xref: /sqlite-3.40.0/src/dbstat.c (revision f888158c)
1 /*
2 ** 2010 July 12
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 **
13 ** This file contains an implementation of the "dbstat" virtual table.
14 **
15 ** The dbstat virtual table is used to extract low-level formatting
16 ** information from an SQLite database in order to implement the
17 ** "sqlite3_analyzer" utility.  See the ../tool/spaceanal.tcl script
18 ** for an example implementation.
19 **
20 ** Additional information is available on the "dbstat.html" page of the
21 ** official SQLite documentation.
22 */
23 
24 #include "sqliteInt.h"   /* Requires access to internal data structures */
25 #if (defined(SQLITE_ENABLE_DBSTAT_VTAB) || defined(SQLITE_TEST)) \
26     && !defined(SQLITE_OMIT_VIRTUALTABLE)
27 
28 /*
29 ** Page paths:
30 **
31 **   The value of the 'path' column describes the path taken from the
32 **   root-node of the b-tree structure to each page. The value of the
33 **   root-node path is '/'.
34 **
35 **   The value of the path for the left-most child page of the root of
36 **   a b-tree is '/000/'. (Btrees store content ordered from left to right
37 **   so the pages to the left have smaller keys than the pages to the right.)
38 **   The next to left-most child of the root page is
39 **   '/001', and so on, each sibling page identified by a 3-digit hex
40 **   value. The children of the 451st left-most sibling have paths such
41 **   as '/1c2/000/, '/1c2/001/' etc.
42 **
43 **   Overflow pages are specified by appending a '+' character and a
44 **   six-digit hexadecimal value to the path to the cell they are linked
45 **   from. For example, the three overflow pages in a chain linked from
46 **   the left-most cell of the 450th child of the root page are identified
47 **   by the paths:
48 **
49 **      '/1c2/000+000000'         // First page in overflow chain
50 **      '/1c2/000+000001'         // Second page in overflow chain
51 **      '/1c2/000+000002'         // Third page in overflow chain
52 **
53 **   If the paths are sorted using the BINARY collation sequence, then
54 **   the overflow pages associated with a cell will appear earlier in the
55 **   sort-order than its child page:
56 **
57 **      '/1c2/000/'               // Left-most child of 451st child of root
58 */
59 #define VTAB_SCHEMA                                                         \
60   "CREATE TABLE xx( "                                                       \
61   "  name       TEXT,             /* Name of table or index */"             \
62   "  path       TEXT,             /* Path to page from root */"             \
63   "  pageno     INTEGER,          /* Page number */"                        \
64   "  pagetype   TEXT,             /* 'internal', 'leaf' or 'overflow' */"   \
65   "  ncell      INTEGER,          /* Cells on page (0 for overflow) */"     \
66   "  payload    INTEGER,          /* Bytes of payload on this page */"      \
67   "  unused     INTEGER,          /* Bytes of unused space on this page */" \
68   "  mx_payload INTEGER,          /* Largest payload size of all cells */"  \
69   "  pgoffset   INTEGER,          /* Offset of page in file */"             \
70   "  pgsize     INTEGER,          /* Size of the page */"                   \
71   "  schema     TEXT HIDDEN       /* Database schema being analyzed */"     \
72   ");"
73 
74 
75 typedef struct StatTable StatTable;
76 typedef struct StatCursor StatCursor;
77 typedef struct StatPage StatPage;
78 typedef struct StatCell StatCell;
79 
80 struct StatCell {
81   int nLocal;                     /* Bytes of local payload */
82   u32 iChildPg;                   /* Child node (or 0 if this is a leaf) */
83   int nOvfl;                      /* Entries in aOvfl[] */
84   u32 *aOvfl;                     /* Array of overflow page numbers */
85   int nLastOvfl;                  /* Bytes of payload on final overflow page */
86   int iOvfl;                      /* Iterates through aOvfl[] */
87 };
88 
89 struct StatPage {
90   u32 iPgno;
91   DbPage *pPg;
92   int iCell;
93 
94   char *zPath;                    /* Path to this page */
95 
96   /* Variables populated by statDecodePage(): */
97   u8 flags;                       /* Copy of flags byte */
98   int nCell;                      /* Number of cells on page */
99   int nUnused;                    /* Number of unused bytes on page */
100   StatCell *aCell;                /* Array of parsed cells */
101   u32 iRightChildPg;              /* Right-child page number (or 0) */
102   int nMxPayload;                 /* Largest payload of any cell on this page */
103 };
104 
105 struct StatCursor {
106   sqlite3_vtab_cursor base;
107   sqlite3_stmt *pStmt;            /* Iterates through set of root pages */
108   int isEof;                      /* After pStmt has returned SQLITE_DONE */
109   int iDb;                        /* Schema used for this query */
110 
111   StatPage aPage[32];
112   int iPage;                      /* Current entry in aPage[] */
113 
114   /* Values to return. */
115   char *zName;                    /* Value of 'name' column */
116   char *zPath;                    /* Value of 'path' column */
117   u32 iPageno;                    /* Value of 'pageno' column */
118   char *zPagetype;                /* Value of 'pagetype' column */
119   int nCell;                      /* Value of 'ncell' column */
120   int nPayload;                   /* Value of 'payload' column */
121   int nUnused;                    /* Value of 'unused' column */
122   int nMxPayload;                 /* Value of 'mx_payload' column */
123   i64 iOffset;                    /* Value of 'pgOffset' column */
124   int szPage;                     /* Value of 'pgSize' column */
125 };
126 
127 struct StatTable {
128   sqlite3_vtab base;
129   sqlite3 *db;
130   int iDb;                        /* Index of database to analyze */
131 };
132 
133 #ifndef get2byte
134 # define get2byte(x)   ((x)[0]<<8 | (x)[1])
135 #endif
136 
137 /*
138 ** Connect to or create a statvfs virtual table.
139 */
140 static int statConnect(
141   sqlite3 *db,
142   void *pAux,
143   int argc, const char *const*argv,
144   sqlite3_vtab **ppVtab,
145   char **pzErr
146 ){
147   StatTable *pTab = 0;
148   int rc = SQLITE_OK;
149   int iDb;
150 
151   if( argc>=4 ){
152     Token nm;
153     sqlite3TokenInit(&nm, (char*)argv[3]);
154     iDb = sqlite3FindDb(db, &nm);
155     if( iDb<0 ){
156       *pzErr = sqlite3_mprintf("no such database: %s", argv[3]);
157       return SQLITE_ERROR;
158     }
159   }else{
160     iDb = 0;
161   }
162   rc = sqlite3_declare_vtab(db, VTAB_SCHEMA);
163   if( rc==SQLITE_OK ){
164     pTab = (StatTable *)sqlite3_malloc64(sizeof(StatTable));
165     if( pTab==0 ) rc = SQLITE_NOMEM_BKPT;
166   }
167 
168   assert( rc==SQLITE_OK || pTab==0 );
169   if( rc==SQLITE_OK ){
170     memset(pTab, 0, sizeof(StatTable));
171     pTab->db = db;
172     pTab->iDb = iDb;
173   }
174 
175   *ppVtab = (sqlite3_vtab*)pTab;
176   return rc;
177 }
178 
179 /*
180 ** Disconnect from or destroy a statvfs virtual table.
181 */
182 static int statDisconnect(sqlite3_vtab *pVtab){
183   sqlite3_free(pVtab);
184   return SQLITE_OK;
185 }
186 
187 /*
188 ** There is no "best-index". This virtual table always does a linear
189 ** scan.  However, a schema=? constraint should cause this table to
190 ** operate on a different database schema, so check for it.
191 **
192 ** idxNum is normally 0, but will be 1 if a schema=? constraint exists.
193 */
194 static int statBestIndex(sqlite3_vtab *tab, sqlite3_index_info *pIdxInfo){
195   int i;
196 
197   pIdxInfo->estimatedCost = 1.0e6;  /* Initial cost estimate */
198 
199   /* Look for a valid schema=? constraint.  If found, change the idxNum to
200   ** 1 and request the value of that constraint be sent to xFilter.  And
201   ** lower the cost estimate to encourage the constrained version to be
202   ** used.
203   */
204   for(i=0; i<pIdxInfo->nConstraint; i++){
205     if( pIdxInfo->aConstraint[i].usable==0 ) continue;
206     if( pIdxInfo->aConstraint[i].op!=SQLITE_INDEX_CONSTRAINT_EQ ) continue;
207     if( pIdxInfo->aConstraint[i].iColumn!=10 ) continue;
208     pIdxInfo->idxNum = 1;
209     pIdxInfo->estimatedCost = 1.0;
210     pIdxInfo->aConstraintUsage[i].argvIndex = 1;
211     pIdxInfo->aConstraintUsage[i].omit = 1;
212     break;
213   }
214 
215 
216   /* Records are always returned in ascending order of (name, path).
217   ** If this will satisfy the client, set the orderByConsumed flag so that
218   ** SQLite does not do an external sort.
219   */
220   if( ( pIdxInfo->nOrderBy==1
221      && pIdxInfo->aOrderBy[0].iColumn==0
222      && pIdxInfo->aOrderBy[0].desc==0
223      ) ||
224       ( pIdxInfo->nOrderBy==2
225      && pIdxInfo->aOrderBy[0].iColumn==0
226      && pIdxInfo->aOrderBy[0].desc==0
227      && pIdxInfo->aOrderBy[1].iColumn==1
228      && pIdxInfo->aOrderBy[1].desc==0
229      )
230   ){
231     pIdxInfo->orderByConsumed = 1;
232   }
233 
234   return SQLITE_OK;
235 }
236 
237 /*
238 ** Open a new statvfs cursor.
239 */
240 static int statOpen(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCursor){
241   StatTable *pTab = (StatTable *)pVTab;
242   StatCursor *pCsr;
243 
244   pCsr = (StatCursor *)sqlite3_malloc64(sizeof(StatCursor));
245   if( pCsr==0 ){
246     return SQLITE_NOMEM_BKPT;
247   }else{
248     memset(pCsr, 0, sizeof(StatCursor));
249     pCsr->base.pVtab = pVTab;
250     pCsr->iDb = pTab->iDb;
251   }
252 
253   *ppCursor = (sqlite3_vtab_cursor *)pCsr;
254   return SQLITE_OK;
255 }
256 
257 static void statClearPage(StatPage *p){
258   int i;
259   if( p->aCell ){
260     for(i=0; i<p->nCell; i++){
261       sqlite3_free(p->aCell[i].aOvfl);
262     }
263     sqlite3_free(p->aCell);
264   }
265   sqlite3PagerUnref(p->pPg);
266   sqlite3_free(p->zPath);
267   memset(p, 0, sizeof(StatPage));
268 }
269 
270 static void statResetCsr(StatCursor *pCsr){
271   int i;
272   sqlite3_reset(pCsr->pStmt);
273   for(i=0; i<ArraySize(pCsr->aPage); i++){
274     statClearPage(&pCsr->aPage[i]);
275   }
276   pCsr->iPage = 0;
277   sqlite3_free(pCsr->zPath);
278   pCsr->zPath = 0;
279   pCsr->isEof = 0;
280 }
281 
282 /*
283 ** Close a statvfs cursor.
284 */
285 static int statClose(sqlite3_vtab_cursor *pCursor){
286   StatCursor *pCsr = (StatCursor *)pCursor;
287   statResetCsr(pCsr);
288   sqlite3_finalize(pCsr->pStmt);
289   sqlite3_free(pCsr);
290   return SQLITE_OK;
291 }
292 
293 static void getLocalPayload(
294   int nUsable,                    /* Usable bytes per page */
295   u8 flags,                       /* Page flags */
296   int nTotal,                     /* Total record (payload) size */
297   int *pnLocal                    /* OUT: Bytes stored locally */
298 ){
299   int nLocal;
300   int nMinLocal;
301   int nMaxLocal;
302 
303   if( flags==0x0D ){              /* Table leaf node */
304     nMinLocal = (nUsable - 12) * 32 / 255 - 23;
305     nMaxLocal = nUsable - 35;
306   }else{                          /* Index interior and leaf nodes */
307     nMinLocal = (nUsable - 12) * 32 / 255 - 23;
308     nMaxLocal = (nUsable - 12) * 64 / 255 - 23;
309   }
310 
311   nLocal = nMinLocal + (nTotal - nMinLocal) % (nUsable - 4);
312   if( nLocal>nMaxLocal ) nLocal = nMinLocal;
313   *pnLocal = nLocal;
314 }
315 
316 static int statDecodePage(Btree *pBt, StatPage *p){
317   int nUnused;
318   int iOff;
319   int nHdr;
320   int isLeaf;
321   int szPage;
322 
323   u8 *aData = sqlite3PagerGetData(p->pPg);
324   u8 *aHdr = &aData[p->iPgno==1 ? 100 : 0];
325 
326   p->flags = aHdr[0];
327   if( p->flags==0x0A || p->flags==0x0D ){
328     isLeaf = 1;
329     nHdr = 8;
330   }else if( p->flags==0x05 || p->flags==0x02 ){
331     isLeaf = 0;
332     nHdr = 12;
333   }else{
334     goto statPageIsCorrupt;
335   }
336   if( p->iPgno==1 ) nHdr += 100;
337   p->nCell = get2byte(&aHdr[3]);
338   p->nMxPayload = 0;
339   szPage = sqlite3BtreeGetPageSize(pBt);
340 
341   nUnused = get2byte(&aHdr[5]) - nHdr - 2*p->nCell;
342   nUnused += (int)aHdr[7];
343   iOff = get2byte(&aHdr[1]);
344   while( iOff ){
345     int iNext;
346     if( iOff>=szPage ) goto statPageIsCorrupt;
347     nUnused += get2byte(&aData[iOff+2]);
348     iNext = get2byte(&aData[iOff]);
349     if( iNext<iOff+4 && iNext>0 ) goto statPageIsCorrupt;
350     iOff = iNext;
351   }
352   p->nUnused = nUnused;
353   p->iRightChildPg = isLeaf ? 0 : sqlite3Get4byte(&aHdr[8]);
354 
355   if( p->nCell ){
356     int i;                        /* Used to iterate through cells */
357     int nUsable;                  /* Usable bytes per page */
358 
359     sqlite3BtreeEnter(pBt);
360     nUsable = szPage - sqlite3BtreeGetReserveNoMutex(pBt);
361     sqlite3BtreeLeave(pBt);
362     p->aCell = sqlite3_malloc64((p->nCell+1) * sizeof(StatCell));
363     if( p->aCell==0 ) return SQLITE_NOMEM_BKPT;
364     memset(p->aCell, 0, (p->nCell+1) * sizeof(StatCell));
365 
366     for(i=0; i<p->nCell; i++){
367       StatCell *pCell = &p->aCell[i];
368 
369       iOff = get2byte(&aData[nHdr+i*2]);
370       if( iOff<nHdr || iOff>=szPage ) goto statPageIsCorrupt;
371       if( !isLeaf ){
372         pCell->iChildPg = sqlite3Get4byte(&aData[iOff]);
373         iOff += 4;
374       }
375       if( p->flags==0x05 ){
376         /* A table interior node. nPayload==0. */
377       }else{
378         u32 nPayload;             /* Bytes of payload total (local+overflow) */
379         int nLocal;               /* Bytes of payload stored locally */
380         iOff += getVarint32(&aData[iOff], nPayload);
381         if( p->flags==0x0D ){
382           u64 dummy;
383           iOff += sqlite3GetVarint(&aData[iOff], &dummy);
384         }
385         if( nPayload>(u32)p->nMxPayload ) p->nMxPayload = nPayload;
386         getLocalPayload(nUsable, p->flags, nPayload, &nLocal);
387         if( nLocal<0 ) goto statPageIsCorrupt;
388         pCell->nLocal = nLocal;
389         assert( nPayload>=(u32)nLocal );
390         assert( nLocal<=(nUsable-35) );
391         if( nPayload>(u32)nLocal ){
392           int j;
393           int nOvfl = ((nPayload - nLocal) + nUsable-4 - 1) / (nUsable - 4);
394           pCell->nLastOvfl = (nPayload-nLocal) - (nOvfl-1) * (nUsable-4);
395           pCell->nOvfl = nOvfl;
396           pCell->aOvfl = sqlite3_malloc64(sizeof(u32)*nOvfl);
397           if( pCell->aOvfl==0 ) return SQLITE_NOMEM_BKPT;
398           pCell->aOvfl[0] = sqlite3Get4byte(&aData[iOff+nLocal]);
399           for(j=1; j<nOvfl; j++){
400             int rc;
401             u32 iPrev = pCell->aOvfl[j-1];
402             DbPage *pPg = 0;
403             rc = sqlite3PagerGet(sqlite3BtreePager(pBt), iPrev, &pPg, 0);
404             if( rc!=SQLITE_OK ){
405               assert( pPg==0 );
406               return rc;
407             }
408             pCell->aOvfl[j] = sqlite3Get4byte(sqlite3PagerGetData(pPg));
409             sqlite3PagerUnref(pPg);
410           }
411         }
412       }
413     }
414   }
415 
416   return SQLITE_OK;
417 
418 statPageIsCorrupt:
419   p->flags = 0;
420   p->nCell = 0;
421   return SQLITE_OK;
422 }
423 
424 /*
425 ** Populate the pCsr->iOffset and pCsr->szPage member variables. Based on
426 ** the current value of pCsr->iPageno.
427 */
428 static void statSizeAndOffset(StatCursor *pCsr){
429   StatTable *pTab = (StatTable *)((sqlite3_vtab_cursor *)pCsr)->pVtab;
430   Btree *pBt = pTab->db->aDb[pTab->iDb].pBt;
431   Pager *pPager = sqlite3BtreePager(pBt);
432   sqlite3_file *fd;
433   sqlite3_int64 x[2];
434 
435   /* The default page size and offset */
436   pCsr->szPage = sqlite3BtreeGetPageSize(pBt);
437   pCsr->iOffset = (i64)pCsr->szPage * (pCsr->iPageno - 1);
438 
439   /* If connected to a ZIPVFS backend, override the page size and
440   ** offset with actual values obtained from ZIPVFS.
441   */
442   fd = sqlite3PagerFile(pPager);
443   x[0] = pCsr->iPageno;
444   if( sqlite3OsFileControl(fd, 230440, &x)==SQLITE_OK ){
445     pCsr->iOffset = x[0];
446     pCsr->szPage = (int)x[1];
447   }
448 }
449 
450 /*
451 ** Move a statvfs cursor to the next entry in the file.
452 */
453 static int statNext(sqlite3_vtab_cursor *pCursor){
454   int rc;
455   int nPayload;
456   char *z;
457   StatCursor *pCsr = (StatCursor *)pCursor;
458   StatTable *pTab = (StatTable *)pCursor->pVtab;
459   Btree *pBt = pTab->db->aDb[pCsr->iDb].pBt;
460   Pager *pPager = sqlite3BtreePager(pBt);
461 
462   sqlite3_free(pCsr->zPath);
463   pCsr->zPath = 0;
464 
465 statNextRestart:
466   if( pCsr->aPage[0].pPg==0 ){
467     rc = sqlite3_step(pCsr->pStmt);
468     if( rc==SQLITE_ROW ){
469       int nPage;
470       u32 iRoot = (u32)sqlite3_column_int64(pCsr->pStmt, 1);
471       sqlite3PagerPagecount(pPager, &nPage);
472       if( nPage==0 ){
473         pCsr->isEof = 1;
474         return sqlite3_reset(pCsr->pStmt);
475       }
476       rc = sqlite3PagerGet(pPager, iRoot, &pCsr->aPage[0].pPg, 0);
477       pCsr->aPage[0].iPgno = iRoot;
478       pCsr->aPage[0].iCell = 0;
479       pCsr->aPage[0].zPath = z = sqlite3_mprintf("/");
480       pCsr->iPage = 0;
481       if( z==0 ) rc = SQLITE_NOMEM_BKPT;
482     }else{
483       pCsr->isEof = 1;
484       return sqlite3_reset(pCsr->pStmt);
485     }
486   }else{
487 
488     /* Page p itself has already been visited. */
489     StatPage *p = &pCsr->aPage[pCsr->iPage];
490 
491     while( p->iCell<p->nCell ){
492       StatCell *pCell = &p->aCell[p->iCell];
493       if( pCell->iOvfl<pCell->nOvfl ){
494         int nUsable;
495         sqlite3BtreeEnter(pBt);
496         nUsable = sqlite3BtreeGetPageSize(pBt) -
497                         sqlite3BtreeGetReserveNoMutex(pBt);
498         sqlite3BtreeLeave(pBt);
499         pCsr->zName = (char *)sqlite3_column_text(pCsr->pStmt, 0);
500         pCsr->iPageno = pCell->aOvfl[pCell->iOvfl];
501         pCsr->zPagetype = "overflow";
502         pCsr->nCell = 0;
503         pCsr->nMxPayload = 0;
504         pCsr->zPath = z = sqlite3_mprintf(
505             "%s%.3x+%.6x", p->zPath, p->iCell, pCell->iOvfl
506         );
507         if( pCell->iOvfl<pCell->nOvfl-1 ){
508           pCsr->nUnused = 0;
509           pCsr->nPayload = nUsable - 4;
510         }else{
511           pCsr->nPayload = pCell->nLastOvfl;
512           pCsr->nUnused = nUsable - 4 - pCsr->nPayload;
513         }
514         pCell->iOvfl++;
515         statSizeAndOffset(pCsr);
516         return z==0 ? SQLITE_NOMEM_BKPT : SQLITE_OK;
517       }
518       if( p->iRightChildPg ) break;
519       p->iCell++;
520     }
521 
522     if( !p->iRightChildPg || p->iCell>p->nCell ){
523       statClearPage(p);
524       if( pCsr->iPage==0 ) return statNext(pCursor);
525       pCsr->iPage--;
526       goto statNextRestart; /* Tail recursion */
527     }
528     pCsr->iPage++;
529     assert( p==&pCsr->aPage[pCsr->iPage-1] );
530 
531     if( p->iCell==p->nCell ){
532       p[1].iPgno = p->iRightChildPg;
533     }else{
534       p[1].iPgno = p->aCell[p->iCell].iChildPg;
535     }
536     rc = sqlite3PagerGet(pPager, p[1].iPgno, &p[1].pPg, 0);
537     p[1].iCell = 0;
538     p[1].zPath = z = sqlite3_mprintf("%s%.3x/", p->zPath, p->iCell);
539     p->iCell++;
540     if( z==0 ) rc = SQLITE_NOMEM_BKPT;
541   }
542 
543 
544   /* Populate the StatCursor fields with the values to be returned
545   ** by the xColumn() and xRowid() methods.
546   */
547   if( rc==SQLITE_OK ){
548     int i;
549     StatPage *p = &pCsr->aPage[pCsr->iPage];
550     pCsr->zName = (char *)sqlite3_column_text(pCsr->pStmt, 0);
551     pCsr->iPageno = p->iPgno;
552 
553     rc = statDecodePage(pBt, p);
554     if( rc==SQLITE_OK ){
555       statSizeAndOffset(pCsr);
556 
557       switch( p->flags ){
558         case 0x05:             /* table internal */
559         case 0x02:             /* index internal */
560           pCsr->zPagetype = "internal";
561           break;
562         case 0x0D:             /* table leaf */
563         case 0x0A:             /* index leaf */
564           pCsr->zPagetype = "leaf";
565           break;
566         default:
567           pCsr->zPagetype = "corrupted";
568           break;
569       }
570       pCsr->nCell = p->nCell;
571       pCsr->nUnused = p->nUnused;
572       pCsr->nMxPayload = p->nMxPayload;
573       pCsr->zPath = z = sqlite3_mprintf("%s", p->zPath);
574       if( z==0 ) rc = SQLITE_NOMEM_BKPT;
575       nPayload = 0;
576       for(i=0; i<p->nCell; i++){
577         nPayload += p->aCell[i].nLocal;
578       }
579       pCsr->nPayload = nPayload;
580     }
581   }
582 
583   return rc;
584 }
585 
586 static int statEof(sqlite3_vtab_cursor *pCursor){
587   StatCursor *pCsr = (StatCursor *)pCursor;
588   return pCsr->isEof;
589 }
590 
591 static int statFilter(
592   sqlite3_vtab_cursor *pCursor,
593   int idxNum, const char *idxStr,
594   int argc, sqlite3_value **argv
595 ){
596   StatCursor *pCsr = (StatCursor *)pCursor;
597   StatTable *pTab = (StatTable*)(pCursor->pVtab);
598   char *zSql;
599   int rc = SQLITE_OK;
600   char *zMaster;
601 
602   if( idxNum==1 ){
603     const char *zDbase = (const char*)sqlite3_value_text(argv[0]);
604     pCsr->iDb = sqlite3FindDbName(pTab->db, zDbase);
605     if( pCsr->iDb<0 ){
606       sqlite3_free(pCursor->pVtab->zErrMsg);
607       pCursor->pVtab->zErrMsg = sqlite3_mprintf("no such schema: %s", zDbase);
608       return pCursor->pVtab->zErrMsg ? SQLITE_ERROR : SQLITE_NOMEM_BKPT;
609     }
610   }else{
611     pCsr->iDb = pTab->iDb;
612   }
613   statResetCsr(pCsr);
614   sqlite3_finalize(pCsr->pStmt);
615   pCsr->pStmt = 0;
616   zMaster = pCsr->iDb==1 ? "sqlite_temp_master" : "sqlite_master";
617   zSql = sqlite3_mprintf(
618       "SELECT 'sqlite_master' AS name, 1 AS rootpage, 'table' AS type"
619       "  UNION ALL  "
620       "SELECT name, rootpage, type"
621       "  FROM \"%w\".%s WHERE rootpage!=0"
622       "  ORDER BY name", pTab->db->aDb[pCsr->iDb].zDbSName, zMaster);
623   if( zSql==0 ){
624     return SQLITE_NOMEM_BKPT;
625   }else{
626     rc = sqlite3_prepare_v2(pTab->db, zSql, -1, &pCsr->pStmt, 0);
627     sqlite3_free(zSql);
628   }
629 
630   if( rc==SQLITE_OK ){
631     rc = statNext(pCursor);
632   }
633   return rc;
634 }
635 
636 static int statColumn(
637   sqlite3_vtab_cursor *pCursor,
638   sqlite3_context *ctx,
639   int i
640 ){
641   StatCursor *pCsr = (StatCursor *)pCursor;
642   switch( i ){
643     case 0:            /* name */
644       sqlite3_result_text(ctx, pCsr->zName, -1, SQLITE_TRANSIENT);
645       break;
646     case 1:            /* path */
647       sqlite3_result_text(ctx, pCsr->zPath, -1, SQLITE_TRANSIENT);
648       break;
649     case 2:            /* pageno */
650       sqlite3_result_int64(ctx, pCsr->iPageno);
651       break;
652     case 3:            /* pagetype */
653       sqlite3_result_text(ctx, pCsr->zPagetype, -1, SQLITE_STATIC);
654       break;
655     case 4:            /* ncell */
656       sqlite3_result_int(ctx, pCsr->nCell);
657       break;
658     case 5:            /* payload */
659       sqlite3_result_int(ctx, pCsr->nPayload);
660       break;
661     case 6:            /* unused */
662       sqlite3_result_int(ctx, pCsr->nUnused);
663       break;
664     case 7:            /* mx_payload */
665       sqlite3_result_int(ctx, pCsr->nMxPayload);
666       break;
667     case 8:            /* pgoffset */
668       sqlite3_result_int64(ctx, pCsr->iOffset);
669       break;
670     case 9:            /* pgsize */
671       sqlite3_result_int(ctx, pCsr->szPage);
672       break;
673     default: {          /* schema */
674       sqlite3 *db = sqlite3_context_db_handle(ctx);
675       int iDb = pCsr->iDb;
676       sqlite3_result_text(ctx, db->aDb[iDb].zDbSName, -1, SQLITE_STATIC);
677       break;
678     }
679   }
680   return SQLITE_OK;
681 }
682 
683 static int statRowid(sqlite3_vtab_cursor *pCursor, sqlite_int64 *pRowid){
684   StatCursor *pCsr = (StatCursor *)pCursor;
685   *pRowid = pCsr->iPageno;
686   return SQLITE_OK;
687 }
688 
689 /*
690 ** Invoke this routine to register the "dbstat" virtual table module
691 */
692 int sqlite3DbstatRegister(sqlite3 *db){
693   static sqlite3_module dbstat_module = {
694     0,                            /* iVersion */
695     statConnect,                  /* xCreate */
696     statConnect,                  /* xConnect */
697     statBestIndex,                /* xBestIndex */
698     statDisconnect,               /* xDisconnect */
699     statDisconnect,               /* xDestroy */
700     statOpen,                     /* xOpen - open a cursor */
701     statClose,                    /* xClose - close a cursor */
702     statFilter,                   /* xFilter - configure scan constraints */
703     statNext,                     /* xNext - advance a cursor */
704     statEof,                      /* xEof - check for end of scan */
705     statColumn,                   /* xColumn - read data */
706     statRowid,                    /* xRowid - read data */
707     0,                            /* xUpdate */
708     0,                            /* xBegin */
709     0,                            /* xSync */
710     0,                            /* xCommit */
711     0,                            /* xRollback */
712     0,                            /* xFindMethod */
713     0,                            /* xRename */
714     0,                            /* xSavepoint */
715     0,                            /* xRelease */
716     0,                            /* xRollbackTo */
717   };
718   return sqlite3_create_module(db, "dbstat", &dbstat_module, 0);
719 }
720 #elif defined(SQLITE_ENABLE_DBSTAT_VTAB)
721 int sqlite3DbstatRegister(sqlite3 *db){ return SQLITE_OK; }
722 #endif /* SQLITE_ENABLE_DBSTAT_VTAB */
723