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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*************************************************************************
drhb19a2bc2001-09-16 00:13:26 +000012** This file contains C code routines that are called by the SQLite parser
13** when syntax rules are reduced. The routines in this file handle the
14** following kinds of SQL syntax:
drh75897232000-05-29 14:26:00 +000015**
drhbed86902000-06-02 13:27:59 +000016** CREATE TABLE
17** DROP TABLE
18** CREATE INDEX
19** DROP INDEX
drh832508b2002-03-02 17:04:07 +000020** creating ID lists
drhb19a2bc2001-09-16 00:13:26 +000021** BEGIN TRANSACTION
22** COMMIT
23** ROLLBACK
drh75897232000-05-29 14:26:00 +000024*/
25#include "sqliteInt.h"
26
27/*
drhe0bc4042002-06-25 01:09:11 +000028** This routine is called when a new SQL statement is beginning to
drh23bf66d2004-12-14 03:34:34 +000029** be parsed. Initialize the pParse structure as needed.
drhe0bc4042002-06-25 01:09:11 +000030*/
danielk19774adee202004-05-08 08:23:19 +000031void sqlite3BeginParse(Parse *pParse, int explainFlag){
drh1bd10f82008-12-10 21:19:56 +000032 pParse->explain = (u8)explainFlag;
drh7c972de2003-09-06 22:18:07 +000033 pParse->nVar = 0;
drhe0bc4042002-06-25 01:09:11 +000034}
35
danielk1977c00da102006-01-07 13:21:04 +000036#ifndef SQLITE_OMIT_SHARED_CACHE
37/*
38** The TableLock structure is only used by the sqlite3TableLock() and
39** codeTableLocks() functions.
40*/
41struct TableLock {
drhd698bc12006-03-23 23:33:26 +000042 int iDb; /* The database containing the table to be locked */
43 int iTab; /* The root page of the table to be locked */
44 u8 isWriteLock; /* True for write lock. False for a read lock */
45 const char *zName; /* Name of the table */
danielk1977c00da102006-01-07 13:21:04 +000046};
47
48/*
drhd698bc12006-03-23 23:33:26 +000049** Record the fact that we want to lock a table at run-time.
danielk1977c00da102006-01-07 13:21:04 +000050**
drhd698bc12006-03-23 23:33:26 +000051** The table to be locked has root page iTab and is found in database iDb.
52** A read or a write lock can be taken depending on isWritelock.
53**
54** This routine just records the fact that the lock is desired. The
55** code to make the lock occur is generated by a later call to
56** codeTableLocks() which occurs during sqlite3FinishCoding().
danielk1977c00da102006-01-07 13:21:04 +000057*/
58void sqlite3TableLock(
drhd698bc12006-03-23 23:33:26 +000059 Parse *pParse, /* Parsing context */
60 int iDb, /* Index of the database containing the table to lock */
61 int iTab, /* Root page number of the table to be locked */
62 u8 isWriteLock, /* True for a write lock */
63 const char *zName /* Name of the table to be locked */
danielk1977c00da102006-01-07 13:21:04 +000064){
dan65a7cd12009-09-01 12:16:01 +000065 Parse *pToplevel = sqlite3ParseToplevel(pParse);
danielk1977c00da102006-01-07 13:21:04 +000066 int i;
67 int nBytes;
68 TableLock *p;
drh8af73d42009-05-13 22:58:28 +000069 assert( iDb>=0 );
dan165921a2009-08-28 18:53:45 +000070
dan65a7cd12009-09-01 12:16:01 +000071 for(i=0; i<pToplevel->nTableLock; i++){
72 p = &pToplevel->aTableLock[i];
danielk1977c00da102006-01-07 13:21:04 +000073 if( p->iDb==iDb && p->iTab==iTab ){
74 p->isWriteLock = (p->isWriteLock || isWriteLock);
75 return;
76 }
77 }
78
dan65a7cd12009-09-01 12:16:01 +000079 nBytes = sizeof(TableLock) * (pToplevel->nTableLock+1);
80 pToplevel->aTableLock =
81 sqlite3DbReallocOrFree(pToplevel->db, pToplevel->aTableLock, nBytes);
82 if( pToplevel->aTableLock ){
83 p = &pToplevel->aTableLock[pToplevel->nTableLock++];
danielk1977c00da102006-01-07 13:21:04 +000084 p->iDb = iDb;
85 p->iTab = iTab;
86 p->isWriteLock = isWriteLock;
87 p->zName = zName;
drhf3a65f72007-08-22 20:18:21 +000088 }else{
dan65a7cd12009-09-01 12:16:01 +000089 pToplevel->nTableLock = 0;
90 pToplevel->db->mallocFailed = 1;
danielk1977c00da102006-01-07 13:21:04 +000091 }
92}
93
94/*
95** Code an OP_TableLock instruction for each table locked by the
96** statement (configured by calls to sqlite3TableLock()).
97*/
98static void codeTableLocks(Parse *pParse){
99 int i;
100 Vdbe *pVdbe;
danielk1977c00da102006-01-07 13:21:04 +0000101
drh04491712009-05-13 17:21:13 +0000102 pVdbe = sqlite3GetVdbe(pParse);
103 assert( pVdbe!=0 ); /* sqlite3GetVdbe cannot fail: VDBE already allocated */
danielk1977c00da102006-01-07 13:21:04 +0000104
105 for(i=0; i<pParse->nTableLock; i++){
106 TableLock *p = &pParse->aTableLock[i];
107 int p1 = p->iDb;
drh6a9ad3d2008-04-02 16:29:30 +0000108 sqlite3VdbeAddOp4(pVdbe, OP_TableLock, p1, p->iTab, p->isWriteLock,
109 p->zName, P4_STATIC);
danielk1977c00da102006-01-07 13:21:04 +0000110 }
111}
112#else
113 #define codeTableLocks(x)
114#endif
115
drhe0bc4042002-06-25 01:09:11 +0000116/*
drh75897232000-05-29 14:26:00 +0000117** This routine is called after a single SQL statement has been
drh80242052004-06-09 00:48:12 +0000118** parsed and a VDBE program to execute that statement has been
119** prepared. This routine puts the finishing touches on the
120** VDBE program and resets the pParse structure for the next
121** parse.
drh75897232000-05-29 14:26:00 +0000122**
123** Note that if an error occurred, it might be the case that
124** no VDBE code was generated.
125*/
drh80242052004-06-09 00:48:12 +0000126void sqlite3FinishCoding(Parse *pParse){
drh9bb575f2004-09-06 17:24:11 +0000127 sqlite3 *db;
drh80242052004-06-09 00:48:12 +0000128 Vdbe *v;
drhb86ccfb2003-01-28 23:13:10 +0000129
drh17435752007-08-16 04:30:38 +0000130 db = pParse->db;
131 if( db->mallocFailed ) return;
drh205f48e2004-11-05 00:43:11 +0000132 if( pParse->nested ) return;
drhc4dd3fd2008-01-22 01:48:05 +0000133 if( pParse->nErr ) return;
danielk197748d0d862005-02-01 03:09:52 +0000134
drh80242052004-06-09 00:48:12 +0000135 /* Begin by generating some termination code at the end of the
136 ** vdbe program
137 */
drh80242052004-06-09 00:48:12 +0000138 v = sqlite3GetVdbe(pParse);
danf3677212009-09-10 16:14:50 +0000139 assert( !pParse->isMultiWrite
140 || sqlite3VdbeAssertMayAbort(v, pParse->mayAbort));
drh80242052004-06-09 00:48:12 +0000141 if( v ){
drh66a51672008-01-03 00:01:23 +0000142 sqlite3VdbeAddOp0(v, OP_Halt);
drh0e3d7472004-06-19 17:33:07 +0000143
144 /* The cookie mask contains one bit for each database file open.
145 ** (Bit 0 is for main, bit 1 is for temp, and so forth.) Bits are
146 ** set for each database that is used. Generate code to start a
147 ** transaction on each used database and to verify the schema cookie
148 ** on each used database.
149 */
drhc275b4e2004-07-19 17:25:24 +0000150 if( pParse->cookieGoto>0 ){
drh64123582011-04-02 20:01:02 +0000151 yDbMask mask;
drh26e4a8b2008-05-01 17:16:52 +0000152 int iDb;
drhd654be82005-09-20 17:42:23 +0000153 sqlite3VdbeJumpHere(v, pParse->cookieGoto-1);
drh80242052004-06-09 00:48:12 +0000154 for(iDb=0, mask=1; iDb<db->nDb; mask<<=1, iDb++){
155 if( (mask & pParse->cookieMask)==0 ) continue;
drhfb982642007-08-30 01:19:59 +0000156 sqlite3VdbeUsesBtree(v, iDb);
drh66a51672008-01-03 00:01:23 +0000157 sqlite3VdbeAddOp2(v,OP_Transaction, iDb, (mask & pParse->writeMask)!=0);
drh8a939192009-04-20 17:43:03 +0000158 if( db->init.busy==0 ){
drh21206082011-04-04 18:22:02 +0000159 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
drhc2a75552011-03-18 21:55:46 +0000160 sqlite3VdbeAddOp3(v, OP_VerifyCookie,
161 iDb, pParse->cookieValue[iDb],
162 db->aDb[iDb].pSchema->iGeneration);
drh8a939192009-04-20 17:43:03 +0000163 }
drh80242052004-06-09 00:48:12 +0000164 }
danielk1977f9e7dda2006-06-16 16:08:53 +0000165#ifndef SQLITE_OMIT_VIRTUALTABLE
drh26e4a8b2008-05-01 17:16:52 +0000166 {
167 int i;
168 for(i=0; i<pParse->nVtabLock; i++){
danielk1977595a5232009-07-24 17:58:53 +0000169 char *vtab = (char *)sqlite3GetVTable(db, pParse->apVtabLock[i]);
drh26e4a8b2008-05-01 17:16:52 +0000170 sqlite3VdbeAddOp4(v, OP_VBegin, 0, 0, 0, vtab, P4_VTAB);
171 }
172 pParse->nVtabLock = 0;
danielk1977f9e7dda2006-06-16 16:08:53 +0000173 }
174#endif
danielk1977c00da102006-01-07 13:21:04 +0000175
176 /* Once all the cookies have been verified and transactions opened,
177 ** obtain the required table-locks. This is a no-op unless the
178 ** shared-cache feature is enabled.
179 */
180 codeTableLocks(pParse);
drh0b9f50d2009-06-23 20:28:53 +0000181
182 /* Initialize any AUTOINCREMENT data structures required.
183 */
184 sqlite3AutoincrementBegin(pParse);
185
186 /* Finally, jump back to the beginning of the executable code. */
drh66a51672008-01-03 00:01:23 +0000187 sqlite3VdbeAddOp2(v, OP_Goto, 0, pParse->cookieGoto);
drh80242052004-06-09 00:48:12 +0000188 }
drh71c697e2004-08-08 23:39:19 +0000189 }
190
drh3f7d4e42004-07-24 14:35:58 +0000191
drh80242052004-06-09 00:48:12 +0000192 /* Get the VDBE program ready for execution
193 */
drh04491712009-05-13 17:21:13 +0000194 if( v && ALWAYS(pParse->nErr==0) && !db->mallocFailed ){
drhcf1023c2007-05-08 20:59:49 +0000195#ifdef SQLITE_DEBUG
drhb86ccfb2003-01-28 23:13:10 +0000196 FILE *trace = (db->flags & SQLITE_VdbeTrace)!=0 ? stdout : 0;
danielk19774adee202004-05-08 08:23:19 +0000197 sqlite3VdbeTrace(v, trace);
drhcf1023c2007-05-08 20:59:49 +0000198#endif
drhceea3322009-04-23 13:22:42 +0000199 assert( pParse->iCacheLevel==0 ); /* Disables and re-enables match */
drh3492dd72009-09-14 23:47:24 +0000200 /* A minimum of one cursor is required if autoincrement is used
201 * See ticket [a696379c1f08866] */
202 if( pParse->pAinc!=0 && pParse->nTab==0 ) pParse->nTab = 1;
drh124c0b42011-06-01 18:15:55 +0000203 sqlite3VdbeMakeReady(v, pParse);
danielk1977441daf62005-02-01 03:46:43 +0000204 pParse->rc = SQLITE_DONE;
drhd8bc7082000-06-07 23:51:50 +0000205 pParse->colNamesSet = 0;
drhe294da02010-02-25 23:44:15 +0000206 }else{
drh483750b2003-01-29 18:46:51 +0000207 pParse->rc = SQLITE_ERROR;
drh75897232000-05-29 14:26:00 +0000208 }
drha226d052002-09-25 19:04:07 +0000209 pParse->nTab = 0;
210 pParse->nMem = 0;
211 pParse->nSet = 0;
drh7c972de2003-09-06 22:18:07 +0000212 pParse->nVar = 0;
drh80242052004-06-09 00:48:12 +0000213 pParse->cookieMask = 0;
drhc275b4e2004-07-19 17:25:24 +0000214 pParse->cookieGoto = 0;
drh75897232000-05-29 14:26:00 +0000215}
216
217/*
drh205f48e2004-11-05 00:43:11 +0000218** Run the parser and code generator recursively in order to generate
219** code for the SQL statement given onto the end of the pParse context
220** currently under construction. When the parser is run recursively
221** this way, the final OP_Halt is not appended and other initialization
222** and finalization steps are omitted because those are handling by the
223** outermost parser.
224**
225** Not everything is nestable. This facility is designed to permit
226** INSERT, UPDATE, and DELETE operations against SQLITE_MASTER. Use
drhf1974842004-11-05 03:56:00 +0000227** care if you decide to try to use this routine for some other purposes.
drh205f48e2004-11-05 00:43:11 +0000228*/
229void sqlite3NestedParse(Parse *pParse, const char *zFormat, ...){
230 va_list ap;
231 char *zSql;
drhfb45d8c2008-07-08 00:06:49 +0000232 char *zErrMsg = 0;
drh633e6d52008-07-28 19:34:53 +0000233 sqlite3 *db = pParse->db;
drhf1974842004-11-05 03:56:00 +0000234# define SAVE_SZ (sizeof(Parse) - offsetof(Parse,nVar))
235 char saveBuf[SAVE_SZ];
236
drh205f48e2004-11-05 00:43:11 +0000237 if( pParse->nErr ) return;
238 assert( pParse->nested<10 ); /* Nesting should only be of limited depth */
239 va_start(ap, zFormat);
drh633e6d52008-07-28 19:34:53 +0000240 zSql = sqlite3VMPrintf(db, zFormat, ap);
drh205f48e2004-11-05 00:43:11 +0000241 va_end(ap);
drh73c42a12004-11-20 18:13:10 +0000242 if( zSql==0 ){
243 return; /* A malloc must have failed */
244 }
drh205f48e2004-11-05 00:43:11 +0000245 pParse->nested++;
drhf1974842004-11-05 03:56:00 +0000246 memcpy(saveBuf, &pParse->nVar, SAVE_SZ);
247 memset(&pParse->nVar, 0, SAVE_SZ);
drhfb45d8c2008-07-08 00:06:49 +0000248 sqlite3RunParser(pParse, zSql, &zErrMsg);
drh633e6d52008-07-28 19:34:53 +0000249 sqlite3DbFree(db, zErrMsg);
250 sqlite3DbFree(db, zSql);
drhf1974842004-11-05 03:56:00 +0000251 memcpy(&pParse->nVar, saveBuf, SAVE_SZ);
drh205f48e2004-11-05 00:43:11 +0000252 pParse->nested--;
253}
254
255/*
danielk19778a414492004-06-29 08:59:35 +0000256** Locate the in-memory structure that describes a particular database
257** table given the name of that table and (optionally) the name of the
258** database containing the table. Return NULL if not found.
drha69d9162003-04-17 22:57:53 +0000259**
danielk19778a414492004-06-29 08:59:35 +0000260** If zDatabase is 0, all databases are searched for the table and the
261** first matching table is returned. (No checking for duplicate table
262** names is done.) The search order is TEMP first, then MAIN, then any
263** auxiliary databases added using the ATTACH command.
drhf26e09c2003-05-31 16:21:12 +0000264**
danielk19774adee202004-05-08 08:23:19 +0000265** See also sqlite3LocateTable().
drh75897232000-05-29 14:26:00 +0000266*/
drh9bb575f2004-09-06 17:24:11 +0000267Table *sqlite3FindTable(sqlite3 *db, const char *zName, const char *zDatabase){
drhd24cc422003-03-27 12:51:24 +0000268 Table *p = 0;
269 int i;
drh0a687d12008-07-08 14:52:07 +0000270 int nName;
drh645f63e2004-06-22 13:22:40 +0000271 assert( zName!=0 );
drhdee0e402009-05-03 20:23:53 +0000272 nName = sqlite3Strlen30(zName);
drh21206082011-04-04 18:22:02 +0000273 /* All mutexes are required for schema access. Make sure we hold them. */
274 assert( zDatabase!=0 || sqlite3BtreeHoldsAllMutexes(db) );
danielk197753c0f742005-03-29 03:10:59 +0000275 for(i=OMIT_TEMPDB; i<db->nDb; i++){
drh812d7a22003-03-27 13:50:00 +0000276 int j = (i<2) ? i^1 : i; /* Search TEMP before MAIN */
danielk19774adee202004-05-08 08:23:19 +0000277 if( zDatabase!=0 && sqlite3StrICmp(zDatabase, db->aDb[j].zName) ) continue;
drh21206082011-04-04 18:22:02 +0000278 assert( sqlite3SchemaMutexHeld(db, j, 0) );
drh0a687d12008-07-08 14:52:07 +0000279 p = sqlite3HashFind(&db->aDb[j].pSchema->tblHash, zName, nName);
drhd24cc422003-03-27 12:51:24 +0000280 if( p ) break;
281 }
drh74e24cd2002-01-09 03:19:59 +0000282 return p;
drh75897232000-05-29 14:26:00 +0000283}
284
285/*
danielk19778a414492004-06-29 08:59:35 +0000286** Locate the in-memory structure that describes a particular database
287** table given the name of that table and (optionally) the name of the
288** database containing the table. Return NULL if not found. Also leave an
289** error message in pParse->zErrMsg.
drha69d9162003-04-17 22:57:53 +0000290**
danielk19778a414492004-06-29 08:59:35 +0000291** The difference between this routine and sqlite3FindTable() is that this
292** routine leaves an error message in pParse->zErrMsg where
293** sqlite3FindTable() does not.
drha69d9162003-04-17 22:57:53 +0000294*/
drhca424112008-01-25 15:04:48 +0000295Table *sqlite3LocateTable(
296 Parse *pParse, /* context in which to report errors */
297 int isView, /* True if looking for a VIEW rather than a TABLE */
298 const char *zName, /* Name of the table we are looking for */
299 const char *zDbase /* Name of the database. Might be NULL */
300){
drha69d9162003-04-17 22:57:53 +0000301 Table *p;
drhf26e09c2003-05-31 16:21:12 +0000302
danielk19778a414492004-06-29 08:59:35 +0000303 /* Read the database schema. If an error occurs, leave an error message
304 ** and code in pParse and return NULL. */
305 if( SQLITE_OK!=sqlite3ReadSchema(pParse) ){
306 return 0;
307 }
308
danielk19774adee202004-05-08 08:23:19 +0000309 p = sqlite3FindTable(pParse->db, zName, zDbase);
drha69d9162003-04-17 22:57:53 +0000310 if( p==0 ){
drhca424112008-01-25 15:04:48 +0000311 const char *zMsg = isView ? "no such view" : "no such table";
danielk19778a414492004-06-29 08:59:35 +0000312 if( zDbase ){
drhca424112008-01-25 15:04:48 +0000313 sqlite3ErrorMsg(pParse, "%s: %s.%s", zMsg, zDbase, zName);
drha69d9162003-04-17 22:57:53 +0000314 }else{
drhca424112008-01-25 15:04:48 +0000315 sqlite3ErrorMsg(pParse, "%s: %s", zMsg, zName);
drha69d9162003-04-17 22:57:53 +0000316 }
drha6ecd332004-06-10 00:29:09 +0000317 pParse->checkSchema = 1;
drha69d9162003-04-17 22:57:53 +0000318 }
319 return p;
320}
321
322/*
323** Locate the in-memory structure that describes
324** a particular index given the name of that index
325** and the name of the database that contains the index.
drhf57b3392001-10-08 13:22:32 +0000326** Return NULL if not found.
drhf26e09c2003-05-31 16:21:12 +0000327**
328** If zDatabase is 0, all databases are searched for the
329** table and the first matching index is returned. (No checking
330** for duplicate index names is done.) The search order is
331** TEMP first, then MAIN, then any auxiliary databases added
332** using the ATTACH command.
drh75897232000-05-29 14:26:00 +0000333*/
drh9bb575f2004-09-06 17:24:11 +0000334Index *sqlite3FindIndex(sqlite3 *db, const char *zName, const char *zDb){
drhd24cc422003-03-27 12:51:24 +0000335 Index *p = 0;
336 int i;
drhdee0e402009-05-03 20:23:53 +0000337 int nName = sqlite3Strlen30(zName);
drh21206082011-04-04 18:22:02 +0000338 /* All mutexes are required for schema access. Make sure we hold them. */
339 assert( zDb!=0 || sqlite3BtreeHoldsAllMutexes(db) );
danielk197753c0f742005-03-29 03:10:59 +0000340 for(i=OMIT_TEMPDB; i<db->nDb; i++){
drh812d7a22003-03-27 13:50:00 +0000341 int j = (i<2) ? i^1 : i; /* Search TEMP before MAIN */
danielk1977e501b892006-01-09 06:29:47 +0000342 Schema *pSchema = db->aDb[j].pSchema;
drh04491712009-05-13 17:21:13 +0000343 assert( pSchema );
danielk19774adee202004-05-08 08:23:19 +0000344 if( zDb && sqlite3StrICmp(zDb, db->aDb[j].zName) ) continue;
drh21206082011-04-04 18:22:02 +0000345 assert( sqlite3SchemaMutexHeld(db, j, 0) );
drh04491712009-05-13 17:21:13 +0000346 p = sqlite3HashFind(&pSchema->idxHash, zName, nName);
drhd24cc422003-03-27 12:51:24 +0000347 if( p ) break;
348 }
drh74e24cd2002-01-09 03:19:59 +0000349 return p;
drh75897232000-05-29 14:26:00 +0000350}
351
352/*
drh956bc922004-07-24 17:38:29 +0000353** Reclaim the memory used by an index
354*/
dan1feeaed2010-07-23 15:41:47 +0000355static void freeIndex(sqlite3 *db, Index *p){
drh92aa5ea2009-09-11 14:05:06 +0000356#ifndef SQLITE_OMIT_ANALYZE
dand46def72010-07-24 11:28:28 +0000357 sqlite3DeleteIndexSamples(db, p);
drh92aa5ea2009-09-11 14:05:06 +0000358#endif
drh633e6d52008-07-28 19:34:53 +0000359 sqlite3DbFree(db, p->zColAff);
360 sqlite3DbFree(db, p);
drh956bc922004-07-24 17:38:29 +0000361}
362
363/*
drhc96d8532005-05-03 12:30:33 +0000364** For the index called zIdxName which is found in the database iDb,
365** unlike that index from its Table then remove the index from
366** the index hash table and free all memory structures associated
367** with the index.
drh5e00f6c2001-09-13 13:46:56 +0000368*/
drh9bb575f2004-09-06 17:24:11 +0000369void sqlite3UnlinkAndDeleteIndex(sqlite3 *db, int iDb, const char *zIdxName){
drh956bc922004-07-24 17:38:29 +0000370 Index *pIndex;
371 int len;
drh21206082011-04-04 18:22:02 +0000372 Hash *pHash;
drh956bc922004-07-24 17:38:29 +0000373
drh21206082011-04-04 18:22:02 +0000374 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
375 pHash = &db->aDb[iDb].pSchema->idxHash;
drhdee0e402009-05-03 20:23:53 +0000376 len = sqlite3Strlen30(zIdxName);
drha83ccca2009-04-28 13:01:09 +0000377 pIndex = sqlite3HashInsert(pHash, zIdxName, len, 0);
drh22645842011-03-24 01:34:03 +0000378 if( ALWAYS(pIndex) ){
drh956bc922004-07-24 17:38:29 +0000379 if( pIndex->pTable->pIndex==pIndex ){
380 pIndex->pTable->pIndex = pIndex->pNext;
381 }else{
382 Index *p;
drh04491712009-05-13 17:21:13 +0000383 /* Justification of ALWAYS(); The index must be on the list of
384 ** indices. */
385 p = pIndex->pTable->pIndex;
386 while( ALWAYS(p) && p->pNext!=pIndex ){ p = p->pNext; }
387 if( ALWAYS(p && p->pNext==pIndex) ){
drh956bc922004-07-24 17:38:29 +0000388 p->pNext = pIndex->pNext;
389 }
drh5e00f6c2001-09-13 13:46:56 +0000390 }
dan1feeaed2010-07-23 15:41:47 +0000391 freeIndex(db, pIndex);
drh5e00f6c2001-09-13 13:46:56 +0000392 }
drh956bc922004-07-24 17:38:29 +0000393 db->flags |= SQLITE_InternChanges;
drh5e00f6c2001-09-13 13:46:56 +0000394}
395
396/*
drhe0bc4042002-06-25 01:09:11 +0000397** Erase all schema information from the in-memory hash tables of
drh234c39d2004-07-24 03:30:47 +0000398** a single database. This routine is called to reclaim memory
399** before the database closes. It is also called during a rollback
danielk1977e0d4b062004-06-28 01:11:46 +0000400** if there were schema changes during the transaction or if a
401** schema-cookie mismatch occurs.
drh1c2d8412003-03-31 00:30:47 +0000402**
drhc7792fa2011-04-02 16:28:52 +0000403** If iDb<0 then reset the internal schema tables for all database
404** files. If iDb>=0 then reset the internal schema for only the
jplyoncfa56842004-01-19 04:55:56 +0000405** single file indicated.
drh74e24cd2002-01-09 03:19:59 +0000406*/
drh9bb575f2004-09-06 17:24:11 +0000407void sqlite3ResetInternalSchema(sqlite3 *db, int iDb){
drh1c2d8412003-03-31 00:30:47 +0000408 int i, j;
drhc7792fa2011-04-02 16:28:52 +0000409 assert( iDb<db->nDb );
danielk19774eab8b72007-12-27 15:12:16 +0000410
drhc7792fa2011-04-02 16:28:52 +0000411 if( iDb>=0 ){
412 /* Case 1: Reset the single schema identified by iDb */
413 Db *pDb = &db->aDb[iDb];
drh21206082011-04-04 18:22:02 +0000414 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
drhd3ef5ae2011-04-05 19:26:30 +0000415 assert( pDb->pSchema!=0 );
416 sqlite3SchemaClear(pDb->pSchema);
417
drhff2e14b2011-04-02 16:50:25 +0000418 /* If any database other than TEMP is reset, then also reset TEMP
419 ** since TEMP might be holding triggers that reference tables in the
420 ** other database.
421 */
drhd3ef5ae2011-04-05 19:26:30 +0000422 if( iDb!=1 ){
423 pDb = &db->aDb[1];
424 assert( pDb->pSchema!=0 );
drhb6ee6602011-04-04 13:40:53 +0000425 sqlite3SchemaClear(pDb->pSchema);
drhff2e14b2011-04-02 16:50:25 +0000426 }
drhc7792fa2011-04-02 16:28:52 +0000427 return;
danielk19774eab8b72007-12-27 15:12:16 +0000428 }
drhc7792fa2011-04-02 16:28:52 +0000429 /* Case 2 (from here to the end): Reset all schemas for all attached
430 ** databases. */
431 assert( iDb<0 );
432 sqlite3BtreeEnterAll(db);
433 for(i=0; i<db->nDb; i++){
drhd24cc422003-03-27 12:51:24 +0000434 Db *pDb = &db->aDb[i];
danielk1977da184232006-01-05 11:34:32 +0000435 if( pDb->pSchema ){
drhb6ee6602011-04-04 13:40:53 +0000436 sqlite3SchemaClear(pDb->pSchema);
drhd24cc422003-03-27 12:51:24 +0000437 }
drh74e24cd2002-01-09 03:19:59 +0000438 }
drh1c2d8412003-03-31 00:30:47 +0000439 db->flags &= ~SQLITE_InternChanges;
danielk1977595a5232009-07-24 17:58:53 +0000440 sqlite3VtabUnlockList(db);
danielk19774eab8b72007-12-27 15:12:16 +0000441 sqlite3BtreeLeaveAll(db);
drh1c2d8412003-03-31 00:30:47 +0000442
443 /* If one or more of the auxiliary database files has been closed,
danielk1977311019b2006-01-10 07:14:23 +0000444 ** then remove them from the auxiliary database list. We take the
drh1c2d8412003-03-31 00:30:47 +0000445 ** opportunity to do this here since we have just deleted all of the
446 ** schema hash tables and therefore do not have to make any changes
447 ** to any of those tables.
448 */
449 for(i=j=2; i<db->nDb; i++){
drh4d189ca2004-02-12 18:46:38 +0000450 struct Db *pDb = &db->aDb[i];
451 if( pDb->pBt==0 ){
drh633e6d52008-07-28 19:34:53 +0000452 sqlite3DbFree(db, pDb->zName);
drh4d189ca2004-02-12 18:46:38 +0000453 pDb->zName = 0;
drh1c2d8412003-03-31 00:30:47 +0000454 continue;
455 }
456 if( j<i ){
drh8bf8dc92003-05-17 17:35:10 +0000457 db->aDb[j] = db->aDb[i];
drh1c2d8412003-03-31 00:30:47 +0000458 }
drh8bf8dc92003-05-17 17:35:10 +0000459 j++;
drh1c2d8412003-03-31 00:30:47 +0000460 }
461 memset(&db->aDb[j], 0, (db->nDb-j)*sizeof(db->aDb[j]));
462 db->nDb = j;
463 if( db->nDb<=2 && db->aDb!=db->aDbStatic ){
464 memcpy(db->aDbStatic, db->aDb, 2*sizeof(db->aDb[0]));
drh633e6d52008-07-28 19:34:53 +0000465 sqlite3DbFree(db, db->aDb);
drh1c2d8412003-03-31 00:30:47 +0000466 db->aDb = db->aDbStatic;
467 }
drhe0bc4042002-06-25 01:09:11 +0000468}
469
470/*
drhe0bc4042002-06-25 01:09:11 +0000471** This routine is called when a commit occurs.
472*/
drh9bb575f2004-09-06 17:24:11 +0000473void sqlite3CommitInternalChanges(sqlite3 *db){
drhe0bc4042002-06-25 01:09:11 +0000474 db->flags &= ~SQLITE_InternChanges;
drh74e24cd2002-01-09 03:19:59 +0000475}
476
477/*
dand46def72010-07-24 11:28:28 +0000478** Delete memory allocated for the column names of a table or view (the
479** Table.aCol[] array).
drh956bc922004-07-24 17:38:29 +0000480*/
dand46def72010-07-24 11:28:28 +0000481static void sqliteDeleteColumnNames(sqlite3 *db, Table *pTable){
drh956bc922004-07-24 17:38:29 +0000482 int i;
483 Column *pCol;
484 assert( pTable!=0 );
drhdd5b2fa2005-03-28 03:39:55 +0000485 if( (pCol = pTable->aCol)!=0 ){
486 for(i=0; i<pTable->nCol; i++, pCol++){
drh633e6d52008-07-28 19:34:53 +0000487 sqlite3DbFree(db, pCol->zName);
488 sqlite3ExprDelete(db, pCol->pDflt);
drhb7916a72009-05-27 10:31:29 +0000489 sqlite3DbFree(db, pCol->zDflt);
drh633e6d52008-07-28 19:34:53 +0000490 sqlite3DbFree(db, pCol->zType);
491 sqlite3DbFree(db, pCol->zColl);
drhdd5b2fa2005-03-28 03:39:55 +0000492 }
drh633e6d52008-07-28 19:34:53 +0000493 sqlite3DbFree(db, pTable->aCol);
drh956bc922004-07-24 17:38:29 +0000494 }
drh956bc922004-07-24 17:38:29 +0000495}
496
497/*
drh75897232000-05-29 14:26:00 +0000498** Remove the memory data structures associated with the given
drh967e8b72000-06-21 13:59:10 +0000499** Table. No changes are made to disk by this routine.
drh75897232000-05-29 14:26:00 +0000500**
501** This routine just deletes the data structure. It does not unlink
drhe61922a2009-05-02 13:29:37 +0000502** the table data structure from the hash table. But it does destroy
drhc2eef3b2002-08-31 18:53:06 +0000503** memory structures of the indices and foreign keys associated with
504** the table.
drh75897232000-05-29 14:26:00 +0000505*/
dan1feeaed2010-07-23 15:41:47 +0000506void sqlite3DeleteTable(sqlite3 *db, Table *pTable){
drh75897232000-05-29 14:26:00 +0000507 Index *pIndex, *pNext;
drhc2eef3b2002-08-31 18:53:06 +0000508
dand46def72010-07-24 11:28:28 +0000509 assert( !pTable || pTable->nRef>0 );
drhc2eef3b2002-08-31 18:53:06 +0000510
drhed8a3bb2005-06-06 21:19:56 +0000511 /* Do not delete the table until the reference count reaches zero. */
dand46def72010-07-24 11:28:28 +0000512 if( !pTable ) return;
513 if( ((!db || db->pnBytesFreed==0) && (--pTable->nRef)>0) ) return;
drhed8a3bb2005-06-06 21:19:56 +0000514
dand46def72010-07-24 11:28:28 +0000515 /* Delete all indices associated with this table. */
drhc2eef3b2002-08-31 18:53:06 +0000516 for(pIndex = pTable->pIndex; pIndex; pIndex=pNext){
517 pNext = pIndex->pNext;
danielk1977da184232006-01-05 11:34:32 +0000518 assert( pIndex->pSchema==pTable->pSchema );
dand46def72010-07-24 11:28:28 +0000519 if( !db || db->pnBytesFreed==0 ){
520 char *zName = pIndex->zName;
521 TESTONLY ( Index *pOld = ) sqlite3HashInsert(
522 &pIndex->pSchema->idxHash, zName, sqlite3Strlen30(zName), 0
523 );
drh21206082011-04-04 18:22:02 +0000524 assert( db==0 || sqlite3SchemaMutexHeld(db, 0, pIndex->pSchema) );
dand46def72010-07-24 11:28:28 +0000525 assert( pOld==pIndex || pOld==0 );
526 }
527 freeIndex(db, pIndex);
drhc2eef3b2002-08-31 18:53:06 +0000528 }
529
dan1da40a32009-09-19 17:00:31 +0000530 /* Delete any foreign keys attached to this table. */
dan1feeaed2010-07-23 15:41:47 +0000531 sqlite3FkDelete(db, pTable);
drhc2eef3b2002-08-31 18:53:06 +0000532
533 /* Delete the Table structure itself.
534 */
dand46def72010-07-24 11:28:28 +0000535 sqliteDeleteColumnNames(db, pTable);
drh633e6d52008-07-28 19:34:53 +0000536 sqlite3DbFree(db, pTable->zName);
537 sqlite3DbFree(db, pTable->zColAff);
538 sqlite3SelectDelete(db, pTable->pSelect);
drhffe07b22005-11-03 00:41:17 +0000539#ifndef SQLITE_OMIT_CHECK
drh633e6d52008-07-28 19:34:53 +0000540 sqlite3ExprDelete(db, pTable->pCheck);
drhffe07b22005-11-03 00:41:17 +0000541#endif
drh078e4082010-07-28 19:17:51 +0000542#ifndef SQLITE_OMIT_VIRTUALTABLE
dan1feeaed2010-07-23 15:41:47 +0000543 sqlite3VtabClear(db, pTable);
drh078e4082010-07-28 19:17:51 +0000544#endif
drh633e6d52008-07-28 19:34:53 +0000545 sqlite3DbFree(db, pTable);
drh75897232000-05-29 14:26:00 +0000546}
547
548/*
drh5edc3122001-09-13 21:53:09 +0000549** Unlink the given table from the hash tables and the delete the
drhc2eef3b2002-08-31 18:53:06 +0000550** table structure with all its indices and foreign keys.
drh5edc3122001-09-13 21:53:09 +0000551*/
drh9bb575f2004-09-06 17:24:11 +0000552void sqlite3UnlinkAndDeleteTable(sqlite3 *db, int iDb, const char *zTabName){
drh956bc922004-07-24 17:38:29 +0000553 Table *p;
drh956bc922004-07-24 17:38:29 +0000554 Db *pDb;
555
drhd229ca92002-01-09 13:30:41 +0000556 assert( db!=0 );
drh956bc922004-07-24 17:38:29 +0000557 assert( iDb>=0 && iDb<db->nDb );
drh972a2312009-12-08 14:34:08 +0000558 assert( zTabName );
drh21206082011-04-04 18:22:02 +0000559 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
drh972a2312009-12-08 14:34:08 +0000560 testcase( zTabName[0]==0 ); /* Zero-length table names are allowed */
drh956bc922004-07-24 17:38:29 +0000561 pDb = &db->aDb[iDb];
drhea678832008-12-10 19:26:22 +0000562 p = sqlite3HashInsert(&pDb->pSchema->tblHash, zTabName,
drha83ccca2009-04-28 13:01:09 +0000563 sqlite3Strlen30(zTabName),0);
dan1feeaed2010-07-23 15:41:47 +0000564 sqlite3DeleteTable(db, p);
drh956bc922004-07-24 17:38:29 +0000565 db->flags |= SQLITE_InternChanges;
drh74e24cd2002-01-09 03:19:59 +0000566}
567
568/*
drha99db3b2004-06-19 14:49:12 +0000569** Given a token, return a string that consists of the text of that
drh24fb6272009-05-01 21:13:36 +0000570** token. Space to hold the returned string
drha99db3b2004-06-19 14:49:12 +0000571** is obtained from sqliteMalloc() and must be freed by the calling
572** function.
drh75897232000-05-29 14:26:00 +0000573**
drh24fb6272009-05-01 21:13:36 +0000574** Any quotation marks (ex: "name", 'name', [name], or `name`) that
575** surround the body of the token are removed.
576**
drhc96d8532005-05-03 12:30:33 +0000577** Tokens are often just pointers into the original SQL text and so
drha99db3b2004-06-19 14:49:12 +0000578** are not \000 terminated and are not persistent. The returned string
579** is \000 terminated and is persistent.
drh75897232000-05-29 14:26:00 +0000580*/
drh17435752007-08-16 04:30:38 +0000581char *sqlite3NameFromToken(sqlite3 *db, Token *pName){
drha99db3b2004-06-19 14:49:12 +0000582 char *zName;
583 if( pName ){
drh17435752007-08-16 04:30:38 +0000584 zName = sqlite3DbStrNDup(db, (char*)pName->z, pName->n);
drhb7916a72009-05-27 10:31:29 +0000585 sqlite3Dequote(zName);
drha99db3b2004-06-19 14:49:12 +0000586 }else{
587 zName = 0;
588 }
drh75897232000-05-29 14:26:00 +0000589 return zName;
590}
591
592/*
danielk1977cbb18d22004-05-28 11:37:27 +0000593** Open the sqlite_master table stored in database number iDb for
594** writing. The table is opened using cursor 0.
drhe0bc4042002-06-25 01:09:11 +0000595*/
danielk1977c00da102006-01-07 13:21:04 +0000596void sqlite3OpenMasterTable(Parse *p, int iDb){
597 Vdbe *v = sqlite3GetVdbe(p);
598 sqlite3TableLock(p, iDb, MASTER_ROOT, 1, SCHEMA_TABLE(iDb));
danielk1977207872a2008-01-03 07:54:23 +0000599 sqlite3VdbeAddOp3(v, OP_OpenWrite, 0, MASTER_ROOT, iDb);
danielk1977d336e222009-02-20 10:58:41 +0000600 sqlite3VdbeChangeP4(v, -1, (char *)5, P4_INT32); /* 5 column table */
danielk19776ab3a2e2009-02-19 14:39:25 +0000601 if( p->nTab==0 ){
602 p->nTab = 1;
603 }
drhe0bc4042002-06-25 01:09:11 +0000604}
605
606/*
danielk197704103022009-02-03 16:51:24 +0000607** Parameter zName points to a nul-terminated buffer containing the name
608** of a database ("main", "temp" or the name of an attached db). This
609** function returns the index of the named database in db->aDb[], or
610** -1 if the named db cannot be found.
danielk1977cbb18d22004-05-28 11:37:27 +0000611*/
danielk197704103022009-02-03 16:51:24 +0000612int sqlite3FindDbName(sqlite3 *db, const char *zName){
613 int i = -1; /* Database number */
drh73c42a12004-11-20 18:13:10 +0000614 if( zName ){
danielk197704103022009-02-03 16:51:24 +0000615 Db *pDb;
616 int n = sqlite3Strlen30(zName);
danielk1977576ec6b2005-01-21 11:55:25 +0000617 for(i=(db->nDb-1), pDb=&db->aDb[i]; i>=0; i--, pDb--){
drhea678832008-12-10 19:26:22 +0000618 if( (!OMIT_TEMPDB || i!=1 ) && n==sqlite3Strlen30(pDb->zName) &&
danielk197753c0f742005-03-29 03:10:59 +0000619 0==sqlite3StrICmp(pDb->zName, zName) ){
danielk1977576ec6b2005-01-21 11:55:25 +0000620 break;
drh73c42a12004-11-20 18:13:10 +0000621 }
danielk1977cbb18d22004-05-28 11:37:27 +0000622 }
623 }
danielk1977576ec6b2005-01-21 11:55:25 +0000624 return i;
danielk1977cbb18d22004-05-28 11:37:27 +0000625}
626
danielk197704103022009-02-03 16:51:24 +0000627/*
628** The token *pName contains the name of a database (either "main" or
629** "temp" or the name of an attached db). This routine returns the
630** index of the named database in db->aDb[], or -1 if the named db
631** does not exist.
632*/
633int sqlite3FindDb(sqlite3 *db, Token *pName){
634 int i; /* Database number */
635 char *zName; /* Name we are searching for */
636 zName = sqlite3NameFromToken(db, pName);
637 i = sqlite3FindDbName(db, zName);
638 sqlite3DbFree(db, zName);
639 return i;
640}
641
drh0e3d7472004-06-19 17:33:07 +0000642/* The table or view or trigger name is passed to this routine via tokens
643** pName1 and pName2. If the table name was fully qualified, for example:
644**
645** CREATE TABLE xxx.yyy (...);
646**
647** Then pName1 is set to "xxx" and pName2 "yyy". On the other hand if
648** the table name is not fully qualified, i.e.:
649**
650** CREATE TABLE yyy(...);
651**
652** Then pName1 is set to "yyy" and pName2 is "".
653**
654** This routine sets the *ppUnqual pointer to point at the token (pName1 or
655** pName2) that stores the unqualified table name. The index of the
656** database "xxx" is returned.
657*/
danielk1977ef2cb632004-05-29 02:37:19 +0000658int sqlite3TwoPartName(
drh0e3d7472004-06-19 17:33:07 +0000659 Parse *pParse, /* Parsing and code generating context */
drh90f5ecb2004-07-22 01:19:35 +0000660 Token *pName1, /* The "xxx" in the name "xxx.yyy" or "xxx" */
drh0e3d7472004-06-19 17:33:07 +0000661 Token *pName2, /* The "yyy" in the name "xxx.yyy" */
662 Token **pUnqual /* Write the unqualified object name here */
danielk1977cbb18d22004-05-28 11:37:27 +0000663){
drh0e3d7472004-06-19 17:33:07 +0000664 int iDb; /* Database holding the object */
danielk1977cbb18d22004-05-28 11:37:27 +0000665 sqlite3 *db = pParse->db;
666
drhc4a64fa2009-05-11 20:53:28 +0000667 if( ALWAYS(pName2!=0) && pName2->n>0 ){
shanedcc50b72008-11-13 18:29:50 +0000668 if( db->init.busy ) {
669 sqlite3ErrorMsg(pParse, "corrupt database");
670 pParse->nErr++;
671 return -1;
672 }
danielk1977cbb18d22004-05-28 11:37:27 +0000673 *pUnqual = pName2;
drhff2d5ea2005-07-23 00:41:48 +0000674 iDb = sqlite3FindDb(db, pName1);
danielk1977cbb18d22004-05-28 11:37:27 +0000675 if( iDb<0 ){
676 sqlite3ErrorMsg(pParse, "unknown database %T", pName1);
677 pParse->nErr++;
678 return -1;
679 }
680 }else{
681 assert( db->init.iDb==0 || db->init.busy );
682 iDb = db->init.iDb;
683 *pUnqual = pName1;
684 }
685 return iDb;
686}
687
688/*
danielk1977d8123362004-06-12 09:25:12 +0000689** This routine is used to check if the UTF-8 string zName is a legal
690** unqualified name for a new schema object (table, index, view or
691** trigger). All names are legal except those that begin with the string
692** "sqlite_" (in upper, lower or mixed case). This portion of the namespace
693** is reserved for internal use.
694*/
695int sqlite3CheckObjectName(Parse *pParse, const char *zName){
drhf1974842004-11-05 03:56:00 +0000696 if( !pParse->db->init.busy && pParse->nested==0
danielk19773a3f38e2005-05-22 06:49:56 +0000697 && (pParse->db->flags & SQLITE_WriteSchema)==0
drhf1974842004-11-05 03:56:00 +0000698 && 0==sqlite3StrNICmp(zName, "sqlite_", 7) ){
danielk1977d8123362004-06-12 09:25:12 +0000699 sqlite3ErrorMsg(pParse, "object name reserved for internal use: %s", zName);
700 return SQLITE_ERROR;
701 }
702 return SQLITE_OK;
703}
704
705/*
drh75897232000-05-29 14:26:00 +0000706** Begin constructing a new table representation in memory. This is
707** the first of several action routines that get called in response
drhd9b02572001-04-15 00:37:09 +0000708** to a CREATE TABLE statement. In particular, this routine is called
drh74161702006-02-24 02:53:49 +0000709** after seeing tokens "CREATE" and "TABLE" and the table name. The isTemp
drhe0bc4042002-06-25 01:09:11 +0000710** flag is true if the table should be stored in the auxiliary database
711** file instead of in the main database file. This is normally the case
712** when the "TEMP" or "TEMPORARY" keyword occurs in between
drhf57b3392001-10-08 13:22:32 +0000713** CREATE and TABLE.
drhd9b02572001-04-15 00:37:09 +0000714**
drhf57b3392001-10-08 13:22:32 +0000715** The new table record is initialized and put in pParse->pNewTable.
716** As more of the CREATE TABLE statement is parsed, additional action
717** routines will be called to add more information to this record.
danielk19774adee202004-05-08 08:23:19 +0000718** At the end of the CREATE TABLE statement, the sqlite3EndTable() routine
drhf57b3392001-10-08 13:22:32 +0000719** is called to complete the construction of the new table record.
drh75897232000-05-29 14:26:00 +0000720*/
danielk19774adee202004-05-08 08:23:19 +0000721void sqlite3StartTable(
drhe5f9c642003-01-13 23:27:31 +0000722 Parse *pParse, /* Parser context */
danielk1977cbb18d22004-05-28 11:37:27 +0000723 Token *pName1, /* First part of the name of the table or view */
724 Token *pName2, /* Second part of the name of the table or view */
drhe5f9c642003-01-13 23:27:31 +0000725 int isTemp, /* True if this is a TEMP table */
drhfaa59552005-12-29 23:33:54 +0000726 int isView, /* True if this is a VIEW */
danielk1977f1a381e2006-06-16 08:01:02 +0000727 int isVirtual, /* True if this is a VIRTUAL table */
drhfaa59552005-12-29 23:33:54 +0000728 int noErr /* Do nothing if table already exists */
drhe5f9c642003-01-13 23:27:31 +0000729){
drh75897232000-05-29 14:26:00 +0000730 Table *pTable;
drh23bf66d2004-12-14 03:34:34 +0000731 char *zName = 0; /* The name of the new table */
drh9bb575f2004-09-06 17:24:11 +0000732 sqlite3 *db = pParse->db;
drhadbca9c2001-09-27 15:11:53 +0000733 Vdbe *v;
danielk1977cbb18d22004-05-28 11:37:27 +0000734 int iDb; /* Database number to create the table in */
735 Token *pName; /* Unqualified name of the table to create */
drh75897232000-05-29 14:26:00 +0000736
danielk1977cbb18d22004-05-28 11:37:27 +0000737 /* The table or view name to create is passed to this routine via tokens
738 ** pName1 and pName2. If the table name was fully qualified, for example:
739 **
740 ** CREATE TABLE xxx.yyy (...);
741 **
742 ** Then pName1 is set to "xxx" and pName2 "yyy". On the other hand if
743 ** the table name is not fully qualified, i.e.:
744 **
745 ** CREATE TABLE yyy(...);
746 **
747 ** Then pName1 is set to "yyy" and pName2 is "".
748 **
749 ** The call below sets the pName pointer to point at the token (pName1 or
750 ** pName2) that stores the unqualified table name. The variable iDb is
751 ** set to the index of the database that the table or view is to be
752 ** created in.
753 */
danielk1977ef2cb632004-05-29 02:37:19 +0000754 iDb = sqlite3TwoPartName(pParse, pName1, pName2, &pName);
danielk1977cbb18d22004-05-28 11:37:27 +0000755 if( iDb<0 ) return;
dan72c5ea32010-09-28 15:55:47 +0000756 if( !OMIT_TEMPDB && isTemp && pName2->n>0 && iDb!=1 ){
757 /* If creating a temp table, the name may not be qualified. Unless
758 ** the database name is "temp" anyway. */
danielk1977cbb18d22004-05-28 11:37:27 +0000759 sqlite3ErrorMsg(pParse, "temporary table name must be unqualified");
danielk1977cbb18d22004-05-28 11:37:27 +0000760 return;
761 }
danielk197753c0f742005-03-29 03:10:59 +0000762 if( !OMIT_TEMPDB && isTemp ) iDb = 1;
danielk1977cbb18d22004-05-28 11:37:27 +0000763
764 pParse->sNameToken = *pName;
drh17435752007-08-16 04:30:38 +0000765 zName = sqlite3NameFromToken(db, pName);
danielk1977e0048402004-06-15 16:51:01 +0000766 if( zName==0 ) return;
danielk1977d8123362004-06-12 09:25:12 +0000767 if( SQLITE_OK!=sqlite3CheckObjectName(pParse, zName) ){
drh23bf66d2004-12-14 03:34:34 +0000768 goto begin_table_error;
danielk1977d8123362004-06-12 09:25:12 +0000769 }
drh1d85d932004-02-14 23:05:52 +0000770 if( db->init.iDb==1 ) isTemp = 1;
drhe5f9c642003-01-13 23:27:31 +0000771#ifndef SQLITE_OMIT_AUTHORIZATION
drhd24cc422003-03-27 12:51:24 +0000772 assert( (isTemp & 1)==isTemp );
drhe5f9c642003-01-13 23:27:31 +0000773 {
774 int code;
danielk1977cbb18d22004-05-28 11:37:27 +0000775 char *zDb = db->aDb[iDb].zName;
danielk19774adee202004-05-08 08:23:19 +0000776 if( sqlite3AuthCheck(pParse, SQLITE_INSERT, SCHEMA_TABLE(isTemp), 0, zDb) ){
drh23bf66d2004-12-14 03:34:34 +0000777 goto begin_table_error;
drhe22a3342003-04-22 20:30:37 +0000778 }
drhe5f9c642003-01-13 23:27:31 +0000779 if( isView ){
danielk197753c0f742005-03-29 03:10:59 +0000780 if( !OMIT_TEMPDB && isTemp ){
drhe5f9c642003-01-13 23:27:31 +0000781 code = SQLITE_CREATE_TEMP_VIEW;
782 }else{
783 code = SQLITE_CREATE_VIEW;
784 }
785 }else{
danielk197753c0f742005-03-29 03:10:59 +0000786 if( !OMIT_TEMPDB && isTemp ){
drhe5f9c642003-01-13 23:27:31 +0000787 code = SQLITE_CREATE_TEMP_TABLE;
788 }else{
789 code = SQLITE_CREATE_TABLE;
790 }
791 }
danielk1977f1a381e2006-06-16 08:01:02 +0000792 if( !isVirtual && sqlite3AuthCheck(pParse, code, zName, 0, zDb) ){
drh23bf66d2004-12-14 03:34:34 +0000793 goto begin_table_error;
drhe5f9c642003-01-13 23:27:31 +0000794 }
795 }
796#endif
drhf57b3392001-10-08 13:22:32 +0000797
drhf57b3392001-10-08 13:22:32 +0000798 /* Make sure the new table name does not collide with an existing
danielk19773df6b252004-05-29 10:23:19 +0000799 ** index or table name in the same database. Issue an error message if
danielk19777e6ebfb2006-06-12 11:24:37 +0000800 ** it does. The exception is if the statement being parsed was passed
801 ** to an sqlite3_declare_vtab() call. In that case only the column names
802 ** and types will be used, so there is no need to test for namespace
803 ** collisions.
drhf57b3392001-10-08 13:22:32 +0000804 */
danielk19777e6ebfb2006-06-12 11:24:37 +0000805 if( !IN_DECLARE_VTAB ){
dana16d1062010-09-28 17:37:28 +0000806 char *zDb = db->aDb[iDb].zName;
danielk19777e6ebfb2006-06-12 11:24:37 +0000807 if( SQLITE_OK!=sqlite3ReadSchema(pParse) ){
808 goto begin_table_error;
drhfaa59552005-12-29 23:33:54 +0000809 }
dana16d1062010-09-28 17:37:28 +0000810 pTable = sqlite3FindTable(db, zName, zDb);
danielk19777e6ebfb2006-06-12 11:24:37 +0000811 if( pTable ){
812 if( !noErr ){
813 sqlite3ErrorMsg(pParse, "table %T already exists", pName);
dan7687c832011-04-09 15:39:02 +0000814 }else{
815 assert( !db->init.busy );
816 sqlite3CodeVerifySchema(pParse, iDb);
danielk19777e6ebfb2006-06-12 11:24:37 +0000817 }
818 goto begin_table_error;
819 }
drh8a8a0d12010-09-28 20:26:44 +0000820 if( sqlite3FindIndex(db, zName, zDb)!=0 ){
danielk19777e6ebfb2006-06-12 11:24:37 +0000821 sqlite3ErrorMsg(pParse, "there is already an index named %s", zName);
822 goto begin_table_error;
823 }
drh75897232000-05-29 14:26:00 +0000824 }
danielk19777e6ebfb2006-06-12 11:24:37 +0000825
danielk197726783a52007-08-29 14:06:22 +0000826 pTable = sqlite3DbMallocZero(db, sizeof(Table));
drh6d4abfb2001-10-22 02:58:08 +0000827 if( pTable==0 ){
drh17435752007-08-16 04:30:38 +0000828 db->mallocFailed = 1;
danielk1977e0048402004-06-15 16:51:01 +0000829 pParse->rc = SQLITE_NOMEM;
830 pParse->nErr++;
drh23bf66d2004-12-14 03:34:34 +0000831 goto begin_table_error;
drh6d4abfb2001-10-22 02:58:08 +0000832 }
drh75897232000-05-29 14:26:00 +0000833 pTable->zName = zName;
drh4a324312001-12-21 14:30:42 +0000834 pTable->iPKey = -1;
danielk1977da184232006-01-05 11:34:32 +0000835 pTable->pSchema = db->aDb[iDb].pSchema;
drhed8a3bb2005-06-06 21:19:56 +0000836 pTable->nRef = 1;
drh15564052010-09-25 22:32:56 +0000837 pTable->nRowEst = 1000000;
drhc4a64fa2009-05-11 20:53:28 +0000838 assert( pParse->pNewTable==0 );
drh75897232000-05-29 14:26:00 +0000839 pParse->pNewTable = pTable;
drh17f71932002-02-21 12:01:27 +0000840
drh4794f732004-11-05 17:17:50 +0000841 /* If this is the magic sqlite_sequence table used by autoincrement,
842 ** then record a pointer to this table in the main database structure
843 ** so that INSERT can find the table easily.
844 */
845#ifndef SQLITE_OMIT_AUTOINCREMENT
drh78776ec2005-06-14 02:12:46 +0000846 if( !pParse->nested && strcmp(zName, "sqlite_sequence")==0 ){
drh21206082011-04-04 18:22:02 +0000847 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
danielk1977da184232006-01-05 11:34:32 +0000848 pTable->pSchema->pSeqTab = pTable;
drh4794f732004-11-05 17:17:50 +0000849 }
850#endif
851
drh17f71932002-02-21 12:01:27 +0000852 /* Begin generating the code that will insert the table record into
853 ** the SQLITE_MASTER table. Note in particular that we must go ahead
854 ** and allocate the record number for the table entry now. Before any
855 ** PRIMARY KEY or UNIQUE keywords are parsed. Those keywords will cause
856 ** indices to be created and the table record must come before the
857 ** indices. Hence, the record number for the table must be allocated
858 ** now.
859 */
danielk19774adee202004-05-08 08:23:19 +0000860 if( !db->init.busy && (v = sqlite3GetVdbe(pParse))!=0 ){
drhb7654112008-01-12 12:48:07 +0000861 int j1;
drhe321c292006-01-12 01:56:43 +0000862 int fileFormat;
drhb7654112008-01-12 12:48:07 +0000863 int reg1, reg2, reg3;
danielk1977cbb18d22004-05-28 11:37:27 +0000864 sqlite3BeginWriteOperation(pParse, 0, iDb);
drhb17131a2004-11-05 22:18:49 +0000865
danielk197720b1eaf2006-07-26 16:22:14 +0000866#ifndef SQLITE_OMIT_VIRTUALTABLE
867 if( isVirtual ){
drh66a51672008-01-03 00:01:23 +0000868 sqlite3VdbeAddOp0(v, OP_VBegin);
danielk197720b1eaf2006-07-26 16:22:14 +0000869 }
870#endif
871
danielk197736963fd2005-02-19 08:18:05 +0000872 /* If the file format and encoding in the database have not been set,
873 ** set them now.
danielk1977d008cfe2004-06-19 02:22:10 +0000874 */
drhb7654112008-01-12 12:48:07 +0000875 reg1 = pParse->regRowid = ++pParse->nMem;
876 reg2 = pParse->regRoot = ++pParse->nMem;
877 reg3 = ++pParse->nMem;
danielk19770d19f7a2009-06-03 11:25:07 +0000878 sqlite3VdbeAddOp3(v, OP_ReadCookie, iDb, reg3, BTREE_FILE_FORMAT);
drhfb982642007-08-30 01:19:59 +0000879 sqlite3VdbeUsesBtree(v, iDb);
drhb7654112008-01-12 12:48:07 +0000880 j1 = sqlite3VdbeAddOp1(v, OP_If, reg3);
drhe321c292006-01-12 01:56:43 +0000881 fileFormat = (db->flags & SQLITE_LegacyFileFmt)!=0 ?
drh76fe8032006-07-11 14:17:51 +0000882 1 : SQLITE_MAX_FILE_FORMAT;
drhb7654112008-01-12 12:48:07 +0000883 sqlite3VdbeAddOp2(v, OP_Integer, fileFormat, reg3);
danielk19770d19f7a2009-06-03 11:25:07 +0000884 sqlite3VdbeAddOp3(v, OP_SetCookie, iDb, BTREE_FILE_FORMAT, reg3);
drhb7654112008-01-12 12:48:07 +0000885 sqlite3VdbeAddOp2(v, OP_Integer, ENC(db), reg3);
danielk19770d19f7a2009-06-03 11:25:07 +0000886 sqlite3VdbeAddOp3(v, OP_SetCookie, iDb, BTREE_TEXT_ENCODING, reg3);
drhb7654112008-01-12 12:48:07 +0000887 sqlite3VdbeJumpHere(v, j1);
danielk1977d008cfe2004-06-19 02:22:10 +0000888
drh4794f732004-11-05 17:17:50 +0000889 /* This just creates a place-holder record in the sqlite_master table.
890 ** The record created does not contain anything yet. It will be replaced
891 ** by the real entry in code generated at sqlite3EndTable().
drhb17131a2004-11-05 22:18:49 +0000892 **
drh0fa991b2009-03-21 16:19:26 +0000893 ** The rowid for the new entry is left in register pParse->regRowid.
894 ** The root page number of the new table is left in reg pParse->regRoot.
895 ** The rowid and root page number values are needed by the code that
896 ** sqlite3EndTable will generate.
drh4794f732004-11-05 17:17:50 +0000897 */
danielk1977f1a381e2006-06-16 08:01:02 +0000898#if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_VIRTUALTABLE)
899 if( isView || isVirtual ){
drhb7654112008-01-12 12:48:07 +0000900 sqlite3VdbeAddOp2(v, OP_Integer, 0, reg2);
danielk1977a21c6b62005-01-24 10:25:59 +0000901 }else
902#endif
903 {
drhb7654112008-01-12 12:48:07 +0000904 sqlite3VdbeAddOp2(v, OP_CreateTable, iDb, reg2);
danielk1977a21c6b62005-01-24 10:25:59 +0000905 }
danielk1977c00da102006-01-07 13:21:04 +0000906 sqlite3OpenMasterTable(pParse, iDb);
drhb7654112008-01-12 12:48:07 +0000907 sqlite3VdbeAddOp2(v, OP_NewRowid, 0, reg1);
908 sqlite3VdbeAddOp2(v, OP_Null, 0, reg3);
909 sqlite3VdbeAddOp3(v, OP_Insert, 0, reg3, reg1);
910 sqlite3VdbeChangeP5(v, OPFLAG_APPEND);
drh66a51672008-01-03 00:01:23 +0000911 sqlite3VdbeAddOp0(v, OP_Close);
drh5e00f6c2001-09-13 13:46:56 +0000912 }
drh23bf66d2004-12-14 03:34:34 +0000913
914 /* Normal (non-error) return. */
915 return;
916
917 /* If an error occurs, we jump here */
918begin_table_error:
drh633e6d52008-07-28 19:34:53 +0000919 sqlite3DbFree(db, zName);
drh23bf66d2004-12-14 03:34:34 +0000920 return;
drh75897232000-05-29 14:26:00 +0000921}
922
923/*
danielk1977c60e9b82005-01-31 12:42:29 +0000924** This macro is used to compare two strings in a case-insensitive manner.
925** It is slightly faster than calling sqlite3StrICmp() directly, but
926** produces larger code.
927**
928** WARNING: This macro is not compatible with the strcmp() family. It
929** returns true if the two strings are equal, otherwise false.
930*/
931#define STRICMP(x, y) (\
932sqlite3UpperToLower[*(unsigned char *)(x)]== \
933sqlite3UpperToLower[*(unsigned char *)(y)] \
934&& sqlite3StrICmp((x)+1,(y)+1)==0 )
935
936/*
drh75897232000-05-29 14:26:00 +0000937** Add a new column to the table currently being constructed.
drhd9b02572001-04-15 00:37:09 +0000938**
939** The parser calls this routine once for each column declaration
danielk19774adee202004-05-08 08:23:19 +0000940** in a CREATE TABLE statement. sqlite3StartTable() gets called
drhd9b02572001-04-15 00:37:09 +0000941** first to get things going. Then this routine is called for each
942** column.
drh75897232000-05-29 14:26:00 +0000943*/
danielk19774adee202004-05-08 08:23:19 +0000944void sqlite3AddColumn(Parse *pParse, Token *pName){
drh75897232000-05-29 14:26:00 +0000945 Table *p;
drh97fc3d02002-05-22 21:27:03 +0000946 int i;
drha99db3b2004-06-19 14:49:12 +0000947 char *z;
drhc9b84a12002-06-20 11:36:48 +0000948 Column *pCol;
drhbb4957f2008-03-20 14:03:29 +0000949 sqlite3 *db = pParse->db;
drh75897232000-05-29 14:26:00 +0000950 if( (p = pParse->pNewTable)==0 ) return;
drhbb4957f2008-03-20 14:03:29 +0000951#if SQLITE_MAX_COLUMN
952 if( p->nCol+1>db->aLimit[SQLITE_LIMIT_COLUMN] ){
drhe5c941b2007-05-08 13:58:26 +0000953 sqlite3ErrorMsg(pParse, "too many columns on %s", p->zName);
954 return;
955 }
drhbb4957f2008-03-20 14:03:29 +0000956#endif
danielk1977ae74e032008-12-23 11:11:51 +0000957 z = sqlite3NameFromToken(db, pName);
drh97fc3d02002-05-22 21:27:03 +0000958 if( z==0 ) return;
drh97fc3d02002-05-22 21:27:03 +0000959 for(i=0; i<p->nCol; i++){
danielk1977c60e9b82005-01-31 12:42:29 +0000960 if( STRICMP(z, p->aCol[i].zName) ){
danielk19774adee202004-05-08 08:23:19 +0000961 sqlite3ErrorMsg(pParse, "duplicate column name: %s", z);
drh633e6d52008-07-28 19:34:53 +0000962 sqlite3DbFree(db, z);
drh97fc3d02002-05-22 21:27:03 +0000963 return;
964 }
965 }
drh75897232000-05-29 14:26:00 +0000966 if( (p->nCol & 0x7)==0 ){
drh6d4abfb2001-10-22 02:58:08 +0000967 Column *aNew;
danielk1977ae74e032008-12-23 11:11:51 +0000968 aNew = sqlite3DbRealloc(db,p->aCol,(p->nCol+8)*sizeof(p->aCol[0]));
danielk1977d5d56522005-03-16 12:15:20 +0000969 if( aNew==0 ){
drh633e6d52008-07-28 19:34:53 +0000970 sqlite3DbFree(db, z);
danielk1977d5d56522005-03-16 12:15:20 +0000971 return;
972 }
drh6d4abfb2001-10-22 02:58:08 +0000973 p->aCol = aNew;
drh75897232000-05-29 14:26:00 +0000974 }
drhc9b84a12002-06-20 11:36:48 +0000975 pCol = &p->aCol[p->nCol];
976 memset(pCol, 0, sizeof(p->aCol[0]));
977 pCol->zName = z;
danielk1977a37cdde2004-05-16 11:15:36 +0000978
979 /* If there is no type specified, columns have the default affinity
danielk19774f057f92004-06-08 00:02:33 +0000980 ** 'NONE'. If there is a type specified, then sqlite3AddColumnType() will
981 ** be called next to set pCol->affinity correctly.
danielk1977a37cdde2004-05-16 11:15:36 +0000982 */
danielk19774f057f92004-06-08 00:02:33 +0000983 pCol->affinity = SQLITE_AFF_NONE;
drhc9b84a12002-06-20 11:36:48 +0000984 p->nCol++;
drh75897232000-05-29 14:26:00 +0000985}
986
987/*
drh382c0242001-10-06 16:33:02 +0000988** This routine is called by the parser while in the middle of
989** parsing a CREATE TABLE statement. A "NOT NULL" constraint has
990** been seen on a column. This routine sets the notNull flag on
991** the column currently under construction.
992*/
danielk19774adee202004-05-08 08:23:19 +0000993void sqlite3AddNotNull(Parse *pParse, int onError){
drh382c0242001-10-06 16:33:02 +0000994 Table *p;
drhc4a64fa2009-05-11 20:53:28 +0000995 p = pParse->pNewTable;
996 if( p==0 || NEVER(p->nCol<1) ) return;
997 p->aCol[p->nCol-1].notNull = (u8)onError;
drh382c0242001-10-06 16:33:02 +0000998}
999
1000/*
danielk197752a83fb2005-01-31 12:56:44 +00001001** Scan the column type name zType (length nType) and return the
1002** associated affinity type.
danielk1977b3dff962005-02-01 01:21:55 +00001003**
1004** This routine does a case-independent search of zType for the
1005** substrings in the following table. If one of the substrings is
1006** found, the corresponding affinity is returned. If zType contains
1007** more than one of the substrings, entries toward the top of
1008** the table take priority. For example, if zType is 'BLOBINT',
drh8a512562005-11-14 22:29:05 +00001009** SQLITE_AFF_INTEGER is returned.
danielk1977b3dff962005-02-01 01:21:55 +00001010**
1011** Substring | Affinity
1012** --------------------------------
1013** 'INT' | SQLITE_AFF_INTEGER
1014** 'CHAR' | SQLITE_AFF_TEXT
1015** 'CLOB' | SQLITE_AFF_TEXT
1016** 'TEXT' | SQLITE_AFF_TEXT
1017** 'BLOB' | SQLITE_AFF_NONE
drh8a512562005-11-14 22:29:05 +00001018** 'REAL' | SQLITE_AFF_REAL
1019** 'FLOA' | SQLITE_AFF_REAL
1020** 'DOUB' | SQLITE_AFF_REAL
danielk1977b3dff962005-02-01 01:21:55 +00001021**
1022** If none of the substrings in the above table are found,
1023** SQLITE_AFF_NUMERIC is returned.
danielk197752a83fb2005-01-31 12:56:44 +00001024*/
drhb7916a72009-05-27 10:31:29 +00001025char sqlite3AffinityType(const char *zIn){
danielk1977b3dff962005-02-01 01:21:55 +00001026 u32 h = 0;
1027 char aff = SQLITE_AFF_NUMERIC;
danielk197752a83fb2005-01-31 12:56:44 +00001028
drhb7916a72009-05-27 10:31:29 +00001029 if( zIn ) while( zIn[0] ){
1030 h = (h<<8) + sqlite3UpperToLower[(*zIn)&0xff];
danielk1977b3dff962005-02-01 01:21:55 +00001031 zIn++;
danielk1977201f7162005-02-01 02:13:29 +00001032 if( h==(('c'<<24)+('h'<<16)+('a'<<8)+'r') ){ /* CHAR */
1033 aff = SQLITE_AFF_TEXT;
1034 }else if( h==(('c'<<24)+('l'<<16)+('o'<<8)+'b') ){ /* CLOB */
1035 aff = SQLITE_AFF_TEXT;
1036 }else if( h==(('t'<<24)+('e'<<16)+('x'<<8)+'t') ){ /* TEXT */
1037 aff = SQLITE_AFF_TEXT;
1038 }else if( h==(('b'<<24)+('l'<<16)+('o'<<8)+'b') /* BLOB */
drh8a512562005-11-14 22:29:05 +00001039 && (aff==SQLITE_AFF_NUMERIC || aff==SQLITE_AFF_REAL) ){
danielk1977b3dff962005-02-01 01:21:55 +00001040 aff = SQLITE_AFF_NONE;
drh8a512562005-11-14 22:29:05 +00001041#ifndef SQLITE_OMIT_FLOATING_POINT
1042 }else if( h==(('r'<<24)+('e'<<16)+('a'<<8)+'l') /* REAL */
1043 && aff==SQLITE_AFF_NUMERIC ){
1044 aff = SQLITE_AFF_REAL;
1045 }else if( h==(('f'<<24)+('l'<<16)+('o'<<8)+'a') /* FLOA */
1046 && aff==SQLITE_AFF_NUMERIC ){
1047 aff = SQLITE_AFF_REAL;
1048 }else if( h==(('d'<<24)+('o'<<16)+('u'<<8)+'b') /* DOUB */
1049 && aff==SQLITE_AFF_NUMERIC ){
1050 aff = SQLITE_AFF_REAL;
1051#endif
danielk1977201f7162005-02-01 02:13:29 +00001052 }else if( (h&0x00FFFFFF)==(('i'<<16)+('n'<<8)+'t') ){ /* INT */
drh8a512562005-11-14 22:29:05 +00001053 aff = SQLITE_AFF_INTEGER;
danielk1977b3dff962005-02-01 01:21:55 +00001054 break;
danielk197752a83fb2005-01-31 12:56:44 +00001055 }
1056 }
danielk1977b3dff962005-02-01 01:21:55 +00001057
1058 return aff;
danielk197752a83fb2005-01-31 12:56:44 +00001059}
1060
1061/*
drh382c0242001-10-06 16:33:02 +00001062** This routine is called by the parser while in the middle of
1063** parsing a CREATE TABLE statement. The pFirst token is the first
1064** token in the sequence of tokens that describe the type of the
1065** column currently under construction. pLast is the last token
1066** in the sequence. Use this information to construct a string
1067** that contains the typename of the column and store that string
1068** in zType.
1069*/
drh487e2622005-06-25 18:42:14 +00001070void sqlite3AddColumnType(Parse *pParse, Token *pType){
drh382c0242001-10-06 16:33:02 +00001071 Table *p;
drhc9b84a12002-06-20 11:36:48 +00001072 Column *pCol;
drh487e2622005-06-25 18:42:14 +00001073
drhc4a64fa2009-05-11 20:53:28 +00001074 p = pParse->pNewTable;
1075 if( p==0 || NEVER(p->nCol<1) ) return;
1076 pCol = &p->aCol[p->nCol-1];
1077 assert( pCol->zType==0 );
1078 pCol->zType = sqlite3NameFromToken(pParse->db, pType);
drhb7916a72009-05-27 10:31:29 +00001079 pCol->affinity = sqlite3AffinityType(pCol->zType);
drh382c0242001-10-06 16:33:02 +00001080}
1081
1082/*
danielk19777977a172004-11-09 12:44:37 +00001083** The expression is the default value for the most recently added column
1084** of the table currently under construction.
1085**
1086** Default value expressions must be constant. Raise an exception if this
1087** is not the case.
drhd9b02572001-04-15 00:37:09 +00001088**
1089** This routine is called by the parser while in the middle of
1090** parsing a CREATE TABLE statement.
drh7020f652000-06-03 18:06:52 +00001091*/
drhb7916a72009-05-27 10:31:29 +00001092void sqlite3AddDefaultValue(Parse *pParse, ExprSpan *pSpan){
drh7020f652000-06-03 18:06:52 +00001093 Table *p;
danielk19777977a172004-11-09 12:44:37 +00001094 Column *pCol;
drh633e6d52008-07-28 19:34:53 +00001095 sqlite3 *db = pParse->db;
drhc4a64fa2009-05-11 20:53:28 +00001096 p = pParse->pNewTable;
1097 if( p!=0 ){
drh42b9d7c2005-08-13 00:56:27 +00001098 pCol = &(p->aCol[p->nCol-1]);
drhb7916a72009-05-27 10:31:29 +00001099 if( !sqlite3ExprIsConstantOrFunction(pSpan->pExpr) ){
drh42b9d7c2005-08-13 00:56:27 +00001100 sqlite3ErrorMsg(pParse, "default value of column [%s] is not constant",
1101 pCol->zName);
1102 }else{
danielk19776ab3a2e2009-02-19 14:39:25 +00001103 /* A copy of pExpr is used instead of the original, as pExpr contains
1104 ** tokens that point to volatile memory. The 'span' of the expression
1105 ** is required by pragma table_info.
1106 */
drh633e6d52008-07-28 19:34:53 +00001107 sqlite3ExprDelete(db, pCol->pDflt);
drhb7916a72009-05-27 10:31:29 +00001108 pCol->pDflt = sqlite3ExprDup(db, pSpan->pExpr, EXPRDUP_REDUCE);
1109 sqlite3DbFree(db, pCol->zDflt);
1110 pCol->zDflt = sqlite3DbStrNDup(db, (char*)pSpan->zStart,
shanecf697392009-06-01 16:53:09 +00001111 (int)(pSpan->zEnd - pSpan->zStart));
drh42b9d7c2005-08-13 00:56:27 +00001112 }
danielk19777977a172004-11-09 12:44:37 +00001113 }
drhb7916a72009-05-27 10:31:29 +00001114 sqlite3ExprDelete(db, pSpan->pExpr);
drh7020f652000-06-03 18:06:52 +00001115}
1116
1117/*
drh4a324312001-12-21 14:30:42 +00001118** Designate the PRIMARY KEY for the table. pList is a list of names
1119** of columns that form the primary key. If pList is NULL, then the
1120** most recently added column of the table is the primary key.
1121**
1122** A table can have at most one primary key. If the table already has
1123** a primary key (and this is the second primary key) then create an
1124** error.
1125**
1126** If the PRIMARY KEY is on a single column whose datatype is INTEGER,
drh23bf66d2004-12-14 03:34:34 +00001127** then we will try to use that column as the rowid. Set the Table.iPKey
drh4a324312001-12-21 14:30:42 +00001128** field of the table under construction to be the index of the
1129** INTEGER PRIMARY KEY column. Table.iPKey is set to -1 if there is
1130** no INTEGER PRIMARY KEY.
1131**
1132** If the key is not an INTEGER PRIMARY KEY, then create a unique
1133** index for the key. No index is created for INTEGER PRIMARY KEYs.
1134*/
drh205f48e2004-11-05 00:43:11 +00001135void sqlite3AddPrimaryKey(
1136 Parse *pParse, /* Parsing context */
1137 ExprList *pList, /* List of field names to be indexed */
1138 int onError, /* What to do with a uniqueness conflict */
drhfdd6e852005-12-16 01:06:16 +00001139 int autoInc, /* True if the AUTOINCREMENT keyword is present */
1140 int sortOrder /* SQLITE_SO_ASC or SQLITE_SO_DESC */
drh205f48e2004-11-05 00:43:11 +00001141){
drh4a324312001-12-21 14:30:42 +00001142 Table *pTab = pParse->pNewTable;
1143 char *zType = 0;
drh78100cc2003-08-23 22:40:53 +00001144 int iCol = -1, i;
danielk1977c7d54102006-06-15 07:29:00 +00001145 if( pTab==0 || IN_DECLARE_VTAB ) goto primary_key_exit;
drh7d10d5a2008-08-20 16:35:10 +00001146 if( pTab->tabFlags & TF_HasPrimaryKey ){
danielk19774adee202004-05-08 08:23:19 +00001147 sqlite3ErrorMsg(pParse,
drhf7a9e1a2004-02-22 18:40:56 +00001148 "table \"%s\" has more than one primary key", pTab->zName);
drhe0194f22003-02-26 13:52:51 +00001149 goto primary_key_exit;
drh4a324312001-12-21 14:30:42 +00001150 }
drh7d10d5a2008-08-20 16:35:10 +00001151 pTab->tabFlags |= TF_HasPrimaryKey;
drh4a324312001-12-21 14:30:42 +00001152 if( pList==0 ){
1153 iCol = pTab->nCol - 1;
drh78100cc2003-08-23 22:40:53 +00001154 pTab->aCol[iCol].isPrimKey = 1;
1155 }else{
danielk19770202b292004-06-09 09:55:16 +00001156 for(i=0; i<pList->nExpr; i++){
drh78100cc2003-08-23 22:40:53 +00001157 for(iCol=0; iCol<pTab->nCol; iCol++){
drhd3d39e92004-05-20 22:16:29 +00001158 if( sqlite3StrICmp(pList->a[i].zName, pTab->aCol[iCol].zName)==0 ){
1159 break;
1160 }
drh78100cc2003-08-23 22:40:53 +00001161 }
drh6e4fc2c2005-09-15 21:24:51 +00001162 if( iCol<pTab->nCol ){
drh688c9f02005-09-16 02:48:01 +00001163 pTab->aCol[iCol].isPrimKey = 1;
drh6e4fc2c2005-09-15 21:24:51 +00001164 }
drh4a324312001-12-21 14:30:42 +00001165 }
danielk19770202b292004-06-09 09:55:16 +00001166 if( pList->nExpr>1 ) iCol = -1;
drh4a324312001-12-21 14:30:42 +00001167 }
1168 if( iCol>=0 && iCol<pTab->nCol ){
1169 zType = pTab->aCol[iCol].zType;
1170 }
drhfdd6e852005-12-16 01:06:16 +00001171 if( zType && sqlite3StrICmp(zType, "INTEGER")==0
1172 && sortOrder==SQLITE_SO_ASC ){
drh4a324312001-12-21 14:30:42 +00001173 pTab->iPKey = iCol;
drh1bd10f82008-12-10 21:19:56 +00001174 pTab->keyConf = (u8)onError;
drh7d10d5a2008-08-20 16:35:10 +00001175 assert( autoInc==0 || autoInc==1 );
1176 pTab->tabFlags |= autoInc*TF_Autoincrement;
drh205f48e2004-11-05 00:43:11 +00001177 }else if( autoInc ){
drh4794f732004-11-05 17:17:50 +00001178#ifndef SQLITE_OMIT_AUTOINCREMENT
drh205f48e2004-11-05 00:43:11 +00001179 sqlite3ErrorMsg(pParse, "AUTOINCREMENT is only allowed on an "
1180 "INTEGER PRIMARY KEY");
drh4794f732004-11-05 17:17:50 +00001181#endif
drh4a324312001-12-21 14:30:42 +00001182 }else{
dan1da40a32009-09-19 17:00:31 +00001183 Index *p;
1184 p = sqlite3CreateIndex(pParse, 0, 0, 0, pList, onError, 0, 0, sortOrder, 0);
1185 if( p ){
1186 p->autoIndex = 2;
1187 }
drhe0194f22003-02-26 13:52:51 +00001188 pList = 0;
drh4a324312001-12-21 14:30:42 +00001189 }
drhe0194f22003-02-26 13:52:51 +00001190
1191primary_key_exit:
drh633e6d52008-07-28 19:34:53 +00001192 sqlite3ExprListDelete(pParse->db, pList);
drhe0194f22003-02-26 13:52:51 +00001193 return;
drh4a324312001-12-21 14:30:42 +00001194}
1195
1196/*
drhffe07b22005-11-03 00:41:17 +00001197** Add a new CHECK constraint to the table currently under construction.
1198*/
1199void sqlite3AddCheckConstraint(
1200 Parse *pParse, /* Parsing context */
1201 Expr *pCheckExpr /* The check expression */
1202){
drh633e6d52008-07-28 19:34:53 +00001203 sqlite3 *db = pParse->db;
drhffe07b22005-11-03 00:41:17 +00001204#ifndef SQLITE_OMIT_CHECK
1205 Table *pTab = pParse->pNewTable;
danielk1977c7d54102006-06-15 07:29:00 +00001206 if( pTab && !IN_DECLARE_VTAB ){
drh33e619f2009-05-28 01:00:55 +00001207 pTab->pCheck = sqlite3ExprAnd(db, pTab->pCheck, pCheckExpr);
1208 }else
drhffe07b22005-11-03 00:41:17 +00001209#endif
drh33e619f2009-05-28 01:00:55 +00001210 {
1211 sqlite3ExprDelete(db, pCheckExpr);
1212 }
drhffe07b22005-11-03 00:41:17 +00001213}
1214
1215/*
drhd3d39e92004-05-20 22:16:29 +00001216** Set the collation function of the most recently parsed table column
1217** to the CollSeq given.
drh8e2ca022002-06-17 17:07:19 +00001218*/
danielk197739002502007-11-12 09:50:26 +00001219void sqlite3AddCollateType(Parse *pParse, Token *pToken){
drh8e2ca022002-06-17 17:07:19 +00001220 Table *p;
danielk19770202b292004-06-09 09:55:16 +00001221 int i;
danielk197739002502007-11-12 09:50:26 +00001222 char *zColl; /* Dequoted name of collation sequence */
drh633e6d52008-07-28 19:34:53 +00001223 sqlite3 *db;
danielk1977a37cdde2004-05-16 11:15:36 +00001224
danielk1977b8cbb872006-06-19 05:33:45 +00001225 if( (p = pParse->pNewTable)==0 ) return;
danielk19770202b292004-06-09 09:55:16 +00001226 i = p->nCol-1;
drh633e6d52008-07-28 19:34:53 +00001227 db = pParse->db;
1228 zColl = sqlite3NameFromToken(db, pToken);
danielk197739002502007-11-12 09:50:26 +00001229 if( !zColl ) return;
1230
drhc4a64fa2009-05-11 20:53:28 +00001231 if( sqlite3LocateCollSeq(pParse, zColl) ){
danielk1977b3bf5562006-01-10 17:58:23 +00001232 Index *pIdx;
danielk197739002502007-11-12 09:50:26 +00001233 p->aCol[i].zColl = zColl;
danielk1977b3bf5562006-01-10 17:58:23 +00001234
1235 /* If the column is declared as "<name> PRIMARY KEY COLLATE <type>",
1236 ** then an index may have been created on this column before the
1237 ** collation type was added. Correct this if it is the case.
1238 */
1239 for(pIdx=p->pIndex; pIdx; pIdx=pIdx->pNext){
1240 assert( pIdx->nColumn==1 );
1241 if( pIdx->aiColumn[0]==i ){
1242 pIdx->azColl[0] = p->aCol[i].zColl;
danielk19777cedc8d2004-06-10 10:50:08 +00001243 }
1244 }
danielk197739002502007-11-12 09:50:26 +00001245 }else{
drh633e6d52008-07-28 19:34:53 +00001246 sqlite3DbFree(db, zColl);
danielk19777cedc8d2004-06-10 10:50:08 +00001247 }
danielk19777cedc8d2004-06-10 10:50:08 +00001248}
1249
danielk1977466be562004-06-10 02:16:01 +00001250/*
1251** This function returns the collation sequence for database native text
1252** encoding identified by the string zName, length nName.
1253**
1254** If the requested collation sequence is not available, or not available
1255** in the database native encoding, the collation factory is invoked to
1256** request it. If the collation factory does not supply such a sequence,
1257** and the sequence is available in another text encoding, then that is
1258** returned instead.
1259**
1260** If no versions of the requested collations sequence are available, or
1261** another error occurs, NULL is returned and an error message written into
1262** pParse.
drha34001c2007-02-02 12:44:37 +00001263**
1264** This routine is a wrapper around sqlite3FindCollSeq(). This routine
1265** invokes the collation factory if the named collation cannot be found
1266** and generates an error message.
drhc4a64fa2009-05-11 20:53:28 +00001267**
1268** See also: sqlite3FindCollSeq(), sqlite3GetCollSeq()
danielk1977466be562004-06-10 02:16:01 +00001269*/
drhc4a64fa2009-05-11 20:53:28 +00001270CollSeq *sqlite3LocateCollSeq(Parse *pParse, const char *zName){
danielk19774dade032005-05-25 10:45:10 +00001271 sqlite3 *db = pParse->db;
danielk197714db2662006-01-09 16:12:04 +00001272 u8 enc = ENC(db);
danielk19774dade032005-05-25 10:45:10 +00001273 u8 initbusy = db->init.busy;
danielk1977b3bf5562006-01-10 17:58:23 +00001274 CollSeq *pColl;
danielk19774dade032005-05-25 10:45:10 +00001275
drhc4a64fa2009-05-11 20:53:28 +00001276 pColl = sqlite3FindCollSeq(db, enc, zName, initbusy);
danielk19777cedc8d2004-06-10 10:50:08 +00001277 if( !initbusy && (!pColl || !pColl->xCmp) ){
drh9aeda792009-08-20 02:34:15 +00001278 pColl = sqlite3GetCollSeq(db, enc, pColl, zName);
danielk19774dade032005-05-25 10:45:10 +00001279 if( !pColl ){
drhc4a64fa2009-05-11 20:53:28 +00001280 sqlite3ErrorMsg(pParse, "no such collation sequence: %s", zName);
danielk1977466be562004-06-10 02:16:01 +00001281 }
1282 }
1283
danielk19770202b292004-06-09 09:55:16 +00001284 return pColl;
1285}
1286
1287
drh8e2ca022002-06-17 17:07:19 +00001288/*
drh3f7d4e42004-07-24 14:35:58 +00001289** Generate code that will increment the schema cookie.
drh50e5dad2001-09-15 00:57:28 +00001290**
1291** The schema cookie is used to determine when the schema for the
1292** database changes. After each schema change, the cookie value
1293** changes. When a process first reads the schema it records the
1294** cookie. Thereafter, whenever it goes to access the database,
1295** it checks the cookie to make sure the schema has not changed
1296** since it was last read.
1297**
1298** This plan is not completely bullet-proof. It is possible for
1299** the schema to change multiple times and for the cookie to be
1300** set back to prior value. But schema changes are infrequent
1301** and the probability of hitting the same cookie value is only
1302** 1 chance in 2^32. So we're safe enough.
1303*/
drh9cbf3422008-01-17 16:22:13 +00001304void sqlite3ChangeCookie(Parse *pParse, int iDb){
1305 int r1 = sqlite3GetTempReg(pParse);
1306 sqlite3 *db = pParse->db;
1307 Vdbe *v = pParse->pVdbe;
drh21206082011-04-04 18:22:02 +00001308 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
drh9cbf3422008-01-17 16:22:13 +00001309 sqlite3VdbeAddOp2(v, OP_Integer, db->aDb[iDb].pSchema->schema_cookie+1, r1);
danielk19770d19f7a2009-06-03 11:25:07 +00001310 sqlite3VdbeAddOp3(v, OP_SetCookie, iDb, BTREE_SCHEMA_VERSION, r1);
drh9cbf3422008-01-17 16:22:13 +00001311 sqlite3ReleaseTempReg(pParse, r1);
drh50e5dad2001-09-15 00:57:28 +00001312}
1313
1314/*
drh969fa7c2002-02-18 18:30:32 +00001315** Measure the number of characters needed to output the given
1316** identifier. The number returned includes any quotes used
1317** but does not include the null terminator.
drh234c39d2004-07-24 03:30:47 +00001318**
1319** The estimate is conservative. It might be larger that what is
1320** really needed.
drh969fa7c2002-02-18 18:30:32 +00001321*/
1322static int identLength(const char *z){
1323 int n;
drh17f71932002-02-21 12:01:27 +00001324 for(n=0; *z; n++, z++){
drh234c39d2004-07-24 03:30:47 +00001325 if( *z=='"' ){ n++; }
drh969fa7c2002-02-18 18:30:32 +00001326 }
drh234c39d2004-07-24 03:30:47 +00001327 return n + 2;
drh969fa7c2002-02-18 18:30:32 +00001328}
1329
1330/*
danielk19771b870de2009-03-14 08:37:23 +00001331** The first parameter is a pointer to an output buffer. The second
1332** parameter is a pointer to an integer that contains the offset at
1333** which to write into the output buffer. This function copies the
1334** nul-terminated string pointed to by the third parameter, zSignedIdent,
1335** to the specified offset in the buffer and updates *pIdx to refer
1336** to the first byte after the last byte written before returning.
1337**
1338** If the string zSignedIdent consists entirely of alpha-numeric
1339** characters, does not begin with a digit and is not an SQL keyword,
1340** then it is copied to the output buffer exactly as it is. Otherwise,
1341** it is quoted using double-quotes.
1342*/
drhc4a64fa2009-05-11 20:53:28 +00001343static void identPut(char *z, int *pIdx, char *zSignedIdent){
drh4c755c02004-08-08 20:22:17 +00001344 unsigned char *zIdent = (unsigned char*)zSignedIdent;
drh17f71932002-02-21 12:01:27 +00001345 int i, j, needQuote;
drh969fa7c2002-02-18 18:30:32 +00001346 i = *pIdx;
danielk19771b870de2009-03-14 08:37:23 +00001347
drh17f71932002-02-21 12:01:27 +00001348 for(j=0; zIdent[j]; j++){
danielk197778ca0e72009-01-20 16:53:39 +00001349 if( !sqlite3Isalnum(zIdent[j]) && zIdent[j]!='_' ) break;
drh17f71932002-02-21 12:01:27 +00001350 }
danielk19771b870de2009-03-14 08:37:23 +00001351 needQuote = sqlite3Isdigit(zIdent[0]) || sqlite3KeywordCode(zIdent, j)!=TK_ID;
1352 if( !needQuote ){
drhc4a64fa2009-05-11 20:53:28 +00001353 needQuote = zIdent[j];
danielk19771b870de2009-03-14 08:37:23 +00001354 }
1355
drh234c39d2004-07-24 03:30:47 +00001356 if( needQuote ) z[i++] = '"';
drh969fa7c2002-02-18 18:30:32 +00001357 for(j=0; zIdent[j]; j++){
1358 z[i++] = zIdent[j];
drh234c39d2004-07-24 03:30:47 +00001359 if( zIdent[j]=='"' ) z[i++] = '"';
drh969fa7c2002-02-18 18:30:32 +00001360 }
drh234c39d2004-07-24 03:30:47 +00001361 if( needQuote ) z[i++] = '"';
drh969fa7c2002-02-18 18:30:32 +00001362 z[i] = 0;
1363 *pIdx = i;
1364}
1365
1366/*
1367** Generate a CREATE TABLE statement appropriate for the given
1368** table. Memory to hold the text of the statement is obtained
1369** from sqliteMalloc() and must be freed by the calling function.
1370*/
drh1d34fde2009-02-03 15:50:33 +00001371static char *createTableStmt(sqlite3 *db, Table *p){
drh969fa7c2002-02-18 18:30:32 +00001372 int i, k, n;
1373 char *zStmt;
drhc4a64fa2009-05-11 20:53:28 +00001374 char *zSep, *zSep2, *zEnd;
drh234c39d2004-07-24 03:30:47 +00001375 Column *pCol;
drh969fa7c2002-02-18 18:30:32 +00001376 n = 0;
drh234c39d2004-07-24 03:30:47 +00001377 for(pCol = p->aCol, i=0; i<p->nCol; i++, pCol++){
drhc4a64fa2009-05-11 20:53:28 +00001378 n += identLength(pCol->zName) + 5;
drh969fa7c2002-02-18 18:30:32 +00001379 }
1380 n += identLength(p->zName);
drhc4a64fa2009-05-11 20:53:28 +00001381 if( n<50 ){
drh969fa7c2002-02-18 18:30:32 +00001382 zSep = "";
1383 zSep2 = ",";
1384 zEnd = ")";
1385 }else{
1386 zSep = "\n ";
1387 zSep2 = ",\n ";
1388 zEnd = "\n)";
1389 }
drhe0bc4042002-06-25 01:09:11 +00001390 n += 35 + 6*p->nCol;
drhb9755982010-07-24 16:34:37 +00001391 zStmt = sqlite3DbMallocRaw(0, n);
drh820a9062008-01-31 13:35:48 +00001392 if( zStmt==0 ){
1393 db->mallocFailed = 1;
1394 return 0;
1395 }
drhbdb339f2009-02-02 18:03:21 +00001396 sqlite3_snprintf(n, zStmt, "CREATE TABLE ");
drhea678832008-12-10 19:26:22 +00001397 k = sqlite3Strlen30(zStmt);
drhc4a64fa2009-05-11 20:53:28 +00001398 identPut(zStmt, &k, p->zName);
drh969fa7c2002-02-18 18:30:32 +00001399 zStmt[k++] = '(';
drh234c39d2004-07-24 03:30:47 +00001400 for(pCol=p->aCol, i=0; i<p->nCol; i++, pCol++){
drhc4a64fa2009-05-11 20:53:28 +00001401 static const char * const azType[] = {
1402 /* SQLITE_AFF_TEXT */ " TEXT",
1403 /* SQLITE_AFF_NONE */ "",
1404 /* SQLITE_AFF_NUMERIC */ " NUM",
1405 /* SQLITE_AFF_INTEGER */ " INT",
1406 /* SQLITE_AFF_REAL */ " REAL"
1407 };
1408 int len;
1409 const char *zType;
1410
drh5bb3eb92007-05-04 13:15:55 +00001411 sqlite3_snprintf(n-k, &zStmt[k], zSep);
drhea678832008-12-10 19:26:22 +00001412 k += sqlite3Strlen30(&zStmt[k]);
drh969fa7c2002-02-18 18:30:32 +00001413 zSep = zSep2;
drhc4a64fa2009-05-11 20:53:28 +00001414 identPut(zStmt, &k, pCol->zName);
1415 assert( pCol->affinity-SQLITE_AFF_TEXT >= 0 );
drhfcd71b62011-04-05 22:08:24 +00001416 assert( pCol->affinity-SQLITE_AFF_TEXT < ArraySize(azType) );
drhc4a64fa2009-05-11 20:53:28 +00001417 testcase( pCol->affinity==SQLITE_AFF_TEXT );
1418 testcase( pCol->affinity==SQLITE_AFF_NONE );
1419 testcase( pCol->affinity==SQLITE_AFF_NUMERIC );
1420 testcase( pCol->affinity==SQLITE_AFF_INTEGER );
1421 testcase( pCol->affinity==SQLITE_AFF_REAL );
1422
1423 zType = azType[pCol->affinity - SQLITE_AFF_TEXT];
1424 len = sqlite3Strlen30(zType);
drhb7916a72009-05-27 10:31:29 +00001425 assert( pCol->affinity==SQLITE_AFF_NONE
1426 || pCol->affinity==sqlite3AffinityType(zType) );
drhc4a64fa2009-05-11 20:53:28 +00001427 memcpy(&zStmt[k], zType, len);
1428 k += len;
1429 assert( k<=n );
drh969fa7c2002-02-18 18:30:32 +00001430 }
drh5bb3eb92007-05-04 13:15:55 +00001431 sqlite3_snprintf(n-k, &zStmt[k], "%s", zEnd);
drh969fa7c2002-02-18 18:30:32 +00001432 return zStmt;
1433}
1434
1435/*
drh75897232000-05-29 14:26:00 +00001436** This routine is called to report the final ")" that terminates
1437** a CREATE TABLE statement.
1438**
drhf57b3392001-10-08 13:22:32 +00001439** The table structure that other action routines have been building
1440** is added to the internal hash tables, assuming no errors have
1441** occurred.
drh75897232000-05-29 14:26:00 +00001442**
drh1d85d932004-02-14 23:05:52 +00001443** An entry for the table is made in the master table on disk, unless
1444** this is a temporary table or db->init.busy==1. When db->init.busy==1
drhf57b3392001-10-08 13:22:32 +00001445** it means we are reading the sqlite_master table because we just
1446** connected to the database or because the sqlite_master table has
drhddba9e52005-03-19 01:41:21 +00001447** recently changed, so the entry for this table already exists in
drhf57b3392001-10-08 13:22:32 +00001448** the sqlite_master table. We do not want to create it again.
drh969fa7c2002-02-18 18:30:32 +00001449**
1450** If the pSelect argument is not NULL, it means that this routine
1451** was called to create a table generated from a
1452** "CREATE TABLE ... AS SELECT ..." statement. The column names of
1453** the new table will match the result set of the SELECT.
drh75897232000-05-29 14:26:00 +00001454*/
danielk197719a8e7e2005-03-17 05:03:38 +00001455void sqlite3EndTable(
1456 Parse *pParse, /* Parse context */
1457 Token *pCons, /* The ',' token after the last column defn. */
1458 Token *pEnd, /* The final ')' token in the CREATE TABLE */
1459 Select *pSelect /* Select from a "CREATE ... AS SELECT" */
1460){
drh75897232000-05-29 14:26:00 +00001461 Table *p;
drh9bb575f2004-09-06 17:24:11 +00001462 sqlite3 *db = pParse->db;
danielk1977da184232006-01-05 11:34:32 +00001463 int iDb;
drh75897232000-05-29 14:26:00 +00001464
drh8af73d42009-05-13 22:58:28 +00001465 if( (pEnd==0 && pSelect==0) || db->mallocFailed ){
danielk1977261919c2005-12-06 12:52:59 +00001466 return;
1467 }
drh28037572000-08-02 13:47:41 +00001468 p = pParse->pNewTable;
drhdaffd0e2001-04-11 14:28:42 +00001469 if( p==0 ) return;
drh75897232000-05-29 14:26:00 +00001470
danielk1977517eb642004-06-07 10:00:31 +00001471 assert( !db->init.busy || !pSelect );
1472
drhb9bb7c12006-06-11 23:41:55 +00001473 iDb = sqlite3SchemaToIndex(db, p->pSchema);
danielk1977da184232006-01-05 11:34:32 +00001474
drhffe07b22005-11-03 00:41:17 +00001475#ifndef SQLITE_OMIT_CHECK
1476 /* Resolve names in all CHECK constraint expressions.
1477 */
1478 if( p->pCheck ){
1479 SrcList sSrc; /* Fake SrcList for pParse->pNewTable */
1480 NameContext sNC; /* Name context for pParse->pNewTable */
1481
1482 memset(&sNC, 0, sizeof(sNC));
1483 memset(&sSrc, 0, sizeof(sSrc));
1484 sSrc.nSrc = 1;
1485 sSrc.a[0].zName = p->zName;
1486 sSrc.a[0].pTab = p;
1487 sSrc.a[0].iCursor = -1;
1488 sNC.pParse = pParse;
1489 sNC.pSrcList = &sSrc;
drh06f65412005-11-03 02:03:13 +00001490 sNC.isCheck = 1;
drh7d10d5a2008-08-20 16:35:10 +00001491 if( sqlite3ResolveExprNames(&sNC, p->pCheck) ){
drhffe07b22005-11-03 00:41:17 +00001492 return;
1493 }
1494 }
1495#endif /* !defined(SQLITE_OMIT_CHECK) */
1496
drh1d85d932004-02-14 23:05:52 +00001497 /* If the db->init.busy is 1 it means we are reading the SQL off the
drhe0bc4042002-06-25 01:09:11 +00001498 ** "sqlite_master" or "sqlite_temp_master" table on the disk.
1499 ** So do not write to the disk again. Extract the root page number
drh1d85d932004-02-14 23:05:52 +00001500 ** for the table from the db->init.newTnum field. (The page number
drhe0bc4042002-06-25 01:09:11 +00001501 ** should have been put there by the sqliteOpenCb routine.)
drhd78eeee2001-09-13 16:18:53 +00001502 */
drh1d85d932004-02-14 23:05:52 +00001503 if( db->init.busy ){
1504 p->tnum = db->init.newTnum;
drhd78eeee2001-09-13 16:18:53 +00001505 }
1506
drhe3c41372001-09-17 20:25:58 +00001507 /* If not initializing, then create a record for the new table
drh0fa991b2009-03-21 16:19:26 +00001508 ** in the SQLITE_MASTER table of the database.
drhf57b3392001-10-08 13:22:32 +00001509 **
drhe0bc4042002-06-25 01:09:11 +00001510 ** If this is a TEMPORARY table, write the entry into the auxiliary
1511 ** file instead of into the main database file.
drh75897232000-05-29 14:26:00 +00001512 */
drh1d85d932004-02-14 23:05:52 +00001513 if( !db->init.busy ){
drh4ff6dfa2002-03-03 23:06:00 +00001514 int n;
drhd8bc7082000-06-07 23:51:50 +00001515 Vdbe *v;
drh4794f732004-11-05 17:17:50 +00001516 char *zType; /* "view" or "table" */
1517 char *zType2; /* "VIEW" or "TABLE" */
1518 char *zStmt; /* Text of the CREATE TABLE or CREATE VIEW statement */
drh75897232000-05-29 14:26:00 +00001519
danielk19774adee202004-05-08 08:23:19 +00001520 v = sqlite3GetVdbe(pParse);
drh768578e2009-05-12 00:40:12 +00001521 if( NEVER(v==0) ) return;
danielk1977517eb642004-06-07 10:00:31 +00001522
drh66a51672008-01-03 00:01:23 +00001523 sqlite3VdbeAddOp1(v, OP_Close, 0);
danielk1977e6efa742004-11-10 11:55:10 +00001524
drh0fa991b2009-03-21 16:19:26 +00001525 /*
1526 ** Initialize zType for the new view or table.
drh4794f732004-11-05 17:17:50 +00001527 */
drh4ff6dfa2002-03-03 23:06:00 +00001528 if( p->pSelect==0 ){
1529 /* A regular table */
drh4794f732004-11-05 17:17:50 +00001530 zType = "table";
1531 zType2 = "TABLE";
danielk1977576ec6b2005-01-21 11:55:25 +00001532#ifndef SQLITE_OMIT_VIEW
drh4ff6dfa2002-03-03 23:06:00 +00001533 }else{
1534 /* A view */
drh4794f732004-11-05 17:17:50 +00001535 zType = "view";
1536 zType2 = "VIEW";
danielk1977576ec6b2005-01-21 11:55:25 +00001537#endif
drh4ff6dfa2002-03-03 23:06:00 +00001538 }
danielk1977517eb642004-06-07 10:00:31 +00001539
danielk1977517eb642004-06-07 10:00:31 +00001540 /* If this is a CREATE TABLE xx AS SELECT ..., execute the SELECT
1541 ** statement to populate the new table. The root-page number for the
drh0fa991b2009-03-21 16:19:26 +00001542 ** new table is in register pParse->regRoot.
danielk1977517eb642004-06-07 10:00:31 +00001543 **
1544 ** Once the SELECT has been coded by sqlite3Select(), it is in a
1545 ** suitable state to query for the column names and types to be used
1546 ** by the new table.
danielk1977c00da102006-01-07 13:21:04 +00001547 **
1548 ** A shared-cache write-lock is not required to write to the new table,
1549 ** as a schema-lock must have already been obtained to create it. Since
1550 ** a schema-lock excludes all other database users, the write-lock would
1551 ** be redundant.
danielk1977517eb642004-06-07 10:00:31 +00001552 */
1553 if( pSelect ){
drh1013c932008-01-06 00:25:21 +00001554 SelectDest dest;
danielk1977517eb642004-06-07 10:00:31 +00001555 Table *pSelTab;
drh1013c932008-01-06 00:25:21 +00001556
danielk19776ab3a2e2009-02-19 14:39:25 +00001557 assert(pParse->nTab==1);
drhb7654112008-01-12 12:48:07 +00001558 sqlite3VdbeAddOp3(v, OP_OpenWrite, 1, pParse->regRoot, iDb);
drh98757152008-01-09 23:04:12 +00001559 sqlite3VdbeChangeP5(v, 1);
danielk1977517eb642004-06-07 10:00:31 +00001560 pParse->nTab = 2;
drh1013c932008-01-06 00:25:21 +00001561 sqlite3SelectDestInit(&dest, SRT_Table, 1);
drh7d10d5a2008-08-20 16:35:10 +00001562 sqlite3Select(pParse, pSelect, &dest);
drh66a51672008-01-03 00:01:23 +00001563 sqlite3VdbeAddOp1(v, OP_Close, 1);
danielk1977517eb642004-06-07 10:00:31 +00001564 if( pParse->nErr==0 ){
drh7d10d5a2008-08-20 16:35:10 +00001565 pSelTab = sqlite3ResultSetOfSelect(pParse, pSelect);
danielk1977517eb642004-06-07 10:00:31 +00001566 if( pSelTab==0 ) return;
1567 assert( p->aCol==0 );
1568 p->nCol = pSelTab->nCol;
1569 p->aCol = pSelTab->aCol;
1570 pSelTab->nCol = 0;
1571 pSelTab->aCol = 0;
dan1feeaed2010-07-23 15:41:47 +00001572 sqlite3DeleteTable(db, pSelTab);
danielk1977517eb642004-06-07 10:00:31 +00001573 }
1574 }
drh4794f732004-11-05 17:17:50 +00001575
drh4794f732004-11-05 17:17:50 +00001576 /* Compute the complete text of the CREATE statement */
1577 if( pSelect ){
drh1d34fde2009-02-03 15:50:33 +00001578 zStmt = createTableStmt(db, p);
drh4794f732004-11-05 17:17:50 +00001579 }else{
drh1bd10f82008-12-10 21:19:56 +00001580 n = (int)(pEnd->z - pParse->sNameToken.z) + 1;
danielk19771e536952007-08-16 10:09:01 +00001581 zStmt = sqlite3MPrintf(db,
1582 "CREATE %s %.*s", zType2, n, pParse->sNameToken.z
1583 );
drh4794f732004-11-05 17:17:50 +00001584 }
1585
1586 /* A slot for the record has already been allocated in the
1587 ** SQLITE_MASTER table. We just need to update that slot with all
drh0fa991b2009-03-21 16:19:26 +00001588 ** the information we've collected.
drh4794f732004-11-05 17:17:50 +00001589 */
1590 sqlite3NestedParse(pParse,
1591 "UPDATE %Q.%s "
drhb7654112008-01-12 12:48:07 +00001592 "SET type='%s', name=%Q, tbl_name=%Q, rootpage=#%d, sql=%Q "
1593 "WHERE rowid=#%d",
danielk1977da184232006-01-05 11:34:32 +00001594 db->aDb[iDb].zName, SCHEMA_TABLE(iDb),
drh4794f732004-11-05 17:17:50 +00001595 zType,
1596 p->zName,
1597 p->zName,
drhb7654112008-01-12 12:48:07 +00001598 pParse->regRoot,
1599 zStmt,
1600 pParse->regRowid
drh4794f732004-11-05 17:17:50 +00001601 );
drh633e6d52008-07-28 19:34:53 +00001602 sqlite3DbFree(db, zStmt);
drh9cbf3422008-01-17 16:22:13 +00001603 sqlite3ChangeCookie(pParse, iDb);
drh2958a4e2004-11-12 03:56:15 +00001604
1605#ifndef SQLITE_OMIT_AUTOINCREMENT
1606 /* Check to see if we need to create an sqlite_sequence table for
1607 ** keeping track of autoincrement keys.
1608 */
drh7d10d5a2008-08-20 16:35:10 +00001609 if( p->tabFlags & TF_Autoincrement ){
danielk1977da184232006-01-05 11:34:32 +00001610 Db *pDb = &db->aDb[iDb];
drh21206082011-04-04 18:22:02 +00001611 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
danielk1977da184232006-01-05 11:34:32 +00001612 if( pDb->pSchema->pSeqTab==0 ){
drh2958a4e2004-11-12 03:56:15 +00001613 sqlite3NestedParse(pParse,
drhf3388142004-11-13 03:48:06 +00001614 "CREATE TABLE %Q.sqlite_sequence(name,seq)",
1615 pDb->zName
drh2958a4e2004-11-12 03:56:15 +00001616 );
1617 }
1618 }
1619#endif
drh4794f732004-11-05 17:17:50 +00001620
1621 /* Reparse everything to update our internal data structures */
drh5d9c9da2011-06-03 20:11:17 +00001622 sqlite3VdbeAddParseSchemaOp(v, iDb,
1623 sqlite3MPrintf(db, "tbl_name='%q'", p->zName));
drh75897232000-05-29 14:26:00 +00001624 }
drh17e9e292003-02-01 13:53:28 +00001625
drh2958a4e2004-11-12 03:56:15 +00001626
drh17e9e292003-02-01 13:53:28 +00001627 /* Add the table to the in-memory representation of the database.
1628 */
drh8af73d42009-05-13 22:58:28 +00001629 if( db->init.busy ){
drh17e9e292003-02-01 13:53:28 +00001630 Table *pOld;
danielk1977e501b892006-01-09 06:29:47 +00001631 Schema *pSchema = p->pSchema;
drh21206082011-04-04 18:22:02 +00001632 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
drhea678832008-12-10 19:26:22 +00001633 pOld = sqlite3HashInsert(&pSchema->tblHash, p->zName,
drha83ccca2009-04-28 13:01:09 +00001634 sqlite3Strlen30(p->zName),p);
drh17e9e292003-02-01 13:53:28 +00001635 if( pOld ){
1636 assert( p==pOld ); /* Malloc must have failed inside HashInsert() */
drh17435752007-08-16 04:30:38 +00001637 db->mallocFailed = 1;
drh17e9e292003-02-01 13:53:28 +00001638 return;
1639 }
drh17e9e292003-02-01 13:53:28 +00001640 pParse->pNewTable = 0;
1641 db->nTable++;
1642 db->flags |= SQLITE_InternChanges;
danielk197719a8e7e2005-03-17 05:03:38 +00001643
1644#ifndef SQLITE_OMIT_ALTERTABLE
1645 if( !p->pSelect ){
danielk1977bab45c62006-01-16 15:14:27 +00001646 const char *zName = (const char *)pParse->sNameToken.z;
drh9a087a92007-05-15 14:34:32 +00001647 int nName;
danielk197719a8e7e2005-03-17 05:03:38 +00001648 assert( !pSelect && pCons && pEnd );
danielk1977bab45c62006-01-16 15:14:27 +00001649 if( pCons->z==0 ){
1650 pCons = pEnd;
1651 }
drh1bd10f82008-12-10 21:19:56 +00001652 nName = (int)((const char *)pCons->z - zName);
drh9a087a92007-05-15 14:34:32 +00001653 p->addColOffset = 13 + sqlite3Utf8CharLen(zName, nName);
danielk197719a8e7e2005-03-17 05:03:38 +00001654 }
1655#endif
drh17e9e292003-02-01 13:53:28 +00001656 }
drh75897232000-05-29 14:26:00 +00001657}
1658
drhb7f91642004-10-31 02:22:47 +00001659#ifndef SQLITE_OMIT_VIEW
drh75897232000-05-29 14:26:00 +00001660/*
drha76b5df2002-02-23 02:32:10 +00001661** The parser calls this routine in order to create a new VIEW
1662*/
danielk19774adee202004-05-08 08:23:19 +00001663void sqlite3CreateView(
drha76b5df2002-02-23 02:32:10 +00001664 Parse *pParse, /* The parsing context */
1665 Token *pBegin, /* The CREATE token that begins the statement */
danielk197748dec7e2004-05-28 12:33:30 +00001666 Token *pName1, /* The token that holds the name of the view */
1667 Token *pName2, /* The token that holds the name of the view */
drh6276c1c2002-07-08 22:03:32 +00001668 Select *pSelect, /* A SELECT statement that will become the new view */
drhfdd48a72006-09-11 23:45:48 +00001669 int isTemp, /* TRUE for a TEMPORARY view */
1670 int noErr /* Suppress error messages if VIEW already exists */
drha76b5df2002-02-23 02:32:10 +00001671){
drha76b5df2002-02-23 02:32:10 +00001672 Table *p;
drh4b59ab52002-08-24 18:24:51 +00001673 int n;
drhb7916a72009-05-27 10:31:29 +00001674 const char *z;
drh4b59ab52002-08-24 18:24:51 +00001675 Token sEnd;
drhf26e09c2003-05-31 16:21:12 +00001676 DbFixer sFix;
danielk197748dec7e2004-05-28 12:33:30 +00001677 Token *pName;
danielk1977da184232006-01-05 11:34:32 +00001678 int iDb;
drh17435752007-08-16 04:30:38 +00001679 sqlite3 *db = pParse->db;
drha76b5df2002-02-23 02:32:10 +00001680
drh7c3d64f2005-06-06 15:32:08 +00001681 if( pParse->nVar>0 ){
1682 sqlite3ErrorMsg(pParse, "parameters are not allowed in views");
drh633e6d52008-07-28 19:34:53 +00001683 sqlite3SelectDelete(db, pSelect);
drh7c3d64f2005-06-06 15:32:08 +00001684 return;
1685 }
drhfdd48a72006-09-11 23:45:48 +00001686 sqlite3StartTable(pParse, pName1, pName2, isTemp, 1, 0, noErr);
drha76b5df2002-02-23 02:32:10 +00001687 p = pParse->pNewTable;
drh50d1b5f2010-08-27 12:21:06 +00001688 if( p==0 || pParse->nErr ){
drh633e6d52008-07-28 19:34:53 +00001689 sqlite3SelectDelete(db, pSelect);
drh417be792002-03-03 18:59:40 +00001690 return;
1691 }
danielk1977ef2cb632004-05-29 02:37:19 +00001692 sqlite3TwoPartName(pParse, pName1, pName2, &pName);
drh17435752007-08-16 04:30:38 +00001693 iDb = sqlite3SchemaToIndex(db, p->pSchema);
danielk1977da184232006-01-05 11:34:32 +00001694 if( sqlite3FixInit(&sFix, pParse, iDb, "view", pName)
danielk19774adee202004-05-08 08:23:19 +00001695 && sqlite3FixSelect(&sFix, pSelect)
drhf26e09c2003-05-31 16:21:12 +00001696 ){
drh633e6d52008-07-28 19:34:53 +00001697 sqlite3SelectDelete(db, pSelect);
drhf26e09c2003-05-31 16:21:12 +00001698 return;
1699 }
drh174b6192002-12-03 02:22:52 +00001700
drh4b59ab52002-08-24 18:24:51 +00001701 /* Make a copy of the entire SELECT statement that defines the view.
1702 ** This will force all the Expr.token.z values to be dynamically
1703 ** allocated rather than point to the input string - which means that
danielk197724b03fd2004-05-10 10:34:34 +00001704 ** they will persist after the current sqlite3_exec() call returns.
drh4b59ab52002-08-24 18:24:51 +00001705 */
danielk19776ab3a2e2009-02-19 14:39:25 +00001706 p->pSelect = sqlite3SelectDup(db, pSelect, EXPRDUP_REDUCE);
drh633e6d52008-07-28 19:34:53 +00001707 sqlite3SelectDelete(db, pSelect);
drh17435752007-08-16 04:30:38 +00001708 if( db->mallocFailed ){
danielk1977261919c2005-12-06 12:52:59 +00001709 return;
1710 }
drh17435752007-08-16 04:30:38 +00001711 if( !db->init.busy ){
danielk19774adee202004-05-08 08:23:19 +00001712 sqlite3ViewGetColumnNames(pParse, p);
drh417be792002-03-03 18:59:40 +00001713 }
drh4b59ab52002-08-24 18:24:51 +00001714
1715 /* Locate the end of the CREATE VIEW statement. Make sEnd point to
1716 ** the end.
1717 */
drha76b5df2002-02-23 02:32:10 +00001718 sEnd = pParse->sLastToken;
drh768578e2009-05-12 00:40:12 +00001719 if( ALWAYS(sEnd.z[0]!=0) && sEnd.z[0]!=';' ){
drha76b5df2002-02-23 02:32:10 +00001720 sEnd.z += sEnd.n;
1721 }
1722 sEnd.n = 0;
drh1bd10f82008-12-10 21:19:56 +00001723 n = (int)(sEnd.z - pBegin->z);
drhb7916a72009-05-27 10:31:29 +00001724 z = pBegin->z;
drh768578e2009-05-12 00:40:12 +00001725 while( ALWAYS(n>0) && sqlite3Isspace(z[n-1]) ){ n--; }
drh4ff6dfa2002-03-03 23:06:00 +00001726 sEnd.z = &z[n-1];
1727 sEnd.n = 1;
drh4b59ab52002-08-24 18:24:51 +00001728
danielk19774adee202004-05-08 08:23:19 +00001729 /* Use sqlite3EndTable() to add the view to the SQLITE_MASTER table */
danielk197719a8e7e2005-03-17 05:03:38 +00001730 sqlite3EndTable(pParse, 0, &sEnd, 0);
drha76b5df2002-02-23 02:32:10 +00001731 return;
drh417be792002-03-03 18:59:40 +00001732}
drhb7f91642004-10-31 02:22:47 +00001733#endif /* SQLITE_OMIT_VIEW */
drha76b5df2002-02-23 02:32:10 +00001734
danielk1977fe3fcbe22006-06-12 12:08:45 +00001735#if !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_VIRTUALTABLE)
drh417be792002-03-03 18:59:40 +00001736/*
1737** The Table structure pTable is really a VIEW. Fill in the names of
1738** the columns of the view in the pTable structure. Return the number
jplyoncfa56842004-01-19 04:55:56 +00001739** of errors. If an error is seen leave an error message in pParse->zErrMsg.
drh417be792002-03-03 18:59:40 +00001740*/
danielk19774adee202004-05-08 08:23:19 +00001741int sqlite3ViewGetColumnNames(Parse *pParse, Table *pTable){
drh9b3187e2005-01-18 14:45:47 +00001742 Table *pSelTab; /* A fake table from which we get the result set */
1743 Select *pSel; /* Copy of the SELECT that implements the view */
1744 int nErr = 0; /* Number of errors encountered */
1745 int n; /* Temporarily holds the number of cursors assigned */
drh17435752007-08-16 04:30:38 +00001746 sqlite3 *db = pParse->db; /* Database connection for malloc errors */
drha6d0ffc2007-10-12 20:42:28 +00001747 int (*xAuth)(void*,int,const char*,const char*,const char*,const char*);
drh417be792002-03-03 18:59:40 +00001748
1749 assert( pTable );
1750
danielk1977fe3fcbe22006-06-12 12:08:45 +00001751#ifndef SQLITE_OMIT_VIRTUALTABLE
1752 if( sqlite3VtabCallConnect(pParse, pTable) ){
1753 return SQLITE_ERROR;
1754 }
drh4cbdda92006-06-14 19:00:20 +00001755 if( IsVirtual(pTable) ) return 0;
danielk1977fe3fcbe22006-06-12 12:08:45 +00001756#endif
1757
1758#ifndef SQLITE_OMIT_VIEW
drh417be792002-03-03 18:59:40 +00001759 /* A positive nCol means the columns names for this view are
1760 ** already known.
1761 */
1762 if( pTable->nCol>0 ) return 0;
1763
1764 /* A negative nCol is a special marker meaning that we are currently
1765 ** trying to compute the column names. If we enter this routine with
1766 ** a negative nCol, it means two or more views form a loop, like this:
1767 **
1768 ** CREATE VIEW one AS SELECT * FROM two;
1769 ** CREATE VIEW two AS SELECT * FROM one;
drh3b167c72002-06-28 12:18:47 +00001770 **
drh768578e2009-05-12 00:40:12 +00001771 ** Actually, the error above is now caught prior to reaching this point.
1772 ** But the following test is still important as it does come up
1773 ** in the following:
1774 **
1775 ** CREATE TABLE main.ex1(a);
1776 ** CREATE TEMP VIEW ex1 AS SELECT a FROM ex1;
1777 ** SELECT * FROM temp.ex1;
drh417be792002-03-03 18:59:40 +00001778 */
1779 if( pTable->nCol<0 ){
danielk19774adee202004-05-08 08:23:19 +00001780 sqlite3ErrorMsg(pParse, "view %s is circularly defined", pTable->zName);
drh417be792002-03-03 18:59:40 +00001781 return 1;
1782 }
drh85c23c62005-08-20 03:03:04 +00001783 assert( pTable->nCol>=0 );
drh417be792002-03-03 18:59:40 +00001784
1785 /* If we get this far, it means we need to compute the table names.
drh9b3187e2005-01-18 14:45:47 +00001786 ** Note that the call to sqlite3ResultSetOfSelect() will expand any
1787 ** "*" elements in the results set of the view and will assign cursors
1788 ** to the elements of the FROM clause. But we do not want these changes
1789 ** to be permanent. So the computation is done on a copy of the SELECT
1790 ** statement that defines the view.
drh417be792002-03-03 18:59:40 +00001791 */
drh9b3187e2005-01-18 14:45:47 +00001792 assert( pTable->pSelect );
danielk19776ab3a2e2009-02-19 14:39:25 +00001793 pSel = sqlite3SelectDup(db, pTable->pSelect, 0);
danielk1977261919c2005-12-06 12:52:59 +00001794 if( pSel ){
shaneb08a67a2009-03-31 03:41:56 +00001795 u8 enableLookaside = db->lookaside.bEnabled;
danielk1977261919c2005-12-06 12:52:59 +00001796 n = pParse->nTab;
1797 sqlite3SrcListAssignCursors(pParse, pSel->pSrc);
1798 pTable->nCol = -1;
drhd9da78a2009-03-24 15:08:09 +00001799 db->lookaside.bEnabled = 0;
danielk1977db2d2862007-10-15 07:08:44 +00001800#ifndef SQLITE_OMIT_AUTHORIZATION
drha6d0ffc2007-10-12 20:42:28 +00001801 xAuth = db->xAuth;
1802 db->xAuth = 0;
drh7d10d5a2008-08-20 16:35:10 +00001803 pSelTab = sqlite3ResultSetOfSelect(pParse, pSel);
drha6d0ffc2007-10-12 20:42:28 +00001804 db->xAuth = xAuth;
danielk1977db2d2862007-10-15 07:08:44 +00001805#else
drh7d10d5a2008-08-20 16:35:10 +00001806 pSelTab = sqlite3ResultSetOfSelect(pParse, pSel);
danielk1977db2d2862007-10-15 07:08:44 +00001807#endif
drhd9da78a2009-03-24 15:08:09 +00001808 db->lookaside.bEnabled = enableLookaside;
danielk1977261919c2005-12-06 12:52:59 +00001809 pParse->nTab = n;
1810 if( pSelTab ){
1811 assert( pTable->aCol==0 );
1812 pTable->nCol = pSelTab->nCol;
1813 pTable->aCol = pSelTab->aCol;
1814 pSelTab->nCol = 0;
1815 pSelTab->aCol = 0;
dan1feeaed2010-07-23 15:41:47 +00001816 sqlite3DeleteTable(db, pSelTab);
drh21206082011-04-04 18:22:02 +00001817 assert( sqlite3SchemaMutexHeld(db, 0, pTable->pSchema) );
danielk1977da184232006-01-05 11:34:32 +00001818 pTable->pSchema->flags |= DB_UnresetViews;
danielk1977261919c2005-12-06 12:52:59 +00001819 }else{
1820 pTable->nCol = 0;
1821 nErr++;
1822 }
drh633e6d52008-07-28 19:34:53 +00001823 sqlite3SelectDelete(db, pSel);
danielk1977261919c2005-12-06 12:52:59 +00001824 } else {
drh417be792002-03-03 18:59:40 +00001825 nErr++;
1826 }
drhb7f91642004-10-31 02:22:47 +00001827#endif /* SQLITE_OMIT_VIEW */
danielk19774b2688a2006-06-20 11:01:07 +00001828 return nErr;
danielk1977fe3fcbe22006-06-12 12:08:45 +00001829}
1830#endif /* !defined(SQLITE_OMIT_VIEW) || !defined(SQLITE_OMIT_VIRTUALTABLE) */
drh417be792002-03-03 18:59:40 +00001831
drhb7f91642004-10-31 02:22:47 +00001832#ifndef SQLITE_OMIT_VIEW
drh417be792002-03-03 18:59:40 +00001833/*
drh8bf8dc92003-05-17 17:35:10 +00001834** Clear the column names from every VIEW in database idx.
drh417be792002-03-03 18:59:40 +00001835*/
drh9bb575f2004-09-06 17:24:11 +00001836static void sqliteViewResetAll(sqlite3 *db, int idx){
drh417be792002-03-03 18:59:40 +00001837 HashElem *i;
drh21206082011-04-04 18:22:02 +00001838 assert( sqlite3SchemaMutexHeld(db, idx, 0) );
drh8bf8dc92003-05-17 17:35:10 +00001839 if( !DbHasProperty(db, idx, DB_UnresetViews) ) return;
danielk1977da184232006-01-05 11:34:32 +00001840 for(i=sqliteHashFirst(&db->aDb[idx].pSchema->tblHash); i;i=sqliteHashNext(i)){
drh417be792002-03-03 18:59:40 +00001841 Table *pTab = sqliteHashData(i);
1842 if( pTab->pSelect ){
dand46def72010-07-24 11:28:28 +00001843 sqliteDeleteColumnNames(db, pTab);
1844 pTab->aCol = 0;
1845 pTab->nCol = 0;
drh417be792002-03-03 18:59:40 +00001846 }
1847 }
drh8bf8dc92003-05-17 17:35:10 +00001848 DbClearProperty(db, idx, DB_UnresetViews);
drha76b5df2002-02-23 02:32:10 +00001849}
drhb7f91642004-10-31 02:22:47 +00001850#else
1851# define sqliteViewResetAll(A,B)
1852#endif /* SQLITE_OMIT_VIEW */
drha76b5df2002-02-23 02:32:10 +00001853
drh75897232000-05-29 14:26:00 +00001854/*
danielk1977a0bf2652004-11-04 14:30:04 +00001855** This function is called by the VDBE to adjust the internal schema
1856** used by SQLite when the btree layer moves a table root page. The
1857** root-page of a table or index in database iDb has changed from iFrom
1858** to iTo.
drh6205d4a2006-03-24 03:36:26 +00001859**
1860** Ticket #1728: The symbol table might still contain information
1861** on tables and/or indices that are the process of being deleted.
1862** If you are unlucky, one of those deleted indices or tables might
1863** have the same rootpage number as the real table or index that is
1864** being moved. So we cannot stop searching after the first match
1865** because the first match might be for one of the deleted indices
1866** or tables and not the table/index that is actually being moved.
1867** We must continue looping until all tables and indices with
1868** rootpage==iFrom have been converted to have a rootpage of iTo
1869** in order to be certain that we got the right one.
danielk1977a0bf2652004-11-04 14:30:04 +00001870*/
1871#ifndef SQLITE_OMIT_AUTOVACUUM
drhcdf011d2011-04-04 21:25:28 +00001872void sqlite3RootPageMoved(sqlite3 *db, int iDb, int iFrom, int iTo){
danielk1977a0bf2652004-11-04 14:30:04 +00001873 HashElem *pElem;
danielk1977da184232006-01-05 11:34:32 +00001874 Hash *pHash;
drhcdf011d2011-04-04 21:25:28 +00001875 Db *pDb;
danielk1977da184232006-01-05 11:34:32 +00001876
drhcdf011d2011-04-04 21:25:28 +00001877 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
1878 pDb = &db->aDb[iDb];
danielk1977da184232006-01-05 11:34:32 +00001879 pHash = &pDb->pSchema->tblHash;
1880 for(pElem=sqliteHashFirst(pHash); pElem; pElem=sqliteHashNext(pElem)){
danielk1977a0bf2652004-11-04 14:30:04 +00001881 Table *pTab = sqliteHashData(pElem);
1882 if( pTab->tnum==iFrom ){
1883 pTab->tnum = iTo;
danielk1977a0bf2652004-11-04 14:30:04 +00001884 }
1885 }
danielk1977da184232006-01-05 11:34:32 +00001886 pHash = &pDb->pSchema->idxHash;
1887 for(pElem=sqliteHashFirst(pHash); pElem; pElem=sqliteHashNext(pElem)){
danielk1977a0bf2652004-11-04 14:30:04 +00001888 Index *pIdx = sqliteHashData(pElem);
1889 if( pIdx->tnum==iFrom ){
1890 pIdx->tnum = iTo;
danielk1977a0bf2652004-11-04 14:30:04 +00001891 }
1892 }
danielk1977a0bf2652004-11-04 14:30:04 +00001893}
1894#endif
1895
1896/*
1897** Write code to erase the table with root-page iTable from database iDb.
1898** Also write code to modify the sqlite_master table and internal schema
1899** if a root-page of another table is moved by the btree-layer whilst
1900** erasing iTable (this can happen with an auto-vacuum database).
1901*/
drh4e0cff62004-11-05 05:10:28 +00001902static void destroyRootPage(Parse *pParse, int iTable, int iDb){
1903 Vdbe *v = sqlite3GetVdbe(pParse);
drhb7654112008-01-12 12:48:07 +00001904 int r1 = sqlite3GetTempReg(pParse);
1905 sqlite3VdbeAddOp3(v, OP_Destroy, iTable, r1, iDb);
dane0af83a2009-09-08 19:15:01 +00001906 sqlite3MayAbort(pParse);
drh40e016e2004-11-04 14:47:11 +00001907#ifndef SQLITE_OMIT_AUTOVACUUM
drhb7654112008-01-12 12:48:07 +00001908 /* OP_Destroy stores an in integer r1. If this integer
drh4e0cff62004-11-05 05:10:28 +00001909 ** is non-zero, then it is the root page number of a table moved to
drh81db88e2004-12-07 12:29:17 +00001910 ** location iTable. The following code modifies the sqlite_master table to
drh4e0cff62004-11-05 05:10:28 +00001911 ** reflect this.
1912 **
drh0fa991b2009-03-21 16:19:26 +00001913 ** The "#NNN" in the SQL is a special constant that means whatever value
drhb74b1012009-05-28 21:04:37 +00001914 ** is in register NNN. See grammar rules associated with the TK_REGISTER
1915 ** token for additional information.
drh4e0cff62004-11-05 05:10:28 +00001916 */
danielk197763e3e9f2004-11-05 09:19:27 +00001917 sqlite3NestedParse(pParse,
drhb7654112008-01-12 12:48:07 +00001918 "UPDATE %Q.%s SET rootpage=%d WHERE #%d AND rootpage=#%d",
1919 pParse->db->aDb[iDb].zName, SCHEMA_TABLE(iDb), iTable, r1, r1);
danielk1977a0bf2652004-11-04 14:30:04 +00001920#endif
drhb7654112008-01-12 12:48:07 +00001921 sqlite3ReleaseTempReg(pParse, r1);
danielk1977a0bf2652004-11-04 14:30:04 +00001922}
1923
1924/*
1925** Write VDBE code to erase table pTab and all associated indices on disk.
1926** Code to update the sqlite_master tables and internal schema definitions
1927** in case a root-page belonging to another table is moved by the btree layer
1928** is also added (this can happen with an auto-vacuum database).
1929*/
drh4e0cff62004-11-05 05:10:28 +00001930static void destroyTable(Parse *pParse, Table *pTab){
danielk1977a0bf2652004-11-04 14:30:04 +00001931#ifdef SQLITE_OMIT_AUTOVACUUM
drheee46cf2004-11-06 00:02:48 +00001932 Index *pIdx;
drh29c636b2006-01-09 23:40:25 +00001933 int iDb = sqlite3SchemaToIndex(pParse->db, pTab->pSchema);
1934 destroyRootPage(pParse, pTab->tnum, iDb);
danielk1977a0bf2652004-11-04 14:30:04 +00001935 for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){
drh29c636b2006-01-09 23:40:25 +00001936 destroyRootPage(pParse, pIdx->tnum, iDb);
danielk1977a0bf2652004-11-04 14:30:04 +00001937 }
1938#else
1939 /* If the database may be auto-vacuum capable (if SQLITE_OMIT_AUTOVACUUM
1940 ** is not defined), then it is important to call OP_Destroy on the
1941 ** table and index root-pages in order, starting with the numerically
1942 ** largest root-page number. This guarantees that none of the root-pages
1943 ** to be destroyed is relocated by an earlier OP_Destroy. i.e. if the
1944 ** following were coded:
1945 **
1946 ** OP_Destroy 4 0
1947 ** ...
1948 ** OP_Destroy 5 0
1949 **
1950 ** and root page 5 happened to be the largest root-page number in the
1951 ** database, then root page 5 would be moved to page 4 by the
1952 ** "OP_Destroy 4 0" opcode. The subsequent "OP_Destroy 5 0" would hit
1953 ** a free-list page.
1954 */
1955 int iTab = pTab->tnum;
1956 int iDestroyed = 0;
1957
1958 while( 1 ){
1959 Index *pIdx;
1960 int iLargest = 0;
1961
1962 if( iDestroyed==0 || iTab<iDestroyed ){
1963 iLargest = iTab;
1964 }
1965 for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){
1966 int iIdx = pIdx->tnum;
danielk1977da184232006-01-05 11:34:32 +00001967 assert( pIdx->pSchema==pTab->pSchema );
danielk1977a0bf2652004-11-04 14:30:04 +00001968 if( (iDestroyed==0 || (iIdx<iDestroyed)) && iIdx>iLargest ){
1969 iLargest = iIdx;
1970 }
1971 }
danielk1977da184232006-01-05 11:34:32 +00001972 if( iLargest==0 ){
1973 return;
1974 }else{
1975 int iDb = sqlite3SchemaToIndex(pParse->db, pTab->pSchema);
1976 destroyRootPage(pParse, iLargest, iDb);
1977 iDestroyed = iLargest;
1978 }
danielk1977a0bf2652004-11-04 14:30:04 +00001979 }
1980#endif
1981}
1982
1983/*
drh75897232000-05-29 14:26:00 +00001984** This routine is called to do the work of a DROP TABLE statement.
drhd9b02572001-04-15 00:37:09 +00001985** pName is the name of the table to be dropped.
drh75897232000-05-29 14:26:00 +00001986*/
drha0733842005-12-29 01:11:36 +00001987void sqlite3DropTable(Parse *pParse, SrcList *pName, int isView, int noErr){
danielk1977a8858102004-05-28 12:11:21 +00001988 Table *pTab;
drh75897232000-05-29 14:26:00 +00001989 Vdbe *v;
drh9bb575f2004-09-06 17:24:11 +00001990 sqlite3 *db = pParse->db;
drhd24cc422003-03-27 12:51:24 +00001991 int iDb;
drh75897232000-05-29 14:26:00 +00001992
drh8af73d42009-05-13 22:58:28 +00001993 if( db->mallocFailed ){
drh6f7adc82006-01-11 21:41:20 +00001994 goto exit_drop_table;
1995 }
drh8af73d42009-05-13 22:58:28 +00001996 assert( pParse->nErr==0 );
danielk1977a8858102004-05-28 12:11:21 +00001997 assert( pName->nSrc==1 );
drha7564662010-02-22 19:32:31 +00001998 if( noErr ) db->suppressErr++;
drhca424112008-01-25 15:04:48 +00001999 pTab = sqlite3LocateTable(pParse, isView,
2000 pName->a[0].zName, pName->a[0].zDatabase);
drha7564662010-02-22 19:32:31 +00002001 if( noErr ) db->suppressErr--;
danielk1977a8858102004-05-28 12:11:21 +00002002
drha0733842005-12-29 01:11:36 +00002003 if( pTab==0 ){
dan57966752011-04-09 17:32:58 +00002004 if( noErr ) sqlite3CodeVerifyNamedSchema(pParse, pName->a[0].zDatabase);
drha0733842005-12-29 01:11:36 +00002005 goto exit_drop_table;
2006 }
danielk1977da184232006-01-05 11:34:32 +00002007 iDb = sqlite3SchemaToIndex(db, pTab->pSchema);
drhe22a3342003-04-22 20:30:37 +00002008 assert( iDb>=0 && iDb<db->nDb );
danielk1977b5258c32007-10-04 18:11:15 +00002009
2010 /* If pTab is a virtual table, call ViewGetColumnNames() to ensure
2011 ** it is initialized.
2012 */
2013 if( IsVirtual(pTab) && sqlite3ViewGetColumnNames(pParse, pTab) ){
2014 goto exit_drop_table;
2015 }
drhe5f9c642003-01-13 23:27:31 +00002016#ifndef SQLITE_OMIT_AUTHORIZATION
drhe5f9c642003-01-13 23:27:31 +00002017 {
2018 int code;
danielk1977da184232006-01-05 11:34:32 +00002019 const char *zTab = SCHEMA_TABLE(iDb);
2020 const char *zDb = db->aDb[iDb].zName;
danielk1977f1a381e2006-06-16 08:01:02 +00002021 const char *zArg2 = 0;
danielk19774adee202004-05-08 08:23:19 +00002022 if( sqlite3AuthCheck(pParse, SQLITE_DELETE, zTab, 0, zDb)){
danielk1977a8858102004-05-28 12:11:21 +00002023 goto exit_drop_table;
drhe22a3342003-04-22 20:30:37 +00002024 }
drhe5f9c642003-01-13 23:27:31 +00002025 if( isView ){
danielk197753c0f742005-03-29 03:10:59 +00002026 if( !OMIT_TEMPDB && iDb==1 ){
drhe5f9c642003-01-13 23:27:31 +00002027 code = SQLITE_DROP_TEMP_VIEW;
2028 }else{
2029 code = SQLITE_DROP_VIEW;
2030 }
danielk19774b2688a2006-06-20 11:01:07 +00002031#ifndef SQLITE_OMIT_VIRTUALTABLE
danielk1977f1a381e2006-06-16 08:01:02 +00002032 }else if( IsVirtual(pTab) ){
2033 code = SQLITE_DROP_VTABLE;
danielk1977595a5232009-07-24 17:58:53 +00002034 zArg2 = sqlite3GetVTable(db, pTab)->pMod->zName;
danielk19774b2688a2006-06-20 11:01:07 +00002035#endif
drhe5f9c642003-01-13 23:27:31 +00002036 }else{
danielk197753c0f742005-03-29 03:10:59 +00002037 if( !OMIT_TEMPDB && iDb==1 ){
drhe5f9c642003-01-13 23:27:31 +00002038 code = SQLITE_DROP_TEMP_TABLE;
2039 }else{
2040 code = SQLITE_DROP_TABLE;
2041 }
2042 }
danielk1977f1a381e2006-06-16 08:01:02 +00002043 if( sqlite3AuthCheck(pParse, code, pTab->zName, zArg2, zDb) ){
danielk1977a8858102004-05-28 12:11:21 +00002044 goto exit_drop_table;
drhe5f9c642003-01-13 23:27:31 +00002045 }
danielk1977a8858102004-05-28 12:11:21 +00002046 if( sqlite3AuthCheck(pParse, SQLITE_DELETE, pTab->zName, 0, zDb) ){
2047 goto exit_drop_table;
drh77ad4e42003-01-14 02:49:27 +00002048 }
drhe5f9c642003-01-13 23:27:31 +00002049 }
2050#endif
drhc456e572008-08-11 18:44:58 +00002051 if( sqlite3StrNICmp(pTab->zName, "sqlite_", 7)==0 ){
danielk1977a8858102004-05-28 12:11:21 +00002052 sqlite3ErrorMsg(pParse, "table %s may not be dropped", pTab->zName);
danielk1977a8858102004-05-28 12:11:21 +00002053 goto exit_drop_table;
drh75897232000-05-29 14:26:00 +00002054 }
danielk1977576ec6b2005-01-21 11:55:25 +00002055
2056#ifndef SQLITE_OMIT_VIEW
2057 /* Ensure DROP TABLE is not used on a view, and DROP VIEW is not used
2058 ** on a table.
2059 */
danielk1977a8858102004-05-28 12:11:21 +00002060 if( isView && pTab->pSelect==0 ){
2061 sqlite3ErrorMsg(pParse, "use DROP TABLE to delete table %s", pTab->zName);
2062 goto exit_drop_table;
drh4ff6dfa2002-03-03 23:06:00 +00002063 }
danielk1977a8858102004-05-28 12:11:21 +00002064 if( !isView && pTab->pSelect ){
2065 sqlite3ErrorMsg(pParse, "use DROP VIEW to delete view %s", pTab->zName);
2066 goto exit_drop_table;
drh4ff6dfa2002-03-03 23:06:00 +00002067 }
danielk1977576ec6b2005-01-21 11:55:25 +00002068#endif
drh75897232000-05-29 14:26:00 +00002069
drh1ccde152000-06-17 13:12:39 +00002070 /* Generate code to remove the table from the master table
2071 ** on disk.
2072 */
danielk19774adee202004-05-08 08:23:19 +00002073 v = sqlite3GetVdbe(pParse);
drh75897232000-05-29 14:26:00 +00002074 if( v ){
drhe0bc4042002-06-25 01:09:11 +00002075 Trigger *pTrigger;
drh2958a4e2004-11-12 03:56:15 +00002076 Db *pDb = &db->aDb[iDb];
drh77658e22007-12-04 16:54:52 +00002077 sqlite3BeginWriteOperation(pParse, 1, iDb);
drh8bf8dc92003-05-17 17:35:10 +00002078
danielk197720b1eaf2006-07-26 16:22:14 +00002079#ifndef SQLITE_OMIT_VIRTUALTABLE
2080 if( IsVirtual(pTab) ){
drh768578e2009-05-12 00:40:12 +00002081 sqlite3VdbeAddOp0(v, OP_VBegin);
danielk197720b1eaf2006-07-26 16:22:14 +00002082 }
2083#endif
dand66c8302009-09-28 14:49:01 +00002084 sqlite3FkDropTable(pParse, pName, pTab);
danielk197720b1eaf2006-07-26 16:22:14 +00002085
danielk19778e227872004-06-07 07:52:17 +00002086 /* Drop all triggers associated with the table being dropped. Code
2087 ** is generated to remove entries from sqlite_master and/or
2088 ** sqlite_temp_master if required.
2089 */
danielk19772f886d12009-02-28 10:47:41 +00002090 pTrigger = sqlite3TriggerList(pParse, pTab);
drhe0bc4042002-06-25 01:09:11 +00002091 while( pTrigger ){
danielk1977da184232006-01-05 11:34:32 +00002092 assert( pTrigger->pSchema==pTab->pSchema ||
2093 pTrigger->pSchema==db->aDb[1].pSchema );
drh74161702006-02-24 02:53:49 +00002094 sqlite3DropTriggerPtr(pParse, pTrigger);
drh956bc922004-07-24 17:38:29 +00002095 pTrigger = pTrigger->pNext;
danielk1977c3f9bad2002-05-15 08:30:12 +00002096 }
drh8bf8dc92003-05-17 17:35:10 +00002097
danielk19774d36b812004-11-19 07:07:30 +00002098#ifndef SQLITE_OMIT_AUTOINCREMENT
2099 /* Remove any entries of the sqlite_sequence table associated with
2100 ** the table being dropped. This is done before the table is dropped
2101 ** at the btree level, in case the sqlite_sequence table needs to
2102 ** move as a result of the drop (can happen in auto-vacuum mode).
2103 */
drh7d10d5a2008-08-20 16:35:10 +00002104 if( pTab->tabFlags & TF_Autoincrement ){
danielk19774d36b812004-11-19 07:07:30 +00002105 sqlite3NestedParse(pParse,
2106 "DELETE FROM %s.sqlite_sequence WHERE name=%Q",
2107 pDb->zName, pTab->zName
2108 );
2109 }
2110#endif
2111
danielk19778e227872004-06-07 07:52:17 +00002112 /* Drop all SQLITE_MASTER table and index entries that refer to the
2113 ** table. The program name loops through the master table and deletes
2114 ** every row that refers to a table of the same name as the one being
2115 ** dropped. Triggers are handled seperately because a trigger can be
2116 ** created in the temp database that refers to a table in another
2117 ** database.
2118 */
drhf1974842004-11-05 03:56:00 +00002119 sqlite3NestedParse(pParse,
drh4794f732004-11-05 17:17:50 +00002120 "DELETE FROM %Q.%s WHERE tbl_name=%Q and type!='trigger'",
drh2958a4e2004-11-12 03:56:15 +00002121 pDb->zName, SCHEMA_TABLE(iDb), pTab->zName);
danielk1977006015d2008-04-11 17:11:26 +00002122
2123 /* Drop any statistics from the sqlite_stat1 table, if it exists */
2124 if( sqlite3FindTable(db, "sqlite_stat1", db->aDb[iDb].zName) ){
2125 sqlite3NestedParse(pParse,
2126 "DELETE FROM %Q.sqlite_stat1 WHERE tbl=%Q", pDb->zName, pTab->zName
2127 );
2128 }
2129
danielk19774b2688a2006-06-20 11:01:07 +00002130 if( !isView && !IsVirtual(pTab) ){
drh4e0cff62004-11-05 05:10:28 +00002131 destroyTable(pParse, pTab);
drh5e00f6c2001-09-13 13:46:56 +00002132 }
drh2958a4e2004-11-12 03:56:15 +00002133
danielk1977a21c6b62005-01-24 10:25:59 +00002134 /* Remove the table entry from SQLite's internal schema and modify
2135 ** the schema cookie.
drh2958a4e2004-11-12 03:56:15 +00002136 */
drh4cbdda92006-06-14 19:00:20 +00002137 if( IsVirtual(pTab) ){
drh66a51672008-01-03 00:01:23 +00002138 sqlite3VdbeAddOp4(v, OP_VDestroy, iDb, 0, 0, pTab->zName, 0);
drhb9bb7c12006-06-11 23:41:55 +00002139 }
drh66a51672008-01-03 00:01:23 +00002140 sqlite3VdbeAddOp4(v, OP_DropTable, iDb, 0, 0, pTab->zName, 0);
drh9cbf3422008-01-17 16:22:13 +00002141 sqlite3ChangeCookie(pParse, iDb);
drh75897232000-05-29 14:26:00 +00002142 }
drhd24cc422003-03-27 12:51:24 +00002143 sqliteViewResetAll(db, iDb);
danielk1977a8858102004-05-28 12:11:21 +00002144
2145exit_drop_table:
drh633e6d52008-07-28 19:34:53 +00002146 sqlite3SrcListDelete(db, pName);
drh75897232000-05-29 14:26:00 +00002147}
2148
2149/*
drhc2eef3b2002-08-31 18:53:06 +00002150** This routine is called to create a new foreign key on the table
2151** currently under construction. pFromCol determines which columns
2152** in the current table point to the foreign key. If pFromCol==0 then
2153** connect the key to the last column inserted. pTo is the name of
2154** the table referred to. pToCol is a list of tables in the other
2155** pTo table that the foreign key points to. flags contains all
2156** information about the conflict resolution algorithms specified
2157** in the ON DELETE, ON UPDATE and ON INSERT clauses.
2158**
2159** An FKey structure is created and added to the table currently
drhe61922a2009-05-02 13:29:37 +00002160** under construction in the pParse->pNewTable field.
drhc2eef3b2002-08-31 18:53:06 +00002161**
2162** The foreign key is set for IMMEDIATE processing. A subsequent call
danielk19774adee202004-05-08 08:23:19 +00002163** to sqlite3DeferForeignKey() might change this to DEFERRED.
drhc2eef3b2002-08-31 18:53:06 +00002164*/
danielk19774adee202004-05-08 08:23:19 +00002165void sqlite3CreateForeignKey(
drhc2eef3b2002-08-31 18:53:06 +00002166 Parse *pParse, /* Parsing context */
danielk19770202b292004-06-09 09:55:16 +00002167 ExprList *pFromCol, /* Columns in this table that point to other table */
drhc2eef3b2002-08-31 18:53:06 +00002168 Token *pTo, /* Name of the other table */
danielk19770202b292004-06-09 09:55:16 +00002169 ExprList *pToCol, /* Columns in the other table */
drhc2eef3b2002-08-31 18:53:06 +00002170 int flags /* Conflict resolution algorithms. */
2171){
danielk197718576932008-08-06 13:47:40 +00002172 sqlite3 *db = pParse->db;
drhb7f91642004-10-31 02:22:47 +00002173#ifndef SQLITE_OMIT_FOREIGN_KEY
drh40e016e2004-11-04 14:47:11 +00002174 FKey *pFKey = 0;
dan1da40a32009-09-19 17:00:31 +00002175 FKey *pNextTo;
drhc2eef3b2002-08-31 18:53:06 +00002176 Table *p = pParse->pNewTable;
2177 int nByte;
2178 int i;
2179 int nCol;
2180 char *z;
drhc2eef3b2002-08-31 18:53:06 +00002181
2182 assert( pTo!=0 );
drh8af73d42009-05-13 22:58:28 +00002183 if( p==0 || IN_DECLARE_VTAB ) goto fk_end;
drhc2eef3b2002-08-31 18:53:06 +00002184 if( pFromCol==0 ){
2185 int iCol = p->nCol-1;
drhd3001712009-05-12 17:46:53 +00002186 if( NEVER(iCol<0) ) goto fk_end;
danielk19770202b292004-06-09 09:55:16 +00002187 if( pToCol && pToCol->nExpr!=1 ){
danielk19774adee202004-05-08 08:23:19 +00002188 sqlite3ErrorMsg(pParse, "foreign key on %s"
drhf7a9e1a2004-02-22 18:40:56 +00002189 " should reference only one column of table %T",
2190 p->aCol[iCol].zName, pTo);
drhc2eef3b2002-08-31 18:53:06 +00002191 goto fk_end;
2192 }
2193 nCol = 1;
danielk19770202b292004-06-09 09:55:16 +00002194 }else if( pToCol && pToCol->nExpr!=pFromCol->nExpr ){
danielk19774adee202004-05-08 08:23:19 +00002195 sqlite3ErrorMsg(pParse,
drhc2eef3b2002-08-31 18:53:06 +00002196 "number of columns in foreign key does not match the number of "
drhf7a9e1a2004-02-22 18:40:56 +00002197 "columns in the referenced table");
drhc2eef3b2002-08-31 18:53:06 +00002198 goto fk_end;
2199 }else{
danielk19770202b292004-06-09 09:55:16 +00002200 nCol = pFromCol->nExpr;
drhc2eef3b2002-08-31 18:53:06 +00002201 }
drhe61922a2009-05-02 13:29:37 +00002202 nByte = sizeof(*pFKey) + (nCol-1)*sizeof(pFKey->aCol[0]) + pTo->n + 1;
drhc2eef3b2002-08-31 18:53:06 +00002203 if( pToCol ){
danielk19770202b292004-06-09 09:55:16 +00002204 for(i=0; i<pToCol->nExpr; i++){
drhea678832008-12-10 19:26:22 +00002205 nByte += sqlite3Strlen30(pToCol->a[i].zName) + 1;
drhc2eef3b2002-08-31 18:53:06 +00002206 }
2207 }
drh633e6d52008-07-28 19:34:53 +00002208 pFKey = sqlite3DbMallocZero(db, nByte );
drh17435752007-08-16 04:30:38 +00002209 if( pFKey==0 ){
2210 goto fk_end;
2211 }
drhc2eef3b2002-08-31 18:53:06 +00002212 pFKey->pFrom = p;
2213 pFKey->pNextFrom = p->pFKey;
drhe61922a2009-05-02 13:29:37 +00002214 z = (char*)&pFKey->aCol[nCol];
drhdf68f6b2002-09-21 15:57:57 +00002215 pFKey->zTo = z;
drhc2eef3b2002-08-31 18:53:06 +00002216 memcpy(z, pTo->z, pTo->n);
2217 z[pTo->n] = 0;
danielk197770d9e9c2009-04-24 18:06:09 +00002218 sqlite3Dequote(z);
drhc2eef3b2002-08-31 18:53:06 +00002219 z += pTo->n+1;
drhc2eef3b2002-08-31 18:53:06 +00002220 pFKey->nCol = nCol;
drhc2eef3b2002-08-31 18:53:06 +00002221 if( pFromCol==0 ){
2222 pFKey->aCol[0].iFrom = p->nCol-1;
2223 }else{
2224 for(i=0; i<nCol; i++){
2225 int j;
2226 for(j=0; j<p->nCol; j++){
danielk19774adee202004-05-08 08:23:19 +00002227 if( sqlite3StrICmp(p->aCol[j].zName, pFromCol->a[i].zName)==0 ){
drhc2eef3b2002-08-31 18:53:06 +00002228 pFKey->aCol[i].iFrom = j;
2229 break;
2230 }
2231 }
2232 if( j>=p->nCol ){
danielk19774adee202004-05-08 08:23:19 +00002233 sqlite3ErrorMsg(pParse,
drhf7a9e1a2004-02-22 18:40:56 +00002234 "unknown column \"%s\" in foreign key definition",
2235 pFromCol->a[i].zName);
drhc2eef3b2002-08-31 18:53:06 +00002236 goto fk_end;
2237 }
2238 }
2239 }
2240 if( pToCol ){
2241 for(i=0; i<nCol; i++){
drhea678832008-12-10 19:26:22 +00002242 int n = sqlite3Strlen30(pToCol->a[i].zName);
drhc2eef3b2002-08-31 18:53:06 +00002243 pFKey->aCol[i].zCol = z;
2244 memcpy(z, pToCol->a[i].zName, n);
2245 z[n] = 0;
2246 z += n+1;
2247 }
2248 }
2249 pFKey->isDeferred = 0;
dan8099ce62009-09-23 08:43:35 +00002250 pFKey->aAction[0] = (u8)(flags & 0xff); /* ON DELETE action */
2251 pFKey->aAction[1] = (u8)((flags >> 8 ) & 0xff); /* ON UPDATE action */
drhc2eef3b2002-08-31 18:53:06 +00002252
drh21206082011-04-04 18:22:02 +00002253 assert( sqlite3SchemaMutexHeld(db, 0, p->pSchema) );
dan1da40a32009-09-19 17:00:31 +00002254 pNextTo = (FKey *)sqlite3HashInsert(&p->pSchema->fkeyHash,
2255 pFKey->zTo, sqlite3Strlen30(pFKey->zTo), (void *)pFKey
2256 );
danf59c5ca2009-09-22 16:55:38 +00002257 if( pNextTo==pFKey ){
2258 db->mallocFailed = 1;
2259 goto fk_end;
2260 }
dan1da40a32009-09-19 17:00:31 +00002261 if( pNextTo ){
2262 assert( pNextTo->pPrevTo==0 );
2263 pFKey->pNextTo = pNextTo;
2264 pNextTo->pPrevTo = pFKey;
2265 }
2266
drhc2eef3b2002-08-31 18:53:06 +00002267 /* Link the foreign key to the table as the last step.
2268 */
2269 p->pFKey = pFKey;
2270 pFKey = 0;
2271
2272fk_end:
drh633e6d52008-07-28 19:34:53 +00002273 sqlite3DbFree(db, pFKey);
drhb7f91642004-10-31 02:22:47 +00002274#endif /* !defined(SQLITE_OMIT_FOREIGN_KEY) */
drh633e6d52008-07-28 19:34:53 +00002275 sqlite3ExprListDelete(db, pFromCol);
2276 sqlite3ExprListDelete(db, pToCol);
drhc2eef3b2002-08-31 18:53:06 +00002277}
2278
2279/*
2280** This routine is called when an INITIALLY IMMEDIATE or INITIALLY DEFERRED
2281** clause is seen as part of a foreign key definition. The isDeferred
2282** parameter is 1 for INITIALLY DEFERRED and 0 for INITIALLY IMMEDIATE.
2283** The behavior of the most recently created foreign key is adjusted
2284** accordingly.
2285*/
danielk19774adee202004-05-08 08:23:19 +00002286void sqlite3DeferForeignKey(Parse *pParse, int isDeferred){
drhb7f91642004-10-31 02:22:47 +00002287#ifndef SQLITE_OMIT_FOREIGN_KEY
drhc2eef3b2002-08-31 18:53:06 +00002288 Table *pTab;
2289 FKey *pFKey;
2290 if( (pTab = pParse->pNewTable)==0 || (pFKey = pTab->pFKey)==0 ) return;
drh4c429832009-10-12 22:30:49 +00002291 assert( isDeferred==0 || isDeferred==1 ); /* EV: R-30323-21917 */
drh1bd10f82008-12-10 21:19:56 +00002292 pFKey->isDeferred = (u8)isDeferred;
drhb7f91642004-10-31 02:22:47 +00002293#endif
drhc2eef3b2002-08-31 18:53:06 +00002294}
2295
2296/*
drh063336a2004-11-05 20:58:39 +00002297** Generate code that will erase and refill index *pIdx. This is
2298** used to initialize a newly created index or to recompute the
2299** content of an index in response to a REINDEX command.
2300**
2301** if memRootPage is not negative, it means that the index is newly
drh1db639c2008-01-17 02:36:28 +00002302** created. The register specified by memRootPage contains the
drh063336a2004-11-05 20:58:39 +00002303** root page number of the index. If memRootPage is negative, then
2304** the index already exists and must be cleared before being refilled and
2305** the root page number of the index is taken from pIndex->tnum.
2306*/
2307static void sqlite3RefillIndex(Parse *pParse, Index *pIndex, int memRootPage){
2308 Table *pTab = pIndex->pTable; /* The table that is indexed */
danielk19776ab3a2e2009-02-19 14:39:25 +00002309 int iTab = pParse->nTab++; /* Btree cursor used for pTab */
2310 int iIdx = pParse->nTab++; /* Btree cursor used for pIndex */
dan689ab892011-08-12 15:02:00 +00002311 int iSorter = iTab; /* Cursor opened by OpenSorter (if in use) */
drh063336a2004-11-05 20:58:39 +00002312 int addr1; /* Address of top of loop */
2313 int tnum; /* Root page of index */
2314 Vdbe *v; /* Generate code into this virtual machine */
danielk1977b3bf5562006-01-10 17:58:23 +00002315 KeyInfo *pKey; /* KeyInfo for index */
drh2d401ab2008-01-10 23:50:11 +00002316 int regIdxKey; /* Registers containing the index key */
2317 int regRecord; /* Register holding assemblied index record */
drh17435752007-08-16 04:30:38 +00002318 sqlite3 *db = pParse->db; /* The database connection */
2319 int iDb = sqlite3SchemaToIndex(db, pIndex->pSchema);
drh063336a2004-11-05 20:58:39 +00002320
dan689ab892011-08-12 15:02:00 +00002321 /* Set bUseSorter to use OP_OpenSorter, or clear it to insert directly
2322 ** into the index. The sorter is used unless either OMIT_MERGE_SORT is
2323 ** defined or the system is configured to store temp files in-memory. */
2324#ifdef SQLITE_OMIT_MERGE_SORT
2325 static const int bUseSorter = 0;
2326#else
2327 const int bUseSorter = !sqlite3TempInMemory(pParse->db);
2328#endif
2329
danielk19771d54df82004-11-23 15:41:16 +00002330#ifndef SQLITE_OMIT_AUTHORIZATION
2331 if( sqlite3AuthCheck(pParse, SQLITE_REINDEX, pIndex->zName, 0,
drh17435752007-08-16 04:30:38 +00002332 db->aDb[iDb].zName ) ){
danielk19771d54df82004-11-23 15:41:16 +00002333 return;
2334 }
2335#endif
2336
danielk1977c00da102006-01-07 13:21:04 +00002337 /* Require a write-lock on the table to perform this operation */
2338 sqlite3TableLock(pParse, iDb, pTab->tnum, 1, pTab->zName);
2339
drh063336a2004-11-05 20:58:39 +00002340 v = sqlite3GetVdbe(pParse);
2341 if( v==0 ) return;
2342 if( memRootPage>=0 ){
drh1db639c2008-01-17 02:36:28 +00002343 tnum = memRootPage;
drh063336a2004-11-05 20:58:39 +00002344 }else{
2345 tnum = pIndex->tnum;
drh66a51672008-01-03 00:01:23 +00002346 sqlite3VdbeAddOp2(v, OP_Clear, tnum, iDb);
drh063336a2004-11-05 20:58:39 +00002347 }
danielk1977b3bf5562006-01-10 17:58:23 +00002348 pKey = sqlite3IndexKeyinfo(pParse, pIndex);
danielk1977207872a2008-01-03 07:54:23 +00002349 sqlite3VdbeAddOp4(v, OP_OpenWrite, iIdx, tnum, iDb,
drh66a51672008-01-03 00:01:23 +00002350 (char *)pKey, P4_KEYINFO_HANDOFF);
drh98757152008-01-09 23:04:12 +00002351 if( memRootPage>=0 ){
2352 sqlite3VdbeChangeP5(v, 1);
2353 }
dana20fde62011-07-12 14:28:05 +00002354
dan689ab892011-08-12 15:02:00 +00002355 /* Open the sorter cursor if we are to use one. */
2356 if( bUseSorter ){
2357 iSorter = pParse->nTab++;
2358 sqlite3VdbeAddOp4(v, OP_OpenSorter, iSorter, 0, 0, (char*)pKey, P4_KEYINFO);
2359 }
dana20fde62011-07-12 14:28:05 +00002360
2361 /* Open the table. Loop through all rows of the table, inserting index
2362 ** records into the sorter. */
danielk1977c00da102006-01-07 13:21:04 +00002363 sqlite3OpenTable(pParse, iTab, iDb, pTab, OP_OpenRead);
drh66a51672008-01-03 00:01:23 +00002364 addr1 = sqlite3VdbeAddOp2(v, OP_Rewind, iTab, 0);
drh2d401ab2008-01-10 23:50:11 +00002365 regRecord = sqlite3GetTempReg(pParse);
drhe14006d2008-03-25 17:23:32 +00002366 regIdxKey = sqlite3GenerateIndexKey(pParse, pIndex, iTab, regRecord, 1);
dana20fde62011-07-12 14:28:05 +00002367
dan689ab892011-08-12 15:02:00 +00002368 if( bUseSorter ){
2369 sqlite3VdbeAddOp2(v, OP_IdxInsert, iSorter, regRecord);
2370 sqlite3VdbeAddOp2(v, OP_Next, iTab, addr1+1);
2371 sqlite3VdbeJumpHere(v, addr1);
2372 addr1 = sqlite3VdbeAddOp2(v, OP_Rewind, iSorter, 0);
2373 sqlite3VdbeAddOp2(v, OP_RowKey, iSorter, regRecord);
2374 }
dana20fde62011-07-12 14:28:05 +00002375
drh7f057c92005-06-24 03:53:06 +00002376 if( pIndex->onError!=OE_None ){
danielk1977de630352009-05-04 11:42:29 +00002377 const int regRowid = regIdxKey + pIndex->nColumn;
2378 const int j2 = sqlite3VdbeCurrentAddr(v) + 2;
2379 void * const pRegKey = SQLITE_INT_TO_PTR(regIdxKey);
drh2d401ab2008-01-10 23:50:11 +00002380
danielk1977de630352009-05-04 11:42:29 +00002381 /* The registers accessed by the OP_IsUnique opcode were allocated
2382 ** using sqlite3GetTempRange() inside of the sqlite3GenerateIndexKey()
2383 ** call above. Just before that function was freed they were released
2384 ** (made available to the compiler for reuse) using
2385 ** sqlite3ReleaseTempRange(). So in some ways having the OP_IsUnique
2386 ** opcode use the values stored within seems dangerous. However, since
2387 ** we can be sure that no other temp registers have been allocated
2388 ** since sqlite3ReleaseTempRange() was called, it is safe to do so.
2389 */
2390 sqlite3VdbeAddOp4(v, OP_IsUnique, iIdx, j2, regRowid, pRegKey, P4_INT32);
dane0af83a2009-09-08 19:15:01 +00002391 sqlite3HaltConstraint(
2392 pParse, OE_Abort, "indexed columns are not unique", P4_STATIC);
drh4343fea2004-11-05 23:46:15 +00002393 }
dan689ab892011-08-12 15:02:00 +00002394 sqlite3VdbeAddOp3(v, OP_IdxInsert, iIdx, regRecord, bUseSorter);
danielk1977de630352009-05-04 11:42:29 +00002395 sqlite3VdbeChangeP5(v, OPFLAG_USESEEKRESULT);
drh2d401ab2008-01-10 23:50:11 +00002396 sqlite3ReleaseTempReg(pParse, regRecord);
dana20fde62011-07-12 14:28:05 +00002397 sqlite3VdbeAddOp2(v, OP_Next, iSorter, addr1+1);
drhd654be82005-09-20 17:42:23 +00002398 sqlite3VdbeJumpHere(v, addr1);
dana20fde62011-07-12 14:28:05 +00002399
drh66a51672008-01-03 00:01:23 +00002400 sqlite3VdbeAddOp1(v, OP_Close, iTab);
2401 sqlite3VdbeAddOp1(v, OP_Close, iIdx);
dan689ab892011-08-12 15:02:00 +00002402 sqlite3VdbeAddOp1(v, OP_Close, iSorter);
drh063336a2004-11-05 20:58:39 +00002403}
2404
2405/*
drh23bf66d2004-12-14 03:34:34 +00002406** Create a new index for an SQL table. pName1.pName2 is the name of the index
2407** and pTblList is the name of the table that is to be indexed. Both will
drhadbca9c2001-09-27 15:11:53 +00002408** be NULL for a primary key or an index that is created to satisfy a
2409** UNIQUE constraint. If pTable and pIndex are NULL, use pParse->pNewTable
drh382c0242001-10-06 16:33:02 +00002410** as the table to be indexed. pParse->pNewTable is a table that is
2411** currently being constructed by a CREATE TABLE statement.
drh75897232000-05-29 14:26:00 +00002412**
drh382c0242001-10-06 16:33:02 +00002413** pList is a list of columns to be indexed. pList will be NULL if this
2414** is a primary key or unique-constraint on the most recent column added
2415** to the table currently under construction.
dan1da40a32009-09-19 17:00:31 +00002416**
2417** If the index is created successfully, return a pointer to the new Index
2418** structure. This is used by sqlite3AddPrimaryKey() to mark the index
2419** as the tables primary key (Index.autoIndex==2).
drh75897232000-05-29 14:26:00 +00002420*/
dan1da40a32009-09-19 17:00:31 +00002421Index *sqlite3CreateIndex(
drh23bf66d2004-12-14 03:34:34 +00002422 Parse *pParse, /* All information about this parse */
2423 Token *pName1, /* First part of index name. May be NULL */
2424 Token *pName2, /* Second part of index name. May be NULL */
2425 SrcList *pTblName, /* Table to index. Use pParse->pNewTable if 0 */
danielk19770202b292004-06-09 09:55:16 +00002426 ExprList *pList, /* A list of columns to be indexed */
drh23bf66d2004-12-14 03:34:34 +00002427 int onError, /* OE_Abort, OE_Ignore, OE_Replace, or OE_None */
drh1c55ba02007-07-02 19:31:27 +00002428 Token *pStart, /* The CREATE token that begins this statement */
drhfdd6e852005-12-16 01:06:16 +00002429 Token *pEnd, /* The ")" that closes the CREATE INDEX statement */
drh4d91a702006-01-04 15:54:36 +00002430 int sortOrder, /* Sort order of primary key when pList==NULL */
2431 int ifNotExist /* Omit error if index already exists */
drh75897232000-05-29 14:26:00 +00002432){
dan1da40a32009-09-19 17:00:31 +00002433 Index *pRet = 0; /* Pointer to return */
drhfdd6e852005-12-16 01:06:16 +00002434 Table *pTab = 0; /* Table to be indexed */
2435 Index *pIndex = 0; /* The index to be created */
2436 char *zName = 0; /* Name of the index */
2437 int nName; /* Number of characters in zName */
drhbeae3192001-09-22 18:12:08 +00002438 int i, j;
drhfdd6e852005-12-16 01:06:16 +00002439 Token nullId; /* Fake token for an empty ID list */
2440 DbFixer sFix; /* For assigning database names to pTable */
2441 int sortOrderMask; /* 1 to honor DESC in index. 0 to ignore. */
drh9bb575f2004-09-06 17:24:11 +00002442 sqlite3 *db = pParse->db;
drhfdd6e852005-12-16 01:06:16 +00002443 Db *pDb; /* The specific table containing the indexed database */
2444 int iDb; /* Index of the database that is being written */
2445 Token *pName = 0; /* Unqualified name of the index to create */
2446 struct ExprList_item *pListItem; /* For looping over pList */
danielk1977b3bf5562006-01-10 17:58:23 +00002447 int nCol;
2448 int nExtra = 0;
2449 char *zExtra;
danielk1977cbb18d22004-05-28 11:37:27 +00002450
drhd3001712009-05-12 17:46:53 +00002451 assert( pStart==0 || pEnd!=0 ); /* pEnd must be non-NULL if pStart is */
drh8af73d42009-05-13 22:58:28 +00002452 assert( pParse->nErr==0 ); /* Never called with prior errors */
2453 if( db->mallocFailed || IN_DECLARE_VTAB ){
drhd3001712009-05-12 17:46:53 +00002454 goto exit_create_index;
2455 }
2456 if( SQLITE_OK!=sqlite3ReadSchema(pParse) ){
danielk1977e501b892006-01-09 06:29:47 +00002457 goto exit_create_index;
2458 }
drhdaffd0e2001-04-11 14:28:42 +00002459
drh75897232000-05-29 14:26:00 +00002460 /*
2461 ** Find the table that is to be indexed. Return early if not found.
2462 */
danielk1977cbb18d22004-05-28 11:37:27 +00002463 if( pTblName!=0 ){
danielk1977cbb18d22004-05-28 11:37:27 +00002464
2465 /* Use the two-part index name to determine the database
danielk1977ef2cb632004-05-29 02:37:19 +00002466 ** to search for the table. 'Fix' the table name to this db
2467 ** before looking up the table.
danielk1977cbb18d22004-05-28 11:37:27 +00002468 */
2469 assert( pName1 && pName2 );
danielk1977ef2cb632004-05-29 02:37:19 +00002470 iDb = sqlite3TwoPartName(pParse, pName1, pName2, &pName);
danielk1977cbb18d22004-05-28 11:37:27 +00002471 if( iDb<0 ) goto exit_create_index;
2472
danielk197753c0f742005-03-29 03:10:59 +00002473#ifndef SQLITE_OMIT_TEMPDB
danielk1977ef2cb632004-05-29 02:37:19 +00002474 /* If the index name was unqualified, check if the the table
danielk1977fe910332007-12-02 11:46:34 +00002475 ** is a temp table. If so, set the database to 1. Do not do this
2476 ** if initialising a database schema.
danielk1977cbb18d22004-05-28 11:37:27 +00002477 */
danielk1977fe910332007-12-02 11:46:34 +00002478 if( !db->init.busy ){
2479 pTab = sqlite3SrcListLookup(pParse, pTblName);
drhd3001712009-05-12 17:46:53 +00002480 if( pName2->n==0 && pTab && pTab->pSchema==db->aDb[1].pSchema ){
danielk1977fe910332007-12-02 11:46:34 +00002481 iDb = 1;
2482 }
danielk1977ef2cb632004-05-29 02:37:19 +00002483 }
danielk197753c0f742005-03-29 03:10:59 +00002484#endif
danielk1977ef2cb632004-05-29 02:37:19 +00002485
2486 if( sqlite3FixInit(&sFix, pParse, iDb, "index", pName) &&
2487 sqlite3FixSrcList(&sFix, pTblName)
2488 ){
drh85c23c62005-08-20 03:03:04 +00002489 /* Because the parser constructs pTblName from a single identifier,
2490 ** sqlite3FixSrcList can never fail. */
2491 assert(0);
danielk1977cbb18d22004-05-28 11:37:27 +00002492 }
drhca424112008-01-25 15:04:48 +00002493 pTab = sqlite3LocateTable(pParse, 0, pTblName->a[0].zName,
danielk1977ef2cb632004-05-29 02:37:19 +00002494 pTblName->a[0].zDatabase);
danielk1977d207d802008-10-22 10:45:37 +00002495 if( !pTab || db->mallocFailed ) goto exit_create_index;
danielk1977da184232006-01-05 11:34:32 +00002496 assert( db->aDb[iDb].pSchema==pTab->pSchema );
drh75897232000-05-29 14:26:00 +00002497 }else{
drhe3c41372001-09-17 20:25:58 +00002498 assert( pName==0 );
danielk1977da184232006-01-05 11:34:32 +00002499 pTab = pParse->pNewTable;
drha6370df2006-01-04 21:40:06 +00002500 if( !pTab ) goto exit_create_index;
danielk1977da184232006-01-05 11:34:32 +00002501 iDb = sqlite3SchemaToIndex(db, pTab->pSchema);
drh75897232000-05-29 14:26:00 +00002502 }
drhfdd6e852005-12-16 01:06:16 +00002503 pDb = &db->aDb[iDb];
danielk1977cbb18d22004-05-28 11:37:27 +00002504
drhd3001712009-05-12 17:46:53 +00002505 assert( pTab!=0 );
2506 assert( pParse->nErr==0 );
drh03881232009-02-13 03:43:31 +00002507 if( sqlite3StrNICmp(pTab->zName, "sqlite_", 7)==0
2508 && memcmp(&pTab->zName[7],"altertab_",9)!=0 ){
danielk19774adee202004-05-08 08:23:19 +00002509 sqlite3ErrorMsg(pParse, "table %s may not be indexed", pTab->zName);
drh0be9df02003-03-30 00:19:49 +00002510 goto exit_create_index;
2511 }
danielk1977576ec6b2005-01-21 11:55:25 +00002512#ifndef SQLITE_OMIT_VIEW
drha76b5df2002-02-23 02:32:10 +00002513 if( pTab->pSelect ){
danielk19774adee202004-05-08 08:23:19 +00002514 sqlite3ErrorMsg(pParse, "views may not be indexed");
drha76b5df2002-02-23 02:32:10 +00002515 goto exit_create_index;
2516 }
danielk1977576ec6b2005-01-21 11:55:25 +00002517#endif
danielk19775ee9d692006-06-21 12:36:25 +00002518#ifndef SQLITE_OMIT_VIRTUALTABLE
2519 if( IsVirtual(pTab) ){
2520 sqlite3ErrorMsg(pParse, "virtual tables may not be indexed");
2521 goto exit_create_index;
2522 }
2523#endif
drh75897232000-05-29 14:26:00 +00002524
2525 /*
2526 ** Find the name of the index. Make sure there is not already another
drhf57b3392001-10-08 13:22:32 +00002527 ** index or table with the same name.
2528 **
2529 ** Exception: If we are reading the names of permanent indices from the
2530 ** sqlite_master table (because some other process changed the schema) and
2531 ** one of the index names collides with the name of a temporary table or
drhd24cc422003-03-27 12:51:24 +00002532 ** index, then we will continue to process this index.
drhf57b3392001-10-08 13:22:32 +00002533 **
2534 ** If pName==0 it means that we are
drhadbca9c2001-09-27 15:11:53 +00002535 ** dealing with a primary key or UNIQUE constraint. We have to invent our
2536 ** own name.
drh75897232000-05-29 14:26:00 +00002537 */
danielk1977d8123362004-06-12 09:25:12 +00002538 if( pName ){
drh17435752007-08-16 04:30:38 +00002539 zName = sqlite3NameFromToken(db, pName);
drhe3c41372001-09-17 20:25:58 +00002540 if( zName==0 ) goto exit_create_index;
danielk1977d8123362004-06-12 09:25:12 +00002541 if( SQLITE_OK!=sqlite3CheckObjectName(pParse, zName) ){
drhd24cc422003-03-27 12:51:24 +00002542 goto exit_create_index;
drhe3c41372001-09-17 20:25:58 +00002543 }
danielk1977d8123362004-06-12 09:25:12 +00002544 if( !db->init.busy ){
danielk1977d45a0312007-03-13 16:32:25 +00002545 if( sqlite3FindTable(db, zName, 0)!=0 ){
2546 sqlite3ErrorMsg(pParse, "there is already a table named %s", zName);
2547 goto exit_create_index;
2548 }
2549 }
danielk197759a33f92007-03-17 10:26:59 +00002550 if( sqlite3FindIndex(db, zName, pDb->zName)!=0 ){
2551 if( !ifNotExist ){
2552 sqlite3ErrorMsg(pParse, "index %s already exists", zName);
dan7687c832011-04-09 15:39:02 +00002553 }else{
2554 assert( !db->init.busy );
2555 sqlite3CodeVerifySchema(pParse, iDb);
danielk1977d8123362004-06-12 09:25:12 +00002556 }
danielk197759a33f92007-03-17 10:26:59 +00002557 goto exit_create_index;
2558 }
danielk1977a21c6b62005-01-24 10:25:59 +00002559 }else{
drhadbca9c2001-09-27 15:11:53 +00002560 int n;
2561 Index *pLoop;
2562 for(pLoop=pTab->pIndex, n=1; pLoop; pLoop=pLoop->pNext, n++){}
drhf089aa42008-07-08 19:34:06 +00002563 zName = sqlite3MPrintf(db, "sqlite_autoindex_%s_%d", pTab->zName, n);
danielk1977a1644fd2007-08-29 12:31:25 +00002564 if( zName==0 ){
danielk1977a1644fd2007-08-29 12:31:25 +00002565 goto exit_create_index;
2566 }
drh75897232000-05-29 14:26:00 +00002567 }
2568
drhe5f9c642003-01-13 23:27:31 +00002569 /* Check for authorization to create an index.
2570 */
2571#ifndef SQLITE_OMIT_AUTHORIZATION
drhe22a3342003-04-22 20:30:37 +00002572 {
drhfdd6e852005-12-16 01:06:16 +00002573 const char *zDb = pDb->zName;
danielk197753c0f742005-03-29 03:10:59 +00002574 if( sqlite3AuthCheck(pParse, SQLITE_INSERT, SCHEMA_TABLE(iDb), 0, zDb) ){
drhe22a3342003-04-22 20:30:37 +00002575 goto exit_create_index;
2576 }
2577 i = SQLITE_CREATE_INDEX;
danielk197753c0f742005-03-29 03:10:59 +00002578 if( !OMIT_TEMPDB && iDb==1 ) i = SQLITE_CREATE_TEMP_INDEX;
danielk19774adee202004-05-08 08:23:19 +00002579 if( sqlite3AuthCheck(pParse, i, zName, pTab->zName, zDb) ){
drhe22a3342003-04-22 20:30:37 +00002580 goto exit_create_index;
2581 }
drhe5f9c642003-01-13 23:27:31 +00002582 }
2583#endif
2584
drh75897232000-05-29 14:26:00 +00002585 /* If pList==0, it means this routine was called to make a primary
drh1ccde152000-06-17 13:12:39 +00002586 ** key out of the last column added to the table under construction.
drh75897232000-05-29 14:26:00 +00002587 ** So create a fake list to simulate this.
2588 */
2589 if( pList==0 ){
drhb7916a72009-05-27 10:31:29 +00002590 nullId.z = pTab->aCol[pTab->nCol-1].zName;
drhea678832008-12-10 19:26:22 +00002591 nullId.n = sqlite3Strlen30((char*)nullId.z);
drhb7916a72009-05-27 10:31:29 +00002592 pList = sqlite3ExprListAppend(pParse, 0, 0);
drh75897232000-05-29 14:26:00 +00002593 if( pList==0 ) goto exit_create_index;
drhb7916a72009-05-27 10:31:29 +00002594 sqlite3ExprListSetName(pParse, pList, &nullId, 0);
drh1bd10f82008-12-10 21:19:56 +00002595 pList->a[0].sortOrder = (u8)sortOrder;
drh75897232000-05-29 14:26:00 +00002596 }
2597
danielk1977b3bf5562006-01-10 17:58:23 +00002598 /* Figure out how many bytes of space are required to store explicitly
2599 ** specified collation sequence names.
2600 */
2601 for(i=0; i<pList->nExpr; i++){
drhd3001712009-05-12 17:46:53 +00002602 Expr *pExpr = pList->a[i].pExpr;
2603 if( pExpr ){
2604 CollSeq *pColl = pExpr->pColl;
2605 /* Either pColl!=0 or there was an OOM failure. But if an OOM
2606 ** failure we have quit before reaching this point. */
2607 if( ALWAYS(pColl) ){
2608 nExtra += (1 + sqlite3Strlen30(pColl->zName));
2609 }
danielk1977b3bf5562006-01-10 17:58:23 +00002610 }
2611 }
2612
drh75897232000-05-29 14:26:00 +00002613 /*
2614 ** Allocate the index structure.
2615 */
drhea678832008-12-10 19:26:22 +00002616 nName = sqlite3Strlen30(zName);
danielk1977b3bf5562006-01-10 17:58:23 +00002617 nCol = pList->nExpr;
drh17435752007-08-16 04:30:38 +00002618 pIndex = sqlite3DbMallocZero(db,
danielk1977b3bf5562006-01-10 17:58:23 +00002619 sizeof(Index) + /* Index structure */
2620 sizeof(int)*nCol + /* Index.aiColumn */
2621 sizeof(int)*(nCol+1) + /* Index.aiRowEst */
2622 sizeof(char *)*nCol + /* Index.azColl */
2623 sizeof(u8)*nCol + /* Index.aSortOrder */
2624 nName + 1 + /* Index.zName */
2625 nExtra /* Collation sequence names */
2626 );
drh17435752007-08-16 04:30:38 +00002627 if( db->mallocFailed ){
2628 goto exit_create_index;
2629 }
drh78aecb72006-02-10 18:08:09 +00002630 pIndex->azColl = (char**)(&pIndex[1]);
2631 pIndex->aiColumn = (int *)(&pIndex->azColl[nCol]);
danielk1977bab45c62006-01-16 15:14:27 +00002632 pIndex->aiRowEst = (unsigned *)(&pIndex->aiColumn[nCol]);
drh78aecb72006-02-10 18:08:09 +00002633 pIndex->aSortOrder = (u8 *)(&pIndex->aiRowEst[nCol+1]);
danielk1977b3bf5562006-01-10 17:58:23 +00002634 pIndex->zName = (char *)(&pIndex->aSortOrder[nCol]);
2635 zExtra = (char *)(&pIndex->zName[nName+1]);
drh5bb3eb92007-05-04 13:15:55 +00002636 memcpy(pIndex->zName, zName, nName+1);
drh75897232000-05-29 14:26:00 +00002637 pIndex->pTable = pTab;
danielk19770202b292004-06-09 09:55:16 +00002638 pIndex->nColumn = pList->nExpr;
drh1bd10f82008-12-10 21:19:56 +00002639 pIndex->onError = (u8)onError;
2640 pIndex->autoIndex = (u8)(pName==0);
danielk1977da184232006-01-05 11:34:32 +00002641 pIndex->pSchema = db->aDb[iDb].pSchema;
drh21206082011-04-04 18:22:02 +00002642 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
drh75897232000-05-29 14:26:00 +00002643
drhfdd6e852005-12-16 01:06:16 +00002644 /* Check to see if we should honor DESC requests on index columns
2645 */
danielk1977da184232006-01-05 11:34:32 +00002646 if( pDb->pSchema->file_format>=4 ){
drhfdd6e852005-12-16 01:06:16 +00002647 sortOrderMask = -1; /* Honor DESC */
drhfdd6e852005-12-16 01:06:16 +00002648 }else{
2649 sortOrderMask = 0; /* Ignore DESC */
2650 }
2651
drh1ccde152000-06-17 13:12:39 +00002652 /* Scan the names of the columns of the table to be indexed and
2653 ** load the column indices into the Index structure. Report an error
2654 ** if any column is not found.
drhd3001712009-05-12 17:46:53 +00002655 **
2656 ** TODO: Add a test to make sure that the same column is not named
2657 ** more than once within the same index. Only the first instance of
2658 ** the column will ever be used by the optimizer. Note that using the
2659 ** same column more than once cannot be an error because that would
2660 ** break backwards compatibility - it needs to be a warning.
drh75897232000-05-29 14:26:00 +00002661 */
drhfdd6e852005-12-16 01:06:16 +00002662 for(i=0, pListItem=pList->a; i<pList->nExpr; i++, pListItem++){
2663 const char *zColName = pListItem->zName;
2664 Column *pTabCol;
drh85eeb692005-12-21 03:16:42 +00002665 int requestedSortOrder;
drha34001c2007-02-02 12:44:37 +00002666 char *zColl; /* Collation sequence name */
danielk1977b3bf5562006-01-10 17:58:23 +00002667
drhfdd6e852005-12-16 01:06:16 +00002668 for(j=0, pTabCol=pTab->aCol; j<pTab->nCol; j++, pTabCol++){
2669 if( sqlite3StrICmp(zColName, pTabCol->zName)==0 ) break;
drh75897232000-05-29 14:26:00 +00002670 }
2671 if( j>=pTab->nCol ){
danielk19774adee202004-05-08 08:23:19 +00002672 sqlite3ErrorMsg(pParse, "table %s has no column named %s",
drhfdd6e852005-12-16 01:06:16 +00002673 pTab->zName, zColName);
dan1db95102010-06-28 10:15:19 +00002674 pParse->checkSchema = 1;
drh75897232000-05-29 14:26:00 +00002675 goto exit_create_index;
2676 }
drh967e8b72000-06-21 13:59:10 +00002677 pIndex->aiColumn[i] = j;
drhd3001712009-05-12 17:46:53 +00002678 /* Justification of the ALWAYS(pListItem->pExpr->pColl): Because of
2679 ** the way the "idxlist" non-terminal is constructed by the parser,
2680 ** if pListItem->pExpr is not null then either pListItem->pExpr->pColl
2681 ** must exist or else there must have been an OOM error. But if there
2682 ** was an OOM error, we would never reach this point. */
2683 if( pListItem->pExpr && ALWAYS(pListItem->pExpr->pColl) ){
2684 int nColl;
2685 zColl = pListItem->pExpr->pColl->zName;
2686 nColl = sqlite3Strlen30(zColl) + 1;
2687 assert( nExtra>=nColl );
2688 memcpy(zExtra, zColl, nColl);
danielk1977b3bf5562006-01-10 17:58:23 +00002689 zColl = zExtra;
drhd3001712009-05-12 17:46:53 +00002690 zExtra += nColl;
2691 nExtra -= nColl;
danielk19770202b292004-06-09 09:55:16 +00002692 }else{
danielk1977b3bf5562006-01-10 17:58:23 +00002693 zColl = pTab->aCol[j].zColl;
2694 if( !zColl ){
2695 zColl = db->pDfltColl->zName;
2696 }
danielk19770202b292004-06-09 09:55:16 +00002697 }
drhb7f24de2009-05-13 17:35:23 +00002698 if( !db->init.busy && !sqlite3LocateCollSeq(pParse, zColl) ){
danielk19777cedc8d2004-06-10 10:50:08 +00002699 goto exit_create_index;
2700 }
danielk1977b3bf5562006-01-10 17:58:23 +00002701 pIndex->azColl[i] = zColl;
drhd946db02005-12-29 19:23:06 +00002702 requestedSortOrder = pListItem->sortOrder & sortOrderMask;
drh1bd10f82008-12-10 21:19:56 +00002703 pIndex->aSortOrder[i] = (u8)requestedSortOrder;
drh75897232000-05-29 14:26:00 +00002704 }
drh51147ba2005-07-23 22:59:55 +00002705 sqlite3DefaultRowEst(pIndex);
drh75897232000-05-29 14:26:00 +00002706
danielk1977d8123362004-06-12 09:25:12 +00002707 if( pTab==pParse->pNewTable ){
2708 /* This routine has been called to create an automatic index as a
2709 ** result of a PRIMARY KEY or UNIQUE clause on a column definition, or
2710 ** a PRIMARY KEY or UNIQUE clause following the column definitions.
2711 ** i.e. one of:
2712 **
2713 ** CREATE TABLE t(x PRIMARY KEY, y);
2714 ** CREATE TABLE t(x, y, UNIQUE(x, y));
2715 **
2716 ** Either way, check to see if the table already has such an index. If
2717 ** so, don't bother creating this one. This only applies to
2718 ** automatically created indices. Users can do as they wish with
2719 ** explicit indices.
drhd3001712009-05-12 17:46:53 +00002720 **
2721 ** Two UNIQUE or PRIMARY KEY constraints are considered equivalent
2722 ** (and thus suppressing the second one) even if they have different
2723 ** sort orders.
2724 **
2725 ** If there are different collating sequences or if the columns of
2726 ** the constraint occur in different orders, then the constraints are
2727 ** considered distinct and both result in separate indices.
danielk1977d8123362004-06-12 09:25:12 +00002728 */
2729 Index *pIdx;
2730 for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){
2731 int k;
2732 assert( pIdx->onError!=OE_None );
2733 assert( pIdx->autoIndex );
2734 assert( pIndex->onError!=OE_None );
2735
2736 if( pIdx->nColumn!=pIndex->nColumn ) continue;
2737 for(k=0; k<pIdx->nColumn; k++){
drhd3001712009-05-12 17:46:53 +00002738 const char *z1;
2739 const char *z2;
danielk1977d8123362004-06-12 09:25:12 +00002740 if( pIdx->aiColumn[k]!=pIndex->aiColumn[k] ) break;
drhd3001712009-05-12 17:46:53 +00002741 z1 = pIdx->azColl[k];
2742 z2 = pIndex->azColl[k];
danielk1977b3bf5562006-01-10 17:58:23 +00002743 if( z1!=z2 && sqlite3StrICmp(z1, z2) ) break;
danielk1977d8123362004-06-12 09:25:12 +00002744 }
2745 if( k==pIdx->nColumn ){
danielk1977f736b772004-06-17 06:13:34 +00002746 if( pIdx->onError!=pIndex->onError ){
2747 /* This constraint creates the same index as a previous
2748 ** constraint specified somewhere in the CREATE TABLE statement.
2749 ** However the ON CONFLICT clauses are different. If both this
2750 ** constraint and the previous equivalent constraint have explicit
2751 ** ON CONFLICT clauses this is an error. Otherwise, use the
2752 ** explicitly specified behaviour for the index.
2753 */
2754 if( !(pIdx->onError==OE_Default || pIndex->onError==OE_Default) ){
2755 sqlite3ErrorMsg(pParse,
2756 "conflicting ON CONFLICT clauses specified", 0);
2757 }
2758 if( pIdx->onError==OE_Default ){
2759 pIdx->onError = pIndex->onError;
2760 }
2761 }
danielk1977d8123362004-06-12 09:25:12 +00002762 goto exit_create_index;
2763 }
2764 }
2765 }
2766
drh75897232000-05-29 14:26:00 +00002767 /* Link the new Index structure to its table and to the other
drhadbca9c2001-09-27 15:11:53 +00002768 ** in-memory database structures.
drh75897232000-05-29 14:26:00 +00002769 */
drh234c39d2004-07-24 03:30:47 +00002770 if( db->init.busy ){
drh6d4abfb2001-10-22 02:58:08 +00002771 Index *p;
drh21206082011-04-04 18:22:02 +00002772 assert( sqlite3SchemaMutexHeld(db, 0, pIndex->pSchema) );
danielk1977da184232006-01-05 11:34:32 +00002773 p = sqlite3HashInsert(&pIndex->pSchema->idxHash,
drha83ccca2009-04-28 13:01:09 +00002774 pIndex->zName, sqlite3Strlen30(pIndex->zName),
drhea678832008-12-10 19:26:22 +00002775 pIndex);
drh6d4abfb2001-10-22 02:58:08 +00002776 if( p ){
2777 assert( p==pIndex ); /* Malloc must have failed */
drh17435752007-08-16 04:30:38 +00002778 db->mallocFailed = 1;
drh6d4abfb2001-10-22 02:58:08 +00002779 goto exit_create_index;
2780 }
drh5e00f6c2001-09-13 13:46:56 +00002781 db->flags |= SQLITE_InternChanges;
drh234c39d2004-07-24 03:30:47 +00002782 if( pTblName!=0 ){
2783 pIndex->tnum = db->init.newTnum;
2784 }
drhd78eeee2001-09-13 16:18:53 +00002785 }
2786
drh1d85d932004-02-14 23:05:52 +00002787 /* If the db->init.busy is 0 then create the index on disk. This
drh75897232000-05-29 14:26:00 +00002788 ** involves writing the index into the master table and filling in the
2789 ** index with the current table contents.
2790 **
drh1d85d932004-02-14 23:05:52 +00002791 ** The db->init.busy is 0 when the user first enters a CREATE INDEX
2792 ** command. db->init.busy is 1 when a database is opened and
drh75897232000-05-29 14:26:00 +00002793 ** CREATE INDEX statements are read out of the master table. In
2794 ** the latter case the index already exists on disk, which is why
2795 ** we don't want to recreate it.
drh5edc3122001-09-13 21:53:09 +00002796 **
danielk1977cbb18d22004-05-28 11:37:27 +00002797 ** If pTblName==0 it means this index is generated as a primary key
drh382c0242001-10-06 16:33:02 +00002798 ** or UNIQUE constraint of a CREATE TABLE statement. Since the table
2799 ** has just been created, it contains no data and the index initialization
2800 ** step can be skipped.
drh75897232000-05-29 14:26:00 +00002801 */
drhd3001712009-05-12 17:46:53 +00002802 else{ /* if( db->init.busy==0 ) */
drhadbca9c2001-09-27 15:11:53 +00002803 Vdbe *v;
drh063336a2004-11-05 20:58:39 +00002804 char *zStmt;
drh0a07c102008-01-03 18:03:08 +00002805 int iMem = ++pParse->nMem;
drh75897232000-05-29 14:26:00 +00002806
danielk19774adee202004-05-08 08:23:19 +00002807 v = sqlite3GetVdbe(pParse);
drh75897232000-05-29 14:26:00 +00002808 if( v==0 ) goto exit_create_index;
drh063336a2004-11-05 20:58:39 +00002809
drhfdd6e852005-12-16 01:06:16 +00002810
drh063336a2004-11-05 20:58:39 +00002811 /* Create the rootpage for the index
2812 */
drhaee128d2005-02-14 20:48:18 +00002813 sqlite3BeginWriteOperation(pParse, 1, iDb);
drhb7654112008-01-12 12:48:07 +00002814 sqlite3VdbeAddOp2(v, OP_CreateIndex, iDb, iMem);
drh063336a2004-11-05 20:58:39 +00002815
2816 /* Gather the complete text of the CREATE INDEX statement into
2817 ** the zStmt variable
2818 */
drhd3001712009-05-12 17:46:53 +00002819 if( pStart ){
2820 assert( pEnd!=0 );
drh063336a2004-11-05 20:58:39 +00002821 /* A named index with an explicit CREATE INDEX statement */
danielk19771e536952007-08-16 10:09:01 +00002822 zStmt = sqlite3MPrintf(db, "CREATE%s INDEX %.*s",
drh063336a2004-11-05 20:58:39 +00002823 onError==OE_None ? "" : " UNIQUE",
dan28e4e352011-06-24 18:43:23 +00002824 (int)(pEnd->z - pName->z) + 1,
drh063336a2004-11-05 20:58:39 +00002825 pName->z);
2826 }else{
2827 /* An automatic index created by a PRIMARY KEY or UNIQUE constraint */
drhe497f002004-11-07 13:01:49 +00002828 /* zStmt = sqlite3MPrintf(""); */
2829 zStmt = 0;
drh75897232000-05-29 14:26:00 +00002830 }
drh063336a2004-11-05 20:58:39 +00002831
2832 /* Add an entry in sqlite_master for this index
2833 */
2834 sqlite3NestedParse(pParse,
drhb7654112008-01-12 12:48:07 +00002835 "INSERT INTO %Q.%s VALUES('index',%Q,%Q,#%d,%Q);",
drh063336a2004-11-05 20:58:39 +00002836 db->aDb[iDb].zName, SCHEMA_TABLE(iDb),
2837 pIndex->zName,
2838 pTab->zName,
drhb7654112008-01-12 12:48:07 +00002839 iMem,
drh063336a2004-11-05 20:58:39 +00002840 zStmt
2841 );
drh633e6d52008-07-28 19:34:53 +00002842 sqlite3DbFree(db, zStmt);
drh063336a2004-11-05 20:58:39 +00002843
danielk1977a21c6b62005-01-24 10:25:59 +00002844 /* Fill the index with data and reparse the schema. Code an OP_Expire
2845 ** to invalidate all pre-compiled statements.
drh063336a2004-11-05 20:58:39 +00002846 */
danielk1977cbb18d22004-05-28 11:37:27 +00002847 if( pTblName ){
drh063336a2004-11-05 20:58:39 +00002848 sqlite3RefillIndex(pParse, pIndex, iMem);
drh9cbf3422008-01-17 16:22:13 +00002849 sqlite3ChangeCookie(pParse, iDb);
drh5d9c9da2011-06-03 20:11:17 +00002850 sqlite3VdbeAddParseSchemaOp(v, iDb,
2851 sqlite3MPrintf(db, "name='%q' AND type='index'", pIndex->zName));
drh66a51672008-01-03 00:01:23 +00002852 sqlite3VdbeAddOp1(v, OP_Expire, 0);
drh5e00f6c2001-09-13 13:46:56 +00002853 }
drh75897232000-05-29 14:26:00 +00002854 }
2855
danielk1977d8123362004-06-12 09:25:12 +00002856 /* When adding an index to the list of indices for a table, make
2857 ** sure all indices labeled OE_Replace come after all those labeled
drhd3001712009-05-12 17:46:53 +00002858 ** OE_Ignore. This is necessary for the correct constraint check
2859 ** processing (in sqlite3GenerateConstraintChecks()) as part of
2860 ** UPDATE and INSERT statements.
danielk1977d8123362004-06-12 09:25:12 +00002861 */
drh234c39d2004-07-24 03:30:47 +00002862 if( db->init.busy || pTblName==0 ){
2863 if( onError!=OE_Replace || pTab->pIndex==0
2864 || pTab->pIndex->onError==OE_Replace){
2865 pIndex->pNext = pTab->pIndex;
2866 pTab->pIndex = pIndex;
2867 }else{
2868 Index *pOther = pTab->pIndex;
2869 while( pOther->pNext && pOther->pNext->onError!=OE_Replace ){
2870 pOther = pOther->pNext;
2871 }
2872 pIndex->pNext = pOther->pNext;
2873 pOther->pNext = pIndex;
danielk1977d8123362004-06-12 09:25:12 +00002874 }
dan1da40a32009-09-19 17:00:31 +00002875 pRet = pIndex;
drh234c39d2004-07-24 03:30:47 +00002876 pIndex = 0;
danielk1977d8123362004-06-12 09:25:12 +00002877 }
danielk1977d8123362004-06-12 09:25:12 +00002878
drh75897232000-05-29 14:26:00 +00002879 /* Clean up before exiting */
2880exit_create_index:
drh956bc922004-07-24 17:38:29 +00002881 if( pIndex ){
drhb9755982010-07-24 16:34:37 +00002882 sqlite3DbFree(db, pIndex->zColAff);
danielk1977cb9d8d82009-03-18 18:43:36 +00002883 sqlite3DbFree(db, pIndex);
drh956bc922004-07-24 17:38:29 +00002884 }
drh633e6d52008-07-28 19:34:53 +00002885 sqlite3ExprListDelete(db, pList);
2886 sqlite3SrcListDelete(db, pTblName);
2887 sqlite3DbFree(db, zName);
dan1da40a32009-09-19 17:00:31 +00002888 return pRet;
drh75897232000-05-29 14:26:00 +00002889}
2890
2891/*
drh51147ba2005-07-23 22:59:55 +00002892** Fill the Index.aiRowEst[] array with default information - information
drh91124b32005-08-18 18:15:05 +00002893** to be used when we have not run the ANALYZE command.
drh28c4cf42005-07-27 20:41:43 +00002894**
2895** aiRowEst[0] is suppose to contain the number of elements in the index.
2896** Since we do not know, guess 1 million. aiRowEst[1] is an estimate of the
2897** number of rows in the table that match any particular value of the
2898** first column of the index. aiRowEst[2] is an estimate of the number
2899** of rows that match any particular combiniation of the first 2 columns
2900** of the index. And so forth. It must always be the case that
2901*
2902** aiRowEst[N]<=aiRowEst[N-1]
2903** aiRowEst[N]>=1
2904**
2905** Apart from that, we have little to go on besides intuition as to
2906** how aiRowEst[] should be initialized. The numbers generated here
2907** are based on typical values found in actual indices.
drh51147ba2005-07-23 22:59:55 +00002908*/
2909void sqlite3DefaultRowEst(Index *pIdx){
drh37108e12005-08-31 13:13:31 +00002910 unsigned *a = pIdx->aiRowEst;
drh51147ba2005-07-23 22:59:55 +00002911 int i;
drh15564052010-09-25 22:32:56 +00002912 unsigned n;
drh28c4cf42005-07-27 20:41:43 +00002913 assert( a!=0 );
drh15564052010-09-25 22:32:56 +00002914 a[0] = pIdx->pTable->nRowEst;
2915 if( a[0]<10 ) a[0] = 10;
2916 n = 10;
2917 for(i=1; i<=pIdx->nColumn; i++){
2918 a[i] = n;
2919 if( n>5 ) n--;
drh28c4cf42005-07-27 20:41:43 +00002920 }
2921 if( pIdx->onError!=OE_None ){
2922 a[pIdx->nColumn] = 1;
drh51147ba2005-07-23 22:59:55 +00002923 }
2924}
2925
2926/*
drh74e24cd2002-01-09 03:19:59 +00002927** This routine will drop an existing named index. This routine
2928** implements the DROP INDEX statement.
drh75897232000-05-29 14:26:00 +00002929*/
drh4d91a702006-01-04 15:54:36 +00002930void sqlite3DropIndex(Parse *pParse, SrcList *pName, int ifExists){
drh75897232000-05-29 14:26:00 +00002931 Index *pIndex;
drh75897232000-05-29 14:26:00 +00002932 Vdbe *v;
drh9bb575f2004-09-06 17:24:11 +00002933 sqlite3 *db = pParse->db;
danielk1977da184232006-01-05 11:34:32 +00002934 int iDb;
drh75897232000-05-29 14:26:00 +00002935
drh8af73d42009-05-13 22:58:28 +00002936 assert( pParse->nErr==0 ); /* Never called with prior errors */
2937 if( db->mallocFailed ){
danielk1977d5d56522005-03-16 12:15:20 +00002938 goto exit_drop_index;
2939 }
drhd24cc422003-03-27 12:51:24 +00002940 assert( pName->nSrc==1 );
danielk1977d5d56522005-03-16 12:15:20 +00002941 if( SQLITE_OK!=sqlite3ReadSchema(pParse) ){
2942 goto exit_drop_index;
2943 }
danielk19774adee202004-05-08 08:23:19 +00002944 pIndex = sqlite3FindIndex(db, pName->a[0].zName, pName->a[0].zDatabase);
drh75897232000-05-29 14:26:00 +00002945 if( pIndex==0 ){
drh4d91a702006-01-04 15:54:36 +00002946 if( !ifExists ){
2947 sqlite3ErrorMsg(pParse, "no such index: %S", pName, 0);
dan57966752011-04-09 17:32:58 +00002948 }else{
2949 sqlite3CodeVerifyNamedSchema(pParse, pName->a[0].zDatabase);
drh4d91a702006-01-04 15:54:36 +00002950 }
drha6ecd332004-06-10 00:29:09 +00002951 pParse->checkSchema = 1;
drhd24cc422003-03-27 12:51:24 +00002952 goto exit_drop_index;
drh75897232000-05-29 14:26:00 +00002953 }
drh485b39b2002-07-13 03:11:52 +00002954 if( pIndex->autoIndex ){
danielk19774adee202004-05-08 08:23:19 +00002955 sqlite3ErrorMsg(pParse, "index associated with UNIQUE "
drh485b39b2002-07-13 03:11:52 +00002956 "or PRIMARY KEY constraint cannot be dropped", 0);
drhd24cc422003-03-27 12:51:24 +00002957 goto exit_drop_index;
2958 }
danielk1977da184232006-01-05 11:34:32 +00002959 iDb = sqlite3SchemaToIndex(db, pIndex->pSchema);
drhe5f9c642003-01-13 23:27:31 +00002960#ifndef SQLITE_OMIT_AUTHORIZATION
2961 {
2962 int code = SQLITE_DROP_INDEX;
2963 Table *pTab = pIndex->pTable;
danielk1977da184232006-01-05 11:34:32 +00002964 const char *zDb = db->aDb[iDb].zName;
2965 const char *zTab = SCHEMA_TABLE(iDb);
danielk19774adee202004-05-08 08:23:19 +00002966 if( sqlite3AuthCheck(pParse, SQLITE_DELETE, zTab, 0, zDb) ){
drhd24cc422003-03-27 12:51:24 +00002967 goto exit_drop_index;
drhe5f9c642003-01-13 23:27:31 +00002968 }
danielk1977da184232006-01-05 11:34:32 +00002969 if( !OMIT_TEMPDB && iDb ) code = SQLITE_DROP_TEMP_INDEX;
danielk19774adee202004-05-08 08:23:19 +00002970 if( sqlite3AuthCheck(pParse, code, pIndex->zName, pTab->zName, zDb) ){
drhd24cc422003-03-27 12:51:24 +00002971 goto exit_drop_index;
drhe5f9c642003-01-13 23:27:31 +00002972 }
drhed6c8672003-01-12 18:02:16 +00002973 }
drhe5f9c642003-01-13 23:27:31 +00002974#endif
drh75897232000-05-29 14:26:00 +00002975
2976 /* Generate code to remove the index and from the master table */
danielk19774adee202004-05-08 08:23:19 +00002977 v = sqlite3GetVdbe(pParse);
drh75897232000-05-29 14:26:00 +00002978 if( v ){
drh77658e22007-12-04 16:54:52 +00002979 sqlite3BeginWriteOperation(pParse, 1, iDb);
drhb17131a2004-11-05 22:18:49 +00002980 sqlite3NestedParse(pParse,
dan39f1bcb2010-09-29 07:16:46 +00002981 "DELETE FROM %Q.%s WHERE name=%Q AND type='index'",
drhb17131a2004-11-05 22:18:49 +00002982 db->aDb[iDb].zName, SCHEMA_TABLE(iDb),
2983 pIndex->zName
2984 );
danielk1977006015d2008-04-11 17:11:26 +00002985 if( sqlite3FindTable(db, "sqlite_stat1", db->aDb[iDb].zName) ){
2986 sqlite3NestedParse(pParse,
2987 "DELETE FROM %Q.sqlite_stat1 WHERE idx=%Q",
2988 db->aDb[iDb].zName, pIndex->zName
2989 );
2990 }
drh9cbf3422008-01-17 16:22:13 +00002991 sqlite3ChangeCookie(pParse, iDb);
drhb17131a2004-11-05 22:18:49 +00002992 destroyRootPage(pParse, pIndex->tnum, iDb);
drh66a51672008-01-03 00:01:23 +00002993 sqlite3VdbeAddOp4(v, OP_DropIndex, iDb, 0, 0, pIndex->zName, 0);
drh75897232000-05-29 14:26:00 +00002994 }
2995
drhd24cc422003-03-27 12:51:24 +00002996exit_drop_index:
drh633e6d52008-07-28 19:34:53 +00002997 sqlite3SrcListDelete(db, pName);
drh75897232000-05-29 14:26:00 +00002998}
2999
3000/*
drhcf643722007-03-27 13:36:37 +00003001** pArray is a pointer to an array of objects. Each object in the
3002** array is szEntry bytes in size. This routine allocates a new
3003** object on the end of the array.
drh13449892005-09-07 21:22:45 +00003004**
drhcf643722007-03-27 13:36:37 +00003005** *pnEntry is the number of entries already in use. *pnAlloc is
3006** the previously allocated size of the array. initSize is the
3007** suggested initial array size allocation.
drh13449892005-09-07 21:22:45 +00003008**
drhcf643722007-03-27 13:36:37 +00003009** The index of the new entry is returned in *pIdx.
drh13449892005-09-07 21:22:45 +00003010**
drhcf643722007-03-27 13:36:37 +00003011** This routine returns a pointer to the array of objects. This
3012** might be the same as the pArray parameter or it might be a different
3013** pointer if the array was resized.
drh13449892005-09-07 21:22:45 +00003014*/
drhcf643722007-03-27 13:36:37 +00003015void *sqlite3ArrayAllocate(
drh17435752007-08-16 04:30:38 +00003016 sqlite3 *db, /* Connection to notify of malloc failures */
drhcf643722007-03-27 13:36:37 +00003017 void *pArray, /* Array of objects. Might be reallocated */
3018 int szEntry, /* Size of each object in the array */
3019 int initSize, /* Suggested initial allocation, in elements */
3020 int *pnEntry, /* Number of objects currently in use */
3021 int *pnAlloc, /* Current size of the allocation, in elements */
3022 int *pIdx /* Write the index of a new slot here */
3023){
3024 char *z;
3025 if( *pnEntry >= *pnAlloc ){
drh13449892005-09-07 21:22:45 +00003026 void *pNew;
drh5360ad32005-09-08 00:13:27 +00003027 int newSize;
drhcf643722007-03-27 13:36:37 +00003028 newSize = (*pnAlloc)*2 + initSize;
danielk197726783a52007-08-29 14:06:22 +00003029 pNew = sqlite3DbRealloc(db, pArray, newSize*szEntry);
drh13449892005-09-07 21:22:45 +00003030 if( pNew==0 ){
drhcf643722007-03-27 13:36:37 +00003031 *pIdx = -1;
3032 return pArray;
drh13449892005-09-07 21:22:45 +00003033 }
drh6a1e0712008-12-05 15:24:15 +00003034 *pnAlloc = sqlite3DbMallocSize(db, pNew)/szEntry;
drhcf643722007-03-27 13:36:37 +00003035 pArray = pNew;
drh13449892005-09-07 21:22:45 +00003036 }
drhcf643722007-03-27 13:36:37 +00003037 z = (char*)pArray;
3038 memset(&z[*pnEntry * szEntry], 0, szEntry);
3039 *pIdx = *pnEntry;
3040 ++*pnEntry;
3041 return pArray;
drh13449892005-09-07 21:22:45 +00003042}
3043
3044/*
drh75897232000-05-29 14:26:00 +00003045** Append a new element to the given IdList. Create a new IdList if
3046** need be.
drhdaffd0e2001-04-11 14:28:42 +00003047**
3048** A new IdList is returned, or NULL if malloc() fails.
drh75897232000-05-29 14:26:00 +00003049*/
drh17435752007-08-16 04:30:38 +00003050IdList *sqlite3IdListAppend(sqlite3 *db, IdList *pList, Token *pToken){
drh13449892005-09-07 21:22:45 +00003051 int i;
drh75897232000-05-29 14:26:00 +00003052 if( pList==0 ){
drh17435752007-08-16 04:30:38 +00003053 pList = sqlite3DbMallocZero(db, sizeof(IdList) );
drh75897232000-05-29 14:26:00 +00003054 if( pList==0 ) return 0;
drh4305d102003-07-30 12:34:12 +00003055 pList->nAlloc = 0;
drh75897232000-05-29 14:26:00 +00003056 }
drhcf643722007-03-27 13:36:37 +00003057 pList->a = sqlite3ArrayAllocate(
drh17435752007-08-16 04:30:38 +00003058 db,
drhcf643722007-03-27 13:36:37 +00003059 pList->a,
3060 sizeof(pList->a[0]),
3061 5,
3062 &pList->nId,
3063 &pList->nAlloc,
3064 &i
3065 );
drh13449892005-09-07 21:22:45 +00003066 if( i<0 ){
drh633e6d52008-07-28 19:34:53 +00003067 sqlite3IdListDelete(db, pList);
drh13449892005-09-07 21:22:45 +00003068 return 0;
drh75897232000-05-29 14:26:00 +00003069 }
drh17435752007-08-16 04:30:38 +00003070 pList->a[i].zName = sqlite3NameFromToken(db, pToken);
drh75897232000-05-29 14:26:00 +00003071 return pList;
3072}
3073
3074/*
drhfe05af82005-07-21 03:14:59 +00003075** Delete an IdList.
3076*/
drh633e6d52008-07-28 19:34:53 +00003077void sqlite3IdListDelete(sqlite3 *db, IdList *pList){
drhfe05af82005-07-21 03:14:59 +00003078 int i;
3079 if( pList==0 ) return;
3080 for(i=0; i<pList->nId; i++){
drh633e6d52008-07-28 19:34:53 +00003081 sqlite3DbFree(db, pList->a[i].zName);
drhfe05af82005-07-21 03:14:59 +00003082 }
drh633e6d52008-07-28 19:34:53 +00003083 sqlite3DbFree(db, pList->a);
3084 sqlite3DbFree(db, pList);
drhfe05af82005-07-21 03:14:59 +00003085}
3086
3087/*
3088** Return the index in pList of the identifier named zId. Return -1
3089** if not found.
3090*/
3091int sqlite3IdListIndex(IdList *pList, const char *zName){
3092 int i;
3093 if( pList==0 ) return -1;
3094 for(i=0; i<pList->nId; i++){
3095 if( sqlite3StrICmp(pList->a[i].zName, zName)==0 ) return i;
3096 }
3097 return -1;
3098}
3099
3100/*
drha78c22c2008-11-11 18:28:58 +00003101** Expand the space allocated for the given SrcList object by
3102** creating nExtra new slots beginning at iStart. iStart is zero based.
3103** New slots are zeroed.
3104**
3105** For example, suppose a SrcList initially contains two entries: A,B.
3106** To append 3 new entries onto the end, do this:
3107**
3108** sqlite3SrcListEnlarge(db, pSrclist, 3, 2);
3109**
3110** After the call above it would contain: A, B, nil, nil, nil.
3111** If the iStart argument had been 1 instead of 2, then the result
3112** would have been: A, nil, nil, nil, B. To prepend the new slots,
3113** the iStart value would be 0. The result then would
3114** be: nil, nil, nil, A, B.
3115**
3116** If a memory allocation fails the SrcList is unchanged. The
3117** db->mallocFailed flag will be set to true.
3118*/
3119SrcList *sqlite3SrcListEnlarge(
3120 sqlite3 *db, /* Database connection to notify of OOM errors */
3121 SrcList *pSrc, /* The SrcList to be enlarged */
3122 int nExtra, /* Number of new slots to add to pSrc->a[] */
3123 int iStart /* Index in pSrc->a[] of first new slot */
3124){
3125 int i;
3126
3127 /* Sanity checking on calling parameters */
3128 assert( iStart>=0 );
3129 assert( nExtra>=1 );
drh8af73d42009-05-13 22:58:28 +00003130 assert( pSrc!=0 );
3131 assert( iStart<=pSrc->nSrc );
drha78c22c2008-11-11 18:28:58 +00003132
3133 /* Allocate additional space if needed */
3134 if( pSrc->nSrc+nExtra>pSrc->nAlloc ){
3135 SrcList *pNew;
3136 int nAlloc = pSrc->nSrc+nExtra;
drh6a1e0712008-12-05 15:24:15 +00003137 int nGot;
drha78c22c2008-11-11 18:28:58 +00003138 pNew = sqlite3DbRealloc(db, pSrc,
3139 sizeof(*pSrc) + (nAlloc-1)*sizeof(pSrc->a[0]) );
3140 if( pNew==0 ){
3141 assert( db->mallocFailed );
3142 return pSrc;
3143 }
3144 pSrc = pNew;
drh6a1e0712008-12-05 15:24:15 +00003145 nGot = (sqlite3DbMallocSize(db, pNew) - sizeof(*pSrc))/sizeof(pSrc->a[0])+1;
drh1bd10f82008-12-10 21:19:56 +00003146 pSrc->nAlloc = (u16)nGot;
drha78c22c2008-11-11 18:28:58 +00003147 }
3148
3149 /* Move existing slots that come after the newly inserted slots
3150 ** out of the way */
3151 for(i=pSrc->nSrc-1; i>=iStart; i--){
3152 pSrc->a[i+nExtra] = pSrc->a[i];
3153 }
shane18e526c2008-12-10 22:30:24 +00003154 pSrc->nSrc += (i16)nExtra;
drha78c22c2008-11-11 18:28:58 +00003155
3156 /* Zero the newly allocated slots */
3157 memset(&pSrc->a[iStart], 0, sizeof(pSrc->a[0])*nExtra);
3158 for(i=iStart; i<iStart+nExtra; i++){
3159 pSrc->a[i].iCursor = -1;
3160 }
3161
3162 /* Return a pointer to the enlarged SrcList */
3163 return pSrc;
3164}
3165
3166
3167/*
drhad3cab52002-05-24 02:04:32 +00003168** Append a new table name to the given SrcList. Create a new SrcList if
drhb7916a72009-05-27 10:31:29 +00003169** need be. A new entry is created in the SrcList even if pTable is NULL.
drhad3cab52002-05-24 02:04:32 +00003170**
drha78c22c2008-11-11 18:28:58 +00003171** A SrcList is returned, or NULL if there is an OOM error. The returned
3172** SrcList might be the same as the SrcList that was input or it might be
3173** a new one. If an OOM error does occurs, then the prior value of pList
3174** that is input to this routine is automatically freed.
drh113088e2003-03-20 01:16:58 +00003175**
3176** If pDatabase is not null, it means that the table has an optional
3177** database name prefix. Like this: "database.table". The pDatabase
3178** points to the table name and the pTable points to the database name.
3179** The SrcList.a[].zName field is filled with the table name which might
3180** come from pTable (if pDatabase is NULL) or from pDatabase.
3181** SrcList.a[].zDatabase is filled with the database name from pTable,
3182** or with NULL if no database is specified.
3183**
3184** In other words, if call like this:
3185**
drh17435752007-08-16 04:30:38 +00003186** sqlite3SrcListAppend(D,A,B,0);
drh113088e2003-03-20 01:16:58 +00003187**
3188** Then B is a table name and the database name is unspecified. If called
3189** like this:
3190**
drh17435752007-08-16 04:30:38 +00003191** sqlite3SrcListAppend(D,A,B,C);
drh113088e2003-03-20 01:16:58 +00003192**
drhd3001712009-05-12 17:46:53 +00003193** Then C is the table name and B is the database name. If C is defined
3194** then so is B. In other words, we never have a case where:
3195**
3196** sqlite3SrcListAppend(D,A,0,C);
drhb7916a72009-05-27 10:31:29 +00003197**
3198** Both pTable and pDatabase are assumed to be quoted. They are dequoted
3199** before being added to the SrcList.
drhad3cab52002-05-24 02:04:32 +00003200*/
drh17435752007-08-16 04:30:38 +00003201SrcList *sqlite3SrcListAppend(
3202 sqlite3 *db, /* Connection to notify of malloc failures */
3203 SrcList *pList, /* Append to this SrcList. NULL creates a new SrcList */
3204 Token *pTable, /* Table to append */
3205 Token *pDatabase /* Database of the table */
3206){
drha99db3b2004-06-19 14:49:12 +00003207 struct SrcList_item *pItem;
drhd3001712009-05-12 17:46:53 +00003208 assert( pDatabase==0 || pTable!=0 ); /* Cannot have C without B */
drhad3cab52002-05-24 02:04:32 +00003209 if( pList==0 ){
drh17435752007-08-16 04:30:38 +00003210 pList = sqlite3DbMallocZero(db, sizeof(SrcList) );
drhad3cab52002-05-24 02:04:32 +00003211 if( pList==0 ) return 0;
drh4305d102003-07-30 12:34:12 +00003212 pList->nAlloc = 1;
drhad3cab52002-05-24 02:04:32 +00003213 }
drha78c22c2008-11-11 18:28:58 +00003214 pList = sqlite3SrcListEnlarge(db, pList, 1, pList->nSrc);
3215 if( db->mallocFailed ){
3216 sqlite3SrcListDelete(db, pList);
3217 return 0;
drhad3cab52002-05-24 02:04:32 +00003218 }
drha78c22c2008-11-11 18:28:58 +00003219 pItem = &pList->a[pList->nSrc-1];
drh113088e2003-03-20 01:16:58 +00003220 if( pDatabase && pDatabase->z==0 ){
3221 pDatabase = 0;
3222 }
drhd3001712009-05-12 17:46:53 +00003223 if( pDatabase ){
drh113088e2003-03-20 01:16:58 +00003224 Token *pTemp = pDatabase;
3225 pDatabase = pTable;
3226 pTable = pTemp;
3227 }
drh17435752007-08-16 04:30:38 +00003228 pItem->zName = sqlite3NameFromToken(db, pTable);
3229 pItem->zDatabase = sqlite3NameFromToken(db, pDatabase);
drhad3cab52002-05-24 02:04:32 +00003230 return pList;
3231}
3232
3233/*
drhdfe88ec2008-11-03 20:55:06 +00003234** Assign VdbeCursor index numbers to all tables in a SrcList
drh63eb5f22003-04-29 16:20:44 +00003235*/
danielk19774adee202004-05-08 08:23:19 +00003236void sqlite3SrcListAssignCursors(Parse *pParse, SrcList *pList){
drh63eb5f22003-04-29 16:20:44 +00003237 int i;
drh9b3187e2005-01-18 14:45:47 +00003238 struct SrcList_item *pItem;
drh17435752007-08-16 04:30:38 +00003239 assert(pList || pParse->db->mallocFailed );
danielk1977261919c2005-12-06 12:52:59 +00003240 if( pList ){
3241 for(i=0, pItem=pList->a; i<pList->nSrc; i++, pItem++){
3242 if( pItem->iCursor>=0 ) break;
3243 pItem->iCursor = pParse->nTab++;
3244 if( pItem->pSelect ){
3245 sqlite3SrcListAssignCursors(pParse, pItem->pSelect->pSrc);
3246 }
drh63eb5f22003-04-29 16:20:44 +00003247 }
3248 }
3249}
3250
3251/*
drhad3cab52002-05-24 02:04:32 +00003252** Delete an entire SrcList including all its substructure.
3253*/
drh633e6d52008-07-28 19:34:53 +00003254void sqlite3SrcListDelete(sqlite3 *db, SrcList *pList){
drhad3cab52002-05-24 02:04:32 +00003255 int i;
drhbe5c89a2004-07-26 00:31:09 +00003256 struct SrcList_item *pItem;
drhad3cab52002-05-24 02:04:32 +00003257 if( pList==0 ) return;
drhbe5c89a2004-07-26 00:31:09 +00003258 for(pItem=pList->a, i=0; i<pList->nSrc; i++, pItem++){
drh633e6d52008-07-28 19:34:53 +00003259 sqlite3DbFree(db, pItem->zDatabase);
3260 sqlite3DbFree(db, pItem->zName);
3261 sqlite3DbFree(db, pItem->zAlias);
danielk197785574e32008-10-06 05:32:18 +00003262 sqlite3DbFree(db, pItem->zIndex);
dan1feeaed2010-07-23 15:41:47 +00003263 sqlite3DeleteTable(db, pItem->pTab);
drh633e6d52008-07-28 19:34:53 +00003264 sqlite3SelectDelete(db, pItem->pSelect);
3265 sqlite3ExprDelete(db, pItem->pOn);
3266 sqlite3IdListDelete(db, pItem->pUsing);
drh75897232000-05-29 14:26:00 +00003267 }
drh633e6d52008-07-28 19:34:53 +00003268 sqlite3DbFree(db, pList);
drh75897232000-05-29 14:26:00 +00003269}
3270
drh982cef72000-05-30 16:27:03 +00003271/*
drh61dfc312006-12-16 16:25:15 +00003272** This routine is called by the parser to add a new term to the
3273** end of a growing FROM clause. The "p" parameter is the part of
3274** the FROM clause that has already been constructed. "p" is NULL
3275** if this is the first term of the FROM clause. pTable and pDatabase
3276** are the name of the table and database named in the FROM clause term.
3277** pDatabase is NULL if the database name qualifier is missing - the
3278** usual case. If the term has a alias, then pAlias points to the
3279** alias token. If the term is a subquery, then pSubquery is the
3280** SELECT statement that the subquery encodes. The pTable and
3281** pDatabase parameters are NULL for subqueries. The pOn and pUsing
3282** parameters are the content of the ON and USING clauses.
3283**
3284** Return a new SrcList which encodes is the FROM with the new
3285** term added.
3286*/
3287SrcList *sqlite3SrcListAppendFromTerm(
drh17435752007-08-16 04:30:38 +00003288 Parse *pParse, /* Parsing context */
drh61dfc312006-12-16 16:25:15 +00003289 SrcList *p, /* The left part of the FROM clause already seen */
3290 Token *pTable, /* Name of the table to add to the FROM clause */
3291 Token *pDatabase, /* Name of the database containing pTable */
3292 Token *pAlias, /* The right-hand side of the AS subexpression */
3293 Select *pSubquery, /* A subquery used in place of a table name */
3294 Expr *pOn, /* The ON clause of a join */
3295 IdList *pUsing /* The USING clause of a join */
3296){
3297 struct SrcList_item *pItem;
drh17435752007-08-16 04:30:38 +00003298 sqlite3 *db = pParse->db;
danielk1977bd1a0a42009-07-01 16:12:07 +00003299 if( !p && (pOn || pUsing) ){
3300 sqlite3ErrorMsg(pParse, "a JOIN clause is required before %s",
3301 (pOn ? "ON" : "USING")
3302 );
3303 goto append_from_error;
3304 }
drh17435752007-08-16 04:30:38 +00003305 p = sqlite3SrcListAppend(db, p, pTable, pDatabase);
drh8af73d42009-05-13 22:58:28 +00003306 if( p==0 || NEVER(p->nSrc==0) ){
danielk1977bd1a0a42009-07-01 16:12:07 +00003307 goto append_from_error;
drh61dfc312006-12-16 16:25:15 +00003308 }
3309 pItem = &p->a[p->nSrc-1];
drh8af73d42009-05-13 22:58:28 +00003310 assert( pAlias!=0 );
3311 if( pAlias->n ){
drh17435752007-08-16 04:30:38 +00003312 pItem->zAlias = sqlite3NameFromToken(db, pAlias);
drh61dfc312006-12-16 16:25:15 +00003313 }
3314 pItem->pSelect = pSubquery;
danielk1977bd1a0a42009-07-01 16:12:07 +00003315 pItem->pOn = pOn;
3316 pItem->pUsing = pUsing;
drh61dfc312006-12-16 16:25:15 +00003317 return p;
danielk1977bd1a0a42009-07-01 16:12:07 +00003318
3319 append_from_error:
3320 assert( p==0 );
3321 sqlite3ExprDelete(db, pOn);
3322 sqlite3IdListDelete(db, pUsing);
3323 sqlite3SelectDelete(db, pSubquery);
3324 return 0;
drh61dfc312006-12-16 16:25:15 +00003325}
3326
3327/*
danielk1977b1c685b2008-10-06 16:18:39 +00003328** Add an INDEXED BY or NOT INDEXED clause to the most recently added
3329** element of the source-list passed as the second argument.
3330*/
3331void sqlite3SrcListIndexedBy(Parse *pParse, SrcList *p, Token *pIndexedBy){
drh8af73d42009-05-13 22:58:28 +00003332 assert( pIndexedBy!=0 );
3333 if( p && ALWAYS(p->nSrc>0) ){
danielk1977b1c685b2008-10-06 16:18:39 +00003334 struct SrcList_item *pItem = &p->a[p->nSrc-1];
3335 assert( pItem->notIndexed==0 && pItem->zIndex==0 );
3336 if( pIndexedBy->n==1 && !pIndexedBy->z ){
3337 /* A "NOT INDEXED" clause was supplied. See parse.y
3338 ** construct "indexed_opt" for details. */
3339 pItem->notIndexed = 1;
3340 }else{
3341 pItem->zIndex = sqlite3NameFromToken(pParse->db, pIndexedBy);
3342 }
3343 }
3344}
3345
3346/*
drh61dfc312006-12-16 16:25:15 +00003347** When building up a FROM clause in the parser, the join operator
3348** is initially attached to the left operand. But the code generator
3349** expects the join operator to be on the right operand. This routine
3350** Shifts all join operators from left to right for an entire FROM
3351** clause.
3352**
3353** Example: Suppose the join is like this:
3354**
3355** A natural cross join B
3356**
3357** The operator is "natural cross join". The A and B operands are stored
3358** in p->a[0] and p->a[1], respectively. The parser initially stores the
3359** operator with A. This routine shifts that operator over to B.
3360*/
3361void sqlite3SrcListShiftJoinType(SrcList *p){
3362 if( p && p->a ){
3363 int i;
3364 for(i=p->nSrc-1; i>0; i--){
3365 p->a[i].jointype = p->a[i-1].jointype;
3366 }
3367 p->a[0].jointype = 0;
3368 }
3369}
3370
3371/*
drhc4a3c772001-04-04 11:48:57 +00003372** Begin a transaction
3373*/
drh684917c2004-10-05 02:41:42 +00003374void sqlite3BeginTransaction(Parse *pParse, int type){
drh9bb575f2004-09-06 17:24:11 +00003375 sqlite3 *db;
danielk19771d850a72004-05-31 08:26:49 +00003376 Vdbe *v;
drh684917c2004-10-05 02:41:42 +00003377 int i;
drh5e00f6c2001-09-13 13:46:56 +00003378
drhd3001712009-05-12 17:46:53 +00003379 assert( pParse!=0 );
3380 db = pParse->db;
3381 assert( db!=0 );
drh04491712009-05-13 17:21:13 +00003382/* if( db->aDb[0].pBt==0 ) return; */
drhd3001712009-05-12 17:46:53 +00003383 if( sqlite3AuthCheck(pParse, SQLITE_TRANSACTION, "BEGIN", 0, 0) ){
3384 return;
3385 }
danielk19771d850a72004-05-31 08:26:49 +00003386 v = sqlite3GetVdbe(pParse);
3387 if( !v ) return;
drh684917c2004-10-05 02:41:42 +00003388 if( type!=TK_DEFERRED ){
3389 for(i=0; i<db->nDb; i++){
drh66a51672008-01-03 00:01:23 +00003390 sqlite3VdbeAddOp2(v, OP_Transaction, i, (type==TK_EXCLUSIVE)+1);
drhfb982642007-08-30 01:19:59 +00003391 sqlite3VdbeUsesBtree(v, i);
drh684917c2004-10-05 02:41:42 +00003392 }
3393 }
drh66a51672008-01-03 00:01:23 +00003394 sqlite3VdbeAddOp2(v, OP_AutoCommit, 0, 0);
drhc4a3c772001-04-04 11:48:57 +00003395}
3396
3397/*
3398** Commit a transaction
3399*/
danielk19774adee202004-05-08 08:23:19 +00003400void sqlite3CommitTransaction(Parse *pParse){
drh9bb575f2004-09-06 17:24:11 +00003401 sqlite3 *db;
danielk19771d850a72004-05-31 08:26:49 +00003402 Vdbe *v;
drh5e00f6c2001-09-13 13:46:56 +00003403
drhd3001712009-05-12 17:46:53 +00003404 assert( pParse!=0 );
3405 db = pParse->db;
3406 assert( db!=0 );
drh04491712009-05-13 17:21:13 +00003407/* if( db->aDb[0].pBt==0 ) return; */
drhd3001712009-05-12 17:46:53 +00003408 if( sqlite3AuthCheck(pParse, SQLITE_TRANSACTION, "COMMIT", 0, 0) ){
3409 return;
3410 }
danielk19771d850a72004-05-31 08:26:49 +00003411 v = sqlite3GetVdbe(pParse);
3412 if( v ){
drh66a51672008-01-03 00:01:23 +00003413 sqlite3VdbeAddOp2(v, OP_AutoCommit, 1, 0);
drh02f75f12004-02-24 01:04:11 +00003414 }
drhc4a3c772001-04-04 11:48:57 +00003415}
3416
3417/*
3418** Rollback a transaction
3419*/
danielk19774adee202004-05-08 08:23:19 +00003420void sqlite3RollbackTransaction(Parse *pParse){
drh9bb575f2004-09-06 17:24:11 +00003421 sqlite3 *db;
drh5e00f6c2001-09-13 13:46:56 +00003422 Vdbe *v;
3423
drhd3001712009-05-12 17:46:53 +00003424 assert( pParse!=0 );
3425 db = pParse->db;
3426 assert( db!=0 );
drh04491712009-05-13 17:21:13 +00003427/* if( db->aDb[0].pBt==0 ) return; */
drhd3001712009-05-12 17:46:53 +00003428 if( sqlite3AuthCheck(pParse, SQLITE_TRANSACTION, "ROLLBACK", 0, 0) ){
3429 return;
3430 }
danielk19774adee202004-05-08 08:23:19 +00003431 v = sqlite3GetVdbe(pParse);
drh5e00f6c2001-09-13 13:46:56 +00003432 if( v ){
drh66a51672008-01-03 00:01:23 +00003433 sqlite3VdbeAddOp2(v, OP_AutoCommit, 1, 1);
drh02f75f12004-02-24 01:04:11 +00003434 }
drhc4a3c772001-04-04 11:48:57 +00003435}
drhf57b14a2001-09-14 18:54:08 +00003436
3437/*
danielk1977fd7f0452008-12-17 17:30:26 +00003438** This function is called by the parser when it parses a command to create,
3439** release or rollback an SQL savepoint.
3440*/
3441void sqlite3Savepoint(Parse *pParse, int op, Token *pName){
danielk1977ab9b7032008-12-30 06:24:58 +00003442 char *zName = sqlite3NameFromToken(pParse->db, pName);
3443 if( zName ){
3444 Vdbe *v = sqlite3GetVdbe(pParse);
3445#ifndef SQLITE_OMIT_AUTHORIZATION
dan558814f2010-06-02 05:53:53 +00003446 static const char * const az[] = { "BEGIN", "RELEASE", "ROLLBACK" };
danielk1977ab9b7032008-12-30 06:24:58 +00003447 assert( !SAVEPOINT_BEGIN && SAVEPOINT_RELEASE==1 && SAVEPOINT_ROLLBACK==2 );
3448#endif
3449 if( !v || sqlite3AuthCheck(pParse, SQLITE_SAVEPOINT, az[op], zName, 0) ){
3450 sqlite3DbFree(pParse->db, zName);
3451 return;
3452 }
3453 sqlite3VdbeAddOp4(v, OP_Savepoint, op, 0, 0, zName, P4_DYNAMIC);
danielk1977fd7f0452008-12-17 17:30:26 +00003454 }
3455}
3456
3457/*
drhdc3ff9c2004-08-18 02:10:15 +00003458** Make sure the TEMP database is open and available for use. Return
3459** the number of errors. Leave any error messages in the pParse structure.
3460*/
danielk1977ddfb2f02006-02-17 12:25:14 +00003461int sqlite3OpenTempDatabase(Parse *pParse){
drhdc3ff9c2004-08-18 02:10:15 +00003462 sqlite3 *db = pParse->db;
3463 if( db->aDb[1].pBt==0 && !pParse->explain ){
drh33f4e022007-09-03 15:19:34 +00003464 int rc;
drh10a76c92010-01-26 01:25:26 +00003465 Btree *pBt;
drh33f4e022007-09-03 15:19:34 +00003466 static const int flags =
3467 SQLITE_OPEN_READWRITE |
3468 SQLITE_OPEN_CREATE |
3469 SQLITE_OPEN_EXCLUSIVE |
3470 SQLITE_OPEN_DELETEONCLOSE |
3471 SQLITE_OPEN_TEMP_DB;
3472
dan3a6d8ae2011-04-23 15:54:54 +00003473 rc = sqlite3BtreeOpen(db->pVfs, 0, db, &pBt, 0, flags);
drhdc3ff9c2004-08-18 02:10:15 +00003474 if( rc!=SQLITE_OK ){
3475 sqlite3ErrorMsg(pParse, "unable to open a temporary database "
3476 "file for storing temporary tables");
3477 pParse->rc = rc;
3478 return 1;
3479 }
drh10a76c92010-01-26 01:25:26 +00003480 db->aDb[1].pBt = pBt;
danielk197714db2662006-01-09 16:12:04 +00003481 assert( db->aDb[1].pSchema );
drh10a76c92010-01-26 01:25:26 +00003482 if( SQLITE_NOMEM==sqlite3BtreeSetPageSize(pBt, db->nextPagesize, -1, 0) ){
3483 db->mallocFailed = 1;
drh7c9c9862010-01-31 14:18:21 +00003484 return 1;
drh10a76c92010-01-26 01:25:26 +00003485 }
drhdc3ff9c2004-08-18 02:10:15 +00003486 }
3487 return 0;
3488}
3489
3490/*
drh80242052004-06-09 00:48:12 +00003491** Generate VDBE code that will verify the schema cookie and start
3492** a read-transaction for all named database files.
3493**
3494** It is important that all schema cookies be verified and all
3495** read transactions be started before anything else happens in
3496** the VDBE program. But this routine can be called after much other
3497** code has been generated. So here is what we do:
3498**
drhc275b4e2004-07-19 17:25:24 +00003499** The first time this routine is called, we code an OP_Goto that
drh80242052004-06-09 00:48:12 +00003500** will jump to a subroutine at the end of the program. Then we
3501** record every database that needs its schema verified in the
3502** pParse->cookieMask field. Later, after all other code has been
3503** generated, the subroutine that does the cookie verifications and
drhc275b4e2004-07-19 17:25:24 +00003504** starts the transactions will be coded and the OP_Goto P2 value
drh80242052004-06-09 00:48:12 +00003505** will be made to point to that subroutine. The generation of the
3506** cookie verification subroutine code happens in sqlite3FinishCoding().
drhc275b4e2004-07-19 17:25:24 +00003507**
3508** If iDb<0 then code the OP_Goto only - don't set flag to verify the
3509** schema on any databases. This can be used to position the OP_Goto
3510** early in the code, before we know if any database tables will be used.
drh001bbcb2003-03-19 03:14:00 +00003511*/
danielk19774adee202004-05-08 08:23:19 +00003512void sqlite3CodeVerifySchema(Parse *pParse, int iDb){
dan65a7cd12009-09-01 12:16:01 +00003513 Parse *pToplevel = sqlite3ParseToplevel(pParse);
drh80242052004-06-09 00:48:12 +00003514
dan65a7cd12009-09-01 12:16:01 +00003515 if( pToplevel->cookieGoto==0 ){
3516 Vdbe *v = sqlite3GetVdbe(pToplevel);
3517 if( v==0 ) return; /* This only happens if there was a prior error */
3518 pToplevel->cookieGoto = sqlite3VdbeAddOp2(v, OP_Goto, 0, 0)+1;
drh80242052004-06-09 00:48:12 +00003519 }
drhc275b4e2004-07-19 17:25:24 +00003520 if( iDb>=0 ){
dan65a7cd12009-09-01 12:16:01 +00003521 sqlite3 *db = pToplevel->db;
drh64123582011-04-02 20:01:02 +00003522 yDbMask mask;
dan65a7cd12009-09-01 12:16:01 +00003523
drhc275b4e2004-07-19 17:25:24 +00003524 assert( iDb<db->nDb );
3525 assert( db->aDb[iDb].pBt!=0 || iDb==1 );
drhc797d4d2007-05-08 01:08:49 +00003526 assert( iDb<SQLITE_MAX_ATTACHED+2 );
drh21206082011-04-04 18:22:02 +00003527 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
drh64123582011-04-02 20:01:02 +00003528 mask = ((yDbMask)1)<<iDb;
dan65a7cd12009-09-01 12:16:01 +00003529 if( (pToplevel->cookieMask & mask)==0 ){
3530 pToplevel->cookieMask |= mask;
3531 pToplevel->cookieValue[iDb] = db->aDb[iDb].pSchema->schema_cookie;
danielk197753c0f742005-03-29 03:10:59 +00003532 if( !OMIT_TEMPDB && iDb==1 ){
dan65a7cd12009-09-01 12:16:01 +00003533 sqlite3OpenTempDatabase(pToplevel);
drhdc3ff9c2004-08-18 02:10:15 +00003534 }
drhc275b4e2004-07-19 17:25:24 +00003535 }
drh001bbcb2003-03-19 03:14:00 +00003536 }
drh001bbcb2003-03-19 03:14:00 +00003537}
3538
3539/*
dan57966752011-04-09 17:32:58 +00003540** If argument zDb is NULL, then call sqlite3CodeVerifySchema() for each
3541** attached database. Otherwise, invoke it for the database named zDb only.
3542*/
3543void sqlite3CodeVerifyNamedSchema(Parse *pParse, const char *zDb){
3544 sqlite3 *db = pParse->db;
3545 int i;
3546 for(i=0; i<db->nDb; i++){
3547 Db *pDb = &db->aDb[i];
3548 if( pDb->pBt && (!zDb || 0==sqlite3StrICmp(zDb, pDb->zName)) ){
3549 sqlite3CodeVerifySchema(pParse, i);
3550 }
3551 }
3552}
3553
3554/*
drh1c928532002-01-31 15:54:21 +00003555** Generate VDBE code that prepares for doing an operation that
drhc977f7f2002-05-21 11:38:11 +00003556** might change the database.
3557**
3558** This routine starts a new transaction if we are not already within
3559** a transaction. If we are already within a transaction, then a checkpoint
drh7f0f12e2004-05-21 13:39:50 +00003560** is set if the setStatement parameter is true. A checkpoint should
drhc977f7f2002-05-21 11:38:11 +00003561** be set for operations that might fail (due to a constraint) part of
3562** the way through and which will need to undo some writes without having to
3563** rollback the whole transaction. For operations where all constraints
3564** can be checked before any changes are made to the database, it is never
3565** necessary to undo a write and the checkpoint should not be set.
drh1c928532002-01-31 15:54:21 +00003566*/
drh7f0f12e2004-05-21 13:39:50 +00003567void sqlite3BeginWriteOperation(Parse *pParse, int setStatement, int iDb){
dan65a7cd12009-09-01 12:16:01 +00003568 Parse *pToplevel = sqlite3ParseToplevel(pParse);
drh80242052004-06-09 00:48:12 +00003569 sqlite3CodeVerifySchema(pParse, iDb);
drh64123582011-04-02 20:01:02 +00003570 pToplevel->writeMask |= ((yDbMask)1)<<iDb;
dane0af83a2009-09-08 19:15:01 +00003571 pToplevel->isMultiWrite |= setStatement;
3572}
3573
drhff738bc2009-09-24 00:09:58 +00003574/*
3575** Indicate that the statement currently under construction might write
3576** more than one entry (example: deleting one row then inserting another,
3577** inserting multiple rows in a table, or inserting a row and index entries.)
3578** If an abort occurs after some of these writes have completed, then it will
3579** be necessary to undo the completed writes.
3580*/
3581void sqlite3MultiWrite(Parse *pParse){
3582 Parse *pToplevel = sqlite3ParseToplevel(pParse);
3583 pToplevel->isMultiWrite = 1;
3584}
3585
dane0af83a2009-09-08 19:15:01 +00003586/*
drhff738bc2009-09-24 00:09:58 +00003587** The code generator calls this routine if is discovers that it is
3588** possible to abort a statement prior to completion. In order to
3589** perform this abort without corrupting the database, we need to make
3590** sure that the statement is protected by a statement transaction.
3591**
3592** Technically, we only need to set the mayAbort flag if the
3593** isMultiWrite flag was previously set. There is a time dependency
3594** such that the abort must occur after the multiwrite. This makes
3595** some statements involving the REPLACE conflict resolution algorithm
3596** go a little faster. But taking advantage of this time dependency
3597** makes it more difficult to prove that the code is correct (in
3598** particular, it prevents us from writing an effective
3599** implementation of sqlite3AssertMayAbort()) and so we have chosen
3600** to take the safe route and skip the optimization.
dane0af83a2009-09-08 19:15:01 +00003601*/
3602void sqlite3MayAbort(Parse *pParse){
3603 Parse *pToplevel = sqlite3ParseToplevel(pParse);
3604 pToplevel->mayAbort = 1;
3605}
3606
3607/*
3608** Code an OP_Halt that causes the vdbe to return an SQLITE_CONSTRAINT
3609** error. The onError parameter determines which (if any) of the statement
3610** and/or current transaction is rolled back.
3611*/
3612void sqlite3HaltConstraint(Parse *pParse, int onError, char *p4, int p4type){
3613 Vdbe *v = sqlite3GetVdbe(pParse);
3614 if( onError==OE_Abort ){
3615 sqlite3MayAbort(pParse);
danielk19771d850a72004-05-31 08:26:49 +00003616 }
dane0af83a2009-09-08 19:15:01 +00003617 sqlite3VdbeAddOp4(v, OP_Halt, SQLITE_CONSTRAINT, onError, 0, p4, p4type);
drh663fc632002-02-02 18:49:19 +00003618}
3619
drh4343fea2004-11-05 23:46:15 +00003620/*
3621** Check to see if pIndex uses the collating sequence pColl. Return
3622** true if it does and false if it does not.
3623*/
3624#ifndef SQLITE_OMIT_REINDEX
danielk1977b3bf5562006-01-10 17:58:23 +00003625static int collationMatch(const char *zColl, Index *pIndex){
3626 int i;
drh04491712009-05-13 17:21:13 +00003627 assert( zColl!=0 );
danielk1977b3bf5562006-01-10 17:58:23 +00003628 for(i=0; i<pIndex->nColumn; i++){
3629 const char *z = pIndex->azColl[i];
drh04491712009-05-13 17:21:13 +00003630 assert( z!=0 );
3631 if( 0==sqlite3StrICmp(z, zColl) ){
danielk1977b3bf5562006-01-10 17:58:23 +00003632 return 1;
3633 }
drh4343fea2004-11-05 23:46:15 +00003634 }
3635 return 0;
3636}
3637#endif
3638
3639/*
3640** Recompute all indices of pTab that use the collating sequence pColl.
3641** If pColl==0 then recompute all indices of pTab.
3642*/
3643#ifndef SQLITE_OMIT_REINDEX
danielk1977b3bf5562006-01-10 17:58:23 +00003644static void reindexTable(Parse *pParse, Table *pTab, char const *zColl){
drh4343fea2004-11-05 23:46:15 +00003645 Index *pIndex; /* An index associated with pTab */
3646
3647 for(pIndex=pTab->pIndex; pIndex; pIndex=pIndex->pNext){
danielk1977b3bf5562006-01-10 17:58:23 +00003648 if( zColl==0 || collationMatch(zColl, pIndex) ){
danielk1977da184232006-01-05 11:34:32 +00003649 int iDb = sqlite3SchemaToIndex(pParse->db, pTab->pSchema);
3650 sqlite3BeginWriteOperation(pParse, 0, iDb);
drh4343fea2004-11-05 23:46:15 +00003651 sqlite3RefillIndex(pParse, pIndex, -1);
3652 }
3653 }
3654}
3655#endif
3656
3657/*
3658** Recompute all indices of all tables in all databases where the
3659** indices use the collating sequence pColl. If pColl==0 then recompute
3660** all indices everywhere.
3661*/
3662#ifndef SQLITE_OMIT_REINDEX
danielk1977b3bf5562006-01-10 17:58:23 +00003663static void reindexDatabases(Parse *pParse, char const *zColl){
drh4343fea2004-11-05 23:46:15 +00003664 Db *pDb; /* A single database */
3665 int iDb; /* The database index number */
3666 sqlite3 *db = pParse->db; /* The database connection */
3667 HashElem *k; /* For looping over tables in pDb */
3668 Table *pTab; /* A table in the database */
3669
drh21206082011-04-04 18:22:02 +00003670 assert( sqlite3BtreeHoldsAllMutexes(db) ); /* Needed for schema access */
drh4343fea2004-11-05 23:46:15 +00003671 for(iDb=0, pDb=db->aDb; iDb<db->nDb; iDb++, pDb++){
drh43617e92006-03-06 20:55:46 +00003672 assert( pDb!=0 );
danielk1977da184232006-01-05 11:34:32 +00003673 for(k=sqliteHashFirst(&pDb->pSchema->tblHash); k; k=sqliteHashNext(k)){
drh4343fea2004-11-05 23:46:15 +00003674 pTab = (Table*)sqliteHashData(k);
danielk1977b3bf5562006-01-10 17:58:23 +00003675 reindexTable(pParse, pTab, zColl);
drh4343fea2004-11-05 23:46:15 +00003676 }
3677 }
3678}
3679#endif
3680
3681/*
drheee46cf2004-11-06 00:02:48 +00003682** Generate code for the REINDEX command.
3683**
3684** REINDEX -- 1
3685** REINDEX <collation> -- 2
3686** REINDEX ?<database>.?<tablename> -- 3
3687** REINDEX ?<database>.?<indexname> -- 4
3688**
3689** Form 1 causes all indices in all attached databases to be rebuilt.
3690** Form 2 rebuilds all indices in all databases that use the named
3691** collating function. Forms 3 and 4 rebuild the named index or all
3692** indices associated with the named table.
drh4343fea2004-11-05 23:46:15 +00003693*/
3694#ifndef SQLITE_OMIT_REINDEX
3695void sqlite3Reindex(Parse *pParse, Token *pName1, Token *pName2){
3696 CollSeq *pColl; /* Collating sequence to be reindexed, or NULL */
3697 char *z; /* Name of a table or index */
3698 const char *zDb; /* Name of the database */
3699 Table *pTab; /* A table in the database */
3700 Index *pIndex; /* An index associated with pTab */
3701 int iDb; /* The database index number */
3702 sqlite3 *db = pParse->db; /* The database connection */
3703 Token *pObjName; /* Name of the table or index to be reindexed */
3704
danielk197733a5edc2005-01-27 00:22:02 +00003705 /* Read the database schema. If an error occurs, leave an error message
3706 ** and code in pParse and return NULL. */
3707 if( SQLITE_OK!=sqlite3ReadSchema(pParse) ){
danielk1977e63739a2005-01-27 00:33:37 +00003708 return;
danielk197733a5edc2005-01-27 00:22:02 +00003709 }
3710
drh8af73d42009-05-13 22:58:28 +00003711 if( pName1==0 ){
drh4343fea2004-11-05 23:46:15 +00003712 reindexDatabases(pParse, 0);
3713 return;
drhd3001712009-05-12 17:46:53 +00003714 }else if( NEVER(pName2==0) || pName2->z==0 ){
danielk197739002502007-11-12 09:50:26 +00003715 char *zColl;
danielk1977b3bf5562006-01-10 17:58:23 +00003716 assert( pName1->z );
danielk197739002502007-11-12 09:50:26 +00003717 zColl = sqlite3NameFromToken(pParse->db, pName1);
3718 if( !zColl ) return;
drhc4a64fa2009-05-11 20:53:28 +00003719 pColl = sqlite3FindCollSeq(db, ENC(db), zColl, 0);
drh4343fea2004-11-05 23:46:15 +00003720 if( pColl ){
drhd3001712009-05-12 17:46:53 +00003721 reindexDatabases(pParse, zColl);
3722 sqlite3DbFree(db, zColl);
drh4343fea2004-11-05 23:46:15 +00003723 return;
3724 }
drh633e6d52008-07-28 19:34:53 +00003725 sqlite3DbFree(db, zColl);
drh4343fea2004-11-05 23:46:15 +00003726 }
3727 iDb = sqlite3TwoPartName(pParse, pName1, pName2, &pObjName);
3728 if( iDb<0 ) return;
drh17435752007-08-16 04:30:38 +00003729 z = sqlite3NameFromToken(db, pObjName);
drh84f31122007-05-12 15:00:14 +00003730 if( z==0 ) return;
drh4343fea2004-11-05 23:46:15 +00003731 zDb = db->aDb[iDb].zName;
3732 pTab = sqlite3FindTable(db, z, zDb);
3733 if( pTab ){
3734 reindexTable(pParse, pTab, 0);
drh633e6d52008-07-28 19:34:53 +00003735 sqlite3DbFree(db, z);
drh4343fea2004-11-05 23:46:15 +00003736 return;
3737 }
3738 pIndex = sqlite3FindIndex(db, z, zDb);
drh633e6d52008-07-28 19:34:53 +00003739 sqlite3DbFree(db, z);
drh4343fea2004-11-05 23:46:15 +00003740 if( pIndex ){
3741 sqlite3BeginWriteOperation(pParse, 0, iDb);
3742 sqlite3RefillIndex(pParse, pIndex, -1);
3743 return;
3744 }
3745 sqlite3ErrorMsg(pParse, "unable to identify the object to be reindexed");
3746}
3747#endif
danielk1977b3bf5562006-01-10 17:58:23 +00003748
3749/*
3750** Return a dynamicly allocated KeyInfo structure that can be used
3751** with OP_OpenRead or OP_OpenWrite to access database index pIdx.
3752**
3753** If successful, a pointer to the new structure is returned. In this case
drh633e6d52008-07-28 19:34:53 +00003754** the caller is responsible for calling sqlite3DbFree(db, ) on the returned
danielk1977b3bf5562006-01-10 17:58:23 +00003755** pointer. If an error occurs (out of memory or missing collation
3756** sequence), NULL is returned and the state of pParse updated to reflect
3757** the error.
3758*/
3759KeyInfo *sqlite3IndexKeyinfo(Parse *pParse, Index *pIdx){
3760 int i;
3761 int nCol = pIdx->nColumn;
3762 int nBytes = sizeof(KeyInfo) + (nCol-1)*sizeof(CollSeq*) + nCol;
drh633e6d52008-07-28 19:34:53 +00003763 sqlite3 *db = pParse->db;
3764 KeyInfo *pKey = (KeyInfo *)sqlite3DbMallocZero(db, nBytes);
danielk1977b3bf5562006-01-10 17:58:23 +00003765
3766 if( pKey ){
drhb21c8cd2007-08-21 19:33:56 +00003767 pKey->db = pParse->db;
danielk1977b3bf5562006-01-10 17:58:23 +00003768 pKey->aSortOrder = (u8 *)&(pKey->aColl[nCol]);
3769 assert( &pKey->aSortOrder[nCol]==&(((u8 *)pKey)[nBytes]) );
3770 for(i=0; i<nCol; i++){
3771 char *zColl = pIdx->azColl[i];
3772 assert( zColl );
drhc4a64fa2009-05-11 20:53:28 +00003773 pKey->aColl[i] = sqlite3LocateCollSeq(pParse, zColl);
danielk1977b3bf5562006-01-10 17:58:23 +00003774 pKey->aSortOrder[i] = pIdx->aSortOrder[i];
3775 }
drh1bd10f82008-12-10 21:19:56 +00003776 pKey->nField = (u16)nCol;
danielk1977b3bf5562006-01-10 17:58:23 +00003777 }
3778
3779 if( pParse->nErr ){
drh633e6d52008-07-28 19:34:53 +00003780 sqlite3DbFree(db, pKey);
danielk1977b3bf5562006-01-10 17:58:23 +00003781 pKey = 0;
3782 }
3783 return pKey;
3784}