210b0d0eb3
Proposed fix for ticket [e6e962d6b0f06f46e]. Further testing needed. FossilOrigin-Name: 57d8dad35c2a9ab635e954dce7f3986ae1ca8ed2
513 lines
16 KiB
C
513 lines
16 KiB
C
/*
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** 2007 May 1
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**
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** The author disclaims copyright to this source code. In place of
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** a legal notice, here is a blessing:
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**
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** May you do good and not evil.
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** May you find forgiveness for yourself and forgive others.
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** May you share freely, never taking more than you give.
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**
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*************************************************************************
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**
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** This file contains code used to implement incremental BLOB I/O.
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*/
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#include "sqliteInt.h"
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#include "vdbeInt.h"
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#ifndef SQLITE_OMIT_INCRBLOB
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/*
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** Valid sqlite3_blob* handles point to Incrblob structures.
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*/
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typedef struct Incrblob Incrblob;
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struct Incrblob {
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int nByte; /* Size of open blob, in bytes */
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int iOffset; /* Byte offset of blob in cursor data */
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u16 iCol; /* Table column this handle is open on */
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BtCursor *pCsr; /* Cursor pointing at blob row */
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sqlite3_stmt *pStmt; /* Statement holding cursor open */
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sqlite3 *db; /* The associated database */
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char *zDb; /* Database name */
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Table *pTab; /* Table object */
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};
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/*
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** This function is used by both blob_open() and blob_reopen(). It seeks
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** the b-tree cursor associated with blob handle p to point to row iRow.
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** If successful, SQLITE_OK is returned and subsequent calls to
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** sqlite3_blob_read() or sqlite3_blob_write() access the specified row.
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**
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** If an error occurs, or if the specified row does not exist or does not
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** contain a value of type TEXT or BLOB in the column nominated when the
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** blob handle was opened, then an error code is returned and *pzErr may
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** be set to point to a buffer containing an error message. It is the
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** responsibility of the caller to free the error message buffer using
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** sqlite3DbFree().
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**
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** If an error does occur, then the b-tree cursor is closed. All subsequent
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** calls to sqlite3_blob_read(), blob_write() or blob_reopen() will
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** immediately return SQLITE_ABORT.
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*/
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static int blobSeekToRow(Incrblob *p, sqlite3_int64 iRow, char **pzErr){
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int rc; /* Error code */
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char *zErr = 0; /* Error message */
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Vdbe *v = (Vdbe *)p->pStmt;
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sqlite3 *db = v->db;
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/* Set the value of register r[1] in the SQL statement to integer iRow.
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** This is done directly as a performance optimization
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*/
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v->aMem[1].flags = MEM_Int;
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v->aMem[1].u.i = iRow;
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/* If the statement has been run before (and is paused at the OP_ResultRow)
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** then back it up to the point where it does the OP_SeekRowid. This could
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** have been down with an extra OP_Goto, but simply setting the program
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** counter is faster. */
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if( v->pc>3 ){
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v->pc = 3;
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db->nVdbeExec++;
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rc = sqlite3VdbeExec((Vdbe*)p->pStmt);
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db->nVdbeExec--;
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}else{
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rc = sqlite3_step(p->pStmt);
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}
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if( rc==SQLITE_ROW ){
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VdbeCursor *pC = v->apCsr[0];
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u32 type = pC->nHdrParsed>p->iCol ? pC->aType[p->iCol] : 0;
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testcase( pC->nHdrParsed==p->iCol );
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testcase( pC->nHdrParsed==p->iCol+1 );
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if( type<12 ){
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zErr = sqlite3MPrintf(p->db, "cannot open value of type %s",
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type==0?"null": type==7?"real": "integer"
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);
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rc = SQLITE_ERROR;
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sqlite3_finalize(p->pStmt);
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p->pStmt = 0;
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}else{
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p->iOffset = pC->aType[p->iCol + pC->nField];
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p->nByte = sqlite3VdbeSerialTypeLen(type);
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p->pCsr = pC->uc.pCursor;
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sqlite3BtreeIncrblobCursor(p->pCsr);
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}
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}
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if( rc==SQLITE_ROW ){
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rc = SQLITE_OK;
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}else if( p->pStmt ){
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rc = sqlite3_finalize(p->pStmt);
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p->pStmt = 0;
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if( rc==SQLITE_OK ){
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zErr = sqlite3MPrintf(p->db, "no such rowid: %lld", iRow);
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rc = SQLITE_ERROR;
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}else{
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zErr = sqlite3MPrintf(p->db, "%s", sqlite3_errmsg(p->db));
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}
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}
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assert( rc!=SQLITE_OK || zErr==0 );
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assert( rc!=SQLITE_ROW && rc!=SQLITE_DONE );
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*pzErr = zErr;
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return rc;
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}
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/*
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** Open a blob handle.
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*/
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int sqlite3_blob_open(
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sqlite3* db, /* The database connection */
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const char *zDb, /* The attached database containing the blob */
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const char *zTable, /* The table containing the blob */
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const char *zColumn, /* The column containing the blob */
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sqlite_int64 iRow, /* The row containing the glob */
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int wrFlag, /* True -> read/write access, false -> read-only */
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sqlite3_blob **ppBlob /* Handle for accessing the blob returned here */
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){
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int nAttempt = 0;
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int iCol; /* Index of zColumn in row-record */
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int rc = SQLITE_OK;
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char *zErr = 0;
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Table *pTab;
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Parse *pParse = 0;
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Incrblob *pBlob = 0;
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#ifdef SQLITE_ENABLE_API_ARMOR
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if( ppBlob==0 ){
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return SQLITE_MISUSE_BKPT;
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}
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#endif
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*ppBlob = 0;
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#ifdef SQLITE_ENABLE_API_ARMOR
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if( !sqlite3SafetyCheckOk(db) || zTable==0 ){
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return SQLITE_MISUSE_BKPT;
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}
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#endif
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wrFlag = !!wrFlag; /* wrFlag = (wrFlag ? 1 : 0); */
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sqlite3_mutex_enter(db->mutex);
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pBlob = (Incrblob *)sqlite3DbMallocZero(db, sizeof(Incrblob));
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if( !pBlob ) goto blob_open_out;
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pParse = sqlite3StackAllocRaw(db, sizeof(*pParse));
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if( !pParse ) goto blob_open_out;
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do {
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memset(pParse, 0, sizeof(Parse));
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pParse->db = db;
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sqlite3DbFree(db, zErr);
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zErr = 0;
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sqlite3BtreeEnterAll(db);
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pTab = sqlite3LocateTable(pParse, 0, zTable, zDb);
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if( pTab && IsVirtual(pTab) ){
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pTab = 0;
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sqlite3ErrorMsg(pParse, "cannot open virtual table: %s", zTable);
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}
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if( pTab && !HasRowid(pTab) ){
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pTab = 0;
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sqlite3ErrorMsg(pParse, "cannot open table without rowid: %s", zTable);
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}
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#ifndef SQLITE_OMIT_VIEW
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if( pTab && pTab->pSelect ){
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pTab = 0;
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sqlite3ErrorMsg(pParse, "cannot open view: %s", zTable);
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}
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#endif
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if( !pTab ){
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if( pParse->zErrMsg ){
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sqlite3DbFree(db, zErr);
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zErr = pParse->zErrMsg;
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pParse->zErrMsg = 0;
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}
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rc = SQLITE_ERROR;
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sqlite3BtreeLeaveAll(db);
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goto blob_open_out;
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}
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pBlob->pTab = pTab;
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pBlob->zDb = db->aDb[sqlite3SchemaToIndex(db, pTab->pSchema)].zDbSName;
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/* Now search pTab for the exact column. */
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for(iCol=0; iCol<pTab->nCol; iCol++) {
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if( sqlite3StrICmp(pTab->aCol[iCol].zName, zColumn)==0 ){
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break;
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}
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}
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if( iCol==pTab->nCol ){
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sqlite3DbFree(db, zErr);
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zErr = sqlite3MPrintf(db, "no such column: \"%s\"", zColumn);
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rc = SQLITE_ERROR;
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sqlite3BtreeLeaveAll(db);
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goto blob_open_out;
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}
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/* If the value is being opened for writing, check that the
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** column is not indexed, and that it is not part of a foreign key.
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*/
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if( wrFlag ){
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const char *zFault = 0;
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Index *pIdx;
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#ifndef SQLITE_OMIT_FOREIGN_KEY
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if( db->flags&SQLITE_ForeignKeys ){
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/* Check that the column is not part of an FK child key definition. It
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** is not necessary to check if it is part of a parent key, as parent
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** key columns must be indexed. The check below will pick up this
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** case. */
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FKey *pFKey;
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for(pFKey=pTab->pFKey; pFKey; pFKey=pFKey->pNextFrom){
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int j;
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for(j=0; j<pFKey->nCol; j++){
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if( pFKey->aCol[j].iFrom==iCol ){
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zFault = "foreign key";
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}
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}
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}
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}
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#endif
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for(pIdx=pTab->pIndex; pIdx; pIdx=pIdx->pNext){
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int j;
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for(j=0; j<pIdx->nKeyCol; j++){
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/* FIXME: Be smarter about indexes that use expressions */
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if( pIdx->aiColumn[j]==iCol || pIdx->aiColumn[j]==XN_EXPR ){
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zFault = "indexed";
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}
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}
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}
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if( zFault ){
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sqlite3DbFree(db, zErr);
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zErr = sqlite3MPrintf(db, "cannot open %s column for writing", zFault);
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rc = SQLITE_ERROR;
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sqlite3BtreeLeaveAll(db);
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goto blob_open_out;
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}
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}
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pBlob->pStmt = (sqlite3_stmt *)sqlite3VdbeCreate(pParse);
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assert( pBlob->pStmt || db->mallocFailed );
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if( pBlob->pStmt ){
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/* This VDBE program seeks a btree cursor to the identified
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** db/table/row entry. The reason for using a vdbe program instead
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** of writing code to use the b-tree layer directly is that the
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** vdbe program will take advantage of the various transaction,
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** locking and error handling infrastructure built into the vdbe.
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**
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** After seeking the cursor, the vdbe executes an OP_ResultRow.
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** Code external to the Vdbe then "borrows" the b-tree cursor and
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** uses it to implement the blob_read(), blob_write() and
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** blob_bytes() functions.
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**
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** The sqlite3_blob_close() function finalizes the vdbe program,
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** which closes the b-tree cursor and (possibly) commits the
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** transaction.
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*/
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static const int iLn = VDBE_OFFSET_LINENO(2);
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static const VdbeOpList openBlob[] = {
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{OP_TableLock, 0, 0, 0}, /* 0: Acquire a read or write lock */
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{OP_OpenRead, 0, 0, 0}, /* 1: Open a cursor */
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/* blobSeekToRow() will initialize r[1] to the desired rowid */
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{OP_NotExists, 0, 5, 1}, /* 2: Seek the cursor to rowid=r[1] */
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{OP_Column, 0, 0, 1}, /* 3 */
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{OP_ResultRow, 1, 0, 0}, /* 4 */
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{OP_Halt, 0, 0, 0}, /* 5 */
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};
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Vdbe *v = (Vdbe *)pBlob->pStmt;
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int iDb = sqlite3SchemaToIndex(db, pTab->pSchema);
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VdbeOp *aOp;
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sqlite3VdbeAddOp4Int(v, OP_Transaction, iDb, wrFlag,
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pTab->pSchema->schema_cookie,
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pTab->pSchema->iGeneration);
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sqlite3VdbeChangeP5(v, 1);
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aOp = sqlite3VdbeAddOpList(v, ArraySize(openBlob), openBlob, iLn);
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/* Make sure a mutex is held on the table to be accessed */
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sqlite3VdbeUsesBtree(v, iDb);
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if( db->mallocFailed==0 ){
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assert( aOp!=0 );
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/* Configure the OP_TableLock instruction */
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#ifdef SQLITE_OMIT_SHARED_CACHE
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aOp[0].opcode = OP_Noop;
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#else
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aOp[0].p1 = iDb;
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aOp[0].p2 = pTab->tnum;
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aOp[0].p3 = wrFlag;
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sqlite3VdbeChangeP4(v, 1, pTab->zName, P4_TRANSIENT);
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}
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if( db->mallocFailed==0 ){
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#endif
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/* Remove either the OP_OpenWrite or OpenRead. Set the P2
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** parameter of the other to pTab->tnum. */
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if( wrFlag ) aOp[1].opcode = OP_OpenWrite;
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aOp[1].p2 = pTab->tnum;
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aOp[1].p3 = iDb;
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/* Configure the number of columns. Configure the cursor to
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** think that the table has one more column than it really
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** does. An OP_Column to retrieve this imaginary column will
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** always return an SQL NULL. This is useful because it means
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** we can invoke OP_Column to fill in the vdbe cursors type
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** and offset cache without causing any IO.
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*/
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aOp[1].p4type = P4_INT32;
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aOp[1].p4.i = pTab->nCol+1;
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aOp[3].p2 = pTab->nCol;
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pParse->nVar = 0;
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pParse->nMem = 1;
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pParse->nTab = 1;
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sqlite3VdbeMakeReady(v, pParse);
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}
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}
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pBlob->iCol = iCol;
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pBlob->db = db;
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sqlite3BtreeLeaveAll(db);
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if( db->mallocFailed ){
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goto blob_open_out;
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}
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rc = blobSeekToRow(pBlob, iRow, &zErr);
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} while( (++nAttempt)<SQLITE_MAX_SCHEMA_RETRY && rc==SQLITE_SCHEMA );
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blob_open_out:
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if( rc==SQLITE_OK && db->mallocFailed==0 ){
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*ppBlob = (sqlite3_blob *)pBlob;
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}else{
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if( pBlob && pBlob->pStmt ) sqlite3VdbeFinalize((Vdbe *)pBlob->pStmt);
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sqlite3DbFree(db, pBlob);
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}
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sqlite3ErrorWithMsg(db, rc, (zErr ? "%s" : 0), zErr);
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sqlite3DbFree(db, zErr);
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sqlite3ParserReset(pParse);
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sqlite3StackFree(db, pParse);
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rc = sqlite3ApiExit(db, rc);
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sqlite3_mutex_leave(db->mutex);
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return rc;
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}
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/*
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** Close a blob handle that was previously created using
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** sqlite3_blob_open().
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*/
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int sqlite3_blob_close(sqlite3_blob *pBlob){
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Incrblob *p = (Incrblob *)pBlob;
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int rc;
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sqlite3 *db;
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if( p ){
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db = p->db;
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sqlite3_mutex_enter(db->mutex);
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rc = sqlite3_finalize(p->pStmt);
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sqlite3DbFree(db, p);
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sqlite3_mutex_leave(db->mutex);
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}else{
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rc = SQLITE_OK;
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}
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return rc;
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}
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/*
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** Perform a read or write operation on a blob
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*/
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static int blobReadWrite(
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sqlite3_blob *pBlob,
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void *z,
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int n,
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int iOffset,
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int (*xCall)(BtCursor*, u32, u32, void*)
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){
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int rc;
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Incrblob *p = (Incrblob *)pBlob;
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Vdbe *v;
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sqlite3 *db;
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if( p==0 ) return SQLITE_MISUSE_BKPT;
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db = p->db;
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sqlite3_mutex_enter(db->mutex);
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v = (Vdbe*)p->pStmt;
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if( n<0 || iOffset<0 || ((sqlite3_int64)iOffset+n)>p->nByte ){
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/* Request is out of range. Return a transient error. */
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rc = SQLITE_ERROR;
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}else if( v==0 ){
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/* If there is no statement handle, then the blob-handle has
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** already been invalidated. Return SQLITE_ABORT in this case.
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*/
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rc = SQLITE_ABORT;
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}else{
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/* Call either BtreeData() or BtreePutData(). If SQLITE_ABORT is
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** returned, clean-up the statement handle.
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*/
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assert( db == v->db );
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sqlite3BtreeEnterCursor(p->pCsr);
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#ifdef SQLITE_ENABLE_PREUPDATE_HOOK
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if( xCall==sqlite3BtreePutData && db->xPreUpdateCallback ){
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/* If a pre-update hook is registered and this is a write cursor,
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** invoke it here.
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**
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** TODO: The preupdate-hook is passed SQLITE_DELETE, even though this
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** operation should really be an SQLITE_UPDATE. This is probably
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** incorrect, but is convenient because at this point the new.* values
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** are not easily obtainable. And for the sessions module, an
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** SQLITE_UPDATE where the PK columns do not change is handled in the
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** same way as an SQLITE_DELETE (the SQLITE_DELETE code is actually
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** slightly more efficient). Since you cannot write to a PK column
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** using the incremental-blob API, this works. For the sessions module
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** anyhow.
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*/
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sqlite3_int64 iKey;
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iKey = sqlite3BtreeIntegerKey(p->pCsr);
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sqlite3VdbePreUpdateHook(
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v, v->apCsr[0], SQLITE_DELETE, p->zDb, p->pTab, iKey, -1
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);
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}
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#endif
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rc = xCall(p->pCsr, iOffset+p->iOffset, n, z);
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sqlite3BtreeLeaveCursor(p->pCsr);
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if( rc==SQLITE_ABORT ){
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sqlite3VdbeFinalize(v);
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p->pStmt = 0;
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}else{
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v->rc = rc;
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}
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}
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sqlite3Error(db, rc);
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rc = sqlite3ApiExit(db, rc);
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sqlite3_mutex_leave(db->mutex);
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return rc;
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}
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/*
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** Read data from a blob handle.
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*/
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int sqlite3_blob_read(sqlite3_blob *pBlob, void *z, int n, int iOffset){
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return blobReadWrite(pBlob, z, n, iOffset, sqlite3BtreePayloadChecked);
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}
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/*
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** Write data to a blob handle.
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*/
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int sqlite3_blob_write(sqlite3_blob *pBlob, const void *z, int n, int iOffset){
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return blobReadWrite(pBlob, (void *)z, n, iOffset, sqlite3BtreePutData);
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}
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/*
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** Query a blob handle for the size of the data.
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**
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** The Incrblob.nByte field is fixed for the lifetime of the Incrblob
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** so no mutex is required for access.
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*/
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int sqlite3_blob_bytes(sqlite3_blob *pBlob){
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Incrblob *p = (Incrblob *)pBlob;
|
|
return (p && p->pStmt) ? p->nByte : 0;
|
|
}
|
|
|
|
/*
|
|
** Move an existing blob handle to point to a different row of the same
|
|
** database table.
|
|
**
|
|
** If an error occurs, or if the specified row does not exist or does not
|
|
** contain a blob or text value, then an error code is returned and the
|
|
** database handle error code and message set. If this happens, then all
|
|
** subsequent calls to sqlite3_blob_xxx() functions (except blob_close())
|
|
** immediately return SQLITE_ABORT.
|
|
*/
|
|
int sqlite3_blob_reopen(sqlite3_blob *pBlob, sqlite3_int64 iRow){
|
|
int rc;
|
|
Incrblob *p = (Incrblob *)pBlob;
|
|
sqlite3 *db;
|
|
|
|
if( p==0 ) return SQLITE_MISUSE_BKPT;
|
|
db = p->db;
|
|
sqlite3_mutex_enter(db->mutex);
|
|
|
|
if( p->pStmt==0 ){
|
|
/* If there is no statement handle, then the blob-handle has
|
|
** already been invalidated. Return SQLITE_ABORT in this case.
|
|
*/
|
|
rc = SQLITE_ABORT;
|
|
}else{
|
|
char *zErr;
|
|
rc = blobSeekToRow(p, iRow, &zErr);
|
|
if( rc!=SQLITE_OK ){
|
|
sqlite3ErrorWithMsg(db, rc, (zErr ? "%s" : 0), zErr);
|
|
sqlite3DbFree(db, zErr);
|
|
}
|
|
assert( rc!=SQLITE_SCHEMA );
|
|
}
|
|
|
|
rc = sqlite3ApiExit(db, rc);
|
|
assert( rc==SQLITE_OK || p->pStmt==0 );
|
|
sqlite3_mutex_leave(db->mutex);
|
|
return rc;
|
|
}
|
|
|
|
#endif /* #ifndef SQLITE_OMIT_INCRBLOB */
|