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/*****************************************************************************
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 * update.c: VLC update checking and downloading
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 *****************************************************************************
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 * Copyright © 2005-2008 the VideoLAN team
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 * $Id$
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 *
 * Authors: Antoine Cellerier <dionoea -at- videolan -dot- org>
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 *          Rémi Duraffort <ivoire at via.ecp.fr>
            Rafaël Carré <funman@videolanorg>
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 *
 * 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; either release 2 of the License, or
 * (at your option) any later release.
 *
 * 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., 59 Temple Place - Suite 330, Boston, MA  02111, USA.
 *****************************************************************************/
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/**
 *   \file
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 *   This file contains functions related to VLC update management
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 */

/*****************************************************************************
 * Preamble
 *****************************************************************************/
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#ifdef HAVE_CONFIG_H
# include "config.h"
#endif

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#include <vlc/vlc.h>

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#ifdef UPDATE_CHECK

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#include <assert.h>
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#include <vlc_update.h>
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#include <vlc_pgpkey.h>
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#include <vlc_stream.h>
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#include <vlc_strings.h>
#include <vlc_charset.h>
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#include <vlc_interface.h>
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#include <gcrypt.h>
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#include <vlc_gcrypt.h>
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#include "update.h"
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/*****************************************************************************
 * Misc defines
 *****************************************************************************/

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/*
 * Here is the format of these "status files" :
 * First line is the last version: "X.Y.Ze" where:
 *      * X is the major number
 *      * Y is the minor number
 *      * Z is the revision number
 *      * e is an OPTIONAL extra letter
 *      * AKA "0.8.6d" or "0.9.0"
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 * Second line is an url of the binary for this last version
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 * Third line is a description of the update (it MAY be extended to several lines, but for now it is only one line)
 */

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#if defined( UNDER_CE )
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#   define UPDATE_VLC_STATUS_URL "http://update.videolan.org/vlc/status-ce"
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#elif defined( WIN32 )
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#   define UPDATE_VLC_STATUS_URL "http://update.videolan.org/vlc/status-win-x86"
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#elif defined( __APPLE__ )
#   if defined( __powerpc__ ) || defined( __ppc__ ) || defined( __ppc64__ )
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#       define UPDATE_VLC_STATUS_URL "http://update.videolan.org/vlc/status-mac-ppc"
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#   else
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#       define UPDATE_VLC_STATUS_URL "http://update.videolan.org/vlc/status-mac-x86"
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#   endif
#elif defined( SYS_BEOS )
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#       define UPDATE_VLC_STATUS_URL "http://update.videolan.org/vlc/status-beos-x86"
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#else
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#   define UPDATE_VLC_STATUS_URL "http://update.videolan.org/vlc/status"
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#endif

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/*****************************************************************************
 * Local Prototypes
 *****************************************************************************/
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static void EmptyRelease( update_t *p_update );
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static bool GetUpdateFile( update_t *p_update );
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static char * size_str( long int l_size );

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/*****************************************************************************
 * OpenPGP functions
 *****************************************************************************/

#define packet_type( c ) ( ( c & 0x3c ) >> 2 )      /* 0x3C = 00111100 */
#define packet_header_len( c ) ( ( c & 0x03 ) + 1 ) /* number of bytes in a packet header */

static inline int scalar_number( uint8_t *p, int header_len )
{
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    assert( header_len == 1 || header_len == 2 || header_len == 4 );

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    if( header_len == 1 )
        return( p[0] );
    else if( header_len == 2 )
        return( (p[0] << 8) + p[1] );
    else if( header_len == 4 )
        return( (p[0] << 24) + (p[1] << 16) + (p[2] << 8) + p[3] );
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    abort(); /* to shut up GCC warning */
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}

/* number of data bytes in a MPI */
#define mpi_len( mpi ) ( ( scalar_number( mpi, 2 ) + 7 ) / 8 )

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/*
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 * fill a public_key_packet_t structure from public key packet data
 * verify that it is a version 4 public key packet, using DSA
 */
static int parse_public_key_packet( public_key_packet_t *p_key, uint8_t *p_buf,
                                    size_t i_packet_len )
{
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    if( i_packet_len > 418 || i_packet_len < 6 )
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        return VLC_EGENERIC;

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    size_t i_read = 0;

    p_key->version   = *p_buf++; i_read++;
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    if( p_key->version != 4 )
        return VLC_EGENERIC;

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    /* XXX: warn when timestamp is > date ? */
    memcpy( p_key->timestamp, p_buf, 4 ); p_buf += 4; i_read += 4;
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    p_key->algo      = *p_buf++; i_read++;
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    if( p_key->algo != PUBLIC_KEY_ALGO_DSA )
        return VLC_EGENERIC;

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    /* read p */
    if( i_read + 2 > i_packet_len )
        return VLC_EGENERIC;

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    int i_p_len = mpi_len( p_buf );
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    if( i_p_len > 128 || i_read + 2 + i_p_len > i_packet_len )
        return VLC_EGENERIC;

    memcpy( p_key->p, p_buf, 2+i_p_len );
    p_buf += 2+i_p_len; i_read += 2+i_p_len;

    /* read q */
    if( i_read + 2 > i_packet_len )
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        return VLC_EGENERIC;

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    int i_q_len = mpi_len( p_buf );
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    if( i_q_len > 20 || i_read+2+i_q_len > i_packet_len )
        return VLC_EGENERIC;

    memcpy( p_key->q, p_buf, 2+i_q_len );
    p_buf += 2+i_q_len; i_read += 2+i_q_len;

    /* read g */
    if( i_read + 2 > i_packet_len )
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        return VLC_EGENERIC;

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    int i_g_len = mpi_len( p_buf );
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    if( i_g_len > 128 || i_read+2+i_g_len > i_packet_len )
        return VLC_EGENERIC;

    memcpy( p_key->g, p_buf, 2+i_g_len );
    p_buf += 2+i_g_len; i_read += 2+i_g_len;

    /* read y */
    if( i_read + 2 > i_packet_len )
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        return VLC_EGENERIC;
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    int i_y_len = mpi_len( p_buf );
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    if( i_y_len > 128 || i_read+2+i_y_len > i_packet_len )
        return VLC_EGENERIC;

    memcpy( p_key->y, p_buf, 2+i_y_len );
    i_read += 2+i_y_len;

    if( i_read != i_packet_len ) /* some extra data eh ? */
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        return VLC_EGENERIC;

    return VLC_SUCCESS;
}

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static size_t parse_signature_v3_packet( signature_packet_t *p_sig,
                                      uint8_t *p_buf, size_t i_sig_len )
{
    size_t i_read = 1; /* we already read the version byte */

    if( i_sig_len < 19 ) /* signature is at least 19 bytes + the 2 MPIs */
        return 0;

    p_sig->specific.v3.hashed_data_len = *p_buf++; i_read++;
    if( p_sig->specific.v3.hashed_data_len != 5 )
        return 0;

    p_sig->type = *p_buf++; i_read++;

    memcpy( p_sig->specific.v3.timestamp, p_buf, 4 );
    p_buf += 4; i_read += 4;

    memcpy( p_sig->issuer_longid, p_buf, 8 );
    p_buf += 8; i_read += 8;

    p_sig->public_key_algo = *p_buf++; i_read++;

    p_sig->digest_algo = *p_buf++; i_read++;

    p_sig->hash_verification[0] = *p_buf++; i_read++;
    p_sig->hash_verification[1] = *p_buf++; i_read++;

    assert( i_read == 19 );

    return i_read;
}

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/*
 * fill a signature_packet_v4_t from signature packet data
 * verify that it was used with a DSA public key, using SHA-1 digest
 */
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static size_t parse_signature_v4_packet( signature_packet_t *p_sig,
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                                      uint8_t *p_buf, size_t i_sig_len )
{
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    size_t i_read = 1; /* we already read the version byte */
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    if( i_sig_len < 10 ) /* signature is at least 10 bytes + the 2 MPIs */
        return 0;
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    p_sig->type = *p_buf++; i_read++;
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    p_sig->public_key_algo = *p_buf++; i_read++;
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    p_sig->digest_algo = *p_buf++; i_read++;
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    memcpy( p_sig->specific.v4.hashed_data_len, p_buf, 2 );
    p_buf += 2; i_read += 2;
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    size_t i_hashed_data_len =
        scalar_number( p_sig->specific.v4.hashed_data_len, 2 );
    i_read += i_hashed_data_len;
    if( i_read + 4 > i_sig_len )
        return 0;
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    p_sig->specific.v4.hashed_data = (uint8_t*) malloc( i_hashed_data_len );
    if( !p_sig->specific.v4.hashed_data )
        return 0;
    memcpy( p_sig->specific.v4.hashed_data, p_buf, i_hashed_data_len );
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    p_buf += i_hashed_data_len;

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    memcpy( p_sig->specific.v4.unhashed_data_len, p_buf, 2 );
    p_buf += 2; i_read += 2;
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    size_t i_unhashed_data_len =
        scalar_number( p_sig->specific.v4.unhashed_data_len, 2 );
    i_read += i_unhashed_data_len;
    if( i_read + 2 > i_sig_len )
        return 0;
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    p_sig->specific.v4.unhashed_data = (uint8_t*) malloc( i_unhashed_data_len );
    if( !p_sig->specific.v4.unhashed_data )
        return 0;

    memcpy( p_sig->specific.v4.unhashed_data, p_buf, i_unhashed_data_len );
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    p_buf += i_unhashed_data_len;

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    memcpy( p_sig->hash_verification, p_buf, 2 );
    p_buf += 2; i_read += 2;

    uint8_t *p, *max_pos;
    p = p_sig->specific.v4.unhashed_data;
    max_pos = p + scalar_number( p_sig->specific.v4.unhashed_data_len, 2 );
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    for( ;; )
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    {
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        if( p > max_pos )
            return 0;

        size_t i_subpacket_len;
        if( *p < 192 )
        {
            if( p + 1 > max_pos )
                return 0;
            i_subpacket_len = *p++;
        }
        else if( *p < 255 )
        {
            if( p + 2 > max_pos )
                return 0;
            i_subpacket_len = (*p++ - 192) << 8;
            i_subpacket_len += *p++ + 192;
        }
        else
        {
            if( p + 4 > max_pos )
                return 0;
            i_subpacket_len = *++p << 24;
            i_subpacket_len += *++p << 16;
            i_subpacket_len += *++p << 8;
            i_subpacket_len += *++p;
        }

        if( *p == ISSUER_SUBPACKET )
        {
            if( p + 9 > max_pos )
                return 0;

            memcpy( &p_sig->issuer_longid, p+1, 8 );

            return i_read;
        }

        p += i_subpacket_len;
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    }
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}

static int parse_signature_packet( signature_packet_t *p_sig,
                                   uint8_t *p_buf, size_t i_sig_len )
{
    if( !i_sig_len ) /* 1st sanity check, we need at least the version */
        return VLC_EGENERIC;

    p_sig->version = *p_buf++;

    size_t i_read;
    switch( p_sig->version )
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    {
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        case 3:
            i_read = parse_signature_v3_packet( p_sig, p_buf, i_sig_len );
            break;
        case 4:
            p_sig->specific.v4.hashed_data = NULL;
            p_sig->specific.v4.unhashed_data = NULL;
            i_read = parse_signature_v4_packet( p_sig, p_buf, i_sig_len );
            break;
        default:
            return VLC_EGENERIC;
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    }
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    if( i_read == 0 ) /* signature packet parsing has failed */
        goto error;

    if( p_sig->public_key_algo != PUBLIC_KEY_ALGO_DSA )
        goto error;

    if( p_sig->digest_algo != DIGEST_ALGO_SHA1 )
        goto error;

    switch( p_sig->type )
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    {
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        case BINARY_SIGNATURE:
        case TEXT_SIGNATURE:
        case GENERIC_KEY_SIGNATURE:
        case PERSONA_KEY_SIGNATURE:
        case CASUAL_KEY_SIGNATURE:
        case POSITIVE_KEY_SIGNATURE:
            break;
        default:
            goto error;
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    }
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    p_buf--; /* rewind to the version byte */
    p_buf += i_read;

    if( i_read + 2 > i_sig_len )
        goto error;

    size_t i_r_len = mpi_len( p_buf ); i_read += 2;
    if( i_read + i_r_len > i_sig_len || i_r_len > 20 )
        goto error;

    memcpy( p_sig->r, p_buf, 2 + i_r_len );
    p_buf += 2 + i_r_len;
    i_read += i_r_len;

    if( i_read + 2 > i_sig_len )
        goto error;

    size_t i_s_len = mpi_len( p_buf ); i_read += 2;
    if( i_read + i_s_len > i_sig_len || i_s_len > 20 )
        goto error;

    memcpy( p_sig->s, p_buf, 2 + i_s_len );
    p_buf += 2 + i_s_len;
    i_read += i_s_len;

    assert( i_read == i_sig_len );
    if( i_read < i_sig_len ) /* some extra data, hm ? */
        goto error;

    return VLC_SUCCESS;

error:

    if( p_sig->version == 4 )
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    {
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        free( p_sig->specific.v4.hashed_data );
        free( p_sig->specific.v4.unhashed_data );
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    }
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    return VLC_EGENERIC;
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}

/*
 * crc_octets() was lamely copied from rfc 2440
 * Copyright (C) The Internet Society (1998).  All Rights Reserved.
 */
#define CRC24_INIT 0xB704CEL
#define CRC24_POLY 0x1864CFBL

static long crc_octets( uint8_t *octets, size_t len )
{
    long crc = CRC24_INIT;
    int i;
    while (len--)
    {
        crc ^= (*octets++) << 16;
        for (i = 0; i < 8; i++)
        {
            crc <<= 1;
            if (crc & 0x1000000)
                crc ^= CRC24_POLY;
        }
    }
    return crc & 0xFFFFFFL;
}

/*
 * Transform an armored document in binary format
 * Used on public keys and signatures
 */
static int pgp_unarmor( char *p_ibuf, size_t i_ibuf_len,
                        uint8_t *p_obuf, size_t i_obuf_len )
{
    char *p_ipos = p_ibuf;
    uint8_t *p_opos = p_obuf;
    int i_end = 0;
    int i_header_skipped = 0;

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    while( !i_end && p_ipos < p_ibuf + i_ibuf_len && *p_ipos != '=' )
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    {
        if( *p_ipos == '\r' || *p_ipos == '\n' )
        {
            p_ipos++;
            continue;
        }

        size_t i_line_len = strcspn( p_ipos, "\r\n" );
        if( i_line_len == 0 )
            continue;

        if( !i_header_skipped )
        {
            if( !strncmp( p_ipos, "-----BEGIN PGP", 14 ) )
                i_header_skipped = 1;

            p_ipos += i_line_len + 1;
            continue;
        }
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        if( !strncmp( p_ipos, "Version:", 8 ) )
        {
            p_ipos += i_line_len + 1;
            continue;
        }

        if( p_ipos[i_line_len - 1] == '=' )
        {
            i_end = 1;
            p_ipos[i_line_len - 1] = '\0';
        }
        else
            p_ipos[i_line_len] = '\0';

        p_opos += vlc_b64_decode_binary_to_buffer(  p_opos,
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                        p_obuf - p_opos + i_obuf_len, p_ipos );
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        p_ipos += i_line_len + 1;
    }

    /* XXX: the CRC is OPTIONAL, really require it ? */
    if( p_ipos + 5 > p_ibuf + i_ibuf_len || *p_ipos++ != '=' )
        return 0;

    uint8_t p_crc[3];
    if( vlc_b64_decode_binary_to_buffer( p_crc, 3, p_ipos ) != 3 )
        return 0;

    long l_crc = crc_octets( p_obuf, p_opos - p_obuf );
    long l_crc2 = ( 0 << 24 ) + ( p_crc[0] << 16 ) + ( p_crc[1] << 8 ) + p_crc[2];

    return l_crc2 == l_crc ? p_opos - p_obuf : 0;
}

/*
 * Download the signature associated to a document or a binary file.
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 * We're given the file's url, we just append ".asc" to it and download
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 */
static int download_signature(  vlc_object_t *p_this,
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                                signature_packet_t *p_sig,
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                                const char *psz_url )
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{
    char *psz_sig = (char*) malloc( strlen( psz_url ) + 4 + 1 ); /* ".asc" + \0 */
    if( !psz_sig )
        return VLC_ENOMEM;

    strcpy( psz_sig, psz_url );
    strcat( psz_sig, ".asc" );

    stream_t *p_stream = stream_UrlNew( p_this, psz_sig );
    free( psz_sig );

    if( !p_stream )
        return VLC_ENOMEM;

    int64_t i_size = stream_Size( p_stream );

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    msg_Dbg( p_this, "Downloading signature (%"PRId64" bytes)", i_size );
    uint8_t *p_buf = (uint8_t*)malloc( i_size );
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    if( !p_buf )
    {
        stream_Delete( p_stream );
        return VLC_ENOMEM;
    }
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    int i_read = stream_Read( p_stream, p_buf, (int)i_size );

    stream_Delete( p_stream );

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    if( i_read != (int)i_size )
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    {
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        msg_Dbg( p_this,
            "Couldn't download full signature (only %d bytes)", i_read );
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        free( p_buf );
        return VLC_EGENERIC;
    }
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    if( (uint8_t)*p_buf < 0x80 ) /* ASCII */
    {
        msg_Dbg( p_this, "Unarmoring signature" );

        uint8_t* p_unarmored = (uint8_t*) malloc( ( i_size * 3 ) / 4 + 1 );
        if( !p_unarmored )
        {
            free( p_buf );
            return VLC_EGENERIC;
        }

        int i_bytes = pgp_unarmor( (char*)p_buf, i_size, p_unarmored, i_size );
        free( p_buf );

        p_buf = p_unarmored;
        i_size = i_bytes;

        if( i_bytes < 2 )
        {
            free( p_buf );
            msg_Dbg( p_this, "Unarmoring failed : corrupted signature ?" );
            return VLC_EGENERIC;
        }
    }
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    if( packet_type( *p_buf ) != SIGNATURE_PACKET )
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    {
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        free( p_buf );
        msg_Dbg( p_this, "Not a signature: %d", *p_buf );
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        return VLC_EGENERIC;
    }
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    size_t i_header_len = packet_header_len( *p_buf );
    if( ( i_header_len != 1 && i_header_len != 2 && i_header_len != 4 ) ||
        i_header_len + 1 > (size_t)i_size )
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    {
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        free( p_buf );
        msg_Dbg( p_this, "Invalid signature packet header" );
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        return VLC_EGENERIC;
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    }
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    size_t i_len = scalar_number( p_buf+1, i_header_len );
    if( i_len + i_header_len + 1 != (size_t)i_size )
    {
        free( p_buf );
        msg_Dbg( p_this, "Invalid signature packet" );
        return VLC_EGENERIC;
    }

    int i_ret = parse_signature_packet( p_sig, p_buf+1+i_header_len, i_len );
    free( p_buf );
    if( i_ret != VLC_SUCCESS )
    {
        msg_Dbg( p_this, "Couldn't parse signature" );
        return i_ret;
    }

    if( p_sig->type != BINARY_SIGNATURE && p_sig->type != TEXT_SIGNATURE )
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    {
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        msg_Dbg( p_this, "Invalid signature type: %d", p_sig->type );
        if( p_sig->version == 4 )
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        {
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            free( p_sig->specific.v4.hashed_data );
            free( p_sig->specific.v4.unhashed_data );
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        }
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        return VLC_EGENERIC;
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    }
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    return VLC_SUCCESS;
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}

/*
 * Verify an OpenPGP signature made on some SHA-1 hash, with some DSA public key
 */
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static int verify_signature( uint8_t *p_r, uint8_t *p_s,
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        public_key_packet_t *p_key, uint8_t *p_hash )
{
    /* the data to be verified (a SHA-1 hash) */
    const char *hash_sexp_s = "(data(flags raw)(value %m))";
    /* the public key */
    const char *key_sexp_s = "(public-key(dsa(p %m)(q %m)(g %m)(y %m)))";
    /* the signature */
    const char *sig_sexp_s = "(sig-val(dsa(r %m )(s %m )))";

    size_t erroff;
    gcry_mpi_t p, q, g, y, r, s, hash;
    p = q = g = y = r = s = hash = NULL;
    gcry_sexp_t key_sexp, hash_sexp, sig_sexp;
    key_sexp = hash_sexp = sig_sexp = NULL;

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    int i_p_len = mpi_len( p_key->p );
    int i_q_len = mpi_len( p_key->q );
    int i_g_len = mpi_len( p_key->g );
    int i_y_len = mpi_len( p_key->y );
    if( gcry_mpi_scan( &p, GCRYMPI_FMT_USG, p_key->p + 2, i_p_len, NULL ) ||
        gcry_mpi_scan( &q, GCRYMPI_FMT_USG, p_key->q + 2, i_q_len, NULL ) ||
        gcry_mpi_scan( &g, GCRYMPI_FMT_USG, p_key->g + 2, i_g_len, NULL ) ||
        gcry_mpi_scan( &y, GCRYMPI_FMT_USG, p_key->y + 2, i_y_len, NULL ) ||
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        gcry_sexp_build( &key_sexp, &erroff, key_sexp_s, p, q, g, y ) )
        goto problem;

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    int i_r_len = mpi_len( p_r );
    int i_s_len = mpi_len( p_s );
    if( gcry_mpi_scan( &r, GCRYMPI_FMT_USG, p_r + 2, i_r_len, NULL ) ||
        gcry_mpi_scan( &s, GCRYMPI_FMT_USG, p_s + 2, i_s_len, NULL ) ||
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        gcry_sexp_build( &sig_sexp, &erroff, sig_sexp_s, r, s ) )
        goto problem;

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    int i_hash_len = 20;
    if( gcry_mpi_scan( &hash, GCRYMPI_FMT_USG, p_hash, i_hash_len, NULL ) ||
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        gcry_sexp_build( &hash_sexp, &erroff, hash_sexp_s, hash ) )
        goto problem;

    if( gcry_pk_verify( sig_sexp, hash_sexp, key_sexp ) )
        goto problem;

    return VLC_SUCCESS;

problem:
    if( p ) gcry_mpi_release( p );
    if( q ) gcry_mpi_release( q );
    if( g ) gcry_mpi_release( g );
    if( y ) gcry_mpi_release( y );
    if( r ) gcry_mpi_release( r );
    if( s ) gcry_mpi_release( s );
    if( hash ) gcry_mpi_release( hash );
    if( key_sexp ) gcry_sexp_release( key_sexp );
    if( sig_sexp ) gcry_sexp_release( sig_sexp );
    if( hash_sexp ) gcry_sexp_release( hash_sexp );
    return VLC_EGENERIC;
}

/*
 * fill a public_key_t with public key data, including:
 *   * public key packet
 *   * signature packet issued by key which long id is p_sig_issuer
 *   * user id packet
 */
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static int parse_public_key( const uint8_t *p_key_data, size_t i_key_len,
                             public_key_t *p_key, const uint8_t *p_sig_issuer )
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{
    uint8_t *pos = (uint8_t*) p_key_data;
    uint8_t *max_pos = pos + i_key_len;

    int i_status = 0;
#define PUBLIC_KEY_FOUND    0x01
#define USER_ID_FOUND       0x02
#define SIGNATURE_FOUND     0X04

    uint8_t *p_key_unarmored = NULL;

    p_key->psz_username = NULL;
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    p_key->sig.specific.v4.hashed_data = NULL;
    p_key->sig.specific.v4.unhashed_data = NULL;
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    if( !( *pos & 0x80 ) )
    {   /* first byte is ASCII, unarmoring */
        p_key_unarmored = (uint8_t*)malloc( i_key_len );
        if( !p_key_unarmored )
            return VLC_ENOMEM;
        int i_len = pgp_unarmor( (char*)p_key_data, i_key_len,
                                 p_key_unarmored, i_key_len );

        if( i_len == 0 )
            goto error;

        pos = p_key_unarmored;
        max_pos = pos + i_len;
    }

    while( pos < max_pos )
    {
        if( !(*pos & 0x80) || *pos & 0x40 )
            goto error;

        int i_type = packet_type( *pos );

        int i_header_len = packet_header_len( *pos++ );
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        if( pos + i_header_len > max_pos ||
            ( i_header_len != 1 && i_header_len != 2 && i_header_len != 4 ) )
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            goto error;

        int i_packet_len = scalar_number( pos, i_header_len );
        pos += i_header_len;

        if( pos + i_packet_len > max_pos )
            goto error;

        switch( i_type )
        {
            case PUBLIC_KEY_PACKET:
                i_status |= PUBLIC_KEY_FOUND;
                if( parse_public_key_packet( &p_key->key, pos, i_packet_len ) != VLC_SUCCESS )
                    goto error;
                break;

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            case SIGNATURE_PACKET: /* we accept only v4 signatures here */
                if( i_status & SIGNATURE_FOUND || !p_sig_issuer )
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                    break;
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                int i_ret = parse_signature_packet( &p_key->sig, pos,
                                                    i_packet_len );
                if( i_ret == VLC_SUCCESS )
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                {
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                    if( p_key->sig.version != 4 )
                        break;
                    if( memcmp( p_key->sig.issuer_longid, p_sig_issuer, 8 ) )
                    {
                        free( p_key->sig.specific.v4.hashed_data );
                        free( p_key->sig.specific.v4.unhashed_data );
                        p_key->sig.specific.v4.hashed_data = NULL;
                        p_key->sig.specific.v4.unhashed_data = NULL;
                        break;
                    }
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                    i_status |= SIGNATURE_FOUND;
                }
                break;

            case USER_ID_PACKET:
                if( p_key->psz_username ) /* save only the first User ID */
                    break;
                i_status |= USER_ID_FOUND;
                p_key->psz_username = (uint8_t*)malloc( i_packet_len + 1);
                if( !p_key->psz_username )
                    goto error;

                memcpy( p_key->psz_username, pos, i_packet_len );
                p_key->psz_username[i_packet_len] = '\0';
                break;
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            default:
                break;
        }
        pos += i_packet_len;
    }
    free( p_key_unarmored );

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    if( !( i_status & ( PUBLIC_KEY_FOUND | USER_ID_FOUND ) ) )
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        return VLC_EGENERIC;

    if( p_sig_issuer && !( i_status & SIGNATURE_FOUND ) )
        return VLC_EGENERIC;

    return VLC_SUCCESS;

error:
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    if( p_key->sig.version == 4 )
    {
        free( p_key->sig.specific.v4.hashed_data );
        free( p_key->sig.specific.v4.unhashed_data );
    }
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    free( p_key->psz_username );
    free( p_key_unarmored );
    return VLC_EGENERIC;
}

/*
 * return a sha1 hash of a file
 */
static uint8_t *hash_sha1_from_file( const char *psz_file,
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                            signature_packet_t *p_sig )
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{
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    if( p_sig->type != BINARY_SIGNATURE && p_sig->type != TEXT_SIGNATURE )
        return NULL;

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    FILE *f = utf8_fopen( psz_file, "r" );
    if( !f )
        return NULL;

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    uint8_t buffer[4096];
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    gcry_md_hd_t hd;
    if( gcry_md_open( &hd, GCRY_MD_SHA1, 0 ) )
    {
        fclose( f );
        return NULL;
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    }
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    size_t i_read;
    while( ( i_read = fread( buffer, 1, sizeof(buffer), f ) ) > 0 )
        gcry_md_write( hd, buffer, i_read );

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    if( p_sig->version == 3 )
    {
        gcry_md_putc( hd, p_sig->type );
        gcry_md_write( hd, &p_sig->specific.v3.timestamp, 4 );
    }
    else if( p_sig->version == 4 )
    {
        gcry_md_putc( hd, p_sig->version );
        gcry_md_putc( hd, p_sig->type );
        gcry_md_putc( hd, p_sig->public_key_algo );
        gcry_md_putc( hd, p_sig->digest_algo );
        gcry_md_write( hd, p_sig->specific.v4.hashed_data_len, 2 );
        size_t i_len = scalar_number( p_sig->specific.v4.hashed_data_len, 2 );
        gcry_md_write( hd, p_sig->specific.v4.hashed_data, i_len );
    }
    else
    {   /* RFC 4880 only tells about versions 3 and 4 */
        gcry_md_close( hd );
        return NULL;
    }
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    fclose( f );
    gcry_md_final( hd );

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    uint8_t *p_tmp = (uint8_t*) gcry_md_read( hd, GCRY_MD_SHA1);
    uint8_t *p_hash = malloc( 20 );
    if( p_hash )
        memcpy( p_hash, p_tmp, 20 );
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    gcry_md_close( hd );
    return p_hash;
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}

/*
 * download a public key (the last one) from videolan server, and parse it
 */
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static public_key_t *download_key( vlc_object_t *p_this,
                    const uint8_t *p_longid, const uint8_t *p_signature_issuer )
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{
    char *psz_url;
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    if( asprintf( &psz_url, "http://download.videolan.org/pub/keys/%.2X%.2X%.2X%.2X%.2X%.2X%.2X%.2X.asc",
                    p_longid[0], p_longid[1], p_longid[2], p_longid[3],
                    p_longid[4], p_longid[5], p_longid[6], p_longid[7] ) == -1 )
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        return NULL;

    stream_t *p_stream = stream_UrlNew( p_this, psz_url );
    free( psz_url );
    if( !p_stream )
        return NULL;

    int64_t i_size = stream_Size( p_stream );
    if( i_size < 0 )
    {
        stream_Delete( p_stream );
        return NULL;
    }

    uint8_t *p_buf = (uint8_t*)malloc( i_size );
    if( !p_buf )
    {
        stream_Delete( p_stream );
        return NULL;
    }

    int i_read = stream_Read( p_stream, p_buf, (int)i_size );
    stream_Delete( p_stream );

    if( i_read != (int)i_size )
    {
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        msg_Dbg( p_this, "Couldn't read full GPG key" );
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        free( p_buf );
        return NULL;
    }

    public_key_t *p_pkey = (public_key_t*) malloc( sizeof( public_key_t ) );
    if( !p_pkey )
    {
        free( p_buf );
        return NULL;
    }

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    memcpy( p_pkey->longid, p_longid, 8 );

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    int i_error = parse_public_key( p_buf, i_read, p_pkey, p_signature_issuer );
    free( p_buf );

    if( i_error != VLC_SUCCESS )
    {
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        msg_Dbg( p_this, "Couldn't parse GPG key" );
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        free( p_pkey );
        return NULL;
    }

    return p_pkey;
}

/*
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 * Generate a SHA1 hash on a public key, to verify a signature made on that hash
 * Note that we need the signature (v4) to compute the hash
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 */
static uint8_t *key_sign_hash( public_key_t *p_pkey )
{
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    if( p_pkey->sig.version != 4 )
        return NULL;

    if( p_pkey->sig.type < GENERIC_KEY_SIGNATURE ||
        p_pkey->sig.type > POSITIVE_KEY_SIGNATURE )
        return NULL;

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    gcry_error_t error = 0;
    gcry_md_hd_t hd;

    error = gcry_md_open( &hd, GCRY_MD_SHA1, 0 );
    if( error )
        return NULL;

    gcry_md_putc( hd, 0x99 );

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    size_t i_p_len = mpi_len( p_pkey->key.p );
    size_t i_g_len = mpi_len( p_pkey->key.g );
    size_t i_q_len = mpi_len( p_pkey->key.q );
    size_t i_y_len = mpi_len( p_pkey->key.y );
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    size_t i_size = 6 + 2*4 + i_p_len + i_g_len + i_q_len + i_y_len;

    gcry_md_putc( hd, (i_size >> 8) & 0xff );
    gcry_md_putc( hd, i_size & 0xff );

    gcry_md_putc( hd, p_pkey->key.version );
    gcry_md_write( hd, p_pkey->key.timestamp, 4 );
    gcry_md_putc( hd, p_pkey->key.algo );
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    gcry_md_write( hd, (uint8_t*)&p_pkey->key.p, 2 );
    gcry_md_write( hd, (uint8_t*)&p_pkey->key.p + 2, i_p_len );

    gcry_md_write( hd, (uint8_t*)&p_pkey->key.q, 2 );
    gcry_md_write( hd, (uint8_t*)&p_pkey->key.q + 2, i_q_len );

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    gcry_md_write( hd, (uint8_t*)&p_pkey->key.g, 2 );
    gcry_md_write( hd, (uint8_t*)&p_pkey->key.g + 2, i_g_len );

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    gcry_md_write( hd, (uint8_t*)&p_pkey->key.y, 2 );
    gcry_md_write( hd, (uint8_t*)&p_pkey->key.y + 2, i_y_len );
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    gcry_md_putc( hd, 0xb4 );

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    size_t i_len = strlen((char*)p_pkey->psz_username);
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    gcry_md_putc( hd, (i_len << 24) & 0xff );
    gcry_md_putc( hd, (i_len << 16) & 0xff );
    gcry_md_putc( hd, (i_len << 8) & 0xff );
    gcry_md_putc( hd, (i_len) & 0xff );

    gcry_md_write( hd, p_pkey->psz_username, i_len );

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    size_t i_hashed_data_len =
        scalar_number( p_pkey->sig.specific.v4.hashed_data_len, 2 );
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    gcry_md_putc( hd, p_pkey->sig.version );
    gcry_md_putc( hd, p_pkey->sig.type );
    gcry_md_putc( hd, p_pkey->sig.public_key_algo );
    gcry_md_putc( hd, p_pkey->sig.digest_algo );
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    gcry_md_write( hd, p_pkey->sig.specific.v4.hashed_data_len, 2 );
    gcry_md_write( hd, p_pkey->sig.specific.v4.hashed_data, i_hashed_data_len );
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    gcry_md_putc( hd, 0x04 );
    gcry_md_putc( hd, 0xff );

    i_hashed_data_len += 6; /* hashed data + 6 bytes header */

    gcry_md_putc( hd, (i_hashed_data_len << 24) & 0xff);
    gcry_md_putc( hd, (i_hashed_data_len << 16) &0xff );
    gcry_md_putc( hd, (i_hashed_data_len << 8) & 0xff );
    gcry_md_putc( hd, (i_hashed_data_len) & 0xff );

    gcry_md_final( hd );

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    uint8_t *p_tmp = gcry_md_read( hd, GCRY_MD_SHA1);
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    if( !p_tmp ||
        p_tmp[0] != p_pkey->sig.hash_verification[0] ||
        p_tmp[1] != p_pkey->sig.hash_verification[1] )
1014
    {
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        gcry_md_close( hd );
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        return NULL;
    }

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    uint8_t *p_hash = malloc( 20 );
    if( p_hash )
        memcpy( p_hash, p_tmp, 20 );
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    gcry_md_close( hd );
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    return p_hash;
}

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/*****************************************************************************
 * Update_t functions
 *****************************************************************************/

/**
 * Create a new update VLC struct
 *
 * \param p_this the calling vlc_object
 * \return pointer to new update_t or NULL
 */
update_t *__update_New( vlc_object_t *p_this )
{
    update_t *p_update;
1040
    assert( p_this );
1041 1042

    p_update = (update_t *)malloc( sizeof( update_t ) );
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1043
    if( !p_update ) return NULL;
1044

1045
    vlc_mutex_init( &p_update->lock );
1046

1047
    p_update->p_libvlc = p_this->p_libvlc;
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    p_update->release.psz_url = NULL;
    p_update->release.psz_desc = NULL;
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1052
    p_update->p_pkey = NULL;
1053
    vlc_gcrypt_init();
1054

1055
    return p_update;
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}

/**
 * Delete an update_t struct
 *
 * \param p_update update_t* pointer
 * \return nothing
 */
void update_Delete( update_t *p_update )
{
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1066 1067
    assert( p_update );

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    vlc_mutex_destroy( &p_update->lock );

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    free( p_update->release.psz_url );
    free( p_update->release.psz_desc );
    free( p_update->p_pkey );
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    free( p_update );
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}

/**
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 * Empty the release struct
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 *
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 * \param p_update update_t* pointer
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 * \return nothing
 */
1083
static void EmptyRelease( update_t *p_update )
1084
{
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    p_update->release.i_major = 0;
    p_update->release.i_minor = 0;
    p_update->release.i_revision = 0;
1088

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    FREENULL( p_update->release.psz_url );
    FREENULL( p_update->release.psz_desc );
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}

/**
1094
 * Get the update file and parse it
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1095
 * p_update has to be locked when calling this function
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 *
 * \param p_update pointer to update struct
1098
 * \return true if the update is valid and authenticated
1099
 */
1100
static bool GetUpdateFile( update_t *p_update )
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{
    stream_t *p_stream = NULL;
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    int i_major = 0;
    int i_minor = 0;
    int i_revision = 0;
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1106
    unsigned char extra;
1107
    char *psz_line = NULL;
1108
    char *psz_version_line = NULL;
1109

1110
    p_stream = stream_UrlNew( p_update->p_libvlc, UPDATE_VLC_STATUS_URL );
1111 1112
    if( !p_stream )
    {
1113
        msg_Err( p_update->p_libvlc, "Failed to open %s for reading",
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                 UPDATE_VLC_STATUS_URL );
        goto error;
    }

1118 1119
    /* Try to read three lines */
    if( !( psz_line = stream_ReadLine( p_stream ) ) )
1120
    {
1121
        msg_Err( p_update->p_libvlc, "Update file %s is corrupted : missing version",
1122 1123 1124 1125
                 UPDATE_VLC_STATUS_URL );
        goto error;
    }

1126
    psz_version_line = psz_line;
1127
    /* first line : version number */
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    p_update->release.extra = 0;
    switch( sscanf( psz_line, "%i.%i.%i%c", &i_major, &i_minor, &i_revision, &extra ) )
1130
    {
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        case 4:
            p_update->release.extra = extra;
        case 3:
            p_update->release.i_major = i_major;
            p_update->release.i_minor = i_minor;
            p_update->release.i_revision = i_revision;
            break;
        default:
            msg_Err( p_update->p_libvlc, "Update version false formated" );
            goto error;
1141
    }
1142

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    /* Second line : URL */
    if( !( psz_line = stream_ReadLine( p_stream ) ) )
    {
        msg_Err( p_update->p_libvlc, "Update file %s is corrupted : URL missing",
                 UPDATE_VLC_STATUS_URL );
        goto error;
    }
    p_update->release.psz_url = psz_line;
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