2021-10-18 01:54:19 +03:00
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#include "subghz_protocol_keeloq_common.h"
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#include <furi.h>
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#include <m-string.h>
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#include <m-array.h>
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/** Simple Learning Encrypt
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* @param data - 0xBSSSCCCC, B(4bit) key, S(10bit) serial&0x3FF, C(16bit) counter
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* @param key - manufacture (64bit)
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* @return keelog encrypt data
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*/
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inline uint32_t subghz_protocol_keeloq_common_encrypt(const uint32_t data, const uint64_t key) {
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uint32_t x = data, r;
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for (r = 0; r < 528; r++)
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x = (x>>1)^((bit(x,0)^bit(x,16)^(uint32_t)bit(key,r&63)^bit(KEELOQ_NLF,g5(x,1,9,20,26,31)))<<31);
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return x;
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}
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/** Simple Learning Decrypt
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* @param data - keelog encrypt data
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* @param key - manufacture (64bit)
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* @return 0xBSSSCCCC, B(4bit) key, S(10bit) serial&0x3FF, C(16bit) counter
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*/
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inline uint32_t subghz_protocol_keeloq_common_decrypt(const uint32_t data, const uint64_t key) {
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uint32_t x = data, r;
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for (r = 0; r < 528; r++)
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x = (x<<1)^bit(x,31)^bit(x,15)^(uint32_t)bit(key,(15-r)&63)^bit(KEELOQ_NLF,g5(x,0,8,19,25,30));
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return x;
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}
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/** Normal Learning
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* @param data - serial number (28bit)
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* @param key - manufacture (64bit)
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* @return manufacture for this serial number (64bit)
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*/
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inline uint64_t subghz_protocol_keeloq_common_normal_learning(uint32_t data, const uint64_t key){
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uint32_t k1,k2;
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data&=0x0FFFFFFF;
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data|=0x20000000;
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k1=subghz_protocol_keeloq_common_decrypt(data, key);
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data&=0x0FFFFFFF;
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data|=0x60000000;
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k2=subghz_protocol_keeloq_common_decrypt(data, key);
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return ((uint64_t)k2<<32)| k1; // key - shifrovanoya
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}
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