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dcab895e4c
* g10/compress-bz2.c: Replace all log_fatal by log_error, write_status_error, and g10_exit. (do_uncompress): Ditto. -- This gives gpgme a better way to detect corrupted data in the compression layer. GnuPG-bug-id: 6977
274 lines
7.3 KiB
C
274 lines
7.3 KiB
C
/* compress.c - bzip2 compress filter
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* Copyright (C) 2003, 2004 Free Software Foundation, Inc.
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*
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* This file is part of GnuPG.
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*
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* GnuPG is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 3 of the License, or
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* (at your option) any later version.
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*
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* GnuPG is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, see <https://www.gnu.org/licenses/>.
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*/
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#include <config.h>
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#include <string.h>
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#include <stdio.h> /* Early versions of bzlib (1.0) require stdio.h */
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#include "gpg.h"
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#include "../common/util.h"
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#include <bzlib.h>
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#include "packet.h"
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#include "filter.h"
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#include "main.h"
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#include "options.h"
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/* Note that the code in compress.c is nearly identical to the code
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here, so if you fix a bug here, look there to see if a matching bug
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needs to be fixed. I tried to have one set of functions that could
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do ZIP, ZLIB, and BZIP2, but it became dangerously unreadable with
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#ifdefs and if(algo) -dshaw */
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static void
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init_compress( compress_filter_context_t *zfx, bz_stream *bzs )
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{
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int rc;
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int level;
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if( opt.bz2_compress_level >= 1 && opt.bz2_compress_level <= 9 )
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level = opt.bz2_compress_level;
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else if( opt.bz2_compress_level == -1 )
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level = 6; /* no particular reason, but it seems reasonable */
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else
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{
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log_error("invalid compression level; using default level\n");
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level = 6;
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}
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if((rc=BZ2_bzCompressInit(bzs,level,0,0))!=BZ_OK)
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{
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log_error ("bz2lib problem: %d\n",rc);
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write_status_error ("bzip2.init", gpg_error (GPG_ERR_INTERNAL));
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g10_exit (2);
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}
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zfx->outbufsize = 8192;
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zfx->outbuf = xmalloc( zfx->outbufsize );
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}
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static int
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do_compress(compress_filter_context_t *zfx, bz_stream *bzs, int flush, IOBUF a)
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{
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int rc;
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int zrc;
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unsigned n;
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if (flush == BZ_RUN && bzs->avail_in == 0)
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return 0;
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do
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{
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bzs->next_out = zfx->outbuf;
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bzs->avail_out = zfx->outbufsize;
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if( DBG_FILTER )
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log_debug("enter bzCompress: avail_in=%u, avail_out=%u, flush=%d\n",
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(unsigned)bzs->avail_in, (unsigned)bzs->avail_out, flush );
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zrc = BZ2_bzCompress( bzs, flush );
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if( zrc == BZ_STREAM_END && flush == BZ_FINISH )
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;
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else if( zrc != BZ_RUN_OK && zrc != BZ_FINISH_OK )
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{
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log_error ("bz2lib deflate problem: rc=%d\n", zrc );
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write_status_error ("bzip2.deflate", gpg_error (GPG_ERR_INTERNAL));
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g10_exit (2);
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}
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n = zfx->outbufsize - bzs->avail_out;
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if( DBG_FILTER )
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log_debug("leave bzCompress:"
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" avail_in=%u, avail_out=%u, n=%u, zrc=%d\n",
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(unsigned)bzs->avail_in, (unsigned)bzs->avail_out,
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(unsigned)n, zrc );
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if( (rc=iobuf_write( a, zfx->outbuf, n )) )
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{
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log_error ("bzCompress: iobuf_write failed\n");
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return rc;
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}
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}
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while( bzs->avail_in || (flush == BZ_FINISH && zrc != BZ_STREAM_END) );
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return 0;
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}
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static void
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init_uncompress( compress_filter_context_t *zfx, bz_stream *bzs )
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{
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int rc;
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if((rc=BZ2_bzDecompressInit(bzs,0,opt.bz2_decompress_lowmem))!=BZ_OK)
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{
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log_error ("bz2lib problem: %d\n",rc);
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write_status_error ("bzip2.init.un", gpg_error (GPG_ERR_INTERNAL));
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g10_exit (2);
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}
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zfx->inbufsize = 2048;
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zfx->inbuf = xmalloc( zfx->inbufsize );
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bzs->avail_in = 0;
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}
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static int
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do_uncompress( compress_filter_context_t *zfx, bz_stream *bzs,
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IOBUF a, size_t *ret_len )
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{
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int zrc;
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int rc=0;
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size_t n;
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int nread, count;
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int refill = !bzs->avail_in;
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int eofseen = 0;
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if( DBG_FILTER )
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log_debug("begin bzDecompress: avail_in=%u, avail_out=%u, inbuf=%u\n",
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(unsigned)bzs->avail_in, (unsigned)bzs->avail_out,
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(unsigned)zfx->inbufsize );
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do
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{
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if( bzs->avail_in < zfx->inbufsize && refill )
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{
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n = bzs->avail_in;
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if( !n )
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bzs->next_in = zfx->inbuf;
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count = zfx->inbufsize - n;
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nread = iobuf_read( a, zfx->inbuf + n, count );
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if( nread == -1 )
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{
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eofseen = 1;
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nread = 0;
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}
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n += nread;
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bzs->avail_in = n;
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}
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if (!eofseen)
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refill = 1;
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if( DBG_FILTER )
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log_debug("enter bzDecompress: avail_in=%u, avail_out=%u\n",
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(unsigned)bzs->avail_in, (unsigned)bzs->avail_out);
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zrc=BZ2_bzDecompress(bzs);
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if( DBG_FILTER )
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log_debug("leave bzDecompress: avail_in=%u, avail_out=%u, zrc=%d\n",
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(unsigned)bzs->avail_in, (unsigned)bzs->avail_out, zrc);
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if( zrc == BZ_STREAM_END )
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rc = -1; /* eof */
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else if( zrc != BZ_OK && zrc != BZ_PARAM_ERROR )
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{
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log_error ("bz2lib inflate problem: rc=%d\n", zrc );
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write_status_error ("bzip2.inflate", gpg_error (GPG_ERR_BAD_DATA));
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g10_exit (2);
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}
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else if (zrc == BZ_OK && eofseen
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&& !bzs->avail_in && bzs->avail_out > 0)
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{
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log_error ("unexpected EOF in bz2lib\n");
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rc = GPG_ERR_BAD_DATA;
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break;
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}
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}
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while( bzs->avail_out && zrc != BZ_STREAM_END && zrc != BZ_PARAM_ERROR );
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/* I'm not completely happy with the two uses of BZ_PARAM_ERROR
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here. The corresponding zlib function is Z_BUF_ERROR, which
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covers a narrower scope than BZ_PARAM_ERROR. -dshaw */
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*ret_len = zfx->outbufsize - bzs->avail_out;
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if( DBG_FILTER )
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log_debug("do_uncompress: returning %u bytes\n", (unsigned)*ret_len );
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return rc;
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}
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int
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compress_filter_bz2( void *opaque, int control,
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IOBUF a, byte *buf, size_t *ret_len)
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{
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size_t size = *ret_len;
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compress_filter_context_t *zfx = opaque;
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bz_stream *bzs = zfx->opaque;
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int rc=0;
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if( control == IOBUFCTRL_UNDERFLOW )
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{
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if( !zfx->status )
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{
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bzs = zfx->opaque = xmalloc_clear( sizeof *bzs );
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init_uncompress( zfx, bzs );
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zfx->status = 1;
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}
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bzs->next_out = buf;
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bzs->avail_out = size;
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zfx->outbufsize = size; /* needed only for calculation */
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rc = do_uncompress( zfx, bzs, a, ret_len );
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}
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else if( control == IOBUFCTRL_FLUSH )
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{
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if( !zfx->status )
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{
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PACKET pkt;
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PKT_compressed cd;
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if( zfx->algo != COMPRESS_ALGO_BZIP2 )
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BUG();
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memset( &cd, 0, sizeof cd );
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cd.len = 0;
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cd.algorithm = zfx->algo;
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init_packet( &pkt );
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pkt.pkttype = PKT_COMPRESSED;
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pkt.pkt.compressed = &cd;
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if( build_packet( a, &pkt ))
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log_bug("build_packet(PKT_COMPRESSED) failed\n");
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bzs = zfx->opaque = xmalloc_clear( sizeof *bzs );
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init_compress( zfx, bzs );
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zfx->status = 2;
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}
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bzs->next_in = buf;
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bzs->avail_in = size;
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rc = do_compress( zfx, bzs, BZ_RUN, a );
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}
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else if( control == IOBUFCTRL_FREE )
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{
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if( zfx->status == 1 )
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{
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BZ2_bzDecompressEnd(bzs);
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xfree(bzs);
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zfx->opaque = NULL;
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xfree(zfx->outbuf); zfx->outbuf = NULL;
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}
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else if( zfx->status == 2 )
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{
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bzs->next_in = buf;
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bzs->avail_in = 0;
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do_compress( zfx, bzs, BZ_FINISH, a );
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BZ2_bzCompressEnd(bzs);
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xfree(bzs);
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zfx->opaque = NULL;
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xfree(zfx->outbuf); zfx->outbuf = NULL;
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}
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if (zfx->release)
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zfx->release (zfx);
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}
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else if( control == IOBUFCTRL_DESC )
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mem2str (buf, "compress_filter", *ret_len);
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return rc;
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}
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