protocol_viking.c 7.2 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205
  1. #include <furi.h>
  2. #include <toolbox/protocols/protocol.h>
  3. #include <toolbox/manchester_decoder.h>
  4. #include <lfrfid/tools/bit_lib.h>
  5. #include "lfrfid_protocols.h"
  6. #define VIKING_CLOCK_PER_BIT (32)
  7. #define VIKING_ENCODED_BIT_SIZE (64)
  8. #define VIKING_ENCODED_BYTE_SIZE (((VIKING_ENCODED_BIT_SIZE) / 8))
  9. #define VIKING_PREAMBLE_BIT_SIZE (24)
  10. #define VIKING_PREAMBLE_BYTE_SIZE (3)
  11. #define VIKING_ENCODED_BYTE_FULL_SIZE (VIKING_ENCODED_BYTE_SIZE + VIKING_PREAMBLE_BYTE_SIZE)
  12. #define VIKING_DECODED_DATA_SIZE 4
  13. #define VIKING_READ_SHORT_TIME (128)
  14. #define VIKING_READ_LONG_TIME (256)
  15. #define VIKING_READ_JITTER_TIME (60)
  16. #define VIKING_READ_SHORT_TIME_LOW (VIKING_READ_SHORT_TIME - VIKING_READ_JITTER_TIME)
  17. #define VIKING_READ_SHORT_TIME_HIGH (VIKING_READ_SHORT_TIME + VIKING_READ_JITTER_TIME)
  18. #define VIKING_READ_LONG_TIME_LOW (VIKING_READ_LONG_TIME - VIKING_READ_JITTER_TIME)
  19. #define VIKING_READ_LONG_TIME_HIGH (VIKING_READ_LONG_TIME + VIKING_READ_JITTER_TIME)
  20. typedef struct {
  21. uint8_t data[VIKING_DECODED_DATA_SIZE];
  22. uint8_t encoded_data[VIKING_ENCODED_BYTE_FULL_SIZE];
  23. uint8_t encoded_data_index;
  24. bool encoded_polarity;
  25. ManchesterState decoder_manchester_state;
  26. } ProtocolViking;
  27. ProtocolViking* protocol_viking_alloc(void) {
  28. ProtocolViking* proto = malloc(sizeof(ProtocolViking));
  29. return (void*)proto;
  30. };
  31. void protocol_viking_free(ProtocolViking* protocol) {
  32. free(protocol);
  33. };
  34. uint8_t* protocol_viking_get_data(ProtocolViking* protocol) {
  35. return protocol->data;
  36. };
  37. static void protocol_viking_decode(ProtocolViking* protocol) {
  38. // Copy Card ID
  39. bit_lib_copy_bits(protocol->data, 0, 32, protocol->encoded_data, 24);
  40. }
  41. static bool protocol_viking_can_be_decoded(ProtocolViking* protocol) {
  42. // check 24 bits preamble
  43. if(bit_lib_get_bits_16(protocol->encoded_data, 0, 16) != 0b1111001000000000) return false;
  44. if(bit_lib_get_bits(protocol->encoded_data, 16, 8) != 0b00000000) return false;
  45. // check next 24 bits preamble
  46. if(bit_lib_get_bits_16(protocol->encoded_data, 64, 16) != 0b1111001000000000) return false;
  47. if(bit_lib_get_bits(protocol->encoded_data, 80, 8) != 0b00000000) return false;
  48. // Checksum
  49. uint32_t checksum = bit_lib_get_bits(protocol->encoded_data, 0, 8) ^
  50. bit_lib_get_bits(protocol->encoded_data, 8, 8) ^
  51. bit_lib_get_bits(protocol->encoded_data, 16, 8) ^
  52. bit_lib_get_bits(protocol->encoded_data, 24, 8) ^
  53. bit_lib_get_bits(protocol->encoded_data, 32, 8) ^
  54. bit_lib_get_bits(protocol->encoded_data, 40, 8) ^
  55. bit_lib_get_bits(protocol->encoded_data, 48, 8) ^
  56. bit_lib_get_bits(protocol->encoded_data, 56, 8) ^ 0xA8;
  57. if(checksum != 0) return false;
  58. return true;
  59. }
  60. void protocol_viking_decoder_start(ProtocolViking* protocol) {
  61. memset(protocol->encoded_data, 0, VIKING_ENCODED_BYTE_FULL_SIZE);
  62. manchester_advance(
  63. protocol->decoder_manchester_state,
  64. ManchesterEventReset,
  65. &protocol->decoder_manchester_state,
  66. NULL);
  67. };
  68. bool protocol_viking_decoder_feed(ProtocolViking* protocol, bool level, uint32_t duration) {
  69. bool result = false;
  70. ManchesterEvent event = ManchesterEventReset;
  71. if(duration > VIKING_READ_SHORT_TIME_LOW && duration < VIKING_READ_SHORT_TIME_HIGH) {
  72. if(!level) {
  73. event = ManchesterEventShortHigh;
  74. } else {
  75. event = ManchesterEventShortLow;
  76. }
  77. } else if(duration > VIKING_READ_LONG_TIME_LOW && duration < VIKING_READ_LONG_TIME_HIGH) {
  78. if(!level) {
  79. event = ManchesterEventLongHigh;
  80. } else {
  81. event = ManchesterEventLongLow;
  82. }
  83. }
  84. if(event != ManchesterEventReset) {
  85. bool data;
  86. bool data_ok = manchester_advance(
  87. protocol->decoder_manchester_state, event, &protocol->decoder_manchester_state, &data);
  88. if(data_ok) {
  89. bit_lib_push_bit(protocol->encoded_data, VIKING_ENCODED_BYTE_FULL_SIZE, data);
  90. if(protocol_viking_can_be_decoded(protocol)) {
  91. protocol_viking_decode(protocol);
  92. result = true;
  93. }
  94. }
  95. }
  96. return result;
  97. };
  98. bool protocol_viking_encoder_start(ProtocolViking* protocol) {
  99. // Preamble
  100. bit_lib_set_bits(protocol->encoded_data, 0, 0b11110010, 8);
  101. bit_lib_set_bits(protocol->encoded_data, 8, 0b00000000, 8);
  102. bit_lib_set_bits(protocol->encoded_data, 16, 0b00000000, 8);
  103. // Card Id
  104. bit_lib_copy_bits(protocol->encoded_data, 24, 32, protocol->data, 0);
  105. // Checksum
  106. uint32_t id = bit_lib_get_bits_32(protocol->data, 0, 32);
  107. uint8_t checksum = ((id >> 24) & 0xFF) ^ ((id >> 16) & 0xFF) ^ ((id >> 8) & 0xFF) ^
  108. (id & 0xFF) ^ 0xF2 ^ 0xA8;
  109. bit_lib_set_bits(protocol->encoded_data, 56, checksum, 8);
  110. return true;
  111. };
  112. LevelDuration protocol_viking_encoder_yield(ProtocolViking* protocol) {
  113. bool level = bit_lib_get_bit(protocol->encoded_data, protocol->encoded_data_index);
  114. uint32_t duration = VIKING_CLOCK_PER_BIT / 2;
  115. if(protocol->encoded_polarity) {
  116. protocol->encoded_polarity = false;
  117. } else {
  118. level = !level;
  119. protocol->encoded_polarity = true;
  120. bit_lib_increment_index(protocol->encoded_data_index, VIKING_ENCODED_BIT_SIZE);
  121. }
  122. return level_duration_make(level, duration);
  123. };
  124. bool protocol_viking_write_data(ProtocolViking* protocol, void* data) {
  125. LFRFIDWriteRequest* request = (LFRFIDWriteRequest*)data;
  126. bool result = false;
  127. // Correct protocol data by redecoding
  128. protocol_viking_encoder_start(protocol);
  129. protocol_viking_decode(protocol);
  130. protocol_viking_encoder_start(protocol);
  131. if(request->write_type == LFRFIDWriteTypeT5577) {
  132. request->t5577.block[0] =
  133. (LFRFID_T5577_MODULATION_MANCHESTER | LFRFID_T5577_BITRATE_RF_32 |
  134. (2 << LFRFID_T5577_MAXBLOCK_SHIFT));
  135. request->t5577.block[1] = bit_lib_get_bits_32(protocol->encoded_data, 0, 32);
  136. request->t5577.block[2] = bit_lib_get_bits_32(protocol->encoded_data, 32, 32);
  137. request->t5577.blocks_to_write = 3;
  138. result = true;
  139. }
  140. return result;
  141. };
  142. void protocol_viking_render_data(ProtocolViking* protocol, string_t result) {
  143. uint32_t id = bit_lib_get_bits_32(protocol->data, 0, 32);
  144. string_printf(result, "ID: %08lX\r\n", id);
  145. };
  146. const ProtocolBase protocol_viking = {
  147. .name = "Viking",
  148. .manufacturer = "Viking",
  149. .data_size = VIKING_DECODED_DATA_SIZE,
  150. .features = LFRFIDFeatureASK,
  151. .validate_count = 3,
  152. .alloc = (ProtocolAlloc)protocol_viking_alloc,
  153. .free = (ProtocolFree)protocol_viking_free,
  154. .get_data = (ProtocolGetData)protocol_viking_get_data,
  155. .decoder =
  156. {
  157. .start = (ProtocolDecoderStart)protocol_viking_decoder_start,
  158. .feed = (ProtocolDecoderFeed)protocol_viking_decoder_feed,
  159. },
  160. .encoder =
  161. {
  162. .start = (ProtocolEncoderStart)protocol_viking_encoder_start,
  163. .yield = (ProtocolEncoderYield)protocol_viking_encoder_yield,
  164. },
  165. .render_data = (ProtocolRenderData)protocol_viking_render_data,
  166. .render_brief_data = (ProtocolRenderData)protocol_viking_render_data,
  167. .write_data = (ProtocolWriteData)protocol_viking_write_data,
  168. };