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Side by Side Diff: third_party/sqlite/sqlite-src-3100200/src/trigger.c

Issue 2846743003: [sql] Remove SQLite 3.10.2 reference directory. (Closed)
Patch Set: Created 3 years, 7 months ago
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1 /*
2 **
3 ** The author disclaims copyright to this source code. In place of
4 ** a legal notice, here is a blessing:
5 **
6 ** May you do good and not evil.
7 ** May you find forgiveness for yourself and forgive others.
8 ** May you share freely, never taking more than you give.
9 **
10 *************************************************************************
11 ** This file contains the implementation for TRIGGERs
12 */
13 #include "sqliteInt.h"
14
15 #ifndef SQLITE_OMIT_TRIGGER
16 /*
17 ** Delete a linked list of TriggerStep structures.
18 */
19 void sqlite3DeleteTriggerStep(sqlite3 *db, TriggerStep *pTriggerStep){
20 while( pTriggerStep ){
21 TriggerStep * pTmp = pTriggerStep;
22 pTriggerStep = pTriggerStep->pNext;
23
24 sqlite3ExprDelete(db, pTmp->pWhere);
25 sqlite3ExprListDelete(db, pTmp->pExprList);
26 sqlite3SelectDelete(db, pTmp->pSelect);
27 sqlite3IdListDelete(db, pTmp->pIdList);
28
29 sqlite3DbFree(db, pTmp);
30 }
31 }
32
33 /*
34 ** Given table pTab, return a list of all the triggers attached to
35 ** the table. The list is connected by Trigger.pNext pointers.
36 **
37 ** All of the triggers on pTab that are in the same database as pTab
38 ** are already attached to pTab->pTrigger. But there might be additional
39 ** triggers on pTab in the TEMP schema. This routine prepends all
40 ** TEMP triggers on pTab to the beginning of the pTab->pTrigger list
41 ** and returns the combined list.
42 **
43 ** To state it another way: This routine returns a list of all triggers
44 ** that fire off of pTab. The list will include any TEMP triggers on
45 ** pTab as well as the triggers lised in pTab->pTrigger.
46 */
47 Trigger *sqlite3TriggerList(Parse *pParse, Table *pTab){
48 Schema * const pTmpSchema = pParse->db->aDb[1].pSchema;
49 Trigger *pList = 0; /* List of triggers to return */
50
51 if( pParse->disableTriggers ){
52 return 0;
53 }
54
55 if( pTmpSchema!=pTab->pSchema ){
56 HashElem *p;
57 assert( sqlite3SchemaMutexHeld(pParse->db, 0, pTmpSchema) );
58 for(p=sqliteHashFirst(&pTmpSchema->trigHash); p; p=sqliteHashNext(p)){
59 Trigger *pTrig = (Trigger *)sqliteHashData(p);
60 if( pTrig->pTabSchema==pTab->pSchema
61 && 0==sqlite3StrICmp(pTrig->table, pTab->zName)
62 ){
63 pTrig->pNext = (pList ? pList : pTab->pTrigger);
64 pList = pTrig;
65 }
66 }
67 }
68
69 return (pList ? pList : pTab->pTrigger);
70 }
71
72 /*
73 ** This is called by the parser when it sees a CREATE TRIGGER statement
74 ** up to the point of the BEGIN before the trigger actions. A Trigger
75 ** structure is generated based on the information available and stored
76 ** in pParse->pNewTrigger. After the trigger actions have been parsed, the
77 ** sqlite3FinishTrigger() function is called to complete the trigger
78 ** construction process.
79 */
80 void sqlite3BeginTrigger(
81 Parse *pParse, /* The parse context of the CREATE TRIGGER statement */
82 Token *pName1, /* The name of the trigger */
83 Token *pName2, /* The name of the trigger */
84 int tr_tm, /* One of TK_BEFORE, TK_AFTER, TK_INSTEAD */
85 int op, /* One of TK_INSERT, TK_UPDATE, TK_DELETE */
86 IdList *pColumns, /* column list if this is an UPDATE OF trigger */
87 SrcList *pTableName,/* The name of the table/view the trigger applies to */
88 Expr *pWhen, /* WHEN clause */
89 int isTemp, /* True if the TEMPORARY keyword is present */
90 int noErr /* Suppress errors if the trigger already exists */
91 ){
92 Trigger *pTrigger = 0; /* The new trigger */
93 Table *pTab; /* Table that the trigger fires off of */
94 char *zName = 0; /* Name of the trigger */
95 sqlite3 *db = pParse->db; /* The database connection */
96 int iDb; /* The database to store the trigger in */
97 Token *pName; /* The unqualified db name */
98 DbFixer sFix; /* State vector for the DB fixer */
99 int iTabDb; /* Index of the database holding pTab */
100
101 assert( pName1!=0 ); /* pName1->z might be NULL, but not pName1 itself */
102 assert( pName2!=0 );
103 assert( op==TK_INSERT || op==TK_UPDATE || op==TK_DELETE );
104 assert( op>0 && op<0xff );
105 if( isTemp ){
106 /* If TEMP was specified, then the trigger name may not be qualified. */
107 if( pName2->n>0 ){
108 sqlite3ErrorMsg(pParse, "temporary trigger may not have qualified name");
109 goto trigger_cleanup;
110 }
111 iDb = 1;
112 pName = pName1;
113 }else{
114 /* Figure out the db that the trigger will be created in */
115 iDb = sqlite3TwoPartName(pParse, pName1, pName2, &pName);
116 if( iDb<0 ){
117 goto trigger_cleanup;
118 }
119 }
120 if( !pTableName || db->mallocFailed ){
121 goto trigger_cleanup;
122 }
123
124 /* A long-standing parser bug is that this syntax was allowed:
125 **
126 ** CREATE TRIGGER attached.demo AFTER INSERT ON attached.tab ....
127 ** ^^^^^^^^
128 **
129 ** To maintain backwards compatibility, ignore the database
130 ** name on pTableName if we are reparsing out of SQLITE_MASTER.
131 */
132 if( db->init.busy && iDb!=1 ){
133 sqlite3DbFree(db, pTableName->a[0].zDatabase);
134 pTableName->a[0].zDatabase = 0;
135 }
136
137 /* If the trigger name was unqualified, and the table is a temp table,
138 ** then set iDb to 1 to create the trigger in the temporary database.
139 ** If sqlite3SrcListLookup() returns 0, indicating the table does not
140 ** exist, the error is caught by the block below.
141 */
142 pTab = sqlite3SrcListLookup(pParse, pTableName);
143 if( db->init.busy==0 && pName2->n==0 && pTab
144 && pTab->pSchema==db->aDb[1].pSchema ){
145 iDb = 1;
146 }
147
148 /* Ensure the table name matches database name and that the table exists */
149 if( db->mallocFailed ) goto trigger_cleanup;
150 assert( pTableName->nSrc==1 );
151 sqlite3FixInit(&sFix, pParse, iDb, "trigger", pName);
152 if( sqlite3FixSrcList(&sFix, pTableName) ){
153 goto trigger_cleanup;
154 }
155 pTab = sqlite3SrcListLookup(pParse, pTableName);
156 if( !pTab ){
157 /* The table does not exist. */
158 if( db->init.iDb==1 ){
159 /* Ticket #3810.
160 ** Normally, whenever a table is dropped, all associated triggers are
161 ** dropped too. But if a TEMP trigger is created on a non-TEMP table
162 ** and the table is dropped by a different database connection, the
163 ** trigger is not visible to the database connection that does the
164 ** drop so the trigger cannot be dropped. This results in an
165 ** "orphaned trigger" - a trigger whose associated table is missing.
166 */
167 db->init.orphanTrigger = 1;
168 }
169 goto trigger_cleanup;
170 }
171 if( IsVirtual(pTab) ){
172 sqlite3ErrorMsg(pParse, "cannot create triggers on virtual tables");
173 goto trigger_cleanup;
174 }
175
176 /* Check that the trigger name is not reserved and that no trigger of the
177 ** specified name exists */
178 zName = sqlite3NameFromToken(db, pName);
179 if( !zName || SQLITE_OK!=sqlite3CheckObjectName(pParse, zName) ){
180 goto trigger_cleanup;
181 }
182 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
183 if( sqlite3HashFind(&(db->aDb[iDb].pSchema->trigHash),zName) ){
184 if( !noErr ){
185 sqlite3ErrorMsg(pParse, "trigger %T already exists", pName);
186 }else{
187 assert( !db->init.busy );
188 sqlite3CodeVerifySchema(pParse, iDb);
189 }
190 goto trigger_cleanup;
191 }
192
193 /* Do not create a trigger on a system table */
194 if( sqlite3StrNICmp(pTab->zName, "sqlite_", 7)==0 ){
195 sqlite3ErrorMsg(pParse, "cannot create trigger on system table");
196 goto trigger_cleanup;
197 }
198
199 /* INSTEAD of triggers are only for views and views only support INSTEAD
200 ** of triggers.
201 */
202 if( pTab->pSelect && tr_tm!=TK_INSTEAD ){
203 sqlite3ErrorMsg(pParse, "cannot create %s trigger on view: %S",
204 (tr_tm == TK_BEFORE)?"BEFORE":"AFTER", pTableName, 0);
205 goto trigger_cleanup;
206 }
207 if( !pTab->pSelect && tr_tm==TK_INSTEAD ){
208 sqlite3ErrorMsg(pParse, "cannot create INSTEAD OF"
209 " trigger on table: %S", pTableName, 0);
210 goto trigger_cleanup;
211 }
212 iTabDb = sqlite3SchemaToIndex(db, pTab->pSchema);
213
214 #ifndef SQLITE_OMIT_AUTHORIZATION
215 {
216 int code = SQLITE_CREATE_TRIGGER;
217 const char *zDb = db->aDb[iTabDb].zName;
218 const char *zDbTrig = isTemp ? db->aDb[1].zName : zDb;
219 if( iTabDb==1 || isTemp ) code = SQLITE_CREATE_TEMP_TRIGGER;
220 if( sqlite3AuthCheck(pParse, code, zName, pTab->zName, zDbTrig) ){
221 goto trigger_cleanup;
222 }
223 if( sqlite3AuthCheck(pParse, SQLITE_INSERT, SCHEMA_TABLE(iTabDb),0,zDb)){
224 goto trigger_cleanup;
225 }
226 }
227 #endif
228
229 /* INSTEAD OF triggers can only appear on views and BEFORE triggers
230 ** cannot appear on views. So we might as well translate every
231 ** INSTEAD OF trigger into a BEFORE trigger. It simplifies code
232 ** elsewhere.
233 */
234 if (tr_tm == TK_INSTEAD){
235 tr_tm = TK_BEFORE;
236 }
237
238 /* Build the Trigger object */
239 pTrigger = (Trigger*)sqlite3DbMallocZero(db, sizeof(Trigger));
240 if( pTrigger==0 ) goto trigger_cleanup;
241 pTrigger->zName = zName;
242 zName = 0;
243 pTrigger->table = sqlite3DbStrDup(db, pTableName->a[0].zName);
244 pTrigger->pSchema = db->aDb[iDb].pSchema;
245 pTrigger->pTabSchema = pTab->pSchema;
246 pTrigger->op = (u8)op;
247 pTrigger->tr_tm = tr_tm==TK_BEFORE ? TRIGGER_BEFORE : TRIGGER_AFTER;
248 pTrigger->pWhen = sqlite3ExprDup(db, pWhen, EXPRDUP_REDUCE);
249 pTrigger->pColumns = sqlite3IdListDup(db, pColumns);
250 assert( pParse->pNewTrigger==0 );
251 pParse->pNewTrigger = pTrigger;
252
253 trigger_cleanup:
254 sqlite3DbFree(db, zName);
255 sqlite3SrcListDelete(db, pTableName);
256 sqlite3IdListDelete(db, pColumns);
257 sqlite3ExprDelete(db, pWhen);
258 if( !pParse->pNewTrigger ){
259 sqlite3DeleteTrigger(db, pTrigger);
260 }else{
261 assert( pParse->pNewTrigger==pTrigger );
262 }
263 }
264
265 /*
266 ** This routine is called after all of the trigger actions have been parsed
267 ** in order to complete the process of building the trigger.
268 */
269 void sqlite3FinishTrigger(
270 Parse *pParse, /* Parser context */
271 TriggerStep *pStepList, /* The triggered program */
272 Token *pAll /* Token that describes the complete CREATE TRIGGER */
273 ){
274 Trigger *pTrig = pParse->pNewTrigger; /* Trigger being finished */
275 char *zName; /* Name of trigger */
276 sqlite3 *db = pParse->db; /* The database */
277 DbFixer sFix; /* Fixer object */
278 int iDb; /* Database containing the trigger */
279 Token nameToken; /* Trigger name for error reporting */
280
281 pParse->pNewTrigger = 0;
282 if( NEVER(pParse->nErr) || !pTrig ) goto triggerfinish_cleanup;
283 zName = pTrig->zName;
284 iDb = sqlite3SchemaToIndex(pParse->db, pTrig->pSchema);
285 pTrig->step_list = pStepList;
286 while( pStepList ){
287 pStepList->pTrig = pTrig;
288 pStepList = pStepList->pNext;
289 }
290 nameToken.z = pTrig->zName;
291 nameToken.n = sqlite3Strlen30(nameToken.z);
292 sqlite3FixInit(&sFix, pParse, iDb, "trigger", &nameToken);
293 if( sqlite3FixTriggerStep(&sFix, pTrig->step_list)
294 || sqlite3FixExpr(&sFix, pTrig->pWhen)
295 ){
296 goto triggerfinish_cleanup;
297 }
298
299 /* if we are not initializing,
300 ** build the sqlite_master entry
301 */
302 if( !db->init.busy ){
303 Vdbe *v;
304 char *z;
305
306 /* Make an entry in the sqlite_master table */
307 v = sqlite3GetVdbe(pParse);
308 if( v==0 ) goto triggerfinish_cleanup;
309 sqlite3BeginWriteOperation(pParse, 0, iDb);
310 z = sqlite3DbStrNDup(db, (char*)pAll->z, pAll->n);
311 sqlite3NestedParse(pParse,
312 "INSERT INTO %Q.%s VALUES('trigger',%Q,%Q,0,'CREATE TRIGGER %q')",
313 db->aDb[iDb].zName, SCHEMA_TABLE(iDb), zName,
314 pTrig->table, z);
315 sqlite3DbFree(db, z);
316 sqlite3ChangeCookie(pParse, iDb);
317 sqlite3VdbeAddParseSchemaOp(v, iDb,
318 sqlite3MPrintf(db, "type='trigger' AND name='%q'", zName));
319 }
320
321 if( db->init.busy ){
322 Trigger *pLink = pTrig;
323 Hash *pHash = &db->aDb[iDb].pSchema->trigHash;
324 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
325 pTrig = sqlite3HashInsert(pHash, zName, pTrig);
326 if( pTrig ){
327 db->mallocFailed = 1;
328 }else if( pLink->pSchema==pLink->pTabSchema ){
329 Table *pTab;
330 pTab = sqlite3HashFind(&pLink->pTabSchema->tblHash, pLink->table);
331 assert( pTab!=0 );
332 pLink->pNext = pTab->pTrigger;
333 pTab->pTrigger = pLink;
334 }
335 }
336
337 triggerfinish_cleanup:
338 sqlite3DeleteTrigger(db, pTrig);
339 assert( !pParse->pNewTrigger );
340 sqlite3DeleteTriggerStep(db, pStepList);
341 }
342
343 /*
344 ** Turn a SELECT statement (that the pSelect parameter points to) into
345 ** a trigger step. Return a pointer to a TriggerStep structure.
346 **
347 ** The parser calls this routine when it finds a SELECT statement in
348 ** body of a TRIGGER.
349 */
350 TriggerStep *sqlite3TriggerSelectStep(sqlite3 *db, Select *pSelect){
351 TriggerStep *pTriggerStep = sqlite3DbMallocZero(db, sizeof(TriggerStep));
352 if( pTriggerStep==0 ) {
353 sqlite3SelectDelete(db, pSelect);
354 return 0;
355 }
356 pTriggerStep->op = TK_SELECT;
357 pTriggerStep->pSelect = pSelect;
358 pTriggerStep->orconf = OE_Default;
359 return pTriggerStep;
360 }
361
362 /*
363 ** Allocate space to hold a new trigger step. The allocated space
364 ** holds both the TriggerStep object and the TriggerStep.target.z string.
365 **
366 ** If an OOM error occurs, NULL is returned and db->mallocFailed is set.
367 */
368 static TriggerStep *triggerStepAllocate(
369 sqlite3 *db, /* Database connection */
370 u8 op, /* Trigger opcode */
371 Token *pName /* The target name */
372 ){
373 TriggerStep *pTriggerStep;
374
375 pTriggerStep = sqlite3DbMallocZero(db, sizeof(TriggerStep) + pName->n + 1);
376 if( pTriggerStep ){
377 char *z = (char*)&pTriggerStep[1];
378 memcpy(z, pName->z, pName->n);
379 sqlite3Dequote(z);
380 pTriggerStep->zTarget = z;
381 pTriggerStep->op = op;
382 }
383 return pTriggerStep;
384 }
385
386 /*
387 ** Build a trigger step out of an INSERT statement. Return a pointer
388 ** to the new trigger step.
389 **
390 ** The parser calls this routine when it sees an INSERT inside the
391 ** body of a trigger.
392 */
393 TriggerStep *sqlite3TriggerInsertStep(
394 sqlite3 *db, /* The database connection */
395 Token *pTableName, /* Name of the table into which we insert */
396 IdList *pColumn, /* List of columns in pTableName to insert into */
397 Select *pSelect, /* A SELECT statement that supplies values */
398 u8 orconf /* The conflict algorithm (OE_Abort, OE_Replace, etc.) */
399 ){
400 TriggerStep *pTriggerStep;
401
402 assert(pSelect != 0 || db->mallocFailed);
403
404 pTriggerStep = triggerStepAllocate(db, TK_INSERT, pTableName);
405 if( pTriggerStep ){
406 pTriggerStep->pSelect = sqlite3SelectDup(db, pSelect, EXPRDUP_REDUCE);
407 pTriggerStep->pIdList = pColumn;
408 pTriggerStep->orconf = orconf;
409 }else{
410 sqlite3IdListDelete(db, pColumn);
411 }
412 sqlite3SelectDelete(db, pSelect);
413
414 return pTriggerStep;
415 }
416
417 /*
418 ** Construct a trigger step that implements an UPDATE statement and return
419 ** a pointer to that trigger step. The parser calls this routine when it
420 ** sees an UPDATE statement inside the body of a CREATE TRIGGER.
421 */
422 TriggerStep *sqlite3TriggerUpdateStep(
423 sqlite3 *db, /* The database connection */
424 Token *pTableName, /* Name of the table to be updated */
425 ExprList *pEList, /* The SET clause: list of column and new values */
426 Expr *pWhere, /* The WHERE clause */
427 u8 orconf /* The conflict algorithm. (OE_Abort, OE_Ignore, etc) */
428 ){
429 TriggerStep *pTriggerStep;
430
431 pTriggerStep = triggerStepAllocate(db, TK_UPDATE, pTableName);
432 if( pTriggerStep ){
433 pTriggerStep->pExprList = sqlite3ExprListDup(db, pEList, EXPRDUP_REDUCE);
434 pTriggerStep->pWhere = sqlite3ExprDup(db, pWhere, EXPRDUP_REDUCE);
435 pTriggerStep->orconf = orconf;
436 }
437 sqlite3ExprListDelete(db, pEList);
438 sqlite3ExprDelete(db, pWhere);
439 return pTriggerStep;
440 }
441
442 /*
443 ** Construct a trigger step that implements a DELETE statement and return
444 ** a pointer to that trigger step. The parser calls this routine when it
445 ** sees a DELETE statement inside the body of a CREATE TRIGGER.
446 */
447 TriggerStep *sqlite3TriggerDeleteStep(
448 sqlite3 *db, /* Database connection */
449 Token *pTableName, /* The table from which rows are deleted */
450 Expr *pWhere /* The WHERE clause */
451 ){
452 TriggerStep *pTriggerStep;
453
454 pTriggerStep = triggerStepAllocate(db, TK_DELETE, pTableName);
455 if( pTriggerStep ){
456 pTriggerStep->pWhere = sqlite3ExprDup(db, pWhere, EXPRDUP_REDUCE);
457 pTriggerStep->orconf = OE_Default;
458 }
459 sqlite3ExprDelete(db, pWhere);
460 return pTriggerStep;
461 }
462
463 /*
464 ** Recursively delete a Trigger structure
465 */
466 void sqlite3DeleteTrigger(sqlite3 *db, Trigger *pTrigger){
467 if( pTrigger==0 ) return;
468 sqlite3DeleteTriggerStep(db, pTrigger->step_list);
469 sqlite3DbFree(db, pTrigger->zName);
470 sqlite3DbFree(db, pTrigger->table);
471 sqlite3ExprDelete(db, pTrigger->pWhen);
472 sqlite3IdListDelete(db, pTrigger->pColumns);
473 sqlite3DbFree(db, pTrigger);
474 }
475
476 /*
477 ** This function is called to drop a trigger from the database schema.
478 **
479 ** This may be called directly from the parser and therefore identifies
480 ** the trigger by name. The sqlite3DropTriggerPtr() routine does the
481 ** same job as this routine except it takes a pointer to the trigger
482 ** instead of the trigger name.
483 **/
484 void sqlite3DropTrigger(Parse *pParse, SrcList *pName, int noErr){
485 Trigger *pTrigger = 0;
486 int i;
487 const char *zDb;
488 const char *zName;
489 sqlite3 *db = pParse->db;
490
491 if( db->mallocFailed ) goto drop_trigger_cleanup;
492 if( SQLITE_OK!=sqlite3ReadSchema(pParse) ){
493 goto drop_trigger_cleanup;
494 }
495
496 assert( pName->nSrc==1 );
497 zDb = pName->a[0].zDatabase;
498 zName = pName->a[0].zName;
499 assert( zDb!=0 || sqlite3BtreeHoldsAllMutexes(db) );
500 for(i=OMIT_TEMPDB; i<db->nDb; i++){
501 int j = (i<2) ? i^1 : i; /* Search TEMP before MAIN */
502 if( zDb && sqlite3StrICmp(db->aDb[j].zName, zDb) ) continue;
503 assert( sqlite3SchemaMutexHeld(db, j, 0) );
504 pTrigger = sqlite3HashFind(&(db->aDb[j].pSchema->trigHash), zName);
505 if( pTrigger ) break;
506 }
507 if( !pTrigger ){
508 if( !noErr ){
509 sqlite3ErrorMsg(pParse, "no such trigger: %S", pName, 0);
510 }else{
511 sqlite3CodeVerifyNamedSchema(pParse, zDb);
512 }
513 pParse->checkSchema = 1;
514 goto drop_trigger_cleanup;
515 }
516 sqlite3DropTriggerPtr(pParse, pTrigger);
517
518 drop_trigger_cleanup:
519 sqlite3SrcListDelete(db, pName);
520 }
521
522 /*
523 ** Return a pointer to the Table structure for the table that a trigger
524 ** is set on.
525 */
526 static Table *tableOfTrigger(Trigger *pTrigger){
527 return sqlite3HashFind(&pTrigger->pTabSchema->tblHash, pTrigger->table);
528 }
529
530
531 /*
532 ** Drop a trigger given a pointer to that trigger.
533 */
534 void sqlite3DropTriggerPtr(Parse *pParse, Trigger *pTrigger){
535 Table *pTable;
536 Vdbe *v;
537 sqlite3 *db = pParse->db;
538 int iDb;
539
540 iDb = sqlite3SchemaToIndex(pParse->db, pTrigger->pSchema);
541 assert( iDb>=0 && iDb<db->nDb );
542 pTable = tableOfTrigger(pTrigger);
543 assert( pTable );
544 assert( pTable->pSchema==pTrigger->pSchema || iDb==1 );
545 #ifndef SQLITE_OMIT_AUTHORIZATION
546 {
547 int code = SQLITE_DROP_TRIGGER;
548 const char *zDb = db->aDb[iDb].zName;
549 const char *zTab = SCHEMA_TABLE(iDb);
550 if( iDb==1 ) code = SQLITE_DROP_TEMP_TRIGGER;
551 if( sqlite3AuthCheck(pParse, code, pTrigger->zName, pTable->zName, zDb) ||
552 sqlite3AuthCheck(pParse, SQLITE_DELETE, zTab, 0, zDb) ){
553 return;
554 }
555 }
556 #endif
557
558 /* Generate code to destroy the database record of the trigger.
559 */
560 assert( pTable!=0 );
561 if( (v = sqlite3GetVdbe(pParse))!=0 ){
562 sqlite3NestedParse(pParse,
563 "DELETE FROM %Q.%s WHERE name=%Q AND type='trigger'",
564 db->aDb[iDb].zName, SCHEMA_TABLE(iDb), pTrigger->zName
565 );
566 sqlite3ChangeCookie(pParse, iDb);
567 sqlite3VdbeAddOp4(v, OP_DropTrigger, iDb, 0, 0, pTrigger->zName, 0);
568 }
569 }
570
571 /*
572 ** Remove a trigger from the hash tables of the sqlite* pointer.
573 */
574 void sqlite3UnlinkAndDeleteTrigger(sqlite3 *db, int iDb, const char *zName){
575 Trigger *pTrigger;
576 Hash *pHash;
577
578 assert( sqlite3SchemaMutexHeld(db, iDb, 0) );
579 pHash = &(db->aDb[iDb].pSchema->trigHash);
580 pTrigger = sqlite3HashInsert(pHash, zName, 0);
581 if( ALWAYS(pTrigger) ){
582 if( pTrigger->pSchema==pTrigger->pTabSchema ){
583 Table *pTab = tableOfTrigger(pTrigger);
584 Trigger **pp;
585 for(pp=&pTab->pTrigger; *pp!=pTrigger; pp=&((*pp)->pNext));
586 *pp = (*pp)->pNext;
587 }
588 sqlite3DeleteTrigger(db, pTrigger);
589 db->flags |= SQLITE_InternChanges;
590 }
591 }
592
593 /*
594 ** pEList is the SET clause of an UPDATE statement. Each entry
595 ** in pEList is of the format <id>=<expr>. If any of the entries
596 ** in pEList have an <id> which matches an identifier in pIdList,
597 ** then return TRUE. If pIdList==NULL, then it is considered a
598 ** wildcard that matches anything. Likewise if pEList==NULL then
599 ** it matches anything so always return true. Return false only
600 ** if there is no match.
601 */
602 static int checkColumnOverlap(IdList *pIdList, ExprList *pEList){
603 int e;
604 if( pIdList==0 || NEVER(pEList==0) ) return 1;
605 for(e=0; e<pEList->nExpr; e++){
606 if( sqlite3IdListIndex(pIdList, pEList->a[e].zName)>=0 ) return 1;
607 }
608 return 0;
609 }
610
611 /*
612 ** Return a list of all triggers on table pTab if there exists at least
613 ** one trigger that must be fired when an operation of type 'op' is
614 ** performed on the table, and, if that operation is an UPDATE, if at
615 ** least one of the columns in pChanges is being modified.
616 */
617 Trigger *sqlite3TriggersExist(
618 Parse *pParse, /* Parse context */
619 Table *pTab, /* The table the contains the triggers */
620 int op, /* one of TK_DELETE, TK_INSERT, TK_UPDATE */
621 ExprList *pChanges, /* Columns that change in an UPDATE statement */
622 int *pMask /* OUT: Mask of TRIGGER_BEFORE|TRIGGER_AFTER */
623 ){
624 int mask = 0;
625 Trigger *pList = 0;
626 Trigger *p;
627
628 if( (pParse->db->flags & SQLITE_EnableTrigger)!=0 ){
629 pList = sqlite3TriggerList(pParse, pTab);
630 }
631 assert( pList==0 || IsVirtual(pTab)==0 );
632 for(p=pList; p; p=p->pNext){
633 if( p->op==op && checkColumnOverlap(p->pColumns, pChanges) ){
634 mask |= p->tr_tm;
635 }
636 }
637 if( pMask ){
638 *pMask = mask;
639 }
640 return (mask ? pList : 0);
641 }
642
643 /*
644 ** Convert the pStep->zTarget string into a SrcList and return a pointer
645 ** to that SrcList.
646 **
647 ** This routine adds a specific database name, if needed, to the target when
648 ** forming the SrcList. This prevents a trigger in one database from
649 ** referring to a target in another database. An exception is when the
650 ** trigger is in TEMP in which case it can refer to any other database it
651 ** wants.
652 */
653 static SrcList *targetSrcList(
654 Parse *pParse, /* The parsing context */
655 TriggerStep *pStep /* The trigger containing the target token */
656 ){
657 sqlite3 *db = pParse->db;
658 int iDb; /* Index of the database to use */
659 SrcList *pSrc; /* SrcList to be returned */
660
661 pSrc = sqlite3SrcListAppend(db, 0, 0, 0);
662 if( pSrc ){
663 assert( pSrc->nSrc>0 );
664 pSrc->a[pSrc->nSrc-1].zName = sqlite3DbStrDup(db, pStep->zTarget);
665 iDb = sqlite3SchemaToIndex(db, pStep->pTrig->pSchema);
666 if( iDb==0 || iDb>=2 ){
667 assert( iDb<db->nDb );
668 pSrc->a[pSrc->nSrc-1].zDatabase = sqlite3DbStrDup(db, db->aDb[iDb].zName);
669 }
670 }
671 return pSrc;
672 }
673
674 /*
675 ** Generate VDBE code for the statements inside the body of a single
676 ** trigger.
677 */
678 static int codeTriggerProgram(
679 Parse *pParse, /* The parser context */
680 TriggerStep *pStepList, /* List of statements inside the trigger body */
681 int orconf /* Conflict algorithm. (OE_Abort, etc) */
682 ){
683 TriggerStep *pStep;
684 Vdbe *v = pParse->pVdbe;
685 sqlite3 *db = pParse->db;
686
687 assert( pParse->pTriggerTab && pParse->pToplevel );
688 assert( pStepList );
689 assert( v!=0 );
690 for(pStep=pStepList; pStep; pStep=pStep->pNext){
691 /* Figure out the ON CONFLICT policy that will be used for this step
692 ** of the trigger program. If the statement that caused this trigger
693 ** to fire had an explicit ON CONFLICT, then use it. Otherwise, use
694 ** the ON CONFLICT policy that was specified as part of the trigger
695 ** step statement. Example:
696 **
697 ** CREATE TRIGGER AFTER INSERT ON t1 BEGIN;
698 ** INSERT OR REPLACE INTO t2 VALUES(new.a, new.b);
699 ** END;
700 **
701 ** INSERT INTO t1 ... ; -- insert into t2 uses REPLACE policy
702 ** INSERT OR IGNORE INTO t1 ... ; -- insert into t2 uses IGNORE policy
703 */
704 pParse->eOrconf = (orconf==OE_Default)?pStep->orconf:(u8)orconf;
705 assert( pParse->okConstFactor==0 );
706
707 switch( pStep->op ){
708 case TK_UPDATE: {
709 sqlite3Update(pParse,
710 targetSrcList(pParse, pStep),
711 sqlite3ExprListDup(db, pStep->pExprList, 0),
712 sqlite3ExprDup(db, pStep->pWhere, 0),
713 pParse->eOrconf
714 );
715 break;
716 }
717 case TK_INSERT: {
718 sqlite3Insert(pParse,
719 targetSrcList(pParse, pStep),
720 sqlite3SelectDup(db, pStep->pSelect, 0),
721 sqlite3IdListDup(db, pStep->pIdList),
722 pParse->eOrconf
723 );
724 break;
725 }
726 case TK_DELETE: {
727 sqlite3DeleteFrom(pParse,
728 targetSrcList(pParse, pStep),
729 sqlite3ExprDup(db, pStep->pWhere, 0)
730 );
731 break;
732 }
733 default: assert( pStep->op==TK_SELECT ); {
734 SelectDest sDest;
735 Select *pSelect = sqlite3SelectDup(db, pStep->pSelect, 0);
736 sqlite3SelectDestInit(&sDest, SRT_Discard, 0);
737 sqlite3Select(pParse, pSelect, &sDest);
738 sqlite3SelectDelete(db, pSelect);
739 break;
740 }
741 }
742 if( pStep->op!=TK_SELECT ){
743 sqlite3VdbeAddOp0(v, OP_ResetCount);
744 }
745 }
746
747 return 0;
748 }
749
750 #ifdef SQLITE_ENABLE_EXPLAIN_COMMENTS
751 /*
752 ** This function is used to add VdbeComment() annotations to a VDBE
753 ** program. It is not used in production code, only for debugging.
754 */
755 static const char *onErrorText(int onError){
756 switch( onError ){
757 case OE_Abort: return "abort";
758 case OE_Rollback: return "rollback";
759 case OE_Fail: return "fail";
760 case OE_Replace: return "replace";
761 case OE_Ignore: return "ignore";
762 case OE_Default: return "default";
763 }
764 return "n/a";
765 }
766 #endif
767
768 /*
769 ** Parse context structure pFrom has just been used to create a sub-vdbe
770 ** (trigger program). If an error has occurred, transfer error information
771 ** from pFrom to pTo.
772 */
773 static void transferParseError(Parse *pTo, Parse *pFrom){
774 assert( pFrom->zErrMsg==0 || pFrom->nErr );
775 assert( pTo->zErrMsg==0 || pTo->nErr );
776 if( pTo->nErr==0 ){
777 pTo->zErrMsg = pFrom->zErrMsg;
778 pTo->nErr = pFrom->nErr;
779 pTo->rc = pFrom->rc;
780 }else{
781 sqlite3DbFree(pFrom->db, pFrom->zErrMsg);
782 }
783 }
784
785 /*
786 ** Create and populate a new TriggerPrg object with a sub-program
787 ** implementing trigger pTrigger with ON CONFLICT policy orconf.
788 */
789 static TriggerPrg *codeRowTrigger(
790 Parse *pParse, /* Current parse context */
791 Trigger *pTrigger, /* Trigger to code */
792 Table *pTab, /* The table pTrigger is attached to */
793 int orconf /* ON CONFLICT policy to code trigger program with */
794 ){
795 Parse *pTop = sqlite3ParseToplevel(pParse);
796 sqlite3 *db = pParse->db; /* Database handle */
797 TriggerPrg *pPrg; /* Value to return */
798 Expr *pWhen = 0; /* Duplicate of trigger WHEN expression */
799 Vdbe *v; /* Temporary VM */
800 NameContext sNC; /* Name context for sub-vdbe */
801 SubProgram *pProgram = 0; /* Sub-vdbe for trigger program */
802 Parse *pSubParse; /* Parse context for sub-vdbe */
803 int iEndTrigger = 0; /* Label to jump to if WHEN is false */
804
805 assert( pTrigger->zName==0 || pTab==tableOfTrigger(pTrigger) );
806 assert( pTop->pVdbe );
807
808 /* Allocate the TriggerPrg and SubProgram objects. To ensure that they
809 ** are freed if an error occurs, link them into the Parse.pTriggerPrg
810 ** list of the top-level Parse object sooner rather than later. */
811 pPrg = sqlite3DbMallocZero(db, sizeof(TriggerPrg));
812 if( !pPrg ) return 0;
813 pPrg->pNext = pTop->pTriggerPrg;
814 pTop->pTriggerPrg = pPrg;
815 pPrg->pProgram = pProgram = sqlite3DbMallocZero(db, sizeof(SubProgram));
816 if( !pProgram ) return 0;
817 sqlite3VdbeLinkSubProgram(pTop->pVdbe, pProgram);
818 pPrg->pTrigger = pTrigger;
819 pPrg->orconf = orconf;
820 pPrg->aColmask[0] = 0xffffffff;
821 pPrg->aColmask[1] = 0xffffffff;
822
823 /* Allocate and populate a new Parse context to use for coding the
824 ** trigger sub-program. */
825 pSubParse = sqlite3StackAllocZero(db, sizeof(Parse));
826 if( !pSubParse ) return 0;
827 memset(&sNC, 0, sizeof(sNC));
828 sNC.pParse = pSubParse;
829 pSubParse->db = db;
830 pSubParse->pTriggerTab = pTab;
831 pSubParse->pToplevel = pTop;
832 pSubParse->zAuthContext = pTrigger->zName;
833 pSubParse->eTriggerOp = pTrigger->op;
834 pSubParse->nQueryLoop = pParse->nQueryLoop;
835
836 v = sqlite3GetVdbe(pSubParse);
837 if( v ){
838 VdbeComment((v, "Start: %s.%s (%s %s%s%s ON %s)",
839 pTrigger->zName, onErrorText(orconf),
840 (pTrigger->tr_tm==TRIGGER_BEFORE ? "BEFORE" : "AFTER"),
841 (pTrigger->op==TK_UPDATE ? "UPDATE" : ""),
842 (pTrigger->op==TK_INSERT ? "INSERT" : ""),
843 (pTrigger->op==TK_DELETE ? "DELETE" : ""),
844 pTab->zName
845 ));
846 #ifndef SQLITE_OMIT_TRACE
847 sqlite3VdbeChangeP4(v, -1,
848 sqlite3MPrintf(db, "-- TRIGGER %s", pTrigger->zName), P4_DYNAMIC
849 );
850 #endif
851
852 /* If one was specified, code the WHEN clause. If it evaluates to false
853 ** (or NULL) the sub-vdbe is immediately halted by jumping to the
854 ** OP_Halt inserted at the end of the program. */
855 if( pTrigger->pWhen ){
856 pWhen = sqlite3ExprDup(db, pTrigger->pWhen, 0);
857 if( SQLITE_OK==sqlite3ResolveExprNames(&sNC, pWhen)
858 && db->mallocFailed==0
859 ){
860 iEndTrigger = sqlite3VdbeMakeLabel(v);
861 sqlite3ExprIfFalse(pSubParse, pWhen, iEndTrigger, SQLITE_JUMPIFNULL);
862 }
863 sqlite3ExprDelete(db, pWhen);
864 }
865
866 /* Code the trigger program into the sub-vdbe. */
867 codeTriggerProgram(pSubParse, pTrigger->step_list, orconf);
868
869 /* Insert an OP_Halt at the end of the sub-program. */
870 if( iEndTrigger ){
871 sqlite3VdbeResolveLabel(v, iEndTrigger);
872 }
873 sqlite3VdbeAddOp0(v, OP_Halt);
874 VdbeComment((v, "End: %s.%s", pTrigger->zName, onErrorText(orconf)));
875
876 transferParseError(pParse, pSubParse);
877 if( db->mallocFailed==0 ){
878 pProgram->aOp = sqlite3VdbeTakeOpArray(v, &pProgram->nOp, &pTop->nMaxArg);
879 }
880 pProgram->nMem = pSubParse->nMem;
881 pProgram->nCsr = pSubParse->nTab;
882 pProgram->nOnce = pSubParse->nOnce;
883 pProgram->token = (void *)pTrigger;
884 pPrg->aColmask[0] = pSubParse->oldmask;
885 pPrg->aColmask[1] = pSubParse->newmask;
886 sqlite3VdbeDelete(v);
887 }
888
889 assert( !pSubParse->pAinc && !pSubParse->pZombieTab );
890 assert( !pSubParse->pTriggerPrg && !pSubParse->nMaxArg );
891 sqlite3ParserReset(pSubParse);
892 sqlite3StackFree(db, pSubParse);
893
894 return pPrg;
895 }
896
897 /*
898 ** Return a pointer to a TriggerPrg object containing the sub-program for
899 ** trigger pTrigger with default ON CONFLICT algorithm orconf. If no such
900 ** TriggerPrg object exists, a new object is allocated and populated before
901 ** being returned.
902 */
903 static TriggerPrg *getRowTrigger(
904 Parse *pParse, /* Current parse context */
905 Trigger *pTrigger, /* Trigger to code */
906 Table *pTab, /* The table trigger pTrigger is attached to */
907 int orconf /* ON CONFLICT algorithm. */
908 ){
909 Parse *pRoot = sqlite3ParseToplevel(pParse);
910 TriggerPrg *pPrg;
911
912 assert( pTrigger->zName==0 || pTab==tableOfTrigger(pTrigger) );
913
914 /* It may be that this trigger has already been coded (or is in the
915 ** process of being coded). If this is the case, then an entry with
916 ** a matching TriggerPrg.pTrigger field will be present somewhere
917 ** in the Parse.pTriggerPrg list. Search for such an entry. */
918 for(pPrg=pRoot->pTriggerPrg;
919 pPrg && (pPrg->pTrigger!=pTrigger || pPrg->orconf!=orconf);
920 pPrg=pPrg->pNext
921 );
922
923 /* If an existing TriggerPrg could not be located, create a new one. */
924 if( !pPrg ){
925 pPrg = codeRowTrigger(pParse, pTrigger, pTab, orconf);
926 }
927
928 return pPrg;
929 }
930
931 /*
932 ** Generate code for the trigger program associated with trigger p on
933 ** table pTab. The reg, orconf and ignoreJump parameters passed to this
934 ** function are the same as those described in the header function for
935 ** sqlite3CodeRowTrigger()
936 */
937 void sqlite3CodeRowTriggerDirect(
938 Parse *pParse, /* Parse context */
939 Trigger *p, /* Trigger to code */
940 Table *pTab, /* The table to code triggers from */
941 int reg, /* Reg array containing OLD.* and NEW.* values */
942 int orconf, /* ON CONFLICT policy */
943 int ignoreJump /* Instruction to jump to for RAISE(IGNORE) */
944 ){
945 Vdbe *v = sqlite3GetVdbe(pParse); /* Main VM */
946 TriggerPrg *pPrg;
947 pPrg = getRowTrigger(pParse, p, pTab, orconf);
948 assert( pPrg || pParse->nErr || pParse->db->mallocFailed );
949
950 /* Code the OP_Program opcode in the parent VDBE. P4 of the OP_Program
951 ** is a pointer to the sub-vdbe containing the trigger program. */
952 if( pPrg ){
953 int bRecursive = (p->zName && 0==(pParse->db->flags&SQLITE_RecTriggers));
954
955 sqlite3VdbeAddOp3(v, OP_Program, reg, ignoreJump, ++pParse->nMem);
956 sqlite3VdbeChangeP4(v, -1, (const char *)pPrg->pProgram, P4_SUBPROGRAM);
957 VdbeComment(
958 (v, "Call: %s.%s", (p->zName?p->zName:"fkey"), onErrorText(orconf)));
959
960 /* Set the P5 operand of the OP_Program instruction to non-zero if
961 ** recursive invocation of this trigger program is disallowed. Recursive
962 ** invocation is disallowed if (a) the sub-program is really a trigger,
963 ** not a foreign key action, and (b) the flag to enable recursive triggers
964 ** is clear. */
965 sqlite3VdbeChangeP5(v, (u8)bRecursive);
966 }
967 }
968
969 /*
970 ** This is called to code the required FOR EACH ROW triggers for an operation
971 ** on table pTab. The operation to code triggers for (INSERT, UPDATE or DELETE)
972 ** is given by the op parameter. The tr_tm parameter determines whether the
973 ** BEFORE or AFTER triggers are coded. If the operation is an UPDATE, then
974 ** parameter pChanges is passed the list of columns being modified.
975 **
976 ** If there are no triggers that fire at the specified time for the specified
977 ** operation on pTab, this function is a no-op.
978 **
979 ** The reg argument is the address of the first in an array of registers
980 ** that contain the values substituted for the new.* and old.* references
981 ** in the trigger program. If N is the number of columns in table pTab
982 ** (a copy of pTab->nCol), then registers are populated as follows:
983 **
984 ** Register Contains
985 ** ------------------------------------------------------
986 ** reg+0 OLD.rowid
987 ** reg+1 OLD.* value of left-most column of pTab
988 ** ... ...
989 ** reg+N OLD.* value of right-most column of pTab
990 ** reg+N+1 NEW.rowid
991 ** reg+N+2 OLD.* value of left-most column of pTab
992 ** ... ...
993 ** reg+N+N+1 NEW.* value of right-most column of pTab
994 **
995 ** For ON DELETE triggers, the registers containing the NEW.* values will
996 ** never be accessed by the trigger program, so they are not allocated or
997 ** populated by the caller (there is no data to populate them with anyway).
998 ** Similarly, for ON INSERT triggers the values stored in the OLD.* registers
999 ** are never accessed, and so are not allocated by the caller. So, for an
1000 ** ON INSERT trigger, the value passed to this function as parameter reg
1001 ** is not a readable register, although registers (reg+N) through
1002 ** (reg+N+N+1) are.
1003 **
1004 ** Parameter orconf is the default conflict resolution algorithm for the
1005 ** trigger program to use (REPLACE, IGNORE etc.). Parameter ignoreJump
1006 ** is the instruction that control should jump to if a trigger program
1007 ** raises an IGNORE exception.
1008 */
1009 void sqlite3CodeRowTrigger(
1010 Parse *pParse, /* Parse context */
1011 Trigger *pTrigger, /* List of triggers on table pTab */
1012 int op, /* One of TK_UPDATE, TK_INSERT, TK_DELETE */
1013 ExprList *pChanges, /* Changes list for any UPDATE OF triggers */
1014 int tr_tm, /* One of TRIGGER_BEFORE, TRIGGER_AFTER */
1015 Table *pTab, /* The table to code triggers from */
1016 int reg, /* The first in an array of registers (see above) */
1017 int orconf, /* ON CONFLICT policy */
1018 int ignoreJump /* Instruction to jump to for RAISE(IGNORE) */
1019 ){
1020 Trigger *p; /* Used to iterate through pTrigger list */
1021
1022 assert( op==TK_UPDATE || op==TK_INSERT || op==TK_DELETE );
1023 assert( tr_tm==TRIGGER_BEFORE || tr_tm==TRIGGER_AFTER );
1024 assert( (op==TK_UPDATE)==(pChanges!=0) );
1025
1026 for(p=pTrigger; p; p=p->pNext){
1027
1028 /* Sanity checking: The schema for the trigger and for the table are
1029 ** always defined. The trigger must be in the same schema as the table
1030 ** or else it must be a TEMP trigger. */
1031 assert( p->pSchema!=0 );
1032 assert( p->pTabSchema!=0 );
1033 assert( p->pSchema==p->pTabSchema
1034 || p->pSchema==pParse->db->aDb[1].pSchema );
1035
1036 /* Determine whether we should code this trigger */
1037 if( p->op==op
1038 && p->tr_tm==tr_tm
1039 && checkColumnOverlap(p->pColumns, pChanges)
1040 ){
1041 sqlite3CodeRowTriggerDirect(pParse, p, pTab, reg, orconf, ignoreJump);
1042 }
1043 }
1044 }
1045
1046 /*
1047 ** Triggers may access values stored in the old.* or new.* pseudo-table.
1048 ** This function returns a 32-bit bitmask indicating which columns of the
1049 ** old.* or new.* tables actually are used by triggers. This information
1050 ** may be used by the caller, for example, to avoid having to load the entire
1051 ** old.* record into memory when executing an UPDATE or DELETE command.
1052 **
1053 ** Bit 0 of the returned mask is set if the left-most column of the
1054 ** table may be accessed using an [old|new].<col> reference. Bit 1 is set if
1055 ** the second leftmost column value is required, and so on. If there
1056 ** are more than 32 columns in the table, and at least one of the columns
1057 ** with an index greater than 32 may be accessed, 0xffffffff is returned.
1058 **
1059 ** It is not possible to determine if the old.rowid or new.rowid column is
1060 ** accessed by triggers. The caller must always assume that it is.
1061 **
1062 ** Parameter isNew must be either 1 or 0. If it is 0, then the mask returned
1063 ** applies to the old.* table. If 1, the new.* table.
1064 **
1065 ** Parameter tr_tm must be a mask with one or both of the TRIGGER_BEFORE
1066 ** and TRIGGER_AFTER bits set. Values accessed by BEFORE triggers are only
1067 ** included in the returned mask if the TRIGGER_BEFORE bit is set in the
1068 ** tr_tm parameter. Similarly, values accessed by AFTER triggers are only
1069 ** included in the returned mask if the TRIGGER_AFTER bit is set in tr_tm.
1070 */
1071 u32 sqlite3TriggerColmask(
1072 Parse *pParse, /* Parse context */
1073 Trigger *pTrigger, /* List of triggers on table pTab */
1074 ExprList *pChanges, /* Changes list for any UPDATE OF triggers */
1075 int isNew, /* 1 for new.* ref mask, 0 for old.* ref mask */
1076 int tr_tm, /* Mask of TRIGGER_BEFORE|TRIGGER_AFTER */
1077 Table *pTab, /* The table to code triggers from */
1078 int orconf /* Default ON CONFLICT policy for trigger steps */
1079 ){
1080 const int op = pChanges ? TK_UPDATE : TK_DELETE;
1081 u32 mask = 0;
1082 Trigger *p;
1083
1084 assert( isNew==1 || isNew==0 );
1085 for(p=pTrigger; p; p=p->pNext){
1086 if( p->op==op && (tr_tm&p->tr_tm)
1087 && checkColumnOverlap(p->pColumns,pChanges)
1088 ){
1089 TriggerPrg *pPrg;
1090 pPrg = getRowTrigger(pParse, p, pTab, orconf);
1091 if( pPrg ){
1092 mask |= pPrg->aColmask[isNew];
1093 }
1094 }
1095 }
1096
1097 return mask;
1098 }
1099
1100 #endif /* !defined(SQLITE_OMIT_TRIGGER) */
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