3_column_count(pStmt) || N<0 ){
drh4f26d6c2004-05-26 23:25:30 +0000355 return 0;
356 }
357
358 pColName = &(p->aColName[N]);
359 return sqlite3_value_text16(pColName);
360}
361
drh4f26d6c2004-05-26 23:25:30 +0000362/*
363** Return the column declaration type (if applicable) of the 'i'th column
364** of the result set of SQL statement pStmt, encoded as UTF-8.
365*/
danielk197776d505b2004-05-28 13:13:02 +0000366const char *sqlite3_column_decltype(sqlite3_stmt *pStmt, int N){
drh4f26d6c2004-05-26 23:25:30 +0000367 Vdbe *p = (Vdbe *)pStmt;
danielk197776d505b2004-05-28 13:13:02 +0000368 Mem *pColName;
drh4f26d6c2004-05-26 23:25:30 +0000369
danielk197776d505b2004-05-28 13:13:02 +0000370 if( N>=sqlite3_column_count(pStmt) || N<0 ){
drh4f26d6c2004-05-26 23:25:30 +0000371 return 0;
372 }
373
danielk197776d505b2004-05-28 13:13:02 +0000374 pColName = &(p->aColName[N+sqlite3_column_count(pStmt)]);
375 return sqlite3_value_text(pColName);
drh4f26d6c2004-05-26 23:25:30 +0000376}
377
378/*
379** Return the column declaration type (if applicable) of the 'i'th column
380** of the result set of SQL statement pStmt, encoded as UTF-16.
381*/
danielk197776d505b2004-05-28 13:13:02 +0000382const void *sqlite3_column_decltype16(sqlite3_stmt *pStmt, int N){
383 Vdbe *p = (Vdbe *)pStmt;
384 Mem *pColName;
385
386 if( N>=sqlite3_column_count(pStmt) || N<0 ){
danielk197776d505b2004-05-28 13:13:02 +0000387 return 0;
388 }
389
390 pColName = &(p->aColName[N+sqlite3_column_count(pStmt)]);
391 return sqlite3_value_text16(pColName);
drh4f26d6c2004-05-26 23:25:30 +0000392}
393
394/******************************* sqlite3_bind_ ***************************
395**
396** Routines used to attach values to wildcards in a compiled SQL statement.
397*/
398/*
399** Unbind the value bound to variable i in virtual machine p. This is the
400** the same as binding a NULL value to the column. If the "i" parameter is
401** out of range, then SQLITE_RANGE is returned. Othewise SQLITE_OK.
402**
403** The error code stored in database p->db is overwritten with the return
404** value in any case.
405*/
406static int vdbeUnbind(Vdbe *p, int i){
407 Mem *pVar;
drh1bcdb0c2004-08-28 14:49:46 +0000408 if( p==0 || p->magic!=VDBE_MAGIC_RUN || p->pc>=0 ){
drh4f26d6c2004-05-26 23:25:30 +0000409 sqlite3Error(p->db, SQLITE_MISUSE, 0);
410 return SQLITE_MISUSE;
411 }
412 if( i<1 || i>p->nVar ){
413 sqlite3Error(p->db, SQLITE_RANGE, 0);
414 return SQLITE_RANGE;
415 }
416 i--;
drh290c1942004-08-21 17:54:45 +0000417 pVar = &p->aVar[i];
danielk1977d8123362004-06-12 09:25:12 +0000418 sqlite3VdbeMemRelease(pVar);
drh4f26d6c2004-05-26 23:25:30 +0000419 pVar->flags = MEM_Null;
420 sqlite3Error(p->db, SQLITE_OK, 0);
421 return SQLITE_OK;
422}
423
424/*
425** Bind a blob value to an SQL statement variable.
426*/
427int sqlite3_bind_blob(
drhf4479502004-05-27 03:12:53 +0000428 sqlite3_stmt *pStmt,
drh4f26d6c2004-05-26 23:25:30 +0000429 int i,
430 const void *zData,
431 int nData,
danielk1977d8123362004-06-12 09:25:12 +0000432 void (*xDel)(void*)
drh4f26d6c2004-05-26 23:25:30 +0000433){
434 Vdbe *p = (Vdbe *)pStmt;
435 Mem *pVar;
436 int rc;
437
438 rc = vdbeUnbind(p, i);
drhfeac5f82004-08-01 00:10:45 +0000439 if( rc || zData==0 ){
drh4f26d6c2004-05-26 23:25:30 +0000440 return rc;
441 }
drh290c1942004-08-21 17:54:45 +0000442 pVar = &p->aVar[i-1];
danielk1977d8123362004-06-12 09:25:12 +0000443 rc = sqlite3VdbeMemSetStr(pVar, zData, nData, 0, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000444 return rc;
445}
446int sqlite3_bind_double(sqlite3_stmt *pStmt, int i, double rValue){
447 int rc;
448 Vdbe *p = (Vdbe *)pStmt;
drh4f26d6c2004-05-26 23:25:30 +0000449 rc = vdbeUnbind(p, i);
450 if( rc==SQLITE_OK ){
drh290c1942004-08-21 17:54:45 +0000451 sqlite3VdbeMemSetDouble(&p->aVar[i-1], rValue);
drh4f26d6c2004-05-26 23:25:30 +0000452 }
danielk1977f4618892004-06-28 13:09:11 +0000453 return rc;
drh4f26d6c2004-05-26 23:25:30 +0000454}
455int sqlite3_bind_int(sqlite3_stmt *p, int i, int iValue){
drhefad9992004-06-22 12:13:55 +0000456 return sqlite3_bind_int64(p, i, (i64)iValue);
drh4f26d6c2004-05-26 23:25:30 +0000457}
drhefad9992004-06-22 12:13:55 +0000458int sqlite3_bind_int64(sqlite3_stmt *pStmt, int i, sqlite_int64 iValue){
drh4f26d6c2004-05-26 23:25:30 +0000459 int rc;
460 Vdbe *p = (Vdbe *)pStmt;
461 rc = vdbeUnbind(p, i);
462 if( rc==SQLITE_OK ){
drh290c1942004-08-21 17:54:45 +0000463 sqlite3VdbeMemSetInt64(&p->aVar[i-1], iValue);
drh4f26d6c2004-05-26 23:25:30 +0000464 }
465 return rc;
466}
467int sqlite3_bind_null(sqlite3_stmt* p, int i){
468 return vdbeUnbind((Vdbe *)p, i);
469}
470int sqlite3_bind_text(
471 sqlite3_stmt *pStmt,
472 int i,
473 const char *zData,
474 int nData,
danielk1977d8123362004-06-12 09:25:12 +0000475 void (*xDel)(void*)
drh4f26d6c2004-05-26 23:25:30 +0000476){
477 Vdbe *p = (Vdbe *)pStmt;
478 Mem *pVar;
479 int rc;
480
481 rc = vdbeUnbind(p, i);
drhfeac5f82004-08-01 00:10:45 +0000482 if( rc || zData==0 ){
drh4f26d6c2004-05-26 23:25:30 +0000483 return rc;
484 }
drh290c1942004-08-21 17:54:45 +0000485 pVar = &p->aVar[i-1];
danielk1977d8123362004-06-12 09:25:12 +0000486 rc = sqlite3VdbeMemSetStr(pVar, zData, nData, SQLITE_UTF8, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000487 if( rc ){
488 return rc;
489 }
drhf4479502004-05-27 03:12:53 +0000490 rc = sqlite3VdbeChangeEncoding(pVar, p->db->enc);
drh4f26d6c2004-05-26 23:25:30 +0000491 return rc;
492}
493int sqlite3_bind_text16(
494 sqlite3_stmt *pStmt,
495 int i,
496 const void *zData,
497 int nData,
danielk1977d8123362004-06-12 09:25:12 +0000498 void (*xDel)(void*)
drh4f26d6c2004-05-26 23:25:30 +0000499){
500 Vdbe *p = (Vdbe *)pStmt;
501 Mem *pVar;
danielk19775314c4d2004-06-18 06:02:35 +0000502 int rc;
drh4f26d6c2004-05-26 23:25:30 +0000503
504 rc = vdbeUnbind(p, i);
drhfeac5f82004-08-01 00:10:45 +0000505 if( rc || zData==0 ){
drh4f26d6c2004-05-26 23:25:30 +0000506 return rc;
507 }
drh290c1942004-08-21 17:54:45 +0000508 pVar = &p->aVar[i-1];
drh4f26d6c2004-05-26 23:25:30 +0000509
danielk1977bfd6cce2004-06-18 04:24:54 +0000510 rc = sqlite3VdbeMemSetStr(pVar, zData, nData, SQLITE_UTF16NATIVE, xDel);
drh4f26d6c2004-05-26 23:25:30 +0000511 if( rc ){
512 return rc;
513 }
drhf4479502004-05-27 03:12:53 +0000514 rc = sqlite3VdbeChangeEncoding(pVar, p->db->enc);
drh4f26d6c2004-05-26 23:25:30 +0000515 return rc;
516}
drh75f6a032004-07-15 14:15:00 +0000517
518/*
519** Return the number of wildcards that can be potentially bound to.
520** This routine is added to support DBD::SQLite.
drh75f6a032004-07-15 14:15:00 +0000521*/
522int sqlite3_bind_parameter_count(sqlite3_stmt *pStmt){
drh92febd92004-08-20 18:34:20 +0000523 Vdbe *p = (Vdbe*)pStmt;
524 return p ? p->nVar : 0;
drh75f6a032004-07-15 14:15:00 +0000525}
drh895d7472004-08-20 16:02:39 +0000526
527/*
drhfa6bc002004-09-07 16:19:52 +0000528** Create a mapping from variable numbers to variable names
529** in the Vdbe.azVar[] array, if such a mapping does not already
530** exist.
drh895d7472004-08-20 16:02:39 +0000531*/
drhfa6bc002004-09-07 16:19:52 +0000532static void createVarMap(Vdbe *p){
drh895d7472004-08-20 16:02:39 +0000533 if( !p->okVar ){
534 int j;
535 Op *pOp;
536 for(j=0, pOp=p->aOp; j<p->nOp; j++, pOp++){
537 if( pOp->opcode==OP_Variable ){
538 assert( pOp->p1>0 && pOp->p1<=p->nVar );
539 p->azVar[pOp->p1-1] = pOp->p3;
540 }
541 }
542 p->okVar = 1;
543 }
drhfa6bc002004-09-07 16:19:52 +0000544}
545
546/*
547** Return the name of a wildcard parameter. Return NULL if the index
548** is out of range or if the wildcard is unnamed.
549**
550** The result is always UTF-8.
551*/
552const char *sqlite3_bind_parameter_name(sqlite3_stmt *pStmt, int i){
553 Vdbe *p = (Vdbe*)pStmt;
554 if( p==0 || i<1 || i>p->nVar ){
555 return 0;
556 }
557 createVarMap(p);
drh895d7472004-08-20 16:02:39 +0000558 return p->azVar[i-1];
559}
drhfa6bc002004-09-07 16:19:52 +0000560
561/*
562** Given a wildcard parameter name, return the index of the variable
563** with that name. If there is no variable with the given name,
564** return 0.
565*/
566int sqlite3_bind_parameter_index(sqlite3_stmt *pStmt, const char *zName){
567 Vdbe *p = (Vdbe*)pStmt;
568 int i;
569 if( p==0 ){
570 return 0;
571 }
572 createVarMap(p);
573 for(i=0; i<p->nVar; i++){
574 if( strcmp(p->azVar[i],zName)==0 ){
575 return i+1;
576 }
577 }
578 return 0;
579}