xref: /sqlite-3.40.0/src/tclsqlite.c (revision fb32c44e)
1 /*
2 ** 2001 September 15
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 ** A TCL Interface to SQLite.  Append this file to sqlite3.c and
13 ** compile the whole thing to build a TCL-enabled version of SQLite.
14 **
15 ** Compile-time options:
16 **
17 **  -DTCLSH         Add a "main()" routine that works as a tclsh.
18 **
19 **  -DTCLSH_INIT_PROC=name
20 **
21 **                  Invoke name(interp) to initialize the Tcl interpreter.
22 **                  If name(interp) returns a non-NULL string, then run
23 **                  that string as a Tcl script to launch the application.
24 **                  If name(interp) returns NULL, then run the regular
25 **                  tclsh-emulator code.
26 */
27 #ifdef TCLSH_INIT_PROC
28 # define TCLSH 1
29 #endif
30 
31 /*
32 ** If requested, include the SQLite compiler options file for MSVC.
33 */
34 #if defined(INCLUDE_MSVC_H)
35 # include "msvc.h"
36 #endif
37 
38 #if defined(INCLUDE_SQLITE_TCL_H)
39 # include "sqlite_tcl.h"
40 #else
41 # include "tcl.h"
42 # ifndef SQLITE_TCLAPI
43 #  define SQLITE_TCLAPI
44 # endif
45 #endif
46 #include <errno.h>
47 
48 /*
49 ** Some additional include files are needed if this file is not
50 ** appended to the amalgamation.
51 */
52 #ifndef SQLITE_AMALGAMATION
53 # include "sqlite3.h"
54 # include <stdlib.h>
55 # include <string.h>
56 # include <assert.h>
57   typedef unsigned char u8;
58 #endif
59 #include <ctype.h>
60 
61 /* Used to get the current process ID */
62 #if !defined(_WIN32)
63 # include <unistd.h>
64 # define GETPID getpid
65 #elif !defined(_WIN32_WCE)
66 # ifndef SQLITE_AMALGAMATION
67 #  ifndef WIN32_LEAN_AND_MEAN
68 #   define WIN32_LEAN_AND_MEAN
69 #  endif
70 #  include <windows.h>
71 # endif
72 # define GETPID (int)GetCurrentProcessId
73 #endif
74 
75 /*
76  * Windows needs to know which symbols to export.  Unix does not.
77  * BUILD_sqlite should be undefined for Unix.
78  */
79 #ifdef BUILD_sqlite
80 #undef TCL_STORAGE_CLASS
81 #define TCL_STORAGE_CLASS DLLEXPORT
82 #endif /* BUILD_sqlite */
83 
84 #define NUM_PREPARED_STMTS 10
85 #define MAX_PREPARED_STMTS 100
86 
87 /* Forward declaration */
88 typedef struct SqliteDb SqliteDb;
89 
90 /*
91 ** New SQL functions can be created as TCL scripts.  Each such function
92 ** is described by an instance of the following structure.
93 */
94 typedef struct SqlFunc SqlFunc;
95 struct SqlFunc {
96   Tcl_Interp *interp;   /* The TCL interpret to execute the function */
97   Tcl_Obj *pScript;     /* The Tcl_Obj representation of the script */
98   SqliteDb *pDb;        /* Database connection that owns this function */
99   int useEvalObjv;      /* True if it is safe to use Tcl_EvalObjv */
100   char *zName;          /* Name of this function */
101   SqlFunc *pNext;       /* Next function on the list of them all */
102 };
103 
104 /*
105 ** New collation sequences function can be created as TCL scripts.  Each such
106 ** function is described by an instance of the following structure.
107 */
108 typedef struct SqlCollate SqlCollate;
109 struct SqlCollate {
110   Tcl_Interp *interp;   /* The TCL interpret to execute the function */
111   char *zScript;        /* The script to be run */
112   SqlCollate *pNext;    /* Next function on the list of them all */
113 };
114 
115 /*
116 ** Prepared statements are cached for faster execution.  Each prepared
117 ** statement is described by an instance of the following structure.
118 */
119 typedef struct SqlPreparedStmt SqlPreparedStmt;
120 struct SqlPreparedStmt {
121   SqlPreparedStmt *pNext;  /* Next in linked list */
122   SqlPreparedStmt *pPrev;  /* Previous on the list */
123   sqlite3_stmt *pStmt;     /* The prepared statement */
124   int nSql;                /* chars in zSql[] */
125   const char *zSql;        /* Text of the SQL statement */
126   int nParm;               /* Size of apParm array */
127   Tcl_Obj **apParm;        /* Array of referenced object pointers */
128 };
129 
130 typedef struct IncrblobChannel IncrblobChannel;
131 
132 /*
133 ** There is one instance of this structure for each SQLite database
134 ** that has been opened by the SQLite TCL interface.
135 **
136 ** If this module is built with SQLITE_TEST defined (to create the SQLite
137 ** testfixture executable), then it may be configured to use either
138 ** sqlite3_prepare_v2() or sqlite3_prepare() to prepare SQL statements.
139 ** If SqliteDb.bLegacyPrepare is true, sqlite3_prepare() is used.
140 */
141 struct SqliteDb {
142   sqlite3 *db;               /* The "real" database structure. MUST BE FIRST */
143   Tcl_Interp *interp;        /* The interpreter used for this database */
144   char *zBusy;               /* The busy callback routine */
145   char *zCommit;             /* The commit hook callback routine */
146   char *zTrace;              /* The trace callback routine */
147   char *zTraceV2;            /* The trace_v2 callback routine */
148   char *zProfile;            /* The profile callback routine */
149   char *zProgress;           /* The progress callback routine */
150   char *zAuth;               /* The authorization callback routine */
151   int disableAuth;           /* Disable the authorizer if it exists */
152   char *zNull;               /* Text to substitute for an SQL NULL value */
153   SqlFunc *pFunc;            /* List of SQL functions */
154   Tcl_Obj *pUpdateHook;      /* Update hook script (if any) */
155   Tcl_Obj *pPreUpdateHook;   /* Pre-update hook script (if any) */
156   Tcl_Obj *pRollbackHook;    /* Rollback hook script (if any) */
157   Tcl_Obj *pWalHook;         /* WAL hook script (if any) */
158   Tcl_Obj *pUnlockNotify;    /* Unlock notify script (if any) */
159   SqlCollate *pCollate;      /* List of SQL collation functions */
160   int rc;                    /* Return code of most recent sqlite3_exec() */
161   Tcl_Obj *pCollateNeeded;   /* Collation needed script */
162   SqlPreparedStmt *stmtList; /* List of prepared statements*/
163   SqlPreparedStmt *stmtLast; /* Last statement in the list */
164   int maxStmt;               /* The next maximum number of stmtList */
165   int nStmt;                 /* Number of statements in stmtList */
166   IncrblobChannel *pIncrblob;/* Linked list of open incrblob channels */
167   int nStep, nSort, nIndex;  /* Statistics for most recent operation */
168   int nVMStep;               /* Another statistic for most recent operation */
169   int nTransaction;          /* Number of nested [transaction] methods */
170   int openFlags;             /* Flags used to open.  (SQLITE_OPEN_URI) */
171 #ifdef SQLITE_TEST
172   int bLegacyPrepare;        /* True to use sqlite3_prepare() */
173 #endif
174 };
175 
176 struct IncrblobChannel {
177   sqlite3_blob *pBlob;      /* sqlite3 blob handle */
178   SqliteDb *pDb;            /* Associated database connection */
179   int iSeek;                /* Current seek offset */
180   Tcl_Channel channel;      /* Channel identifier */
181   IncrblobChannel *pNext;   /* Linked list of all open incrblob channels */
182   IncrblobChannel *pPrev;   /* Linked list of all open incrblob channels */
183 };
184 
185 /*
186 ** Compute a string length that is limited to what can be stored in
187 ** lower 30 bits of a 32-bit signed integer.
188 */
189 static int strlen30(const char *z){
190   const char *z2 = z;
191   while( *z2 ){ z2++; }
192   return 0x3fffffff & (int)(z2 - z);
193 }
194 
195 
196 #ifndef SQLITE_OMIT_INCRBLOB
197 /*
198 ** Close all incrblob channels opened using database connection pDb.
199 ** This is called when shutting down the database connection.
200 */
201 static void closeIncrblobChannels(SqliteDb *pDb){
202   IncrblobChannel *p;
203   IncrblobChannel *pNext;
204 
205   for(p=pDb->pIncrblob; p; p=pNext){
206     pNext = p->pNext;
207 
208     /* Note: Calling unregister here call Tcl_Close on the incrblob channel,
209     ** which deletes the IncrblobChannel structure at *p. So do not
210     ** call Tcl_Free() here.
211     */
212     Tcl_UnregisterChannel(pDb->interp, p->channel);
213   }
214 }
215 
216 /*
217 ** Close an incremental blob channel.
218 */
219 static int SQLITE_TCLAPI incrblobClose(
220   ClientData instanceData,
221   Tcl_Interp *interp
222 ){
223   IncrblobChannel *p = (IncrblobChannel *)instanceData;
224   int rc = sqlite3_blob_close(p->pBlob);
225   sqlite3 *db = p->pDb->db;
226 
227   /* Remove the channel from the SqliteDb.pIncrblob list. */
228   if( p->pNext ){
229     p->pNext->pPrev = p->pPrev;
230   }
231   if( p->pPrev ){
232     p->pPrev->pNext = p->pNext;
233   }
234   if( p->pDb->pIncrblob==p ){
235     p->pDb->pIncrblob = p->pNext;
236   }
237 
238   /* Free the IncrblobChannel structure */
239   Tcl_Free((char *)p);
240 
241   if( rc!=SQLITE_OK ){
242     Tcl_SetResult(interp, (char *)sqlite3_errmsg(db), TCL_VOLATILE);
243     return TCL_ERROR;
244   }
245   return TCL_OK;
246 }
247 
248 /*
249 ** Read data from an incremental blob channel.
250 */
251 static int SQLITE_TCLAPI incrblobInput(
252   ClientData instanceData,
253   char *buf,
254   int bufSize,
255   int *errorCodePtr
256 ){
257   IncrblobChannel *p = (IncrblobChannel *)instanceData;
258   int nRead = bufSize;         /* Number of bytes to read */
259   int nBlob;                   /* Total size of the blob */
260   int rc;                      /* sqlite error code */
261 
262   nBlob = sqlite3_blob_bytes(p->pBlob);
263   if( (p->iSeek+nRead)>nBlob ){
264     nRead = nBlob-p->iSeek;
265   }
266   if( nRead<=0 ){
267     return 0;
268   }
269 
270   rc = sqlite3_blob_read(p->pBlob, (void *)buf, nRead, p->iSeek);
271   if( rc!=SQLITE_OK ){
272     *errorCodePtr = rc;
273     return -1;
274   }
275 
276   p->iSeek += nRead;
277   return nRead;
278 }
279 
280 /*
281 ** Write data to an incremental blob channel.
282 */
283 static int SQLITE_TCLAPI incrblobOutput(
284   ClientData instanceData,
285   CONST char *buf,
286   int toWrite,
287   int *errorCodePtr
288 ){
289   IncrblobChannel *p = (IncrblobChannel *)instanceData;
290   int nWrite = toWrite;        /* Number of bytes to write */
291   int nBlob;                   /* Total size of the blob */
292   int rc;                      /* sqlite error code */
293 
294   nBlob = sqlite3_blob_bytes(p->pBlob);
295   if( (p->iSeek+nWrite)>nBlob ){
296     *errorCodePtr = EINVAL;
297     return -1;
298   }
299   if( nWrite<=0 ){
300     return 0;
301   }
302 
303   rc = sqlite3_blob_write(p->pBlob, (void *)buf, nWrite, p->iSeek);
304   if( rc!=SQLITE_OK ){
305     *errorCodePtr = EIO;
306     return -1;
307   }
308 
309   p->iSeek += nWrite;
310   return nWrite;
311 }
312 
313 /*
314 ** Seek an incremental blob channel.
315 */
316 static int SQLITE_TCLAPI incrblobSeek(
317   ClientData instanceData,
318   long offset,
319   int seekMode,
320   int *errorCodePtr
321 ){
322   IncrblobChannel *p = (IncrblobChannel *)instanceData;
323 
324   switch( seekMode ){
325     case SEEK_SET:
326       p->iSeek = offset;
327       break;
328     case SEEK_CUR:
329       p->iSeek += offset;
330       break;
331     case SEEK_END:
332       p->iSeek = sqlite3_blob_bytes(p->pBlob) + offset;
333       break;
334 
335     default: assert(!"Bad seekMode");
336   }
337 
338   return p->iSeek;
339 }
340 
341 
342 static void SQLITE_TCLAPI incrblobWatch(
343   ClientData instanceData,
344   int mode
345 ){
346   /* NO-OP */
347 }
348 static int SQLITE_TCLAPI incrblobHandle(
349   ClientData instanceData,
350   int dir,
351   ClientData *hPtr
352 ){
353   return TCL_ERROR;
354 }
355 
356 static Tcl_ChannelType IncrblobChannelType = {
357   "incrblob",                        /* typeName                             */
358   TCL_CHANNEL_VERSION_2,             /* version                              */
359   incrblobClose,                     /* closeProc                            */
360   incrblobInput,                     /* inputProc                            */
361   incrblobOutput,                    /* outputProc                           */
362   incrblobSeek,                      /* seekProc                             */
363   0,                                 /* setOptionProc                        */
364   0,                                 /* getOptionProc                        */
365   incrblobWatch,                     /* watchProc (this is a no-op)          */
366   incrblobHandle,                    /* getHandleProc (always returns error) */
367   0,                                 /* close2Proc                           */
368   0,                                 /* blockModeProc                        */
369   0,                                 /* flushProc                            */
370   0,                                 /* handlerProc                          */
371   0,                                 /* wideSeekProc                         */
372 };
373 
374 /*
375 ** Create a new incrblob channel.
376 */
377 static int createIncrblobChannel(
378   Tcl_Interp *interp,
379   SqliteDb *pDb,
380   const char *zDb,
381   const char *zTable,
382   const char *zColumn,
383   sqlite_int64 iRow,
384   int isReadonly
385 ){
386   IncrblobChannel *p;
387   sqlite3 *db = pDb->db;
388   sqlite3_blob *pBlob;
389   int rc;
390   int flags = TCL_READABLE|(isReadonly ? 0 : TCL_WRITABLE);
391 
392   /* This variable is used to name the channels: "incrblob_[incr count]" */
393   static int count = 0;
394   char zChannel[64];
395 
396   rc = sqlite3_blob_open(db, zDb, zTable, zColumn, iRow, !isReadonly, &pBlob);
397   if( rc!=SQLITE_OK ){
398     Tcl_SetResult(interp, (char *)sqlite3_errmsg(pDb->db), TCL_VOLATILE);
399     return TCL_ERROR;
400   }
401 
402   p = (IncrblobChannel *)Tcl_Alloc(sizeof(IncrblobChannel));
403   p->iSeek = 0;
404   p->pBlob = pBlob;
405 
406   sqlite3_snprintf(sizeof(zChannel), zChannel, "incrblob_%d", ++count);
407   p->channel = Tcl_CreateChannel(&IncrblobChannelType, zChannel, p, flags);
408   Tcl_RegisterChannel(interp, p->channel);
409 
410   /* Link the new channel into the SqliteDb.pIncrblob list. */
411   p->pNext = pDb->pIncrblob;
412   p->pPrev = 0;
413   if( p->pNext ){
414     p->pNext->pPrev = p;
415   }
416   pDb->pIncrblob = p;
417   p->pDb = pDb;
418 
419   Tcl_SetResult(interp, (char *)Tcl_GetChannelName(p->channel), TCL_VOLATILE);
420   return TCL_OK;
421 }
422 #else  /* else clause for "#ifndef SQLITE_OMIT_INCRBLOB" */
423   #define closeIncrblobChannels(pDb)
424 #endif
425 
426 /*
427 ** Look at the script prefix in pCmd.  We will be executing this script
428 ** after first appending one or more arguments.  This routine analyzes
429 ** the script to see if it is safe to use Tcl_EvalObjv() on the script
430 ** rather than the more general Tcl_EvalEx().  Tcl_EvalObjv() is much
431 ** faster.
432 **
433 ** Scripts that are safe to use with Tcl_EvalObjv() consists of a
434 ** command name followed by zero or more arguments with no [...] or $
435 ** or {...} or ; to be seen anywhere.  Most callback scripts consist
436 ** of just a single procedure name and they meet this requirement.
437 */
438 static int safeToUseEvalObjv(Tcl_Interp *interp, Tcl_Obj *pCmd){
439   /* We could try to do something with Tcl_Parse().  But we will instead
440   ** just do a search for forbidden characters.  If any of the forbidden
441   ** characters appear in pCmd, we will report the string as unsafe.
442   */
443   const char *z;
444   int n;
445   z = Tcl_GetStringFromObj(pCmd, &n);
446   while( n-- > 0 ){
447     int c = *(z++);
448     if( c=='$' || c=='[' || c==';' ) return 0;
449   }
450   return 1;
451 }
452 
453 /*
454 ** Find an SqlFunc structure with the given name.  Or create a new
455 ** one if an existing one cannot be found.  Return a pointer to the
456 ** structure.
457 */
458 static SqlFunc *findSqlFunc(SqliteDb *pDb, const char *zName){
459   SqlFunc *p, *pNew;
460   int nName = strlen30(zName);
461   pNew = (SqlFunc*)Tcl_Alloc( sizeof(*pNew) + nName + 1 );
462   pNew->zName = (char*)&pNew[1];
463   memcpy(pNew->zName, zName, nName+1);
464   for(p=pDb->pFunc; p; p=p->pNext){
465     if( sqlite3_stricmp(p->zName, pNew->zName)==0 ){
466       Tcl_Free((char*)pNew);
467       return p;
468     }
469   }
470   pNew->interp = pDb->interp;
471   pNew->pDb = pDb;
472   pNew->pScript = 0;
473   pNew->pNext = pDb->pFunc;
474   pDb->pFunc = pNew;
475   return pNew;
476 }
477 
478 /*
479 ** Free a single SqlPreparedStmt object.
480 */
481 static void dbFreeStmt(SqlPreparedStmt *pStmt){
482 #ifdef SQLITE_TEST
483   if( sqlite3_sql(pStmt->pStmt)==0 ){
484     Tcl_Free((char *)pStmt->zSql);
485   }
486 #endif
487   sqlite3_finalize(pStmt->pStmt);
488   Tcl_Free((char *)pStmt);
489 }
490 
491 /*
492 ** Finalize and free a list of prepared statements
493 */
494 static void flushStmtCache(SqliteDb *pDb){
495   SqlPreparedStmt *pPreStmt;
496   SqlPreparedStmt *pNext;
497 
498   for(pPreStmt = pDb->stmtList; pPreStmt; pPreStmt=pNext){
499     pNext = pPreStmt->pNext;
500     dbFreeStmt(pPreStmt);
501   }
502   pDb->nStmt = 0;
503   pDb->stmtLast = 0;
504   pDb->stmtList = 0;
505 }
506 
507 /*
508 ** TCL calls this procedure when an sqlite3 database command is
509 ** deleted.
510 */
511 static void SQLITE_TCLAPI DbDeleteCmd(void *db){
512   SqliteDb *pDb = (SqliteDb*)db;
513   flushStmtCache(pDb);
514   closeIncrblobChannels(pDb);
515   sqlite3_close(pDb->db);
516   while( pDb->pFunc ){
517     SqlFunc *pFunc = pDb->pFunc;
518     pDb->pFunc = pFunc->pNext;
519     assert( pFunc->pDb==pDb );
520     Tcl_DecrRefCount(pFunc->pScript);
521     Tcl_Free((char*)pFunc);
522   }
523   while( pDb->pCollate ){
524     SqlCollate *pCollate = pDb->pCollate;
525     pDb->pCollate = pCollate->pNext;
526     Tcl_Free((char*)pCollate);
527   }
528   if( pDb->zBusy ){
529     Tcl_Free(pDb->zBusy);
530   }
531   if( pDb->zTrace ){
532     Tcl_Free(pDb->zTrace);
533   }
534   if( pDb->zTraceV2 ){
535     Tcl_Free(pDb->zTraceV2);
536   }
537   if( pDb->zProfile ){
538     Tcl_Free(pDb->zProfile);
539   }
540   if( pDb->zAuth ){
541     Tcl_Free(pDb->zAuth);
542   }
543   if( pDb->zNull ){
544     Tcl_Free(pDb->zNull);
545   }
546   if( pDb->pUpdateHook ){
547     Tcl_DecrRefCount(pDb->pUpdateHook);
548   }
549   if( pDb->pPreUpdateHook ){
550     Tcl_DecrRefCount(pDb->pPreUpdateHook);
551   }
552   if( pDb->pRollbackHook ){
553     Tcl_DecrRefCount(pDb->pRollbackHook);
554   }
555   if( pDb->pWalHook ){
556     Tcl_DecrRefCount(pDb->pWalHook);
557   }
558   if( pDb->pCollateNeeded ){
559     Tcl_DecrRefCount(pDb->pCollateNeeded);
560   }
561   Tcl_Free((char*)pDb);
562 }
563 
564 /*
565 ** This routine is called when a database file is locked while trying
566 ** to execute SQL.
567 */
568 static int DbBusyHandler(void *cd, int nTries){
569   SqliteDb *pDb = (SqliteDb*)cd;
570   int rc;
571   char zVal[30];
572 
573   sqlite3_snprintf(sizeof(zVal), zVal, "%d", nTries);
574   rc = Tcl_VarEval(pDb->interp, pDb->zBusy, " ", zVal, (char*)0);
575   if( rc!=TCL_OK || atoi(Tcl_GetStringResult(pDb->interp)) ){
576     return 0;
577   }
578   return 1;
579 }
580 
581 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK
582 /*
583 ** This routine is invoked as the 'progress callback' for the database.
584 */
585 static int DbProgressHandler(void *cd){
586   SqliteDb *pDb = (SqliteDb*)cd;
587   int rc;
588 
589   assert( pDb->zProgress );
590   rc = Tcl_Eval(pDb->interp, pDb->zProgress);
591   if( rc!=TCL_OK || atoi(Tcl_GetStringResult(pDb->interp)) ){
592     return 1;
593   }
594   return 0;
595 }
596 #endif
597 
598 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \
599     !defined(SQLITE_OMIT_DEPRECATED)
600 /*
601 ** This routine is called by the SQLite trace handler whenever a new
602 ** block of SQL is executed.  The TCL script in pDb->zTrace is executed.
603 */
604 static void DbTraceHandler(void *cd, const char *zSql){
605   SqliteDb *pDb = (SqliteDb*)cd;
606   Tcl_DString str;
607 
608   Tcl_DStringInit(&str);
609   Tcl_DStringAppend(&str, pDb->zTrace, -1);
610   Tcl_DStringAppendElement(&str, zSql);
611   Tcl_Eval(pDb->interp, Tcl_DStringValue(&str));
612   Tcl_DStringFree(&str);
613   Tcl_ResetResult(pDb->interp);
614 }
615 #endif
616 
617 #ifndef SQLITE_OMIT_TRACE
618 /*
619 ** This routine is called by the SQLite trace_v2 handler whenever a new
620 ** supported event is generated.  Unsupported event types are ignored.
621 ** The TCL script in pDb->zTraceV2 is executed, with the arguments for
622 ** the event appended to it (as list elements).
623 */
624 static int DbTraceV2Handler(
625   unsigned type, /* One of the SQLITE_TRACE_* event types. */
626   void *cd,      /* The original context data pointer. */
627   void *pd,      /* Primary event data, depends on event type. */
628   void *xd       /* Extra event data, depends on event type. */
629 ){
630   SqliteDb *pDb = (SqliteDb*)cd;
631   Tcl_Obj *pCmd;
632 
633   switch( type ){
634     case SQLITE_TRACE_STMT: {
635       sqlite3_stmt *pStmt = (sqlite3_stmt *)pd;
636       char *zSql = (char *)xd;
637 
638       pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1);
639       Tcl_IncrRefCount(pCmd);
640       Tcl_ListObjAppendElement(pDb->interp, pCmd,
641                                Tcl_NewWideIntObj((Tcl_WideInt)pStmt));
642       Tcl_ListObjAppendElement(pDb->interp, pCmd,
643                                Tcl_NewStringObj(zSql, -1));
644       Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT);
645       Tcl_DecrRefCount(pCmd);
646       Tcl_ResetResult(pDb->interp);
647       break;
648     }
649     case SQLITE_TRACE_PROFILE: {
650       sqlite3_stmt *pStmt = (sqlite3_stmt *)pd;
651       sqlite3_int64 ns = *(sqlite3_int64*)xd;
652 
653       pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1);
654       Tcl_IncrRefCount(pCmd);
655       Tcl_ListObjAppendElement(pDb->interp, pCmd,
656                                Tcl_NewWideIntObj((Tcl_WideInt)pStmt));
657       Tcl_ListObjAppendElement(pDb->interp, pCmd,
658                                Tcl_NewWideIntObj((Tcl_WideInt)ns));
659       Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT);
660       Tcl_DecrRefCount(pCmd);
661       Tcl_ResetResult(pDb->interp);
662       break;
663     }
664     case SQLITE_TRACE_ROW: {
665       sqlite3_stmt *pStmt = (sqlite3_stmt *)pd;
666 
667       pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1);
668       Tcl_IncrRefCount(pCmd);
669       Tcl_ListObjAppendElement(pDb->interp, pCmd,
670                                Tcl_NewWideIntObj((Tcl_WideInt)pStmt));
671       Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT);
672       Tcl_DecrRefCount(pCmd);
673       Tcl_ResetResult(pDb->interp);
674       break;
675     }
676     case SQLITE_TRACE_CLOSE: {
677       sqlite3 *db = (sqlite3 *)pd;
678 
679       pCmd = Tcl_NewStringObj(pDb->zTraceV2, -1);
680       Tcl_IncrRefCount(pCmd);
681       Tcl_ListObjAppendElement(pDb->interp, pCmd,
682                                Tcl_NewWideIntObj((Tcl_WideInt)db));
683       Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT);
684       Tcl_DecrRefCount(pCmd);
685       Tcl_ResetResult(pDb->interp);
686       break;
687     }
688   }
689   return SQLITE_OK;
690 }
691 #endif
692 
693 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \
694     !defined(SQLITE_OMIT_DEPRECATED)
695 /*
696 ** This routine is called by the SQLite profile handler after a statement
697 ** SQL has executed.  The TCL script in pDb->zProfile is evaluated.
698 */
699 static void DbProfileHandler(void *cd, const char *zSql, sqlite_uint64 tm){
700   SqliteDb *pDb = (SqliteDb*)cd;
701   Tcl_DString str;
702   char zTm[100];
703 
704   sqlite3_snprintf(sizeof(zTm)-1, zTm, "%lld", tm);
705   Tcl_DStringInit(&str);
706   Tcl_DStringAppend(&str, pDb->zProfile, -1);
707   Tcl_DStringAppendElement(&str, zSql);
708   Tcl_DStringAppendElement(&str, zTm);
709   Tcl_Eval(pDb->interp, Tcl_DStringValue(&str));
710   Tcl_DStringFree(&str);
711   Tcl_ResetResult(pDb->interp);
712 }
713 #endif
714 
715 /*
716 ** This routine is called when a transaction is committed.  The
717 ** TCL script in pDb->zCommit is executed.  If it returns non-zero or
718 ** if it throws an exception, the transaction is rolled back instead
719 ** of being committed.
720 */
721 static int DbCommitHandler(void *cd){
722   SqliteDb *pDb = (SqliteDb*)cd;
723   int rc;
724 
725   rc = Tcl_Eval(pDb->interp, pDb->zCommit);
726   if( rc!=TCL_OK || atoi(Tcl_GetStringResult(pDb->interp)) ){
727     return 1;
728   }
729   return 0;
730 }
731 
732 static void DbRollbackHandler(void *clientData){
733   SqliteDb *pDb = (SqliteDb*)clientData;
734   assert(pDb->pRollbackHook);
735   if( TCL_OK!=Tcl_EvalObjEx(pDb->interp, pDb->pRollbackHook, 0) ){
736     Tcl_BackgroundError(pDb->interp);
737   }
738 }
739 
740 /*
741 ** This procedure handles wal_hook callbacks.
742 */
743 static int DbWalHandler(
744   void *clientData,
745   sqlite3 *db,
746   const char *zDb,
747   int nEntry
748 ){
749   int ret = SQLITE_OK;
750   Tcl_Obj *p;
751   SqliteDb *pDb = (SqliteDb*)clientData;
752   Tcl_Interp *interp = pDb->interp;
753   assert(pDb->pWalHook);
754 
755   assert( db==pDb->db );
756   p = Tcl_DuplicateObj(pDb->pWalHook);
757   Tcl_IncrRefCount(p);
758   Tcl_ListObjAppendElement(interp, p, Tcl_NewStringObj(zDb, -1));
759   Tcl_ListObjAppendElement(interp, p, Tcl_NewIntObj(nEntry));
760   if( TCL_OK!=Tcl_EvalObjEx(interp, p, 0)
761    || TCL_OK!=Tcl_GetIntFromObj(interp, Tcl_GetObjResult(interp), &ret)
762   ){
763     Tcl_BackgroundError(interp);
764   }
765   Tcl_DecrRefCount(p);
766 
767   return ret;
768 }
769 
770 #if defined(SQLITE_TEST) && defined(SQLITE_ENABLE_UNLOCK_NOTIFY)
771 static void setTestUnlockNotifyVars(Tcl_Interp *interp, int iArg, int nArg){
772   char zBuf[64];
773   sqlite3_snprintf(sizeof(zBuf), zBuf, "%d", iArg);
774   Tcl_SetVar(interp, "sqlite_unlock_notify_arg", zBuf, TCL_GLOBAL_ONLY);
775   sqlite3_snprintf(sizeof(zBuf), zBuf, "%d", nArg);
776   Tcl_SetVar(interp, "sqlite_unlock_notify_argcount", zBuf, TCL_GLOBAL_ONLY);
777 }
778 #else
779 # define setTestUnlockNotifyVars(x,y,z)
780 #endif
781 
782 #ifdef SQLITE_ENABLE_UNLOCK_NOTIFY
783 static void DbUnlockNotify(void **apArg, int nArg){
784   int i;
785   for(i=0; i<nArg; i++){
786     const int flags = (TCL_EVAL_GLOBAL|TCL_EVAL_DIRECT);
787     SqliteDb *pDb = (SqliteDb *)apArg[i];
788     setTestUnlockNotifyVars(pDb->interp, i, nArg);
789     assert( pDb->pUnlockNotify);
790     Tcl_EvalObjEx(pDb->interp, pDb->pUnlockNotify, flags);
791     Tcl_DecrRefCount(pDb->pUnlockNotify);
792     pDb->pUnlockNotify = 0;
793   }
794 }
795 #endif
796 
797 #ifdef SQLITE_ENABLE_PREUPDATE_HOOK
798 /*
799 ** Pre-update hook callback.
800 */
801 static void DbPreUpdateHandler(
802   void *p,
803   sqlite3 *db,
804   int op,
805   const char *zDb,
806   const char *zTbl,
807   sqlite_int64 iKey1,
808   sqlite_int64 iKey2
809 ){
810   SqliteDb *pDb = (SqliteDb *)p;
811   Tcl_Obj *pCmd;
812   static const char *azStr[] = {"DELETE", "INSERT", "UPDATE"};
813 
814   assert( (SQLITE_DELETE-1)/9 == 0 );
815   assert( (SQLITE_INSERT-1)/9 == 1 );
816   assert( (SQLITE_UPDATE-1)/9 == 2 );
817   assert( pDb->pPreUpdateHook );
818   assert( db==pDb->db );
819   assert( op==SQLITE_INSERT || op==SQLITE_UPDATE || op==SQLITE_DELETE );
820 
821   pCmd = Tcl_DuplicateObj(pDb->pPreUpdateHook);
822   Tcl_IncrRefCount(pCmd);
823   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(azStr[(op-1)/9], -1));
824   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zDb, -1));
825   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zTbl, -1));
826   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewWideIntObj(iKey1));
827   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewWideIntObj(iKey2));
828   Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT);
829   Tcl_DecrRefCount(pCmd);
830 }
831 #endif /* SQLITE_ENABLE_PREUPDATE_HOOK */
832 
833 static void DbUpdateHandler(
834   void *p,
835   int op,
836   const char *zDb,
837   const char *zTbl,
838   sqlite_int64 rowid
839 ){
840   SqliteDb *pDb = (SqliteDb *)p;
841   Tcl_Obj *pCmd;
842   static const char *azStr[] = {"DELETE", "INSERT", "UPDATE"};
843 
844   assert( (SQLITE_DELETE-1)/9 == 0 );
845   assert( (SQLITE_INSERT-1)/9 == 1 );
846   assert( (SQLITE_UPDATE-1)/9 == 2 );
847 
848   assert( pDb->pUpdateHook );
849   assert( op==SQLITE_INSERT || op==SQLITE_UPDATE || op==SQLITE_DELETE );
850 
851   pCmd = Tcl_DuplicateObj(pDb->pUpdateHook);
852   Tcl_IncrRefCount(pCmd);
853   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(azStr[(op-1)/9], -1));
854   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zDb, -1));
855   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewStringObj(zTbl, -1));
856   Tcl_ListObjAppendElement(0, pCmd, Tcl_NewWideIntObj(rowid));
857   Tcl_EvalObjEx(pDb->interp, pCmd, TCL_EVAL_DIRECT);
858   Tcl_DecrRefCount(pCmd);
859 }
860 
861 static void tclCollateNeeded(
862   void *pCtx,
863   sqlite3 *db,
864   int enc,
865   const char *zName
866 ){
867   SqliteDb *pDb = (SqliteDb *)pCtx;
868   Tcl_Obj *pScript = Tcl_DuplicateObj(pDb->pCollateNeeded);
869   Tcl_IncrRefCount(pScript);
870   Tcl_ListObjAppendElement(0, pScript, Tcl_NewStringObj(zName, -1));
871   Tcl_EvalObjEx(pDb->interp, pScript, 0);
872   Tcl_DecrRefCount(pScript);
873 }
874 
875 /*
876 ** This routine is called to evaluate an SQL collation function implemented
877 ** using TCL script.
878 */
879 static int tclSqlCollate(
880   void *pCtx,
881   int nA,
882   const void *zA,
883   int nB,
884   const void *zB
885 ){
886   SqlCollate *p = (SqlCollate *)pCtx;
887   Tcl_Obj *pCmd;
888 
889   pCmd = Tcl_NewStringObj(p->zScript, -1);
890   Tcl_IncrRefCount(pCmd);
891   Tcl_ListObjAppendElement(p->interp, pCmd, Tcl_NewStringObj(zA, nA));
892   Tcl_ListObjAppendElement(p->interp, pCmd, Tcl_NewStringObj(zB, nB));
893   Tcl_EvalObjEx(p->interp, pCmd, TCL_EVAL_DIRECT);
894   Tcl_DecrRefCount(pCmd);
895   return (atoi(Tcl_GetStringResult(p->interp)));
896 }
897 
898 /*
899 ** This routine is called to evaluate an SQL function implemented
900 ** using TCL script.
901 */
902 static void tclSqlFunc(sqlite3_context *context, int argc, sqlite3_value**argv){
903   SqlFunc *p = sqlite3_user_data(context);
904   Tcl_Obj *pCmd;
905   int i;
906   int rc;
907 
908   if( argc==0 ){
909     /* If there are no arguments to the function, call Tcl_EvalObjEx on the
910     ** script object directly.  This allows the TCL compiler to generate
911     ** bytecode for the command on the first invocation and thus make
912     ** subsequent invocations much faster. */
913     pCmd = p->pScript;
914     Tcl_IncrRefCount(pCmd);
915     rc = Tcl_EvalObjEx(p->interp, pCmd, 0);
916     Tcl_DecrRefCount(pCmd);
917   }else{
918     /* If there are arguments to the function, make a shallow copy of the
919     ** script object, lappend the arguments, then evaluate the copy.
920     **
921     ** By "shallow" copy, we mean only the outer list Tcl_Obj is duplicated.
922     ** The new Tcl_Obj contains pointers to the original list elements.
923     ** That way, when Tcl_EvalObjv() is run and shimmers the first element
924     ** of the list to tclCmdNameType, that alternate representation will
925     ** be preserved and reused on the next invocation.
926     */
927     Tcl_Obj **aArg;
928     int nArg;
929     if( Tcl_ListObjGetElements(p->interp, p->pScript, &nArg, &aArg) ){
930       sqlite3_result_error(context, Tcl_GetStringResult(p->interp), -1);
931       return;
932     }
933     pCmd = Tcl_NewListObj(nArg, aArg);
934     Tcl_IncrRefCount(pCmd);
935     for(i=0; i<argc; i++){
936       sqlite3_value *pIn = argv[i];
937       Tcl_Obj *pVal;
938 
939       /* Set pVal to contain the i'th column of this row. */
940       switch( sqlite3_value_type(pIn) ){
941         case SQLITE_BLOB: {
942           int bytes = sqlite3_value_bytes(pIn);
943           pVal = Tcl_NewByteArrayObj(sqlite3_value_blob(pIn), bytes);
944           break;
945         }
946         case SQLITE_INTEGER: {
947           sqlite_int64 v = sqlite3_value_int64(pIn);
948           if( v>=-2147483647 && v<=2147483647 ){
949             pVal = Tcl_NewIntObj((int)v);
950           }else{
951             pVal = Tcl_NewWideIntObj(v);
952           }
953           break;
954         }
955         case SQLITE_FLOAT: {
956           double r = sqlite3_value_double(pIn);
957           pVal = Tcl_NewDoubleObj(r);
958           break;
959         }
960         case SQLITE_NULL: {
961           pVal = Tcl_NewStringObj(p->pDb->zNull, -1);
962           break;
963         }
964         default: {
965           int bytes = sqlite3_value_bytes(pIn);
966           pVal = Tcl_NewStringObj((char *)sqlite3_value_text(pIn), bytes);
967           break;
968         }
969       }
970       rc = Tcl_ListObjAppendElement(p->interp, pCmd, pVal);
971       if( rc ){
972         Tcl_DecrRefCount(pCmd);
973         sqlite3_result_error(context, Tcl_GetStringResult(p->interp), -1);
974         return;
975       }
976     }
977     if( !p->useEvalObjv ){
978       /* Tcl_EvalObjEx() will automatically call Tcl_EvalObjv() if pCmd
979       ** is a list without a string representation.  To prevent this from
980       ** happening, make sure pCmd has a valid string representation */
981       Tcl_GetString(pCmd);
982     }
983     rc = Tcl_EvalObjEx(p->interp, pCmd, TCL_EVAL_DIRECT);
984     Tcl_DecrRefCount(pCmd);
985   }
986 
987   if( rc && rc!=TCL_RETURN ){
988     sqlite3_result_error(context, Tcl_GetStringResult(p->interp), -1);
989   }else{
990     Tcl_Obj *pVar = Tcl_GetObjResult(p->interp);
991     int n;
992     u8 *data;
993     const char *zType = (pVar->typePtr ? pVar->typePtr->name : "");
994     char c = zType[0];
995     if( c=='b' && strcmp(zType,"bytearray")==0 && pVar->bytes==0 ){
996       /* Only return a BLOB type if the Tcl variable is a bytearray and
997       ** has no string representation. */
998       data = Tcl_GetByteArrayFromObj(pVar, &n);
999       sqlite3_result_blob(context, data, n, SQLITE_TRANSIENT);
1000     }else if( c=='b' && strcmp(zType,"boolean")==0 ){
1001       Tcl_GetIntFromObj(0, pVar, &n);
1002       sqlite3_result_int(context, n);
1003     }else if( c=='d' && strcmp(zType,"double")==0 ){
1004       double r;
1005       Tcl_GetDoubleFromObj(0, pVar, &r);
1006       sqlite3_result_double(context, r);
1007     }else if( (c=='w' && strcmp(zType,"wideInt")==0) ||
1008           (c=='i' && strcmp(zType,"int")==0) ){
1009       Tcl_WideInt v;
1010       Tcl_GetWideIntFromObj(0, pVar, &v);
1011       sqlite3_result_int64(context, v);
1012     }else{
1013       data = (unsigned char *)Tcl_GetStringFromObj(pVar, &n);
1014       sqlite3_result_text(context, (char *)data, n, SQLITE_TRANSIENT);
1015     }
1016   }
1017 }
1018 
1019 #ifndef SQLITE_OMIT_AUTHORIZATION
1020 /*
1021 ** This is the authentication function.  It appends the authentication
1022 ** type code and the two arguments to zCmd[] then invokes the result
1023 ** on the interpreter.  The reply is examined to determine if the
1024 ** authentication fails or succeeds.
1025 */
1026 static int auth_callback(
1027   void *pArg,
1028   int code,
1029   const char *zArg1,
1030   const char *zArg2,
1031   const char *zArg3,
1032   const char *zArg4
1033 #ifdef SQLITE_USER_AUTHENTICATION
1034   ,const char *zArg5
1035 #endif
1036 ){
1037   const char *zCode;
1038   Tcl_DString str;
1039   int rc;
1040   const char *zReply;
1041   /* EVIDENCE-OF: R-38590-62769 The first parameter to the authorizer
1042   ** callback is a copy of the third parameter to the
1043   ** sqlite3_set_authorizer() interface.
1044   */
1045   SqliteDb *pDb = (SqliteDb*)pArg;
1046   if( pDb->disableAuth ) return SQLITE_OK;
1047 
1048   /* EVIDENCE-OF: R-56518-44310 The second parameter to the callback is an
1049   ** integer action code that specifies the particular action to be
1050   ** authorized. */
1051   switch( code ){
1052     case SQLITE_COPY              : zCode="SQLITE_COPY"; break;
1053     case SQLITE_CREATE_INDEX      : zCode="SQLITE_CREATE_INDEX"; break;
1054     case SQLITE_CREATE_TABLE      : zCode="SQLITE_CREATE_TABLE"; break;
1055     case SQLITE_CREATE_TEMP_INDEX : zCode="SQLITE_CREATE_TEMP_INDEX"; break;
1056     case SQLITE_CREATE_TEMP_TABLE : zCode="SQLITE_CREATE_TEMP_TABLE"; break;
1057     case SQLITE_CREATE_TEMP_TRIGGER: zCode="SQLITE_CREATE_TEMP_TRIGGER"; break;
1058     case SQLITE_CREATE_TEMP_VIEW  : zCode="SQLITE_CREATE_TEMP_VIEW"; break;
1059     case SQLITE_CREATE_TRIGGER    : zCode="SQLITE_CREATE_TRIGGER"; break;
1060     case SQLITE_CREATE_VIEW       : zCode="SQLITE_CREATE_VIEW"; break;
1061     case SQLITE_DELETE            : zCode="SQLITE_DELETE"; break;
1062     case SQLITE_DROP_INDEX        : zCode="SQLITE_DROP_INDEX"; break;
1063     case SQLITE_DROP_TABLE        : zCode="SQLITE_DROP_TABLE"; break;
1064     case SQLITE_DROP_TEMP_INDEX   : zCode="SQLITE_DROP_TEMP_INDEX"; break;
1065     case SQLITE_DROP_TEMP_TABLE   : zCode="SQLITE_DROP_TEMP_TABLE"; break;
1066     case SQLITE_DROP_TEMP_TRIGGER : zCode="SQLITE_DROP_TEMP_TRIGGER"; break;
1067     case SQLITE_DROP_TEMP_VIEW    : zCode="SQLITE_DROP_TEMP_VIEW"; break;
1068     case SQLITE_DROP_TRIGGER      : zCode="SQLITE_DROP_TRIGGER"; break;
1069     case SQLITE_DROP_VIEW         : zCode="SQLITE_DROP_VIEW"; break;
1070     case SQLITE_INSERT            : zCode="SQLITE_INSERT"; break;
1071     case SQLITE_PRAGMA            : zCode="SQLITE_PRAGMA"; break;
1072     case SQLITE_READ              : zCode="SQLITE_READ"; break;
1073     case SQLITE_SELECT            : zCode="SQLITE_SELECT"; break;
1074     case SQLITE_TRANSACTION       : zCode="SQLITE_TRANSACTION"; break;
1075     case SQLITE_UPDATE            : zCode="SQLITE_UPDATE"; break;
1076     case SQLITE_ATTACH            : zCode="SQLITE_ATTACH"; break;
1077     case SQLITE_DETACH            : zCode="SQLITE_DETACH"; break;
1078     case SQLITE_ALTER_TABLE       : zCode="SQLITE_ALTER_TABLE"; break;
1079     case SQLITE_REINDEX           : zCode="SQLITE_REINDEX"; break;
1080     case SQLITE_ANALYZE           : zCode="SQLITE_ANALYZE"; break;
1081     case SQLITE_CREATE_VTABLE     : zCode="SQLITE_CREATE_VTABLE"; break;
1082     case SQLITE_DROP_VTABLE       : zCode="SQLITE_DROP_VTABLE"; break;
1083     case SQLITE_FUNCTION          : zCode="SQLITE_FUNCTION"; break;
1084     case SQLITE_SAVEPOINT         : zCode="SQLITE_SAVEPOINT"; break;
1085     case SQLITE_RECURSIVE         : zCode="SQLITE_RECURSIVE"; break;
1086     default                       : zCode="????"; break;
1087   }
1088   Tcl_DStringInit(&str);
1089   Tcl_DStringAppend(&str, pDb->zAuth, -1);
1090   Tcl_DStringAppendElement(&str, zCode);
1091   Tcl_DStringAppendElement(&str, zArg1 ? zArg1 : "");
1092   Tcl_DStringAppendElement(&str, zArg2 ? zArg2 : "");
1093   Tcl_DStringAppendElement(&str, zArg3 ? zArg3 : "");
1094   Tcl_DStringAppendElement(&str, zArg4 ? zArg4 : "");
1095 #ifdef SQLITE_USER_AUTHENTICATION
1096   Tcl_DStringAppendElement(&str, zArg5 ? zArg5 : "");
1097 #endif
1098   rc = Tcl_GlobalEval(pDb->interp, Tcl_DStringValue(&str));
1099   Tcl_DStringFree(&str);
1100   zReply = rc==TCL_OK ? Tcl_GetStringResult(pDb->interp) : "SQLITE_DENY";
1101   if( strcmp(zReply,"SQLITE_OK")==0 ){
1102     rc = SQLITE_OK;
1103   }else if( strcmp(zReply,"SQLITE_DENY")==0 ){
1104     rc = SQLITE_DENY;
1105   }else if( strcmp(zReply,"SQLITE_IGNORE")==0 ){
1106     rc = SQLITE_IGNORE;
1107   }else{
1108     rc = 999;
1109   }
1110   return rc;
1111 }
1112 #endif /* SQLITE_OMIT_AUTHORIZATION */
1113 
1114 /*
1115 ** This routine reads a line of text from FILE in, stores
1116 ** the text in memory obtained from malloc() and returns a pointer
1117 ** to the text.  NULL is returned at end of file, or if malloc()
1118 ** fails.
1119 **
1120 ** The interface is like "readline" but no command-line editing
1121 ** is done.
1122 **
1123 ** copied from shell.c from '.import' command
1124 */
1125 static char *local_getline(char *zPrompt, FILE *in){
1126   char *zLine;
1127   int nLine;
1128   int n;
1129 
1130   nLine = 100;
1131   zLine = malloc( nLine );
1132   if( zLine==0 ) return 0;
1133   n = 0;
1134   while( 1 ){
1135     if( n+100>nLine ){
1136       nLine = nLine*2 + 100;
1137       zLine = realloc(zLine, nLine);
1138       if( zLine==0 ) return 0;
1139     }
1140     if( fgets(&zLine[n], nLine - n, in)==0 ){
1141       if( n==0 ){
1142         free(zLine);
1143         return 0;
1144       }
1145       zLine[n] = 0;
1146       break;
1147     }
1148     while( zLine[n] ){ n++; }
1149     if( n>0 && zLine[n-1]=='\n' ){
1150       n--;
1151       zLine[n] = 0;
1152       break;
1153     }
1154   }
1155   zLine = realloc( zLine, n+1 );
1156   return zLine;
1157 }
1158 
1159 
1160 /*
1161 ** This function is part of the implementation of the command:
1162 **
1163 **   $db transaction [-deferred|-immediate|-exclusive] SCRIPT
1164 **
1165 ** It is invoked after evaluating the script SCRIPT to commit or rollback
1166 ** the transaction or savepoint opened by the [transaction] command.
1167 */
1168 static int SQLITE_TCLAPI DbTransPostCmd(
1169   ClientData data[],                   /* data[0] is the Sqlite3Db* for $db */
1170   Tcl_Interp *interp,                  /* Tcl interpreter */
1171   int result                           /* Result of evaluating SCRIPT */
1172 ){
1173   static const char *const azEnd[] = {
1174     "RELEASE _tcl_transaction",        /* rc==TCL_ERROR, nTransaction!=0 */
1175     "COMMIT",                          /* rc!=TCL_ERROR, nTransaction==0 */
1176     "ROLLBACK TO _tcl_transaction ; RELEASE _tcl_transaction",
1177     "ROLLBACK"                         /* rc==TCL_ERROR, nTransaction==0 */
1178   };
1179   SqliteDb *pDb = (SqliteDb*)data[0];
1180   int rc = result;
1181   const char *zEnd;
1182 
1183   pDb->nTransaction--;
1184   zEnd = azEnd[(rc==TCL_ERROR)*2 + (pDb->nTransaction==0)];
1185 
1186   pDb->disableAuth++;
1187   if( sqlite3_exec(pDb->db, zEnd, 0, 0, 0) ){
1188       /* This is a tricky scenario to handle. The most likely cause of an
1189       ** error is that the exec() above was an attempt to commit the
1190       ** top-level transaction that returned SQLITE_BUSY. Or, less likely,
1191       ** that an IO-error has occurred. In either case, throw a Tcl exception
1192       ** and try to rollback the transaction.
1193       **
1194       ** But it could also be that the user executed one or more BEGIN,
1195       ** COMMIT, SAVEPOINT, RELEASE or ROLLBACK commands that are confusing
1196       ** this method's logic. Not clear how this would be best handled.
1197       */
1198     if( rc!=TCL_ERROR ){
1199       Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0);
1200       rc = TCL_ERROR;
1201     }
1202     sqlite3_exec(pDb->db, "ROLLBACK", 0, 0, 0);
1203   }
1204   pDb->disableAuth--;
1205 
1206   return rc;
1207 }
1208 
1209 /*
1210 ** Unless SQLITE_TEST is defined, this function is a simple wrapper around
1211 ** sqlite3_prepare_v2(). If SQLITE_TEST is defined, then it uses either
1212 ** sqlite3_prepare_v2() or legacy interface sqlite3_prepare(), depending
1213 ** on whether or not the [db_use_legacy_prepare] command has been used to
1214 ** configure the connection.
1215 */
1216 static int dbPrepare(
1217   SqliteDb *pDb,                  /* Database object */
1218   const char *zSql,               /* SQL to compile */
1219   sqlite3_stmt **ppStmt,          /* OUT: Prepared statement */
1220   const char **pzOut              /* OUT: Pointer to next SQL statement */
1221 ){
1222   unsigned int prepFlags = 0;
1223 #ifdef SQLITE_TEST
1224   if( pDb->bLegacyPrepare ){
1225     return sqlite3_prepare(pDb->db, zSql, -1, ppStmt, pzOut);
1226   }
1227 #endif
1228   /* If the statement cache is large, use the SQLITE_PREPARE_PERSISTENT
1229   ** flags, which uses less lookaside memory.  But if the cache is small,
1230   ** omit that flag to make full use of lookaside */
1231   if( pDb->maxStmt>5 ) prepFlags = SQLITE_PREPARE_PERSISTENT;
1232 
1233   return sqlite3_prepare_v3(pDb->db, zSql, -1, prepFlags, ppStmt, pzOut);
1234 }
1235 
1236 /*
1237 ** Search the cache for a prepared-statement object that implements the
1238 ** first SQL statement in the buffer pointed to by parameter zIn. If
1239 ** no such prepared-statement can be found, allocate and prepare a new
1240 ** one. In either case, bind the current values of the relevant Tcl
1241 ** variables to any $var, :var or @var variables in the statement. Before
1242 ** returning, set *ppPreStmt to point to the prepared-statement object.
1243 **
1244 ** Output parameter *pzOut is set to point to the next SQL statement in
1245 ** buffer zIn, or to the '\0' byte at the end of zIn if there is no
1246 ** next statement.
1247 **
1248 ** If successful, TCL_OK is returned. Otherwise, TCL_ERROR is returned
1249 ** and an error message loaded into interpreter pDb->interp.
1250 */
1251 static int dbPrepareAndBind(
1252   SqliteDb *pDb,                  /* Database object */
1253   char const *zIn,                /* SQL to compile */
1254   char const **pzOut,             /* OUT: Pointer to next SQL statement */
1255   SqlPreparedStmt **ppPreStmt     /* OUT: Object used to cache statement */
1256 ){
1257   const char *zSql = zIn;         /* Pointer to first SQL statement in zIn */
1258   sqlite3_stmt *pStmt = 0;        /* Prepared statement object */
1259   SqlPreparedStmt *pPreStmt;      /* Pointer to cached statement */
1260   int nSql;                       /* Length of zSql in bytes */
1261   int nVar = 0;                   /* Number of variables in statement */
1262   int iParm = 0;                  /* Next free entry in apParm */
1263   char c;
1264   int i;
1265   Tcl_Interp *interp = pDb->interp;
1266 
1267   *ppPreStmt = 0;
1268 
1269   /* Trim spaces from the start of zSql and calculate the remaining length. */
1270   while( (c = zSql[0])==' ' || c=='\t' || c=='\r' || c=='\n' ){ zSql++; }
1271   nSql = strlen30(zSql);
1272 
1273   for(pPreStmt = pDb->stmtList; pPreStmt; pPreStmt=pPreStmt->pNext){
1274     int n = pPreStmt->nSql;
1275     if( nSql>=n
1276         && memcmp(pPreStmt->zSql, zSql, n)==0
1277         && (zSql[n]==0 || zSql[n-1]==';')
1278     ){
1279       pStmt = pPreStmt->pStmt;
1280       *pzOut = &zSql[pPreStmt->nSql];
1281 
1282       /* When a prepared statement is found, unlink it from the
1283       ** cache list.  It will later be added back to the beginning
1284       ** of the cache list in order to implement LRU replacement.
1285       */
1286       if( pPreStmt->pPrev ){
1287         pPreStmt->pPrev->pNext = pPreStmt->pNext;
1288       }else{
1289         pDb->stmtList = pPreStmt->pNext;
1290       }
1291       if( pPreStmt->pNext ){
1292         pPreStmt->pNext->pPrev = pPreStmt->pPrev;
1293       }else{
1294         pDb->stmtLast = pPreStmt->pPrev;
1295       }
1296       pDb->nStmt--;
1297       nVar = sqlite3_bind_parameter_count(pStmt);
1298       break;
1299     }
1300   }
1301 
1302   /* If no prepared statement was found. Compile the SQL text. Also allocate
1303   ** a new SqlPreparedStmt structure.  */
1304   if( pPreStmt==0 ){
1305     int nByte;
1306 
1307     if( SQLITE_OK!=dbPrepare(pDb, zSql, &pStmt, pzOut) ){
1308       Tcl_SetObjResult(interp, Tcl_NewStringObj(sqlite3_errmsg(pDb->db), -1));
1309       return TCL_ERROR;
1310     }
1311     if( pStmt==0 ){
1312       if( SQLITE_OK!=sqlite3_errcode(pDb->db) ){
1313         /* A compile-time error in the statement. */
1314         Tcl_SetObjResult(interp, Tcl_NewStringObj(sqlite3_errmsg(pDb->db), -1));
1315         return TCL_ERROR;
1316       }else{
1317         /* The statement was a no-op.  Continue to the next statement
1318         ** in the SQL string.
1319         */
1320         return TCL_OK;
1321       }
1322     }
1323 
1324     assert( pPreStmt==0 );
1325     nVar = sqlite3_bind_parameter_count(pStmt);
1326     nByte = sizeof(SqlPreparedStmt) + nVar*sizeof(Tcl_Obj *);
1327     pPreStmt = (SqlPreparedStmt*)Tcl_Alloc(nByte);
1328     memset(pPreStmt, 0, nByte);
1329 
1330     pPreStmt->pStmt = pStmt;
1331     pPreStmt->nSql = (int)(*pzOut - zSql);
1332     pPreStmt->zSql = sqlite3_sql(pStmt);
1333     pPreStmt->apParm = (Tcl_Obj **)&pPreStmt[1];
1334 #ifdef SQLITE_TEST
1335     if( pPreStmt->zSql==0 ){
1336       char *zCopy = Tcl_Alloc(pPreStmt->nSql + 1);
1337       memcpy(zCopy, zSql, pPreStmt->nSql);
1338       zCopy[pPreStmt->nSql] = '\0';
1339       pPreStmt->zSql = zCopy;
1340     }
1341 #endif
1342   }
1343   assert( pPreStmt );
1344   assert( strlen30(pPreStmt->zSql)==pPreStmt->nSql );
1345   assert( 0==memcmp(pPreStmt->zSql, zSql, pPreStmt->nSql) );
1346 
1347   /* Bind values to parameters that begin with $ or : */
1348   for(i=1; i<=nVar; i++){
1349     const char *zVar = sqlite3_bind_parameter_name(pStmt, i);
1350     if( zVar!=0 && (zVar[0]=='$' || zVar[0]==':' || zVar[0]=='@') ){
1351       Tcl_Obj *pVar = Tcl_GetVar2Ex(interp, &zVar[1], 0, 0);
1352       if( pVar ){
1353         int n;
1354         u8 *data;
1355         const char *zType = (pVar->typePtr ? pVar->typePtr->name : "");
1356         c = zType[0];
1357         if( zVar[0]=='@' ||
1358            (c=='b' && strcmp(zType,"bytearray")==0 && pVar->bytes==0) ){
1359           /* Load a BLOB type if the Tcl variable is a bytearray and
1360           ** it has no string representation or the host
1361           ** parameter name begins with "@". */
1362           data = Tcl_GetByteArrayFromObj(pVar, &n);
1363           sqlite3_bind_blob(pStmt, i, data, n, SQLITE_STATIC);
1364           Tcl_IncrRefCount(pVar);
1365           pPreStmt->apParm[iParm++] = pVar;
1366         }else if( c=='b' && strcmp(zType,"boolean")==0 ){
1367           Tcl_GetIntFromObj(interp, pVar, &n);
1368           sqlite3_bind_int(pStmt, i, n);
1369         }else if( c=='d' && strcmp(zType,"double")==0 ){
1370           double r;
1371           Tcl_GetDoubleFromObj(interp, pVar, &r);
1372           sqlite3_bind_double(pStmt, i, r);
1373         }else if( (c=='w' && strcmp(zType,"wideInt")==0) ||
1374               (c=='i' && strcmp(zType,"int")==0) ){
1375           Tcl_WideInt v;
1376           Tcl_GetWideIntFromObj(interp, pVar, &v);
1377           sqlite3_bind_int64(pStmt, i, v);
1378         }else{
1379           data = (unsigned char *)Tcl_GetStringFromObj(pVar, &n);
1380           sqlite3_bind_text(pStmt, i, (char *)data, n, SQLITE_STATIC);
1381           Tcl_IncrRefCount(pVar);
1382           pPreStmt->apParm[iParm++] = pVar;
1383         }
1384       }else{
1385         sqlite3_bind_null(pStmt, i);
1386       }
1387     }
1388   }
1389   pPreStmt->nParm = iParm;
1390   *ppPreStmt = pPreStmt;
1391 
1392   return TCL_OK;
1393 }
1394 
1395 /*
1396 ** Release a statement reference obtained by calling dbPrepareAndBind().
1397 ** There should be exactly one call to this function for each call to
1398 ** dbPrepareAndBind().
1399 **
1400 ** If the discard parameter is non-zero, then the statement is deleted
1401 ** immediately. Otherwise it is added to the LRU list and may be returned
1402 ** by a subsequent call to dbPrepareAndBind().
1403 */
1404 static void dbReleaseStmt(
1405   SqliteDb *pDb,                  /* Database handle */
1406   SqlPreparedStmt *pPreStmt,      /* Prepared statement handle to release */
1407   int discard                     /* True to delete (not cache) the pPreStmt */
1408 ){
1409   int i;
1410 
1411   /* Free the bound string and blob parameters */
1412   for(i=0; i<pPreStmt->nParm; i++){
1413     Tcl_DecrRefCount(pPreStmt->apParm[i]);
1414   }
1415   pPreStmt->nParm = 0;
1416 
1417   if( pDb->maxStmt<=0 || discard ){
1418     /* If the cache is turned off, deallocated the statement */
1419     dbFreeStmt(pPreStmt);
1420   }else{
1421     /* Add the prepared statement to the beginning of the cache list. */
1422     pPreStmt->pNext = pDb->stmtList;
1423     pPreStmt->pPrev = 0;
1424     if( pDb->stmtList ){
1425      pDb->stmtList->pPrev = pPreStmt;
1426     }
1427     pDb->stmtList = pPreStmt;
1428     if( pDb->stmtLast==0 ){
1429       assert( pDb->nStmt==0 );
1430       pDb->stmtLast = pPreStmt;
1431     }else{
1432       assert( pDb->nStmt>0 );
1433     }
1434     pDb->nStmt++;
1435 
1436     /* If we have too many statement in cache, remove the surplus from
1437     ** the end of the cache list.  */
1438     while( pDb->nStmt>pDb->maxStmt ){
1439       SqlPreparedStmt *pLast = pDb->stmtLast;
1440       pDb->stmtLast = pLast->pPrev;
1441       pDb->stmtLast->pNext = 0;
1442       pDb->nStmt--;
1443       dbFreeStmt(pLast);
1444     }
1445   }
1446 }
1447 
1448 /*
1449 ** Structure used with dbEvalXXX() functions:
1450 **
1451 **   dbEvalInit()
1452 **   dbEvalStep()
1453 **   dbEvalFinalize()
1454 **   dbEvalRowInfo()
1455 **   dbEvalColumnValue()
1456 */
1457 typedef struct DbEvalContext DbEvalContext;
1458 struct DbEvalContext {
1459   SqliteDb *pDb;                  /* Database handle */
1460   Tcl_Obj *pSql;                  /* Object holding string zSql */
1461   const char *zSql;               /* Remaining SQL to execute */
1462   SqlPreparedStmt *pPreStmt;      /* Current statement */
1463   int nCol;                       /* Number of columns returned by pStmt */
1464   int evalFlags;                  /* Flags used */
1465   Tcl_Obj *pArray;                /* Name of array variable */
1466   Tcl_Obj **apColName;            /* Array of column names */
1467 };
1468 
1469 #define SQLITE_EVAL_WITHOUTNULLS  0x00001  /* Unset array(*) for NULL */
1470 
1471 /*
1472 ** Release any cache of column names currently held as part of
1473 ** the DbEvalContext structure passed as the first argument.
1474 */
1475 static void dbReleaseColumnNames(DbEvalContext *p){
1476   if( p->apColName ){
1477     int i;
1478     for(i=0; i<p->nCol; i++){
1479       Tcl_DecrRefCount(p->apColName[i]);
1480     }
1481     Tcl_Free((char *)p->apColName);
1482     p->apColName = 0;
1483   }
1484   p->nCol = 0;
1485 }
1486 
1487 /*
1488 ** Initialize a DbEvalContext structure.
1489 **
1490 ** If pArray is not NULL, then it contains the name of a Tcl array
1491 ** variable. The "*" member of this array is set to a list containing
1492 ** the names of the columns returned by the statement as part of each
1493 ** call to dbEvalStep(), in order from left to right. e.g. if the names
1494 ** of the returned columns are a, b and c, it does the equivalent of the
1495 ** tcl command:
1496 **
1497 **     set ${pArray}(*) {a b c}
1498 */
1499 static void dbEvalInit(
1500   DbEvalContext *p,               /* Pointer to structure to initialize */
1501   SqliteDb *pDb,                  /* Database handle */
1502   Tcl_Obj *pSql,                  /* Object containing SQL script */
1503   Tcl_Obj *pArray,                /* Name of Tcl array to set (*) element of */
1504   int evalFlags                   /* Flags controlling evaluation */
1505 ){
1506   memset(p, 0, sizeof(DbEvalContext));
1507   p->pDb = pDb;
1508   p->zSql = Tcl_GetString(pSql);
1509   p->pSql = pSql;
1510   Tcl_IncrRefCount(pSql);
1511   if( pArray ){
1512     p->pArray = pArray;
1513     Tcl_IncrRefCount(pArray);
1514   }
1515   p->evalFlags = evalFlags;
1516 }
1517 
1518 /*
1519 ** Obtain information about the row that the DbEvalContext passed as the
1520 ** first argument currently points to.
1521 */
1522 static void dbEvalRowInfo(
1523   DbEvalContext *p,               /* Evaluation context */
1524   int *pnCol,                     /* OUT: Number of column names */
1525   Tcl_Obj ***papColName           /* OUT: Array of column names */
1526 ){
1527   /* Compute column names */
1528   if( 0==p->apColName ){
1529     sqlite3_stmt *pStmt = p->pPreStmt->pStmt;
1530     int i;                        /* Iterator variable */
1531     int nCol;                     /* Number of columns returned by pStmt */
1532     Tcl_Obj **apColName = 0;      /* Array of column names */
1533 
1534     p->nCol = nCol = sqlite3_column_count(pStmt);
1535     if( nCol>0 && (papColName || p->pArray) ){
1536       apColName = (Tcl_Obj**)Tcl_Alloc( sizeof(Tcl_Obj*)*nCol );
1537       for(i=0; i<nCol; i++){
1538         apColName[i] = Tcl_NewStringObj(sqlite3_column_name(pStmt,i), -1);
1539         Tcl_IncrRefCount(apColName[i]);
1540       }
1541       p->apColName = apColName;
1542     }
1543 
1544     /* If results are being stored in an array variable, then create
1545     ** the array(*) entry for that array
1546     */
1547     if( p->pArray ){
1548       Tcl_Interp *interp = p->pDb->interp;
1549       Tcl_Obj *pColList = Tcl_NewObj();
1550       Tcl_Obj *pStar = Tcl_NewStringObj("*", -1);
1551 
1552       for(i=0; i<nCol; i++){
1553         Tcl_ListObjAppendElement(interp, pColList, apColName[i]);
1554       }
1555       Tcl_IncrRefCount(pStar);
1556       Tcl_ObjSetVar2(interp, p->pArray, pStar, pColList, 0);
1557       Tcl_DecrRefCount(pStar);
1558     }
1559   }
1560 
1561   if( papColName ){
1562     *papColName = p->apColName;
1563   }
1564   if( pnCol ){
1565     *pnCol = p->nCol;
1566   }
1567 }
1568 
1569 /*
1570 ** Return one of TCL_OK, TCL_BREAK or TCL_ERROR. If TCL_ERROR is
1571 ** returned, then an error message is stored in the interpreter before
1572 ** returning.
1573 **
1574 ** A return value of TCL_OK means there is a row of data available. The
1575 ** data may be accessed using dbEvalRowInfo() and dbEvalColumnValue(). This
1576 ** is analogous to a return of SQLITE_ROW from sqlite3_step(). If TCL_BREAK
1577 ** is returned, then the SQL script has finished executing and there are
1578 ** no further rows available. This is similar to SQLITE_DONE.
1579 */
1580 static int dbEvalStep(DbEvalContext *p){
1581   const char *zPrevSql = 0;       /* Previous value of p->zSql */
1582 
1583   while( p->zSql[0] || p->pPreStmt ){
1584     int rc;
1585     if( p->pPreStmt==0 ){
1586       zPrevSql = (p->zSql==zPrevSql ? 0 : p->zSql);
1587       rc = dbPrepareAndBind(p->pDb, p->zSql, &p->zSql, &p->pPreStmt);
1588       if( rc!=TCL_OK ) return rc;
1589     }else{
1590       int rcs;
1591       SqliteDb *pDb = p->pDb;
1592       SqlPreparedStmt *pPreStmt = p->pPreStmt;
1593       sqlite3_stmt *pStmt = pPreStmt->pStmt;
1594 
1595       rcs = sqlite3_step(pStmt);
1596       if( rcs==SQLITE_ROW ){
1597         return TCL_OK;
1598       }
1599       if( p->pArray ){
1600         dbEvalRowInfo(p, 0, 0);
1601       }
1602       rcs = sqlite3_reset(pStmt);
1603 
1604       pDb->nStep = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_FULLSCAN_STEP,1);
1605       pDb->nSort = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_SORT,1);
1606       pDb->nIndex = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_AUTOINDEX,1);
1607       pDb->nVMStep = sqlite3_stmt_status(pStmt,SQLITE_STMTSTATUS_VM_STEP,1);
1608       dbReleaseColumnNames(p);
1609       p->pPreStmt = 0;
1610 
1611       if( rcs!=SQLITE_OK ){
1612         /* If a run-time error occurs, report the error and stop reading
1613         ** the SQL.  */
1614         dbReleaseStmt(pDb, pPreStmt, 1);
1615 #if SQLITE_TEST
1616         if( p->pDb->bLegacyPrepare && rcs==SQLITE_SCHEMA && zPrevSql ){
1617           /* If the runtime error was an SQLITE_SCHEMA, and the database
1618           ** handle is configured to use the legacy sqlite3_prepare()
1619           ** interface, retry prepare()/step() on the same SQL statement.
1620           ** This only happens once. If there is a second SQLITE_SCHEMA
1621           ** error, the error will be returned to the caller. */
1622           p->zSql = zPrevSql;
1623           continue;
1624         }
1625 #endif
1626         Tcl_SetObjResult(pDb->interp,
1627                          Tcl_NewStringObj(sqlite3_errmsg(pDb->db), -1));
1628         return TCL_ERROR;
1629       }else{
1630         dbReleaseStmt(pDb, pPreStmt, 0);
1631       }
1632     }
1633   }
1634 
1635   /* Finished */
1636   return TCL_BREAK;
1637 }
1638 
1639 /*
1640 ** Free all resources currently held by the DbEvalContext structure passed
1641 ** as the first argument. There should be exactly one call to this function
1642 ** for each call to dbEvalInit().
1643 */
1644 static void dbEvalFinalize(DbEvalContext *p){
1645   if( p->pPreStmt ){
1646     sqlite3_reset(p->pPreStmt->pStmt);
1647     dbReleaseStmt(p->pDb, p->pPreStmt, 0);
1648     p->pPreStmt = 0;
1649   }
1650   if( p->pArray ){
1651     Tcl_DecrRefCount(p->pArray);
1652     p->pArray = 0;
1653   }
1654   Tcl_DecrRefCount(p->pSql);
1655   dbReleaseColumnNames(p);
1656 }
1657 
1658 /*
1659 ** Return a pointer to a Tcl_Obj structure with ref-count 0 that contains
1660 ** the value for the iCol'th column of the row currently pointed to by
1661 ** the DbEvalContext structure passed as the first argument.
1662 */
1663 static Tcl_Obj *dbEvalColumnValue(DbEvalContext *p, int iCol){
1664   sqlite3_stmt *pStmt = p->pPreStmt->pStmt;
1665   switch( sqlite3_column_type(pStmt, iCol) ){
1666     case SQLITE_BLOB: {
1667       int bytes = sqlite3_column_bytes(pStmt, iCol);
1668       const char *zBlob = sqlite3_column_blob(pStmt, iCol);
1669       if( !zBlob ) bytes = 0;
1670       return Tcl_NewByteArrayObj((u8*)zBlob, bytes);
1671     }
1672     case SQLITE_INTEGER: {
1673       sqlite_int64 v = sqlite3_column_int64(pStmt, iCol);
1674       if( v>=-2147483647 && v<=2147483647 ){
1675         return Tcl_NewIntObj((int)v);
1676       }else{
1677         return Tcl_NewWideIntObj(v);
1678       }
1679     }
1680     case SQLITE_FLOAT: {
1681       return Tcl_NewDoubleObj(sqlite3_column_double(pStmt, iCol));
1682     }
1683     case SQLITE_NULL: {
1684       return Tcl_NewStringObj(p->pDb->zNull, -1);
1685     }
1686   }
1687 
1688   return Tcl_NewStringObj((char*)sqlite3_column_text(pStmt, iCol), -1);
1689 }
1690 
1691 /*
1692 ** If using Tcl version 8.6 or greater, use the NR functions to avoid
1693 ** recursive evalution of scripts by the [db eval] and [db trans]
1694 ** commands. Even if the headers used while compiling the extension
1695 ** are 8.6 or newer, the code still tests the Tcl version at runtime.
1696 ** This allows stubs-enabled builds to be used with older Tcl libraries.
1697 */
1698 #if TCL_MAJOR_VERSION>8 || (TCL_MAJOR_VERSION==8 && TCL_MINOR_VERSION>=6)
1699 # define SQLITE_TCL_NRE 1
1700 static int DbUseNre(void){
1701   int major, minor;
1702   Tcl_GetVersion(&major, &minor, 0, 0);
1703   return( (major==8 && minor>=6) || major>8 );
1704 }
1705 #else
1706 /*
1707 ** Compiling using headers earlier than 8.6. In this case NR cannot be
1708 ** used, so DbUseNre() to always return zero. Add #defines for the other
1709 ** Tcl_NRxxx() functions to prevent them from causing compilation errors,
1710 ** even though the only invocations of them are within conditional blocks
1711 ** of the form:
1712 **
1713 **   if( DbUseNre() ) { ... }
1714 */
1715 # define SQLITE_TCL_NRE 0
1716 # define DbUseNre() 0
1717 # define Tcl_NRAddCallback(a,b,c,d,e,f) (void)0
1718 # define Tcl_NREvalObj(a,b,c) 0
1719 # define Tcl_NRCreateCommand(a,b,c,d,e,f) (void)0
1720 #endif
1721 
1722 /*
1723 ** This function is part of the implementation of the command:
1724 **
1725 **   $db eval SQL ?ARRAYNAME? SCRIPT
1726 */
1727 static int SQLITE_TCLAPI DbEvalNextCmd(
1728   ClientData data[],                   /* data[0] is the (DbEvalContext*) */
1729   Tcl_Interp *interp,                  /* Tcl interpreter */
1730   int result                           /* Result so far */
1731 ){
1732   int rc = result;                     /* Return code */
1733 
1734   /* The first element of the data[] array is a pointer to a DbEvalContext
1735   ** structure allocated using Tcl_Alloc(). The second element of data[]
1736   ** is a pointer to a Tcl_Obj containing the script to run for each row
1737   ** returned by the queries encapsulated in data[0]. */
1738   DbEvalContext *p = (DbEvalContext *)data[0];
1739   Tcl_Obj *pScript = (Tcl_Obj *)data[1];
1740   Tcl_Obj *pArray = p->pArray;
1741 
1742   while( (rc==TCL_OK || rc==TCL_CONTINUE) && TCL_OK==(rc = dbEvalStep(p)) ){
1743     int i;
1744     int nCol;
1745     Tcl_Obj **apColName;
1746     dbEvalRowInfo(p, &nCol, &apColName);
1747     for(i=0; i<nCol; i++){
1748       if( pArray==0 ){
1749         Tcl_ObjSetVar2(interp, apColName[i], 0, dbEvalColumnValue(p,i), 0);
1750       }else if( (p->evalFlags & SQLITE_EVAL_WITHOUTNULLS)!=0
1751              && sqlite3_column_type(p->pPreStmt->pStmt, i)==SQLITE_NULL
1752       ){
1753         Tcl_UnsetVar2(interp, Tcl_GetString(pArray),
1754                       Tcl_GetString(apColName[i]), 0);
1755       }else{
1756         Tcl_ObjSetVar2(interp, pArray, apColName[i], dbEvalColumnValue(p,i), 0);
1757       }
1758     }
1759 
1760     /* The required interpreter variables are now populated with the data
1761     ** from the current row. If using NRE, schedule callbacks to evaluate
1762     ** script pScript, then to invoke this function again to fetch the next
1763     ** row (or clean up if there is no next row or the script throws an
1764     ** exception). After scheduling the callbacks, return control to the
1765     ** caller.
1766     **
1767     ** If not using NRE, evaluate pScript directly and continue with the
1768     ** next iteration of this while(...) loop.  */
1769     if( DbUseNre() ){
1770       Tcl_NRAddCallback(interp, DbEvalNextCmd, (void*)p, (void*)pScript, 0, 0);
1771       return Tcl_NREvalObj(interp, pScript, 0);
1772     }else{
1773       rc = Tcl_EvalObjEx(interp, pScript, 0);
1774     }
1775   }
1776 
1777   Tcl_DecrRefCount(pScript);
1778   dbEvalFinalize(p);
1779   Tcl_Free((char *)p);
1780 
1781   if( rc==TCL_OK || rc==TCL_BREAK ){
1782     Tcl_ResetResult(interp);
1783     rc = TCL_OK;
1784   }
1785   return rc;
1786 }
1787 
1788 /*
1789 ** This function is used by the implementations of the following database
1790 ** handle sub-commands:
1791 **
1792 **   $db update_hook ?SCRIPT?
1793 **   $db wal_hook ?SCRIPT?
1794 **   $db commit_hook ?SCRIPT?
1795 **   $db preupdate hook ?SCRIPT?
1796 */
1797 static void DbHookCmd(
1798   Tcl_Interp *interp,             /* Tcl interpreter */
1799   SqliteDb *pDb,                  /* Database handle */
1800   Tcl_Obj *pArg,                  /* SCRIPT argument (or NULL) */
1801   Tcl_Obj **ppHook                /* Pointer to member of SqliteDb */
1802 ){
1803   sqlite3 *db = pDb->db;
1804 
1805   if( *ppHook ){
1806     Tcl_SetObjResult(interp, *ppHook);
1807     if( pArg ){
1808       Tcl_DecrRefCount(*ppHook);
1809       *ppHook = 0;
1810     }
1811   }
1812   if( pArg ){
1813     assert( !(*ppHook) );
1814     if( Tcl_GetCharLength(pArg)>0 ){
1815       *ppHook = pArg;
1816       Tcl_IncrRefCount(*ppHook);
1817     }
1818   }
1819 
1820 #ifdef SQLITE_ENABLE_PREUPDATE_HOOK
1821   sqlite3_preupdate_hook(db, (pDb->pPreUpdateHook?DbPreUpdateHandler:0), pDb);
1822 #endif
1823   sqlite3_update_hook(db, (pDb->pUpdateHook?DbUpdateHandler:0), pDb);
1824   sqlite3_rollback_hook(db, (pDb->pRollbackHook?DbRollbackHandler:0), pDb);
1825   sqlite3_wal_hook(db, (pDb->pWalHook?DbWalHandler:0), pDb);
1826 }
1827 
1828 /*
1829 ** The "sqlite" command below creates a new Tcl command for each
1830 ** connection it opens to an SQLite database.  This routine is invoked
1831 ** whenever one of those connection-specific commands is executed
1832 ** in Tcl.  For example, if you run Tcl code like this:
1833 **
1834 **       sqlite3 db1  "my_database"
1835 **       db1 close
1836 **
1837 ** The first command opens a connection to the "my_database" database
1838 ** and calls that connection "db1".  The second command causes this
1839 ** subroutine to be invoked.
1840 */
1841 static int SQLITE_TCLAPI DbObjCmd(
1842   void *cd,
1843   Tcl_Interp *interp,
1844   int objc,
1845   Tcl_Obj *const*objv
1846 ){
1847   SqliteDb *pDb = (SqliteDb*)cd;
1848   int choice;
1849   int rc = TCL_OK;
1850   static const char *DB_strs[] = {
1851     "authorizer",             "backup",                "busy",
1852     "cache",                  "changes",               "close",
1853     "collate",                "collation_needed",      "commit_hook",
1854     "complete",               "copy",                  "deserialize",
1855     "enable_load_extension",  "errorcode",             "eval",
1856     "exists",                 "function",              "incrblob",
1857     "interrupt",              "last_insert_rowid",     "nullvalue",
1858     "onecolumn",              "preupdate",             "profile",
1859     "progress",               "rekey",                 "restore",
1860     "rollback_hook",          "serialize",             "status",
1861     "timeout",                "total_changes",         "trace",
1862     "trace_v2",               "transaction",           "unlock_notify",
1863     "update_hook",            "version",               "wal_hook",
1864     0
1865   };
1866   enum DB_enum {
1867     DB_AUTHORIZER,            DB_BACKUP,               DB_BUSY,
1868     DB_CACHE,                 DB_CHANGES,              DB_CLOSE,
1869     DB_COLLATE,               DB_COLLATION_NEEDED,     DB_COMMIT_HOOK,
1870     DB_COMPLETE,              DB_COPY,                 DB_DESERIALIZE,
1871     DB_ENABLE_LOAD_EXTENSION, DB_ERRORCODE,            DB_EVAL,
1872     DB_EXISTS,                DB_FUNCTION,             DB_INCRBLOB,
1873     DB_INTERRUPT,             DB_LAST_INSERT_ROWID,    DB_NULLVALUE,
1874     DB_ONECOLUMN,             DB_PREUPDATE,            DB_PROFILE,
1875     DB_PROGRESS,              DB_REKEY,                DB_RESTORE,
1876     DB_ROLLBACK_HOOK,         DB_SERIALIZE,            DB_STATUS,
1877     DB_TIMEOUT,               DB_TOTAL_CHANGES,        DB_TRACE,
1878     DB_TRACE_V2,              DB_TRANSACTION,          DB_UNLOCK_NOTIFY,
1879     DB_UPDATE_HOOK,           DB_VERSION,              DB_WAL_HOOK
1880   };
1881   /* don't leave trailing commas on DB_enum, it confuses the AIX xlc compiler */
1882 
1883   if( objc<2 ){
1884     Tcl_WrongNumArgs(interp, 1, objv, "SUBCOMMAND ...");
1885     return TCL_ERROR;
1886   }
1887   if( Tcl_GetIndexFromObj(interp, objv[1], DB_strs, "option", 0, &choice) ){
1888     return TCL_ERROR;
1889   }
1890 
1891   switch( (enum DB_enum)choice ){
1892 
1893   /*    $db authorizer ?CALLBACK?
1894   **
1895   ** Invoke the given callback to authorize each SQL operation as it is
1896   ** compiled.  5 arguments are appended to the callback before it is
1897   ** invoked:
1898   **
1899   **   (1) The authorization type (ex: SQLITE_CREATE_TABLE, SQLITE_INSERT, ...)
1900   **   (2) First descriptive name (depends on authorization type)
1901   **   (3) Second descriptive name
1902   **   (4) Name of the database (ex: "main", "temp")
1903   **   (5) Name of trigger that is doing the access
1904   **
1905   ** The callback should return on of the following strings: SQLITE_OK,
1906   ** SQLITE_IGNORE, or SQLITE_DENY.  Any other return value is an error.
1907   **
1908   ** If this method is invoked with no arguments, the current authorization
1909   ** callback string is returned.
1910   */
1911   case DB_AUTHORIZER: {
1912 #ifdef SQLITE_OMIT_AUTHORIZATION
1913     Tcl_AppendResult(interp, "authorization not available in this build",
1914                      (char*)0);
1915     return TCL_ERROR;
1916 #else
1917     if( objc>3 ){
1918       Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?");
1919       return TCL_ERROR;
1920     }else if( objc==2 ){
1921       if( pDb->zAuth ){
1922         Tcl_AppendResult(interp, pDb->zAuth, (char*)0);
1923       }
1924     }else{
1925       char *zAuth;
1926       int len;
1927       if( pDb->zAuth ){
1928         Tcl_Free(pDb->zAuth);
1929       }
1930       zAuth = Tcl_GetStringFromObj(objv[2], &len);
1931       if( zAuth && len>0 ){
1932         pDb->zAuth = Tcl_Alloc( len + 1 );
1933         memcpy(pDb->zAuth, zAuth, len+1);
1934       }else{
1935         pDb->zAuth = 0;
1936       }
1937       if( pDb->zAuth ){
1938         typedef int (*sqlite3_auth_cb)(
1939            void*,int,const char*,const char*,
1940            const char*,const char*);
1941         pDb->interp = interp;
1942         sqlite3_set_authorizer(pDb->db,(sqlite3_auth_cb)auth_callback,pDb);
1943       }else{
1944         sqlite3_set_authorizer(pDb->db, 0, 0);
1945       }
1946     }
1947 #endif
1948     break;
1949   }
1950 
1951   /*    $db backup ?DATABASE? FILENAME
1952   **
1953   ** Open or create a database file named FILENAME.  Transfer the
1954   ** content of local database DATABASE (default: "main") into the
1955   ** FILENAME database.
1956   */
1957   case DB_BACKUP: {
1958     const char *zDestFile;
1959     const char *zSrcDb;
1960     sqlite3 *pDest;
1961     sqlite3_backup *pBackup;
1962 
1963     if( objc==3 ){
1964       zSrcDb = "main";
1965       zDestFile = Tcl_GetString(objv[2]);
1966     }else if( objc==4 ){
1967       zSrcDb = Tcl_GetString(objv[2]);
1968       zDestFile = Tcl_GetString(objv[3]);
1969     }else{
1970       Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE? FILENAME");
1971       return TCL_ERROR;
1972     }
1973     rc = sqlite3_open_v2(zDestFile, &pDest,
1974                SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE| pDb->openFlags, 0);
1975     if( rc!=SQLITE_OK ){
1976       Tcl_AppendResult(interp, "cannot open target database: ",
1977            sqlite3_errmsg(pDest), (char*)0);
1978       sqlite3_close(pDest);
1979       return TCL_ERROR;
1980     }
1981     pBackup = sqlite3_backup_init(pDest, "main", pDb->db, zSrcDb);
1982     if( pBackup==0 ){
1983       Tcl_AppendResult(interp, "backup failed: ",
1984            sqlite3_errmsg(pDest), (char*)0);
1985       sqlite3_close(pDest);
1986       return TCL_ERROR;
1987     }
1988     while(  (rc = sqlite3_backup_step(pBackup,100))==SQLITE_OK ){}
1989     sqlite3_backup_finish(pBackup);
1990     if( rc==SQLITE_DONE ){
1991       rc = TCL_OK;
1992     }else{
1993       Tcl_AppendResult(interp, "backup failed: ",
1994            sqlite3_errmsg(pDest), (char*)0);
1995       rc = TCL_ERROR;
1996     }
1997     sqlite3_close(pDest);
1998     break;
1999   }
2000 
2001   /*    $db busy ?CALLBACK?
2002   **
2003   ** Invoke the given callback if an SQL statement attempts to open
2004   ** a locked database file.
2005   */
2006   case DB_BUSY: {
2007     if( objc>3 ){
2008       Tcl_WrongNumArgs(interp, 2, objv, "CALLBACK");
2009       return TCL_ERROR;
2010     }else if( objc==2 ){
2011       if( pDb->zBusy ){
2012         Tcl_AppendResult(interp, pDb->zBusy, (char*)0);
2013       }
2014     }else{
2015       char *zBusy;
2016       int len;
2017       if( pDb->zBusy ){
2018         Tcl_Free(pDb->zBusy);
2019       }
2020       zBusy = Tcl_GetStringFromObj(objv[2], &len);
2021       if( zBusy && len>0 ){
2022         pDb->zBusy = Tcl_Alloc( len + 1 );
2023         memcpy(pDb->zBusy, zBusy, len+1);
2024       }else{
2025         pDb->zBusy = 0;
2026       }
2027       if( pDb->zBusy ){
2028         pDb->interp = interp;
2029         sqlite3_busy_handler(pDb->db, DbBusyHandler, pDb);
2030       }else{
2031         sqlite3_busy_handler(pDb->db, 0, 0);
2032       }
2033     }
2034     break;
2035   }
2036 
2037   /*     $db cache flush
2038   **     $db cache size n
2039   **
2040   ** Flush the prepared statement cache, or set the maximum number of
2041   ** cached statements.
2042   */
2043   case DB_CACHE: {
2044     char *subCmd;
2045     int n;
2046 
2047     if( objc<=2 ){
2048       Tcl_WrongNumArgs(interp, 1, objv, "cache option ?arg?");
2049       return TCL_ERROR;
2050     }
2051     subCmd = Tcl_GetStringFromObj( objv[2], 0 );
2052     if( *subCmd=='f' && strcmp(subCmd,"flush")==0 ){
2053       if( objc!=3 ){
2054         Tcl_WrongNumArgs(interp, 2, objv, "flush");
2055         return TCL_ERROR;
2056       }else{
2057         flushStmtCache( pDb );
2058       }
2059     }else if( *subCmd=='s' && strcmp(subCmd,"size")==0 ){
2060       if( objc!=4 ){
2061         Tcl_WrongNumArgs(interp, 2, objv, "size n");
2062         return TCL_ERROR;
2063       }else{
2064         if( TCL_ERROR==Tcl_GetIntFromObj(interp, objv[3], &n) ){
2065           Tcl_AppendResult( interp, "cannot convert \"",
2066                Tcl_GetStringFromObj(objv[3],0), "\" to integer", (char*)0);
2067           return TCL_ERROR;
2068         }else{
2069           if( n<0 ){
2070             flushStmtCache( pDb );
2071             n = 0;
2072           }else if( n>MAX_PREPARED_STMTS ){
2073             n = MAX_PREPARED_STMTS;
2074           }
2075           pDb->maxStmt = n;
2076         }
2077       }
2078     }else{
2079       Tcl_AppendResult( interp, "bad option \"",
2080           Tcl_GetStringFromObj(objv[2],0), "\": must be flush or size",
2081           (char*)0);
2082       return TCL_ERROR;
2083     }
2084     break;
2085   }
2086 
2087   /*     $db changes
2088   **
2089   ** Return the number of rows that were modified, inserted, or deleted by
2090   ** the most recent INSERT, UPDATE or DELETE statement, not including
2091   ** any changes made by trigger programs.
2092   */
2093   case DB_CHANGES: {
2094     Tcl_Obj *pResult;
2095     if( objc!=2 ){
2096       Tcl_WrongNumArgs(interp, 2, objv, "");
2097       return TCL_ERROR;
2098     }
2099     pResult = Tcl_GetObjResult(interp);
2100     Tcl_SetIntObj(pResult, sqlite3_changes(pDb->db));
2101     break;
2102   }
2103 
2104   /*    $db close
2105   **
2106   ** Shutdown the database
2107   */
2108   case DB_CLOSE: {
2109     Tcl_DeleteCommand(interp, Tcl_GetStringFromObj(objv[0], 0));
2110     break;
2111   }
2112 
2113   /*
2114   **     $db collate NAME SCRIPT
2115   **
2116   ** Create a new SQL collation function called NAME.  Whenever
2117   ** that function is called, invoke SCRIPT to evaluate the function.
2118   */
2119   case DB_COLLATE: {
2120     SqlCollate *pCollate;
2121     char *zName;
2122     char *zScript;
2123     int nScript;
2124     if( objc!=4 ){
2125       Tcl_WrongNumArgs(interp, 2, objv, "NAME SCRIPT");
2126       return TCL_ERROR;
2127     }
2128     zName = Tcl_GetStringFromObj(objv[2], 0);
2129     zScript = Tcl_GetStringFromObj(objv[3], &nScript);
2130     pCollate = (SqlCollate*)Tcl_Alloc( sizeof(*pCollate) + nScript + 1 );
2131     if( pCollate==0 ) return TCL_ERROR;
2132     pCollate->interp = interp;
2133     pCollate->pNext = pDb->pCollate;
2134     pCollate->zScript = (char*)&pCollate[1];
2135     pDb->pCollate = pCollate;
2136     memcpy(pCollate->zScript, zScript, nScript+1);
2137     if( sqlite3_create_collation(pDb->db, zName, SQLITE_UTF8,
2138         pCollate, tclSqlCollate) ){
2139       Tcl_SetResult(interp, (char *)sqlite3_errmsg(pDb->db), TCL_VOLATILE);
2140       return TCL_ERROR;
2141     }
2142     break;
2143   }
2144 
2145   /*
2146   **     $db collation_needed SCRIPT
2147   **
2148   ** Create a new SQL collation function called NAME.  Whenever
2149   ** that function is called, invoke SCRIPT to evaluate the function.
2150   */
2151   case DB_COLLATION_NEEDED: {
2152     if( objc!=3 ){
2153       Tcl_WrongNumArgs(interp, 2, objv, "SCRIPT");
2154       return TCL_ERROR;
2155     }
2156     if( pDb->pCollateNeeded ){
2157       Tcl_DecrRefCount(pDb->pCollateNeeded);
2158     }
2159     pDb->pCollateNeeded = Tcl_DuplicateObj(objv[2]);
2160     Tcl_IncrRefCount(pDb->pCollateNeeded);
2161     sqlite3_collation_needed(pDb->db, pDb, tclCollateNeeded);
2162     break;
2163   }
2164 
2165   /*    $db commit_hook ?CALLBACK?
2166   **
2167   ** Invoke the given callback just before committing every SQL transaction.
2168   ** If the callback throws an exception or returns non-zero, then the
2169   ** transaction is aborted.  If CALLBACK is an empty string, the callback
2170   ** is disabled.
2171   */
2172   case DB_COMMIT_HOOK: {
2173     if( objc>3 ){
2174       Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?");
2175       return TCL_ERROR;
2176     }else if( objc==2 ){
2177       if( pDb->zCommit ){
2178         Tcl_AppendResult(interp, pDb->zCommit, (char*)0);
2179       }
2180     }else{
2181       const char *zCommit;
2182       int len;
2183       if( pDb->zCommit ){
2184         Tcl_Free(pDb->zCommit);
2185       }
2186       zCommit = Tcl_GetStringFromObj(objv[2], &len);
2187       if( zCommit && len>0 ){
2188         pDb->zCommit = Tcl_Alloc( len + 1 );
2189         memcpy(pDb->zCommit, zCommit, len+1);
2190       }else{
2191         pDb->zCommit = 0;
2192       }
2193       if( pDb->zCommit ){
2194         pDb->interp = interp;
2195         sqlite3_commit_hook(pDb->db, DbCommitHandler, pDb);
2196       }else{
2197         sqlite3_commit_hook(pDb->db, 0, 0);
2198       }
2199     }
2200     break;
2201   }
2202 
2203   /*    $db complete SQL
2204   **
2205   ** Return TRUE if SQL is a complete SQL statement.  Return FALSE if
2206   ** additional lines of input are needed.  This is similar to the
2207   ** built-in "info complete" command of Tcl.
2208   */
2209   case DB_COMPLETE: {
2210 #ifndef SQLITE_OMIT_COMPLETE
2211     Tcl_Obj *pResult;
2212     int isComplete;
2213     if( objc!=3 ){
2214       Tcl_WrongNumArgs(interp, 2, objv, "SQL");
2215       return TCL_ERROR;
2216     }
2217     isComplete = sqlite3_complete( Tcl_GetStringFromObj(objv[2], 0) );
2218     pResult = Tcl_GetObjResult(interp);
2219     Tcl_SetBooleanObj(pResult, isComplete);
2220 #endif
2221     break;
2222   }
2223 
2224   /*    $db copy conflict-algorithm table filename ?SEPARATOR? ?NULLINDICATOR?
2225   **
2226   ** Copy data into table from filename, optionally using SEPARATOR
2227   ** as column separators.  If a column contains a null string, or the
2228   ** value of NULLINDICATOR, a NULL is inserted for the column.
2229   ** conflict-algorithm is one of the sqlite conflict algorithms:
2230   **    rollback, abort, fail, ignore, replace
2231   ** On success, return the number of lines processed, not necessarily same
2232   ** as 'db changes' due to conflict-algorithm selected.
2233   **
2234   ** This code is basically an implementation/enhancement of
2235   ** the sqlite3 shell.c ".import" command.
2236   **
2237   ** This command usage is equivalent to the sqlite2.x COPY statement,
2238   ** which imports file data into a table using the PostgreSQL COPY file format:
2239   **   $db copy $conflit_algo $table_name $filename \t \\N
2240   */
2241   case DB_COPY: {
2242     char *zTable;               /* Insert data into this table */
2243     char *zFile;                /* The file from which to extract data */
2244     char *zConflict;            /* The conflict algorithm to use */
2245     sqlite3_stmt *pStmt;        /* A statement */
2246     int nCol;                   /* Number of columns in the table */
2247     int nByte;                  /* Number of bytes in an SQL string */
2248     int i, j;                   /* Loop counters */
2249     int nSep;                   /* Number of bytes in zSep[] */
2250     int nNull;                  /* Number of bytes in zNull[] */
2251     char *zSql;                 /* An SQL statement */
2252     char *zLine;                /* A single line of input from the file */
2253     char **azCol;               /* zLine[] broken up into columns */
2254     const char *zCommit;        /* How to commit changes */
2255     FILE *in;                   /* The input file */
2256     int lineno = 0;             /* Line number of input file */
2257     char zLineNum[80];          /* Line number print buffer */
2258     Tcl_Obj *pResult;           /* interp result */
2259 
2260     const char *zSep;
2261     const char *zNull;
2262     if( objc<5 || objc>7 ){
2263       Tcl_WrongNumArgs(interp, 2, objv,
2264          "CONFLICT-ALGORITHM TABLE FILENAME ?SEPARATOR? ?NULLINDICATOR?");
2265       return TCL_ERROR;
2266     }
2267     if( objc>=6 ){
2268       zSep = Tcl_GetStringFromObj(objv[5], 0);
2269     }else{
2270       zSep = "\t";
2271     }
2272     if( objc>=7 ){
2273       zNull = Tcl_GetStringFromObj(objv[6], 0);
2274     }else{
2275       zNull = "";
2276     }
2277     zConflict = Tcl_GetStringFromObj(objv[2], 0);
2278     zTable = Tcl_GetStringFromObj(objv[3], 0);
2279     zFile = Tcl_GetStringFromObj(objv[4], 0);
2280     nSep = strlen30(zSep);
2281     nNull = strlen30(zNull);
2282     if( nSep==0 ){
2283       Tcl_AppendResult(interp,"Error: non-null separator required for copy",
2284                        (char*)0);
2285       return TCL_ERROR;
2286     }
2287     if(strcmp(zConflict, "rollback") != 0 &&
2288        strcmp(zConflict, "abort"   ) != 0 &&
2289        strcmp(zConflict, "fail"    ) != 0 &&
2290        strcmp(zConflict, "ignore"  ) != 0 &&
2291        strcmp(zConflict, "replace" ) != 0 ) {
2292       Tcl_AppendResult(interp, "Error: \"", zConflict,
2293             "\", conflict-algorithm must be one of: rollback, "
2294             "abort, fail, ignore, or replace", (char*)0);
2295       return TCL_ERROR;
2296     }
2297     zSql = sqlite3_mprintf("SELECT * FROM '%q'", zTable);
2298     if( zSql==0 ){
2299       Tcl_AppendResult(interp, "Error: no such table: ", zTable, (char*)0);
2300       return TCL_ERROR;
2301     }
2302     nByte = strlen30(zSql);
2303     rc = sqlite3_prepare(pDb->db, zSql, -1, &pStmt, 0);
2304     sqlite3_free(zSql);
2305     if( rc ){
2306       Tcl_AppendResult(interp, "Error: ", sqlite3_errmsg(pDb->db), (char*)0);
2307       nCol = 0;
2308     }else{
2309       nCol = sqlite3_column_count(pStmt);
2310     }
2311     sqlite3_finalize(pStmt);
2312     if( nCol==0 ) {
2313       return TCL_ERROR;
2314     }
2315     zSql = malloc( nByte + 50 + nCol*2 );
2316     if( zSql==0 ) {
2317       Tcl_AppendResult(interp, "Error: can't malloc()", (char*)0);
2318       return TCL_ERROR;
2319     }
2320     sqlite3_snprintf(nByte+50, zSql, "INSERT OR %q INTO '%q' VALUES(?",
2321          zConflict, zTable);
2322     j = strlen30(zSql);
2323     for(i=1; i<nCol; i++){
2324       zSql[j++] = ',';
2325       zSql[j++] = '?';
2326     }
2327     zSql[j++] = ')';
2328     zSql[j] = 0;
2329     rc = sqlite3_prepare(pDb->db, zSql, -1, &pStmt, 0);
2330     free(zSql);
2331     if( rc ){
2332       Tcl_AppendResult(interp, "Error: ", sqlite3_errmsg(pDb->db), (char*)0);
2333       sqlite3_finalize(pStmt);
2334       return TCL_ERROR;
2335     }
2336     in = fopen(zFile, "rb");
2337     if( in==0 ){
2338       Tcl_AppendResult(interp, "Error: cannot open file: ", zFile, (char*)0);
2339       sqlite3_finalize(pStmt);
2340       return TCL_ERROR;
2341     }
2342     azCol = malloc( sizeof(azCol[0])*(nCol+1) );
2343     if( azCol==0 ) {
2344       Tcl_AppendResult(interp, "Error: can't malloc()", (char*)0);
2345       fclose(in);
2346       return TCL_ERROR;
2347     }
2348     (void)sqlite3_exec(pDb->db, "BEGIN", 0, 0, 0);
2349     zCommit = "COMMIT";
2350     while( (zLine = local_getline(0, in))!=0 ){
2351       char *z;
2352       lineno++;
2353       azCol[0] = zLine;
2354       for(i=0, z=zLine; *z; z++){
2355         if( *z==zSep[0] && strncmp(z, zSep, nSep)==0 ){
2356           *z = 0;
2357           i++;
2358           if( i<nCol ){
2359             azCol[i] = &z[nSep];
2360             z += nSep-1;
2361           }
2362         }
2363       }
2364       if( i+1!=nCol ){
2365         char *zErr;
2366         int nErr = strlen30(zFile) + 200;
2367         zErr = malloc(nErr);
2368         if( zErr ){
2369           sqlite3_snprintf(nErr, zErr,
2370              "Error: %s line %d: expected %d columns of data but found %d",
2371              zFile, lineno, nCol, i+1);
2372           Tcl_AppendResult(interp, zErr, (char*)0);
2373           free(zErr);
2374         }
2375         zCommit = "ROLLBACK";
2376         break;
2377       }
2378       for(i=0; i<nCol; i++){
2379         /* check for null data, if so, bind as null */
2380         if( (nNull>0 && strcmp(azCol[i], zNull)==0)
2381           || strlen30(azCol[i])==0
2382         ){
2383           sqlite3_bind_null(pStmt, i+1);
2384         }else{
2385           sqlite3_bind_text(pStmt, i+1, azCol[i], -1, SQLITE_STATIC);
2386         }
2387       }
2388       sqlite3_step(pStmt);
2389       rc = sqlite3_reset(pStmt);
2390       free(zLine);
2391       if( rc!=SQLITE_OK ){
2392         Tcl_AppendResult(interp,"Error: ", sqlite3_errmsg(pDb->db), (char*)0);
2393         zCommit = "ROLLBACK";
2394         break;
2395       }
2396     }
2397     free(azCol);
2398     fclose(in);
2399     sqlite3_finalize(pStmt);
2400     (void)sqlite3_exec(pDb->db, zCommit, 0, 0, 0);
2401 
2402     if( zCommit[0] == 'C' ){
2403       /* success, set result as number of lines processed */
2404       pResult = Tcl_GetObjResult(interp);
2405       Tcl_SetIntObj(pResult, lineno);
2406       rc = TCL_OK;
2407     }else{
2408       /* failure, append lineno where failed */
2409       sqlite3_snprintf(sizeof(zLineNum), zLineNum,"%d",lineno);
2410       Tcl_AppendResult(interp,", failed while processing line: ",zLineNum,
2411                        (char*)0);
2412       rc = TCL_ERROR;
2413     }
2414     break;
2415   }
2416 
2417   /*
2418   **     $db deserialize ?DATABASE? VALUE
2419   **
2420   ** Reopen DATABASE (default "main") using the content in $VALUE
2421   */
2422   case DB_DESERIALIZE: {
2423 #ifndef SQLITE_ENABLE_DESERIALIZE
2424     Tcl_AppendResult(interp, "MEMDB not available in this build",
2425                      (char*)0);
2426     rc = TCL_ERROR;
2427 #else
2428     const char *zSchema;
2429     Tcl_Obj *pValue;
2430     unsigned char *pBA;
2431     unsigned char *pData;
2432     int len, xrc;
2433 
2434     if( objc==3 ){
2435       zSchema = 0;
2436       pValue = objv[2];
2437     }else if( objc==4 ){
2438       zSchema = Tcl_GetString(objv[2]);
2439       pValue = objv[3];
2440     }else{
2441       Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE? VALUE");
2442       rc = TCL_ERROR;
2443       break;
2444     }
2445     pBA = Tcl_GetByteArrayFromObj(pValue, &len);
2446     pData = sqlite3_malloc64( len );
2447     if( pData==0 && len>0 ){
2448       Tcl_AppendResult(interp, "out of memory", (char*)0);
2449       rc = TCL_ERROR;
2450     }else{
2451       if( len>0 ) memcpy(pData, pBA, len);
2452       xrc = sqlite3_deserialize(pDb->db, zSchema, pData, len, len,
2453                 SQLITE_DESERIALIZE_FREEONCLOSE |
2454                 SQLITE_DESERIALIZE_RESIZEABLE);
2455       if( xrc ){
2456         Tcl_AppendResult(interp, "unable to set MEMDB content", (char*)0);
2457         rc = TCL_ERROR;
2458       }
2459     }
2460 #endif
2461     break;
2462   }
2463 
2464   /*
2465   **    $db enable_load_extension BOOLEAN
2466   **
2467   ** Turn the extension loading feature on or off.  It if off by
2468   ** default.
2469   */
2470   case DB_ENABLE_LOAD_EXTENSION: {
2471 #ifndef SQLITE_OMIT_LOAD_EXTENSION
2472     int onoff;
2473     if( objc!=3 ){
2474       Tcl_WrongNumArgs(interp, 2, objv, "BOOLEAN");
2475       return TCL_ERROR;
2476     }
2477     if( Tcl_GetBooleanFromObj(interp, objv[2], &onoff) ){
2478       return TCL_ERROR;
2479     }
2480     sqlite3_enable_load_extension(pDb->db, onoff);
2481     break;
2482 #else
2483     Tcl_AppendResult(interp, "extension loading is turned off at compile-time",
2484                      (char*)0);
2485     return TCL_ERROR;
2486 #endif
2487   }
2488 
2489   /*
2490   **    $db errorcode
2491   **
2492   ** Return the numeric error code that was returned by the most recent
2493   ** call to sqlite3_exec().
2494   */
2495   case DB_ERRORCODE: {
2496     Tcl_SetObjResult(interp, Tcl_NewIntObj(sqlite3_errcode(pDb->db)));
2497     break;
2498   }
2499 
2500   /*
2501   **    $db exists $sql
2502   **    $db onecolumn $sql
2503   **
2504   ** The onecolumn method is the equivalent of:
2505   **     lindex [$db eval $sql] 0
2506   */
2507   case DB_EXISTS:
2508   case DB_ONECOLUMN: {
2509     Tcl_Obj *pResult = 0;
2510     DbEvalContext sEval;
2511     if( objc!=3 ){
2512       Tcl_WrongNumArgs(interp, 2, objv, "SQL");
2513       return TCL_ERROR;
2514     }
2515 
2516     dbEvalInit(&sEval, pDb, objv[2], 0, 0);
2517     rc = dbEvalStep(&sEval);
2518     if( choice==DB_ONECOLUMN ){
2519       if( rc==TCL_OK ){
2520         pResult = dbEvalColumnValue(&sEval, 0);
2521       }else if( rc==TCL_BREAK ){
2522         Tcl_ResetResult(interp);
2523       }
2524     }else if( rc==TCL_BREAK || rc==TCL_OK ){
2525       pResult = Tcl_NewBooleanObj(rc==TCL_OK);
2526     }
2527     dbEvalFinalize(&sEval);
2528     if( pResult ) Tcl_SetObjResult(interp, pResult);
2529 
2530     if( rc==TCL_BREAK ){
2531       rc = TCL_OK;
2532     }
2533     break;
2534   }
2535 
2536   /*
2537   **    $db eval ?options? $sql ?array? ?{  ...code... }?
2538   **
2539   ** The SQL statement in $sql is evaluated.  For each row, the values are
2540   ** placed in elements of the array named "array" and ...code... is executed.
2541   ** If "array" and "code" are omitted, then no callback is every invoked.
2542   ** If "array" is an empty string, then the values are placed in variables
2543   ** that have the same name as the fields extracted by the query.
2544   */
2545   case DB_EVAL: {
2546     int evalFlags = 0;
2547     const char *zOpt;
2548     while( objc>3 && (zOpt = Tcl_GetString(objv[2]))!=0 && zOpt[0]=='-' ){
2549       if( strcmp(zOpt, "-withoutnulls")==0 ){
2550         evalFlags |= SQLITE_EVAL_WITHOUTNULLS;
2551       }
2552       else{
2553         Tcl_AppendResult(interp, "unknown option: \"", zOpt, "\"", (void*)0);
2554         return TCL_ERROR;
2555       }
2556       objc--;
2557       objv++;
2558     }
2559     if( objc<3 || objc>5 ){
2560       Tcl_WrongNumArgs(interp, 2, objv,
2561           "?OPTIONS? SQL ?ARRAY-NAME? ?SCRIPT?");
2562       return TCL_ERROR;
2563     }
2564 
2565     if( objc==3 ){
2566       DbEvalContext sEval;
2567       Tcl_Obj *pRet = Tcl_NewObj();
2568       Tcl_IncrRefCount(pRet);
2569       dbEvalInit(&sEval, pDb, objv[2], 0, 0);
2570       while( TCL_OK==(rc = dbEvalStep(&sEval)) ){
2571         int i;
2572         int nCol;
2573         dbEvalRowInfo(&sEval, &nCol, 0);
2574         for(i=0; i<nCol; i++){
2575           Tcl_ListObjAppendElement(interp, pRet, dbEvalColumnValue(&sEval, i));
2576         }
2577       }
2578       dbEvalFinalize(&sEval);
2579       if( rc==TCL_BREAK ){
2580         Tcl_SetObjResult(interp, pRet);
2581         rc = TCL_OK;
2582       }
2583       Tcl_DecrRefCount(pRet);
2584     }else{
2585       ClientData cd2[2];
2586       DbEvalContext *p;
2587       Tcl_Obj *pArray = 0;
2588       Tcl_Obj *pScript;
2589 
2590       if( objc>=5 && *(char *)Tcl_GetString(objv[3]) ){
2591         pArray = objv[3];
2592       }
2593       pScript = objv[objc-1];
2594       Tcl_IncrRefCount(pScript);
2595 
2596       p = (DbEvalContext *)Tcl_Alloc(sizeof(DbEvalContext));
2597       dbEvalInit(p, pDb, objv[2], pArray, evalFlags);
2598 
2599       cd2[0] = (void *)p;
2600       cd2[1] = (void *)pScript;
2601       rc = DbEvalNextCmd(cd2, interp, TCL_OK);
2602     }
2603     break;
2604   }
2605 
2606   /*
2607   **     $db function NAME [-argcount N] [-deterministic] SCRIPT
2608   **
2609   ** Create a new SQL function called NAME.  Whenever that function is
2610   ** called, invoke SCRIPT to evaluate the function.
2611   */
2612   case DB_FUNCTION: {
2613     int flags = SQLITE_UTF8;
2614     SqlFunc *pFunc;
2615     Tcl_Obj *pScript;
2616     char *zName;
2617     int nArg = -1;
2618     int i;
2619     if( objc<4 ){
2620       Tcl_WrongNumArgs(interp, 2, objv, "NAME ?SWITCHES? SCRIPT");
2621       return TCL_ERROR;
2622     }
2623     for(i=3; i<(objc-1); i++){
2624       const char *z = Tcl_GetString(objv[i]);
2625       int n = strlen30(z);
2626       if( n>2 && strncmp(z, "-argcount",n)==0 ){
2627         if( i==(objc-2) ){
2628           Tcl_AppendResult(interp, "option requires an argument: ", z,(char*)0);
2629           return TCL_ERROR;
2630         }
2631         if( Tcl_GetIntFromObj(interp, objv[i+1], &nArg) ) return TCL_ERROR;
2632         if( nArg<0 ){
2633           Tcl_AppendResult(interp, "number of arguments must be non-negative",
2634                            (char*)0);
2635           return TCL_ERROR;
2636         }
2637         i++;
2638       }else
2639       if( n>2 && strncmp(z, "-deterministic",n)==0 ){
2640         flags |= SQLITE_DETERMINISTIC;
2641       }else{
2642         Tcl_AppendResult(interp, "bad option \"", z,
2643             "\": must be -argcount or -deterministic", (char*)0
2644         );
2645         return TCL_ERROR;
2646       }
2647     }
2648 
2649     pScript = objv[objc-1];
2650     zName = Tcl_GetStringFromObj(objv[2], 0);
2651     pFunc = findSqlFunc(pDb, zName);
2652     if( pFunc==0 ) return TCL_ERROR;
2653     if( pFunc->pScript ){
2654       Tcl_DecrRefCount(pFunc->pScript);
2655     }
2656     pFunc->pScript = pScript;
2657     Tcl_IncrRefCount(pScript);
2658     pFunc->useEvalObjv = safeToUseEvalObjv(interp, pScript);
2659     rc = sqlite3_create_function(pDb->db, zName, nArg, flags,
2660         pFunc, tclSqlFunc, 0, 0);
2661     if( rc!=SQLITE_OK ){
2662       rc = TCL_ERROR;
2663       Tcl_SetResult(interp, (char *)sqlite3_errmsg(pDb->db), TCL_VOLATILE);
2664     }
2665     break;
2666   }
2667 
2668   /*
2669   **     $db incrblob ?-readonly? ?DB? TABLE COLUMN ROWID
2670   */
2671   case DB_INCRBLOB: {
2672 #ifdef SQLITE_OMIT_INCRBLOB
2673     Tcl_AppendResult(interp, "incrblob not available in this build", (char*)0);
2674     return TCL_ERROR;
2675 #else
2676     int isReadonly = 0;
2677     const char *zDb = "main";
2678     const char *zTable;
2679     const char *zColumn;
2680     Tcl_WideInt iRow;
2681 
2682     /* Check for the -readonly option */
2683     if( objc>3 && strcmp(Tcl_GetString(objv[2]), "-readonly")==0 ){
2684       isReadonly = 1;
2685     }
2686 
2687     if( objc!=(5+isReadonly) && objc!=(6+isReadonly) ){
2688       Tcl_WrongNumArgs(interp, 2, objv, "?-readonly? ?DB? TABLE COLUMN ROWID");
2689       return TCL_ERROR;
2690     }
2691 
2692     if( objc==(6+isReadonly) ){
2693       zDb = Tcl_GetString(objv[2]);
2694     }
2695     zTable = Tcl_GetString(objv[objc-3]);
2696     zColumn = Tcl_GetString(objv[objc-2]);
2697     rc = Tcl_GetWideIntFromObj(interp, objv[objc-1], &iRow);
2698 
2699     if( rc==TCL_OK ){
2700       rc = createIncrblobChannel(
2701           interp, pDb, zDb, zTable, zColumn, (sqlite3_int64)iRow, isReadonly
2702       );
2703     }
2704 #endif
2705     break;
2706   }
2707 
2708   /*
2709   **     $db interrupt
2710   **
2711   ** Interrupt the execution of the inner-most SQL interpreter.  This
2712   ** causes the SQL statement to return an error of SQLITE_INTERRUPT.
2713   */
2714   case DB_INTERRUPT: {
2715     sqlite3_interrupt(pDb->db);
2716     break;
2717   }
2718 
2719   /*
2720   **     $db nullvalue ?STRING?
2721   **
2722   ** Change text used when a NULL comes back from the database. If ?STRING?
2723   ** is not present, then the current string used for NULL is returned.
2724   ** If STRING is present, then STRING is returned.
2725   **
2726   */
2727   case DB_NULLVALUE: {
2728     if( objc!=2 && objc!=3 ){
2729       Tcl_WrongNumArgs(interp, 2, objv, "NULLVALUE");
2730       return TCL_ERROR;
2731     }
2732     if( objc==3 ){
2733       int len;
2734       char *zNull = Tcl_GetStringFromObj(objv[2], &len);
2735       if( pDb->zNull ){
2736         Tcl_Free(pDb->zNull);
2737       }
2738       if( zNull && len>0 ){
2739         pDb->zNull = Tcl_Alloc( len + 1 );
2740         memcpy(pDb->zNull, zNull, len);
2741         pDb->zNull[len] = '\0';
2742       }else{
2743         pDb->zNull = 0;
2744       }
2745     }
2746     Tcl_SetObjResult(interp, Tcl_NewStringObj(pDb->zNull, -1));
2747     break;
2748   }
2749 
2750   /*
2751   **     $db last_insert_rowid
2752   **
2753   ** Return an integer which is the ROWID for the most recent insert.
2754   */
2755   case DB_LAST_INSERT_ROWID: {
2756     Tcl_Obj *pResult;
2757     Tcl_WideInt rowid;
2758     if( objc!=2 ){
2759       Tcl_WrongNumArgs(interp, 2, objv, "");
2760       return TCL_ERROR;
2761     }
2762     rowid = sqlite3_last_insert_rowid(pDb->db);
2763     pResult = Tcl_GetObjResult(interp);
2764     Tcl_SetWideIntObj(pResult, rowid);
2765     break;
2766   }
2767 
2768   /*
2769   ** The DB_ONECOLUMN method is implemented together with DB_EXISTS.
2770   */
2771 
2772   /*    $db progress ?N CALLBACK?
2773   **
2774   ** Invoke the given callback every N virtual machine opcodes while executing
2775   ** queries.
2776   */
2777   case DB_PROGRESS: {
2778     if( objc==2 ){
2779       if( pDb->zProgress ){
2780         Tcl_AppendResult(interp, pDb->zProgress, (char*)0);
2781       }
2782     }else if( objc==4 ){
2783       char *zProgress;
2784       int len;
2785       int N;
2786       if( TCL_OK!=Tcl_GetIntFromObj(interp, objv[2], &N) ){
2787         return TCL_ERROR;
2788       };
2789       if( pDb->zProgress ){
2790         Tcl_Free(pDb->zProgress);
2791       }
2792       zProgress = Tcl_GetStringFromObj(objv[3], &len);
2793       if( zProgress && len>0 ){
2794         pDb->zProgress = Tcl_Alloc( len + 1 );
2795         memcpy(pDb->zProgress, zProgress, len+1);
2796       }else{
2797         pDb->zProgress = 0;
2798       }
2799 #ifndef SQLITE_OMIT_PROGRESS_CALLBACK
2800       if( pDb->zProgress ){
2801         pDb->interp = interp;
2802         sqlite3_progress_handler(pDb->db, N, DbProgressHandler, pDb);
2803       }else{
2804         sqlite3_progress_handler(pDb->db, 0, 0, 0);
2805       }
2806 #endif
2807     }else{
2808       Tcl_WrongNumArgs(interp, 2, objv, "N CALLBACK");
2809       return TCL_ERROR;
2810     }
2811     break;
2812   }
2813 
2814   /*    $db profile ?CALLBACK?
2815   **
2816   ** Make arrangements to invoke the CALLBACK routine after each SQL statement
2817   ** that has run.  The text of the SQL and the amount of elapse time are
2818   ** appended to CALLBACK before the script is run.
2819   */
2820   case DB_PROFILE: {
2821     if( objc>3 ){
2822       Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?");
2823       return TCL_ERROR;
2824     }else if( objc==2 ){
2825       if( pDb->zProfile ){
2826         Tcl_AppendResult(interp, pDb->zProfile, (char*)0);
2827       }
2828     }else{
2829       char *zProfile;
2830       int len;
2831       if( pDb->zProfile ){
2832         Tcl_Free(pDb->zProfile);
2833       }
2834       zProfile = Tcl_GetStringFromObj(objv[2], &len);
2835       if( zProfile && len>0 ){
2836         pDb->zProfile = Tcl_Alloc( len + 1 );
2837         memcpy(pDb->zProfile, zProfile, len+1);
2838       }else{
2839         pDb->zProfile = 0;
2840       }
2841 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \
2842     !defined(SQLITE_OMIT_DEPRECATED)
2843       if( pDb->zProfile ){
2844         pDb->interp = interp;
2845         sqlite3_profile(pDb->db, DbProfileHandler, pDb);
2846       }else{
2847         sqlite3_profile(pDb->db, 0, 0);
2848       }
2849 #endif
2850     }
2851     break;
2852   }
2853 
2854   /*
2855   **     $db rekey KEY
2856   **
2857   ** Change the encryption key on the currently open database.
2858   */
2859   case DB_REKEY: {
2860 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL)
2861     int nKey;
2862     void *pKey;
2863 #endif
2864     if( objc!=3 ){
2865       Tcl_WrongNumArgs(interp, 2, objv, "KEY");
2866       return TCL_ERROR;
2867     }
2868 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL)
2869     pKey = Tcl_GetByteArrayFromObj(objv[2], &nKey);
2870     rc = sqlite3_rekey(pDb->db, pKey, nKey);
2871     if( rc ){
2872       Tcl_AppendResult(interp, sqlite3_errstr(rc), (char*)0);
2873       rc = TCL_ERROR;
2874     }
2875 #endif
2876     break;
2877   }
2878 
2879   /*    $db restore ?DATABASE? FILENAME
2880   **
2881   ** Open a database file named FILENAME.  Transfer the content
2882   ** of FILENAME into the local database DATABASE (default: "main").
2883   */
2884   case DB_RESTORE: {
2885     const char *zSrcFile;
2886     const char *zDestDb;
2887     sqlite3 *pSrc;
2888     sqlite3_backup *pBackup;
2889     int nTimeout = 0;
2890 
2891     if( objc==3 ){
2892       zDestDb = "main";
2893       zSrcFile = Tcl_GetString(objv[2]);
2894     }else if( objc==4 ){
2895       zDestDb = Tcl_GetString(objv[2]);
2896       zSrcFile = Tcl_GetString(objv[3]);
2897     }else{
2898       Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE? FILENAME");
2899       return TCL_ERROR;
2900     }
2901     rc = sqlite3_open_v2(zSrcFile, &pSrc,
2902                          SQLITE_OPEN_READONLY | pDb->openFlags, 0);
2903     if( rc!=SQLITE_OK ){
2904       Tcl_AppendResult(interp, "cannot open source database: ",
2905            sqlite3_errmsg(pSrc), (char*)0);
2906       sqlite3_close(pSrc);
2907       return TCL_ERROR;
2908     }
2909     pBackup = sqlite3_backup_init(pDb->db, zDestDb, pSrc, "main");
2910     if( pBackup==0 ){
2911       Tcl_AppendResult(interp, "restore failed: ",
2912            sqlite3_errmsg(pDb->db), (char*)0);
2913       sqlite3_close(pSrc);
2914       return TCL_ERROR;
2915     }
2916     while( (rc = sqlite3_backup_step(pBackup,100))==SQLITE_OK
2917               || rc==SQLITE_BUSY ){
2918       if( rc==SQLITE_BUSY ){
2919         if( nTimeout++ >= 3 ) break;
2920         sqlite3_sleep(100);
2921       }
2922     }
2923     sqlite3_backup_finish(pBackup);
2924     if( rc==SQLITE_DONE ){
2925       rc = TCL_OK;
2926     }else if( rc==SQLITE_BUSY || rc==SQLITE_LOCKED ){
2927       Tcl_AppendResult(interp, "restore failed: source database busy",
2928                        (char*)0);
2929       rc = TCL_ERROR;
2930     }else{
2931       Tcl_AppendResult(interp, "restore failed: ",
2932            sqlite3_errmsg(pDb->db), (char*)0);
2933       rc = TCL_ERROR;
2934     }
2935     sqlite3_close(pSrc);
2936     break;
2937   }
2938 
2939   /*
2940   **     $db serialize ?DATABASE?
2941   **
2942   ** Return a serialization of a database.
2943   */
2944   case DB_SERIALIZE: {
2945 #ifndef SQLITE_ENABLE_DESERIALIZE
2946     Tcl_AppendResult(interp, "MEMDB not available in this build",
2947                      (char*)0);
2948     rc = TCL_ERROR;
2949 #else
2950     const char *zSchema = objc>=3 ? Tcl_GetString(objv[2]) : "main";
2951     sqlite3_int64 sz = 0;
2952     unsigned char *pData;
2953     if( objc!=2 && objc!=3 ){
2954       Tcl_WrongNumArgs(interp, 2, objv, "?DATABASE?");
2955       rc = TCL_ERROR;
2956     }else{
2957       int needFree;
2958       pData = sqlite3_serialize(pDb->db, zSchema, &sz, SQLITE_SERIALIZE_NOCOPY);
2959       if( pData ){
2960         needFree = 0;
2961       }else{
2962         pData = sqlite3_serialize(pDb->db, zSchema, &sz, 0);
2963         needFree = 1;
2964       }
2965       Tcl_SetObjResult(interp, Tcl_NewByteArrayObj(pData,sz));
2966       if( needFree ) sqlite3_free(pData);
2967     }
2968 #endif
2969     break;
2970   }
2971 
2972   /*
2973   **     $db status (step|sort|autoindex|vmstep)
2974   **
2975   ** Display SQLITE_STMTSTATUS_FULLSCAN_STEP or
2976   ** SQLITE_STMTSTATUS_SORT for the most recent eval.
2977   */
2978   case DB_STATUS: {
2979     int v;
2980     const char *zOp;
2981     if( objc!=3 ){
2982       Tcl_WrongNumArgs(interp, 2, objv, "(step|sort|autoindex)");
2983       return TCL_ERROR;
2984     }
2985     zOp = Tcl_GetString(objv[2]);
2986     if( strcmp(zOp, "step")==0 ){
2987       v = pDb->nStep;
2988     }else if( strcmp(zOp, "sort")==0 ){
2989       v = pDb->nSort;
2990     }else if( strcmp(zOp, "autoindex")==0 ){
2991       v = pDb->nIndex;
2992     }else if( strcmp(zOp, "vmstep")==0 ){
2993       v = pDb->nVMStep;
2994     }else{
2995       Tcl_AppendResult(interp,
2996             "bad argument: should be autoindex, step, sort or vmstep",
2997             (char*)0);
2998       return TCL_ERROR;
2999     }
3000     Tcl_SetObjResult(interp, Tcl_NewIntObj(v));
3001     break;
3002   }
3003 
3004   /*
3005   **     $db timeout MILLESECONDS
3006   **
3007   ** Delay for the number of milliseconds specified when a file is locked.
3008   */
3009   case DB_TIMEOUT: {
3010     int ms;
3011     if( objc!=3 ){
3012       Tcl_WrongNumArgs(interp, 2, objv, "MILLISECONDS");
3013       return TCL_ERROR;
3014     }
3015     if( Tcl_GetIntFromObj(interp, objv[2], &ms) ) return TCL_ERROR;
3016     sqlite3_busy_timeout(pDb->db, ms);
3017     break;
3018   }
3019 
3020   /*
3021   **     $db total_changes
3022   **
3023   ** Return the number of rows that were modified, inserted, or deleted
3024   ** since the database handle was created.
3025   */
3026   case DB_TOTAL_CHANGES: {
3027     Tcl_Obj *pResult;
3028     if( objc!=2 ){
3029       Tcl_WrongNumArgs(interp, 2, objv, "");
3030       return TCL_ERROR;
3031     }
3032     pResult = Tcl_GetObjResult(interp);
3033     Tcl_SetIntObj(pResult, sqlite3_total_changes(pDb->db));
3034     break;
3035   }
3036 
3037   /*    $db trace ?CALLBACK?
3038   **
3039   ** Make arrangements to invoke the CALLBACK routine for each SQL statement
3040   ** that is executed.  The text of the SQL is appended to CALLBACK before
3041   ** it is executed.
3042   */
3043   case DB_TRACE: {
3044     if( objc>3 ){
3045       Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK?");
3046       return TCL_ERROR;
3047     }else if( objc==2 ){
3048       if( pDb->zTrace ){
3049         Tcl_AppendResult(interp, pDb->zTrace, (char*)0);
3050       }
3051     }else{
3052       char *zTrace;
3053       int len;
3054       if( pDb->zTrace ){
3055         Tcl_Free(pDb->zTrace);
3056       }
3057       zTrace = Tcl_GetStringFromObj(objv[2], &len);
3058       if( zTrace && len>0 ){
3059         pDb->zTrace = Tcl_Alloc( len + 1 );
3060         memcpy(pDb->zTrace, zTrace, len+1);
3061       }else{
3062         pDb->zTrace = 0;
3063       }
3064 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT) && \
3065     !defined(SQLITE_OMIT_DEPRECATED)
3066       if( pDb->zTrace ){
3067         pDb->interp = interp;
3068         sqlite3_trace(pDb->db, DbTraceHandler, pDb);
3069       }else{
3070         sqlite3_trace(pDb->db, 0, 0);
3071       }
3072 #endif
3073     }
3074     break;
3075   }
3076 
3077   /*    $db trace_v2 ?CALLBACK? ?MASK?
3078   **
3079   ** Make arrangements to invoke the CALLBACK routine for each trace event
3080   ** matching the mask that is generated.  The parameters are appended to
3081   ** CALLBACK before it is executed.
3082   */
3083   case DB_TRACE_V2: {
3084     if( objc>4 ){
3085       Tcl_WrongNumArgs(interp, 2, objv, "?CALLBACK? ?MASK?");
3086       return TCL_ERROR;
3087     }else if( objc==2 ){
3088       if( pDb->zTraceV2 ){
3089         Tcl_AppendResult(interp, pDb->zTraceV2, (char*)0);
3090       }
3091     }else{
3092       char *zTraceV2;
3093       int len;
3094       Tcl_WideInt wMask = 0;
3095       if( objc==4 ){
3096         static const char *TTYPE_strs[] = {
3097           "statement", "profile", "row", "close", 0
3098         };
3099         enum TTYPE_enum {
3100           TTYPE_STMT, TTYPE_PROFILE, TTYPE_ROW, TTYPE_CLOSE
3101         };
3102         int i;
3103         if( TCL_OK!=Tcl_ListObjLength(interp, objv[3], &len) ){
3104           return TCL_ERROR;
3105         }
3106         for(i=0; i<len; i++){
3107           Tcl_Obj *pObj;
3108           int ttype;
3109           if( TCL_OK!=Tcl_ListObjIndex(interp, objv[3], i, &pObj) ){
3110             return TCL_ERROR;
3111           }
3112           if( Tcl_GetIndexFromObj(interp, pObj, TTYPE_strs, "trace type",
3113                                   0, &ttype)!=TCL_OK ){
3114             Tcl_WideInt wType;
3115             Tcl_Obj *pError = Tcl_DuplicateObj(Tcl_GetObjResult(interp));
3116             Tcl_IncrRefCount(pError);
3117             if( TCL_OK==Tcl_GetWideIntFromObj(interp, pObj, &wType) ){
3118               Tcl_DecrRefCount(pError);
3119               wMask |= wType;
3120             }else{
3121               Tcl_SetObjResult(interp, pError);
3122               Tcl_DecrRefCount(pError);
3123               return TCL_ERROR;
3124             }
3125           }else{
3126             switch( (enum TTYPE_enum)ttype ){
3127               case TTYPE_STMT:    wMask |= SQLITE_TRACE_STMT;    break;
3128               case TTYPE_PROFILE: wMask |= SQLITE_TRACE_PROFILE; break;
3129               case TTYPE_ROW:     wMask |= SQLITE_TRACE_ROW;     break;
3130               case TTYPE_CLOSE:   wMask |= SQLITE_TRACE_CLOSE;   break;
3131             }
3132           }
3133         }
3134       }else{
3135         wMask = SQLITE_TRACE_STMT; /* use the "legacy" default */
3136       }
3137       if( pDb->zTraceV2 ){
3138         Tcl_Free(pDb->zTraceV2);
3139       }
3140       zTraceV2 = Tcl_GetStringFromObj(objv[2], &len);
3141       if( zTraceV2 && len>0 ){
3142         pDb->zTraceV2 = Tcl_Alloc( len + 1 );
3143         memcpy(pDb->zTraceV2, zTraceV2, len+1);
3144       }else{
3145         pDb->zTraceV2 = 0;
3146       }
3147 #if !defined(SQLITE_OMIT_TRACE) && !defined(SQLITE_OMIT_FLOATING_POINT)
3148       if( pDb->zTraceV2 ){
3149         pDb->interp = interp;
3150         sqlite3_trace_v2(pDb->db, (unsigned)wMask, DbTraceV2Handler, pDb);
3151       }else{
3152         sqlite3_trace_v2(pDb->db, 0, 0, 0);
3153       }
3154 #endif
3155     }
3156     break;
3157   }
3158 
3159   /*    $db transaction [-deferred|-immediate|-exclusive] SCRIPT
3160   **
3161   ** Start a new transaction (if we are not already in the midst of a
3162   ** transaction) and execute the TCL script SCRIPT.  After SCRIPT
3163   ** completes, either commit the transaction or roll it back if SCRIPT
3164   ** throws an exception.  Or if no new transation was started, do nothing.
3165   ** pass the exception on up the stack.
3166   **
3167   ** This command was inspired by Dave Thomas's talk on Ruby at the
3168   ** 2005 O'Reilly Open Source Convention (OSCON).
3169   */
3170   case DB_TRANSACTION: {
3171     Tcl_Obj *pScript;
3172     const char *zBegin = "SAVEPOINT _tcl_transaction";
3173     if( objc!=3 && objc!=4 ){
3174       Tcl_WrongNumArgs(interp, 2, objv, "[TYPE] SCRIPT");
3175       return TCL_ERROR;
3176     }
3177 
3178     if( pDb->nTransaction==0 && objc==4 ){
3179       static const char *TTYPE_strs[] = {
3180         "deferred",   "exclusive",  "immediate", 0
3181       };
3182       enum TTYPE_enum {
3183         TTYPE_DEFERRED, TTYPE_EXCLUSIVE, TTYPE_IMMEDIATE
3184       };
3185       int ttype;
3186       if( Tcl_GetIndexFromObj(interp, objv[2], TTYPE_strs, "transaction type",
3187                               0, &ttype) ){
3188         return TCL_ERROR;
3189       }
3190       switch( (enum TTYPE_enum)ttype ){
3191         case TTYPE_DEFERRED:    /* no-op */;                 break;
3192         case TTYPE_EXCLUSIVE:   zBegin = "BEGIN EXCLUSIVE";  break;
3193         case TTYPE_IMMEDIATE:   zBegin = "BEGIN IMMEDIATE";  break;
3194       }
3195     }
3196     pScript = objv[objc-1];
3197 
3198     /* Run the SQLite BEGIN command to open a transaction or savepoint. */
3199     pDb->disableAuth++;
3200     rc = sqlite3_exec(pDb->db, zBegin, 0, 0, 0);
3201     pDb->disableAuth--;
3202     if( rc!=SQLITE_OK ){
3203       Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0);
3204       return TCL_ERROR;
3205     }
3206     pDb->nTransaction++;
3207 
3208     /* If using NRE, schedule a callback to invoke the script pScript, then
3209     ** a second callback to commit (or rollback) the transaction or savepoint
3210     ** opened above. If not using NRE, evaluate the script directly, then
3211     ** call function DbTransPostCmd() to commit (or rollback) the transaction
3212     ** or savepoint.  */
3213     if( DbUseNre() ){
3214       Tcl_NRAddCallback(interp, DbTransPostCmd, cd, 0, 0, 0);
3215       (void)Tcl_NREvalObj(interp, pScript, 0);
3216     }else{
3217       rc = DbTransPostCmd(&cd, interp, Tcl_EvalObjEx(interp, pScript, 0));
3218     }
3219     break;
3220   }
3221 
3222   /*
3223   **    $db unlock_notify ?script?
3224   */
3225   case DB_UNLOCK_NOTIFY: {
3226 #ifndef SQLITE_ENABLE_UNLOCK_NOTIFY
3227     Tcl_AppendResult(interp, "unlock_notify not available in this build",
3228                      (char*)0);
3229     rc = TCL_ERROR;
3230 #else
3231     if( objc!=2 && objc!=3 ){
3232       Tcl_WrongNumArgs(interp, 2, objv, "?SCRIPT?");
3233       rc = TCL_ERROR;
3234     }else{
3235       void (*xNotify)(void **, int) = 0;
3236       void *pNotifyArg = 0;
3237 
3238       if( pDb->pUnlockNotify ){
3239         Tcl_DecrRefCount(pDb->pUnlockNotify);
3240         pDb->pUnlockNotify = 0;
3241       }
3242 
3243       if( objc==3 ){
3244         xNotify = DbUnlockNotify;
3245         pNotifyArg = (void *)pDb;
3246         pDb->pUnlockNotify = objv[2];
3247         Tcl_IncrRefCount(pDb->pUnlockNotify);
3248       }
3249 
3250       if( sqlite3_unlock_notify(pDb->db, xNotify, pNotifyArg) ){
3251         Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0);
3252         rc = TCL_ERROR;
3253       }
3254     }
3255 #endif
3256     break;
3257   }
3258 
3259   /*
3260   **    $db preupdate_hook count
3261   **    $db preupdate_hook hook ?SCRIPT?
3262   **    $db preupdate_hook new INDEX
3263   **    $db preupdate_hook old INDEX
3264   */
3265   case DB_PREUPDATE: {
3266 #ifndef SQLITE_ENABLE_PREUPDATE_HOOK
3267     Tcl_AppendResult(interp, "preupdate_hook was omitted at compile-time",
3268                      (char*)0);
3269     rc = TCL_ERROR;
3270 #else
3271     static const char *azSub[] = {"count", "depth", "hook", "new", "old", 0};
3272     enum DbPreupdateSubCmd {
3273       PRE_COUNT, PRE_DEPTH, PRE_HOOK, PRE_NEW, PRE_OLD
3274     };
3275     int iSub;
3276 
3277     if( objc<3 ){
3278       Tcl_WrongNumArgs(interp, 2, objv, "SUB-COMMAND ?ARGS?");
3279     }
3280     if( Tcl_GetIndexFromObj(interp, objv[2], azSub, "sub-command", 0, &iSub) ){
3281       return TCL_ERROR;
3282     }
3283 
3284     switch( (enum DbPreupdateSubCmd)iSub ){
3285       case PRE_COUNT: {
3286         int nCol = sqlite3_preupdate_count(pDb->db);
3287         Tcl_SetObjResult(interp, Tcl_NewIntObj(nCol));
3288         break;
3289       }
3290 
3291       case PRE_HOOK: {
3292         if( objc>4 ){
3293           Tcl_WrongNumArgs(interp, 2, objv, "hook ?SCRIPT?");
3294           return TCL_ERROR;
3295         }
3296         DbHookCmd(interp, pDb, (objc==4 ? objv[3] : 0), &pDb->pPreUpdateHook);
3297         break;
3298       }
3299 
3300       case PRE_DEPTH: {
3301         Tcl_Obj *pRet;
3302         if( objc!=3 ){
3303           Tcl_WrongNumArgs(interp, 3, objv, "");
3304           return TCL_ERROR;
3305         }
3306         pRet = Tcl_NewIntObj(sqlite3_preupdate_depth(pDb->db));
3307         Tcl_SetObjResult(interp, pRet);
3308         break;
3309       }
3310 
3311       case PRE_NEW:
3312       case PRE_OLD: {
3313         int iIdx;
3314         sqlite3_value *pValue;
3315         if( objc!=4 ){
3316           Tcl_WrongNumArgs(interp, 3, objv, "INDEX");
3317           return TCL_ERROR;
3318         }
3319         if( Tcl_GetIntFromObj(interp, objv[3], &iIdx) ){
3320           return TCL_ERROR;
3321         }
3322 
3323         if( iSub==PRE_OLD ){
3324           rc = sqlite3_preupdate_old(pDb->db, iIdx, &pValue);
3325         }else{
3326           assert( iSub==PRE_NEW );
3327           rc = sqlite3_preupdate_new(pDb->db, iIdx, &pValue);
3328         }
3329 
3330         if( rc==SQLITE_OK ){
3331           Tcl_Obj *pObj;
3332           pObj = Tcl_NewStringObj((char*)sqlite3_value_text(pValue), -1);
3333           Tcl_SetObjResult(interp, pObj);
3334         }else{
3335           Tcl_AppendResult(interp, sqlite3_errmsg(pDb->db), (char*)0);
3336           return TCL_ERROR;
3337         }
3338       }
3339     }
3340 #endif /* SQLITE_ENABLE_PREUPDATE_HOOK */
3341     break;
3342   }
3343 
3344   /*
3345   **    $db wal_hook ?script?
3346   **    $db update_hook ?script?
3347   **    $db rollback_hook ?script?
3348   */
3349   case DB_WAL_HOOK:
3350   case DB_UPDATE_HOOK:
3351   case DB_ROLLBACK_HOOK: {
3352     /* set ppHook to point at pUpdateHook or pRollbackHook, depending on
3353     ** whether [$db update_hook] or [$db rollback_hook] was invoked.
3354     */
3355     Tcl_Obj **ppHook = 0;
3356     if( choice==DB_WAL_HOOK ) ppHook = &pDb->pWalHook;
3357     if( choice==DB_UPDATE_HOOK ) ppHook = &pDb->pUpdateHook;
3358     if( choice==DB_ROLLBACK_HOOK ) ppHook = &pDb->pRollbackHook;
3359     if( objc>3 ){
3360        Tcl_WrongNumArgs(interp, 2, objv, "?SCRIPT?");
3361        return TCL_ERROR;
3362     }
3363 
3364     DbHookCmd(interp, pDb, (objc==3 ? objv[2] : 0), ppHook);
3365     break;
3366   }
3367 
3368   /*    $db version
3369   **
3370   ** Return the version string for this database.
3371   */
3372   case DB_VERSION: {
3373     int i;
3374     for(i=2; i<objc; i++){
3375       const char *zArg = Tcl_GetString(objv[i]);
3376       /* Optional arguments to $db version are used for testing purpose */
3377 #ifdef SQLITE_TEST
3378       /* $db version -use-legacy-prepare BOOLEAN
3379       **
3380       ** Turn the use of legacy sqlite3_prepare() on or off.
3381       */
3382       if( strcmp(zArg, "-use-legacy-prepare")==0 && i+1<objc ){
3383         i++;
3384         if( Tcl_GetBooleanFromObj(interp, objv[i], &pDb->bLegacyPrepare) ){
3385           return TCL_ERROR;
3386         }
3387       }else
3388 
3389       /* $db version -last-stmt-ptr
3390       **
3391       ** Return a string which is a hex encoding of the pointer to the
3392       ** most recent sqlite3_stmt in the statement cache.
3393       */
3394       if( strcmp(zArg, "-last-stmt-ptr")==0 ){
3395         char zBuf[100];
3396         sqlite3_snprintf(sizeof(zBuf), zBuf, "%p",
3397                          pDb->stmtList ? pDb->stmtList->pStmt: 0);
3398         Tcl_SetResult(interp, zBuf, TCL_VOLATILE);
3399       }else
3400 #endif /* SQLITE_TEST */
3401       {
3402         Tcl_AppendResult(interp, "unknown argument: ", zArg, (char*)0);
3403         return TCL_ERROR;
3404       }
3405     }
3406     if( i==2 ){
3407       Tcl_SetResult(interp, (char *)sqlite3_libversion(), TCL_STATIC);
3408     }
3409     break;
3410   }
3411 
3412 
3413   } /* End of the SWITCH statement */
3414   return rc;
3415 }
3416 
3417 #if SQLITE_TCL_NRE
3418 /*
3419 ** Adaptor that provides an objCmd interface to the NRE-enabled
3420 ** interface implementation.
3421 */
3422 static int SQLITE_TCLAPI DbObjCmdAdaptor(
3423   void *cd,
3424   Tcl_Interp *interp,
3425   int objc,
3426   Tcl_Obj *const*objv
3427 ){
3428   return Tcl_NRCallObjProc(interp, DbObjCmd, cd, objc, objv);
3429 }
3430 #endif /* SQLITE_TCL_NRE */
3431 
3432 /*
3433 ** Issue the usage message when the "sqlite3" command arguments are
3434 ** incorrect.
3435 */
3436 static int sqliteCmdUsage(
3437   Tcl_Interp *interp,
3438   Tcl_Obj *const*objv
3439 ){
3440   Tcl_WrongNumArgs(interp, 1, objv,
3441     "HANDLE ?FILENAME? ?-vfs VFSNAME? ?-readonly BOOLEAN? ?-create BOOLEAN?"
3442     " ?-nomutex BOOLEAN? ?-fullmutex BOOLEAN? ?-uri BOOLEAN?"
3443 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL)
3444     " ?-key CODECKEY?"
3445 #endif
3446   );
3447   return TCL_ERROR;
3448 }
3449 
3450 /*
3451 **   sqlite3 DBNAME FILENAME ?-vfs VFSNAME? ?-key KEY? ?-readonly BOOLEAN?
3452 **                           ?-create BOOLEAN? ?-nomutex BOOLEAN?
3453 **
3454 ** This is the main Tcl command.  When the "sqlite" Tcl command is
3455 ** invoked, this routine runs to process that command.
3456 **
3457 ** The first argument, DBNAME, is an arbitrary name for a new
3458 ** database connection.  This command creates a new command named
3459 ** DBNAME that is used to control that connection.  The database
3460 ** connection is deleted when the DBNAME command is deleted.
3461 **
3462 ** The second argument is the name of the database file.
3463 **
3464 */
3465 static int SQLITE_TCLAPI DbMain(
3466   void *cd,
3467   Tcl_Interp *interp,
3468   int objc,
3469   Tcl_Obj *const*objv
3470 ){
3471   SqliteDb *p;
3472   const char *zArg;
3473   char *zErrMsg;
3474   int i;
3475   const char *zFile = 0;
3476   const char *zVfs = 0;
3477   int flags;
3478   Tcl_DString translatedFilename;
3479 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL)
3480   void *pKey = 0;
3481   int nKey = 0;
3482 #endif
3483   int rc;
3484 
3485   /* In normal use, each TCL interpreter runs in a single thread.  So
3486   ** by default, we can turn off mutexing on SQLite database connections.
3487   ** However, for testing purposes it is useful to have mutexes turned
3488   ** on.  So, by default, mutexes default off.  But if compiled with
3489   ** SQLITE_TCL_DEFAULT_FULLMUTEX then mutexes default on.
3490   */
3491 #ifdef SQLITE_TCL_DEFAULT_FULLMUTEX
3492   flags = SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE | SQLITE_OPEN_FULLMUTEX;
3493 #else
3494   flags = SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE | SQLITE_OPEN_NOMUTEX;
3495 #endif
3496 
3497   if( objc==2 ){
3498     zArg = Tcl_GetStringFromObj(objv[1], 0);
3499     if( strcmp(zArg,"-version")==0 ){
3500       Tcl_AppendResult(interp,sqlite3_libversion(), (char*)0);
3501       return TCL_OK;
3502     }
3503     if( strcmp(zArg,"-sourceid")==0 ){
3504       Tcl_AppendResult(interp,sqlite3_sourceid(), (char*)0);
3505       return TCL_OK;
3506     }
3507     if( strcmp(zArg,"-has-codec")==0 ){
3508 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL)
3509       Tcl_AppendResult(interp,"1",(char*)0);
3510 #else
3511       Tcl_AppendResult(interp,"0",(char*)0);
3512 #endif
3513       return TCL_OK;
3514     }
3515     if( zArg[0]=='-' ) return sqliteCmdUsage(interp, objv);
3516   }
3517   for(i=2; i<objc; i++){
3518     zArg = Tcl_GetString(objv[i]);
3519     if( zArg[0]!='-' ){
3520       if( zFile!=0 ) return sqliteCmdUsage(interp, objv);
3521       zFile = zArg;
3522       continue;
3523     }
3524     if( i==objc-1 ) return sqliteCmdUsage(interp, objv);
3525     i++;
3526     if( strcmp(zArg,"-key")==0 ){
3527 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL)
3528       pKey = Tcl_GetByteArrayFromObj(objv[i], &nKey);
3529 #endif
3530     }else if( strcmp(zArg, "-vfs")==0 ){
3531       zVfs = Tcl_GetString(objv[i]);
3532     }else if( strcmp(zArg, "-readonly")==0 ){
3533       int b;
3534       if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR;
3535       if( b ){
3536         flags &= ~(SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE);
3537         flags |= SQLITE_OPEN_READONLY;
3538       }else{
3539         flags &= ~SQLITE_OPEN_READONLY;
3540         flags |= SQLITE_OPEN_READWRITE;
3541       }
3542     }else if( strcmp(zArg, "-create")==0 ){
3543       int b;
3544       if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR;
3545       if( b && (flags & SQLITE_OPEN_READONLY)==0 ){
3546         flags |= SQLITE_OPEN_CREATE;
3547       }else{
3548         flags &= ~SQLITE_OPEN_CREATE;
3549       }
3550     }else if( strcmp(zArg, "-nomutex")==0 ){
3551       int b;
3552       if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR;
3553       if( b ){
3554         flags |= SQLITE_OPEN_NOMUTEX;
3555         flags &= ~SQLITE_OPEN_FULLMUTEX;
3556       }else{
3557         flags &= ~SQLITE_OPEN_NOMUTEX;
3558       }
3559     }else if( strcmp(zArg, "-fullmutex")==0 ){
3560       int b;
3561       if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR;
3562       if( b ){
3563         flags |= SQLITE_OPEN_FULLMUTEX;
3564         flags &= ~SQLITE_OPEN_NOMUTEX;
3565       }else{
3566         flags &= ~SQLITE_OPEN_FULLMUTEX;
3567       }
3568     }else if( strcmp(zArg, "-uri")==0 ){
3569       int b;
3570       if( Tcl_GetBooleanFromObj(interp, objv[i], &b) ) return TCL_ERROR;
3571       if( b ){
3572         flags |= SQLITE_OPEN_URI;
3573       }else{
3574         flags &= ~SQLITE_OPEN_URI;
3575       }
3576     }else{
3577       Tcl_AppendResult(interp, "unknown option: ", zArg, (char*)0);
3578       return TCL_ERROR;
3579     }
3580   }
3581   zErrMsg = 0;
3582   p = (SqliteDb*)Tcl_Alloc( sizeof(*p) );
3583   memset(p, 0, sizeof(*p));
3584   if( zFile==0 ) zFile = "";
3585   zFile = Tcl_TranslateFileName(interp, zFile, &translatedFilename);
3586   rc = sqlite3_open_v2(zFile, &p->db, flags, zVfs);
3587   Tcl_DStringFree(&translatedFilename);
3588   if( p->db ){
3589     if( SQLITE_OK!=sqlite3_errcode(p->db) ){
3590       zErrMsg = sqlite3_mprintf("%s", sqlite3_errmsg(p->db));
3591       sqlite3_close(p->db);
3592       p->db = 0;
3593     }
3594   }else{
3595     zErrMsg = sqlite3_mprintf("%s", sqlite3_errstr(rc));
3596   }
3597 #if defined(SQLITE_HAS_CODEC) && !defined(SQLITE_OMIT_CODEC_FROM_TCL)
3598   if( p->db ){
3599     sqlite3_key(p->db, pKey, nKey);
3600   }
3601 #endif
3602   if( p->db==0 ){
3603     Tcl_SetResult(interp, zErrMsg, TCL_VOLATILE);
3604     Tcl_Free((char*)p);
3605     sqlite3_free(zErrMsg);
3606     return TCL_ERROR;
3607   }
3608   p->maxStmt = NUM_PREPARED_STMTS;
3609   p->openFlags = flags & SQLITE_OPEN_URI;
3610   p->interp = interp;
3611   zArg = Tcl_GetStringFromObj(objv[1], 0);
3612   if( DbUseNre() ){
3613     Tcl_NRCreateCommand(interp, zArg, DbObjCmdAdaptor, DbObjCmd,
3614                         (char*)p, DbDeleteCmd);
3615   }else{
3616     Tcl_CreateObjCommand(interp, zArg, DbObjCmd, (char*)p, DbDeleteCmd);
3617   }
3618   return TCL_OK;
3619 }
3620 
3621 /*
3622 ** Provide a dummy Tcl_InitStubs if we are using this as a static
3623 ** library.
3624 */
3625 #ifndef USE_TCL_STUBS
3626 # undef  Tcl_InitStubs
3627 # define Tcl_InitStubs(a,b,c) TCL_VERSION
3628 #endif
3629 
3630 /*
3631 ** Make sure we have a PACKAGE_VERSION macro defined.  This will be
3632 ** defined automatically by the TEA makefile.  But other makefiles
3633 ** do not define it.
3634 */
3635 #ifndef PACKAGE_VERSION
3636 # define PACKAGE_VERSION SQLITE_VERSION
3637 #endif
3638 
3639 /*
3640 ** Initialize this module.
3641 **
3642 ** This Tcl module contains only a single new Tcl command named "sqlite".
3643 ** (Hence there is no namespace.  There is no point in using a namespace
3644 ** if the extension only supplies one new name!)  The "sqlite" command is
3645 ** used to open a new SQLite database.  See the DbMain() routine above
3646 ** for additional information.
3647 **
3648 ** The EXTERN macros are required by TCL in order to work on windows.
3649 */
3650 EXTERN int Sqlite3_Init(Tcl_Interp *interp){
3651   int rc = Tcl_InitStubs(interp, "8.4", 0) ? TCL_OK : TCL_ERROR;
3652   if( rc==TCL_OK ){
3653     Tcl_CreateObjCommand(interp, "sqlite3", (Tcl_ObjCmdProc*)DbMain, 0, 0);
3654 #ifndef SQLITE_3_SUFFIX_ONLY
3655     /* The "sqlite" alias is undocumented.  It is here only to support
3656     ** legacy scripts.  All new scripts should use only the "sqlite3"
3657     ** command. */
3658     Tcl_CreateObjCommand(interp, "sqlite", (Tcl_ObjCmdProc*)DbMain, 0, 0);
3659 #endif
3660     rc = Tcl_PkgProvide(interp, "sqlite3", PACKAGE_VERSION);
3661   }
3662   return rc;
3663 }
3664 EXTERN int Tclsqlite3_Init(Tcl_Interp *interp){ return Sqlite3_Init(interp); }
3665 EXTERN int Sqlite3_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; }
3666 EXTERN int Tclsqlite3_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; }
3667 
3668 /* Because it accesses the file-system and uses persistent state, SQLite
3669 ** is not considered appropriate for safe interpreters.  Hence, we cause
3670 ** the _SafeInit() interfaces return TCL_ERROR.
3671 */
3672 EXTERN int Sqlite3_SafeInit(Tcl_Interp *interp){ return TCL_ERROR; }
3673 EXTERN int Sqlite3_SafeUnload(Tcl_Interp *interp, int flags){return TCL_ERROR;}
3674 
3675 
3676 
3677 #ifndef SQLITE_3_SUFFIX_ONLY
3678 int Sqlite_Init(Tcl_Interp *interp){ return Sqlite3_Init(interp); }
3679 int Tclsqlite_Init(Tcl_Interp *interp){ return Sqlite3_Init(interp); }
3680 int Sqlite_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; }
3681 int Tclsqlite_Unload(Tcl_Interp *interp, int flags){ return TCL_OK; }
3682 #endif
3683 
3684 /*
3685 ** If the TCLSH macro is defined, add code to make a stand-alone program.
3686 */
3687 #if defined(TCLSH)
3688 
3689 /* This is the main routine for an ordinary TCL shell.  If there are
3690 ** are arguments, run the first argument as a script.  Otherwise,
3691 ** read TCL commands from standard input
3692 */
3693 static const char *tclsh_main_loop(void){
3694   static const char zMainloop[] =
3695     "if {[llength $argv]>=1} {\n"
3696       "set argv0 [lindex $argv 0]\n"
3697       "set argv [lrange $argv 1 end]\n"
3698       "source $argv0\n"
3699     "} else {\n"
3700       "set line {}\n"
3701       "while {![eof stdin]} {\n"
3702         "if {$line!=\"\"} {\n"
3703           "puts -nonewline \"> \"\n"
3704         "} else {\n"
3705           "puts -nonewline \"% \"\n"
3706         "}\n"
3707         "flush stdout\n"
3708         "append line [gets stdin]\n"
3709         "if {[info complete $line]} {\n"
3710           "if {[catch {uplevel #0 $line} result]} {\n"
3711             "puts stderr \"Error: $result\"\n"
3712           "} elseif {$result!=\"\"} {\n"
3713             "puts $result\n"
3714           "}\n"
3715           "set line {}\n"
3716         "} else {\n"
3717           "append line \\n\n"
3718         "}\n"
3719       "}\n"
3720     "}\n"
3721   ;
3722   return zMainloop;
3723 }
3724 
3725 #define TCLSH_MAIN main   /* Needed to fake out mktclapp */
3726 int SQLITE_CDECL TCLSH_MAIN(int argc, char **argv){
3727   Tcl_Interp *interp;
3728   int i;
3729   const char *zScript = 0;
3730   char zArgc[32];
3731 #if defined(TCLSH_INIT_PROC)
3732   extern const char *TCLSH_INIT_PROC(Tcl_Interp*);
3733 #endif
3734 
3735 #if !defined(_WIN32_WCE)
3736   if( getenv("BREAK") ){
3737     fprintf(stderr,
3738         "attach debugger to process %d and press any key to continue.\n",
3739         GETPID());
3740     fgetc(stdin);
3741   }
3742 #endif
3743 
3744   /* Call sqlite3_shutdown() once before doing anything else. This is to
3745   ** test that sqlite3_shutdown() can be safely called by a process before
3746   ** sqlite3_initialize() is. */
3747   sqlite3_shutdown();
3748 
3749   Tcl_FindExecutable(argv[0]);
3750   Tcl_SetSystemEncoding(NULL, "utf-8");
3751   interp = Tcl_CreateInterp();
3752   Sqlite3_Init(interp);
3753 
3754   sqlite3_snprintf(sizeof(zArgc), zArgc, "%d", argc-1);
3755   Tcl_SetVar(interp,"argc", zArgc, TCL_GLOBAL_ONLY);
3756   Tcl_SetVar(interp,"argv0",argv[0],TCL_GLOBAL_ONLY);
3757   Tcl_SetVar(interp,"argv", "", TCL_GLOBAL_ONLY);
3758   for(i=1; i<argc; i++){
3759     Tcl_SetVar(interp, "argv", argv[i],
3760         TCL_GLOBAL_ONLY | TCL_LIST_ELEMENT | TCL_APPEND_VALUE);
3761   }
3762 #if defined(TCLSH_INIT_PROC)
3763   zScript = TCLSH_INIT_PROC(interp);
3764 #endif
3765   if( zScript==0 ){
3766     zScript = tclsh_main_loop();
3767   }
3768   if( Tcl_GlobalEval(interp, zScript)!=TCL_OK ){
3769     const char *zInfo = Tcl_GetVar(interp, "errorInfo", TCL_GLOBAL_ONLY);
3770     if( zInfo==0 ) zInfo = Tcl_GetStringResult(interp);
3771     fprintf(stderr,"%s: %s\n", *argv, zInfo);
3772     return 1;
3773   }
3774   return 0;
3775 }
3776 #endif /* TCLSH */
3777