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⟦9b6dc0038⟧ TextFile

    Length: 5012 (0x1394)
    Types: TextFile
    Names: »gdbmreorg.c«

Derivation

└─⟦a05ed705a⟧ Bits:30007078 DKUUG GNU 2/12/89
    └─⟦847972ed9⟧ »./gdbm0.9.tar.Z« 
        └─⟦e41d67701⟧ 
            └─⟦this⟧ »gdbm/gdbmreorg.c« 

TextFile

/* gdbmreorg.c - Reorganize the database file. */

/*  GNU DBM  - DataBase Manager (database subroutines) by Philip A. Nelson
    Copyright (C) 1989  Free Software Foundation, Inc.

    This program is free software; you can redistribute it and/or modify
    it under the terms of the GNU General Public License as published by
    the Free Software Foundation.

    This program is distributed in the hope that it will be useful,
    but WITHOUT ANY WARRANTY; without even the implied warranty of
    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
    GNU General Public License for more details.

    You should have received a copy of the GNU General Public License
    along with this program; if not, write to the Free Software
    Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.

    You may contact the author by:
       e-mail:  phil@wwu.edu
      us-mail:  Philip A. Nelson
                Computer Science Department
                Western Washington University
                Bellingham, WA 98226
        phone:  (206) 676-3035
       
************************************************************************/


#include <stdio.h>
#include <sys/types.h>
#include <sys/file.h>
#include <sys/stat.h>
#include "gdbmdefs.h"
#include "systems.h"
#include "gdbmerrno.h"
extern gdbm_error gdbm_errno;
#include "extern.h"

#ifdef NEED_RENAME

/* Rename takes OLD_NAME and renames it as NEW_NAME.  If it can not rename
   the file a non-zero value is returned.  OLD_NAME is guaranteed to
   remain if it can't be renamed. It assumes NEW_NAME always exists (due
   to being used in gdbm). */

static int
rename ( old_name, new_name )
     char* old_name;
     char* new_name;
{
  if ( unlink (new_name) != 0 )   
    return -1;

  if ( link (old_name, new_name) != 0)
    return -1;
  
  unlink (old_name);
  return 0;

}
#endif



/* Reorganize the database.  This requires creating a new file and inserting
   all the elements in the old file DBF into the new file.  The new file
   is then renamed to the same name as the old file and DBF is updated to
   contain all the correct information about the new file.  If an error
   is detected, the return value is negative.  The value zero is returned
   after a successful reorganization. */

int
gdbm_reorganize (dbf)
     gdbm_file_info *dbf;

{
  gdbm_file_info *new_dbf;		/* The new file. */
  char *new_name;			/* A temporary name. */
  int  len;				/* Used in new_name construction. */
  datum key, nextkey, data;		/* For the sequential sweep. */
  struct stat fileinfo;			/* Information about the file. */
  int  index;				/* Use in moving the bucket cache. */


  /* Readers can not reorganize! */
  if (dbf->read_write != GDBM_WRITER)
    {
      gdbm_errno = READER_CANT_REORGANIZE;
      return -1;
    }

  /* Construct new name for temporary file. */
  len = strlen (dbf->name);
  new_name = (char *) malloc (len + 3);
  if (new_name == NULL)
    {
      gdbm_errno = MALLOC_ERROR;
      return -1;
    }
  strcpy (&new_name[1], dbf->name);
  new_name[0] = '#';
  new_name[len+1] = '#';
  new_name[len+2] = 0;

  /* Get the mode for the old file and open the new database. */
  fstat (dbf->desc, &fileinfo);
  new_dbf = gdbm_open (new_name, dbf->header->block_size, GDBM_WRCREAT,
		       fileinfo.st_mode, dbf->fatal_err);

  if (new_dbf == NULL)
    {
      gdbm_errno = REORGANIZE_FAILED;
      free(new_name);
      return -1;
    }

  
  /* For each item in the old database, add an entry in the new. */
  key = gdbm_firstkey (dbf);

  while (key.dptr != NULL)
    {
      data = gdbm_fetch (dbf, key);
      if (data.dptr != NULL)
 	{
	  /* Add the data to the new file. */
	  gdbm_store (new_dbf, key, data, GDBM_INSERT);
 	}
      else
 	{
	  /* ERROR! Abort and don't finish reorganize. */
	  gdbm_close (new_dbf);
	  gdbm_errno = REORGANIZE_FAILED;
	  unlink (new_name);
	  return -1;
 	}
      nextkey = gdbm_nextkey (dbf, key);
      free(key.dptr);
      key = nextkey;
    }

    /* Move the new file to old name. */

  if (rename (new_name, dbf->name) != 0)
    {
      gdbm_errno = REORGANIZE_FAILED;
      gdbm_close (new_dbf);
      return -1;
    }

  /* Fix up DBF to have the correct information for the new file. */
  UNLOCK_FILE;
  close (dbf->desc);
  free (dbf->header);
  free (dbf->dir);
  for (index = 0; index < CACHE_SIZE; index++)
    {
      if (dbf->bucket_cache[index].ca_bucket != NULL)
	free (dbf->bucket_cache[index].ca_bucket);
      if (dbf->bucket_cache[index].ca_data.dptr != NULL)
	free (dbf->bucket_cache[index].ca_data.dptr);
    }

  dbf->desc           = new_dbf->desc;
  dbf->header         = new_dbf->header;
  dbf->dir            = new_dbf->dir;
  dbf->bucket         = new_dbf->bucket;
  dbf->bucket_dir     = new_dbf->bucket_dir;
  dbf->cache_entry    = new_dbf->cache_entry;
  dbf->last_read      = new_dbf->last_read;
  for (index = 0; index < CACHE_SIZE; index++)
    dbf->bucket_cache[index] = new_dbf->bucket_cache[index];
      
  free(new_dbf);

  return 0;
}