nero_radio.c 15 KB

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  1. #include "nero_radio.h"
  2. #include "../blocks/const.h"
  3. #include "../blocks/decoder.h"
  4. #include "../blocks/encoder.h"
  5. #include "../blocks/generic.h"
  6. #include "../blocks/math.h"
  7. #define TAG "SubGhzProtocolNeroRadio"
  8. static const SubGhzBlockConst subghz_protocol_nero_radio_const = {
  9. .te_short = 200,
  10. .te_long = 400,
  11. .te_delta = 80,
  12. .min_count_bit_for_found = 56,
  13. };
  14. struct SubGhzProtocolDecoderNeroRadio {
  15. SubGhzProtocolDecoderBase base;
  16. SubGhzBlockDecoder decoder;
  17. SubGhzBlockGeneric generic;
  18. uint16_t header_count;
  19. };
  20. struct SubGhzProtocolEncoderNeroRadio {
  21. SubGhzProtocolEncoderBase base;
  22. SubGhzProtocolBlockEncoder encoder;
  23. SubGhzBlockGeneric generic;
  24. };
  25. typedef enum {
  26. NeroRadioDecoderStepReset = 0,
  27. NeroRadioDecoderStepCheckPreambula,
  28. NeroRadioDecoderStepSaveDuration,
  29. NeroRadioDecoderStepCheckDuration,
  30. } NeroRadioDecoderStep;
  31. const SubGhzProtocolDecoder subghz_protocol_nero_radio_decoder = {
  32. .alloc = subghz_protocol_decoder_nero_radio_alloc,
  33. .free = subghz_protocol_decoder_nero_radio_free,
  34. .feed = subghz_protocol_decoder_nero_radio_feed,
  35. .reset = subghz_protocol_decoder_nero_radio_reset,
  36. .get_hash_data = subghz_protocol_decoder_nero_radio_get_hash_data,
  37. .serialize = subghz_protocol_decoder_nero_radio_serialize,
  38. .deserialize = subghz_protocol_decoder_nero_radio_deserialize,
  39. .get_string = subghz_protocol_decoder_nero_radio_get_string,
  40. };
  41. const SubGhzProtocolEncoder subghz_protocol_nero_radio_encoder = {
  42. .alloc = subghz_protocol_encoder_nero_radio_alloc,
  43. .free = subghz_protocol_encoder_nero_radio_free,
  44. .deserialize = subghz_protocol_encoder_nero_radio_deserialize,
  45. .stop = subghz_protocol_encoder_nero_radio_stop,
  46. .yield = subghz_protocol_encoder_nero_radio_yield,
  47. };
  48. const SubGhzProtocol subghz_protocol_nero_radio = {
  49. .name = SUBGHZ_PROTOCOL_NERO_RADIO_NAME,
  50. .type = SubGhzProtocolTypeStatic,
  51. .flag = SubGhzProtocolFlag_433 | SubGhzProtocolFlag_AM | SubGhzProtocolFlag_Decodable |
  52. SubGhzProtocolFlag_Load | SubGhzProtocolFlag_Save | SubGhzProtocolFlag_Send,
  53. .decoder = &subghz_protocol_nero_radio_decoder,
  54. .encoder = &subghz_protocol_nero_radio_encoder,
  55. };
  56. void* subghz_protocol_encoder_nero_radio_alloc(SubGhzEnvironment* environment) {
  57. UNUSED(environment);
  58. SubGhzProtocolEncoderNeroRadio* instance = malloc(sizeof(SubGhzProtocolEncoderNeroRadio));
  59. instance->base.protocol = &subghz_protocol_nero_radio;
  60. instance->generic.protocol_name = instance->base.protocol->name;
  61. instance->encoder.repeat = 10;
  62. instance->encoder.size_upload = 256;
  63. instance->encoder.upload = malloc(instance->encoder.size_upload * sizeof(LevelDuration));
  64. instance->encoder.is_running = false;
  65. return instance;
  66. }
  67. void subghz_protocol_encoder_nero_radio_free(void* context) {
  68. furi_assert(context);
  69. SubGhzProtocolEncoderNeroRadio* instance = context;
  70. free(instance->encoder.upload);
  71. free(instance);
  72. }
  73. /**
  74. * Generating an upload from data.
  75. * @param instance Pointer to a SubGhzProtocolEncoderNeroRadio instance
  76. * @return true On success
  77. */
  78. static bool
  79. subghz_protocol_encoder_nero_radio_get_upload(SubGhzProtocolEncoderNeroRadio* instance) {
  80. furi_assert(instance);
  81. size_t index = 0;
  82. size_t size_upload = 49 * 2 + 2 + (instance->generic.data_count_bit * 2);
  83. if(size_upload > instance->encoder.size_upload) {
  84. FURI_LOG_E(TAG, "Size upload exceeds allocated encoder buffer.");
  85. return false;
  86. } else {
  87. instance->encoder.size_upload = size_upload;
  88. }
  89. //Send header
  90. for(uint8_t i = 0; i < 49; i++) {
  91. instance->encoder.upload[index++] =
  92. level_duration_make(true, (uint32_t)subghz_protocol_nero_radio_const.te_short);
  93. instance->encoder.upload[index++] =
  94. level_duration_make(false, (uint32_t)subghz_protocol_nero_radio_const.te_short);
  95. }
  96. //Send start bit
  97. instance->encoder.upload[index++] =
  98. level_duration_make(true, (uint32_t)subghz_protocol_nero_radio_const.te_short * 4);
  99. instance->encoder.upload[index++] =
  100. level_duration_make(false, (uint32_t)subghz_protocol_nero_radio_const.te_short);
  101. //Send key data
  102. for(uint8_t i = instance->generic.data_count_bit; i > 1; i--) {
  103. if(bit_read(instance->generic.data, i - 1)) {
  104. //send bit 1
  105. instance->encoder.upload[index++] =
  106. level_duration_make(true, (uint32_t)subghz_protocol_nero_radio_const.te_long);
  107. instance->encoder.upload[index++] =
  108. level_duration_make(false, (uint32_t)subghz_protocol_nero_radio_const.te_short);
  109. } else {
  110. //send bit 0
  111. instance->encoder.upload[index++] =
  112. level_duration_make(true, (uint32_t)subghz_protocol_nero_radio_const.te_short);
  113. instance->encoder.upload[index++] =
  114. level_duration_make(false, (uint32_t)subghz_protocol_nero_radio_const.te_long);
  115. }
  116. }
  117. if(bit_read(instance->generic.data, 0)) {
  118. //send bit 1
  119. instance->encoder.upload[index++] =
  120. level_duration_make(true, (uint32_t)subghz_protocol_nero_radio_const.te_long);
  121. instance->encoder.upload[index++] =
  122. level_duration_make(false, (uint32_t)subghz_protocol_nero_radio_const.te_short * 37);
  123. } else {
  124. //send bit 0
  125. instance->encoder.upload[index++] =
  126. level_duration_make(true, (uint32_t)subghz_protocol_nero_radio_const.te_short);
  127. instance->encoder.upload[index++] =
  128. level_duration_make(false, (uint32_t)subghz_protocol_nero_radio_const.te_short * 37);
  129. }
  130. return true;
  131. }
  132. bool subghz_protocol_encoder_nero_radio_deserialize(void* context, FlipperFormat* flipper_format) {
  133. furi_assert(context);
  134. SubGhzProtocolEncoderNeroRadio* instance = context;
  135. bool res = false;
  136. do {
  137. if(!subghz_block_generic_deserialize(&instance->generic, flipper_format)) {
  138. FURI_LOG_E(TAG, "Deserialize error");
  139. break;
  140. }
  141. if(instance->generic.data_count_bit !=
  142. subghz_protocol_nero_radio_const.min_count_bit_for_found) {
  143. FURI_LOG_E(TAG, "Wrong number of bits in key");
  144. break;
  145. }
  146. //optional parameter parameter
  147. flipper_format_read_uint32(
  148. flipper_format, "Repeat", (uint32_t*)&instance->encoder.repeat, 1);
  149. if(!subghz_protocol_encoder_nero_radio_get_upload(instance)) break;
  150. instance->encoder.is_running = true;
  151. res = true;
  152. } while(false);
  153. return res;
  154. }
  155. void subghz_protocol_encoder_nero_radio_stop(void* context) {
  156. SubGhzProtocolEncoderNeroRadio* instance = context;
  157. instance->encoder.is_running = false;
  158. }
  159. LevelDuration subghz_protocol_encoder_nero_radio_yield(void* context) {
  160. SubGhzProtocolEncoderNeroRadio* instance = context;
  161. if(instance->encoder.repeat == 0 || !instance->encoder.is_running) {
  162. instance->encoder.is_running = false;
  163. return level_duration_reset();
  164. }
  165. LevelDuration ret = instance->encoder.upload[instance->encoder.front];
  166. if(++instance->encoder.front == instance->encoder.size_upload) {
  167. instance->encoder.repeat--;
  168. instance->encoder.front = 0;
  169. }
  170. return ret;
  171. }
  172. void* subghz_protocol_decoder_nero_radio_alloc(SubGhzEnvironment* environment) {
  173. UNUSED(environment);
  174. SubGhzProtocolDecoderNeroRadio* instance = malloc(sizeof(SubGhzProtocolDecoderNeroRadio));
  175. instance->base.protocol = &subghz_protocol_nero_radio;
  176. instance->generic.protocol_name = instance->base.protocol->name;
  177. return instance;
  178. }
  179. void subghz_protocol_decoder_nero_radio_free(void* context) {
  180. furi_assert(context);
  181. SubGhzProtocolDecoderNeroRadio* instance = context;
  182. free(instance);
  183. }
  184. void subghz_protocol_decoder_nero_radio_reset(void* context) {
  185. furi_assert(context);
  186. SubGhzProtocolDecoderNeroRadio* instance = context;
  187. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  188. }
  189. void subghz_protocol_decoder_nero_radio_feed(void* context, bool level, uint32_t duration) {
  190. furi_assert(context);
  191. SubGhzProtocolDecoderNeroRadio* instance = context;
  192. switch(instance->decoder.parser_step) {
  193. case NeroRadioDecoderStepReset:
  194. if((level) && (DURATION_DIFF(duration, subghz_protocol_nero_radio_const.te_short) <
  195. subghz_protocol_nero_radio_const.te_delta)) {
  196. instance->decoder.parser_step = NeroRadioDecoderStepCheckPreambula;
  197. instance->decoder.te_last = duration;
  198. instance->header_count = 0;
  199. }
  200. break;
  201. case NeroRadioDecoderStepCheckPreambula:
  202. if(level) {
  203. if((DURATION_DIFF(duration, subghz_protocol_nero_radio_const.te_short) <
  204. subghz_protocol_nero_radio_const.te_delta) ||
  205. (DURATION_DIFF(duration, subghz_protocol_nero_radio_const.te_short * 4) <
  206. subghz_protocol_nero_radio_const.te_delta)) {
  207. instance->decoder.te_last = duration;
  208. } else {
  209. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  210. }
  211. } else if(
  212. DURATION_DIFF(duration, subghz_protocol_nero_radio_const.te_short) <
  213. subghz_protocol_nero_radio_const.te_delta) {
  214. if(DURATION_DIFF(instance->decoder.te_last, subghz_protocol_nero_radio_const.te_short) <
  215. subghz_protocol_nero_radio_const.te_delta) {
  216. // Found header
  217. instance->header_count++;
  218. break;
  219. } else if(
  220. DURATION_DIFF(
  221. instance->decoder.te_last, subghz_protocol_nero_radio_const.te_short * 4) <
  222. subghz_protocol_nero_radio_const.te_delta) {
  223. // Found start bit
  224. if(instance->header_count > 40) {
  225. instance->decoder.parser_step = NeroRadioDecoderStepSaveDuration;
  226. instance->decoder.decode_data = 0;
  227. instance->decoder.decode_count_bit = 0;
  228. } else {
  229. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  230. }
  231. } else {
  232. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  233. }
  234. } else {
  235. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  236. }
  237. break;
  238. case NeroRadioDecoderStepSaveDuration:
  239. if(level) {
  240. instance->decoder.te_last = duration;
  241. instance->decoder.parser_step = NeroRadioDecoderStepCheckDuration;
  242. } else {
  243. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  244. }
  245. break;
  246. case NeroRadioDecoderStepCheckDuration:
  247. if(!level) {
  248. if(duration >= ((uint32_t)subghz_protocol_nero_radio_const.te_short * 10 +
  249. subghz_protocol_nero_radio_const.te_delta * 2)) {
  250. //Found stop bit
  251. if(DURATION_DIFF(
  252. instance->decoder.te_last, subghz_protocol_nero_radio_const.te_short) <
  253. subghz_protocol_nero_radio_const.te_delta) {
  254. subghz_protocol_blocks_add_bit(&instance->decoder, 0);
  255. } else if(
  256. DURATION_DIFF(
  257. instance->decoder.te_last, subghz_protocol_nero_radio_const.te_long) <
  258. subghz_protocol_nero_radio_const.te_delta) {
  259. subghz_protocol_blocks_add_bit(&instance->decoder, 1);
  260. }
  261. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  262. if(instance->decoder.decode_count_bit ==
  263. subghz_protocol_nero_radio_const.min_count_bit_for_found) {
  264. instance->generic.data = instance->decoder.decode_data;
  265. instance->generic.data_count_bit = instance->decoder.decode_count_bit;
  266. if(instance->base.callback)
  267. instance->base.callback(&instance->base, instance->base.context);
  268. }
  269. instance->decoder.decode_data = 0;
  270. instance->decoder.decode_count_bit = 0;
  271. instance->decoder.parser_step = NeroRadioDecoderStepReset; //-V1048
  272. break;
  273. } else if(
  274. (DURATION_DIFF(
  275. instance->decoder.te_last, subghz_protocol_nero_radio_const.te_short) <
  276. subghz_protocol_nero_radio_const.te_delta) &&
  277. (DURATION_DIFF(duration, subghz_protocol_nero_radio_const.te_long) <
  278. subghz_protocol_nero_radio_const.te_delta)) {
  279. subghz_protocol_blocks_add_bit(&instance->decoder, 0);
  280. instance->decoder.parser_step = NeroRadioDecoderStepSaveDuration;
  281. } else if(
  282. (DURATION_DIFF(
  283. instance->decoder.te_last, subghz_protocol_nero_radio_const.te_long) <
  284. subghz_protocol_nero_radio_const.te_delta) &&
  285. (DURATION_DIFF(duration, subghz_protocol_nero_radio_const.te_short) <
  286. subghz_protocol_nero_radio_const.te_delta)) {
  287. subghz_protocol_blocks_add_bit(&instance->decoder, 1);
  288. instance->decoder.parser_step = NeroRadioDecoderStepSaveDuration;
  289. } else {
  290. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  291. }
  292. } else {
  293. instance->decoder.parser_step = NeroRadioDecoderStepReset;
  294. }
  295. break;
  296. }
  297. }
  298. uint8_t subghz_protocol_decoder_nero_radio_get_hash_data(void* context) {
  299. furi_assert(context);
  300. SubGhzProtocolDecoderNeroRadio* instance = context;
  301. return subghz_protocol_blocks_get_hash_data(
  302. &instance->decoder, (instance->decoder.decode_count_bit / 8) + 1);
  303. }
  304. bool subghz_protocol_decoder_nero_radio_serialize(
  305. void* context,
  306. FlipperFormat* flipper_format,
  307. SubGhzRadioPreset* preset) {
  308. furi_assert(context);
  309. SubGhzProtocolDecoderNeroRadio* instance = context;
  310. return subghz_block_generic_serialize(&instance->generic, flipper_format, preset);
  311. }
  312. bool subghz_protocol_decoder_nero_radio_deserialize(void* context, FlipperFormat* flipper_format) {
  313. furi_assert(context);
  314. SubGhzProtocolDecoderNeroRadio* instance = context;
  315. bool ret = false;
  316. do {
  317. if(!subghz_block_generic_deserialize(&instance->generic, flipper_format)) {
  318. break;
  319. }
  320. if(instance->generic.data_count_bit !=
  321. subghz_protocol_nero_radio_const.min_count_bit_for_found) {
  322. FURI_LOG_E(TAG, "Wrong number of bits in key");
  323. break;
  324. }
  325. ret = true;
  326. } while(false);
  327. return ret;
  328. }
  329. void subghz_protocol_decoder_nero_radio_get_string(void* context, FuriString* output) {
  330. furi_assert(context);
  331. SubGhzProtocolDecoderNeroRadio* instance = context;
  332. uint32_t code_found_hi = instance->generic.data >> 32;
  333. uint32_t code_found_lo = instance->generic.data & 0x00000000ffffffff;
  334. uint64_t code_found_reverse = subghz_protocol_blocks_reverse_key(
  335. instance->generic.data, instance->generic.data_count_bit);
  336. uint32_t code_found_reverse_hi = code_found_reverse >> 32;
  337. uint32_t code_found_reverse_lo = code_found_reverse & 0x00000000ffffffff;
  338. furi_string_cat_printf(
  339. output,
  340. "%s %dbit\r\n"
  341. "Key:0x%lX%08lX\r\n"
  342. "Yek:0x%lX%08lX\r\n",
  343. instance->generic.protocol_name,
  344. instance->generic.data_count_bit,
  345. code_found_hi,
  346. code_found_lo,
  347. code_found_reverse_hi,
  348. code_found_reverse_lo);
  349. }