mirror of
https://github.com/RfidResearchGroup/proxmark3.git
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416 lines
13 KiB
C
416 lines
13 KiB
C
//-----------------------------------------------------------------------------
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// Christian Herrmann, 2020
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//
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// This code is licensed to you under the terms of the GNU GPL, version 2 or,
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// at your option, any later version. See the LICENSE.txt file for the text of
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// the license.
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//-----------------------------------------------------------------------------
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// main code for hf_iceclass by Iceman
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//-----------------------------------------------------------------------------
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#include "standalone.h" // standalone definitions
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#include "proxmark3_arm.h"
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#include "appmain.h"
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#include "BigBuf.h"
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#include "fpgaloader.h"
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#include "util.h"
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#include "dbprint.h"
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#include "spiffs.h"
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#include "iclass.h"
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#include "optimized_cipher.h"
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#define NUM_CSNS 9
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#define MAC_RESPONSES_SIZE (16 * NUM_CSNS)
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#define HF_ICLASS_FULLSIM_ORIG_BIN "iceclass-orig.bin"
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#define HF_ICLASS_FULLSIM_MOD "iceclass-modified"
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#define HF_ICLASS_FULLSIM_MOD_BIN HF_ICLASS_FULLSIM_MOD".bin"
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#define HF_ICLASS_FULLSIM_MOD_EML HF_ICLASS_FULLSIM_MOD".eml"
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#define HF_ICLASS_ATTACK_BIN "iclass_mac_attack.bin"
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#define HF_ICLASS_CC_A "iceclass_cc_a.bin"
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#define HF_ICLASS_CC_B "iceclass_cc_b.bin"
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char* cc_files[] = { HF_ICLASS_CC_A, HF_ICLASS_CC_B };
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#define ICE_STATE_NONE 0
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#define ICE_STATE_FULLSIM 1
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#define ICE_STATE_ATTACK 2
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#define ICE_STATE_READER 3
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#define ICE_STATE_CONFIGCARD 4
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typedef struct {
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uint8_t app_limit; //[8]
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uint8_t otp[2]; //[9-10]
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uint8_t block_writelock;//[11]
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uint8_t chip_config; //[12]
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uint8_t mem_config; //[13]
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uint8_t eas; //[14]
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uint8_t fuses; //[15]
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} picopass_conf_block_t;
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// iclass card descriptors
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char * card_types[] = {
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"PicoPass 16K / 16", // 000
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"PicoPass 32K with current book 16K / 16", // 001
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"Unknown Card Type!", // 010
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"Unknown Card Type!", // 011
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"PicoPass 2K", // 100
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"Unknown Card Type!", // 101
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"PicoPass 16K / 2", // 110
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"PicoPass 32K with current book 16K / 2", // 111
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};
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uint8_t card_app2_limit[] = {
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0xff,
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0xff,
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0xff,
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0xff,
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0x1f,
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0xff,
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0xff,
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0xff,
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};
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static uint8_t aa2_key[] = {0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF};
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static uint8_t legacy_aa1_key[] = {0xAE, 0xA6, 0x84, 0xA6, 0xDA, 0xB2, 0x32, 0x78};
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static uint8_t csns[8 * NUM_CSNS] = {
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0x01, 0x0A, 0x0F, 0xFF, 0xF7, 0xFF, 0x12, 0xE0,
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0x0C, 0x06, 0x0C, 0xFE, 0xF7, 0xFF, 0x12, 0xE0,
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0x10, 0x97, 0x83, 0x7B, 0xF7, 0xFF, 0x12, 0xE0,
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0x13, 0x97, 0x82, 0x7A, 0xF7, 0xFF, 0x12, 0xE0,
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0x07, 0x0E, 0x0D, 0xF9, 0xF7, 0xFF, 0x12, 0xE0,
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0x14, 0x96, 0x84, 0x76, 0xF7, 0xFF, 0x12, 0xE0,
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0x17, 0x96, 0x85, 0x71, 0xF7, 0xFF, 0x12, 0xE0,
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0xCE, 0xC5, 0x0F, 0x77, 0xF7, 0xFF, 0x12, 0xE0,
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0xD2, 0x5A, 0x82, 0xF8, 0xF7, 0xFF, 0x12, 0xE0
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//0x04, 0x08, 0x9F, 0x78, 0x6E, 0xFF, 0x12, 0xE0
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};
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static void download_instructions(uint8_t t) {
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Dbprintf("");
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switch (t) {
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case ICE_STATE_FULLSIM: {
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Dbprintf("The emulator memory was saved to flash. Try the following from flash and display it");
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Dbprintf("1. " _YELLOW_("mem spiffs dump o "HF_ICLASS_FULLSIM_MOD_BIN" f "HF_ICLASS_FULLSIM_MOD" e"));
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Dbprintf("2. " _YELLOW_("exit proxmark3 client"));
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Dbprintf("3. " _YELLOW_("cat "HF_ICLASS_FULLSIM_MOD_EML));
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break;
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}
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case ICE_STATE_ATTACK: {
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Dbprintf("The emulator memory was saved to flash. Try the following from flash and display it");
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Dbprintf("1. " _YELLOW_("mem spiffs dump o "HF_ICLASS_ATTACK_BIN" f "HF_ICLASS_ATTACK_BIN));
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Dbprintf("2. " _YELLOW_("hf iclass loclass f "HF_ICLASS_ATTACK_BIN));
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break;
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}
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case ICE_STATE_READER: {
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Dbprintf("The found tags was saved to flash. Try to download from flash and display it");
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Dbprintf("1. " _YELLOW_("mem spiffs tree"));
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Dbprintf("2. " _YELLOW_("mem spiffs dump h"));
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break;
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}
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}
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}
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static void save_to_flash(uint8_t *data, uint16_t datalen) {
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rdv40_spiffs_lazy_mount();
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char fn[SPIFFS_OBJ_NAME_LEN];
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sprintf(fn, "iclass-%02X%02X%02X%02X%02X%02X%02X%02X.bin",
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data[0], data[1], data[2], data[3],
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data[4], data[5], data[6], data[7]
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);
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if (exists_in_spiffs(fn) == false) {
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int res = rdv40_spiffs_write(fn, data, datalen, RDV40_SPIFFS_SAFETY_SAFE);
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if (res == SPIFFS_OK) {
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Dbprintf("Saved to `" _YELLOW_("%s") "`", fn);
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} else {
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Dbprintf("error writing `" _YELLOW_("%s") "`", fn);
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}
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}
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rdv40_spiffs_lazy_unmount();
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}
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static int fullsim_mode(void) {
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rdv40_spiffs_lazy_mount();
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SpinOff(0);
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uint8_t *emul = BigBuf_get_EM_addr();
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uint32_t fsize = size_in_spiffs(HF_ICLASS_FULLSIM_ORIG_BIN);
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int res = rdv40_spiffs_read_as_filetype(HF_ICLASS_FULLSIM_ORIG_BIN, emul, fsize, RDV40_SPIFFS_SAFETY_SAFE);
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rdv40_spiffs_lazy_unmount();
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if (res == SPIFFS_OK) {
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Dbprintf("loaded '" _YELLOW_(HF_ICLASS_FULLSIM_ORIG_BIN) "' (%u bytes) to emulator memory", fsize);
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}
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// create diversified key if not in dump.
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if ( memcmp(emul + (3 * 8), "\xFF\xFF\xFF\xFF\xFF\xFF\xFF\xFF", 8) == 0) {
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uint8_t ccnr[12] = {0};
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memcpy(ccnr, emul + (2 * 8), 8);
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bool use_elite = false;
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iclass_calc_div_key(emul, legacy_aa1_key, emul + (3 * 8), use_elite);
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}
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iclass_simulate(ICLASS_SIM_MODE_FULL, 0 , false, NULL, NULL, NULL);
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LED_B_ON();
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rdv40_spiffs_lazy_mount();
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res = rdv40_spiffs_write(HF_ICLASS_FULLSIM_MOD_BIN, emul, fsize, RDV40_SPIFFS_SAFETY_SAFE);
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rdv40_spiffs_lazy_unmount();
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LED_B_OFF();
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if (res != SPIFFS_OK) {
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Dbprintf("error writing '"HF_ICLASS_FULLSIM_MOD_BIN"' to flash ( %d )", res);
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}
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return PM3_SUCCESS;
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}
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static int reader_attack_mode(void) {
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BigBuf_free();
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uint16_t mac_response_len = 0;
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uint8_t *mac_responses = BigBuf_malloc(MAC_RESPONSES_SIZE);
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iclass_simulate(ICLASS_SIM_MODE_READER_ATTACK, NUM_CSNS, false, csns, mac_responses, &mac_response_len);
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if (mac_response_len > 0) {
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bool success = (mac_response_len == MAC_RESPONSES_SIZE);
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uint8_t num_mac = (mac_response_len >> 4);
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Dbprintf("%u out of %d MAC obtained [%s]", num_mac, NUM_CSNS, (success) ? _GREEN_("OK") : _RED_("FAIL"));
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size_t dumplen = NUM_CSNS * 24;
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uint8_t *dump = BigBuf_malloc(dumplen);
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if (dump == false) {
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Dbprintf("failed to allocate memory");
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return PM3_EMALLOC;
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}
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memset(dump, 0, dumplen);//<-- Need zeroes for the EPURSE - field
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for (uint8_t i = 0 ; i < NUM_CSNS ; i++) {
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//copy CSN
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memcpy(dump + (i * 24), csns + (i * 8), 8);
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//copy epurse
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memcpy(dump + (i * 24) + 8, mac_responses + (i * 16), 8);
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// NR_MAC (eight bytes from the response) ( 8b csn + 8b epurse == 16)
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memcpy(dump + (i * 24) + 16, mac_responses + (i * 16) + 8, 8);
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}
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LED_B_ON();
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rdv40_spiffs_lazy_mount();
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int res = rdv40_spiffs_write(HF_ICLASS_ATTACK_BIN, dump, dumplen, RDV40_SPIFFS_SAFETY_SAFE);
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rdv40_spiffs_lazy_unmount();
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LED_B_OFF();
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if (res != SPIFFS_OK) {
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Dbprintf("error writing '"HF_ICLASS_ATTACK_BIN"' to flash ( %d )", res);
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}
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}
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return PM3_SUCCESS;
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}
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static int reader_dump_mode(void) {
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BigBuf_free();
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uint8_t *card_data = BigBuf_malloc(0xFF * 8);
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memset(card_data, 0xFF, sizeof(card_data));
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struct p {
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uint8_t key[8];
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bool use_raw;
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bool use_elite;
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bool use_credit_key;
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} PACKED;
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for (;;) {
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if (BUTTON_PRESS()) {
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DbpString("button pressed");
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break;
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}
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// AA1
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struct p payload = {
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.use_raw = false,
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.use_elite = false,
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.use_credit_key = false,
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};
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memcpy(payload.key, legacy_aa1_key, sizeof(payload.key));
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bool isOK = iclass_auth((uint8_t*)&payload, false, card_data);
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if (isOK == false) {
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continue;
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}
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picopass_conf_block_t *conf = (picopass_conf_block_t*)(card_data + 8);
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// get 3 config bits
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uint8_t type = (conf->chip_config & 0x10) >> 2;
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type |= (conf->mem_config & 0x80) >> 6;
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type |= (conf->mem_config & 0x20) >> 5;
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uint8_t app1_limit = conf->app_limit - 5; // minus header blocks
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uint8_t app2_limit = card_app2_limit[type];
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uint16_t dumped = 0;
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uint8_t block;
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for (block = 5; block < app1_limit; block++) {
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isOK = iclass_readblock(block, card_data + (8 * block));
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if (isOK) {
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dumped++;
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}
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}
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// AA2
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payload.use_credit_key = true;
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memcpy(payload.key, aa2_key, sizeof(payload.key));
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isOK = iclass_auth((uint8_t*)&payload, false, card_data);
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if (isOK) {
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for (; block < app2_limit; block++) {
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isOK = iclass_readblock(block, card_data + (8 * block));
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if (isOK) {
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dumped++;
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}
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}
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}
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Dbprintf("Found %s", card_types[type]);
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/*
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Dbprintf("APP1 Blocks: %d", app1_limit);
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Dbprintf("APP2 Blocks: %d", app2_limit - app1_limit - 5); // minus app1 and header
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Dbprintf("Got %d blocks (saving %u, %u bytes )", dumped, dumped + 5, ((dumped+5)*8) );
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*/
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if (5 + dumped > app1_limit) {
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save_to_flash(card_data, (5 + dumped) * 8 );
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}
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}
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Dbprintf("exit read & dump mode");
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return PM3_SUCCESS;
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}
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static int config_sim_mode(void) {
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uint8_t *emul = BigBuf_get_EM_addr();
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for (uint8_t i = 0; i < 2; i++) {
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SpinOff(0);
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uint32_t fsize = size_in_spiffs(cc_files[i]);
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rdv40_spiffs_lazy_mount();
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int res = rdv40_spiffs_read_as_filetype(cc_files[i], emul, fsize, RDV40_SPIFFS_SAFETY_SAFE);
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rdv40_spiffs_lazy_unmount();
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if (res == SPIFFS_OK) {
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Dbprintf("loaded '" _YELLOW_("%s") "' (%u bytes) to emulator memory", cc_files[i], fsize);
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}
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iclass_simulate(ICLASS_SIM_MODE_FULL, 0 , false, NULL, NULL, NULL);
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}
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rdv40_spiffs_lazy_unmount();
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return PM3_SUCCESS;
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}
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void ModInfo(void) {
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DbpString(" HF iCLASS mode - aka iceCLASS (iceman)");
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}
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void RunMod(void) {
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FpgaDownloadAndGo(FPGA_BITSTREAM_HF);
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BigBuf_Clear();
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StandAloneMode();
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Dbprintf(_YELLOW_("HF iCLASS mode a.k.a iceCLASS started"));
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uint8_t mode = ICE_STATE_ATTACK;
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for (;;) {
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WDT_HIT();
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if (mode == ICE_STATE_NONE) break;
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if (data_available()) break;
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/*
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// Was our button held down or pressed?
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int button_pressed = BUTTON_HELD(1000);
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if (button_pressed != BUTTON_NO_CLICK) {
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break;
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}
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*/
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int res;
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switch (mode) {
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case ICE_STATE_FULLSIM: {
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Dbprintf("enter full simulation mode");
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// Look for iCLASS dump file
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rdv40_spiffs_lazy_mount();
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if (exists_in_spiffs(HF_ICLASS_FULLSIM_ORIG_BIN) == false) {
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Dbprintf("error, '" _YELLOW_(HF_ICLASS_FULLSIM_ORIG_BIN) "' file missing");
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mode = ICE_STATE_NONE;
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}
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rdv40_spiffs_lazy_unmount();
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if (mode == ICE_STATE_FULLSIM) {
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res = fullsim_mode();
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if (res == PM3_SUCCESS) {
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download_instructions(mode);
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}
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}
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// the button press to exit sim, is captured in main loop here
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mode = ICE_STATE_NONE;
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break;
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}
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case ICE_STATE_ATTACK: {
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Dbprintf("enter reader attack mode");
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res = reader_attack_mode();
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if (res == PM3_SUCCESS)
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download_instructions(mode);
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mode = ICE_STATE_NONE;
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break;
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}
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case ICE_STATE_READER: {
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Dbprintf("enter read & dump mode");
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res = reader_dump_mode();
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if (res == PM3_SUCCESS)
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download_instructions(mode);
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mode = ICE_STATE_NONE;
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break;
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}
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case ICE_STATE_CONFIGCARD: {
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Dbprintf("enter config card simulation mode");
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// Look for config cards
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rdv40_spiffs_lazy_mount();
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for (uint8_t i =0; i < 2; i++) {
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if (exists_in_spiffs(cc_files[i]) == false) {
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Dbprintf("error, '" _YELLOW_("%s") "' file missing", cc_files[i]);
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mode = ICE_STATE_NONE;
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}
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}
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rdv40_spiffs_lazy_unmount();
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if (mode == ICE_STATE_CONFIGCARD)
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config_sim_mode();
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mode = ICE_STATE_NONE;
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break;
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}
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}
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}
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switch_off();
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Dbprintf("-=[ exit iceCLASS ]=-");
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}
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