321 lines
		
	
	
		
			9.5 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			321 lines
		
	
	
		
			9.5 KiB
		
	
	
	
		
			C
		
	
	
		
			Executable File
		
	
	
	
	
/*
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** 2003 April 6
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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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** This file contains code used to implement the VACUUM command.
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**
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** Most of the code in this file may be omitted by defining the
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** SQLITE_OMIT_VACUUM macro.
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**
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** $Id: vacuum.c,v 1.1.1.1 2004-03-11 22:22:23 alex Exp $
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*/
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#include "sqliteInt.h"
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#include "os.h"
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/*
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** A structure for holding a dynamic string - a string that can grow
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** without bound. 
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*/
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typedef struct dynStr dynStr;
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struct dynStr {
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  char *z;        /* Text of the string in space obtained from sqliteMalloc() */
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  int nAlloc;     /* Amount of space allocated to z[] */
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  int nUsed;      /* Next unused slot in z[] */
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};
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/*
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** A structure that holds the vacuum context
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*/
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typedef struct vacuumStruct vacuumStruct;
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struct vacuumStruct {
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  sqlite *dbOld;       /* Original database */
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  sqlite *dbNew;       /* New database */
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  char **pzErrMsg;     /* Write errors here */
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  int rc;              /* Set to non-zero on an error */
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  const char *zTable;  /* Name of a table being copied */
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  const char *zPragma; /* Pragma to execute with results */
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  dynStr s1, s2;       /* Two dynamic strings */
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};
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#if !defined(SQLITE_OMIT_VACUUM) || SQLITE_OMIT_VACUUM
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/*
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** Append text to a dynamic string
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*/
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static void appendText(dynStr *p, const char *zText, int nText){
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  if( nText<0 ) nText = strlen(zText);
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  if( p->z==0 || p->nUsed + nText + 1 >= p->nAlloc ){
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    char *zNew;
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    p->nAlloc = p->nUsed + nText + 1000;
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    zNew = sqliteRealloc(p->z, p->nAlloc);
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    if( zNew==0 ){
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      sqliteFree(p->z);
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      memset(p, 0, sizeof(*p));
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      return;
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    }
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    p->z = zNew;
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  }
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  memcpy(&p->z[p->nUsed], zText, nText+1);
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  p->nUsed += nText;
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}
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/*
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** Append text to a dynamic string, having first put the text in quotes.
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*/
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static void appendQuoted(dynStr *p, const char *zText){
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  int i, j;
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  appendText(p, "'", 1);
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  for(i=j=0; zText[i]; i++){
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    if( zText[i]=='\'' ){
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      appendText(p, &zText[j], i-j+1);
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      j = i + 1;
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      appendText(p, "'", 1);
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    }
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  }
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  if( j<i ){
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    appendText(p, &zText[j], i-j);
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  }
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  appendText(p, "'", 1);
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}
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/*
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** Execute statements of SQL.  If an error occurs, write the error
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** message into *pzErrMsg and return non-zero.
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*/
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static int execsql(char **pzErrMsg, sqlite *db, const char *zSql){ 
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  char *zErrMsg = 0;
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  int rc;
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  /* printf("***** executing *****\n%s\n", zSql); */
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  rc = sqlite_exec(db, zSql, 0, 0, &zErrMsg);
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  if( zErrMsg ){
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    sqliteSetString(pzErrMsg, zErrMsg, (char*)0);
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    sqlite_freemem(zErrMsg);
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  }
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  return rc;
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}
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/*
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** This is the second stage callback.  Each invocation contains all the
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** data for a single row of a single table in the original database.  This
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** routine must write that information into the new database.
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*/
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static int vacuumCallback2(void *pArg, int argc, char **argv, char **NotUsed){
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  vacuumStruct *p = (vacuumStruct*)pArg;
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  const char *zSep = "(";
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  int i;
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  if( argv==0 ) return 0;
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  p->s2.nUsed = 0;
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  appendText(&p->s2, "INSERT INTO ", -1);
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  appendQuoted(&p->s2, p->zTable);
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  appendText(&p->s2, " VALUES", -1);
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  for(i=0; i<argc; i++){
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    appendText(&p->s2, zSep, 1);
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    zSep = ",";
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    if( argv[i]==0 ){
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      appendText(&p->s2, "NULL", 4);
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    }else{
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      appendQuoted(&p->s2, argv[i]);
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    }
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  }
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  appendText(&p->s2,")", 1);
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  p->rc = execsql(p->pzErrMsg, p->dbNew, p->s2.z);
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  return p->rc;
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}
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/*
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** This is the first stage callback.  Each invocation contains three
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** arguments where are taken from the SQLITE_MASTER table of the original
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** database:  (1) the entry type, (2) the entry name, and (3) the SQL for
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** the entry.  In all cases, execute the SQL of the third argument.
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** For tables, run a query to select all entries in that table and 
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** transfer them to the second-stage callback.
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*/
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static int vacuumCallback1(void *pArg, int argc, char **argv, char **NotUsed){
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  vacuumStruct *p = (vacuumStruct*)pArg;
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  int rc = 0;
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  assert( argc==3 );
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  if( argv==0 ) return 0;
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  assert( argv[0]!=0 );
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  assert( argv[1]!=0 );
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  assert( argv[2]!=0 );
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  rc = execsql(p->pzErrMsg, p->dbNew, argv[2]);
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  if( rc==SQLITE_OK && strcmp(argv[0],"table")==0 ){
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    char *zErrMsg = 0;
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    p->s1.nUsed = 0;
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    appendText(&p->s1, "SELECT * FROM ", -1);
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    appendQuoted(&p->s1, argv[1]);
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    p->zTable = argv[1];
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    rc = sqlite_exec(p->dbOld, p->s1.z, vacuumCallback2, p, &zErrMsg);
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    if( zErrMsg ){
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      sqliteSetString(p->pzErrMsg, zErrMsg, (char*)0);
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      sqlite_freemem(zErrMsg);
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    }
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  }
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  if( rc!=SQLITE_ABORT ) p->rc = rc;
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  return rc;
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}
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/*
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** This callback is used to transfer PRAGMA settings from one database
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** to the other.  The value in argv[0] should be passed to a pragma
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** identified by ((vacuumStruct*)pArg)->zPragma.
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*/
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static int vacuumCallback3(void *pArg, int argc, char **argv, char **NotUsed){
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  vacuumStruct *p = (vacuumStruct*)pArg;
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  char zBuf[200];
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  assert( argc==1 );
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  if( argv==0 ) return 0;
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  assert( argv[0]!=0 );
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  assert( strlen(p->zPragma)<100 );
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  assert( strlen(argv[0])<30 );
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  sprintf(zBuf,"PRAGMA %s=%s;", p->zPragma, argv[0]);
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  p->rc = execsql(p->pzErrMsg, p->dbNew, zBuf);
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  return p->rc;
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}
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/*
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** Generate a random name of 20 character in length.
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*/
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static void randomName(unsigned char *zBuf){
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  static const unsigned char zChars[] =
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    "abcdefghijklmnopqrstuvwxyz"
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    "0123456789";
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  int i;
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  sqliteRandomness(20, zBuf);
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  for(i=0; i<20; i++){
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    zBuf[i] = zChars[ zBuf[i]%(sizeof(zChars)-1) ];
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  }
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}
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#endif
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/*
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** The non-standard VACUUM command is used to clean up the database,
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** collapse free space, etc.  It is modelled after the VACUUM command
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** in PostgreSQL.
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**
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** In version 1.0.x of SQLite, the VACUUM command would call
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** gdbm_reorganize() on all the database tables.  But beginning
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** with 2.0.0, SQLite no longer uses GDBM so this command has
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** become a no-op.
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*/
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void sqliteVacuum(Parse *pParse, Token *pTableName){
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  Vdbe *v = sqliteGetVdbe(pParse);
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  sqliteVdbeAddOp(v, OP_Vacuum, 0, 0);
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  return;
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}
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/*
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** This routine implements the OP_Vacuum opcode of the VDBE.
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*/
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int sqliteRunVacuum(char **pzErrMsg, sqlite *db){
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#if !defined(SQLITE_OMIT_VACUUM) || SQLITE_OMIT_VACUUM
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  const char *zFilename;  /* full pathname of the database file */
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  int nFilename;          /* number of characters  in zFilename[] */
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  char *zTemp = 0;        /* a temporary file in same directory as zFilename */
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  sqlite *dbNew = 0;      /* The new vacuumed database */
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  int rc = SQLITE_OK;     /* Return code from service routines */
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  int i;                  /* Loop counter */
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  char *zErrMsg;          /* Error message */
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  vacuumStruct sVac;      /* Information passed to callbacks */
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  /* These are all of the pragmas that need to be transferred over
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  ** to the new database */
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  static const char *zPragma[] = {
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     "default_synchronous",
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     "default_cache_size",
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     /* "default_temp_store", */
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  };
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  if( db->flags & SQLITE_InTrans ){
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    sqliteSetString(pzErrMsg, "cannot VACUUM from within a transaction", 
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       (char*)0);
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    return SQLITE_ERROR;
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  }
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  memset(&sVac, 0, sizeof(sVac));
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  /* Get the full pathname of the database file and create two
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  ** temporary filenames in the same directory as the original file.
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  */
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  zFilename = sqliteBtreeGetFilename(db->aDb[0].pBt);
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  if( zFilename==0 ){
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    /* This only happens with the in-memory database.  VACUUM is a no-op
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    ** there, so just return */
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    return SQLITE_OK;
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  }
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  nFilename = strlen(zFilename);
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  zTemp = sqliteMalloc( nFilename+100 );
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  if( zTemp==0 ) return SQLITE_NOMEM;
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  strcpy(zTemp, zFilename);
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  for(i=0; i<10; i++){
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    zTemp[nFilename] = '-';
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    randomName(&zTemp[nFilename+1]);
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    if( !sqliteOsFileExists(zTemp) ) break;
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  }
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  if( i>=10 ){
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    sqliteSetString(pzErrMsg, "unable to create a temporary database file "
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       "in the same directory as the original database", (char*)0);
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    goto end_of_vacuum;
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  }
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  dbNew = sqlite_open(zTemp, 0, &zErrMsg);
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  if( dbNew==0 ){
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    sqliteSetString(pzErrMsg, "unable to open a temporary database at ",
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       zTemp, " - ", zErrMsg, (char*)0);
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    goto end_of_vacuum;
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  }
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  if( (rc = execsql(pzErrMsg, db, "BEGIN"))!=0 ) goto end_of_vacuum;
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  if( (rc = execsql(pzErrMsg, dbNew, "PRAGMA synchronous=off; BEGIN"))!=0 ){
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    goto end_of_vacuum;
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  }
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  sVac.dbOld = db;
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  sVac.dbNew = dbNew;
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  sVac.pzErrMsg = pzErrMsg;
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  for(i=0; rc==SQLITE_OK && i<sizeof(zPragma)/sizeof(zPragma[0]); i++){
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    char zBuf[200];
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    assert( strlen(zPragma[i])<100 );
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    sprintf(zBuf, "PRAGMA %s;", zPragma[i]);
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    sVac.zPragma = zPragma[i];
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    rc = sqlite_exec(db, zBuf, vacuumCallback3, &sVac, &zErrMsg);
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  }
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  if( rc==SQLITE_OK ){
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    rc = sqlite_exec(db, 
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      "SELECT type, name, sql FROM sqlite_master "
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      "WHERE sql NOT NULL AND type!='view' "
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      "UNION ALL "
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      "SELECT type, name, sql FROM sqlite_master "
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      "WHERE sql NOT NULL AND type=='view'",
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      vacuumCallback1, &sVac, &zErrMsg);
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  }
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  if( rc==SQLITE_OK ){
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    rc = sqliteBtreeCopyFile(db->aDb[0].pBt, dbNew->aDb[0].pBt);
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    sqlite_exec(db, "COMMIT", 0, 0, 0);
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    sqliteResetInternalSchema(db, 0);
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  }
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end_of_vacuum:
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  if( rc && zErrMsg!=0 ){
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    sqliteSetString(pzErrMsg, "unable to vacuum database - ", 
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       zErrMsg, (char*)0);
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  }
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  sqlite_exec(db, "ROLLBACK", 0, 0, 0);
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  if( dbNew ) sqlite_close(dbNew);
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  sqliteOsDelete(zTemp);
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  sqliteFree(zTemp);
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  sqliteFree(sVac.s1.z);
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  sqliteFree(sVac.s2.z);
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  if( zErrMsg ) sqlite_freemem(zErrMsg);
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  if( rc==SQLITE_ABORT ) sVac.rc = SQLITE_ERROR;
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  return sVac.rc;
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#endif
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}
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