xref: /sqlite-3.40.0/src/test8.c (revision 7aa3ebee)
1 /*
2 ** 2006 June 10
3 **
4 ** The author disclaims copyright to this source code.  In place of
5 ** a legal notice, here is a blessing:
6 **
7 **    May you do good and not evil.
8 **    May you find forgiveness for yourself and forgive others.
9 **    May you share freely, never taking more than you give.
10 **
11 *************************************************************************
12 ** Code for testing the virtual table interfaces.  This code
13 ** is not included in the SQLite library.  It is used for automated
14 ** testing of the SQLite library.
15 */
16 #include "sqliteInt.h"
17 #include "tcl.h"
18 #include <stdlib.h>
19 #include <string.h>
20 
21 #ifndef SQLITE_OMIT_VIRTUALTABLE
22 
23 typedef struct echo_vtab echo_vtab;
24 typedef struct echo_cursor echo_cursor;
25 
26 /*
27 ** The test module defined in this file uses four global Tcl variables to
28 ** commicate with test-scripts:
29 **
30 **     $::echo_module
31 **     $::echo_module_sync_fail
32 **     $::echo_module_begin_fail
33 **     $::echo_module_cost
34 **
35 ** The variable ::echo_module is a list. Each time one of the following
36 ** methods is called, one or more elements are appended to the list.
37 ** This is used for automated testing of virtual table modules.
38 **
39 ** The ::echo_module_sync_fail variable is set by test scripts and read
40 ** by code in this file. If it is set to the name of a real table in the
41 ** the database, then all xSync operations on echo virtual tables that
42 ** use the named table as a backing store will fail.
43 */
44 
45 /*
46 ** Errors can be provoked within the following echo virtual table methods:
47 **
48 **   xBestIndex   xOpen     xFilter   xNext
49 **   xColumn      xRowid    xUpdate   xSync
50 **   xBegin       xRename
51 **
52 ** This is done by setting the global tcl variable:
53 **
54 **   echo_module_fail($method,$tbl)
55 **
56 ** where $method is set to the name of the virtual table method to fail
57 ** (i.e. "xBestIndex") and $tbl is the name of the table being echoed (not
58 ** the name of the virtual table, the name of the underlying real table).
59 */
60 
61 /*
62 ** An echo virtual-table object.
63 **
64 ** echo.vtab.aIndex is an array of booleans. The nth entry is true if
65 ** the nth column of the real table is the left-most column of an index
66 ** (implicit or otherwise). In other words, if SQLite can optimize
67 ** a query like "SELECT * FROM real_table WHERE col = ?".
68 **
69 ** Member variable aCol[] contains copies of the column names of the real
70 ** table.
71 */
72 struct echo_vtab {
73   sqlite3_vtab base;
74   Tcl_Interp *interp;     /* Tcl interpreter containing debug variables */
75   sqlite3 *db;            /* Database connection */
76 
77   int isPattern;
78   int inTransaction;      /* True if within a transaction */
79   char *zThis;            /* Name of the echo table */
80   char *zTableName;       /* Name of the real table */
81   char *zLogName;         /* Name of the log table */
82   int nCol;               /* Number of columns in the real table */
83   int *aIndex;            /* Array of size nCol. True if column has an index */
84   char **aCol;            /* Array of size nCol. Column names */
85 };
86 
87 /* An echo cursor object */
88 struct echo_cursor {
89   sqlite3_vtab_cursor base;
90   sqlite3_stmt *pStmt;
91 };
92 
93 static int simulateVtabError(echo_vtab *p, const char *zMethod){
94   const char *zErr;
95   char zVarname[128];
96   zVarname[127] = '\0';
97   sqlite3_snprintf(127, zVarname, "echo_module_fail(%s,%s)", zMethod, p->zTableName);
98   zErr = Tcl_GetVar(p->interp, zVarname, TCL_GLOBAL_ONLY);
99   if( zErr ){
100     p->base.zErrMsg = sqlite3_mprintf("echo-vtab-error: %s", zErr);
101   }
102   return (zErr!=0);
103 }
104 
105 /*
106 ** Convert an SQL-style quoted string into a normal string by removing
107 ** the quote characters.  The conversion is done in-place.  If the
108 ** input does not begin with a quote character, then this routine
109 ** is a no-op.
110 **
111 ** Examples:
112 **
113 **     "abc"   becomes   abc
114 **     'xyz'   becomes   xyz
115 **     [pqr]   becomes   pqr
116 **     `mno`   becomes   mno
117 */
118 static void dequoteString(char *z){
119   int quote;
120   int i, j;
121   if( z==0 ) return;
122   quote = z[0];
123   switch( quote ){
124     case '\'':  break;
125     case '"':   break;
126     case '`':   break;                /* For MySQL compatibility */
127     case '[':   quote = ']';  break;  /* For MS SqlServer compatibility */
128     default:    return;
129   }
130   for(i=1, j=0; z[i]; i++){
131     if( z[i]==quote ){
132       if( z[i+1]==quote ){
133         z[j++] = quote;
134         i++;
135       }else{
136         z[j++] = 0;
137         break;
138       }
139     }else{
140       z[j++] = z[i];
141     }
142   }
143 }
144 
145 /*
146 ** Retrieve the column names for the table named zTab via database
147 ** connection db. SQLITE_OK is returned on success, or an sqlite error
148 ** code otherwise.
149 **
150 ** If successful, the number of columns is written to *pnCol. *paCol is
151 ** set to point at sqlite3_malloc()'d space containing the array of
152 ** nCol column names. The caller is responsible for calling sqlite3_free
153 ** on *paCol.
154 */
155 static int getColumnNames(
156   sqlite3 *db,
157   const char *zTab,
158   char ***paCol,
159   int *pnCol
160 ){
161   char **aCol = 0;
162   char *zSql;
163   sqlite3_stmt *pStmt = 0;
164   int rc = SQLITE_OK;
165   int nCol = 0;
166 
167   /* Prepare the statement "SELECT * FROM <tbl>". The column names
168   ** of the result set of the compiled SELECT will be the same as
169   ** the column names of table <tbl>.
170   */
171   zSql = sqlite3_mprintf("SELECT * FROM %Q", zTab);
172   if( !zSql ){
173     rc = SQLITE_NOMEM;
174     goto out;
175   }
176   rc = sqlite3_prepare(db, zSql, -1, &pStmt, 0);
177   sqlite3_free(zSql);
178 
179   if( rc==SQLITE_OK ){
180     int ii;
181     int nBytes;
182     char *zSpace;
183     nCol = sqlite3_column_count(pStmt);
184 
185     /* Figure out how much space to allocate for the array of column names
186     ** (including space for the strings themselves). Then allocate it.
187     */
188     nBytes = sizeof(char *) * nCol;
189     for(ii=0; ii<nCol; ii++){
190       const char *zName = sqlite3_column_name(pStmt, ii);
191       if( !zName ){
192         rc = SQLITE_NOMEM;
193         goto out;
194       }
195       nBytes += (int)strlen(zName)+1;
196     }
197     aCol = (char **)sqlite3MallocZero(nBytes);
198     if( !aCol ){
199       rc = SQLITE_NOMEM;
200       goto out;
201     }
202 
203     /* Copy the column names into the allocated space and set up the
204     ** pointers in the aCol[] array.
205     */
206     zSpace = (char *)(&aCol[nCol]);
207     for(ii=0; ii<nCol; ii++){
208       aCol[ii] = zSpace;
209       sqlite3_snprintf(nBytes, zSpace, "%s", sqlite3_column_name(pStmt,ii));
210       zSpace += (int)strlen(zSpace) + 1;
211     }
212     assert( (zSpace-nBytes)==(char *)aCol );
213   }
214 
215   *paCol = aCol;
216   *pnCol = nCol;
217 
218 out:
219   sqlite3_finalize(pStmt);
220   return rc;
221 }
222 
223 /*
224 ** Parameter zTab is the name of a table in database db with nCol
225 ** columns. This function allocates an array of integers nCol in
226 ** size and populates it according to any implicit or explicit
227 ** indices on table zTab.
228 **
229 ** If successful, SQLITE_OK is returned and *paIndex set to point
230 ** at the allocated array. Otherwise, an error code is returned.
231 **
232 ** See comments associated with the member variable aIndex above
233 ** "struct echo_vtab" for details of the contents of the array.
234 */
235 static int getIndexArray(
236   sqlite3 *db,             /* Database connection */
237   const char *zTab,        /* Name of table in database db */
238   int nCol,
239   int **paIndex
240 ){
241   sqlite3_stmt *pStmt = 0;
242   int *aIndex = 0;
243   int rc;
244   char *zSql;
245 
246   /* Allocate space for the index array */
247   aIndex = (int *)sqlite3MallocZero(sizeof(int) * nCol);
248   if( !aIndex ){
249     rc = SQLITE_NOMEM;
250     goto get_index_array_out;
251   }
252 
253   /* Compile an sqlite pragma to loop through all indices on table zTab */
254   zSql = sqlite3_mprintf("PRAGMA index_list(%s)", zTab);
255   if( !zSql ){
256     rc = SQLITE_NOMEM;
257     goto get_index_array_out;
258   }
259   rc = sqlite3_prepare(db, zSql, -1, &pStmt, 0);
260   sqlite3_free(zSql);
261 
262   /* For each index, figure out the left-most column and set the
263   ** corresponding entry in aIndex[] to 1.
264   */
265   while( pStmt && sqlite3_step(pStmt)==SQLITE_ROW ){
266     const char *zIdx = (const char *)sqlite3_column_text(pStmt, 1);
267     sqlite3_stmt *pStmt2 = 0;
268     if( zIdx==0 ) continue;
269     zSql = sqlite3_mprintf("PRAGMA index_info(%s)", zIdx);
270     if( !zSql ){
271       rc = SQLITE_NOMEM;
272       goto get_index_array_out;
273     }
274     rc = sqlite3_prepare(db, zSql, -1, &pStmt2, 0);
275     sqlite3_free(zSql);
276     if( pStmt2 && sqlite3_step(pStmt2)==SQLITE_ROW ){
277       int cid = sqlite3_column_int(pStmt2, 1);
278       assert( cid>=0 && cid<nCol );
279       aIndex[cid] = 1;
280     }
281     if( pStmt2 ){
282       rc = sqlite3_finalize(pStmt2);
283     }
284     if( rc!=SQLITE_OK ){
285       goto get_index_array_out;
286     }
287   }
288 
289 
290 get_index_array_out:
291   if( pStmt ){
292     int rc2 = sqlite3_finalize(pStmt);
293     if( rc==SQLITE_OK ){
294       rc = rc2;
295     }
296   }
297   if( rc!=SQLITE_OK ){
298     sqlite3_free(aIndex);
299     aIndex = 0;
300   }
301   *paIndex = aIndex;
302   return rc;
303 }
304 
305 /*
306 ** Global Tcl variable $echo_module is a list. This routine appends
307 ** the string element zArg to that list in interpreter interp.
308 */
309 static void appendToEchoModule(Tcl_Interp *interp, const char *zArg){
310   int flags = (TCL_APPEND_VALUE | TCL_LIST_ELEMENT | TCL_GLOBAL_ONLY);
311   Tcl_SetVar(interp, "echo_module", (zArg?zArg:""), flags);
312 }
313 
314 /*
315 ** This function is called from within the echo-modules xCreate and
316 ** xConnect methods. The argc and argv arguments are copies of those
317 ** passed to the calling method. This function is responsible for
318 ** calling sqlite3_declare_vtab() to declare the schema of the virtual
319 ** table being created or connected.
320 **
321 ** If the constructor was passed just one argument, i.e.:
322 **
323 **   CREATE TABLE t1 AS echo(t2);
324 **
325 ** Then t2 is assumed to be the name of a *real* database table. The
326 ** schema of the virtual table is declared by passing a copy of the
327 ** CREATE TABLE statement for the real table to sqlite3_declare_vtab().
328 ** Hence, the virtual table should have exactly the same column names and
329 ** types as the real table.
330 */
331 static int echoDeclareVtab(
332   echo_vtab *pVtab,
333   sqlite3 *db
334 ){
335   int rc = SQLITE_OK;
336 
337   if( pVtab->zTableName ){
338     sqlite3_stmt *pStmt = 0;
339     rc = sqlite3_prepare(db,
340         "SELECT sql FROM sqlite_master WHERE type = 'table' AND name = ?",
341         -1, &pStmt, 0);
342     if( rc==SQLITE_OK ){
343       sqlite3_bind_text(pStmt, 1, pVtab->zTableName, -1, 0);
344       if( sqlite3_step(pStmt)==SQLITE_ROW ){
345         int rc2;
346         const char *zCreateTable = (const char *)sqlite3_column_text(pStmt, 0);
347         rc = sqlite3_declare_vtab(db, zCreateTable);
348         rc2 = sqlite3_finalize(pStmt);
349         if( rc==SQLITE_OK ){
350           rc = rc2;
351         }
352       } else {
353         rc = sqlite3_finalize(pStmt);
354         if( rc==SQLITE_OK ){
355           rc = SQLITE_ERROR;
356         }
357       }
358       if( rc==SQLITE_OK ){
359         rc = getColumnNames(db, pVtab->zTableName, &pVtab->aCol, &pVtab->nCol);
360       }
361       if( rc==SQLITE_OK ){
362         rc = getIndexArray(db, pVtab->zTableName, pVtab->nCol, &pVtab->aIndex);
363       }
364     }
365   }
366 
367   return rc;
368 }
369 
370 /*
371 ** This function frees all runtime structures associated with the virtual
372 ** table pVtab.
373 */
374 static int echoDestructor(sqlite3_vtab *pVtab){
375   echo_vtab *p = (echo_vtab*)pVtab;
376   sqlite3_free(p->aIndex);
377   sqlite3_free(p->aCol);
378   sqlite3_free(p->zThis);
379   sqlite3_free(p->zTableName);
380   sqlite3_free(p->zLogName);
381   sqlite3_free(p);
382   return 0;
383 }
384 
385 typedef struct EchoModule EchoModule;
386 struct EchoModule {
387   Tcl_Interp *interp;
388 };
389 
390 /*
391 ** This function is called to do the work of the xConnect() method -
392 ** to allocate the required in-memory structures for a newly connected
393 ** virtual table.
394 */
395 static int echoConstructor(
396   sqlite3 *db,
397   void *pAux,
398   int argc, const char *const*argv,
399   sqlite3_vtab **ppVtab,
400   char **pzErr
401 ){
402   int rc;
403   int i;
404   echo_vtab *pVtab;
405 
406   /* Allocate the sqlite3_vtab/echo_vtab structure itself */
407   pVtab = sqlite3MallocZero( sizeof(*pVtab) );
408   if( !pVtab ){
409     return SQLITE_NOMEM;
410   }
411   pVtab->interp = ((EchoModule *)pAux)->interp;
412   pVtab->db = db;
413 
414   /* Allocate echo_vtab.zThis */
415   pVtab->zThis = sqlite3_mprintf("%s", argv[2]);
416   if( !pVtab->zThis ){
417     echoDestructor((sqlite3_vtab *)pVtab);
418     return SQLITE_NOMEM;
419   }
420 
421   /* Allocate echo_vtab.zTableName */
422   if( argc>3 ){
423     pVtab->zTableName = sqlite3_mprintf("%s", argv[3]);
424     dequoteString(pVtab->zTableName);
425     if( pVtab->zTableName && pVtab->zTableName[0]=='*' ){
426       char *z = sqlite3_mprintf("%s%s", argv[2], &(pVtab->zTableName[1]));
427       sqlite3_free(pVtab->zTableName);
428       pVtab->zTableName = z;
429       pVtab->isPattern = 1;
430     }
431     if( !pVtab->zTableName ){
432       echoDestructor((sqlite3_vtab *)pVtab);
433       return SQLITE_NOMEM;
434     }
435   }
436 
437   /* Log the arguments to this function to Tcl var ::echo_module */
438   for(i=0; i<argc; i++){
439     appendToEchoModule(pVtab->interp, argv[i]);
440   }
441 
442   /* Invoke sqlite3_declare_vtab and set up other members of the echo_vtab
443   ** structure. If an error occurs, delete the sqlite3_vtab structure and
444   ** return an error code.
445   */
446   rc = echoDeclareVtab(pVtab, db);
447   if( rc!=SQLITE_OK ){
448     echoDestructor((sqlite3_vtab *)pVtab);
449     return rc;
450   }
451 
452   /* Success. Set *ppVtab and return */
453   *ppVtab = &pVtab->base;
454   return SQLITE_OK;
455 }
456 
457 /*
458 ** Echo virtual table module xCreate method.
459 */
460 static int echoCreate(
461   sqlite3 *db,
462   void *pAux,
463   int argc, const char *const*argv,
464   sqlite3_vtab **ppVtab,
465   char **pzErr
466 ){
467   int rc = SQLITE_OK;
468   appendToEchoModule(((EchoModule *)pAux)->interp, "xCreate");
469   rc = echoConstructor(db, pAux, argc, argv, ppVtab, pzErr);
470 
471   /* If there were two arguments passed to the module at the SQL level
472   ** (i.e. "CREATE VIRTUAL TABLE tbl USING echo(arg1, arg2)"), then
473   ** the second argument is used as a table name. Attempt to create
474   ** such a table with a single column, "logmsg". This table will
475   ** be used to log calls to the xUpdate method. It will be deleted
476   ** when the virtual table is DROPed.
477   **
478   ** Note: The main point of this is to test that we can drop tables
479   ** from within an xDestroy method call.
480   */
481   if( rc==SQLITE_OK && argc==5 ){
482     char *zSql;
483     echo_vtab *pVtab = *(echo_vtab **)ppVtab;
484     pVtab->zLogName = sqlite3_mprintf("%s", argv[4]);
485     zSql = sqlite3_mprintf("CREATE TABLE %Q(logmsg)", pVtab->zLogName);
486     rc = sqlite3_exec(db, zSql, 0, 0, 0);
487     sqlite3_free(zSql);
488     if( rc!=SQLITE_OK ){
489       *pzErr = sqlite3_mprintf("%s", sqlite3_errmsg(db));
490     }
491   }
492 
493   if( *ppVtab && rc!=SQLITE_OK ){
494     echoDestructor(*ppVtab);
495     *ppVtab = 0;
496   }
497 
498   if( rc==SQLITE_OK ){
499     (*(echo_vtab**)ppVtab)->inTransaction = 1;
500   }
501 
502   return rc;
503 }
504 
505 /*
506 ** Echo virtual table module xConnect method.
507 */
508 static int echoConnect(
509   sqlite3 *db,
510   void *pAux,
511   int argc, const char *const*argv,
512   sqlite3_vtab **ppVtab,
513   char **pzErr
514 ){
515   appendToEchoModule(((EchoModule *)pAux)->interp, "xConnect");
516   return echoConstructor(db, pAux, argc, argv, ppVtab, pzErr);
517 }
518 
519 /*
520 ** Echo virtual table module xDisconnect method.
521 */
522 static int echoDisconnect(sqlite3_vtab *pVtab){
523   appendToEchoModule(((echo_vtab *)pVtab)->interp, "xDisconnect");
524   return echoDestructor(pVtab);
525 }
526 
527 /*
528 ** Echo virtual table module xDestroy method.
529 */
530 static int echoDestroy(sqlite3_vtab *pVtab){
531   int rc = SQLITE_OK;
532   echo_vtab *p = (echo_vtab *)pVtab;
533   appendToEchoModule(((echo_vtab *)pVtab)->interp, "xDestroy");
534 
535   /* Drop the "log" table, if one exists (see echoCreate() for details) */
536   if( p && p->zLogName ){
537     char *zSql;
538     zSql = sqlite3_mprintf("DROP TABLE %Q", p->zLogName);
539     rc = sqlite3_exec(p->db, zSql, 0, 0, 0);
540     sqlite3_free(zSql);
541   }
542 
543   if( rc==SQLITE_OK ){
544     rc = echoDestructor(pVtab);
545   }
546   return rc;
547 }
548 
549 /*
550 ** Echo virtual table module xOpen method.
551 */
552 static int echoOpen(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCursor){
553   echo_cursor *pCur;
554   if( simulateVtabError((echo_vtab *)pVTab, "xOpen") ){
555     return SQLITE_ERROR;
556   }
557   pCur = sqlite3MallocZero(sizeof(echo_cursor));
558   *ppCursor = (sqlite3_vtab_cursor *)pCur;
559   return (pCur ? SQLITE_OK : SQLITE_NOMEM);
560 }
561 
562 /*
563 ** Echo virtual table module xClose method.
564 */
565 static int echoClose(sqlite3_vtab_cursor *cur){
566   int rc;
567   echo_cursor *pCur = (echo_cursor *)cur;
568   sqlite3_stmt *pStmt = pCur->pStmt;
569   pCur->pStmt = 0;
570   sqlite3_free(pCur);
571   rc = sqlite3_finalize(pStmt);
572   return rc;
573 }
574 
575 /*
576 ** Return non-zero if the cursor does not currently point to a valid record
577 ** (i.e if the scan has finished), or zero otherwise.
578 */
579 static int echoEof(sqlite3_vtab_cursor *cur){
580   return (((echo_cursor *)cur)->pStmt ? 0 : 1);
581 }
582 
583 /*
584 ** Echo virtual table module xNext method.
585 */
586 static int echoNext(sqlite3_vtab_cursor *cur){
587   int rc = SQLITE_OK;
588   echo_cursor *pCur = (echo_cursor *)cur;
589 
590   if( simulateVtabError((echo_vtab *)(cur->pVtab), "xNext") ){
591     return SQLITE_ERROR;
592   }
593 
594   if( pCur->pStmt ){
595     rc = sqlite3_step(pCur->pStmt);
596     if( rc==SQLITE_ROW ){
597       rc = SQLITE_OK;
598     }else{
599       rc = sqlite3_finalize(pCur->pStmt);
600       pCur->pStmt = 0;
601     }
602   }
603 
604   return rc;
605 }
606 
607 /*
608 ** Echo virtual table module xColumn method.
609 */
610 static int echoColumn(sqlite3_vtab_cursor *cur, sqlite3_context *ctx, int i){
611   int iCol = i + 1;
612   sqlite3_stmt *pStmt = ((echo_cursor *)cur)->pStmt;
613 
614   if( simulateVtabError((echo_vtab *)(cur->pVtab), "xColumn") ){
615     return SQLITE_ERROR;
616   }
617 
618   if( !pStmt ){
619     sqlite3_result_null(ctx);
620   }else{
621     assert( sqlite3_data_count(pStmt)>iCol );
622     sqlite3_result_value(ctx, sqlite3_column_value(pStmt, iCol));
623   }
624   return SQLITE_OK;
625 }
626 
627 /*
628 ** Echo virtual table module xRowid method.
629 */
630 static int echoRowid(sqlite3_vtab_cursor *cur, sqlite_int64 *pRowid){
631   sqlite3_stmt *pStmt = ((echo_cursor *)cur)->pStmt;
632 
633   if( simulateVtabError((echo_vtab *)(cur->pVtab), "xRowid") ){
634     return SQLITE_ERROR;
635   }
636 
637   *pRowid = sqlite3_column_int64(pStmt, 0);
638   return SQLITE_OK;
639 }
640 
641 /*
642 ** Compute a simple hash of the null terminated string zString.
643 **
644 ** This module uses only sqlite3_index_info.idxStr, not
645 ** sqlite3_index_info.idxNum. So to test idxNum, when idxStr is set
646 ** in echoBestIndex(), idxNum is set to the corresponding hash value.
647 ** In echoFilter(), code assert()s that the supplied idxNum value is
648 ** indeed the hash of the supplied idxStr.
649 */
650 static int hashString(const char *zString){
651   u32 val = 0;
652   int ii;
653   for(ii=0; zString[ii]; ii++){
654     val = (val << 3) + (int)zString[ii];
655   }
656   return (int)(val&0x7fffffff);
657 }
658 
659 /*
660 ** Echo virtual table module xFilter method.
661 */
662 static int echoFilter(
663   sqlite3_vtab_cursor *pVtabCursor,
664   int idxNum, const char *idxStr,
665   int argc, sqlite3_value **argv
666 ){
667   int rc;
668   int i;
669 
670   echo_cursor *pCur = (echo_cursor *)pVtabCursor;
671   echo_vtab *pVtab = (echo_vtab *)pVtabCursor->pVtab;
672   sqlite3 *db = pVtab->db;
673 
674   if( simulateVtabError(pVtab, "xFilter") ){
675     return SQLITE_ERROR;
676   }
677 
678   /* Check that idxNum matches idxStr */
679   assert( idxNum==hashString(idxStr) );
680 
681   /* Log arguments to the ::echo_module Tcl variable */
682   appendToEchoModule(pVtab->interp, "xFilter");
683   appendToEchoModule(pVtab->interp, idxStr);
684   for(i=0; i<argc; i++){
685     appendToEchoModule(pVtab->interp, (const char*)sqlite3_value_text(argv[i]));
686   }
687 
688   sqlite3_finalize(pCur->pStmt);
689   pCur->pStmt = 0;
690 
691   /* Prepare the SQL statement created by echoBestIndex and bind the
692   ** runtime parameters passed to this function to it.
693   */
694   rc = sqlite3_prepare(db, idxStr, -1, &pCur->pStmt, 0);
695   assert( pCur->pStmt || rc!=SQLITE_OK );
696   for(i=0; rc==SQLITE_OK && i<argc; i++){
697     rc = sqlite3_bind_value(pCur->pStmt, i+1, argv[i]);
698   }
699 
700   /* If everything was successful, advance to the first row of the scan */
701   if( rc==SQLITE_OK ){
702     rc = echoNext(pVtabCursor);
703   }
704 
705   return rc;
706 }
707 
708 
709 /*
710 ** A helper function used by echoUpdate() and echoBestIndex() for
711 ** manipulating strings in concert with the sqlite3_mprintf() function.
712 **
713 ** Parameter pzStr points to a pointer to a string allocated with
714 ** sqlite3_mprintf. The second parameter, zAppend, points to another
715 ** string. The two strings are concatenated together and *pzStr
716 ** set to point at the result. The initial buffer pointed to by *pzStr
717 ** is deallocated via sqlite3_free().
718 **
719 ** If the third argument, doFree, is true, then sqlite3_free() is
720 ** also called to free the buffer pointed to by zAppend.
721 */
722 static void string_concat(char **pzStr, char *zAppend, int doFree, int *pRc){
723   char *zIn = *pzStr;
724   if( !zAppend && doFree && *pRc==SQLITE_OK ){
725     *pRc = SQLITE_NOMEM;
726   }
727   if( *pRc!=SQLITE_OK ){
728     sqlite3_free(zIn);
729     zIn = 0;
730   }else{
731     if( zIn ){
732       char *zTemp = zIn;
733       zIn = sqlite3_mprintf("%s%s", zIn, zAppend);
734       sqlite3_free(zTemp);
735     }else{
736       zIn = sqlite3_mprintf("%s", zAppend);
737     }
738     if( !zIn ){
739       *pRc = SQLITE_NOMEM;
740     }
741   }
742   *pzStr = zIn;
743   if( doFree ){
744     sqlite3_free(zAppend);
745   }
746 }
747 
748 /*
749 ** This function returns a pointer to an sqlite3_malloc()ed buffer
750 ** containing the select-list (the thing between keywords SELECT and FROM)
751 ** to query the underlying real table with for the scan described by
752 ** argument pIdxInfo.
753 **
754 ** If the current SQLite version is earlier than 3.10.0, this is just "*"
755 ** (select all columns). Or, for version 3.10.0 and greater, the list of
756 ** columns identified by the pIdxInfo->colUsed mask.
757 */
758 static char *echoSelectList(echo_vtab *pTab, sqlite3_index_info *pIdxInfo){
759   char *zRet = 0;
760   if( sqlite3_libversion_number()<3010000 ){
761     zRet = sqlite3_mprintf(", *");
762   }else{
763     int i;
764     for(i=0; i<pTab->nCol; i++){
765       if( pIdxInfo->colUsed & ((sqlite3_uint64)1 << (i>=63 ? 63 : i)) ){
766         zRet = sqlite3_mprintf("%z, %s", zRet, pTab->aCol[i]);
767       }else{
768         zRet = sqlite3_mprintf("%z, NULL", zRet);
769       }
770       if( !zRet ) break;
771     }
772   }
773   return zRet;
774 }
775 
776 /*
777 ** The echo module implements the subset of query constraints and sort
778 ** orders that may take advantage of SQLite indices on the underlying
779 ** real table. For example, if the real table is declared as:
780 **
781 **     CREATE TABLE real(a, b, c);
782 **     CREATE INDEX real_index ON real(b);
783 **
784 ** then the echo module handles WHERE or ORDER BY clauses that refer
785 ** to the column "b", but not "a" or "c". If a multi-column index is
786 ** present, only its left most column is considered.
787 **
788 ** This xBestIndex method encodes the proposed search strategy as
789 ** an SQL query on the real table underlying the virtual echo module
790 ** table and stores the query in sqlite3_index_info.idxStr. The SQL
791 ** statement is of the form:
792 **
793 **   SELECT rowid, * FROM <real-table> ?<where-clause>? ?<order-by-clause>?
794 **
795 ** where the <where-clause> and <order-by-clause> are determined
796 ** by the contents of the structure pointed to by the pIdxInfo argument.
797 */
798 static int echoBestIndex(sqlite3_vtab *tab, sqlite3_index_info *pIdxInfo){
799   int ii;
800   char *zQuery = 0;
801   char *zCol = 0;
802   char *zNew;
803   int nArg = 0;
804   const char *zSep = "WHERE";
805   echo_vtab *pVtab = (echo_vtab *)tab;
806   sqlite3_stmt *pStmt = 0;
807   Tcl_Interp *interp = pVtab->interp;
808 
809   int nRow = 0;
810   int useIdx = 0;
811   int rc = SQLITE_OK;
812   int useCost = 0;
813   double cost = 0;
814   int isIgnoreUsable = 0;
815   if( Tcl_GetVar(interp, "echo_module_ignore_usable", TCL_GLOBAL_ONLY) ){
816     isIgnoreUsable = 1;
817   }
818 
819   if( simulateVtabError(pVtab, "xBestIndex") ){
820     return SQLITE_ERROR;
821   }
822 
823   /* Determine the number of rows in the table and store this value in local
824   ** variable nRow. The 'estimated-cost' of the scan will be the number of
825   ** rows in the table for a linear scan, or the log (base 2) of the
826   ** number of rows if the proposed scan uses an index.
827   */
828   if( Tcl_GetVar(interp, "echo_module_cost", TCL_GLOBAL_ONLY) ){
829     cost = atof(Tcl_GetVar(interp, "echo_module_cost", TCL_GLOBAL_ONLY));
830     useCost = 1;
831   } else {
832     zQuery = sqlite3_mprintf("SELECT count(*) FROM %Q", pVtab->zTableName);
833     if( !zQuery ){
834       return SQLITE_NOMEM;
835     }
836     rc = sqlite3_prepare(pVtab->db, zQuery, -1, &pStmt, 0);
837     sqlite3_free(zQuery);
838     if( rc!=SQLITE_OK ){
839       return rc;
840     }
841     sqlite3_step(pStmt);
842     nRow = sqlite3_column_int(pStmt, 0);
843     rc = sqlite3_finalize(pStmt);
844     if( rc!=SQLITE_OK ){
845       return rc;
846     }
847   }
848 
849   zCol = echoSelectList(pVtab, pIdxInfo);
850   if( !zCol ) return SQLITE_NOMEM;
851   zQuery = sqlite3_mprintf("SELECT rowid%z FROM %Q", zCol, pVtab->zTableName);
852   if( !zQuery ) return SQLITE_NOMEM;
853 
854   for(ii=0; ii<pIdxInfo->nConstraint; ii++){
855     const struct sqlite3_index_constraint *pConstraint;
856     struct sqlite3_index_constraint_usage *pUsage;
857     int iCol;
858 
859     pConstraint = &pIdxInfo->aConstraint[ii];
860     pUsage = &pIdxInfo->aConstraintUsage[ii];
861 
862     if( !isIgnoreUsable && !pConstraint->usable ) continue;
863 
864     iCol = pConstraint->iColumn;
865     if( iCol<0 || pVtab->aIndex[iCol] ){
866       char *zNewCol = iCol>=0 ? pVtab->aCol[iCol] : "rowid";
867       char *zOp = 0;
868       useIdx = 1;
869       switch( pConstraint->op ){
870         case SQLITE_INDEX_CONSTRAINT_EQ:
871           zOp = "="; break;
872         case SQLITE_INDEX_CONSTRAINT_LT:
873           zOp = "<"; break;
874         case SQLITE_INDEX_CONSTRAINT_GT:
875           zOp = ">"; break;
876         case SQLITE_INDEX_CONSTRAINT_LE:
877           zOp = "<="; break;
878         case SQLITE_INDEX_CONSTRAINT_GE:
879           zOp = ">="; break;
880         case SQLITE_INDEX_CONSTRAINT_MATCH:
881           /* Purposely translate the MATCH operator into a LIKE, which
882           ** will be used by the next block of code to construct a new
883           ** query.  It should also be noted here that the next block
884           ** of code requires the first letter of this operator to be
885           ** in upper-case to trigger the special MATCH handling (i.e.
886           ** wrapping the bound parameter with literal '%'s).
887           */
888           zOp = "LIKE"; break;
889         case SQLITE_INDEX_CONSTRAINT_LIKE:
890           zOp = "like"; break;
891         case SQLITE_INDEX_CONSTRAINT_GLOB:
892           zOp = "glob"; break;
893         case SQLITE_INDEX_CONSTRAINT_REGEXP:
894           zOp = "regexp"; break;
895       }
896       if( zOp[0]=='L' ){
897         zNew = sqlite3_mprintf(" %s %s LIKE (SELECT '%%'||?||'%%')",
898                                zSep, zNewCol);
899       } else {
900         zNew = sqlite3_mprintf(" %s %s %s ?", zSep, zNewCol, zOp);
901       }
902       string_concat(&zQuery, zNew, 1, &rc);
903 
904       zSep = "AND";
905       pUsage->argvIndex = ++nArg;
906       pUsage->omit = 1;
907     }
908   }
909 
910   /* If there is only one term in the ORDER BY clause, and it is
911   ** on a column that this virtual table has an index for, then consume
912   ** the ORDER BY clause.
913   */
914   if( pIdxInfo->nOrderBy==1 && (
915         pIdxInfo->aOrderBy->iColumn<0 ||
916         pVtab->aIndex[pIdxInfo->aOrderBy->iColumn]) ){
917     int iCol = pIdxInfo->aOrderBy->iColumn;
918     char *zNewCol = iCol>=0 ? pVtab->aCol[iCol] : "rowid";
919     char *zDir = pIdxInfo->aOrderBy->desc?"DESC":"ASC";
920     zNew = sqlite3_mprintf(" ORDER BY %s %s", zNewCol, zDir);
921     string_concat(&zQuery, zNew, 1, &rc);
922     pIdxInfo->orderByConsumed = 1;
923   }
924 
925   appendToEchoModule(pVtab->interp, "xBestIndex");;
926   appendToEchoModule(pVtab->interp, zQuery);
927 
928   if( !zQuery ){
929     return rc;
930   }
931   pIdxInfo->idxNum = hashString(zQuery);
932   pIdxInfo->idxStr = zQuery;
933   pIdxInfo->needToFreeIdxStr = 1;
934   if( useCost ){
935     pIdxInfo->estimatedCost = cost;
936   }else if( useIdx ){
937     /* Approximation of log2(nRow). */
938     for( ii=0; ii<(sizeof(int)*8)-1; ii++ ){
939       if( nRow & (1<<ii) ){
940         pIdxInfo->estimatedCost = (double)ii;
941       }
942     }
943   }else{
944     pIdxInfo->estimatedCost = (double)nRow;
945   }
946   return rc;
947 }
948 
949 /*
950 ** The xUpdate method for echo module virtual tables.
951 **
952 **    apData[0]  apData[1]  apData[2..]
953 **
954 **    INTEGER                              DELETE
955 **
956 **    INTEGER    NULL       (nCol args)    UPDATE (do not set rowid)
957 **    INTEGER    INTEGER    (nCol args)    UPDATE (with SET rowid = <arg1>)
958 **
959 **    NULL       NULL       (nCol args)    INSERT INTO (automatic rowid value)
960 **    NULL       INTEGER    (nCol args)    INSERT (incl. rowid value)
961 **
962 */
963 int echoUpdate(
964   sqlite3_vtab *tab,
965   int nData,
966   sqlite3_value **apData,
967   sqlite_int64 *pRowid
968 ){
969   echo_vtab *pVtab = (echo_vtab *)tab;
970   sqlite3 *db = pVtab->db;
971   int rc = SQLITE_OK;
972 
973   sqlite3_stmt *pStmt = 0;
974   char *z = 0;               /* SQL statement to execute */
975   int bindArgZero = 0;       /* True to bind apData[0] to sql var no. nData */
976   int bindArgOne = 0;        /* True to bind apData[1] to sql var no. 1 */
977   int i;                     /* Counter variable used by for loops */
978 
979   assert( nData==pVtab->nCol+2 || nData==1 );
980 
981   /* Ticket #3083 - make sure we always start a transaction prior to
982   ** making any changes to a virtual table */
983   assert( pVtab->inTransaction );
984 
985   if( simulateVtabError(pVtab, "xUpdate") ){
986     return SQLITE_ERROR;
987   }
988 
989   /* If apData[0] is an integer and nData>1 then do an UPDATE */
990   if( nData>1 && sqlite3_value_type(apData[0])==SQLITE_INTEGER ){
991     char *zSep = " SET";
992     z = sqlite3_mprintf("UPDATE %Q", pVtab->zTableName);
993     if( !z ){
994       rc = SQLITE_NOMEM;
995     }
996 
997     bindArgOne = (apData[1] && sqlite3_value_type(apData[1])==SQLITE_INTEGER);
998     bindArgZero = 1;
999 
1000     if( bindArgOne ){
1001        string_concat(&z, " SET rowid=?1 ", 0, &rc);
1002        zSep = ",";
1003     }
1004     for(i=2; i<nData; i++){
1005       if( apData[i]==0 ) continue;
1006       string_concat(&z, sqlite3_mprintf(
1007           "%s %Q=?%d", zSep, pVtab->aCol[i-2], i), 1, &rc);
1008       zSep = ",";
1009     }
1010     string_concat(&z, sqlite3_mprintf(" WHERE rowid=?%d", nData), 1, &rc);
1011   }
1012 
1013   /* If apData[0] is an integer and nData==1 then do a DELETE */
1014   else if( nData==1 && sqlite3_value_type(apData[0])==SQLITE_INTEGER ){
1015     z = sqlite3_mprintf("DELETE FROM %Q WHERE rowid = ?1", pVtab->zTableName);
1016     if( !z ){
1017       rc = SQLITE_NOMEM;
1018     }
1019     bindArgZero = 1;
1020   }
1021 
1022   /* If the first argument is NULL and there are more than two args, INSERT */
1023   else if( nData>2 && sqlite3_value_type(apData[0])==SQLITE_NULL ){
1024     int ii;
1025     char *zInsert = 0;
1026     char *zValues = 0;
1027 
1028     zInsert = sqlite3_mprintf("INSERT INTO %Q (", pVtab->zTableName);
1029     if( !zInsert ){
1030       rc = SQLITE_NOMEM;
1031     }
1032     if( sqlite3_value_type(apData[1])==SQLITE_INTEGER ){
1033       bindArgOne = 1;
1034       zValues = sqlite3_mprintf("?");
1035       string_concat(&zInsert, "rowid", 0, &rc);
1036     }
1037 
1038     assert((pVtab->nCol+2)==nData);
1039     for(ii=2; ii<nData; ii++){
1040       string_concat(&zInsert,
1041           sqlite3_mprintf("%s%Q", zValues?", ":"", pVtab->aCol[ii-2]), 1, &rc);
1042       string_concat(&zValues,
1043           sqlite3_mprintf("%s?%d", zValues?", ":"", ii), 1, &rc);
1044     }
1045 
1046     string_concat(&z, zInsert, 1, &rc);
1047     string_concat(&z, ") VALUES(", 0, &rc);
1048     string_concat(&z, zValues, 1, &rc);
1049     string_concat(&z, ")", 0, &rc);
1050   }
1051 
1052   /* Anything else is an error */
1053   else{
1054     assert(0);
1055     return SQLITE_ERROR;
1056   }
1057 
1058   if( rc==SQLITE_OK ){
1059     rc = sqlite3_prepare(db, z, -1, &pStmt, 0);
1060   }
1061   assert( rc!=SQLITE_OK || pStmt );
1062   sqlite3_free(z);
1063   if( rc==SQLITE_OK ) {
1064     if( bindArgZero ){
1065       sqlite3_bind_value(pStmt, nData, apData[0]);
1066     }
1067     if( bindArgOne ){
1068       sqlite3_bind_value(pStmt, 1, apData[1]);
1069     }
1070     for(i=2; i<nData && rc==SQLITE_OK; i++){
1071       if( apData[i] ) rc = sqlite3_bind_value(pStmt, i, apData[i]);
1072     }
1073     if( rc==SQLITE_OK ){
1074       sqlite3_step(pStmt);
1075       rc = sqlite3_finalize(pStmt);
1076     }else{
1077       sqlite3_finalize(pStmt);
1078     }
1079   }
1080 
1081   if( pRowid && rc==SQLITE_OK ){
1082     *pRowid = sqlite3_last_insert_rowid(db);
1083   }
1084   if( rc!=SQLITE_OK ){
1085     tab->zErrMsg = sqlite3_mprintf("echo-vtab-error: %s", sqlite3_errmsg(db));
1086   }
1087 
1088   return rc;
1089 }
1090 
1091 /*
1092 ** xBegin, xSync, xCommit and xRollback callbacks for echo module
1093 ** virtual tables. Do nothing other than add the name of the callback
1094 ** to the $::echo_module Tcl variable.
1095 */
1096 static int echoTransactionCall(sqlite3_vtab *tab, const char *zCall){
1097   char *z;
1098   echo_vtab *pVtab = (echo_vtab *)tab;
1099   z = sqlite3_mprintf("echo(%s)", pVtab->zTableName);
1100   if( z==0 ) return SQLITE_NOMEM;
1101   appendToEchoModule(pVtab->interp, zCall);
1102   appendToEchoModule(pVtab->interp, z);
1103   sqlite3_free(z);
1104   return SQLITE_OK;
1105 }
1106 static int echoBegin(sqlite3_vtab *tab){
1107   int rc;
1108   echo_vtab *pVtab = (echo_vtab *)tab;
1109   Tcl_Interp *interp = pVtab->interp;
1110   const char *zVal;
1111 
1112   /* Ticket #3083 - do not start a transaction if we are already in
1113   ** a transaction */
1114   assert( !pVtab->inTransaction );
1115 
1116   if( simulateVtabError(pVtab, "xBegin") ){
1117     return SQLITE_ERROR;
1118   }
1119 
1120   rc = echoTransactionCall(tab, "xBegin");
1121 
1122   if( rc==SQLITE_OK ){
1123     /* Check if the $::echo_module_begin_fail variable is defined. If it is,
1124     ** and it is set to the name of the real table underlying this virtual
1125     ** echo module table, then cause this xSync operation to fail.
1126     */
1127     zVal = Tcl_GetVar(interp, "echo_module_begin_fail", TCL_GLOBAL_ONLY);
1128     if( zVal && 0==strcmp(zVal, pVtab->zTableName) ){
1129       rc = SQLITE_ERROR;
1130     }
1131   }
1132   if( rc==SQLITE_OK ){
1133     pVtab->inTransaction = 1;
1134   }
1135   return rc;
1136 }
1137 static int echoSync(sqlite3_vtab *tab){
1138   int rc;
1139   echo_vtab *pVtab = (echo_vtab *)tab;
1140   Tcl_Interp *interp = pVtab->interp;
1141   const char *zVal;
1142 
1143   /* Ticket #3083 - Only call xSync if we have previously started a
1144   ** transaction */
1145   assert( pVtab->inTransaction );
1146 
1147   if( simulateVtabError(pVtab, "xSync") ){
1148     return SQLITE_ERROR;
1149   }
1150 
1151   rc = echoTransactionCall(tab, "xSync");
1152 
1153   if( rc==SQLITE_OK ){
1154     /* Check if the $::echo_module_sync_fail variable is defined. If it is,
1155     ** and it is set to the name of the real table underlying this virtual
1156     ** echo module table, then cause this xSync operation to fail.
1157     */
1158     zVal = Tcl_GetVar(interp, "echo_module_sync_fail", TCL_GLOBAL_ONLY);
1159     if( zVal && 0==strcmp(zVal, pVtab->zTableName) ){
1160       rc = -1;
1161     }
1162   }
1163   return rc;
1164 }
1165 static int echoCommit(sqlite3_vtab *tab){
1166   echo_vtab *pVtab = (echo_vtab*)tab;
1167   int rc;
1168 
1169   /* Ticket #3083 - Only call xCommit if we have previously started
1170   ** a transaction */
1171   assert( pVtab->inTransaction );
1172 
1173   if( simulateVtabError(pVtab, "xCommit") ){
1174     return SQLITE_ERROR;
1175   }
1176 
1177   sqlite3BeginBenignMalloc();
1178   rc = echoTransactionCall(tab, "xCommit");
1179   sqlite3EndBenignMalloc();
1180   pVtab->inTransaction = 0;
1181   return rc;
1182 }
1183 static int echoRollback(sqlite3_vtab *tab){
1184   int rc;
1185   echo_vtab *pVtab = (echo_vtab*)tab;
1186 
1187   /* Ticket #3083 - Only call xRollback if we have previously started
1188   ** a transaction */
1189   assert( pVtab->inTransaction );
1190 
1191   rc = echoTransactionCall(tab, "xRollback");
1192   pVtab->inTransaction = 0;
1193   return rc;
1194 }
1195 
1196 /*
1197 ** Implementation of "GLOB" function on the echo module.  Pass
1198 ** all arguments to the ::echo_glob_overload procedure of TCL
1199 ** and return the result of that procedure as a string.
1200 */
1201 static void overloadedGlobFunction(
1202   sqlite3_context *pContext,
1203   int nArg,
1204   sqlite3_value **apArg
1205 ){
1206   Tcl_Interp *interp = sqlite3_user_data(pContext);
1207   Tcl_DString str;
1208   int i;
1209   int rc;
1210   Tcl_DStringInit(&str);
1211   Tcl_DStringAppendElement(&str, "::echo_glob_overload");
1212   for(i=0; i<nArg; i++){
1213     Tcl_DStringAppendElement(&str, (char*)sqlite3_value_text(apArg[i]));
1214   }
1215   rc = Tcl_Eval(interp, Tcl_DStringValue(&str));
1216   Tcl_DStringFree(&str);
1217   if( rc ){
1218     sqlite3_result_error(pContext, Tcl_GetStringResult(interp), -1);
1219   }else{
1220     sqlite3_result_text(pContext, Tcl_GetStringResult(interp),
1221                         -1, SQLITE_TRANSIENT);
1222   }
1223   Tcl_ResetResult(interp);
1224 }
1225 
1226 /*
1227 ** This is the xFindFunction implementation for the echo module.
1228 ** SQLite calls this routine when the first argument of a function
1229 ** is a column of an echo virtual table.  This routine can optionally
1230 ** override the implementation of that function.  It will choose to
1231 ** do so if the function is named "glob", and a TCL command named
1232 ** ::echo_glob_overload exists.
1233 */
1234 static int echoFindFunction(
1235   sqlite3_vtab *vtab,
1236   int nArg,
1237   const char *zFuncName,
1238   void (**pxFunc)(sqlite3_context*,int,sqlite3_value**),
1239   void **ppArg
1240 ){
1241   echo_vtab *pVtab = (echo_vtab *)vtab;
1242   Tcl_Interp *interp = pVtab->interp;
1243   Tcl_CmdInfo info;
1244   if( strcmp(zFuncName,"glob")!=0 ){
1245     return 0;
1246   }
1247   if( Tcl_GetCommandInfo(interp, "::echo_glob_overload", &info)==0 ){
1248     return 0;
1249   }
1250   *pxFunc = overloadedGlobFunction;
1251   *ppArg = interp;
1252   return 1;
1253 }
1254 
1255 static int echoRename(sqlite3_vtab *vtab, const char *zNewName){
1256   int rc = SQLITE_OK;
1257   echo_vtab *p = (echo_vtab *)vtab;
1258 
1259   if( simulateVtabError(p, "xRename") ){
1260     return SQLITE_ERROR;
1261   }
1262 
1263   if( p->isPattern ){
1264     int nThis = (int)strlen(p->zThis);
1265     char *zSql = sqlite3_mprintf("ALTER TABLE %s RENAME TO %s%s",
1266         p->zTableName, zNewName, &p->zTableName[nThis]
1267     );
1268     rc = sqlite3_exec(p->db, zSql, 0, 0, 0);
1269     sqlite3_free(zSql);
1270   }
1271 
1272   return rc;
1273 }
1274 
1275 static int echoSavepoint(sqlite3_vtab *pVTab, int iSavepoint){
1276   assert( pVTab );
1277   return SQLITE_OK;
1278 }
1279 
1280 static int echoRelease(sqlite3_vtab *pVTab, int iSavepoint){
1281   assert( pVTab );
1282   return SQLITE_OK;
1283 }
1284 
1285 static int echoRollbackTo(sqlite3_vtab *pVTab, int iSavepoint){
1286   assert( pVTab );
1287   return SQLITE_OK;
1288 }
1289 
1290 /*
1291 ** A virtual table module that merely "echos" the contents of another
1292 ** table (like an SQL VIEW).
1293 */
1294 static sqlite3_module echoModule = {
1295   1,                         /* iVersion */
1296   echoCreate,
1297   echoConnect,
1298   echoBestIndex,
1299   echoDisconnect,
1300   echoDestroy,
1301   echoOpen,                  /* xOpen - open a cursor */
1302   echoClose,                 /* xClose - close a cursor */
1303   echoFilter,                /* xFilter - configure scan constraints */
1304   echoNext,                  /* xNext - advance a cursor */
1305   echoEof,                   /* xEof */
1306   echoColumn,                /* xColumn - read data */
1307   echoRowid,                 /* xRowid - read data */
1308   echoUpdate,                /* xUpdate - write data */
1309   echoBegin,                 /* xBegin - begin transaction */
1310   echoSync,                  /* xSync - sync transaction */
1311   echoCommit,                /* xCommit - commit transaction */
1312   echoRollback,              /* xRollback - rollback transaction */
1313   echoFindFunction,          /* xFindFunction - function overloading */
1314   echoRename                 /* xRename - rename the table */
1315 };
1316 
1317 static sqlite3_module echoModuleV2 = {
1318   2,                         /* iVersion */
1319   echoCreate,
1320   echoConnect,
1321   echoBestIndex,
1322   echoDisconnect,
1323   echoDestroy,
1324   echoOpen,                  /* xOpen - open a cursor */
1325   echoClose,                 /* xClose - close a cursor */
1326   echoFilter,                /* xFilter - configure scan constraints */
1327   echoNext,                  /* xNext - advance a cursor */
1328   echoEof,                   /* xEof */
1329   echoColumn,                /* xColumn - read data */
1330   echoRowid,                 /* xRowid - read data */
1331   echoUpdate,                /* xUpdate - write data */
1332   echoBegin,                 /* xBegin - begin transaction */
1333   echoSync,                  /* xSync - sync transaction */
1334   echoCommit,                /* xCommit - commit transaction */
1335   echoRollback,              /* xRollback - rollback transaction */
1336   echoFindFunction,          /* xFindFunction - function overloading */
1337   echoRename,                /* xRename - rename the table */
1338   echoSavepoint,
1339   echoRelease,
1340   echoRollbackTo
1341 };
1342 
1343 /*
1344 ** Decode a pointer to an sqlite3 object.
1345 */
1346 extern int getDbPointer(Tcl_Interp *interp, const char *zA, sqlite3 **ppDb);
1347 extern const char *sqlite3ErrName(int);
1348 
1349 static void moduleDestroy(void *p){
1350   sqlite3_free(p);
1351 }
1352 
1353 /*
1354 ** Register the echo virtual table module.
1355 */
1356 static int register_echo_module(
1357   ClientData clientData, /* Pointer to sqlite3_enable_XXX function */
1358   Tcl_Interp *interp,    /* The TCL interpreter that invoked this command */
1359   int objc,              /* Number of arguments */
1360   Tcl_Obj *CONST objv[]  /* Command arguments */
1361 ){
1362   int rc;
1363   sqlite3 *db;
1364   EchoModule *pMod;
1365   if( objc!=2 ){
1366     Tcl_WrongNumArgs(interp, 1, objv, "DB");
1367     return TCL_ERROR;
1368   }
1369   if( getDbPointer(interp, Tcl_GetString(objv[1]), &db) ) return TCL_ERROR;
1370 
1371   /* Virtual table module "echo" */
1372   pMod = sqlite3_malloc(sizeof(EchoModule));
1373   pMod->interp = interp;
1374   rc = sqlite3_create_module_v2(
1375       db, "echo", &echoModule, (void*)pMod, moduleDestroy
1376   );
1377 
1378   /* Virtual table module "echo_v2" */
1379   if( rc==SQLITE_OK ){
1380     pMod = sqlite3_malloc(sizeof(EchoModule));
1381     pMod->interp = interp;
1382     rc = sqlite3_create_module_v2(db, "echo_v2",
1383         &echoModuleV2, (void*)pMod, moduleDestroy
1384     );
1385   }
1386 
1387   Tcl_SetResult(interp, (char *)sqlite3ErrName(rc), TCL_STATIC);
1388   return TCL_OK;
1389 }
1390 
1391 /*
1392 ** Tcl interface to sqlite3_declare_vtab, invoked as follows from Tcl:
1393 **
1394 ** sqlite3_declare_vtab DB SQL
1395 */
1396 static int declare_vtab(
1397   ClientData clientData, /* Pointer to sqlite3_enable_XXX function */
1398   Tcl_Interp *interp,    /* The TCL interpreter that invoked this command */
1399   int objc,              /* Number of arguments */
1400   Tcl_Obj *CONST objv[]  /* Command arguments */
1401 ){
1402   sqlite3 *db;
1403   int rc;
1404   if( objc!=3 ){
1405     Tcl_WrongNumArgs(interp, 1, objv, "DB SQL");
1406     return TCL_ERROR;
1407   }
1408   if( getDbPointer(interp, Tcl_GetString(objv[1]), &db) ) return TCL_ERROR;
1409   rc = sqlite3_declare_vtab(db, Tcl_GetString(objv[2]));
1410   if( rc!=SQLITE_OK ){
1411     Tcl_SetResult(interp, (char *)sqlite3_errmsg(db), TCL_VOLATILE);
1412     return TCL_ERROR;
1413   }
1414   return TCL_OK;
1415 }
1416 
1417 #endif /* ifndef SQLITE_OMIT_VIRTUALTABLE */
1418 
1419 /*
1420 ** Register commands with the TCL interpreter.
1421 */
1422 int Sqlitetest8_Init(Tcl_Interp *interp){
1423 #ifndef SQLITE_OMIT_VIRTUALTABLE
1424   static struct {
1425      char *zName;
1426      Tcl_ObjCmdProc *xProc;
1427      void *clientData;
1428   } aObjCmd[] = {
1429      { "register_echo_module",       register_echo_module, 0 },
1430      { "sqlite3_declare_vtab",       declare_vtab, 0 },
1431   };
1432   int i;
1433   for(i=0; i<sizeof(aObjCmd)/sizeof(aObjCmd[0]); i++){
1434     Tcl_CreateObjCommand(interp, aObjCmd[i].zName,
1435         aObjCmd[i].xProc, aObjCmd[i].clientData, 0);
1436   }
1437 #endif
1438   return TCL_OK;
1439 }
1440