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drh75897232000-05-29 14:26:00 +00001/*
drhb19a2bc2001-09-16 00:13:26 +00002** 2001 September 15
drh75897232000-05-29 14:26:00 +00003**
drhb19a2bc2001-09-16 00:13:26 +00004** The author disclaims copyright to this source code. In place of
5** a legal notice, here is a blessing:
drh75897232000-05-29 14:26:00 +00006**
drhb19a2bc2001-09-16 00:13:26 +00007** 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.
drh75897232000-05-29 14:26:00 +000010**
11*************************************************************************
12** Main file for the SQLite library. The routines in this file
13** implement the programmer interface to the library. Routines in
14** other files are for internal use by SQLite and should not be
15** accessed by users of the library.
16**
drh8a6ac0a2004-02-14 17:35:07 +000017** $Id: main.c,v 1.153 2004/02/14 17:35:07 drh Exp $
drh75897232000-05-29 14:26:00 +000018*/
19#include "sqliteInt.h"
drh8cfbf082001-09-19 13:22:39 +000020#include "os.h"
drhce9079c2002-05-15 14:17:44 +000021#include <ctype.h>
drh75897232000-05-29 14:26:00 +000022
23/*
drhc2311722002-07-19 17:46:38 +000024** A pointer to this structure is used to communicate information
25** from sqliteInit into the sqliteInitCallback.
26*/
27typedef struct {
28 sqlite *db; /* The database being initialized */
29 char **pzErrMsg; /* Error message stored here */
30} InitData;
31
drh8bf8dc92003-05-17 17:35:10 +000032/*
33** Fill the InitData structure with an error message that indicates
34** that the database is corrupt.
35*/
36static void corruptSchema(InitData *pData){
drh41743982003-12-06 21:43:55 +000037 sqliteSetString(pData->pzErrMsg, "malformed database schema", (char*)0);
drh8bf8dc92003-05-17 17:35:10 +000038}
drhc2311722002-07-19 17:46:38 +000039
40/*
drh75897232000-05-29 14:26:00 +000041** This is the callback routine for the code that initializes the
drh382c0242001-10-06 16:33:02 +000042** database. See sqliteInit() below for additional information.
43**
44** Each callback contains the following information:
drh28037572000-08-02 13:47:41 +000045**
drh4a324312001-12-21 14:30:42 +000046** argv[0] = "file-format" or "schema-cookie" or "table" or "index"
drhe3c41372001-09-17 20:25:58 +000047** argv[1] = table or index name or meta statement type.
48** argv[2] = root page number for table or index. NULL for meta.
drhe78e8282003-01-19 03:59:45 +000049** argv[3] = SQL text for a CREATE TABLE or CREATE INDEX statement.
drh1c2d8412003-03-31 00:30:47 +000050** argv[4] = "1" for temporary files, "0" for main database, "2" or more
51** for auxiliary database files.
drhd78eeee2001-09-13 16:18:53 +000052**
drh75897232000-05-29 14:26:00 +000053*/
drhc2311722002-07-19 17:46:38 +000054static
55int sqliteInitCallback(void *pInit, int argc, char **argv, char **azColName){
56 InitData *pData = (InitData*)pInit;
drh75897232000-05-29 14:26:00 +000057 Parse sParse;
drhd78eeee2001-09-13 16:18:53 +000058 int nErr = 0;
drh75897232000-05-29 14:26:00 +000059
drhe0bc4042002-06-25 01:09:11 +000060 assert( argc==5 );
drh98e3e602003-07-27 17:26:22 +000061 if( argv==0 ) return 0; /* Might happen if EMPTY_RESULT_CALLBACKS are on */
drh8bf8dc92003-05-17 17:35:10 +000062 if( argv[0]==0 ){
63 corruptSchema(pData);
64 return 1;
65 }
drhd78eeee2001-09-13 16:18:53 +000066 switch( argv[0][0] ){
drh17f71932002-02-21 12:01:27 +000067 case 'v':
drhd78eeee2001-09-13 16:18:53 +000068 case 'i':
drh17f71932002-02-21 12:01:27 +000069 case 't': { /* CREATE TABLE, CREATE INDEX, or CREATE VIEW statements */
drh8bf8dc92003-05-17 17:35:10 +000070 if( argv[2]==0 || argv[4]==0 ){
71 corruptSchema(pData);
72 return 1;
73 }
drhadbca9c2001-09-27 15:11:53 +000074 if( argv[3] && argv[3][0] ){
drh17f71932002-02-21 12:01:27 +000075 /* Call the parser to process a CREATE TABLE, INDEX or VIEW.
drh382c0242001-10-06 16:33:02 +000076 ** But because sParse.initFlag is set to 1, no VDBE code is generated
77 ** or executed. All the parser does is build the internal data
drh17f71932002-02-21 12:01:27 +000078 ** structures that describe the table, index, or view.
drh382c0242001-10-06 16:33:02 +000079 */
drhadbca9c2001-09-27 15:11:53 +000080 memset(&sParse, 0, sizeof(sParse));
drhc2311722002-07-19 17:46:38 +000081 sParse.db = pData->db;
drhadbca9c2001-09-27 15:11:53 +000082 sParse.initFlag = 1;
drhd24cc422003-03-27 12:51:24 +000083 sParse.iDb = atoi(argv[4]);
drhadbca9c2001-09-27 15:11:53 +000084 sParse.newTnum = atoi(argv[2]);
drhb86ccfb2003-01-28 23:13:10 +000085 sParse.useCallback = 1;
drhc2311722002-07-19 17:46:38 +000086 sqliteRunParser(&sParse, argv[3], pData->pzErrMsg);
drhadbca9c2001-09-27 15:11:53 +000087 }else{
drh382c0242001-10-06 16:33:02 +000088 /* If the SQL column is blank it means this is an index that
89 ** was created to be the PRIMARY KEY or to fulfill a UNIQUE
drhaacc5432002-01-06 17:07:40 +000090 ** constraint for a CREATE TABLE. The index should have already
drh382c0242001-10-06 16:33:02 +000091 ** been created when we processed the CREATE TABLE. All we have
drhaacc5432002-01-06 17:07:40 +000092 ** to do here is record the root page number for that index.
drh382c0242001-10-06 16:33:02 +000093 */
drhd24cc422003-03-27 12:51:24 +000094 int iDb;
95 Index *pIndex;
96
97 iDb = atoi(argv[4]);
98 assert( iDb>=0 && iDb<pData->db->nDb );
99 pIndex = sqliteFindIndex(pData->db, argv[1], pData->db->aDb[iDb].zName);
drhadbca9c2001-09-27 15:11:53 +0000100 if( pIndex==0 || pIndex->tnum!=0 ){
drhda9e0342002-01-10 14:31:48 +0000101 /* This can occur if there exists an index on a TEMP table which
102 ** has the same name as another index on a permanent index. Since
103 ** the permanent table is hidden by the TEMP table, we can also
104 ** safely ignore the index on the permanent table.
105 */
106 /* Do Nothing */;
drhadbca9c2001-09-27 15:11:53 +0000107 }else{
108 pIndex->tnum = atoi(argv[2]);
109 }
110 }
drhd78eeee2001-09-13 16:18:53 +0000111 break;
112 }
113 default: {
114 /* This can not happen! */
115 nErr = 1;
116 assert( nErr==0 );
117 }
drh28037572000-08-02 13:47:41 +0000118 }
drh75897232000-05-29 14:26:00 +0000119 return nErr;
120}
121
122/*
drh491791a2002-07-18 00:34:09 +0000123** This is a callback procedure used to reconstruct a table. The
124** name of the table to be reconstructed is passed in as argv[0].
125**
126** This routine is used to automatically upgrade a database from
127** format version 1 or 2 to version 3. The correct operation of
128** this routine relys on the fact that no indices are used when
129** copying a table out to a temporary file.
drh2d71ca92004-02-10 02:27:04 +0000130**
131** The change from version 2 to version 3 occurred between SQLite
132** version 2.5.6 and 2.6.0 on 2002-July-18.
drh491791a2002-07-18 00:34:09 +0000133*/
drhc2311722002-07-19 17:46:38 +0000134static
135int upgrade_3_callback(void *pInit, int argc, char **argv, char **NotUsed){
136 InitData *pData = (InitData*)pInit;
drh491791a2002-07-18 00:34:09 +0000137 int rc;
drh8e5ba842002-07-18 01:27:17 +0000138 Table *pTab;
139 Trigger *pTrig;
drh26b3e1b2002-07-19 18:52:40 +0000140 char *zErr = 0;
drh491791a2002-07-18 00:34:09 +0000141
drhd24cc422003-03-27 12:51:24 +0000142 pTab = sqliteFindTable(pData->db, argv[0], 0);
drhf573c992002-07-31 00:32:50 +0000143 assert( pTab!=0 );
144 assert( sqliteStrICmp(pTab->zName, argv[0])==0 );
drh8e5ba842002-07-18 01:27:17 +0000145 if( pTab ){
146 pTrig = pTab->pTrigger;
147 pTab->pTrigger = 0; /* Disable all triggers before rebuilding the table */
148 }
drhc2311722002-07-19 17:46:38 +0000149 rc = sqlite_exec_printf(pData->db,
drh491791a2002-07-18 00:34:09 +0000150 "CREATE TEMP TABLE sqlite_x AS SELECT * FROM '%q'; "
151 "DELETE FROM '%q'; "
152 "INSERT INTO '%q' SELECT * FROM sqlite_x; "
153 "DROP TABLE sqlite_x;",
drhc2311722002-07-19 17:46:38 +0000154 0, 0, &zErr, argv[0], argv[0], argv[0]);
155 if( zErr ){
drha1f9b5e2004-02-14 16:31:02 +0000156 if( *pData->pzErrMsg ) sqlite_freemem(*pData->pzErrMsg);
157 *pData->pzErrMsg = zErr;
drhc2311722002-07-19 17:46:38 +0000158 }
drhf573c992002-07-31 00:32:50 +0000159
160 /* If an error occurred in the SQL above, then the transaction will
161 ** rollback which will delete the internal symbol tables. This will
162 ** cause the structure that pTab points to be deleted. In case that
163 ** happened, we need to refetch pTab.
164 */
drhd24cc422003-03-27 12:51:24 +0000165 pTab = sqliteFindTable(pData->db, argv[0], 0);
drhf573c992002-07-31 00:32:50 +0000166 if( pTab ){
167 assert( sqliteStrICmp(pTab->zName, argv[0])==0 );
168 pTab->pTrigger = pTrig; /* Re-enable triggers */
169 }
drh491791a2002-07-18 00:34:09 +0000170 return rc!=SQLITE_OK;
171}
172
173
174
175/*
drh58b95762000-06-02 01:17:37 +0000176** Attempt to read the database schema and initialize internal
drh1c2d8412003-03-31 00:30:47 +0000177** data structures for a single database file. The index of the
178** database file is given by iDb. iDb==0 is used for the main
179** database. iDb==1 should never be used. iDb>=2 is used for
180** auxiliary databases. Return one of the SQLITE_ error codes to
drh58b95762000-06-02 01:17:37 +0000181** indicate success or failure.
drh75897232000-05-29 14:26:00 +0000182*/
drh1c2d8412003-03-31 00:30:47 +0000183static int sqliteInitOne(sqlite *db, int iDb, char **pzErrMsg){
drh58b95762000-06-02 01:17:37 +0000184 int rc;
drhe0bc4042002-06-25 01:09:11 +0000185 BtCursor *curMain;
186 int size;
187 Table *pTab;
188 char *azArg[6];
drh1c2d8412003-03-31 00:30:47 +0000189 char zDbNum[30];
drhe0bc4042002-06-25 01:09:11 +0000190 int meta[SQLITE_N_BTREE_META];
191 Parse sParse;
drhc2311722002-07-19 17:46:38 +0000192 InitData initData;
drh58b95762000-06-02 01:17:37 +0000193
194 /*
195 ** The master database table has a structure like this
196 */
drh75897232000-05-29 14:26:00 +0000197 static char master_schema[] =
drhe0bc4042002-06-25 01:09:11 +0000198 "CREATE TABLE sqlite_master(\n"
199 " type text,\n"
200 " name text,\n"
201 " tbl_name text,\n"
202 " rootpage integer,\n"
203 " sql text\n"
204 ")"
205 ;
206 static char temp_master_schema[] =
207 "CREATE TEMP TABLE sqlite_temp_master(\n"
drh75897232000-05-29 14:26:00 +0000208 " type text,\n"
209 " name text,\n"
210 " tbl_name text,\n"
drhadbca9c2001-09-27 15:11:53 +0000211 " rootpage integer,\n"
drh75897232000-05-29 14:26:00 +0000212 " sql text\n"
213 ")"
214 ;
215
drhe0bc4042002-06-25 01:09:11 +0000216 /* The following SQL will read the schema from the master tables.
217 ** The first version works with SQLite file formats 2 or greater.
218 ** The second version is for format 1 files.
drh75897232000-05-29 14:26:00 +0000219 **
drhe0bc4042002-06-25 01:09:11 +0000220 ** Beginning with file format 2, the rowid for new table entries
221 ** (including entries in sqlite_master) is an increasing integer.
222 ** So for file format 2 and later, we can play back sqlite_master
223 ** and all the CREATE statements will appear in the right order.
224 ** But with file format 1, table entries were random and so we
225 ** have to make sure the CREATE TABLEs occur before their corresponding
226 ** CREATE INDEXs. (We don't have to deal with CREATE VIEW or
227 ** CREATE TRIGGER in file format 1 because those constructs did
228 ** not exist then.)
drh75897232000-05-29 14:26:00 +0000229 */
drhe0bc4042002-06-25 01:09:11 +0000230 static char init_script[] =
231 "SELECT type, name, rootpage, sql, 1 FROM sqlite_temp_master "
232 "UNION ALL "
233 "SELECT type, name, rootpage, sql, 0 FROM sqlite_master";
234 static char older_init_script[] =
235 "SELECT type, name, rootpage, sql, 1 FROM sqlite_temp_master "
236 "UNION ALL "
237 "SELECT type, name, rootpage, sql, 0 FROM sqlite_master "
238 "WHERE type='table' "
239 "UNION ALL "
240 "SELECT type, name, rootpage, sql, 0 FROM sqlite_master "
241 "WHERE type='index'";
drh17f71932002-02-21 12:01:27 +0000242
drh603240c2002-03-05 01:11:12 +0000243
drh1c2d8412003-03-31 00:30:47 +0000244 assert( iDb>=0 && iDb!=1 && iDb<db->nDb );
245
drhe0bc4042002-06-25 01:09:11 +0000246 /* Construct the schema tables: sqlite_master and sqlite_temp_master
drh58b95762000-06-02 01:17:37 +0000247 */
drhe0bc4042002-06-25 01:09:11 +0000248 azArg[0] = "table";
249 azArg[1] = MASTER_NAME;
250 azArg[2] = "2";
251 azArg[3] = master_schema;
drh1c2d8412003-03-31 00:30:47 +0000252 sprintf(zDbNum, "%d", iDb);
253 azArg[4] = zDbNum;
drhe0bc4042002-06-25 01:09:11 +0000254 azArg[5] = 0;
drhc2311722002-07-19 17:46:38 +0000255 initData.db = db;
256 initData.pzErrMsg = pzErrMsg;
257 sqliteInitCallback(&initData, 5, azArg, 0);
drhd24cc422003-03-27 12:51:24 +0000258 pTab = sqliteFindTable(db, MASTER_NAME, "main");
drhe0bc4042002-06-25 01:09:11 +0000259 if( pTab ){
260 pTab->readOnly = 1;
drhd8bc7082000-06-07 23:51:50 +0000261 }
drh1c2d8412003-03-31 00:30:47 +0000262 if( iDb==0 ){
263 azArg[1] = TEMP_MASTER_NAME;
264 azArg[3] = temp_master_schema;
265 azArg[4] = "1";
266 sqliteInitCallback(&initData, 5, azArg, 0);
267 pTab = sqliteFindTable(db, TEMP_MASTER_NAME, "temp");
268 if( pTab ){
269 pTab->readOnly = 1;
270 }
drhe0bc4042002-06-25 01:09:11 +0000271 }
272
273 /* Create a cursor to hold the database open
274 */
drh1c2d8412003-03-31 00:30:47 +0000275 if( db->aDb[iDb].pBt==0 ) return SQLITE_OK;
276 rc = sqliteBtreeCursor(db->aDb[iDb].pBt, 2, 0, &curMain);
drh92ed08a2002-07-30 18:43:40 +0000277 if( rc ){
drh41743982003-12-06 21:43:55 +0000278 sqliteSetString(pzErrMsg, sqlite_error_string(rc), (char*)0);
drh92ed08a2002-07-30 18:43:40 +0000279 return rc;
280 }
drhe0bc4042002-06-25 01:09:11 +0000281
282 /* Get the database meta information
283 */
drh1c2d8412003-03-31 00:30:47 +0000284 rc = sqliteBtreeGetMeta(db->aDb[iDb].pBt, meta);
drhe0bc4042002-06-25 01:09:11 +0000285 if( rc ){
drh41743982003-12-06 21:43:55 +0000286 sqliteSetString(pzErrMsg, sqlite_error_string(rc), (char*)0);
drhe0bc4042002-06-25 01:09:11 +0000287 sqliteBtreeCloseCursor(curMain);
288 return rc;
289 }
drh1c2d8412003-03-31 00:30:47 +0000290 db->aDb[iDb].schema_cookie = meta[1];
291 if( iDb==0 ){
292 db->next_cookie = meta[1];
293 db->file_format = meta[2];
294 size = meta[3];
295 if( size==0 ){ size = MAX_PAGES; }
296 db->cache_size = size;
297 db->safety_level = meta[4];
298 if( db->safety_level==0 ) db->safety_level = 2;
drhe0bc4042002-06-25 01:09:11 +0000299
drh1c2d8412003-03-31 00:30:47 +0000300 /*
301 ** file_format==1 Version 2.1.0.
302 ** file_format==2 Version 2.2.0. Add support for INTEGER PRIMARY KEY.
303 ** file_format==3 Version 2.6.0. Fix empty-string index bug.
304 ** file_format==4 Version 2.7.0. Add support for separate numeric and
305 ** text datatypes.
306 */
307 if( db->file_format==0 ){
308 /* This happens if the database was initially empty */
309 db->file_format = 4;
310 }else if( db->file_format>4 ){
311 sqliteBtreeCloseCursor(curMain);
drh41743982003-12-06 21:43:55 +0000312 sqliteSetString(pzErrMsg, "unsupported file format", (char*)0);
drh1c2d8412003-03-31 00:30:47 +0000313 return SQLITE_ERROR;
314 }
drh2d458342003-04-05 03:42:26 +0000315 }else if( db->file_format!=meta[2] || db->file_format<4 ){
316 assert( db->file_format>=4 );
317 if( meta[2]==0 ){
318 sqliteSetString(pzErrMsg, "cannot attach empty database: ",
drh41743982003-12-06 21:43:55 +0000319 db->aDb[iDb].zName, (char*)0);
drh2d458342003-04-05 03:42:26 +0000320 }else{
321 sqliteSetString(pzErrMsg, "incompatible file format in auxiliary "
drh41743982003-12-06 21:43:55 +0000322 "database: ", db->aDb[iDb].zName, (char*)0);
drh2d458342003-04-05 03:42:26 +0000323 }
drh1c2d8412003-03-31 00:30:47 +0000324 sqliteBtreeClose(db->aDb[iDb].pBt);
325 db->aDb[iDb].pBt = 0;
326 return SQLITE_FORMAT;
drh28037572000-08-02 13:47:41 +0000327 }
drhade106c2003-06-02 18:17:33 +0000328 sqliteBtreeSetCacheSize(db->aDb[iDb].pBt, db->cache_size);
drh1c2d8412003-03-31 00:30:47 +0000329 sqliteBtreeSetSafetyLevel(db->aDb[iDb].pBt, meta[4]==0 ? 2 : meta[4]);
drhaacc5432002-01-06 17:07:40 +0000330
drhe0bc4042002-06-25 01:09:11 +0000331 /* Read the schema information out of the schema tables
drhaacc5432002-01-06 17:07:40 +0000332 */
drhe0bc4042002-06-25 01:09:11 +0000333 memset(&sParse, 0, sizeof(sParse));
334 sParse.db = db;
drhe0bc4042002-06-25 01:09:11 +0000335 sParse.xCallback = sqliteInitCallback;
drhc2311722002-07-19 17:46:38 +0000336 sParse.pArg = (void*)&initData;
drhe0bc4042002-06-25 01:09:11 +0000337 sParse.initFlag = 1;
drhb86ccfb2003-01-28 23:13:10 +0000338 sParse.useCallback = 1;
drh1c2d8412003-03-31 00:30:47 +0000339 if( iDb==0 ){
340 sqliteRunParser(&sParse,
341 db->file_format>=2 ? init_script : older_init_script,
342 pzErrMsg);
343 }else{
344 char *zSql = 0;
345 sqliteSetString(&zSql,
346 "SELECT type, name, rootpage, sql, ", zDbNum, " FROM \"",
drh41743982003-12-06 21:43:55 +0000347 db->aDb[iDb].zName, "\".sqlite_master", (char*)0);
drh1c2d8412003-03-31 00:30:47 +0000348 sqliteRunParser(&sParse, zSql, pzErrMsg);
349 sqliteFree(zSql);
350 }
351 sqliteBtreeCloseCursor(curMain);
drhe0bc4042002-06-25 01:09:11 +0000352 if( sqlite_malloc_failed ){
drh41743982003-12-06 21:43:55 +0000353 sqliteSetString(pzErrMsg, "out of memory", (char*)0);
drhe0bc4042002-06-25 01:09:11 +0000354 sParse.rc = SQLITE_NOMEM;
drh1c2d8412003-03-31 00:30:47 +0000355 sqliteResetInternalSchema(db, 0);
drhe0bc4042002-06-25 01:09:11 +0000356 }
357 if( sParse.rc==SQLITE_OK ){
drh8bf8dc92003-05-17 17:35:10 +0000358 DbSetProperty(db, iDb, DB_SchemaLoaded);
359 if( iDb==0 ){
360 DbSetProperty(db, 1, DB_SchemaLoaded);
361 }
drh1c2d8412003-03-31 00:30:47 +0000362 }else{
363 sqliteResetInternalSchema(db, iDb);
364 }
365 return sParse.rc;
366}
367
368/*
369** Initialize all database files - the main database file, the file
370** used to store temporary tables, and any additional database files
371** created using ATTACH statements. Return a success code. If an
372** error occurs, write an error message into *pzErrMsg.
373**
374** After the database is initialized, the SQLITE_Initialized
375** bit is set in the flags field of the sqlite structure. An
376** attempt is made to initialize the database as soon as it
377** is opened. If that fails (perhaps because another process
378** has the sqlite_master table locked) than another attempt
379** is made the first time the database is accessed.
380*/
381int sqliteInit(sqlite *db, char **pzErrMsg){
382 int i, rc;
383
384 assert( (db->flags & SQLITE_Initialized)==0 );
385 rc = SQLITE_OK;
386 for(i=0; rc==SQLITE_OK && i<db->nDb; i++){
drh8bf8dc92003-05-17 17:35:10 +0000387 if( DbHasProperty(db, i, DB_SchemaLoaded) ) continue;
388 assert( i!=1 ); /* Should have been initialized together with 0 */
drh1c2d8412003-03-31 00:30:47 +0000389 rc = sqliteInitOne(db, i, pzErrMsg);
drh8ef83ff2004-02-12 15:31:21 +0000390 if( rc ){
391 sqliteResetInternalSchema(db, i);
392 }
drh1c2d8412003-03-31 00:30:47 +0000393 }
394 if( rc==SQLITE_OK ){
drh58b95762000-06-02 01:17:37 +0000395 db->flags |= SQLITE_Initialized;
drh5e00f6c2001-09-13 13:46:56 +0000396 sqliteCommitInternalChanges(db);
drh2d71ca92004-02-10 02:27:04 +0000397 }
398
399 /* If the database is in formats 1 or 2, then upgrade it to
400 ** version 3. This will reconstruct all indices. If the
401 ** upgrade fails for any reason (ex: out of disk space, database
402 ** is read only, interrupt received, etc.) then fail the init.
403 */
404 if( rc==SQLITE_OK && db->file_format<3 ){
405 char *zErr = 0;
406 InitData initData;
407 int meta[SQLITE_N_BTREE_META];
408
409 db->magic = SQLITE_MAGIC_OPEN;
410 initData.db = db;
411 initData.pzErrMsg = &zErr;
412 db->file_format = 3;
413 rc = sqlite_exec(db,
414 "BEGIN; SELECT name FROM sqlite_master WHERE type='table';",
415 upgrade_3_callback,
416 &initData,
417 &zErr);
418 if( rc==SQLITE_OK ){
419 sqliteBtreeGetMeta(db->aDb[0].pBt, meta);
420 meta[2] = 4;
421 sqliteBtreeUpdateMeta(db->aDb[0].pBt, meta);
422 sqlite_exec(db, "COMMIT", 0, 0, 0);
423 }
424 if( rc!=SQLITE_OK ){
425 sqliteSetString(pzErrMsg,
426 "unable to upgrade database to the version 2.6 format",
427 zErr ? ": " : 0, zErr, (char*)0);
drh2d71ca92004-02-10 02:27:04 +0000428 }
429 sqlite_freemem(zErr);
430 }
431
432 if( rc!=SQLITE_OK ){
drhe0bc4042002-06-25 01:09:11 +0000433 db->flags &= ~SQLITE_Initialized;
drh58b95762000-06-02 01:17:37 +0000434 }
drh1c2d8412003-03-31 00:30:47 +0000435 return rc;
drh58b95762000-06-02 01:17:37 +0000436}
437
438/*
drhb217a572000-08-22 13:40:18 +0000439** The version of the library
440*/
drh096c4972002-07-19 19:03:41 +0000441const char rcsid[] = "@(#) \044Id: SQLite version " SQLITE_VERSION " $";
drh3d0b5592000-08-22 13:40:51 +0000442const char sqlite_version[] = SQLITE_VERSION;
drhb217a572000-08-22 13:40:18 +0000443
444/*
drh297ecf12001-04-05 15:57:13 +0000445** Does the library expect data to be encoded as UTF-8 or iso8859? The
446** following global constant always lets us know.
447*/
448#ifdef SQLITE_UTF8
drhfbc3eab2001-04-06 16:13:42 +0000449const char sqlite_encoding[] = "UTF-8";
drh297ecf12001-04-05 15:57:13 +0000450#else
drhfbc3eab2001-04-06 16:13:42 +0000451const char sqlite_encoding[] = "iso8859";
drh297ecf12001-04-05 15:57:13 +0000452#endif
453
454/*
drh58b95762000-06-02 01:17:37 +0000455** Open a new SQLite database. Construct an "sqlite" structure to define
456** the state of this database and return a pointer to that structure.
457**
458** An attempt is made to initialize the in-memory data structures that
459** hold the database schema. But if this fails (because the schema file
460** is locked) then that step is deferred until the first call to
461** sqlite_exec().
462*/
463sqlite *sqlite_open(const char *zFilename, int mode, char **pzErrMsg){
464 sqlite *db;
drhd24cc422003-03-27 12:51:24 +0000465 int rc, i;
drh58b95762000-06-02 01:17:37 +0000466
467 /* Allocate the sqlite data structure */
drh75897232000-05-29 14:26:00 +0000468 db = sqliteMalloc( sizeof(sqlite) );
469 if( pzErrMsg ) *pzErrMsg = 0;
drhdaffd0e2001-04-11 14:28:42 +0000470 if( db==0 ) goto no_mem_on_open;
drh1c928532002-01-31 15:54:21 +0000471 db->onError = OE_Default;
drh5cf8e8c2002-02-19 22:42:05 +0000472 db->priorNewRowid = 0;
drh247be432002-05-10 05:44:55 +0000473 db->magic = SQLITE_MAGIC_BUSY;
drh001bbcb2003-03-19 03:14:00 +0000474 db->nDb = 2;
475 db->aDb = db->aDbStatic;
drhd24cc422003-03-27 12:51:24 +0000476 sqliteHashInit(&db->aFunc, SQLITE_HASH_STRING, 1);
477 for(i=0; i<db->nDb; i++){
478 sqliteHashInit(&db->aDb[i].tblHash, SQLITE_HASH_STRING, 0);
479 sqliteHashInit(&db->aDb[i].idxHash, SQLITE_HASH_STRING, 0);
480 sqliteHashInit(&db->aDb[i].trigHash, SQLITE_HASH_STRING, 0);
481 sqliteHashInit(&db->aDb[i].aFKey, SQLITE_HASH_STRING, 1);
482 }
drh75897232000-05-29 14:26:00 +0000483
484 /* Open the backend database driver */
drh5e8e1982003-06-04 15:48:33 +0000485 if( zFilename[0]==':' && strcmp(zFilename,":memory:")==0 ){
486 db->temp_store = 2;
487 }
drh144f9ea2003-04-16 01:28:16 +0000488 rc = sqliteBtreeFactory(db, zFilename, 0, MAX_PAGES, &db->aDb[0].pBt);
drh5e00f6c2001-09-13 13:46:56 +0000489 if( rc!=SQLITE_OK ){
490 switch( rc ){
491 default: {
drh41743982003-12-06 21:43:55 +0000492 sqliteSetString(pzErrMsg, "unable to open database: ",
493 zFilename, (char*)0);
drh5e00f6c2001-09-13 13:46:56 +0000494 }
495 }
drh75897232000-05-29 14:26:00 +0000496 sqliteFree(db);
drh5edc3122001-09-13 21:53:09 +0000497 sqliteStrRealloc(pzErrMsg);
drhbe0072d2001-09-13 14:46:09 +0000498 return 0;
drh75897232000-05-29 14:26:00 +0000499 }
drh001bbcb2003-03-19 03:14:00 +0000500 db->aDb[0].zName = "main";
drh113088e2003-03-20 01:16:58 +0000501 db->aDb[1].zName = "temp";
drh75897232000-05-29 14:26:00 +0000502
drh58b95762000-06-02 01:17:37 +0000503 /* Attempt to read the schema */
drh8c90ebb2002-09-05 23:21:37 +0000504 sqliteRegisterBuiltinFunctions(db);
drh58b95762000-06-02 01:17:37 +0000505 rc = sqliteInit(db, pzErrMsg);
drhc67980b2002-06-14 20:54:14 +0000506 db->magic = SQLITE_MAGIC_OPEN;
drhdaffd0e2001-04-11 14:28:42 +0000507 if( sqlite_malloc_failed ){
drh6d4abfb2001-10-22 02:58:08 +0000508 sqlite_close(db);
drhdaffd0e2001-04-11 14:28:42 +0000509 goto no_mem_on_open;
510 }else if( rc!=SQLITE_OK && rc!=SQLITE_BUSY ){
drh58b95762000-06-02 01:17:37 +0000511 sqlite_close(db);
drh5edc3122001-09-13 21:53:09 +0000512 sqliteStrRealloc(pzErrMsg);
drh58b95762000-06-02 01:17:37 +0000513 return 0;
drhaacc5432002-01-06 17:07:40 +0000514 }else if( pzErrMsg ){
drhdaffd0e2001-04-11 14:28:42 +0000515 sqliteFree(*pzErrMsg);
drhbed86902000-06-02 13:27:59 +0000516 *pzErrMsg = 0;
drh75897232000-05-29 14:26:00 +0000517 }
drh491791a2002-07-18 00:34:09 +0000518
drh491791a2002-07-18 00:34:09 +0000519 /* Return a pointer to the newly opened database structure */
drh75897232000-05-29 14:26:00 +0000520 return db;
drhdaffd0e2001-04-11 14:28:42 +0000521
522no_mem_on_open:
drh41743982003-12-06 21:43:55 +0000523 sqliteSetString(pzErrMsg, "out of memory", (char*)0);
drhdaffd0e2001-04-11 14:28:42 +0000524 sqliteStrRealloc(pzErrMsg);
525 return 0;
drh75897232000-05-29 14:26:00 +0000526}
527
528/*
drhaf9ff332002-01-16 21:00:27 +0000529** Return the ROWID of the most recent insert
530*/
531int sqlite_last_insert_rowid(sqlite *db){
532 return db->lastRowid;
533}
534
535/*
drhc8d30ac2002-04-12 10:08:59 +0000536** Return the number of changes in the most recent call to sqlite_exec().
537*/
538int sqlite_changes(sqlite *db){
539 return db->nChange;
540}
541
542/*
drh50e5dad2001-09-15 00:57:28 +0000543** Close an existing SQLite database
544*/
545void sqlite_close(sqlite *db){
drh8e0a2f92002-02-23 23:45:45 +0000546 HashElem *i;
drh001bbcb2003-03-19 03:14:00 +0000547 int j;
drh94e92032003-02-16 22:21:32 +0000548 db->want_to_close = 1;
549 if( sqliteSafetyCheck(db) || sqliteSafetyOn(db) ){
550 /* printf("DID NOT CLOSE\n"); fflush(stdout); */
551 return;
552 }
drh247be432002-05-10 05:44:55 +0000553 db->magic = SQLITE_MAGIC_CLOSED;
drh001bbcb2003-03-19 03:14:00 +0000554 for(j=0; j<db->nDb; j++){
drh4d189ca2004-02-12 18:46:38 +0000555 struct Db *pDb = &db->aDb[j];
556 if( pDb->pBt ){
557 sqliteBtreeClose(pDb->pBt);
558 pDb->pBt = 0;
drh113088e2003-03-20 01:16:58 +0000559 }
drhf57b3392001-10-08 13:22:32 +0000560 }
drh1c2d8412003-03-31 00:30:47 +0000561 sqliteResetInternalSchema(db, 0);
562 assert( db->nDb<=2 );
563 assert( db->aDb==db->aDbStatic );
drh0bce8352002-02-28 00:41:10 +0000564 for(i=sqliteHashFirst(&db->aFunc); i; i=sqliteHashNext(i)){
565 FuncDef *pFunc, *pNext;
566 for(pFunc = (FuncDef*)sqliteHashData(i); pFunc; pFunc=pNext){
drh8e0a2f92002-02-23 23:45:45 +0000567 pNext = pFunc->pNext;
568 sqliteFree(pFunc);
569 }
570 }
drh0bce8352002-02-28 00:41:10 +0000571 sqliteHashClear(&db->aFunc);
drh75897232000-05-29 14:26:00 +0000572 sqliteFree(db);
573}
574
575/*
drh001bbcb2003-03-19 03:14:00 +0000576** Rollback all database files.
577*/
578void sqliteRollbackAll(sqlite *db){
579 int i;
580 for(i=0; i<db->nDb; i++){
581 if( db->aDb[i].pBt ){
582 sqliteBtreeRollback(db->aDb[i].pBt);
583 db->aDb[i].inTrans = 0;
584 }
585 }
drh8ef83ff2004-02-12 15:31:21 +0000586 sqliteResetInternalSchema(db, 0);
587 /* sqliteRollbackInternalChanges(db); */
drh001bbcb2003-03-19 03:14:00 +0000588}
589
590/*
drha1f9b5e2004-02-14 16:31:02 +0000591** Execute SQL code. Return one of the SQLITE_ success/failure
592** codes. Also write an error message into memory obtained from
593** malloc() and make *pzErrMsg point to that message.
594**
595** If the SQL is a query, then for each row in the query result
596** the xCallback() function is called. pArg becomes the first
597** argument to xCallback(). If xCallback=NULL then no callback
598** is invoked, even for queries.
drh75897232000-05-29 14:26:00 +0000599*/
drha1f9b5e2004-02-14 16:31:02 +0000600int sqlite_exec(
drh75897232000-05-29 14:26:00 +0000601 sqlite *db, /* The database on which the SQL executes */
drh9f71c2e2001-11-03 23:57:09 +0000602 const char *zSql, /* The SQL to be executed */
drh75897232000-05-29 14:26:00 +0000603 sqlite_callback xCallback, /* Invoke this callback routine */
604 void *pArg, /* First argument to xCallback() */
drha1f9b5e2004-02-14 16:31:02 +0000605 char **pzErrMsg /* Write error messages here */
606){
607 int rc = SQLITE_OK;
608 const char *zLeftover;
609 sqlite_vm *pVm;
610 int nRetry = 0;
611 int nChange = 0;
612
613 if( zSql==0 ) return SQLITE_OK;
614 while( rc==SQLITE_OK && zSql[0] ){
615 pVm = 0;
616 rc = sqlite_compile(db, zSql, &zLeftover, &pVm, pzErrMsg);
617 if( rc!=SQLITE_OK ){
drh8a6ac0a2004-02-14 17:35:07 +0000618 assert( pVm==0 || sqlite_malloc_failed );
drha1f9b5e2004-02-14 16:31:02 +0000619 return rc;
620 }
621 if( pVm==0 ){
622 /* This happens if the zSql input contained only whitespace */
623 break;
624 }
625 db->nChange += nChange;
626 while(1){
627 int nArg;
628 char **azArg, **azCol;
629 rc = sqlite_step(pVm, &nArg, (const char***)&azArg,(const char***)&azCol);
630 if( rc==SQLITE_ROW ){
631 if( xCallback(pArg, nArg, azArg, azCol) ){
632 sqlite_finalize(pVm, 0);
633 return SQLITE_ABORT;
634 }
635 }else{
636 rc = sqlite_finalize(pVm, pzErrMsg);
637 if( rc==SQLITE_SCHEMA && nRetry<2 ){
638 nRetry++;
639 rc = SQLITE_OK;
640 break;
641 }
642 if( db->pVdbe==0 ){
643 nChange = db->nChange;
644 }
645 nRetry = 0;
646 zSql = zLeftover;
647 while( isspace(zSql[0]) ) zSql++;
648 break;
649 }
650 }
651 }
652 return rc;
653}
654
655
656/*
657** Compile a single statement of SQL into a virtual machine. Return one
658** of the SQLITE_ success/failure codes. Also write an error message into
659** memory obtained from malloc() and make *pzErrMsg point to that message.
660*/
661int sqlite_compile(
662 sqlite *db, /* The database on which the SQL executes */
663 const char *zSql, /* The SQL to be executed */
drhb86ccfb2003-01-28 23:13:10 +0000664 const char **pzTail, /* OUT: Next statement after the first */
665 sqlite_vm **ppVm, /* OUT: The virtual machine */
666 char **pzErrMsg /* OUT: Write error messages here */
drh75897232000-05-29 14:26:00 +0000667){
668 Parse sParse;
drh75897232000-05-29 14:26:00 +0000669
drh799550b2003-01-18 17:04:08 +0000670 if( pzErrMsg ) *pzErrMsg = 0;
671 if( sqliteSafetyOn(db) ) goto exec_misuse;
drh58b95762000-06-02 01:17:37 +0000672 if( (db->flags & SQLITE_Initialized)==0 ){
drh1e0ccab2002-08-29 23:59:47 +0000673 int rc, cnt = 1;
674 while( (rc = sqliteInit(db, pzErrMsg))==SQLITE_BUSY
675 && db->xBusyCallback && db->xBusyCallback(db->pBusyArg, "", cnt++)!=0 ){}
drhdaffd0e2001-04-11 14:28:42 +0000676 if( rc!=SQLITE_OK ){
677 sqliteStrRealloc(pzErrMsg);
drh247be432002-05-10 05:44:55 +0000678 sqliteSafetyOff(db);
drhdaffd0e2001-04-11 14:28:42 +0000679 return rc;
680 }
drh7bc09d32002-11-01 01:55:36 +0000681 if( pzErrMsg ){
682 sqliteFree(*pzErrMsg);
683 *pzErrMsg = 0;
684 }
drh58b95762000-06-02 01:17:37 +0000685 }
drh491791a2002-07-18 00:34:09 +0000686 if( db->file_format<3 ){
687 sqliteSafetyOff(db);
drh41743982003-12-06 21:43:55 +0000688 sqliteSetString(pzErrMsg, "obsolete database file format", (char*)0);
drh491791a2002-07-18 00:34:09 +0000689 return SQLITE_ERROR;
690 }
drh326dce72003-01-29 14:06:07 +0000691 if( db->pVdbe==0 ){ db->nChange = 0; }
drh75897232000-05-29 14:26:00 +0000692 memset(&sParse, 0, sizeof(sParse));
693 sParse.db = db;
drha1f9b5e2004-02-14 16:31:02 +0000694 sParse.useCallback = 0;
drhb86ccfb2003-01-28 23:13:10 +0000695 if( db->xTrace ) db->xTrace(db->pTraceArg, zSql);
drh4c504392000-10-16 22:06:40 +0000696 sqliteRunParser(&sParse, zSql, pzErrMsg);
drhdaffd0e2001-04-11 14:28:42 +0000697 if( sqlite_malloc_failed ){
drh41743982003-12-06 21:43:55 +0000698 sqliteSetString(pzErrMsg, "out of memory", (char*)0);
drhdaffd0e2001-04-11 14:28:42 +0000699 sParse.rc = SQLITE_NOMEM;
drh001bbcb2003-03-19 03:14:00 +0000700 sqliteRollbackAll(db);
drh1c2d8412003-03-31 00:30:47 +0000701 sqliteResetInternalSchema(db, 0);
drh001bbcb2003-03-19 03:14:00 +0000702 db->flags &= ~SQLITE_InTrans;
drhdaffd0e2001-04-11 14:28:42 +0000703 }
drh326dce72003-01-29 14:06:07 +0000704 if( sParse.rc==SQLITE_DONE ) sParse.rc = SQLITE_OK;
drhb798fa62002-09-03 19:43:23 +0000705 if( sParse.rc!=SQLITE_OK && pzErrMsg && *pzErrMsg==0 ){
drh41743982003-12-06 21:43:55 +0000706 sqliteSetString(pzErrMsg, sqlite_error_string(sParse.rc), (char*)0);
drhb798fa62002-09-03 19:43:23 +0000707 }
drhdaffd0e2001-04-11 14:28:42 +0000708 sqliteStrRealloc(pzErrMsg);
drh50e5dad2001-09-15 00:57:28 +0000709 if( sParse.rc==SQLITE_SCHEMA ){
drh1c2d8412003-03-31 00:30:47 +0000710 sqliteResetInternalSchema(db, 0);
drh50e5dad2001-09-15 00:57:28 +0000711 }
drha1f9b5e2004-02-14 16:31:02 +0000712 assert( ppVm );
713 *ppVm = (sqlite_vm*)sParse.pVdbe;
714 if( pzTail ) *pzTail = sParse.zTail;
drhc22bd472002-05-10 13:14:07 +0000715 if( sqliteSafetyOff(db) ) goto exec_misuse;
drh4c504392000-10-16 22:06:40 +0000716 return sParse.rc;
drhc22bd472002-05-10 13:14:07 +0000717
718exec_misuse:
719 if( pzErrMsg ){
720 *pzErrMsg = 0;
drh41743982003-12-06 21:43:55 +0000721 sqliteSetString(pzErrMsg, sqlite_error_string(SQLITE_MISUSE), (char*)0);
drhc22bd472002-05-10 13:14:07 +0000722 sqliteStrRealloc(pzErrMsg);
723 }
724 return SQLITE_MISUSE;
drh75897232000-05-29 14:26:00 +0000725}
drh2dfbbca2000-07-28 14:32:48 +0000726
drh50457892003-09-06 01:10:47 +0000727
728/*
drhb86ccfb2003-01-28 23:13:10 +0000729** The following routine destroys a virtual machine that is created by
730** the sqlite_compile() routine.
731**
732** The integer returned is an SQLITE_ success/failure code that describes
733** the result of executing the virtual machine. An error message is
734** written into memory obtained from malloc and *pzErrMsg is made to
735** point to that error if pzErrMsg is not NULL. The calling routine
736** should use sqlite_freemem() to delete the message when it has finished
737** with it.
738*/
739int sqlite_finalize(
740 sqlite_vm *pVm, /* The virtual machine to be destroyed */
741 char **pzErrMsg /* OUT: Write error messages here */
742){
drh483750b2003-01-29 18:46:51 +0000743 int rc = sqliteVdbeFinalize((Vdbe*)pVm, pzErrMsg);
744 sqliteStrRealloc(pzErrMsg);
745 return rc;
drhb86ccfb2003-01-28 23:13:10 +0000746}
747
748/*
drh50457892003-09-06 01:10:47 +0000749** Terminate the current execution of a virtual machine then
750** reset the virtual machine back to its starting state so that it
751** can be reused. Any error message resulting from the prior execution
752** is written into *pzErrMsg. A success code from the prior execution
753** is returned.
danielk1977999af642003-07-22 09:24:43 +0000754*/
755int sqlite_reset(
756 sqlite_vm *pVm, /* The virtual machine to be destroyed */
drh50457892003-09-06 01:10:47 +0000757 char **pzErrMsg /* OUT: Write error messages here */
danielk1977999af642003-07-22 09:24:43 +0000758){
drh50457892003-09-06 01:10:47 +0000759 int rc = sqliteVdbeReset((Vdbe*)pVm, pzErrMsg);
drh7c972de2003-09-06 22:18:07 +0000760 sqliteVdbeMakeReady((Vdbe*)pVm, -1, 0, 0, 0);
danielk1977999af642003-07-22 09:24:43 +0000761 sqliteStrRealloc(pzErrMsg);
762 return rc;
763}
764
765/*
drhc22bd472002-05-10 13:14:07 +0000766** Return a static string that describes the kind of error specified in the
767** argument.
drh247be432002-05-10 05:44:55 +0000768*/
drhc22bd472002-05-10 13:14:07 +0000769const char *sqlite_error_string(int rc){
770 const char *z;
771 switch( rc ){
772 case SQLITE_OK: z = "not an error"; break;
773 case SQLITE_ERROR: z = "SQL logic error or missing database"; break;
774 case SQLITE_INTERNAL: z = "internal SQLite implementation flaw"; break;
775 case SQLITE_PERM: z = "access permission denied"; break;
776 case SQLITE_ABORT: z = "callback requested query abort"; break;
777 case SQLITE_BUSY: z = "database is locked"; break;
778 case SQLITE_LOCKED: z = "database table is locked"; break;
779 case SQLITE_NOMEM: z = "out of memory"; break;
780 case SQLITE_READONLY: z = "attempt to write a readonly database"; break;
781 case SQLITE_INTERRUPT: z = "interrupted"; break;
782 case SQLITE_IOERR: z = "disk I/O error"; break;
783 case SQLITE_CORRUPT: z = "database disk image is malformed"; break;
784 case SQLITE_NOTFOUND: z = "table or record not found"; break;
785 case SQLITE_FULL: z = "database is full"; break;
786 case SQLITE_CANTOPEN: z = "unable to open database file"; break;
787 case SQLITE_PROTOCOL: z = "database locking protocol failure"; break;
788 case SQLITE_EMPTY: z = "table contains no data"; break;
789 case SQLITE_SCHEMA: z = "database schema has changed"; break;
790 case SQLITE_TOOBIG: z = "too much data for one table row"; break;
791 case SQLITE_CONSTRAINT: z = "constraint failed"; break;
792 case SQLITE_MISMATCH: z = "datatype mismatch"; break;
793 case SQLITE_MISUSE: z = "library routine called out of sequence";break;
drh8766c342002-11-09 00:33:15 +0000794 case SQLITE_NOLFS: z = "kernel lacks large file support"; break;
drhed6c8672003-01-12 18:02:16 +0000795 case SQLITE_AUTH: z = "authorization denied"; break;
jplyon892f6712003-06-12 08:59:00 +0000796 case SQLITE_FORMAT: z = "auxiliary database format error"; break;
drh7c972de2003-09-06 22:18:07 +0000797 case SQLITE_RANGE: z = "bind index out of range"; break;
drhc602f9a2004-02-12 19:01:04 +0000798 case SQLITE_NOTADB: z = "file is encrypted or is not a database";break;
drhc22bd472002-05-10 13:14:07 +0000799 default: z = "unknown error"; break;
drh247be432002-05-10 05:44:55 +0000800 }
drhc22bd472002-05-10 13:14:07 +0000801 return z;
drh247be432002-05-10 05:44:55 +0000802}
803
804/*
drh2dfbbca2000-07-28 14:32:48 +0000805** This routine implements a busy callback that sleeps and tries
806** again until a timeout value is reached. The timeout value is
807** an integer number of milliseconds passed in as the first
808** argument.
809*/
drhdaffd0e2001-04-11 14:28:42 +0000810static int sqliteDefaultBusyCallback(
drh2dfbbca2000-07-28 14:32:48 +0000811 void *Timeout, /* Maximum amount of time to wait */
812 const char *NotUsed, /* The name of the table that is busy */
813 int count /* Number of times table has been busy */
814){
drh8cfbf082001-09-19 13:22:39 +0000815#if SQLITE_MIN_SLEEP_MS==1
drhd1bec472004-01-15 13:29:31 +0000816 static const char delays[] =
817 { 1, 2, 5, 10, 15, 20, 25, 25, 25, 50, 50, 50, 100};
818 static const short int totals[] =
819 { 0, 1, 3, 8, 18, 33, 53, 78, 103, 128, 178, 228, 287};
820# define NDELAY (sizeof(delays)/sizeof(delays[0]))
drh2dfbbca2000-07-28 14:32:48 +0000821 int timeout = (int)Timeout;
drhd1bec472004-01-15 13:29:31 +0000822 int delay, prior;
drh2dfbbca2000-07-28 14:32:48 +0000823
drhd1bec472004-01-15 13:29:31 +0000824 if( count <= NDELAY ){
825 delay = delays[count-1];
826 prior = totals[count-1];
827 }else{
828 delay = delays[NDELAY-1];
829 prior = totals[NDELAY-1] + delay*(count-NDELAY-1);
drh2dfbbca2000-07-28 14:32:48 +0000830 }
drhd1bec472004-01-15 13:29:31 +0000831 if( prior + delay > timeout ){
832 delay = timeout - prior;
drh2dfbbca2000-07-28 14:32:48 +0000833 if( delay<=0 ) return 0;
834 }
drh8cfbf082001-09-19 13:22:39 +0000835 sqliteOsSleep(delay);
drh2dfbbca2000-07-28 14:32:48 +0000836 return 1;
837#else
838 int timeout = (int)Timeout;
839 if( (count+1)*1000 > timeout ){
840 return 0;
841 }
drh8cfbf082001-09-19 13:22:39 +0000842 sqliteOsSleep(1000);
drh2dfbbca2000-07-28 14:32:48 +0000843 return 1;
844#endif
845}
846
847/*
848** This routine sets the busy callback for an Sqlite database to the
849** given callback function with the given argument.
850*/
851void sqlite_busy_handler(
852 sqlite *db,
853 int (*xBusy)(void*,const char*,int),
854 void *pArg
855){
856 db->xBusyCallback = xBusy;
857 db->pBusyArg = pArg;
858}
859
danielk1977348bb5d2003-10-18 09:37:26 +0000860#ifndef SQLITE_OMIT_PROGRESS_CALLBACK
861/*
862** This routine sets the progress callback for an Sqlite database to the
863** given callback function with the given argument. The progress callback will
864** be invoked every nOps opcodes.
865*/
866void sqlite_progress_handler(
867 sqlite *db,
868 int nOps,
869 int (*xProgress)(void*),
870 void *pArg
871){
872 if( nOps>0 ){
873 db->xProgress = xProgress;
874 db->nProgressOps = nOps;
875 db->pProgressArg = pArg;
876 }else{
877 db->xProgress = 0;
878 db->nProgressOps = 0;
879 db->pProgressArg = 0;
880 }
881}
882#endif
883
884
drh2dfbbca2000-07-28 14:32:48 +0000885/*
886** This routine installs a default busy handler that waits for the
887** specified number of milliseconds before returning 0.
888*/
889void sqlite_busy_timeout(sqlite *db, int ms){
890 if( ms>0 ){
drhdaffd0e2001-04-11 14:28:42 +0000891 sqlite_busy_handler(db, sqliteDefaultBusyCallback, (void*)ms);
drh2dfbbca2000-07-28 14:32:48 +0000892 }else{
893 sqlite_busy_handler(db, 0, 0);
894 }
895}
drh4c504392000-10-16 22:06:40 +0000896
897/*
898** Cause any pending operation to stop at its earliest opportunity.
899*/
900void sqlite_interrupt(sqlite *db){
901 db->flags |= SQLITE_Interrupt;
902}
drhfa86c412002-02-02 15:01:15 +0000903
904/*
905** Windows systems should call this routine to free memory that
906** is returned in the in the errmsg parameter of sqlite_open() when
907** SQLite is a DLL. For some reason, it does not work to call free()
908** directly.
909**
910** Note that we need to call free() not sqliteFree() here, since every
911** string that is exported from SQLite should have already passed through
912** sqliteStrRealloc().
913*/
914void sqlite_freemem(void *p){ free(p); }
915
916/*
917** Windows systems need functions to call to return the sqlite_version
drhe78e8282003-01-19 03:59:45 +0000918** and sqlite_encoding strings since they are unable to access constants
919** within DLLs.
drhfa86c412002-02-02 15:01:15 +0000920*/
921const char *sqlite_libversion(void){ return sqlite_version; }
922const char *sqlite_libencoding(void){ return sqlite_encoding; }
drh8e0a2f92002-02-23 23:45:45 +0000923
924/*
925** Create new user-defined functions. The sqlite_create_function()
926** routine creates a regular function and sqlite_create_aggregate()
927** creates an aggregate function.
928**
929** Passing a NULL xFunc argument or NULL xStep and xFinalize arguments
930** disables the function. Calling sqlite_create_function() with the
931** same name and number of arguments as a prior call to
932** sqlite_create_aggregate() disables the prior call to
933** sqlite_create_aggregate(), and vice versa.
934**
935** If nArg is -1 it means that this function will accept any number
936** of arguments, including 0.
937*/
938int sqlite_create_function(
939 sqlite *db, /* Add the function to this database connection */
940 const char *zName, /* Name of the function to add */
941 int nArg, /* Number of arguments */
drh1350b032002-02-27 19:00:20 +0000942 void (*xFunc)(sqlite_func*,int,const char**), /* The implementation */
943 void *pUserData /* User data */
drh8e0a2f92002-02-23 23:45:45 +0000944){
drh0bce8352002-02-28 00:41:10 +0000945 FuncDef *p;
drh4b59ab52002-08-24 18:24:51 +0000946 int nName;
drhc22bd472002-05-10 13:14:07 +0000947 if( db==0 || zName==0 || sqliteSafetyCheck(db) ) return 1;
drh4b59ab52002-08-24 18:24:51 +0000948 nName = strlen(zName);
949 if( nName>255 ) return 1;
950 p = sqliteFindFunction(db, zName, nName, nArg, 1);
drh4e0f9952002-02-27 01:53:13 +0000951 if( p==0 ) return 1;
drh8e0a2f92002-02-23 23:45:45 +0000952 p->xFunc = xFunc;
953 p->xStep = 0;
954 p->xFinalize = 0;
drh1350b032002-02-27 19:00:20 +0000955 p->pUserData = pUserData;
drh8e0a2f92002-02-23 23:45:45 +0000956 return 0;
957}
958int sqlite_create_aggregate(
959 sqlite *db, /* Add the function to this database connection */
960 const char *zName, /* Name of the function to add */
961 int nArg, /* Number of arguments */
drh1350b032002-02-27 19:00:20 +0000962 void (*xStep)(sqlite_func*,int,const char**), /* The step function */
963 void (*xFinalize)(sqlite_func*), /* The finalizer */
964 void *pUserData /* User data */
drh8e0a2f92002-02-23 23:45:45 +0000965){
drh0bce8352002-02-28 00:41:10 +0000966 FuncDef *p;
drh4b59ab52002-08-24 18:24:51 +0000967 int nName;
drhc22bd472002-05-10 13:14:07 +0000968 if( db==0 || zName==0 || sqliteSafetyCheck(db) ) return 1;
drh4b59ab52002-08-24 18:24:51 +0000969 nName = strlen(zName);
970 if( nName>255 ) return 1;
971 p = sqliteFindFunction(db, zName, nName, nArg, 1);
drh4e0f9952002-02-27 01:53:13 +0000972 if( p==0 ) return 1;
drh8e0a2f92002-02-23 23:45:45 +0000973 p->xFunc = 0;
974 p->xStep = xStep;
975 p->xFinalize = xFinalize;
drh1350b032002-02-27 19:00:20 +0000976 p->pUserData = pUserData;
drh8e0a2f92002-02-23 23:45:45 +0000977 return 0;
978}
drhc9b84a12002-06-20 11:36:48 +0000979
980/*
drh411995d2002-06-25 19:31:18 +0000981** Change the datatype for all functions with a given name. See the
982** header comment for the prototype of this function in sqlite.h for
983** additional information.
drhc9b84a12002-06-20 11:36:48 +0000984*/
985int sqlite_function_type(sqlite *db, const char *zName, int dataType){
986 FuncDef *p = (FuncDef*)sqliteHashFind(&db->aFunc, zName, strlen(zName));
987 while( p ){
988 p->dataType = dataType;
989 p = p->pNext;
990 }
drhf46f9052002-06-22 02:33:38 +0000991 return SQLITE_OK;
drhc9b84a12002-06-20 11:36:48 +0000992}
drh411995d2002-06-25 19:31:18 +0000993
994/*
drh18de4822003-01-16 16:28:53 +0000995** Register a trace function. The pArg from the previously registered trace
996** is returned.
997**
998** A NULL trace function means that no tracing is executes. A non-NULL
999** trace is a pointer to a function that is invoked at the start of each
1000** sqlite_exec().
1001*/
1002void *sqlite_trace(sqlite *db, void (*xTrace)(void*,const char*), void *pArg){
drh18de4822003-01-16 16:28:53 +00001003 void *pOld = db->pTraceArg;
1004 db->xTrace = xTrace;
1005 db->pTraceArg = pArg;
1006 return pOld;
drh0d1a6432003-04-03 15:46:04 +00001007}
paulb0208cc2003-04-13 18:26:49 +00001008
drhaa940ea2004-01-15 02:44:03 +00001009/*** EXPERIMENTAL ***
1010**
1011** Register a function to be invoked when a transaction comments.
1012** If either function returns non-zero, then the commit becomes a
1013** rollback.
1014*/
1015void *sqlite_commit_hook(
1016 sqlite *db, /* Attach the hook to this database */
1017 int (*xCallback)(void*), /* Function to invoke on each commit */
1018 void *pArg /* Argument to the function */
1019){
1020 void *pOld = db->pCommitArg;
1021 db->xCommitCallback = xCallback;
1022 db->pCommitArg = pArg;
1023 return pOld;
1024}
1025
1026
paulb0208cc2003-04-13 18:26:49 +00001027/*
drh13bff812003-04-15 01:19:47 +00001028** This routine is called to create a connection to a database BTree
1029** driver. If zFilename is the name of a file, then that file is
1030** opened and used. If zFilename is the magic name ":memory:" then
1031** the database is stored in memory (and is thus forgotten as soon as
1032** the connection is closed.) If zFilename is NULL then the database
1033** is for temporary use only and is deleted as soon as the connection
1034** is closed.
1035**
drh13bff812003-04-15 01:19:47 +00001036** A temporary database can be either a disk file (that is automatically
1037** deleted when the file is closed) or a set of red-black trees held in memory,
1038** depending on the values of the TEMP_STORE compile-time macro and the
1039** db->temp_store variable, according to the following chart:
1040**
1041** TEMP_STORE db->temp_store Location of temporary database
1042** ---------- -------------- ------------------------------
1043** 0 any file
1044** 1 1 file
1045** 1 2 memory
1046** 1 0 file
1047** 2 1 file
1048** 2 2 memory
1049** 2 0 memory
1050** 3 any memory
paulb0208cc2003-04-13 18:26:49 +00001051*/
1052int sqliteBtreeFactory(
1053 const sqlite *db, /* Main database when opening aux otherwise 0 */
1054 const char *zFilename, /* Name of the file containing the BTree database */
1055 int omitJournal, /* if TRUE then do not journal this file */
1056 int nCache, /* How many pages in the page cache */
1057 Btree **ppBtree){ /* Pointer to new Btree object written here */
1058
paulb0208cc2003-04-13 18:26:49 +00001059 assert( ppBtree != 0);
1060
drh13bff812003-04-15 01:19:47 +00001061#ifndef SQLITE_OMIT_INMEMORYDB
1062 if( zFilename==0 ){
1063 if (TEMP_STORE == 0) {
paulb0208cc2003-04-13 18:26:49 +00001064 /* Always use file based temporary DB */
1065 return sqliteBtreeOpen(0, omitJournal, nCache, ppBtree);
drh13bff812003-04-15 01:19:47 +00001066 } else if (TEMP_STORE == 1 || TEMP_STORE == 2) {
paulb0208cc2003-04-13 18:26:49 +00001067 /* Switch depending on compile-time and/or runtime settings. */
drh13bff812003-04-15 01:19:47 +00001068 int location = db->temp_store==0 ? TEMP_STORE : db->temp_store;
paulb0208cc2003-04-13 18:26:49 +00001069
1070 if (location == 1) {
1071 return sqliteBtreeOpen(zFilename, omitJournal, nCache, ppBtree);
1072 } else {
drh8bf8dc92003-05-17 17:35:10 +00001073 return sqliteRbtreeOpen(0, 0, 0, ppBtree);
paulb0208cc2003-04-13 18:26:49 +00001074 }
1075 } else {
1076 /* Always use in-core DB */
drh8bf8dc92003-05-17 17:35:10 +00001077 return sqliteRbtreeOpen(0, 0, 0, ppBtree);
paulb0208cc2003-04-13 18:26:49 +00001078 }
drh13bff812003-04-15 01:19:47 +00001079 }else if( zFilename[0]==':' && strcmp(zFilename,":memory:")==0 ){
drh8bf8dc92003-05-17 17:35:10 +00001080 return sqliteRbtreeOpen(0, 0, 0, ppBtree);
drh13bff812003-04-15 01:19:47 +00001081 }else
1082#endif
1083 {
paulb0208cc2003-04-13 18:26:49 +00001084 return sqliteBtreeOpen(zFilename, omitJournal, nCache, ppBtree);
1085 }
1086}