blob: 44b7775138f5aa2e31454eb7a3d2af0f4f904e21 [file] [log] [blame]
danielk1977fa256a32005-05-25 04:11:56 +00001/*
2** 2005 May 25
3**
4** The author disclaims copyright to this source code. In place of
5** a legal notice, here is a blessing:
6**
7** May you do good and not evil.
8** May you find forgiveness for yourself and forgive others.
9** May you share freely, never taking more than you give.
10**
11*************************************************************************
12** This file contains the implementation of the sqlite3_prepare()
13** interface, and routines that contribute to loading the database schema
14** from disk.
danielk1977fa256a32005-05-25 04:11:56 +000015*/
16#include "sqliteInt.h"
danielk1977fa256a32005-05-25 04:11:56 +000017
18/*
19** Fill the InitData structure with an error message that indicates
20** that the database is corrupt.
21*/
drh34533152008-03-19 13:03:33 +000022static void corruptSchema(
23 InitData *pData, /* Initialization context */
24 const char *zObj, /* Object being parsed at the point of error */
25 const char *zExtra /* Error information */
26){
drhc456e572008-08-11 18:44:58 +000027 sqlite3 *db = pData->db;
28 if( !db->mallocFailed && (db->flags & SQLITE_RecoveryMode)==0 ){
drh34533152008-03-19 13:03:33 +000029 if( zObj==0 ) zObj = "?";
drh35ccb3d2009-08-01 16:27:00 +000030 sqlite3SetString(pData->pzErrMsg, db,
31 "malformed database schema (%s)", zObj);
drh9da742f2009-06-16 17:49:36 +000032 if( zExtra ){
drh35ccb3d2009-08-01 16:27:00 +000033 *pData->pzErrMsg = sqlite3MAppendf(db, *pData->pzErrMsg,
34 "%s - %s", *pData->pzErrMsg, zExtra);
drhf089aa42008-07-08 19:34:06 +000035 }
danielk1977fa256a32005-05-25 04:11:56 +000036 }
drh9da742f2009-06-16 17:49:36 +000037 pData->rc = db->mallocFailed ? SQLITE_NOMEM : SQLITE_CORRUPT;
danielk1977fa256a32005-05-25 04:11:56 +000038}
39
40/*
41** This is the callback routine for the code that initializes the
42** database. See sqlite3Init() below for additional information.
43** This routine is also called from the OP_ParseSchema opcode of the VDBE.
44**
45** Each callback contains the following information:
46**
47** argv[0] = name of thing being created
danielk197778efaba2006-06-12 06:09:17 +000048** argv[1] = root page number for table or index. 0 for trigger or view.
danielk1977fa256a32005-05-25 04:11:56 +000049** argv[2] = SQL text for the CREATE statement.
danielk1977fa256a32005-05-25 04:11:56 +000050**
51*/
danielk197762c14b32008-11-19 09:05:26 +000052int sqlite3InitCallback(void *pInit, int argc, char **argv, char **NotUsed){
danielk1977fa256a32005-05-25 04:11:56 +000053 InitData *pData = (InitData*)pInit;
54 sqlite3 *db = pData->db;
drhece3c722006-09-23 20:36:01 +000055 int iDb = pData->iDb;
danielk1977fa256a32005-05-25 04:11:56 +000056
danielk1977f3d3c272008-11-19 16:52:44 +000057 assert( argc==3 );
58 UNUSED_PARAMETER2(NotUsed, argc);
drhb1ab8ea2007-08-29 00:33:07 +000059 assert( sqlite3_mutex_held(db->mutex) );
drhece3c722006-09-23 20:36:01 +000060 DbClearProperty(db, iDb, DB_Empty);
drh17435752007-08-16 04:30:38 +000061 if( db->mallocFailed ){
drh34533152008-03-19 13:03:33 +000062 corruptSchema(pData, argv[0], 0);
drh9da742f2009-06-16 17:49:36 +000063 return 1;
danielk1977da184232006-01-05 11:34:32 +000064 }
65
danielk1977ff9b2e72008-09-08 09:06:18 +000066 assert( iDb>=0 && iDb<db->nDb );
danielk1977fa256a32005-05-25 04:11:56 +000067 if( argv==0 ) return 0; /* Might happen if EMPTY_RESULT_CALLBACKS are on */
drhece3c722006-09-23 20:36:01 +000068 if( argv[1]==0 ){
drh34533152008-03-19 13:03:33 +000069 corruptSchema(pData, argv[0], 0);
danielk1977ff9b2e72008-09-08 09:06:18 +000070 }else if( argv[2] && argv[2][0] ){
danielk1977fa256a32005-05-25 04:11:56 +000071 /* Call the parser to process a CREATE TABLE, INDEX or VIEW.
72 ** But because db->init.busy is set to 1, no VDBE code is generated
73 ** or executed. All the parser does is build the internal data
74 ** structures that describe the table, index, or view.
75 */
76 char *zErr;
77 int rc;
78 assert( db->init.busy );
79 db->init.iDb = iDb;
80 db->init.newTnum = atoi(argv[1]);
drh3d5f74b2009-08-06 17:43:31 +000081 db->init.orphanTrigger = 0;
danielk1977fa256a32005-05-25 04:11:56 +000082 rc = sqlite3_exec(db, argv[2], 0, 0, &zErr);
83 db->init.iDb = 0;
drh43617e92006-03-06 20:55:46 +000084 assert( rc!=SQLITE_OK || zErr==0 );
danielk1977fa256a32005-05-25 04:11:56 +000085 if( SQLITE_OK!=rc ){
drh3d5f74b2009-08-06 17:43:31 +000086 if( db->init.orphanTrigger ){
87 assert( iDb==1 );
88 }else{
89 pData->rc = rc;
90 if( rc==SQLITE_NOMEM ){
91 db->mallocFailed = 1;
92 }else if( rc!=SQLITE_INTERRUPT && rc!=SQLITE_LOCKED ){
93 corruptSchema(pData, argv[0], zErr);
94 }
danielk1977261919c2005-12-06 12:52:59 +000095 }
drh633e6d52008-07-28 19:34:53 +000096 sqlite3DbFree(db, zErr);
danielk1977fa256a32005-05-25 04:11:56 +000097 }
drh02cd2b82008-01-22 19:34:27 +000098 }else if( argv[0]==0 ){
drh34533152008-03-19 13:03:33 +000099 corruptSchema(pData, 0, 0);
danielk1977fa256a32005-05-25 04:11:56 +0000100 }else{
101 /* If the SQL column is blank it means this is an index that
102 ** was created to be the PRIMARY KEY or to fulfill a UNIQUE
103 ** constraint for a CREATE TABLE. The index should have already
104 ** been created when we processed the CREATE TABLE. All we have
105 ** to do here is record the root page number for that index.
106 */
107 Index *pIndex;
108 pIndex = sqlite3FindIndex(db, argv[0], db->aDb[iDb].zName);
drh9da742f2009-06-16 17:49:36 +0000109 if( pIndex==0 ){
danielk1977fa256a32005-05-25 04:11:56 +0000110 /* This can occur if there exists an index on a TEMP table which
111 ** has the same name as another index on a permanent index. Since
112 ** the permanent table is hidden by the TEMP table, we can also
113 ** safely ignore the index on the permanent table.
114 */
115 /* Do Nothing */;
drh9da742f2009-06-16 17:49:36 +0000116 }else if( sqlite3GetInt32(argv[1], &pIndex->tnum)==0 ){
117 corruptSchema(pData, argv[0], "invalid rootpage");
danielk1977fa256a32005-05-25 04:11:56 +0000118 }
119 }
120 return 0;
121}
122
123/*
124** Attempt to read the database schema and initialize internal
125** data structures for a single database file. The index of the
126** database file is given by iDb. iDb==0 is used for the main
127** database. iDb==1 should never be used. iDb>=2 is used for
128** auxiliary databases. Return one of the SQLITE_ error codes to
129** indicate success or failure.
130*/
131static int sqlite3InitOne(sqlite3 *db, int iDb, char **pzErrMsg){
132 int rc;
drh8a939192009-04-20 17:43:03 +0000133 int i;
danielk1977fa256a32005-05-25 04:11:56 +0000134 int size;
135 Table *pTab;
drhfdd6e852005-12-16 01:06:16 +0000136 Db *pDb;
drhece3c722006-09-23 20:36:01 +0000137 char const *azArg[4];
danielk19770d19f7a2009-06-03 11:25:07 +0000138 int meta[5];
danielk1977fa256a32005-05-25 04:11:56 +0000139 InitData initData;
140 char const *zMasterSchema;
141 char const *zMasterName = SCHEMA_TABLE(iDb);
danielk197794b30732009-07-02 17:21:57 +0000142 int openedTransaction = 0;
danielk1977fa256a32005-05-25 04:11:56 +0000143
144 /*
145 ** The master database table has a structure like this
146 */
147 static const char master_schema[] =
148 "CREATE TABLE sqlite_master(\n"
149 " type text,\n"
150 " name text,\n"
151 " tbl_name text,\n"
152 " rootpage integer,\n"
153 " sql text\n"
154 ")"
155 ;
156#ifndef SQLITE_OMIT_TEMPDB
157 static const char temp_master_schema[] =
158 "CREATE TEMP TABLE sqlite_temp_master(\n"
159 " type text,\n"
160 " name text,\n"
161 " tbl_name text,\n"
162 " rootpage integer,\n"
163 " sql text\n"
164 ")"
165 ;
166#else
167 #define temp_master_schema 0
168#endif
169
170 assert( iDb>=0 && iDb<db->nDb );
danielk197714db2662006-01-09 16:12:04 +0000171 assert( db->aDb[iDb].pSchema );
drhb1ab8ea2007-08-29 00:33:07 +0000172 assert( sqlite3_mutex_held(db->mutex) );
danielk19774eab8b72007-12-27 15:12:16 +0000173 assert( iDb==1 || sqlite3BtreeHoldsMutex(db->aDb[iDb].pBt) );
danielk1977da184232006-01-05 11:34:32 +0000174
danielk1977fa256a32005-05-25 04:11:56 +0000175 /* zMasterSchema and zInitScript are set to point at the master schema
176 ** and initialisation script appropriate for the database being
177 ** initialised. zMasterName is the name of the master table.
178 */
179 if( !OMIT_TEMPDB && iDb==1 ){
180 zMasterSchema = temp_master_schema;
181 }else{
182 zMasterSchema = master_schema;
183 }
184 zMasterName = SCHEMA_TABLE(iDb);
185
186 /* Construct the schema tables. */
danielk1977fa256a32005-05-25 04:11:56 +0000187 azArg[0] = zMasterName;
188 azArg[1] = "1";
189 azArg[2] = zMasterSchema;
drhece3c722006-09-23 20:36:01 +0000190 azArg[3] = 0;
danielk1977fa256a32005-05-25 04:11:56 +0000191 initData.db = db;
drhece3c722006-09-23 20:36:01 +0000192 initData.iDb = iDb;
drhc456e572008-08-11 18:44:58 +0000193 initData.rc = SQLITE_OK;
danielk1977fa256a32005-05-25 04:11:56 +0000194 initData.pzErrMsg = pzErrMsg;
drhc456e572008-08-11 18:44:58 +0000195 sqlite3InitCallback(&initData, 3, (char **)azArg, 0);
drhc456e572008-08-11 18:44:58 +0000196 if( initData.rc ){
danielk1977a1644fd2007-08-29 12:31:25 +0000197 rc = initData.rc;
198 goto error_out;
danielk1977fa256a32005-05-25 04:11:56 +0000199 }
200 pTab = sqlite3FindTable(db, zMasterName, db->aDb[iDb].zName);
drh9da742f2009-06-16 17:49:36 +0000201 if( ALWAYS(pTab) ){
drh7d10d5a2008-08-20 16:35:10 +0000202 pTab->tabFlags |= TF_Readonly;
danielk1977fa256a32005-05-25 04:11:56 +0000203 }
danielk1977fa256a32005-05-25 04:11:56 +0000204
205 /* Create a cursor to hold the database open
206 */
drhfdd6e852005-12-16 01:06:16 +0000207 pDb = &db->aDb[iDb];
208 if( pDb->pBt==0 ){
drh9da742f2009-06-16 17:49:36 +0000209 if( !OMIT_TEMPDB && ALWAYS(iDb==1) ){
danielk1977b82e7ed2006-01-11 14:09:31 +0000210 DbSetProperty(db, 1, DB_SchemaLoaded);
211 }
danielk1977fa256a32005-05-25 04:11:56 +0000212 return SQLITE_OK;
213 }
danielk1977602b4662009-07-02 07:47:33 +0000214
215 /* If there is not already a read-only (or read-write) transaction opened
216 ** on the b-tree database, open one now. If a transaction is opened, it
217 ** will be closed before this function returns. */
drhb1ab8ea2007-08-29 00:33:07 +0000218 sqlite3BtreeEnter(pDb->pBt);
danielk1977602b4662009-07-02 07:47:33 +0000219 if( !sqlite3BtreeIsInReadTrans(pDb->pBt) ){
220 rc = sqlite3BtreeBeginTrans(pDb->pBt, 0);
221 if( rc!=SQLITE_OK ){
222 sqlite3SetString(pzErrMsg, db, "%s", sqlite3ErrStr(rc));
223 goto initone_error_out;
224 }
225 openedTransaction = 1;
danielk1977602b4662009-07-02 07:47:33 +0000226 }
danielk1977fa256a32005-05-25 04:11:56 +0000227
228 /* Get the database meta information.
229 **
230 ** Meta values are as follows:
231 ** meta[0] Schema cookie. Changes with each schema change.
232 ** meta[1] File format of schema layer.
233 ** meta[2] Size of the page cache.
drh27731d72009-06-22 12:05:10 +0000234 ** meta[3] Largest rootpage (auto/incr_vacuum mode)
drh8159a352006-05-23 23:22:29 +0000235 ** meta[4] Db text encoding. 1:UTF-8 2:UTF-16LE 3:UTF-16BE
drh27731d72009-06-22 12:05:10 +0000236 ** meta[5] User version
237 ** meta[6] Incremental vacuum mode
238 ** meta[7] unused
239 ** meta[8] unused
240 ** meta[9] unused
danielk1977fa256a32005-05-25 04:11:56 +0000241 **
drhf248e212006-01-25 22:50:38 +0000242 ** Note: The #defined SQLITE_UTF* symbols in sqliteInt.h correspond to
danielk1977fa256a32005-05-25 04:11:56 +0000243 ** the possible values of meta[4].
244 */
danielk1977602b4662009-07-02 07:47:33 +0000245 for(i=0; i<ArraySize(meta); i++){
246 sqlite3BtreeGetMeta(pDb->pBt, i+1, (u32 *)&meta[i]);
danielk19770d19f7a2009-06-03 11:25:07 +0000247 }
248 pDb->pSchema->schema_cookie = meta[BTREE_SCHEMA_VERSION-1];
danielk1977fa256a32005-05-25 04:11:56 +0000249
250 /* If opening a non-empty database, check the text encoding. For the
251 ** main database, set sqlite3.enc to the encoding of the main database.
252 ** For an attached db, it is an error if the encoding is not the same
253 ** as sqlite3.enc.
254 */
danielk19770d19f7a2009-06-03 11:25:07 +0000255 if( meta[BTREE_TEXT_ENCODING-1] ){ /* text encoding */
danielk1977fa256a32005-05-25 04:11:56 +0000256 if( iDb==0 ){
drhc5e47ac2009-06-04 00:11:56 +0000257 u8 encoding;
danielk197714db2662006-01-09 16:12:04 +0000258 /* If opening the main database, set ENC(db). */
drhc5e47ac2009-06-04 00:11:56 +0000259 encoding = (u8)meta[BTREE_TEXT_ENCODING-1] & 3;
260 if( encoding==0 ) encoding = SQLITE_UTF8;
261 ENC(db) = encoding;
drhc4a64fa2009-05-11 20:53:28 +0000262 db->pDfltColl = sqlite3FindCollSeq(db, SQLITE_UTF8, "BINARY", 0);
danielk1977fa256a32005-05-25 04:11:56 +0000263 }else{
danielk197714db2662006-01-09 16:12:04 +0000264 /* If opening an attached database, the encoding much match ENC(db) */
danielk19770d19f7a2009-06-03 11:25:07 +0000265 if( meta[BTREE_TEXT_ENCODING-1]!=ENC(db) ){
drhf089aa42008-07-08 19:34:06 +0000266 sqlite3SetString(pzErrMsg, db, "attached databases must use the same"
267 " text encoding as main database");
danielk1977cd3e8f72008-03-25 09:47:35 +0000268 rc = SQLITE_ERROR;
drh701bb3b2008-08-02 03:50:39 +0000269 goto initone_error_out;
danielk1977fa256a32005-05-25 04:11:56 +0000270 }
271 }
danielk1977b82e7ed2006-01-11 14:09:31 +0000272 }else{
273 DbSetProperty(db, iDb, DB_Empty);
danielk1977fa256a32005-05-25 04:11:56 +0000274 }
danielk197714db2662006-01-09 16:12:04 +0000275 pDb->pSchema->enc = ENC(db);
danielk1977fa256a32005-05-25 04:11:56 +0000276
danielk19778cf6c552008-06-23 16:53:46 +0000277 if( pDb->pSchema->cache_size==0 ){
danielk19770d19f7a2009-06-03 11:25:07 +0000278 size = meta[BTREE_DEFAULT_CACHE_SIZE-1];
danielk19778cf6c552008-06-23 16:53:46 +0000279 if( size==0 ){ size = SQLITE_DEFAULT_CACHE_SIZE; }
280 if( size<0 ) size = -size;
281 pDb->pSchema->cache_size = size;
282 sqlite3BtreeSetCacheSize(pDb->pBt, pDb->pSchema->cache_size);
283 }
danielk1977fa256a32005-05-25 04:11:56 +0000284
285 /*
286 ** file_format==1 Version 3.0.0.
drhfdd6e852005-12-16 01:06:16 +0000287 ** file_format==2 Version 3.1.3. // ALTER TABLE ADD COLUMN
288 ** file_format==3 Version 3.1.4. // ditto but with non-NULL defaults
drhd946db02005-12-29 19:23:06 +0000289 ** file_format==4 Version 3.3.0. // DESC indices. Boolean constants
danielk1977fa256a32005-05-25 04:11:56 +0000290 */
danielk19770d19f7a2009-06-03 11:25:07 +0000291 pDb->pSchema->file_format = (u8)meta[BTREE_FILE_FORMAT-1];
danielk1977da184232006-01-05 11:34:32 +0000292 if( pDb->pSchema->file_format==0 ){
293 pDb->pSchema->file_format = 1;
drhfdd6e852005-12-16 01:06:16 +0000294 }
danielk1977da184232006-01-05 11:34:32 +0000295 if( pDb->pSchema->file_format>SQLITE_MAX_FILE_FORMAT ){
drhf089aa42008-07-08 19:34:06 +0000296 sqlite3SetString(pzErrMsg, db, "unsupported file format");
danielk1977cd3e8f72008-03-25 09:47:35 +0000297 rc = SQLITE_ERROR;
drh701bb3b2008-08-02 03:50:39 +0000298 goto initone_error_out;
danielk1977fa256a32005-05-25 04:11:56 +0000299 }
300
drh4aa2bfe2007-11-28 13:43:16 +0000301 /* Ticket #2804: When we open a database in the newer file format,
302 ** clear the legacy_file_format pragma flag so that a VACUUM will
303 ** not downgrade the database and thus invalidate any descending
304 ** indices that the user might have created.
305 */
danielk19770d19f7a2009-06-03 11:25:07 +0000306 if( iDb==0 && meta[BTREE_FILE_FORMAT-1]>=4 ){
drh4aa2bfe2007-11-28 13:43:16 +0000307 db->flags &= ~SQLITE_LegacyFileFmt;
308 }
danielk1977fa256a32005-05-25 04:11:56 +0000309
310 /* Read the schema information out of the schema tables
311 */
312 assert( db->init.busy );
drh9da742f2009-06-16 17:49:36 +0000313 {
danielk1977fa256a32005-05-25 04:11:56 +0000314 char *zSql;
danielk19771e536952007-08-16 10:09:01 +0000315 zSql = sqlite3MPrintf(db,
drh6a9c64b2010-01-12 23:54:14 +0000316 "SELECT name, rootpage, sql FROM '%q'.%s ORDER BY rowid",
drhece3c722006-09-23 20:36:01 +0000317 db->aDb[iDb].zName, zMasterName);
drha6d0ffc2007-10-12 20:42:28 +0000318#ifndef SQLITE_OMIT_AUTHORIZATION
319 {
320 int (*xAuth)(void*,int,const char*,const char*,const char*,const char*);
321 xAuth = db->xAuth;
322 db->xAuth = 0;
323#endif
324 rc = sqlite3_exec(db, zSql, sqlite3InitCallback, &initData, 0);
325#ifndef SQLITE_OMIT_AUTHORIZATION
326 db->xAuth = xAuth;
327 }
328#endif
drhc456e572008-08-11 18:44:58 +0000329 if( rc==SQLITE_OK ) rc = initData.rc;
drh633e6d52008-07-28 19:34:53 +0000330 sqlite3DbFree(db, zSql);
drh497e4462005-07-23 03:18:40 +0000331#ifndef SQLITE_OMIT_ANALYZE
332 if( rc==SQLITE_OK ){
333 sqlite3AnalysisLoad(db, iDb);
334 }
335#endif
danielk1977fa256a32005-05-25 04:11:56 +0000336 }
drh17435752007-08-16 04:30:38 +0000337 if( db->mallocFailed ){
danielk1977fa256a32005-05-25 04:11:56 +0000338 rc = SQLITE_NOMEM;
339 sqlite3ResetInternalSchema(db, 0);
340 }
danielk197734c68fb2007-03-14 15:37:04 +0000341 if( rc==SQLITE_OK || (db->flags&SQLITE_RecoveryMode)){
342 /* Black magic: If the SQLITE_RecoveryMode flag is set, then consider
shanebe217792009-03-05 04:20:31 +0000343 ** the schema loaded, even if errors occurred. In this situation the
danielk197734c68fb2007-03-14 15:37:04 +0000344 ** current sqlite3_prepare() operation will fail, but the following one
345 ** will attempt to compile the supplied statement against whatever subset
shanebe217792009-03-05 04:20:31 +0000346 ** of the schema was loaded before the error occurred. The primary
danielk197734c68fb2007-03-14 15:37:04 +0000347 ** purpose of this is to allow access to the sqlite_master table
drh85b623f2007-12-13 21:54:09 +0000348 ** even when its contents have been corrupted.
danielk197734c68fb2007-03-14 15:37:04 +0000349 */
danielk1977fa256a32005-05-25 04:11:56 +0000350 DbSetProperty(db, iDb, DB_SchemaLoaded);
danielk197734c68fb2007-03-14 15:37:04 +0000351 rc = SQLITE_OK;
danielk1977fa256a32005-05-25 04:11:56 +0000352 }
danielk1977cd3e8f72008-03-25 09:47:35 +0000353
354 /* Jump here for an error that occurs after successfully allocating
355 ** curMain and calling sqlite3BtreeEnter(). For an error that occurs
356 ** before that point, jump to error_out.
357 */
drh701bb3b2008-08-02 03:50:39 +0000358initone_error_out:
danielk1977602b4662009-07-02 07:47:33 +0000359 if( openedTransaction ){
360 sqlite3BtreeCommit(pDb->pBt);
361 }
drhb1ab8ea2007-08-29 00:33:07 +0000362 sqlite3BtreeLeave(pDb->pBt);
danielk1977a1644fd2007-08-29 12:31:25 +0000363
364error_out:
danielk1977ae72d982007-10-03 08:46:44 +0000365 if( rc==SQLITE_NOMEM || rc==SQLITE_IOERR_NOMEM ){
danielk1977a1644fd2007-08-29 12:31:25 +0000366 db->mallocFailed = 1;
367 }
danielk1977fa256a32005-05-25 04:11:56 +0000368 return rc;
369}
370
371/*
372** Initialize all database files - the main database file, the file
373** used to store temporary tables, and any additional database files
374** created using ATTACH statements. Return a success code. If an
375** error occurs, write an error message into *pzErrMsg.
376**
danielk1977e7259292006-01-13 06:33:23 +0000377** After a database is initialized, the DB_SchemaLoaded bit is set
378** bit is set in the flags field of the Db structure. If the database
379** file was of zero-length, then the DB_Empty flag is also set.
danielk1977fa256a32005-05-25 04:11:56 +0000380*/
381int sqlite3Init(sqlite3 *db, char **pzErrMsg){
382 int i, rc;
danielk19775814c1a2007-08-13 14:41:19 +0000383 int commit_internal = !(db->flags&SQLITE_InternChanges);
danielk1977fa256a32005-05-25 04:11:56 +0000384
drhb1ab8ea2007-08-29 00:33:07 +0000385 assert( sqlite3_mutex_held(db->mutex) );
danielk1977fa256a32005-05-25 04:11:56 +0000386 rc = SQLITE_OK;
387 db->init.busy = 1;
388 for(i=0; rc==SQLITE_OK && i<db->nDb; i++){
389 if( DbHasProperty(db, i, DB_SchemaLoaded) || i==1 ) continue;
390 rc = sqlite3InitOne(db, i, pzErrMsg);
391 if( rc ){
392 sqlite3ResetInternalSchema(db, i);
393 }
394 }
395
396 /* Once all the other databases have been initialised, load the schema
397 ** for the TEMP database. This is loaded last, as the TEMP database
398 ** schema may contain references to objects in other databases.
399 */
400#ifndef SQLITE_OMIT_TEMPDB
drh9da742f2009-06-16 17:49:36 +0000401 if( rc==SQLITE_OK && ALWAYS(db->nDb>1)
402 && !DbHasProperty(db, 1, DB_SchemaLoaded) ){
danielk1977fa256a32005-05-25 04:11:56 +0000403 rc = sqlite3InitOne(db, 1, pzErrMsg);
404 if( rc ){
405 sqlite3ResetInternalSchema(db, 1);
406 }
407 }
408#endif
409
410 db->init.busy = 0;
danielk19775814c1a2007-08-13 14:41:19 +0000411 if( rc==SQLITE_OK && commit_internal ){
danielk1977fa256a32005-05-25 04:11:56 +0000412 sqlite3CommitInternalChanges(db);
413 }
414
danielk1977b82e7ed2006-01-11 14:09:31 +0000415 return rc;
danielk1977fa256a32005-05-25 04:11:56 +0000416}
417
418/*
419** This routine is a no-op if the database schema is already initialised.
420** Otherwise, the schema is loaded. An error code is returned.
421*/
422int sqlite3ReadSchema(Parse *pParse){
423 int rc = SQLITE_OK;
424 sqlite3 *db = pParse->db;
drhb1ab8ea2007-08-29 00:33:07 +0000425 assert( sqlite3_mutex_held(db->mutex) );
danielk1977fa256a32005-05-25 04:11:56 +0000426 if( !db->init.busy ){
danielk1977b82e7ed2006-01-11 14:09:31 +0000427 rc = sqlite3Init(db, &pParse->zErrMsg);
danielk1977fa256a32005-05-25 04:11:56 +0000428 }
danielk1977fa256a32005-05-25 04:11:56 +0000429 if( rc!=SQLITE_OK ){
430 pParse->rc = rc;
431 pParse->nErr++;
432 }
433 return rc;
434}
435
436
437/*
438** Check schema cookies in all databases. If any cookie is out
drh1adecdf2009-07-03 19:19:50 +0000439** of date set pParse->rc to SQLITE_SCHEMA. If all schema cookies
440** make no changes to pParse->rc.
danielk1977fa256a32005-05-25 04:11:56 +0000441*/
danielk1977602b4662009-07-02 07:47:33 +0000442static void schemaIsValid(Parse *pParse){
443 sqlite3 *db = pParse->db;
danielk1977fa256a32005-05-25 04:11:56 +0000444 int iDb;
445 int rc;
danielk1977fa256a32005-05-25 04:11:56 +0000446 int cookie;
danielk1977fa256a32005-05-25 04:11:56 +0000447
danielk1977602b4662009-07-02 07:47:33 +0000448 assert( pParse->checkSchema );
449 assert( sqlite3_mutex_held(db->mutex) );
450 for(iDb=0; iDb<db->nDb; iDb++){
451 int openedTransaction = 0; /* True if a transaction is opened */
452 Btree *pBt = db->aDb[iDb].pBt; /* Btree database to read cookie from */
453 if( pBt==0 ) continue;
454
455 /* If there is not already a read-only (or read-write) transaction opened
456 ** on the b-tree database, open one now. If a transaction is opened, it
457 ** will be closed immediately after reading the meta-value. */
458 if( !sqlite3BtreeIsInReadTrans(pBt) ){
459 rc = sqlite3BtreeBeginTrans(pBt, 0);
drh1adecdf2009-07-03 19:19:50 +0000460 if( rc==SQLITE_NOMEM || rc==SQLITE_IOERR_NOMEM ){
danielk1977602b4662009-07-02 07:47:33 +0000461 db->mallocFailed = 1;
462 }
463 if( rc!=SQLITE_OK ) return;
464 openedTransaction = 1;
465 }
466
467 /* Read the schema cookie from the database. If it does not match the
shanehd77f56e2009-12-17 21:05:42 +0000468 ** value stored as part of the in-memory schema representation,
danielk1977602b4662009-07-02 07:47:33 +0000469 ** set Parse.rc to SQLITE_SCHEMA. */
470 sqlite3BtreeGetMeta(pBt, BTREE_SCHEMA_VERSION, (u32 *)&cookie);
471 if( cookie!=db->aDb[iDb].pSchema->schema_cookie ){
472 pParse->rc = SQLITE_SCHEMA;
473 }
474
475 /* Close the transaction, if one was opened. */
476 if( openedTransaction ){
477 sqlite3BtreeCommit(pBt);
478 }
479 }
danielk1977fa256a32005-05-25 04:11:56 +0000480}
481
482/*
drhf248e212006-01-25 22:50:38 +0000483** Convert a schema pointer into the iDb index that indicates
484** which database file in db->aDb[] the schema refers to.
485**
486** If the same database is attached more than once, the first
487** attached database is returned.
488*/
danielk1977e501b892006-01-09 06:29:47 +0000489int sqlite3SchemaToIndex(sqlite3 *db, Schema *pSchema){
drh198bf392006-01-06 21:52:49 +0000490 int i = -1000000;
491
492 /* If pSchema is NULL, then return -1000000. This happens when code in
493 ** expr.c is trying to resolve a reference to a transient table (i.e. one
494 ** created by a sub-select). In this case the return value of this
495 ** function should never be used.
496 **
497 ** We return -1000000 instead of the more usual -1 simply because using
drh1c767f02009-01-09 02:49:31 +0000498 ** -1000000 as the incorrect index into db->aDb[] is much
drh198bf392006-01-06 21:52:49 +0000499 ** more likely to cause a segfault than -1 (of course there are assert()
500 ** statements too, but it never hurts to play the odds).
501 */
drhb1ab8ea2007-08-29 00:33:07 +0000502 assert( sqlite3_mutex_held(db->mutex) );
drh198bf392006-01-06 21:52:49 +0000503 if( pSchema ){
drh1c767f02009-01-09 02:49:31 +0000504 for(i=0; ALWAYS(i<db->nDb); i++){
drh198bf392006-01-06 21:52:49 +0000505 if( db->aDb[i].pSchema==pSchema ){
506 break;
507 }
508 }
drh1c767f02009-01-09 02:49:31 +0000509 assert( i>=0 && i<db->nDb );
drh198bf392006-01-06 21:52:49 +0000510 }
511 return i;
512}
513
514/*
danielk1977fa256a32005-05-25 04:11:56 +0000515** Compile the UTF-8 encoded SQL statement zSql into a statement handle.
516*/
mlcreech3a00f902008-03-04 17:45:01 +0000517static int sqlite3Prepare(
danielk1977fa256a32005-05-25 04:11:56 +0000518 sqlite3 *db, /* Database handle. */
519 const char *zSql, /* UTF-8 encoded SQL statement. */
520 int nBytes, /* Length of zSql in bytes. */
drhb900aaf2006-11-09 00:24:53 +0000521 int saveSqlFlag, /* True to copy SQL text into the sqlite3_stmt */
dan937d0de2009-10-15 18:35:38 +0000522 Vdbe *pReprepare, /* VM being reprepared */
danielk1977fa256a32005-05-25 04:11:56 +0000523 sqlite3_stmt **ppStmt, /* OUT: A pointer to the prepared statement */
drhb900aaf2006-11-09 00:24:53 +0000524 const char **pzTail /* OUT: End of parsed string */
danielk1977fa256a32005-05-25 04:11:56 +0000525){
drhe7b347072009-06-01 18:18:20 +0000526 Parse *pParse; /* Parsing context */
527 char *zErrMsg = 0; /* Error message */
528 int rc = SQLITE_OK; /* Result code */
529 int i; /* Loop counter */
danielk1977fa256a32005-05-25 04:11:56 +0000530
drhe7b347072009-06-01 18:18:20 +0000531 /* Allocate the parsing context */
532 pParse = sqlite3StackAllocZero(db, sizeof(*pParse));
533 if( pParse==0 ){
534 rc = SQLITE_NOMEM;
535 goto end_prepare;
536 }
dan937d0de2009-10-15 18:35:38 +0000537 pParse->pReprepare = pReprepare;
drh860e0772009-04-02 18:32:26 +0000538 assert( ppStmt && *ppStmt==0 );
drh86f8c192007-08-22 00:39:19 +0000539 assert( !db->mallocFailed );
drhb21c8cd2007-08-21 19:33:56 +0000540 assert( sqlite3_mutex_held(db->mutex) );
danielk1977fa256a32005-05-25 04:11:56 +0000541
drhc74d0b1d2009-02-24 16:18:05 +0000542 /* Check to verify that it is possible to get a read lock on all
543 ** database schemas. The inability to get a read lock indicates that
544 ** some other database connection is holding a write-lock, which in
545 ** turn means that the other connection has made uncommitted changes
546 ** to the schema.
547 **
548 ** Were we to proceed and prepare the statement against the uncommitted
549 ** schema changes and if those schema changes are subsequently rolled
550 ** back and different changes are made in their place, then when this
551 ** prepared statement goes to run the schema cookie would fail to detect
552 ** the schema change. Disaster would follow.
553 **
554 ** This thread is currently holding mutexes on all Btrees (because
555 ** of the sqlite3BtreeEnterAll() in sqlite3LockAndPrepare()) so it
556 ** is not possible for another thread to start a new schema change
557 ** while this routine is running. Hence, we do not need to hold
558 ** locks on the schema, we just need to make sure nobody else is
559 ** holding them.
560 **
561 ** Note that setting READ_UNCOMMITTED overrides most lock detection,
562 ** but it does *not* override schema lock detection, so this all still
563 ** works even if READ_UNCOMMITTED is set.
danielk1977c87d34d2006-01-06 13:00:28 +0000564 */
565 for(i=0; i<db->nDb; i++) {
566 Btree *pBt = db->aDb[i].pBt;
drhb1ab8ea2007-08-29 00:33:07 +0000567 if( pBt ){
drhc74d0b1d2009-02-24 16:18:05 +0000568 assert( sqlite3BtreeHoldsMutex(pBt) );
drhb1ab8ea2007-08-29 00:33:07 +0000569 rc = sqlite3BtreeSchemaLocked(pBt);
570 if( rc ){
571 const char *zDb = db->aDb[i].zName;
danielk1977404ca072009-03-16 13:19:36 +0000572 sqlite3Error(db, rc, "database schema is locked: %s", zDb);
drhc74d0b1d2009-02-24 16:18:05 +0000573 testcase( db->flags & SQLITE_ReadUncommitted );
drhe7b347072009-06-01 18:18:20 +0000574 goto end_prepare;
drhb1ab8ea2007-08-29 00:33:07 +0000575 }
danielk1977c87d34d2006-01-06 13:00:28 +0000576 }
577 }
drhe7b347072009-06-01 18:18:20 +0000578
danielk1977595a5232009-07-24 17:58:53 +0000579 sqlite3VtabUnlockList(db);
drhe7b347072009-06-01 18:18:20 +0000580
581 pParse->db = db;
drh8b307fb2010-04-06 15:57:05 +0000582 pParse->nQueryLoop = (double)1;
drhd2d88bb2008-05-23 14:32:18 +0000583 if( nBytes>=0 && (nBytes==0 || zSql[nBytes-1]!=0) ){
drhe5c941b2007-05-08 13:58:26 +0000584 char *zSqlCopy;
drhbb4957f2008-03-20 14:03:29 +0000585 int mxLen = db->aLimit[SQLITE_LIMIT_SQL_LENGTH];
drh58fbb312009-06-17 00:35:30 +0000586 testcase( nBytes==mxLen );
587 testcase( nBytes==mxLen+1 );
drhbb4957f2008-03-20 14:03:29 +0000588 if( nBytes>mxLen ){
drhbe69bf62007-12-18 17:50:33 +0000589 sqlite3Error(db, SQLITE_TOOBIG, "statement too long");
drhe7b347072009-06-01 18:18:20 +0000590 rc = sqlite3ApiExit(db, SQLITE_TOOBIG);
591 goto end_prepare;
drhe5c941b2007-05-08 13:58:26 +0000592 }
drh17435752007-08-16 04:30:38 +0000593 zSqlCopy = sqlite3DbStrNDup(db, zSql, nBytes);
drh276fdbf2007-04-30 21:39:16 +0000594 if( zSqlCopy ){
drhe7b347072009-06-01 18:18:20 +0000595 sqlite3RunParser(pParse, zSqlCopy, &zErrMsg);
drh633e6d52008-07-28 19:34:53 +0000596 sqlite3DbFree(db, zSqlCopy);
drhe7b347072009-06-01 18:18:20 +0000597 pParse->zTail = &zSql[pParse->zTail-zSqlCopy];
danielk19773a2c8c82008-04-03 14:36:25 +0000598 }else{
drhe7b347072009-06-01 18:18:20 +0000599 pParse->zTail = &zSql[nBytes];
drh276fdbf2007-04-30 21:39:16 +0000600 }
drh9051a422006-01-30 22:35:43 +0000601 }else{
drhe7b347072009-06-01 18:18:20 +0000602 sqlite3RunParser(pParse, zSql, &zErrMsg);
drh9051a422006-01-30 22:35:43 +0000603 }
drh8b307fb2010-04-06 15:57:05 +0000604 assert( 1==(int)pParse->nQueryLoop );
danielk1977fa256a32005-05-25 04:11:56 +0000605
drh17435752007-08-16 04:30:38 +0000606 if( db->mallocFailed ){
drhe7b347072009-06-01 18:18:20 +0000607 pParse->rc = SQLITE_NOMEM;
danielk1977fa256a32005-05-25 04:11:56 +0000608 }
drhe7b347072009-06-01 18:18:20 +0000609 if( pParse->rc==SQLITE_DONE ) pParse->rc = SQLITE_OK;
danielk1977602b4662009-07-02 07:47:33 +0000610 if( pParse->checkSchema ){
611 schemaIsValid(pParse);
danielk1977fa256a32005-05-25 04:11:56 +0000612 }
drhe7b347072009-06-01 18:18:20 +0000613 if( pParse->rc==SQLITE_SCHEMA ){
danielk1977fa256a32005-05-25 04:11:56 +0000614 sqlite3ResetInternalSchema(db, 0);
615 }
drh17435752007-08-16 04:30:38 +0000616 if( db->mallocFailed ){
drhe7b347072009-06-01 18:18:20 +0000617 pParse->rc = SQLITE_NOMEM;
drh344a6272006-06-26 12:50:09 +0000618 }
drhb900aaf2006-11-09 00:24:53 +0000619 if( pzTail ){
drhe7b347072009-06-01 18:18:20 +0000620 *pzTail = pParse->zTail;
drhb900aaf2006-11-09 00:24:53 +0000621 }
drhe7b347072009-06-01 18:18:20 +0000622 rc = pParse->rc;
danielk1977fa256a32005-05-25 04:11:56 +0000623
624#ifndef SQLITE_OMIT_EXPLAIN
drhe7b347072009-06-01 18:18:20 +0000625 if( rc==SQLITE_OK && pParse->pVdbe && pParse->explain ){
626 static const char * const azColName[] = {
627 "addr", "opcode", "p1", "p2", "p3", "p4", "p5", "comment",
628 "order", "from", "detail"
629 };
630 int iFirst, mx;
631 if( pParse->explain==2 ){
632 sqlite3VdbeSetNumCols(pParse->pVdbe, 3);
633 iFirst = 8;
634 mx = 11;
drhecc92422005-09-10 16:46:12 +0000635 }else{
drhe7b347072009-06-01 18:18:20 +0000636 sqlite3VdbeSetNumCols(pParse->pVdbe, 8);
637 iFirst = 0;
638 mx = 8;
639 }
640 for(i=iFirst; i<mx; i++){
641 sqlite3VdbeSetColName(pParse->pVdbe, i-iFirst, COLNAME_NAME,
642 azColName[i], SQLITE_STATIC);
drhecc92422005-09-10 16:46:12 +0000643 }
drhb900aaf2006-11-09 00:24:53 +0000644 }
danielk1977fa256a32005-05-25 04:11:56 +0000645#endif
646
danielk19776ab3a2e2009-02-19 14:39:25 +0000647 assert( db->init.busy==0 || saveSqlFlag==0 );
648 if( db->init.busy==0 ){
drhe7b347072009-06-01 18:18:20 +0000649 Vdbe *pVdbe = pParse->pVdbe;
650 sqlite3VdbeSetSql(pVdbe, zSql, (int)(pParse->zTail-zSql), saveSqlFlag);
danielk19777e29e952007-04-19 11:09:01 +0000651 }
drhe7b347072009-06-01 18:18:20 +0000652 if( pParse->pVdbe && (rc!=SQLITE_OK || db->mallocFailed) ){
653 sqlite3VdbeFinalize(pParse->pVdbe);
danielk19777e29e952007-04-19 11:09:01 +0000654 assert(!(*ppStmt));
655 }else{
drhe7b347072009-06-01 18:18:20 +0000656 *ppStmt = (sqlite3_stmt*)pParse->pVdbe;
danielk1977fa256a32005-05-25 04:11:56 +0000657 }
658
659 if( zErrMsg ){
660 sqlite3Error(db, rc, "%s", zErrMsg);
drh633e6d52008-07-28 19:34:53 +0000661 sqlite3DbFree(db, zErrMsg);
danielk1977fa256a32005-05-25 04:11:56 +0000662 }else{
663 sqlite3Error(db, rc, 0);
664 }
danielk1977261919c2005-12-06 12:52:59 +0000665
dan65a7cd12009-09-01 12:16:01 +0000666 /* Delete any TriggerPrg structures allocated while parsing this statement. */
dan2832ad42009-08-31 15:27:27 +0000667 while( pParse->pTriggerPrg ){
668 TriggerPrg *pT = pParse->pTriggerPrg;
669 pParse->pTriggerPrg = pT->pNext;
dan165921a2009-08-28 18:53:45 +0000670 sqlite3VdbeProgramDelete(db, pT->pProgram, 0);
671 sqlite3DbFree(db, pT);
672 }
673
drhe7b347072009-06-01 18:18:20 +0000674end_prepare:
675
676 sqlite3StackFree(db, pParse);
danielk197754f01982006-01-18 15:25:17 +0000677 rc = sqlite3ApiExit(db, rc);
drh4ac285a2006-09-15 07:28:50 +0000678 assert( (rc&db->errMask)==rc );
danielk1977fa256a32005-05-25 04:11:56 +0000679 return rc;
680}
drhb21c8cd2007-08-21 19:33:56 +0000681static int sqlite3LockAndPrepare(
682 sqlite3 *db, /* Database handle. */
683 const char *zSql, /* UTF-8 encoded SQL statement. */
684 int nBytes, /* Length of zSql in bytes. */
685 int saveSqlFlag, /* True to copy SQL text into the sqlite3_stmt */
dan937d0de2009-10-15 18:35:38 +0000686 Vdbe *pOld, /* VM being reprepared */
drhb21c8cd2007-08-21 19:33:56 +0000687 sqlite3_stmt **ppStmt, /* OUT: A pointer to the prepared statement */
688 const char **pzTail /* OUT: End of parsed string */
689){
690 int rc;
drh860e0772009-04-02 18:32:26 +0000691 assert( ppStmt!=0 );
692 *ppStmt = 0;
drh7e8b8482008-01-23 03:03:05 +0000693 if( !sqlite3SafetyCheckOk(db) ){
drh413c3d32010-02-23 20:11:56 +0000694 return SQLITE_MISUSE_BKPT;
drh27641702007-08-22 02:56:42 +0000695 }
drhb21c8cd2007-08-21 19:33:56 +0000696 sqlite3_mutex_enter(db->mutex);
drhb1ab8ea2007-08-29 00:33:07 +0000697 sqlite3BtreeEnterAll(db);
dan937d0de2009-10-15 18:35:38 +0000698 rc = sqlite3Prepare(db, zSql, nBytes, saveSqlFlag, pOld, ppStmt, pzTail);
drh9da742f2009-06-16 17:49:36 +0000699 if( rc==SQLITE_SCHEMA ){
700 sqlite3_finalize(*ppStmt);
dan937d0de2009-10-15 18:35:38 +0000701 rc = sqlite3Prepare(db, zSql, nBytes, saveSqlFlag, pOld, ppStmt, pzTail);
drh9da742f2009-06-16 17:49:36 +0000702 }
drhb1ab8ea2007-08-29 00:33:07 +0000703 sqlite3BtreeLeaveAll(db);
drhb21c8cd2007-08-21 19:33:56 +0000704 sqlite3_mutex_leave(db->mutex);
705 return rc;
706}
danielk1977fa256a32005-05-25 04:11:56 +0000707
drhb900aaf2006-11-09 00:24:53 +0000708/*
709** Rerun the compilation of a statement after a schema change.
danielk197765a2ea12009-03-19 07:58:31 +0000710**
711** If the statement is successfully recompiled, return SQLITE_OK. Otherwise,
712** if the statement cannot be recompiled because another connection has
713** locked the sqlite3_master table, return SQLITE_LOCKED. If any other error
714** occurs, return SQLITE_SCHEMA.
drhb900aaf2006-11-09 00:24:53 +0000715*/
716int sqlite3Reprepare(Vdbe *p){
717 int rc;
drh4f0c5872007-03-26 22:05:01 +0000718 sqlite3_stmt *pNew;
drhb900aaf2006-11-09 00:24:53 +0000719 const char *zSql;
720 sqlite3 *db;
drhb21c8cd2007-08-21 19:33:56 +0000721
drhb1ab8ea2007-08-29 00:33:07 +0000722 assert( sqlite3_mutex_held(sqlite3VdbeDb(p)->mutex) );
danielk1977d0e2a852007-11-14 06:48:48 +0000723 zSql = sqlite3_sql((sqlite3_stmt *)p);
drhc4dd3fd2008-01-22 01:48:05 +0000724 assert( zSql!=0 ); /* Reprepare only called for prepare_v2() statements */
drhb900aaf2006-11-09 00:24:53 +0000725 db = sqlite3VdbeDb(p);
drhb21c8cd2007-08-21 19:33:56 +0000726 assert( sqlite3_mutex_held(db->mutex) );
dan937d0de2009-10-15 18:35:38 +0000727 rc = sqlite3LockAndPrepare(db, zSql, -1, 0, p, &pNew, 0);
drhb900aaf2006-11-09 00:24:53 +0000728 if( rc ){
danielk19778e556522007-11-13 10:30:24 +0000729 if( rc==SQLITE_NOMEM ){
730 db->mallocFailed = 1;
731 }
drhb900aaf2006-11-09 00:24:53 +0000732 assert( pNew==0 );
drha6129fa2010-02-24 17:15:19 +0000733 return rc;
drhb900aaf2006-11-09 00:24:53 +0000734 }else{
735 assert( pNew!=0 );
736 }
drh4f0c5872007-03-26 22:05:01 +0000737 sqlite3VdbeSwap((Vdbe*)pNew, p);
shane145834a2008-09-04 12:03:42 +0000738 sqlite3TransferBindings(pNew, (sqlite3_stmt*)p);
drh4f0c5872007-03-26 22:05:01 +0000739 sqlite3VdbeResetStepResult((Vdbe*)pNew);
740 sqlite3VdbeFinalize((Vdbe*)pNew);
danielk197765a2ea12009-03-19 07:58:31 +0000741 return SQLITE_OK;
drhb900aaf2006-11-09 00:24:53 +0000742}
743
744
745/*
746** Two versions of the official API. Legacy and new use. In the legacy
747** version, the original SQL text is not saved in the prepared statement
748** and so if a schema change occurs, SQLITE_SCHEMA is returned by
749** sqlite3_step(). In the new version, the original SQL text is retained
750** and the statement is automatically recompiled if an schema change
751** occurs.
752*/
753int sqlite3_prepare(
754 sqlite3 *db, /* Database handle. */
755 const char *zSql, /* UTF-8 encoded SQL statement. */
756 int nBytes, /* Length of zSql in bytes. */
757 sqlite3_stmt **ppStmt, /* OUT: A pointer to the prepared statement */
758 const char **pzTail /* OUT: End of parsed string */
759){
drh17eaae72008-03-03 18:47:28 +0000760 int rc;
dan937d0de2009-10-15 18:35:38 +0000761 rc = sqlite3LockAndPrepare(db,zSql,nBytes,0,0,ppStmt,pzTail);
drh58edb652008-03-08 12:23:30 +0000762 assert( rc==SQLITE_OK || ppStmt==0 || *ppStmt==0 ); /* VERIFY: F13021 */
drh17eaae72008-03-03 18:47:28 +0000763 return rc;
drhb900aaf2006-11-09 00:24:53 +0000764}
765int sqlite3_prepare_v2(
766 sqlite3 *db, /* Database handle. */
767 const char *zSql, /* UTF-8 encoded SQL statement. */
768 int nBytes, /* Length of zSql in bytes. */
769 sqlite3_stmt **ppStmt, /* OUT: A pointer to the prepared statement */
770 const char **pzTail /* OUT: End of parsed string */
771){
drh17eaae72008-03-03 18:47:28 +0000772 int rc;
dan937d0de2009-10-15 18:35:38 +0000773 rc = sqlite3LockAndPrepare(db,zSql,nBytes,1,0,ppStmt,pzTail);
drh58edb652008-03-08 12:23:30 +0000774 assert( rc==SQLITE_OK || ppStmt==0 || *ppStmt==0 ); /* VERIFY: F13021 */
drh17eaae72008-03-03 18:47:28 +0000775 return rc;
drhb900aaf2006-11-09 00:24:53 +0000776}
777
778
danielk1977fa256a32005-05-25 04:11:56 +0000779#ifndef SQLITE_OMIT_UTF16
780/*
781** Compile the UTF-16 encoded SQL statement zSql into a statement handle.
782*/
drhb900aaf2006-11-09 00:24:53 +0000783static int sqlite3Prepare16(
danielk1977fa256a32005-05-25 04:11:56 +0000784 sqlite3 *db, /* Database handle. */
785 const void *zSql, /* UTF-8 encoded SQL statement. */
786 int nBytes, /* Length of zSql in bytes. */
drhb900aaf2006-11-09 00:24:53 +0000787 int saveSqlFlag, /* True to save SQL text into the sqlite3_stmt */
danielk1977fa256a32005-05-25 04:11:56 +0000788 sqlite3_stmt **ppStmt, /* OUT: A pointer to the prepared statement */
789 const void **pzTail /* OUT: End of parsed string */
790){
791 /* This function currently works by first transforming the UTF-16
792 ** encoded string to UTF-8, then invoking sqlite3_prepare(). The
793 ** tricky bit is figuring out the pointer to return in *pzTail.
794 */
danielk197754f01982006-01-18 15:25:17 +0000795 char *zSql8;
danielk1977c87d34d2006-01-06 13:00:28 +0000796 const char *zTail8 = 0;
danielk197754f01982006-01-18 15:25:17 +0000797 int rc = SQLITE_OK;
danielk1977fa256a32005-05-25 04:11:56 +0000798
drh860e0772009-04-02 18:32:26 +0000799 assert( ppStmt );
drh769e97e2009-04-01 16:33:37 +0000800 *ppStmt = 0;
drh7e8b8482008-01-23 03:03:05 +0000801 if( !sqlite3SafetyCheckOk(db) ){
drh413c3d32010-02-23 20:11:56 +0000802 return SQLITE_MISUSE_BKPT;
danielk1977fa256a32005-05-25 04:11:56 +0000803 }
drhb21c8cd2007-08-21 19:33:56 +0000804 sqlite3_mutex_enter(db->mutex);
danb7dca7d2010-03-05 16:32:12 +0000805 zSql8 = sqlite3Utf16to8(db, zSql, nBytes, SQLITE_UTF16NATIVE);
danielk197754f01982006-01-18 15:25:17 +0000806 if( zSql8 ){
dan937d0de2009-10-15 18:35:38 +0000807 rc = sqlite3LockAndPrepare(db, zSql8, -1, saveSqlFlag, 0, ppStmt, &zTail8);
danielk1977fa256a32005-05-25 04:11:56 +0000808 }
danielk1977fa256a32005-05-25 04:11:56 +0000809
810 if( zTail8 && pzTail ){
811 /* If sqlite3_prepare returns a tail pointer, we calculate the
812 ** equivalent pointer into the UTF-16 string by counting the unicode
813 ** characters between zSql8 and zTail8, and then returning a pointer
814 ** the same number of characters into the UTF-16 string.
815 */
drhea678832008-12-10 19:26:22 +0000816 int chars_parsed = sqlite3Utf8CharLen(zSql8, (int)(zTail8-zSql8));
drhee858132007-05-08 20:37:38 +0000817 *pzTail = (u8 *)zSql + sqlite3Utf16ByteLen(zSql, chars_parsed);
danielk1977fa256a32005-05-25 04:11:56 +0000818 }
drh633e6d52008-07-28 19:34:53 +0000819 sqlite3DbFree(db, zSql8);
drhb21c8cd2007-08-21 19:33:56 +0000820 rc = sqlite3ApiExit(db, rc);
821 sqlite3_mutex_leave(db->mutex);
822 return rc;
danielk1977fa256a32005-05-25 04:11:56 +0000823}
drhb900aaf2006-11-09 00:24:53 +0000824
825/*
826** Two versions of the official API. Legacy and new use. In the legacy
827** version, the original SQL text is not saved in the prepared statement
828** and so if a schema change occurs, SQLITE_SCHEMA is returned by
829** sqlite3_step(). In the new version, the original SQL text is retained
830** and the statement is automatically recompiled if an schema change
831** occurs.
832*/
833int sqlite3_prepare16(
834 sqlite3 *db, /* Database handle. */
835 const void *zSql, /* UTF-8 encoded SQL statement. */
836 int nBytes, /* Length of zSql in bytes. */
837 sqlite3_stmt **ppStmt, /* OUT: A pointer to the prepared statement */
838 const void **pzTail /* OUT: End of parsed string */
839){
drh17eaae72008-03-03 18:47:28 +0000840 int rc;
841 rc = sqlite3Prepare16(db,zSql,nBytes,0,ppStmt,pzTail);
drh58edb652008-03-08 12:23:30 +0000842 assert( rc==SQLITE_OK || ppStmt==0 || *ppStmt==0 ); /* VERIFY: F13021 */
drh17eaae72008-03-03 18:47:28 +0000843 return rc;
drhb900aaf2006-11-09 00:24:53 +0000844}
845int sqlite3_prepare16_v2(
846 sqlite3 *db, /* Database handle. */
847 const void *zSql, /* UTF-8 encoded SQL statement. */
848 int nBytes, /* Length of zSql in bytes. */
849 sqlite3_stmt **ppStmt, /* OUT: A pointer to the prepared statement */
850 const void **pzTail /* OUT: End of parsed string */
851){
drh17eaae72008-03-03 18:47:28 +0000852 int rc;
853 rc = sqlite3Prepare16(db,zSql,nBytes,1,ppStmt,pzTail);
drh58edb652008-03-08 12:23:30 +0000854 assert( rc==SQLITE_OK || ppStmt==0 || *ppStmt==0 ); /* VERIFY: F13021 */
drh17eaae72008-03-03 18:47:28 +0000855 return rc;
drhb900aaf2006-11-09 00:24:53 +0000856}
857
danielk1977fa256a32005-05-25 04:11:56 +0000858#endif /* SQLITE_OMIT_UTF16 */