+ crc_t crc;
+ crc_init_ref(&crc, 8, 0x31, 0, 0, TRUE, TRUE);
+ for ( int i=0; i < size; ++i)
+ crc_update2(&crc, buff[i], 8);
+ return crc_finish(&crc);
+}
+
+// width=4 poly=0xC, reversed poly=0x7 init=0x5 refin=true refout=true xorout=0x0000 check= name="CRC-4/LEGIC"
+uint32_t CRC4Legic(uint8_t *cmd, size_t size) {
+ crc_t crc;
+ crc_init_ref(&crc, 4, 0x19 >> 1, 0x5, 0, TRUE, TRUE);
+ crc_update2(&crc, 1, 1); /* CMD_READ */
+ crc_update2(&crc, cmd[0], 8);
+ crc_update2(&crc, cmd[1], 8);
+ return reflect(crc_finish(&crc), 4);
+}
+// width=8 poly=0x63, reversed poly=0x8D init=0x55 refin=true refout=true xorout=0x0000 check=0xC6 name="CRC-8/LEGIC"
+// the CRC needs to be reversed before returned.
+uint32_t CRC8Legic(uint8_t *buff, size_t size) {
+ crc_t crc;
+ crc_init_ref(&crc, 8, 0x63, 0x55, 0, TRUE, TRUE);
+ for ( int i = 0; i < size; ++i)
+ crc_update2(&crc, buff[i], 8);
+ return reflect(crc_finish(&crc), 8);
+}
+
+// This CRC-16 is used in Legic Advant systems.
+// width=8 poly=0xB400, reversed poly=0x init=depends refin=true refout=true xorout=0x0000 check= name="CRC-16/LEGIC"
+uint32_t CRC16Legic(uint8_t *buff, size_t size, uint8_t uidcrc) {
+
+ #define CRC16_POLY_LEGIC 0xB400
+ uint16_t initial = reflect(uidcrc, 8);
+ //uint16_t initial = uidcrc;
+ initial |= initial << 8;
+ crc_t crc;
+ crc_init_ref(&crc, 16, CRC16_POLY_LEGIC, initial, 0, TRUE, TRUE);
+ for ( int i=0; i < size; ++i)
+ crc_update(&crc, buff[i], 8);
+ return reflect(crc_finish(&crc), 16);
+}
+
+//w=16 poly=0x3d65 init=0x0000 refin=true refout=true xorout=0xffff check=0xea82 name="CRC-16/DNP"
+uint32_t CRC16_DNP(uint8_t *buff, size_t size) {
+ crc_t crc;
+ crc_init_ref(&crc, 16, 0x3d65, 0, 0xffff, TRUE, TRUE);
+ for ( int i=0; i < size; ++i)
+ crc_update2(&crc, buff[i], 8);