xref: /sqlite-3.40.0/src/vdbeblob.c (revision 8a29dfde)
1 /*
2 ** 2007 May 1
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 code used to implement incremental BLOB I/O.
14 **
15 ** $Id: vdbeblob.c,v 1.21 2008/03/25 09:47:35 danielk1977 Exp $
16 */
17 
18 #include "sqliteInt.h"
19 #include "vdbeInt.h"
20 
21 #ifndef SQLITE_OMIT_INCRBLOB
22 
23 /*
24 ** Valid sqlite3_blob* handles point to Incrblob structures.
25 */
26 typedef struct Incrblob Incrblob;
27 struct Incrblob {
28   int flags;              /* Copy of "flags" passed to sqlite3_blob_open() */
29   int nByte;              /* Size of open blob, in bytes */
30   int iOffset;            /* Byte offset of blob in cursor data */
31   BtCursor *pCsr;         /* Cursor pointing at blob row */
32   sqlite3_stmt *pStmt;    /* Statement holding cursor open */
33   sqlite3 *db;            /* The associated database */
34 };
35 
36 /*
37 ** Open a blob handle.
38 */
39 int sqlite3_blob_open(
40   sqlite3* db,            /* The database connection */
41   const char *zDb,        /* The attached database containing the blob */
42   const char *zTable,     /* The table containing the blob */
43   const char *zColumn,    /* The column containing the blob */
44   sqlite_int64 iRow,      /* The row containing the glob */
45   int flags,              /* True -> read/write access, false -> read-only */
46   sqlite3_blob **ppBlob   /* Handle for accessing the blob returned here */
47 ){
48   int nAttempt = 0;
49   int iCol;               /* Index of zColumn in row-record */
50 
51   /* This VDBE program seeks a btree cursor to the identified
52   ** db/table/row entry. The reason for using a vdbe program instead
53   ** of writing code to use the b-tree layer directly is that the
54   ** vdbe program will take advantage of the various transaction,
55   ** locking and error handling infrastructure built into the vdbe.
56   **
57   ** After seeking the cursor, the vdbe executes an OP_ResultRow.
58   ** Code external to the Vdbe then "borrows" the b-tree cursor and
59   ** uses it to implement the blob_read(), blob_write() and
60   ** blob_bytes() functions.
61   **
62   ** The sqlite3_blob_close() function finalizes the vdbe program,
63   ** which closes the b-tree cursor and (possibly) commits the
64   ** transaction.
65   */
66   static const VdbeOpList openBlob[] = {
67     {OP_Transaction, 0, 0, 0},     /* 0: Start a transaction */
68     {OP_VerifyCookie, 0, 0, 0},    /* 1: Check the schema cookie */
69 
70     /* One of the following two instructions is replaced by an
71     ** OP_Noop before exection.
72     */
73     {OP_SetNumColumns, 0, 0, 0},   /* 2: Num cols for cursor */
74     {OP_OpenRead, 0, 0, 0},        /* 3: Open cursor 0 for reading */
75     {OP_SetNumColumns, 0, 0, 0},   /* 4: Num cols for cursor */
76     {OP_OpenWrite, 0, 0, 0},       /* 5: Open cursor 0 for read/write */
77 
78     {OP_Variable, 1, 1, 0},        /* 6: Push the rowid to the stack */
79     {OP_NotExists, 0, 10, 1},      /* 7: Seek the cursor */
80     {OP_Column, 0, 0, 1},          /* 8  */
81     {OP_ResultRow, 1, 0, 0},       /* 9  */
82     {OP_Close, 0, 0, 0},           /* 10  */
83     {OP_Halt, 0, 0, 0},            /* 11 */
84   };
85 
86   Vdbe *v = 0;
87   int rc = SQLITE_OK;
88   char zErr[128];
89 
90   zErr[0] = 0;
91   sqlite3_mutex_enter(db->mutex);
92   do {
93     Parse sParse;
94     Table *pTab;
95 
96     memset(&sParse, 0, sizeof(Parse));
97     sParse.db = db;
98 
99     rc = sqlite3SafetyOn(db);
100     if( rc!=SQLITE_OK ){
101       sqlite3_mutex_leave(db->mutex);
102       return rc;
103     }
104 
105     sqlite3BtreeEnterAll(db);
106     pTab = sqlite3LocateTable(&sParse, 0, zTable, zDb);
107     if( !pTab ){
108       if( sParse.zErrMsg ){
109         sqlite3_snprintf(sizeof(zErr), zErr, "%s", sParse.zErrMsg);
110       }
111       sqlite3_free(sParse.zErrMsg);
112       rc = SQLITE_ERROR;
113       (void)sqlite3SafetyOff(db);
114       sqlite3BtreeLeaveAll(db);
115       goto blob_open_out;
116     }
117 
118     /* Now search pTab for the exact column. */
119     for(iCol=0; iCol < pTab->nCol; iCol++) {
120       if( sqlite3StrICmp(pTab->aCol[iCol].zName, zColumn)==0 ){
121         break;
122       }
123     }
124     if( iCol==pTab->nCol ){
125       sqlite3_snprintf(sizeof(zErr), zErr, "no such column: \"%s\"", zColumn);
126       rc = SQLITE_ERROR;
127       (void)sqlite3SafetyOff(db);
128       sqlite3BtreeLeaveAll(db);
129       goto blob_open_out;
130     }
131 
132     /* If the value is being opened for writing, check that the
133     ** column is not indexed. It is against the rules to open an
134     ** indexed column for writing.
135     */
136     if( flags ){
137       Index *pIdx;
138       for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){
139         int j;
140         for(j=0; j<pIdx->nColumn; j++){
141           if( pIdx->aiColumn[j]==iCol ){
142             sqlite3_snprintf(sizeof(zErr), zErr,
143                              "cannot open indexed column for writing");
144             rc = SQLITE_ERROR;
145             (void)sqlite3SafetyOff(db);
146             sqlite3BtreeLeaveAll(db);
147             goto blob_open_out;
148           }
149         }
150       }
151     }
152 
153     v = sqlite3VdbeCreate(db);
154     if( v ){
155       int iDb = sqlite3SchemaToIndex(db, pTab->pSchema);
156       sqlite3VdbeAddOpList(v, sizeof(openBlob)/sizeof(VdbeOpList), openBlob);
157 
158       /* Configure the OP_Transaction */
159       sqlite3VdbeChangeP1(v, 0, iDb);
160       sqlite3VdbeChangeP2(v, 0, (flags ? 1 : 0));
161 
162       /* Configure the OP_VerifyCookie */
163       sqlite3VdbeChangeP1(v, 1, iDb);
164       sqlite3VdbeChangeP2(v, 1, pTab->pSchema->schema_cookie);
165 
166       /* Make sure a mutex is held on the table to be accessed */
167       sqlite3VdbeUsesBtree(v, iDb);
168 
169       /* Remove either the OP_OpenWrite or OpenRead. Set the P2
170       ** parameter of the other to pTab->tnum.
171       */
172       sqlite3VdbeChangeToNoop(v, (flags ? 3 : 5), 1);
173       sqlite3VdbeChangeP2(v, (flags ? 5 : 3), pTab->tnum);
174       sqlite3VdbeChangeP3(v, (flags ? 5 : 3), iDb);
175 
176       /* Configure the OP_SetNumColumns. Configure the cursor to
177       ** think that the table has one more column than it really
178       ** does. An OP_Column to retrieve this imaginary column will
179       ** always return an SQL NULL. This is useful because it means
180       ** we can invoke OP_Column to fill in the vdbe cursors type
181       ** and offset cache without causing any IO.
182       */
183       sqlite3VdbeChangeP2(v, flags ? 4 : 2, pTab->nCol+1);
184       if( !db->mallocFailed ){
185         sqlite3VdbeMakeReady(v, 1, 1, 1, 0);
186       }
187     }
188 
189     sqlite3BtreeLeaveAll(db);
190     rc = sqlite3SafetyOff(db);
191     if( rc!=SQLITE_OK || db->mallocFailed ){
192       goto blob_open_out;
193     }
194 
195     sqlite3_bind_int64((sqlite3_stmt *)v, 1, iRow);
196     rc = sqlite3_step((sqlite3_stmt *)v);
197     if( rc!=SQLITE_ROW ){
198       nAttempt++;
199       rc = sqlite3_finalize((sqlite3_stmt *)v);
200       sqlite3_snprintf(sizeof(zErr), zErr, sqlite3_errmsg(db));
201       v = 0;
202     }
203   } while( nAttempt<5 && rc==SQLITE_SCHEMA );
204 
205   if( rc==SQLITE_ROW ){
206     /* The row-record has been opened successfully. Check that the
207     ** column in question contains text or a blob. If it contains
208     ** text, it is up to the caller to get the encoding right.
209     */
210     Incrblob *pBlob;
211     u32 type = v->apCsr[0]->aType[iCol];
212 
213     if( type<12 ){
214       sqlite3_snprintf(sizeof(zErr), zErr, "cannot open value of type %s",
215           type==0?"null": type==7?"real": "integer"
216       );
217       rc = SQLITE_ERROR;
218       goto blob_open_out;
219     }
220     pBlob = (Incrblob *)sqlite3DbMallocZero(db, sizeof(Incrblob));
221     if( db->mallocFailed ){
222       sqlite3_free(pBlob);
223       goto blob_open_out;
224     }
225     pBlob->flags = flags;
226     pBlob->pCsr =  v->apCsr[0]->pCursor;
227     sqlite3BtreeEnterCursor(pBlob->pCsr);
228     sqlite3BtreeCacheOverflow(pBlob->pCsr);
229     sqlite3BtreeLeaveCursor(pBlob->pCsr);
230     pBlob->pStmt = (sqlite3_stmt *)v;
231     pBlob->iOffset = v->apCsr[0]->aOffset[iCol];
232     pBlob->nByte = sqlite3VdbeSerialTypeLen(type);
233     pBlob->db = db;
234     *ppBlob = (sqlite3_blob *)pBlob;
235     rc = SQLITE_OK;
236   }else if( rc==SQLITE_OK ){
237     sqlite3_snprintf(sizeof(zErr), zErr, "no such rowid: %lld", iRow);
238     rc = SQLITE_ERROR;
239   }
240 
241 blob_open_out:
242   zErr[sizeof(zErr)-1] = '\0';
243   if( rc!=SQLITE_OK || db->mallocFailed ){
244     sqlite3_finalize((sqlite3_stmt *)v);
245   }
246   sqlite3Error(db, rc, (rc==SQLITE_OK?0:zErr));
247   rc = sqlite3ApiExit(db, rc);
248   sqlite3_mutex_leave(db->mutex);
249   return rc;
250 }
251 
252 /*
253 ** Close a blob handle that was previously created using
254 ** sqlite3_blob_open().
255 */
256 int sqlite3_blob_close(sqlite3_blob *pBlob){
257   Incrblob *p = (Incrblob *)pBlob;
258   int rc;
259 
260   rc = sqlite3_finalize(p->pStmt);
261   sqlite3_free(p);
262   return rc;
263 }
264 
265 /*
266 ** Perform a read or write operation on a blob
267 */
268 static int blobReadWrite(
269   sqlite3_blob *pBlob,
270   void *z,
271   int n,
272   int iOffset,
273   int (*xCall)(BtCursor*, u32, u32, void*)
274 ){
275   int rc;
276   Incrblob *p = (Incrblob *)pBlob;
277   Vdbe *v;
278   sqlite3 *db = p->db;
279 
280   /* Request is out of range. Return a transient error. */
281   if( (iOffset+n)>p->nByte ){
282     return SQLITE_ERROR;
283   }
284   sqlite3_mutex_enter(db->mutex);
285 
286   /* If there is no statement handle, then the blob-handle has
287   ** already been invalidated. Return SQLITE_ABORT in this case.
288   */
289   v = (Vdbe*)p->pStmt;
290   if( v==0 ){
291     rc = SQLITE_ABORT;
292   }else{
293     /* Call either BtreeData() or BtreePutData(). If SQLITE_ABORT is
294     ** returned, clean-up the statement handle.
295     */
296     assert( db == v->db );
297     sqlite3BtreeEnterCursor(p->pCsr);
298     rc = xCall(p->pCsr, iOffset+p->iOffset, n, z);
299     sqlite3BtreeLeaveCursor(p->pCsr);
300     if( rc==SQLITE_ABORT ){
301       sqlite3VdbeFinalize(v);
302       p->pStmt = 0;
303     }else{
304       db->errCode = rc;
305       v->rc = rc;
306     }
307   }
308   rc = sqlite3ApiExit(db, rc);
309   sqlite3_mutex_leave(db->mutex);
310   return rc;
311 }
312 
313 /*
314 ** Read data from a blob handle.
315 */
316 int sqlite3_blob_read(sqlite3_blob *pBlob, void *z, int n, int iOffset){
317   return blobReadWrite(pBlob, z, n, iOffset, sqlite3BtreeData);
318 }
319 
320 /*
321 ** Write data to a blob handle.
322 */
323 int sqlite3_blob_write(sqlite3_blob *pBlob, const void *z, int n, int iOffset){
324   return blobReadWrite(pBlob, (void *)z, n, iOffset, sqlite3BtreePutData);
325 }
326 
327 /*
328 ** Query a blob handle for the size of the data.
329 **
330 ** The Incrblob.nByte field is fixed for the lifetime of the Incrblob
331 ** so no mutex is required for access.
332 */
333 int sqlite3_blob_bytes(sqlite3_blob *pBlob){
334   Incrblob *p = (Incrblob *)pBlob;
335   return p->nByte;
336 }
337 
338 #endif /* #ifndef SQLITE_OMIT_INCRBLOB */
339