unified text

This commit is contained in:
iceman1001 2019-04-12 10:55:09 +02:00
parent d8ab476022
commit e7f4f615c0
10 changed files with 18 additions and 18 deletions

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@ -649,7 +649,7 @@ int CmdHF14AInfo(const char *Cmd) {
else if (res == 0) else if (res == 0)
PrintAndLogEx(SUCCESS, "Prng detection: " _YELLOW_("HARD")); PrintAndLogEx(SUCCESS, "Prng detection: " _YELLOW_("HARD"));
else else
PrintAndLogEx(FAILED, "prng detection: " _RED_("failed")); PrintAndLogEx(FAILED, "prng detection: " _RED_("Fail"));
if (do_nack_test) if (do_nack_test)
detect_classic_nackbug(silent); detect_classic_nackbug(silent);

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@ -252,7 +252,7 @@ int CmdLegicInfo(const char *Cmd) {
stamp_len = 0xfc - data[6]; stamp_len = 0xfc - data[6];
} }
PrintAndLogEx(NORMAL, "DCF: %d (%02x %02x), Token Type=%s (OLE=%01u), OL=%02u, FL=%02u", PrintAndLogEx(NORMAL, "DCF: %d (%02x %02x), Token Type=" _YELLOW_("%s") " (OLE=%01u), OL=%02u, FL=%02u",
dcf, dcf,
data[5], data[5],
data[6], data[6],
@ -468,7 +468,7 @@ int CmdLegicInfo(const char *Cmd) {
} }
} }
if ( i > 0 ) { if ( remain_seg_payload_len > 0 ) {
PrintAndLogEx(NORMAL, "Remaining segment payload: (I %d | Remain LEN %d)", i, remain_seg_payload_len); PrintAndLogEx(NORMAL, "Remaining segment payload: (I %d | Remain LEN %d)", i, remain_seg_payload_len);
PrintAndLogEx(NORMAL, "\nrow | data"); PrintAndLogEx(NORMAL, "\nrow | data");
PrintAndLogEx(NORMAL, "-----+------------------------------------------------"); PrintAndLogEx(NORMAL, "-----+------------------------------------------------");

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@ -745,7 +745,7 @@ uint32_t OutputEM4x50_Block(uint8_t *BitStream, size_t size, bool verbose, bool
); );
} }
PrintAndLogEx(SUCCESS, "Parity checks | %s", (pTest) ? _GREEN_("Passed") : _RED_("Failed")); PrintAndLogEx(SUCCESS, "Parity checks | %s", (pTest) ? _GREEN_("Passed") : _RED_("Fail"));
} }
return code; return code;
} }
@ -944,7 +944,7 @@ int EM4x50Read(const char *Cmd, bool verbose) {
PrintAndLogEx(NORMAL, "Block %d: %08x", block, Code[block]); PrintAndLogEx(NORMAL, "Block %d: %08x", block, Code[block]);
} }
PrintAndLogEx(NORMAL, "Parities checks | %s", (AllPTest) ? _GREEN_("Passed") : _RED_("Failed")); PrintAndLogEx(NORMAL, "Parities checks | %s", (AllPTest) ? _GREEN_("Passed") : _RED_("Fail"));
if (AllPTest == 0) { if (AllPTest == 0) {
PrintAndLogEx(NORMAL, "Try cleaning the read samples with " _YELLOW_("'data askedge'")); PrintAndLogEx(NORMAL, "Try cleaning the read samples with " _YELLOW_("'data askedge'"));
@ -1202,7 +1202,7 @@ static int CmdEM4x05Read(const char *Cmd) {
if (isOk) if (isOk)
PrintAndLogEx(NORMAL, "Address %02d | %08X - %s", addr, word, (addr > 13) ? "Lock" : ""); PrintAndLogEx(NORMAL, "Address %02d | %08X - %s", addr, word, (addr > 13) ? "Lock" : "");
else else
PrintAndLogEx(NORMAL, "Read Address %02d | " _RED_("failed"), addr); PrintAndLogEx(NORMAL, "Read Address %02d | " _RED_("Fail"), addr);
return isOk; return isOk;
} }

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@ -157,7 +157,7 @@ static int CmdFDXBdemodBI(const char *Cmd) {
PrintAndLogEx(SUCCESS, "Reserved/RFU: %u", reservedCode); PrintAndLogEx(SUCCESS, "Reserved/RFU: %u", reservedCode);
PrintAndLogEx(SUCCESS, "Animal Tag: %s", animalBit ? _YELLOW_("True") : "False"); PrintAndLogEx(SUCCESS, "Animal Tag: %s", animalBit ? _YELLOW_("True") : "False");
PrintAndLogEx(SUCCESS, "Has extended data: %s [0x%X]", dataBlockBit ? _YELLOW_("True") : "False", extended); PrintAndLogEx(SUCCESS, "Has extended data: %s [0x%X]", dataBlockBit ? _YELLOW_("True") : "False", extended);
PrintAndLogEx(SUCCESS, "CRC: 0x%04X - [%04X] - %s", crc_16, calcCrc, (calcCrc == crc_16) ? _GREEN_("Passed") : "Failed"); PrintAndLogEx(SUCCESS, "CRC: 0x%04X - [%04X] - %s", crc_16, calcCrc, (calcCrc == crc_16) ? _GREEN_("Passed") : _RED_("Fail") );
if (g_debugMode) { if (g_debugMode) {
PrintAndLogEx(DEBUG, "Start marker %d; Size %d", preambleIndex, size); PrintAndLogEx(DEBUG, "Start marker %d; Size %d", preambleIndex, size);
@ -226,7 +226,7 @@ static int CmdFdxDemod(const char *Cmd) {
PrintAndLogEx(SUCCESS, "Reserved/RFU %u (0x04%X)", reservedCode, reservedCode); PrintAndLogEx(SUCCESS, "Reserved/RFU %u (0x04%X)", reservedCode, reservedCode);
PrintAndLogEx(SUCCESS, "Animal Tag %s", animalBit ? _YELLOW_("True") : "False"); PrintAndLogEx(SUCCESS, "Animal Tag %s", animalBit ? _YELLOW_("True") : "False");
PrintAndLogEx(SUCCESS, "Has extended data %s [0x%X]", dataBlockBit ? _YELLOW_("True") : "False", extended); PrintAndLogEx(SUCCESS, "Has extended data %s [0x%X]", dataBlockBit ? _YELLOW_("True") : "False", extended);
PrintAndLogEx(SUCCESS, "CRC-16 0x%04X - 0x%04X [%s]", crc_16, calcCrc, (calcCrc == crc_16) ? _GREEN_("Ok") : "Failed"); PrintAndLogEx(SUCCESS, "CRC-16 0x%04X - 0x%04X [%s]", crc_16, calcCrc, (calcCrc == crc_16) ? _GREEN_("Ok") : _RED_("Fail") );
if (g_debugMode) { if (g_debugMode) {
PrintAndLogEx(DEBUG, "Start marker %d; Size %d", preambleIndex, size); PrintAndLogEx(DEBUG, "Start marker %d; Size %d", preambleIndex, size);

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@ -414,7 +414,7 @@ static void printHitagConfiguration(uint8_t config) {
if (config & 0x10) { if (config & 0x10) {
strcat(msg + strlen(msg), "read only"); strcat(msg + strlen(msg), "read only");
} else { } else {
strcat(msg + strlen(msg), _GREEN_("read write")); strcat(msg + strlen(msg), _GREEN_("RW"));
} }
PrintAndLogEx(SUCCESS, "%s", msg); PrintAndLogEx(SUCCESS, "%s", msg);
memset(msg, 0, sizeof(msg)); memset(msg, 0, sizeof(msg));
@ -424,7 +424,7 @@ static void printHitagConfiguration(uint8_t config) {
if (config & 0x20) { if (config & 0x20) {
strcat(msg + strlen(msg), "read only"); strcat(msg + strlen(msg), "read only");
} else { } else {
strcat(msg + strlen(msg), _GREEN_("read write")); strcat(msg + strlen(msg), _GREEN_("RW"));
} }
PrintAndLogEx(SUCCESS, "%s", msg); PrintAndLogEx(SUCCESS, "%s", msg);
memset(msg, 0, sizeof(msg)); memset(msg, 0, sizeof(msg));
@ -434,7 +434,7 @@ static void printHitagConfiguration(uint8_t config) {
if (config & 0x40) { if (config & 0x40) {
strcat(msg + strlen(msg), "read only. Configuration byte and password tag " _RED_("FIXED / IRREVERSIBLE")); strcat(msg + strlen(msg), "read only. Configuration byte and password tag " _RED_("FIXED / IRREVERSIBLE"));
} else { } else {
strcat(msg + strlen(msg), _GREEN_("read write")); strcat(msg + strlen(msg), _GREEN_("RW"));
} }
PrintAndLogEx(SUCCESS, "%s", msg); PrintAndLogEx(SUCCESS, "%s", msg);
memset(msg, 0, sizeof(msg)); memset(msg, 0, sizeof(msg));
@ -450,7 +450,7 @@ static void printHitagConfiguration(uint8_t config) {
strcat(msg + strlen(msg), "read only"); strcat(msg + strlen(msg), "read only");
} }
} else { } else {
strcat(msg, "Page 1,2 : " _GREEN_("read write")); strcat(msg, "Page 1,2 : " _GREEN_("RW"));
} }
PrintAndLogEx(SUCCESS, "%s", msg); PrintAndLogEx(SUCCESS, "%s", msg);
PrintAndLogEx(INFO, "------------------------------------"); PrintAndLogEx(INFO, "------------------------------------");

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@ -102,7 +102,7 @@ static int CmdJablotronDemod(const char *Cmd) {
uint8_t chksum = raw2 & 0xFF; uint8_t chksum = raw2 & 0xFF;
PrintAndLogEx(INFO, "Checksum: %02X [%s]", PrintAndLogEx(INFO, "Checksum: %02X [%s]",
chksum, chksum,
(chksum == jablontron_chksum(DemodBuffer)) ? _GREEN_("OK") : _RED_("FAIL") (chksum == jablontron_chksum(DemodBuffer)) ? _GREEN_("OK") : _RED_("Fail")
); );
id = DEC2BCD(id); id = DEC2BCD(id);

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@ -182,7 +182,7 @@ static int CmdPyramidDemod(const char *Cmd) {
PrintAndLogEx(DEBUG, "DEBUG: Pyramid: checksum : 0x%02X - %02X - %s" PrintAndLogEx(DEBUG, "DEBUG: Pyramid: checksum : 0x%02X - %02X - %s"
, checksum , checksum
, checkCS , checkCS
, (checksum == checkCS) ? _GREEN_("Passed") : _RED_("Failed") , (checksum == checkCS) ? _GREEN_("Passed") : _RED_("Fail")
); );
PrintAndLogEx(DEBUG, "DEBUG: Pyramid: idx: %d, Len: %d, Printing Demod Buffer:", idx, 128); PrintAndLogEx(DEBUG, "DEBUG: Pyramid: idx: %d, Len: %d, Printing Demod Buffer:", idx, 128);

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@ -252,7 +252,7 @@ static int CmdTIDemod(const char *Cmd) {
//crc = crc16_ccitt(message, sizeof(message); //crc = crc16_ccitt(message, sizeof(message);
const char *crcStr = (crc == (shift2 & 0xFFFF)) ? _GREEN_("Passed") : _RED_("Failed"); const char *crcStr = (crc == (shift2 & 0xFFFF)) ? _GREEN_("Passed") : _RED_("Fail");
PrintAndLogEx(INFO, "Tag data = %08X%08X [Crc %04X %s]", shift1, shift0, crc, crcStr); PrintAndLogEx(INFO, "Tag data = %08X%08X [Crc %04X %s]", shift1, shift0, crc, crcStr);

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@ -154,7 +154,7 @@ int roca_self_test(void) {
PrintAndLogEx(SUCCESS, "Weak modulus [ %s]", _GREEN_("PASS")); PrintAndLogEx(SUCCESS, "Weak modulus [ %s]", _GREEN_("PASS"));
} else { } else {
ret++; ret++;
PrintAndLogEx(FAILED, "Weak modulus [ %s]", _RED_("FAIL")); PrintAndLogEx(FAILED, "Weak modulus [ %s]", _RED_("Fail"));
} }
// negative // negative
@ -165,7 +165,7 @@ int roca_self_test(void) {
if (emv_rocacheck(keyn, 64, false)) { if (emv_rocacheck(keyn, 64, false)) {
ret++; ret++;
PrintAndLogEx(FAILED, "Strong modulus [ %s]", _RED_("FAIL")); PrintAndLogEx(FAILED, "Strong modulus [ %s]", _RED_("Fail"));
} else { } else {
PrintAndLogEx(SUCCESS, "Strong modulus [ %s]", _GREEN_("PASS")); PrintAndLogEx(SUCCESS, "Strong modulus [ %s]", _GREEN_("PASS"));
} }

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@ -97,7 +97,7 @@ int ExecuteCryptoTests(bool verbose) {
PrintAndLogEx(NORMAL, "\n--------------------------"); PrintAndLogEx(NORMAL, "\n--------------------------");
if (TestFail) if (TestFail)
PrintAndLogEx(FAILED, "\tTest(s) [ %s ]", _RED_("FAIL")); PrintAndLogEx(FAILED, "\tTest(s) [ %s ]", _RED_("Fail"));
else else
PrintAndLogEx(SUCCESS, "\tTest(s) [ %s ]", _GREEN_("OK")); PrintAndLogEx(SUCCESS, "\tTest(s) [ %s ]", _GREEN_("OK"));