| 2 |      1 | /*
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|  |      2 | ** 2005 May 25
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|  |      3 | **
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|  |      4 | ** The author disclaims copyright to this source code.  In place of
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|  |      5 | ** a legal notice, here is a blessing:
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|  |      6 | **
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|  |      7 | **    May you do good and not evil.
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|  |      8 | **    May you find forgiveness for yourself and forgive others.
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|  |      9 | **    May you share freely, never taking more than you give.
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|  |     10 | **
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|  |     11 | *************************************************************************
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|  |     12 | ** This file contains the implementation of the sqlite3_prepare()
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|  |     13 | ** interface, and routines that contribute to loading the database schema
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|  |     14 | ** from disk.
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|  |     15 | **
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|  |     16 | ** $Id: prepare.cpp 1282 2008-11-13 09:31:33Z LarsPson $
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|  |     17 | */
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|  |     18 | #include "sqliteInt.h"
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|  |     19 | #include <ctype.h>
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|  |     20 | 
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|  |     21 | /*
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|  |     22 | ** Fill the InitData structure with an error message that indicates
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|  |     23 | ** that the database is corrupt.
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|  |     24 | */
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|  |     25 | static void corruptSchema(InitData *pData, const char *zExtra){
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|  |     26 |   if( !pData->db->mallocFailed ){
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|  |     27 |     sqlite3SetString(pData->pzErrMsg, "malformed database schema",
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|  |     28 |        zExtra!=0 && zExtra[0]!=0 ? " - " : (char*)0, zExtra, (char*)0);
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|  |     29 |   }
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|  |     30 |   pData->rc = SQLITE_CORRUPT;
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|  |     31 | }
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|  |     32 | 
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|  |     33 | /*
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|  |     34 | ** This is the callback routine for the code that initializes the
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|  |     35 | ** database.  See sqlite3Init() below for additional information.
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|  |     36 | ** This routine is also called from the OP_ParseSchema opcode of the VDBE.
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|  |     37 | **
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|  |     38 | ** Each callback contains the following information:
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|  |     39 | **
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|  |     40 | **     argv[0] = name of thing being created
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|  |     41 | **     argv[1] = root page number for table or index. 0 for trigger or view.
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|  |     42 | **     argv[2] = SQL text for the CREATE statement.
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|  |     43 | **
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|  |     44 | */
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|  |     45 | int sqlite3InitCallback(void *pInit, int argc, char **argv, char **azColName){
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|  |     46 |   InitData *pData = (InitData*)pInit;
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|  |     47 |   sqlite3 *db = pData->db;
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|  |     48 |   int iDb = pData->iDb;
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|  |     49 | 
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|  |     50 |   assert( sqlite3_mutex_held(db->mutex) );
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|  |     51 |   pData->rc = SQLITE_OK;
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|  |     52 |   DbClearProperty(db, iDb, DB_Empty);
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|  |     53 |   if( db->mallocFailed ){
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|  |     54 |     corruptSchema(pData, 0);
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|  |     55 |     return SQLITE_NOMEM;
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|  |     56 |   }
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|  |     57 | 
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|  |     58 |   assert( argc==3 );
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|  |     59 |   if( argv==0 ) return 0;   /* Might happen if EMPTY_RESULT_CALLBACKS are on */
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|  |     60 |   if( argv[1]==0 ){
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|  |     61 |     corruptSchema(pData, 0);
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|  |     62 |     return 1;
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|  |     63 |   }
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|  |     64 |   assert( iDb>=0 && iDb<db->nDb );
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|  |     65 |   if( argv[2] && argv[2][0] ){
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|  |     66 |     /* Call the parser to process a CREATE TABLE, INDEX or VIEW.
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|  |     67 |     ** But because db->init.busy is set to 1, no VDBE code is generated
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|  |     68 |     ** or executed.  All the parser does is build the internal data
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|  |     69 |     ** structures that describe the table, index, or view.
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|  |     70 |     */
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|  |     71 |     char *zErr;
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|  |     72 |     int rc;
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|  |     73 |     assert( db->init.busy );
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|  |     74 |     db->init.iDb = iDb;
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|  |     75 |     db->init.newTnum = atoi(argv[1]);
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|  |     76 |     rc = sqlite3_exec(db, argv[2], 0, 0, &zErr);
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|  |     77 |     db->init.iDb = 0;
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|  |     78 |     assert( rc!=SQLITE_OK || zErr==0 );
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|  |     79 |     if( SQLITE_OK!=rc ){
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|  |     80 |       pData->rc = rc;
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|  |     81 |       if( rc==SQLITE_NOMEM ){
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|  |     82 |         db->mallocFailed = 1;
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|  |     83 |       }else if( rc!=SQLITE_INTERRUPT ){
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|  |     84 |         corruptSchema(pData, zErr);
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|  |     85 |       }
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|  |     86 |       sqlite3_free(zErr);
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|  |     87 |       return 1;
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|  |     88 |     }
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|  |     89 |   }else{
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|  |     90 |     /* If the SQL column is blank it means this is an index that
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|  |     91 |     ** was created to be the PRIMARY KEY or to fulfill a UNIQUE
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|  |     92 |     ** constraint for a CREATE TABLE.  The index should have already
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|  |     93 |     ** been created when we processed the CREATE TABLE.  All we have
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|  |     94 |     ** to do here is record the root page number for that index.
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|  |     95 |     */
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|  |     96 |     Index *pIndex;
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|  |     97 |     pIndex = sqlite3FindIndex(db, argv[0], db->aDb[iDb].zName);
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|  |     98 |     if( pIndex==0 || pIndex->tnum!=0 ){
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|  |     99 |       /* This can occur if there exists an index on a TEMP table which
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|  |    100 |       ** has the same name as another index on a permanent index.  Since
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|  |    101 |       ** the permanent table is hidden by the TEMP table, we can also
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|  |    102 |       ** safely ignore the index on the permanent table.
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|  |    103 |       */
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|  |    104 |       /* Do Nothing */;
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|  |    105 |     }else{
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|  |    106 |       pIndex->tnum = atoi(argv[1]);
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|  |    107 |     }
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|  |    108 |   }
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|  |    109 |   return 0;
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|  |    110 | }
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|  |    111 | 
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|  |    112 | /*
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|  |    113 | ** Attempt to read the database schema and initialize internal
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|  |    114 | ** data structures for a single database file.  The index of the
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|  |    115 | ** database file is given by iDb.  iDb==0 is used for the main
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|  |    116 | ** database.  iDb==1 should never be used.  iDb>=2 is used for
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|  |    117 | ** auxiliary databases.  Return one of the SQLITE_ error codes to
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|  |    118 | ** indicate success or failure.
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|  |    119 | */
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|  |    120 | static int sqlite3InitOne(sqlite3 *db, int iDb, char **pzErrMsg){
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|  |    121 |   int rc;
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|  |    122 |   BtCursor *curMain;
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|  |    123 |   int size;
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|  |    124 |   Table *pTab;
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|  |    125 |   Db *pDb;
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|  |    126 |   char const *azArg[4];
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|  |    127 |   int meta[10];
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|  |    128 |   InitData initData;
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|  |    129 |   char const *zMasterSchema;
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|  |    130 |   char const *zMasterName = SCHEMA_TABLE(iDb);
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|  |    131 | 
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|  |    132 |   /*
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|  |    133 |   ** The master database table has a structure like this
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|  |    134 |   */
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|  |    135 |   static const char master_schema[] = 
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|  |    136 |      "CREATE TABLE sqlite_master(\n"
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|  |    137 |      "  type text,\n"
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|  |    138 |      "  name text,\n"
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|  |    139 |      "  tbl_name text,\n"
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|  |    140 |      "  rootpage integer,\n"
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|  |    141 |      "  sql text\n"
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|  |    142 |      ")"
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|  |    143 |   ;
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|  |    144 | #ifndef SQLITE_OMIT_TEMPDB
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|  |    145 |   static const char temp_master_schema[] = 
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|  |    146 |      "CREATE TEMP TABLE sqlite_temp_master(\n"
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|  |    147 |      "  type text,\n"
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|  |    148 |      "  name text,\n"
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|  |    149 |      "  tbl_name text,\n"
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|  |    150 |      "  rootpage integer,\n"
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|  |    151 |      "  sql text\n"
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|  |    152 |      ")"
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|  |    153 |   ;
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|  |    154 | #else
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|  |    155 |   #define temp_master_schema 0
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|  |    156 | #endif
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|  |    157 | 
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|  |    158 |   assert( iDb>=0 && iDb<db->nDb );
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|  |    159 |   assert( db->aDb[iDb].pSchema );
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|  |    160 |   assert( sqlite3_mutex_held(db->mutex) );
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|  |    161 | 
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|  |    162 |   /* zMasterSchema and zInitScript are set to point at the master schema
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|  |    163 |   ** and initialisation script appropriate for the database being
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|  |    164 |   ** initialised. zMasterName is the name of the master table.
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|  |    165 |   */
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|  |    166 |   if( !OMIT_TEMPDB && iDb==1 ){
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|  |    167 |     zMasterSchema = temp_master_schema;
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|  |    168 |   }else{
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|  |    169 |     zMasterSchema = master_schema;
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|  |    170 |   }
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|  |    171 |   zMasterName = SCHEMA_TABLE(iDb);
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|  |    172 | 
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|  |    173 |   /* Construct the schema tables.  */
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|  |    174 |   sqlite3SafetyOff(db);
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|  |    175 |   azArg[0] = zMasterName;
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|  |    176 |   azArg[1] = "1";
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|  |    177 |   azArg[2] = zMasterSchema;
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|  |    178 |   azArg[3] = 0;
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|  |    179 |   initData.db = db;
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|  |    180 |   initData.iDb = iDb;
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|  |    181 |   initData.pzErrMsg = pzErrMsg;
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|  |    182 |   rc = sqlite3InitCallback(&initData, 3, (char **)azArg, 0);
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|  |    183 |   if( rc ){
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|  |    184 |     sqlite3SafetyOn(db);
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|  |    185 |     rc = initData.rc;
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|  |    186 |     goto error_out;
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|  |    187 |   }
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|  |    188 |   pTab = sqlite3FindTable(db, zMasterName, db->aDb[iDb].zName);
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|  |    189 |   if( pTab ){
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|  |    190 |     pTab->readOnly = 1;
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|  |    191 |   }
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|  |    192 |   sqlite3SafetyOn(db);
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|  |    193 | 
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|  |    194 |   /* Create a cursor to hold the database open
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|  |    195 |   */
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|  |    196 |   pDb = &db->aDb[iDb];
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|  |    197 |   if( pDb->pBt==0 ){
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|  |    198 |     if( !OMIT_TEMPDB && iDb==1 ){
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|  |    199 |       DbSetProperty(db, 1, DB_SchemaLoaded);
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|  |    200 |     }
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|  |    201 |     return SQLITE_OK;
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|  |    202 |   }
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|  |    203 |   sqlite3BtreeEnter(pDb->pBt);
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|  |    204 |   rc = sqlite3BtreeCursor(pDb->pBt, MASTER_ROOT, 0, 0, 0, &curMain);
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|  |    205 |   if( rc!=SQLITE_OK && rc!=SQLITE_EMPTY ){
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|  |    206 |     sqlite3SetString(pzErrMsg, sqlite3ErrStr(rc), (char*)0);
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|  |    207 |     sqlite3BtreeLeave(pDb->pBt);
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|  |    208 |     goto error_out;
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|  |    209 |   }
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|  |    210 | 
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|  |    211 |   /* Get the database meta information.
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|  |    212 |   **
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|  |    213 |   ** Meta values are as follows:
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|  |    214 |   **    meta[0]   Schema cookie.  Changes with each schema change.
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|  |    215 |   **    meta[1]   File format of schema layer.
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|  |    216 |   **    meta[2]   Size of the page cache.
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|  |    217 |   **    meta[3]   Use freelist if 0.  Autovacuum if greater than zero.
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|  |    218 |   **    meta[4]   Db text encoding. 1:UTF-8 2:UTF-16LE 3:UTF-16BE
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|  |    219 |   **    meta[5]   The user cookie. Used by the application.
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|  |    220 |   **    meta[6]   Incremental-vacuum flag.
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|  |    221 |   **    meta[7]
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|  |    222 |   **    meta[8]
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|  |    223 |   **    meta[9]
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|  |    224 |   **
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|  |    225 |   ** Note: The #defined SQLITE_UTF* symbols in sqliteInt.h correspond to
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|  |    226 |   ** the possible values of meta[4].
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|  |    227 |   */
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|  |    228 |   if( rc==SQLITE_OK ){
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|  |    229 |     int i;
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|  |    230 |     for(i=0; rc==SQLITE_OK && i<sizeof(meta)/sizeof(meta[0]); i++){
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|  |    231 |       rc = sqlite3BtreeGetMeta(pDb->pBt, i+1, (u32 *)&meta[i]);
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|  |    232 |     }
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|  |    233 |     if( rc ){
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|  |    234 |       sqlite3SetString(pzErrMsg, sqlite3ErrStr(rc), (char*)0);
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|  |    235 |       sqlite3BtreeCloseCursor(curMain);
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|  |    236 |       sqlite3BtreeLeave(pDb->pBt);
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|  |    237 |       goto error_out;
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|  |    238 |     }
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|  |    239 |   }else{
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|  |    240 |     memset(meta, 0, sizeof(meta));
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|  |    241 |   }
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|  |    242 |   pDb->pSchema->schema_cookie = meta[0];
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|  |    243 | 
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|  |    244 |   /* If opening a non-empty database, check the text encoding. For the
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|  |    245 |   ** main database, set sqlite3.enc to the encoding of the main database.
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|  |    246 |   ** For an attached db, it is an error if the encoding is not the same
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|  |    247 |   ** as sqlite3.enc.
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|  |    248 |   */
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|  |    249 |   if( meta[4] ){  /* text encoding */
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|  |    250 |     if( iDb==0 ){
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|  |    251 |       /* If opening the main database, set ENC(db). */
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|  |    252 |       ENC(db) = (u8)meta[4];
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|  |    253 |       db->pDfltColl = sqlite3FindCollSeq(db, SQLITE_UTF8, "BINARY", 6, 0);
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|  |    254 |     }else{
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|  |    255 |       /* If opening an attached database, the encoding much match ENC(db) */
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|  |    256 |       if( meta[4]!=ENC(db) ){
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|  |    257 |         sqlite3BtreeCloseCursor(curMain);
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|  |    258 |         sqlite3SetString(pzErrMsg, "attached databases must use the same"
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|  |    259 |             " text encoding as main database", (char*)0);
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|  |    260 |         sqlite3BtreeLeave(pDb->pBt);
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|  |    261 |         return SQLITE_ERROR;
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|  |    262 |       }
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|  |    263 |     }
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|  |    264 |   }else{
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|  |    265 |     DbSetProperty(db, iDb, DB_Empty);
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|  |    266 |   }
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|  |    267 |   pDb->pSchema->enc = ENC(db);
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|  |    268 | 
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|  |    269 |   size = meta[2];
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|  |    270 |   if( size==0 ){ size = SQLITE_DEFAULT_CACHE_SIZE; }
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|  |    271 |   pDb->pSchema->cache_size = size;
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|  |    272 |   sqlite3BtreeSetCacheSize(pDb->pBt, pDb->pSchema->cache_size);
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|  |    273 | 
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|  |    274 |   /*
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|  |    275 |   ** file_format==1    Version 3.0.0.
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|  |    276 |   ** file_format==2    Version 3.1.3.  // ALTER TABLE ADD COLUMN
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|  |    277 |   ** file_format==3    Version 3.1.4.  // ditto but with non-NULL defaults
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|  |    278 |   ** file_format==4    Version 3.3.0.  // DESC indices.  Boolean constants
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|  |    279 |   */
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|  |    280 |   pDb->pSchema->file_format = meta[1];
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|  |    281 |   if( pDb->pSchema->file_format==0 ){
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|  |    282 |     pDb->pSchema->file_format = 1;
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|  |    283 |   }
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|  |    284 |   if( pDb->pSchema->file_format>SQLITE_MAX_FILE_FORMAT ){
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|  |    285 |     sqlite3BtreeCloseCursor(curMain);
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|  |    286 |     sqlite3SetString(pzErrMsg, "unsupported file format", (char*)0);
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|  |    287 |     sqlite3BtreeLeave(pDb->pBt);
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|  |    288 |     return SQLITE_ERROR;
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|  |    289 |   }
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|  |    290 | 
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|  |    291 |   /* Ticket #2804:  When we open a database in the newer file format,
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|  |    292 |   ** clear the legacy_file_format pragma flag so that a VACUUM will
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|  |    293 |   ** not downgrade the database and thus invalidate any descending
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|  |    294 |   ** indices that the user might have created.
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|  |    295 |   */
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|  |    296 |   if( iDb==0 && meta[1]>=4 ){
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|  |    297 |     db->flags &= ~SQLITE_LegacyFileFmt;
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|  |    298 |   }
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|  |    299 | 
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|  |    300 |   /* Read the schema information out of the schema tables
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|  |    301 |   */
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|  |    302 |   assert( db->init.busy );
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|  |    303 |   if( rc==SQLITE_EMPTY ){
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|  |    304 |     /* For an empty database, there is nothing to read */
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|  |    305 |     rc = SQLITE_OK;
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|  |    306 |   }else{
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|  |    307 |     char *zSql;
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|  |    308 |     zSql = sqlite3MPrintf(db, 
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|  |    309 |         "SELECT name, rootpage, sql FROM '%q'.%s",
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|  |    310 |         db->aDb[iDb].zName, zMasterName);
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|  |    311 |     sqlite3SafetyOff(db);
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|  |    312 | #ifndef SQLITE_OMIT_AUTHORIZATION
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|  |    313 |     {
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|  |    314 |       int (*xAuth)(void*,int,const char*,const char*,const char*,const char*);
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|  |    315 |       xAuth = db->xAuth;
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|  |    316 |       db->xAuth = 0;
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|  |    317 | #endif
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|  |    318 |       rc = sqlite3_exec(db, zSql, sqlite3InitCallback, &initData, 0);
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|  |    319 | #ifndef SQLITE_OMIT_AUTHORIZATION
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|  |    320 |       db->xAuth = xAuth;
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|  |    321 |     }
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|  |    322 | #endif
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|  |    323 |     if( rc==SQLITE_ABORT ) rc = initData.rc;
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|  |    324 |     sqlite3SafetyOn(db);
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|  |    325 |     sqlite3_free(zSql);
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|  |    326 | #ifndef SQLITE_OMIT_ANALYZE
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|  |    327 |     if( rc==SQLITE_OK ){
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|  |    328 |       sqlite3AnalysisLoad(db, iDb);
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|  |    329 |     }
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|  |    330 | #endif
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|  |    331 |     sqlite3BtreeCloseCursor(curMain);
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|  |    332 |   }
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|  |    333 |   if( db->mallocFailed ){
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|  |    334 |     /* sqlite3SetString(pzErrMsg, "out of memory", (char*)0); */
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|  |    335 |     rc = SQLITE_NOMEM;
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|  |    336 |     sqlite3ResetInternalSchema(db, 0);
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|  |    337 |   }
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|  |    338 |   if( rc==SQLITE_OK || (db->flags&SQLITE_RecoveryMode)){
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|  |    339 |     /* Black magic: If the SQLITE_RecoveryMode flag is set, then consider
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|  |    340 |     ** the schema loaded, even if errors occured. In this situation the 
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|  |    341 |     ** current sqlite3_prepare() operation will fail, but the following one
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|  |    342 |     ** will attempt to compile the supplied statement against whatever subset
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|  |    343 |     ** of the schema was loaded before the error occured. The primary
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|  |    344 |     ** purpose of this is to allow access to the sqlite_master table
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|  |    345 |     ** even when its contents have been corrupted.
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|  |    346 |     */
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|  |    347 |     DbSetProperty(db, iDb, DB_SchemaLoaded);
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|  |    348 |     rc = SQLITE_OK;
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|  |    349 |   }
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|  |    350 |   sqlite3BtreeLeave(pDb->pBt);
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|  |    351 | 
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|  |    352 | error_out:
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|  |    353 |   if( rc==SQLITE_NOMEM || rc==SQLITE_IOERR_NOMEM ){
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|  |    354 |     db->mallocFailed = 1;
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|  |    355 |   }
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|  |    356 |   return rc;
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|  |    357 | }
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|  |    358 | 
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|  |    359 | /*
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|  |    360 | ** Initialize all database files - the main database file, the file
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|  |    361 | ** used to store temporary tables, and any additional database files
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|  |    362 | ** created using ATTACH statements.  Return a success code.  If an
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|  |    363 | ** error occurs, write an error message into *pzErrMsg.
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|  |    364 | **
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|  |    365 | ** After a database is initialized, the DB_SchemaLoaded bit is set
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|  |    366 | ** bit is set in the flags field of the Db structure. If the database
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|  |    367 | ** file was of zero-length, then the DB_Empty flag is also set.
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|  |    368 | */
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|  |    369 | int sqlite3Init(sqlite3 *db, char **pzErrMsg){
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|  |    370 |   int i, rc;
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|  |    371 |   int commit_internal = !(db->flags&SQLITE_InternChanges);
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|  |    372 |   
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|  |    373 |   assert( sqlite3_mutex_held(db->mutex) );
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|  |    374 |   if( db->init.busy ) return SQLITE_OK;
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|  |    375 |   rc = SQLITE_OK;
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|  |    376 |   db->init.busy = 1;
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|  |    377 |   for(i=0; rc==SQLITE_OK && i<db->nDb; i++){
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|  |    378 |     if( DbHasProperty(db, i, DB_SchemaLoaded) || i==1 ) continue;
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|  |    379 |     rc = sqlite3InitOne(db, i, pzErrMsg);
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|  |    380 |     if( rc ){
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|  |    381 |       sqlite3ResetInternalSchema(db, i);
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|  |    382 |     }
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|  |    383 |   }
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|  |    384 | 
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|  |    385 |   /* Once all the other databases have been initialised, load the schema
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|  |    386 |   ** for the TEMP database. This is loaded last, as the TEMP database
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|  |    387 |   ** schema may contain references to objects in other databases.
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|  |    388 |   */
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|  |    389 | #ifndef SQLITE_OMIT_TEMPDB
 | 
|  |    390 |   if( rc==SQLITE_OK && db->nDb>1 && !DbHasProperty(db, 1, DB_SchemaLoaded) ){
 | 
|  |    391 |     rc = sqlite3InitOne(db, 1, pzErrMsg);
 | 
|  |    392 |     if( rc ){
 | 
|  |    393 |       sqlite3ResetInternalSchema(db, 1);
 | 
|  |    394 |     }
 | 
|  |    395 |   }
 | 
|  |    396 | #endif
 | 
|  |    397 | 
 | 
|  |    398 |   db->init.busy = 0;
 | 
|  |    399 |   if( rc==SQLITE_OK && commit_internal ){
 | 
|  |    400 |     sqlite3CommitInternalChanges(db);
 | 
|  |    401 |   }
 | 
|  |    402 | 
 | 
|  |    403 |   return rc; 
 | 
|  |    404 | }
 | 
|  |    405 | 
 | 
|  |    406 | /*
 | 
|  |    407 | ** This routine is a no-op if the database schema is already initialised.
 | 
|  |    408 | ** Otherwise, the schema is loaded. An error code is returned.
 | 
|  |    409 | */
 | 
|  |    410 | int sqlite3ReadSchema(Parse *pParse){
 | 
|  |    411 |   int rc = SQLITE_OK;
 | 
|  |    412 |   sqlite3 *db = pParse->db;
 | 
|  |    413 |   assert( sqlite3_mutex_held(db->mutex) );
 | 
|  |    414 |   if( !db->init.busy ){
 | 
|  |    415 |     rc = sqlite3Init(db, &pParse->zErrMsg);
 | 
|  |    416 |   }
 | 
|  |    417 |   if( rc!=SQLITE_OK ){
 | 
|  |    418 |     pParse->rc = rc;
 | 
|  |    419 |     pParse->nErr++;
 | 
|  |    420 |   }
 | 
|  |    421 |   return rc;
 | 
|  |    422 | }
 | 
|  |    423 | 
 | 
|  |    424 | 
 | 
|  |    425 | /*
 | 
|  |    426 | ** Check schema cookies in all databases.  If any cookie is out
 | 
|  |    427 | ** of date, return 0.  If all schema cookies are current, return 1.
 | 
|  |    428 | */
 | 
|  |    429 | static int schemaIsValid(sqlite3 *db){
 | 
|  |    430 |   int iDb;
 | 
|  |    431 |   int rc;
 | 
|  |    432 |   BtCursor *curTemp;
 | 
|  |    433 |   int cookie;
 | 
|  |    434 |   int allOk = 1;
 | 
|  |    435 | 
 | 
|  |    436 |   assert( sqlite3_mutex_held(db->mutex) );
 | 
|  |    437 |   for(iDb=0; allOk && iDb<db->nDb; iDb++){
 | 
|  |    438 |     Btree *pBt;
 | 
|  |    439 |     pBt = db->aDb[iDb].pBt;
 | 
|  |    440 |     if( pBt==0 ) continue;
 | 
|  |    441 |     rc = sqlite3BtreeCursor(pBt, MASTER_ROOT, 0, 0, 0, &curTemp);
 | 
|  |    442 |     if( rc==SQLITE_OK ){
 | 
|  |    443 |       rc = sqlite3BtreeGetMeta(pBt, 1, (u32 *)&cookie);
 | 
|  |    444 |       if( rc==SQLITE_OK && cookie!=db->aDb[iDb].pSchema->schema_cookie ){
 | 
|  |    445 |         allOk = 0;
 | 
|  |    446 |       }
 | 
|  |    447 |       sqlite3BtreeCloseCursor(curTemp);
 | 
|  |    448 |     }
 | 
|  |    449 |     if( rc==SQLITE_NOMEM || rc==SQLITE_IOERR_NOMEM ){
 | 
|  |    450 |       db->mallocFailed = 1;
 | 
|  |    451 |     }
 | 
|  |    452 |   }
 | 
|  |    453 |   return allOk;
 | 
|  |    454 | }
 | 
|  |    455 | 
 | 
|  |    456 | /*
 | 
|  |    457 | ** Convert a schema pointer into the iDb index that indicates
 | 
|  |    458 | ** which database file in db->aDb[] the schema refers to.
 | 
|  |    459 | **
 | 
|  |    460 | ** If the same database is attached more than once, the first
 | 
|  |    461 | ** attached database is returned.
 | 
|  |    462 | */
 | 
|  |    463 | int sqlite3SchemaToIndex(sqlite3 *db, Schema *pSchema){
 | 
|  |    464 |   int i = -1000000;
 | 
|  |    465 | 
 | 
|  |    466 |   /* If pSchema is NULL, then return -1000000. This happens when code in 
 | 
|  |    467 |   ** expr.c is trying to resolve a reference to a transient table (i.e. one
 | 
|  |    468 |   ** created by a sub-select). In this case the return value of this 
 | 
|  |    469 |   ** function should never be used.
 | 
|  |    470 |   **
 | 
|  |    471 |   ** We return -1000000 instead of the more usual -1 simply because using
 | 
|  |    472 |   ** -1000000 as incorrectly using -1000000 index into db->aDb[] is much 
 | 
|  |    473 |   ** more likely to cause a segfault than -1 (of course there are assert()
 | 
|  |    474 |   ** statements too, but it never hurts to play the odds).
 | 
|  |    475 |   */
 | 
|  |    476 |   assert( sqlite3_mutex_held(db->mutex) );
 | 
|  |    477 |   if( pSchema ){
 | 
|  |    478 |     for(i=0; i<db->nDb; i++){
 | 
|  |    479 |       if( db->aDb[i].pSchema==pSchema ){
 | 
|  |    480 |         break;
 | 
|  |    481 |       }
 | 
|  |    482 |     }
 | 
|  |    483 |     assert( i>=0 &&i>=0 &&  i<db->nDb );
 | 
|  |    484 |   }
 | 
|  |    485 |   return i;
 | 
|  |    486 | }
 | 
|  |    487 | 
 | 
|  |    488 | /*
 | 
|  |    489 | ** Compile the UTF-8 encoded SQL statement zSql into a statement handle.
 | 
|  |    490 | */
 | 
|  |    491 | int sqlite3Prepare(
 | 
|  |    492 |   sqlite3 *db,              /* Database handle. */
 | 
|  |    493 |   const char *zSql,         /* UTF-8 encoded SQL statement. */
 | 
|  |    494 |   int nBytes,               /* Length of zSql in bytes. */
 | 
|  |    495 |   int saveSqlFlag,          /* True to copy SQL text into the sqlite3_stmt */
 | 
|  |    496 |   sqlite3_stmt **ppStmt,    /* OUT: A pointer to the prepared statement */
 | 
|  |    497 |   const char **pzTail       /* OUT: End of parsed string */
 | 
|  |    498 | ){
 | 
|  |    499 |   Parse sParse;
 | 
|  |    500 |   char *zErrMsg = 0;
 | 
|  |    501 |   int rc = SQLITE_OK;
 | 
|  |    502 |   int i;
 | 
|  |    503 | 
 | 
|  |    504 |   assert( ppStmt );
 | 
|  |    505 |   *ppStmt = 0;
 | 
|  |    506 |   if( sqlite3SafetyOn(db) ){
 | 
|  |    507 |     return SQLITE_MISUSE;
 | 
|  |    508 |   }
 | 
|  |    509 |   assert( !db->mallocFailed );
 | 
|  |    510 |   assert( sqlite3_mutex_held(db->mutex) );
 | 
|  |    511 | 
 | 
|  |    512 |   /* If any attached database schemas are locked, do not proceed with
 | 
|  |    513 |   ** compilation. Instead return SQLITE_LOCKED immediately.
 | 
|  |    514 |   */
 | 
|  |    515 |   for(i=0; i<db->nDb; i++) {
 | 
|  |    516 |     Btree *pBt = db->aDb[i].pBt;
 | 
|  |    517 |     if( pBt ){
 | 
|  |    518 |       int rc;
 | 
|  |    519 |       rc = sqlite3BtreeSchemaLocked(pBt);
 | 
|  |    520 |       if( rc ){
 | 
|  |    521 |         const char *zDb = db->aDb[i].zName;
 | 
|  |    522 |         sqlite3Error(db, SQLITE_LOCKED, "database schema is locked: %s", zDb);
 | 
|  |    523 |         sqlite3SafetyOff(db);
 | 
|  |    524 |         return SQLITE_LOCKED;
 | 
|  |    525 |       }
 | 
|  |    526 |     }
 | 
|  |    527 |   }
 | 
|  |    528 |   
 | 
|  |    529 |   memset(&sParse, 0, sizeof(sParse));
 | 
|  |    530 |   sParse.db = db;
 | 
|  |    531 |   if( nBytes>=0 && zSql[nBytes]!=0 ){
 | 
|  |    532 |     char *zSqlCopy;
 | 
|  |    533 |     if( nBytes>SQLITE_MAX_SQL_LENGTH ){
 | 
|  |    534 |       return SQLITE_TOOBIG;
 | 
|  |    535 |     }
 | 
|  |    536 |     zSqlCopy = sqlite3DbStrNDup(db, zSql, nBytes);
 | 
|  |    537 |     if( zSqlCopy ){
 | 
|  |    538 |       sqlite3RunParser(&sParse, zSqlCopy, &zErrMsg);
 | 
|  |    539 |       sqlite3_free(zSqlCopy);
 | 
|  |    540 |     }
 | 
|  |    541 |     sParse.zTail = &zSql[nBytes];
 | 
|  |    542 |   }else{
 | 
|  |    543 |     sqlite3RunParser(&sParse, zSql, &zErrMsg);
 | 
|  |    544 |   }
 | 
|  |    545 | 
 | 
|  |    546 |   if( db->mallocFailed ){
 | 
|  |    547 |     sParse.rc = SQLITE_NOMEM;
 | 
|  |    548 |   }
 | 
|  |    549 |   if( sParse.rc==SQLITE_DONE ) sParse.rc = SQLITE_OK;
 | 
|  |    550 |   if( sParse.checkSchema && !schemaIsValid(db) ){
 | 
|  |    551 |     sParse.rc = SQLITE_SCHEMA;
 | 
|  |    552 |   }
 | 
|  |    553 |   if( sParse.rc==SQLITE_SCHEMA ){
 | 
|  |    554 |     sqlite3ResetInternalSchema(db, 0);
 | 
|  |    555 |   }
 | 
|  |    556 |   if( db->mallocFailed ){
 | 
|  |    557 |     sParse.rc = SQLITE_NOMEM;
 | 
|  |    558 |   }
 | 
|  |    559 |   if( pzTail ){
 | 
|  |    560 |     *pzTail = sParse.zTail;
 | 
|  |    561 |   }
 | 
|  |    562 |   rc = sParse.rc;
 | 
|  |    563 | 
 | 
|  |    564 | #ifndef SQLITE_OMIT_EXPLAIN
 | 
|  |    565 |   if( rc==SQLITE_OK && sParse.pVdbe && sParse.explain ){
 | 
|  |    566 |     if( sParse.explain==2 ){
 | 
|  |    567 |       sqlite3VdbeSetNumCols(sParse.pVdbe, 3);
 | 
|  |    568 |       sqlite3VdbeSetColName(sParse.pVdbe, 0, COLNAME_NAME, "order", P3_STATIC);
 | 
|  |    569 |       sqlite3VdbeSetColName(sParse.pVdbe, 1, COLNAME_NAME, "from", P3_STATIC);
 | 
|  |    570 |       sqlite3VdbeSetColName(sParse.pVdbe, 2, COLNAME_NAME, "detail", P3_STATIC);
 | 
|  |    571 |     }else{
 | 
|  |    572 |       sqlite3VdbeSetNumCols(sParse.pVdbe, 5);
 | 
|  |    573 |       sqlite3VdbeSetColName(sParse.pVdbe, 0, COLNAME_NAME, "addr", P3_STATIC);
 | 
|  |    574 |       sqlite3VdbeSetColName(sParse.pVdbe, 1, COLNAME_NAME, "opcode", P3_STATIC);
 | 
|  |    575 |       sqlite3VdbeSetColName(sParse.pVdbe, 2, COLNAME_NAME, "p1", P3_STATIC);
 | 
|  |    576 |       sqlite3VdbeSetColName(sParse.pVdbe, 3, COLNAME_NAME, "p2", P3_STATIC);
 | 
|  |    577 |       sqlite3VdbeSetColName(sParse.pVdbe, 4, COLNAME_NAME, "p3", P3_STATIC);
 | 
|  |    578 |     }
 | 
|  |    579 |   }
 | 
|  |    580 | #endif
 | 
|  |    581 | 
 | 
|  |    582 |   if( sqlite3SafetyOff(db) ){
 | 
|  |    583 |     rc = SQLITE_MISUSE;
 | 
|  |    584 |   }
 | 
|  |    585 | 
 | 
|  |    586 |   if( saveSqlFlag ){
 | 
|  |    587 |     sqlite3VdbeSetSql(sParse.pVdbe, zSql, sParse.zTail - zSql);
 | 
|  |    588 |   }
 | 
|  |    589 |   if( rc!=SQLITE_OK || db->mallocFailed ){
 | 
|  |    590 |     sqlite3_finalize((sqlite3_stmt*)sParse.pVdbe);
 | 
|  |    591 |     assert(!(*ppStmt));
 | 
|  |    592 |   }else{
 | 
|  |    593 |     *ppStmt = (sqlite3_stmt*)sParse.pVdbe;
 | 
|  |    594 |   }
 | 
|  |    595 | 
 | 
|  |    596 |   if( zErrMsg ){
 | 
|  |    597 |     sqlite3Error(db, rc, "%s", zErrMsg);
 | 
|  |    598 |     sqlite3_free(zErrMsg);
 | 
|  |    599 |   }else{
 | 
|  |    600 |     sqlite3Error(db, rc, 0);
 | 
|  |    601 |   }
 | 
|  |    602 | 
 | 
|  |    603 |   rc = sqlite3ApiExit(db, rc);
 | 
|  |    604 |   /* sqlite3ReleaseThreadData(); */
 | 
|  |    605 |   assert( (rc&db->errMask)==rc );
 | 
|  |    606 |   return rc;
 | 
|  |    607 | }
 | 
|  |    608 | static int sqlite3LockAndPrepare(
 | 
|  |    609 |   sqlite3 *db,              /* Database handle. */
 | 
|  |    610 |   const char *zSql,         /* UTF-8 encoded SQL statement. */
 | 
|  |    611 |   int nBytes,               /* Length of zSql in bytes. */
 | 
|  |    612 |   int saveSqlFlag,          /* True to copy SQL text into the sqlite3_stmt */
 | 
|  |    613 |   sqlite3_stmt **ppStmt,    /* OUT: A pointer to the prepared statement */
 | 
|  |    614 |   const char **pzTail       /* OUT: End of parsed string */
 | 
|  |    615 | ){
 | 
|  |    616 |   int rc;
 | 
|  |    617 |   if( sqlite3SafetyCheck(db) ){
 | 
|  |    618 |     return SQLITE_MISUSE;
 | 
|  |    619 |   }
 | 
|  |    620 |   sqlite3_mutex_enter(db->mutex);
 | 
|  |    621 |   sqlite3BtreeEnterAll(db);
 | 
|  |    622 |   rc = sqlite3Prepare(db, zSql, nBytes, saveSqlFlag, ppStmt, pzTail);
 | 
|  |    623 |   sqlite3BtreeLeaveAll(db);
 | 
|  |    624 |   sqlite3_mutex_leave(db->mutex);
 | 
|  |    625 |   return rc;
 | 
|  |    626 | }
 | 
|  |    627 | 
 | 
|  |    628 | /*
 | 
|  |    629 | ** Rerun the compilation of a statement after a schema change.
 | 
|  |    630 | ** Return true if the statement was recompiled successfully.
 | 
|  |    631 | ** Return false if there is an error of some kind.
 | 
|  |    632 | */
 | 
|  |    633 | int sqlite3Reprepare(Vdbe *p){
 | 
|  |    634 |   int rc;
 | 
|  |    635 |   sqlite3_stmt *pNew;
 | 
|  |    636 |   const char *zSql;
 | 
|  |    637 |   sqlite3 *db;
 | 
|  |    638 | 
 | 
|  |    639 |   assert( sqlite3_mutex_held(sqlite3VdbeDb(p)->mutex) );
 | 
|  |    640 |   zSql = sqlite3_sql((sqlite3_stmt *)p);
 | 
|  |    641 |   if( zSql==0 ){
 | 
|  |    642 |     return 0;
 | 
|  |    643 |   }
 | 
|  |    644 |   db = sqlite3VdbeDb(p);
 | 
|  |    645 |   assert( sqlite3_mutex_held(db->mutex) );
 | 
|  |    646 |   rc = sqlite3LockAndPrepare(db, zSql, -1, 0, &pNew, 0);
 | 
|  |    647 |   if( rc ){
 | 
|  |    648 |     if( rc==SQLITE_NOMEM ){
 | 
|  |    649 |       db->mallocFailed = 1;
 | 
|  |    650 |     }
 | 
|  |    651 |     assert( pNew==0 );
 | 
|  |    652 |     return 0;
 | 
|  |    653 |   }else{
 | 
|  |    654 |     assert( pNew!=0 );
 | 
|  |    655 |   }
 | 
|  |    656 |   sqlite3VdbeSwap((Vdbe*)pNew, p);
 | 
|  |    657 |   sqlite3_transfer_bindings(pNew, (sqlite3_stmt*)p);
 | 
|  |    658 |   sqlite3VdbeResetStepResult((Vdbe*)pNew);
 | 
|  |    659 |   sqlite3VdbeFinalize((Vdbe*)pNew);
 | 
|  |    660 |   return 1;
 | 
|  |    661 | }
 | 
|  |    662 | 
 | 
|  |    663 | 
 | 
|  |    664 | /*
 | 
|  |    665 | ** Two versions of the official API.  Legacy and new use.  In the legacy
 | 
|  |    666 | ** version, the original SQL text is not saved in the prepared statement
 | 
|  |    667 | ** and so if a schema change occurs, SQLITE_SCHEMA is returned by
 | 
|  |    668 | ** sqlite3_step().  In the new version, the original SQL text is retained
 | 
|  |    669 | ** and the statement is automatically recompiled if an schema change
 | 
|  |    670 | ** occurs.
 | 
|  |    671 | */
 | 
|  |    672 | EXPORT_C int sqlite3_prepare(
 | 
|  |    673 |   sqlite3 *db,              /* Database handle. */
 | 
|  |    674 |   const char *zSql,         /* UTF-8 encoded SQL statement. */
 | 
|  |    675 |   int nBytes,               /* Length of zSql in bytes. */
 | 
|  |    676 |   sqlite3_stmt **ppStmt,    /* OUT: A pointer to the prepared statement */
 | 
|  |    677 |   const char **pzTail       /* OUT: End of parsed string */
 | 
|  |    678 | ){
 | 
|  |    679 |   return sqlite3LockAndPrepare(db,zSql,nBytes,0,ppStmt,pzTail);
 | 
|  |    680 | }
 | 
|  |    681 | EXPORT_C int sqlite3_prepare_v2(
 | 
|  |    682 |   sqlite3 *db,              /* Database handle. */
 | 
|  |    683 |   const char *zSql,         /* UTF-8 encoded SQL statement. */
 | 
|  |    684 |   int nBytes,               /* Length of zSql in bytes. */
 | 
|  |    685 |   sqlite3_stmt **ppStmt,    /* OUT: A pointer to the prepared statement */
 | 
|  |    686 |   const char **pzTail       /* OUT: End of parsed string */
 | 
|  |    687 | ){
 | 
|  |    688 |   return sqlite3LockAndPrepare(db,zSql,nBytes,1,ppStmt,pzTail);
 | 
|  |    689 | }
 | 
|  |    690 | 
 | 
|  |    691 | 
 | 
|  |    692 | #ifndef SQLITE_OMIT_UTF16
 | 
|  |    693 | /*
 | 
|  |    694 | ** Compile the UTF-16 encoded SQL statement zSql into a statement handle.
 | 
|  |    695 | */
 | 
|  |    696 | static int sqlite3Prepare16(
 | 
|  |    697 |   sqlite3 *db,              /* Database handle. */ 
 | 
|  |    698 |   const void *zSql,         /* UTF-8 encoded SQL statement. */
 | 
|  |    699 |   int nBytes,               /* Length of zSql in bytes. */
 | 
|  |    700 |   int saveSqlFlag,          /* True to save SQL text into the sqlite3_stmt */
 | 
|  |    701 |   sqlite3_stmt **ppStmt,    /* OUT: A pointer to the prepared statement */
 | 
|  |    702 |   const void **pzTail       /* OUT: End of parsed string */
 | 
|  |    703 | ){
 | 
|  |    704 |   /* This function currently works by first transforming the UTF-16
 | 
|  |    705 |   ** encoded string to UTF-8, then invoking sqlite3_prepare(). The
 | 
|  |    706 |   ** tricky bit is figuring out the pointer to return in *pzTail.
 | 
|  |    707 |   */
 | 
|  |    708 |   char *zSql8;
 | 
|  |    709 |   const char *zTail8 = 0;
 | 
|  |    710 |   int rc = SQLITE_OK;
 | 
|  |    711 | 
 | 
|  |    712 |   if( sqlite3SafetyCheck(db) ){
 | 
|  |    713 |     return SQLITE_MISUSE;
 | 
|  |    714 |   }
 | 
|  |    715 |   sqlite3_mutex_enter(db->mutex);
 | 
|  |    716 |   zSql8 = sqlite3Utf16to8(db, zSql, nBytes);
 | 
|  |    717 |   if( zSql8 ){
 | 
|  |    718 |     rc = sqlite3LockAndPrepare(db, zSql8, -1, saveSqlFlag, ppStmt, &zTail8);
 | 
|  |    719 |   }
 | 
|  |    720 | 
 | 
|  |    721 |   if( zTail8 && pzTail ){
 | 
|  |    722 |     /* If sqlite3_prepare returns a tail pointer, we calculate the
 | 
|  |    723 |     ** equivalent pointer into the UTF-16 string by counting the unicode
 | 
|  |    724 |     ** characters between zSql8 and zTail8, and then returning a pointer
 | 
|  |    725 |     ** the same number of characters into the UTF-16 string.
 | 
|  |    726 |     */
 | 
|  |    727 |     int chars_parsed = sqlite3Utf8CharLen(zSql8, zTail8-zSql8);
 | 
|  |    728 |     *pzTail = (u8 *)zSql + sqlite3Utf16ByteLen(zSql, chars_parsed);
 | 
|  |    729 |   }
 | 
|  |    730 |   sqlite3_free(zSql8); 
 | 
|  |    731 |   rc = sqlite3ApiExit(db, rc);
 | 
|  |    732 |   sqlite3_mutex_leave(db->mutex);
 | 
|  |    733 |   return rc;
 | 
|  |    734 | }
 | 
|  |    735 | 
 | 
|  |    736 | /*
 | 
|  |    737 | ** Two versions of the official API.  Legacy and new use.  In the legacy
 | 
|  |    738 | ** version, the original SQL text is not saved in the prepared statement
 | 
|  |    739 | ** and so if a schema change occurs, SQLITE_SCHEMA is returned by
 | 
|  |    740 | ** sqlite3_step().  In the new version, the original SQL text is retained
 | 
|  |    741 | ** and the statement is automatically recompiled if an schema change
 | 
|  |    742 | ** occurs.
 | 
|  |    743 | */
 | 
|  |    744 | EXPORT_C int sqlite3_prepare16(
 | 
|  |    745 |   sqlite3 *db,              /* Database handle. */ 
 | 
|  |    746 |   const void *zSql,         /* UTF-8 encoded SQL statement. */
 | 
|  |    747 |   int nBytes,               /* Length of zSql in bytes. */
 | 
|  |    748 |   sqlite3_stmt **ppStmt,    /* OUT: A pointer to the prepared statement */
 | 
|  |    749 |   const void **pzTail       /* OUT: End of parsed string */
 | 
|  |    750 | ){
 | 
|  |    751 |   return sqlite3Prepare16(db,zSql,nBytes,0,ppStmt,pzTail);
 | 
|  |    752 | }
 | 
|  |    753 | EXPORT_C int sqlite3_prepare16_v2(
 | 
|  |    754 |   sqlite3 *db,              /* Database handle. */ 
 | 
|  |    755 |   const void *zSql,         /* UTF-8 encoded SQL statement. */
 | 
|  |    756 |   int nBytes,               /* Length of zSql in bytes. */
 | 
|  |    757 |   sqlite3_stmt **ppStmt,    /* OUT: A pointer to the prepared statement */
 | 
|  |    758 |   const void **pzTail       /* OUT: End of parsed string */
 | 
|  |    759 | ){
 | 
|  |    760 |   return sqlite3Prepare16(db,zSql,nBytes,1,ppStmt,pzTail);
 | 
|  |    761 | }
 | 
|  |    762 | 
 | 
|  |    763 | #endif /* SQLITE_OMIT_UTF16 */
 |