781 lines
22 KiB
C
781 lines
22 KiB
C
/*
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* Bulcrypt card reader for OSCAM
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* Copyright (C) 2012 Unix Solutions Ltd.
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*
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* Authors: Anton Tinchev (atl@unixsol.org)
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* Georgi Chorbadzhiyski (gf@unixsol.org)
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*
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* This program 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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* This program 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 <http://www.gnu.org/licenses/>.
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*
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* =========================================================================
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*
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* For more information read the code and the comments. We have tried to
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* write clear code with lots of comments so it is easy for others to
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* understand what is going on. There are some things marked *FIXME*,
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* that are mostly unknown or not fully understand.
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*
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* WHAT WAS TESTED AND WAS WORKING:
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* - Cards with bulcrypt v1 ("cherga"/carpet) are working (we have cards
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* that report CardType: 0x4c and 0x75.
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* - Cards return valid code words for subscribed channels.
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* - Tested with channels encrypted with CAID 0x5581 and 0x4aee on
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* Hellas 39E. Both MPEG2 (SD) and H.264 (SD and HD) channels were
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* decrypted.
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* - Brand new cards were inited without ever being put into providers STBs.
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* as long the protocol you are using is sending EMMs to the card.
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* - AU was working (subscription dates and packages were updated)
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* as long the protocol you are using is sending EMMs to the card.
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*
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* WHAT WE DON'T KNOW (YET!):
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* - How to deobfuscate v2 codewords.
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*
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* PERSONAL MESSAGES:
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* - Many thanks to ilian_71 @ satfriends forum for the protocol info.
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* - Shouts to yuriks for oscam-ymod, pity it is violating the GPL.
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*
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*/
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#include "globals.h"
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#ifdef READER_BULCRYPT
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#include "oscam-work.h"
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#include "reader-common.h"
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static const uint8_t atr_carpet[] = { 0x3b, 0x20, 0x00 };
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// *FIXME* We do not know how every 4th byte of the sess_key is calculated.
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// Currently they are correct thou and code words checksums are correct are
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// the deobfuscation.
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static const uint8_t sess_key[] = { 0xF2, 0x21, 0xC5, 0x69, 0x28, 0x86, 0xFB, 0x9E,
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0xC0, 0x20, 0x28, 0x06, 0xD2, 0x23, 0x72, 0x31 };
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static const uint8_t cmd_set_key[] = { 0xDE, 0x1C, 0x00, 0x00, 0x0A, 0x12, 0x08, 0x56,
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0x47, 0x38, 0x29, 0x10, 0xAF, 0xBE, 0xCD };
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static const uint8_t cmd_set_key_v2[] = { 0xDE, 0x1C, 0x00, 0x00, 0x0A, 0x12, 0x08, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 };
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// Response: 90 00
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// V2
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static const uint8_t cmd_card_v2_key1[] = { 0xDE, 0x12, 0x00, 0x00, 0x00, 0x00 };
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static const uint8_t cmd_card_v2_key2[] = { 0xDE, 0x1E, 0x00, 0x00, 0x12, 0x00 };
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static const uint8_t cmd_cardtype1[] = { 0xDE, 0x16, 0x00, 0x00, 0x00, 0x00 };
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static const uint8_t cmd_cardtype2[] = { 0xDE, 0x1E, 0x00, 0x00, 0x03, 0x00 };
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// Response1: 90 03
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// Response2: 01 01 4C 90 00 or 01 01 xx 90 00
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// xx - 4C or 75 (Card type)
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static const uint8_t cmd_unkn_0a1[] = { 0xDE, 0x0A, 0x00, 0x00, 0x00, 0x00 };
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static const uint8_t cmd_unkn_0a2[] = { 0xDE, 0x1E, 0x00, 0x00, 0x03, 0x00 };
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// Response1: 90 03
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// Response2: 08 01 00 90 00
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static const uint8_t cmd_cardsn1[] = { 0xDE, 0x18, 0x00, 0x00, 0x00, 0x00 };
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static const uint8_t cmd_cardsn2[] = { 0xDE, 0x1E, 0x00, 0x00, 0x06, 0x00 };
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// Response1: 90 06
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// Response2: 02 04 xx xx xx xy 90 00
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// xx - Card HEX serial
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// y - Unknown *FIXME*
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static const uint8_t cmd_ascsn1[] = { 0xDE, 0x1A, 0x00, 0x00, 0x00, 0x00 };
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static const uint8_t cmd_ascsn2[] = { 0xDE, 0x1E, 0x00, 0x00, 0x0F, 0x00 };
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// Response1: 90 0F
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// Response2: 05 0D xx xx 20 xx xx xx xx xx xx 20 xx xx xx 90 00
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// xx - Card ASCII serial
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static const uint8_t cmd_ecm_empty[] = { 0xDE, 0x20, 0x00, 0x00, 0x00, 0x00 };
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// Response: 90 00
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static const uint8_t cmd_ecm[] = { 0xDE, 0x20, 0x00, 0x00, 0x4c };
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// The last byte is ECM length
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static const uint8_t cmd_ecm_get_cw[] = { 0xDE, 0x1E, 0x00, 0x00, 0x13, 0x00 };
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// Response: 0A 11 80 xx xx xx xx xx xx xx xx xx xx xx xx xx xx xx xx 90 00
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// 80 - Returned codeword type? *FIXME*
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// xx - Obfuscated CW
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static const uint8_t cmd_emm1[] = { 0xDE, 0x02, 0x82, 0x00, 0xb0 };
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// Response: 90 00 (EMM written OK) or
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// Response: 90 0A (Subscription data was updated)
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// The last byte is EMM length (0xb0)
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static const uint8_t cmd_emm2[] = { 0xDE, 0x04, 0x00, 0x00, 0xb0 };
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// Response: 90 00 (EMM written OK)
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// cmd_emm[2] = emm_cmd1
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// cmd_emm[3] = emm_cmd2
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// The last byte is EMM length (0xb0)
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static const uint8_t cmd_sub_info1[] = { 0xDE, 0x06, 0x00, 0x00, 0x00, 0x00 };
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static const uint8_t cmd_sub_info2[] = { 0xDE, 0x1E, 0x00, 0x00, 0x2B, 0x00 };
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// See bulcrypt_card_info() for reponse description
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struct bulcrypt_data
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{
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uint8_t bulcrypt_version;
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};
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static int32_t bulcrypt_card_init(struct s_reader *reader, ATR *newatr)
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{
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int i;
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char tmp[1024];
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char card_serial[16];
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const uint8_t *set_key_command;
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uint8_t card_type;
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get_atr
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def_resp
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if(memcmp(atr, atr_carpet, MIN(sizeof(atr_carpet), atr_size)) != 0)
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{
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if(atr_size == 3)
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{
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rdr_log(reader, "ATR_len=3 but ATR is unknown: %s",
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cs_hexdump(1, atr, atr_size, tmp, sizeof(tmp)));
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}
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return ERROR;
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}
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if(!cs_malloc(&reader->csystem_data, sizeof(struct bulcrypt_data)))
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{ return ERROR; }
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struct bulcrypt_data *csystem_data = reader->csystem_data;
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reader->nprov = 1;
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memset(reader->prid, 0, sizeof(reader->prid));
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memset(reader->hexserial, 0, sizeof(reader->hexserial));
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memset(card_serial, 0, sizeof(card_serial));
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rdr_log(reader, "Bulcrypt card detected, checking card version.");
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// Do we have Bulcrypt V2 card?
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write_cmd(cmd_card_v2_key1, NULL);
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write_cmd(cmd_card_v2_key2, NULL);
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if(cta_lr < 18 || (cta_res[0] != 0x11 && cta_res[1] != 0x10))
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{
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// The card is v1
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csystem_data->bulcrypt_version = 1;
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set_key_command = cmd_set_key;
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}
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else
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{
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// The card is v2
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csystem_data->bulcrypt_version = 2;
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set_key_command = cmd_set_key_v2;
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}
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// Set CW obfuscation key
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write_cmd(set_key_command, set_key_command + 5);
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if(cta_lr < 2 || (cta_res[0] != 0x90 && cta_res[1] != 0x00))
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{
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rdr_log(reader, "(cmd_set_key) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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rdr_log(reader, "Bulcrypt v%d card detected.%s", csystem_data->bulcrypt_version,
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csystem_data->bulcrypt_version != 1 ? " *UNSUPPORTED CARD VERSION*" : "");
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// Read card type
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write_cmd(cmd_cardtype1, NULL);
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write_cmd(cmd_cardtype2, NULL);
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if(cta_lr < 5 || (cta_res[0] != 0x01 && cta_res[1] != 0x01))
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{
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rdr_log(reader, "(cmd_cardtype) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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card_type = cta_res[2]; // We have seen 0x4c and 0x75
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// *FIXME* Unknown command
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write_cmd(cmd_unkn_0a1, NULL);
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write_cmd(cmd_unkn_0a2, NULL);
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// Read card HEX serial
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write_cmd(cmd_cardsn1, NULL);
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write_cmd(cmd_cardsn2, NULL);
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if(cta_lr < 6 || (cta_res[0] != 0x02 && cta_res[1] != 0x04))
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{
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rdr_log(reader, "(card_sn) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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memcpy(reader->hexserial, cta_res + 2, 4);
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// Skip bottom four bits (they are 0x0b on our cards)
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reader->hexserial[3] = reader->hexserial[3] & 0xF0;
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// Read card ASCII serial
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write_cmd(cmd_ascsn1, NULL);
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write_cmd(cmd_ascsn2, NULL);
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if(cta_lr < 15 || (cta_res[0] != 0x05 && cta_res[1] != 0x0d))
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{
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rdr_log(reader, "(asc_sn) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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memcpy(card_serial, cta_res + 2, 13);
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cta_lr = cs_strlen(card_serial);
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for(i = 0; i < cta_lr; i++)
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{
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if(card_serial[i] == ' ')
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{ continue; }
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// Sanity check
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if(!isdigit((uint8_t)card_serial[i]))
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{ card_serial[i] = '*'; }
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}
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// Write empty ECM, *FIXME* why are we doing this? To prepare the card somehow?
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write_cmd(cmd_ecm_empty, NULL);
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// The HEX serial have nothing to do with Serial (they do not match)
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rdr_log_sensitive(reader, "CAID: 0x4AEE|0x5581, CardType: 0x%02x, Serial: {%s}, HexSerial: {%02X %02X %02X %02X}",
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card_type,
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card_serial,
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reader->hexserial[0], reader->hexserial[1], reader->hexserial[2], reader->hexserial[3]);
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rdr_log(reader, "Ready for requests.");
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return OK;
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}
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static int cw_is_valid(struct s_reader *reader, uint8_t *cw)
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{
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unsigned int i = 0, cnt = 0;
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do
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{
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if(cw[i++] == 0)
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{ cnt++; }
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}
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while(i < 8);
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if(cnt == 8)
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{
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rdr_log(reader, "Invalid CW (all zeroes)");
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return ERROR;
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}
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uint8_t cksum1 = cw[0] + cw[1] + cw[2];
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uint8_t cksum2 = cw[4] + cw[5] + cw[6];
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if(cksum1 != cw[3] || cksum2 != cw[7])
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{
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if(cksum1 != cw[3])
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{ rdr_log(reader, "Invalid CW (cksum1 mismatch expected 0x%02x got 0x%02x)", cksum1, cw[3]); }
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if(cksum2 != cw[7])
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{ rdr_log(reader, "Invalid CW (cksum2 mismatch expected 0x%02x got 0x%02x)", cksum2, cw[7]); }
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return ERROR;
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}
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return OK;
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}
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/*
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Bulcrypt ECM structure:
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80 70 - ECM header (80 | 81)
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4c - ECM length after this field (0x4c == 76 bytes)
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4f 8d 87 0b - unixts == 1334675211 == Tue Apr 17 18:06:51 EEST 2012
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00 66 - *FIXME* Program number?
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00 7d - *FIXME*
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ce 70 - ECM counter
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0b 88 - ECM type
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xx yy zz .. - Encrypted ECM payload (64 bytes)
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*/
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static int32_t bulcrypt_do_ecm(struct s_reader *reader, const ECM_REQUEST *er, struct s_ecm_answer *ea)
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{
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char tmp[512];
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uint8_t ecm_cmd[256];
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struct bulcrypt_data *csystem_data = reader->csystem_data;
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def_resp
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int32_t ecm_len = check_sct_len(er->ecm, 3);
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if(ecm_len < 64 || ecm_len > 188)
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{
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rdr_log(reader, "Wrong ECM length: %d", ecm_len);
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return ERROR;
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}
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// CMD: DE 20 00 00 4C
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memcpy(ecm_cmd, cmd_ecm, sizeof(cmd_ecm));
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ecm_cmd[4] = er->ecm[2]; // Set ECM length
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memcpy(ecm_cmd + sizeof(cmd_ecm), er->ecm + 3, ecm_cmd[4]);
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// Send ECM
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write_cmd(ecm_cmd, ecm_cmd + 5);
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if(cta_lr != 2)
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{
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rdr_log(reader, "(ecm_cmd) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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if(cta_res[0] == 0x90 && cta_res[1] == 0x03)
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{
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rdr_log(reader, "No active subscription.");
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return ERROR;
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}
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if(!(cta_res[0] == 0x90 && cta_res[1] == 0x13))
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{
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rdr_log(reader, "(ecm_cmd) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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// Call get_cw
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write_cmd(cmd_ecm_get_cw, NULL);
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// rdr_log(reader, "CW_LOG: %s", cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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if(cta_lr < 20 || (cta_res[0] != 0x0a && cta_res[1] != 0x11))
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{
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rdr_log(reader, "(get_cw) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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// *FIXME* is the bellow info true?
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// 0x80 (ver 1) is supported
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// 0xc0 (ver 2) is *NOT* supported currently
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if(cta_res[2] == 0xc0)
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{
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rdr_log(reader, "Possibly unsupported codeword (bulcrypt v2): %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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// *FIXME* commented for testing, this really should be an error
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//return ERROR;
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}
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// Remove code word obfuscation
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uint8_t *cw = cta_res + 3;
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if(csystem_data->bulcrypt_version == 1)
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{
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int i;
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for(i = 0 ; i < 16; i++)
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{
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cw[i] = cw[i] ^ sess_key[i];
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}
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}
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if(er->ecm[0] == 0x81)
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{
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// Even/Odd CWs should be exchanged
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memcpy(ea->cw, cw + 8, 8);
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memcpy(ea->cw + 8, cw, 8);
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}
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else
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{
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memcpy(ea->cw, cw, 8);
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memcpy(ea->cw + 8, cw + 8, 8);
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}
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// Check if DCW is valid
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if(!cw_is_valid(reader, ea->cw) || !cw_is_valid(reader, ea->cw + 8))
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{ return ERROR; }
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return OK;
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}
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/*
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Bulcrypt EMMs structure
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All EMMs are with section length 183 (0xb7)
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3 bytes section header
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7 bytes EMM header
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173 bytes payload
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82 70 - UNUQUE_EMM_82|8a
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b4 - Payload length (0xb4 == 180)
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xx xx xx xy - Card HEX SN (the last 4 bits (y) must be masked)
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payload
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85 70 - GLOBAL_EMM_85|8b
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b4 - Payload length (0xb4 == 180)
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xx xx yy yy - Card HEX SN (the last 16 bits (y) must be masked)
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payload
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84 70 - SHARED_EMM_84
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b4 - Payload length (0xb4 == 180)
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xx xx - Card HEX SN Prefix
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yy -
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zz -
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payload
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Padding EMM:
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8f 70 b4 ff ff ff ff ff ff ff ff ff .. .. (ff to the end)
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Stats for EMMs collected for a period of 1 hours and 24 minutes
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2279742 - 82 70 b4 - unique_82
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19051 - 8a 70 b4 - unique_8a (polaris equivallent of 0x82)
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199949 - 84 70 b4 - shared_84
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595309 - 85 70 b4 - global_85
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6417 - 8b 70 b4 - global_8b (polaris equivallent of 0x85)
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74850 - 8f 70 b4 - filler
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Total EMMs for the period: 3175317
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*/
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#define BULCRYPT_EMM_UNIQUE_82 0x82 // Addressed at single card (updates subscription info)
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#define BULCRYPT_EMM_UNIQUE_8a 0x8a // Addressed at single card (like 0x82) used for Polaris
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#define BULCRYPT_EMM_SHARED_84 0x84 // Addressed to 4096 cards (updates keys)
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#define BULCRYPT_EMM_GLOBAL_85 0x85 // Addressed at 4096 cards (updates packages)
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#define BULCRYPT_EMM_GLOBAL_8b 0x8b // Addressed at 4096 cards (like 0x85) used for Polaris
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#define BULCRYPT_EMM_FILLER 0x8f // Filler to pad the EMM stream
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static int32_t bulcrypt_get_emm_type(EMM_PACKET *ep, struct s_reader *reader)
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{
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char dump_emm_sn[64];
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int32_t emm_len = check_sct_len(ep->emm, 3);
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memset(ep->hexserial, 0, 8);
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if(emm_len < 176)
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{
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rdr_log_dbg(reader, D_TRACE | D_EMM, "emm_len < 176 (%u): %s",
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emm_len, cs_hexdump(1, ep->emm, 12, dump_emm_sn, sizeof(dump_emm_sn)));
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ep->type = UNKNOWN;
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return 0;
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}
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ep->type = UNKNOWN;
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switch(ep->emm[0])
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{
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case BULCRYPT_EMM_UNIQUE_82:
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ep->type = UNIQUE;
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break; // Bulsatcom
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case BULCRYPT_EMM_UNIQUE_8a:
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ep->type = UNIQUE;
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break; // Polaris
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case BULCRYPT_EMM_SHARED_84:
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ep->type = SHARED;
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break;
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case BULCRYPT_EMM_GLOBAL_85:
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ep->type = GLOBAL;
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break; // Bulsatcom
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case BULCRYPT_EMM_GLOBAL_8b:
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ep->type = GLOBAL;
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break; // Polaris
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}
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bool ret = false;
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if(ep->type == UNIQUE)
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{
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// The serial numbers looks like this:
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// aa bb cc dd
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memcpy(ep->hexserial, ep->emm + 3, 4);
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ret = reader->hexserial[0] == ep->hexserial[0] &&
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reader->hexserial[1] == ep->hexserial[1] &&
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reader->hexserial[2] == ep->hexserial[2] &&
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((reader->hexserial[3] & 0xF0) == (ep->hexserial[3] & 0xF0));
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}
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else
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{
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// To match EMM_84, EMM_85, EMM_8b
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// aa bb -- --
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memcpy(ep->hexserial, ep->emm + 3, 2);
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ret = reader->hexserial[0] == ep->hexserial[0] &&
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reader->hexserial[1] == ep->hexserial[1];
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}
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if(ret)
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{
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char dump_card_sn[64];
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cs_hexdump(1, reader->hexserial, 4, dump_card_sn, sizeof(dump_card_sn));
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cs_hexdump(1, ep->hexserial, 4, dump_emm_sn, sizeof(dump_emm_sn));
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rdr_log_sensitive(reader, "EMM_%s-%02x, emm_sn = {%s}, card_sn = {%s}",
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ep->type == UNIQUE ? "UNIQUE" :
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ep->type == SHARED ? "SHARED" :
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ep->type == GLOBAL ? "GLOBAL" : "??????",
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ep->emm[0],
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dump_emm_sn,
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dump_card_sn);
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}
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return ret;
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}
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static int32_t bulcrypt_get_emm_filter(struct s_reader *rdr, struct s_csystem_emm_filter **emm_filters, unsigned int *filter_count)
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{
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if(*emm_filters == NULL)
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{
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const unsigned int max_filter_count = 5;
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if(!cs_malloc(emm_filters, max_filter_count * sizeof(struct s_csystem_emm_filter)))
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{ return ERROR; }
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struct s_csystem_emm_filter *filters = *emm_filters;
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*filter_count = 0;
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int32_t idx = 0;
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filters[idx].type = EMM_UNIQUE;
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filters[idx].enabled = 1;
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filters[idx].filter[0] = 0x82;
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filters[idx].filter[1] = rdr->hexserial[0];
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filters[idx].filter[2] = rdr->hexserial[1];
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filters[idx].filter[3] = rdr->hexserial[2];
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filters[idx].filter[4] = rdr->hexserial[3];
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filters[idx].mask[0] = 0xFF;
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filters[idx].mask[1] = 0xFF;
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filters[idx].mask[2] = 0xFF;
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filters[idx].mask[3] = 0xFF;
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filters[idx].mask[4] = 0xF0;
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idx++;
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filters[idx].type = EMM_UNIQUE;
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filters[idx].enabled = 1;
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filters[idx].filter[0] = 0x8a;
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filters[idx].filter[1] = rdr->hexserial[0];
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filters[idx].filter[2] = rdr->hexserial[1];
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filters[idx].filter[3] = rdr->hexserial[2];
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filters[idx].filter[4] = rdr->hexserial[3];
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filters[idx].mask[0] = 0xFF;
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filters[idx].mask[1] = 0xFF;
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filters[idx].mask[2] = 0xFF;
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filters[idx].mask[3] = 0xFF;
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filters[idx].mask[4] = 0xF0;
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idx++;
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filters[idx].type = EMM_SHARED;
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filters[idx].enabled = 1;
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filters[idx].filter[0] = 0x84;
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filters[idx].filter[1] = rdr->hexserial[0];
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filters[idx].filter[2] = rdr->hexserial[1];
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filters[idx].mask[0] = 0xFF;
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filters[idx].mask[1] = 0xFF;
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filters[idx].mask[2] = 0xFF;
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idx++;
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filters[idx].type = EMM_GLOBAL;
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filters[idx].enabled = 1;
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filters[idx].filter[0] = 0x85;
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filters[idx].filter[1] = rdr->hexserial[0];
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filters[idx].filter[2] = rdr->hexserial[1];
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filters[idx].mask[0] = 0xFF;
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filters[idx].mask[1] = 0xFF;
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filters[idx].mask[2] = 0xFF;
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idx++;
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filters[idx].type = EMM_GLOBAL;
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filters[idx].enabled = 1;
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filters[idx].filter[0] = 0x8b;
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filters[idx].filter[1] = rdr->hexserial[0];
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filters[idx].filter[2] = rdr->hexserial[1];
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filters[idx].mask[0] = 0xFF;
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filters[idx].mask[1] = 0xFF;
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filters[idx].mask[2] = 0xFF;
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idx++;
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*filter_count = idx;
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}
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return OK;
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}
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static int32_t bulcrypt_do_emm(struct s_reader *reader, EMM_PACKET *ep)
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{
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char tmp[512];
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uint8_t emm_cmd[1024];
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def_resp
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// DE 04 xx yy B0
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// xx == EMM type (emm[0])
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// yy == EMM type2 (emm[5])
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// B0 == EMM len (176)
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memcpy(emm_cmd, cmd_emm1, sizeof(cmd_emm1));
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memcpy(emm_cmd + sizeof(cmd_emm1), ep->emm + 7, 176);
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switch(ep->emm[0])
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{
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case BULCRYPT_EMM_UNIQUE_82:
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emm_cmd[2] = ep->emm[0]; // 0x82
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break;
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case BULCRYPT_EMM_UNIQUE_8a: // Polaris equivallent of 0x82
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emm_cmd[2] = 0x82;
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emm_cmd[3] = 0x0b;
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break;
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case BULCRYPT_EMM_SHARED_84:
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emm_cmd[2] = ep->emm[0]; // 0x84
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emm_cmd[3] = ep->emm[5]; // 0x0b
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break;
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case BULCRYPT_EMM_GLOBAL_85:
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case BULCRYPT_EMM_GLOBAL_8b: // Polaris 0x85 equivallent of 0x85
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memcpy(emm_cmd, cmd_emm2, sizeof(cmd_emm2));
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emm_cmd[2] = ep->emm[5]; // 0xXX (Last bytes of the serial)
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emm_cmd[3] = ep->emm[6]; // 0x0b
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break;
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}
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// Write emm
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write_cmd(emm_cmd, emm_cmd + 5);
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if(cta_lr != 2 || cta_res[0] != 0x90 || (cta_res[1] != 0x00 && cta_res[1] != 0x0a && cta_res[1] != 0x12))
|
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{
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rdr_log(reader, "(emm_cmd) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
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// V2 answers of 82 EMM
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if(cta_res[0] == 0x90 && cta_res[1] == 0x12)
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{
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write_cmd(cmd_card_v2_key2, NULL);
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if(cta_res[18] == 0x90 && cta_res[19] == 0x12)
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{
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write_cmd(cmd_card_v2_key2, NULL);
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}
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}
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if(ep->emm[0] == BULCRYPT_EMM_UNIQUE_82 && cta_res[0] == 0x90 && (cta_res[1] == 0x0a || cta_res[1] == 0x00))
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{
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rdr_log(reader, "Your subscription data was updated.");
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add_job(reader->client, ACTION_READER_CARDINFO, NULL, 0);
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}
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return OK;
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}
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static char *dec2bin_str(unsigned int d, char *s)
|
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{
|
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unsigned int i, r = 8;
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memset(s, 0, 9);
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for(i = 1; i < 256; i <<= 1)
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{ s[--r] = (d & i) == i ? '+' : '-'; }
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return s;
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}
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static int32_t bulcrypt_card_info(struct s_reader *reader)
|
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{
|
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char tmp[512];
|
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time_t last_upd_ts, subs_end_ts;
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struct tm tm;
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def_resp
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rdr_log(reader, "Reading subscription info.");
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cs_clear_entitlement(reader);
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write_cmd(cmd_sub_info1, NULL);
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write_cmd(cmd_sub_info2, NULL);
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if(cta_lr < 45)
|
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{
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rdr_log(reader, "(info_cmd) Unexpected card answer: %s",
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cs_hexdump(1, cta_res, cta_lr, tmp, sizeof(tmp)));
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return ERROR;
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}
|
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|
|
// Response contains:
|
|
// 13 29 0B
|
|
// 4F 8F 00 E9 - Unix ts set by UNIQUE_EMM_82
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|
// 3C 65 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 BF
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// 3C 84 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 BF
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// 90 2B
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|
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last_upd_ts = b2i(4, cta_res + 3);
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subs_end_ts = last_upd_ts + (31 * 86400); // *FIXME* this is just a guess
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reader->card_valid_to = subs_end_ts;
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|
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gmtime_r(&last_upd_ts, &tm);
|
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memset(tmp, 0, sizeof(tmp));
|
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strftime(tmp, sizeof(tmp), "%Y-%m-%d %H:%M:%S %Z", &tm);
|
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rdr_log(reader, "Subscription data last update : %s", tmp);
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|
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gmtime_r(&subs_end_ts, &tm);
|
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memset(tmp, 0, sizeof(tmp));
|
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strftime(tmp, sizeof(tmp), "%Y-%m-%d %H:%M:%S %Z", &tm);
|
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rdr_log(reader, "Subscription should be active to : %s", tmp);
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|
|
unsigned int subs1 = b2i(2, cta_res + 3 + 4 + 16);
|
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unsigned int subs2 = b2i(2, cta_res + 3 + 4 + 16 + 18);
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|
|
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if(subs1 == 0xffff)
|
|
{
|
|
rdr_log(reader, "No active subscriptions (0x%04x, 0x%04x)", subs1, subs2);
|
|
}
|
|
else
|
|
{
|
|
unsigned int i;
|
|
rdr_log(reader, "Subscription data 1 (0x%04x): %s",
|
|
subs1, dec2bin_str(subs1, tmp));
|
|
rdr_log(reader, "Subscription data 2 (0x%04x): %s",
|
|
subs2, dec2bin_str(subs2, tmp));
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|
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// Configure your tiers to get subscription packets name resolution
|
|
// # Example oscam.tiers file
|
|
// 5581:0001|Economic
|
|
// 5581:0002|Standard
|
|
// 5581:0004|Premium
|
|
// 5581:0008|HBO
|
|
// 5581:0010|Cinemax
|
|
// 5581:0020|Unknown Package 20
|
|
// 5581:0040|Film Plus - Sport Plus HD & Hobby TV HD
|
|
// 5581:0080|Unknown Package 80
|
|
for(i = 1; i < 256; i <<= 1)
|
|
{
|
|
if((subs1 & i) == i)
|
|
{
|
|
cs_add_entitlement(reader, 0x4AEE,
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|
0, /* provid */
|
|
i, /* id */
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|
0, /* class */
|
|
last_upd_ts, /* start_ts */
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|
subs_end_ts, /* end_ts */
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|
4, /* type: Tier */
|
|
1 /* add */
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|
);
|
|
cs_add_entitlement(reader, 0x5581,
|
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0, /* provid */
|
|
i, /* id */
|
|
0, /* class */
|
|
last_upd_ts, /* start_ts */
|
|
subs_end_ts, /* end_ts */
|
|
4, /* type: Tier */
|
|
1 /* add */
|
|
);
|
|
get_tiername(i, 0x4aee, tmp);
|
|
if(tmp[0] == 0x00)
|
|
{ get_tiername(i, 0x5581, tmp); }
|
|
rdr_log(reader, "Package %02x is active: %s", i, tmp);
|
|
}
|
|
}
|
|
}
|
|
|
|
rdr_log(reader, "End subscription info.");
|
|
return OK;
|
|
}
|
|
|
|
const struct s_cardsystem reader_bulcrypt =
|
|
{
|
|
.desc = "bulcrypt",
|
|
.caids = (uint16_t[]){ 0x5581, 0x4AEE, 0 },
|
|
.do_emm = bulcrypt_do_emm,
|
|
.do_ecm = bulcrypt_do_ecm,
|
|
.card_info = bulcrypt_card_info,
|
|
.card_init = bulcrypt_card_init,
|
|
.get_emm_type = bulcrypt_get_emm_type,
|
|
.get_emm_filter = bulcrypt_get_emm_filter,
|
|
};
|
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|
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#endif
|