subghz_protocol_nero_sketch.c 9.7 KB

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  1. #include "subghz_protocol_nero_sketch.h"
  2. struct SubGhzProtocolNeroSketch {
  3. SubGhzProtocolCommon common;
  4. };
  5. SubGhzProtocolNeroSketch* subghz_protocol_nero_sketch_alloc(void) {
  6. SubGhzProtocolNeroSketch* instance = furi_alloc(sizeof(SubGhzProtocolNeroSketch));
  7. instance->common.name = "Nero Sketch";
  8. instance->common.code_min_count_bit_for_found = 40;
  9. instance->common.te_shot = 330;
  10. instance->common.te_long = 660;
  11. instance->common.te_delta = 150;
  12. instance->common.to_string = (SubGhzProtocolCommonToStr)subghz_protocol_nero_sketch_to_str;
  13. instance->common.to_save_string =
  14. (SubGhzProtocolCommonGetStrSave)subghz_protocol_nero_sketch_to_save_str;
  15. instance->common.to_load_protocol=
  16. (SubGhzProtocolCommonLoad)subghz_protocol_nero_sketch_to_load_protocol;
  17. return instance;
  18. }
  19. void subghz_protocol_nero_sketch_free(SubGhzProtocolNeroSketch* instance) {
  20. furi_assert(instance);
  21. free(instance);
  22. }
  23. /** Send bit
  24. *
  25. * @param instance - SubGhzProtocolNeroSketch instance
  26. * @param bit - bit
  27. */
  28. void subghz_protocol_nero_sketch_send_bit(SubGhzProtocolNeroSketch* instance, uint8_t bit) {
  29. if (bit) {
  30. //send bit 1
  31. SUBGHZ_TX_PIN_HIGTH();
  32. delay_us(instance->common.te_long);
  33. SUBGHZ_TX_PIN_LOW();
  34. delay_us(instance->common.te_shot);
  35. } else {
  36. //send bit 0
  37. SUBGHZ_TX_PIN_HIGTH();
  38. delay_us(instance->common.te_shot);
  39. SUBGHZ_TX_PIN_LOW();
  40. delay_us(instance->common.te_long);
  41. }
  42. }
  43. void subghz_protocol_nero_sketch_send_key(SubGhzProtocolNeroSketch* instance, uint64_t key, uint8_t bit,uint8_t repeat) {
  44. while (repeat--) {
  45. //Send header
  46. for(uint8_t i = 0; i < 47; i++){
  47. SUBGHZ_TX_PIN_HIGTH();
  48. delay_us(instance->common.te_shot);
  49. SUBGHZ_TX_PIN_LOW();
  50. delay_us(instance->common.te_shot);
  51. }
  52. //Send start bit
  53. SUBGHZ_TX_PIN_HIGTH();
  54. delay_us(instance->common.te_shot*4);
  55. SUBGHZ_TX_PIN_LOW();
  56. delay_us(instance->common.te_shot);
  57. //Send key data
  58. for (uint8_t i = bit; i > 0; i--) {
  59. subghz_protocol_nero_sketch_send_bit(instance, bit_read(key, i - 1));
  60. }
  61. //Send stop bit
  62. SUBGHZ_TX_PIN_HIGTH();
  63. delay_us(instance->common.te_shot*3);
  64. SUBGHZ_TX_PIN_LOW();
  65. delay_us(instance->common.te_shot);
  66. }
  67. }
  68. void subghz_protocol_nero_sketch_reset(SubGhzProtocolNeroSketch* instance) {
  69. instance->common.parser_step = 0;
  70. }
  71. /** Analysis of received data
  72. *
  73. * @param instance SubGhzProtocolNeroSketch instance
  74. */
  75. // void subghz_protocol_nero_sketch_check_remote_controller(SubGhzProtocolNeroSketch* instance) {
  76. // //пока не понятно с серийником, но код статический
  77. // // uint64_t code_found_reverse = subghz_protocol_common_reverse_key(instance->common.code_found, instance->common.code_count_bit);
  78. // // uint32_t code_fix = code_found_reverse & 0xFFFFFFFF;
  79. // // //uint32_t code_hop = (code_found_reverse >> 24) & 0xFFFFF;
  80. // // instance->common.serial = code_fix & 0xFFFFFFF;
  81. // // instance->common.btn = (code_fix >> 28) & 0x0F;
  82. // //if (instance->common.callback) instance->common.callback((SubGhzProtocolCommon*)instance, instance->common.context);
  83. // }
  84. void subghz_protocol_nero_sketch_parse(SubGhzProtocolNeroSketch* instance, bool level, uint32_t duration) {
  85. switch (instance->common.parser_step) {
  86. case 0:
  87. if ((level)
  88. && (DURATION_DIFF(duration,instance->common.te_shot)< instance->common.te_delta)) {
  89. instance->common.parser_step = 1;
  90. instance->common.te_last = duration;
  91. instance->common.header_count = 0;
  92. } else {
  93. instance->common.parser_step = 0;
  94. }
  95. break;
  96. case 1:
  97. if (level){
  98. if((DURATION_DIFF(duration,instance->common.te_shot)< instance->common.te_delta )
  99. || (DURATION_DIFF(duration,instance->common.te_shot*4)< instance->common.te_delta)) {
  100. instance->common.te_last = duration;
  101. } else {
  102. instance->common.parser_step = 0;
  103. }
  104. } else if(DURATION_DIFF(duration,instance->common.te_shot)< instance->common.te_delta){
  105. if(DURATION_DIFF(instance->common.te_last,instance->common.te_shot)< instance->common.te_delta){
  106. // Found header
  107. instance->common.header_count++;
  108. break;
  109. }else if(DURATION_DIFF(instance->common.te_last,instance->common.te_shot*4)< instance->common.te_delta){
  110. // Found start bit
  111. if(instance->common.header_count>40) {
  112. instance->common.parser_step = 2;
  113. instance->common.code_found = 0;
  114. instance->common.code_count_bit = 0;
  115. }else {
  116. instance->common.parser_step = 0;
  117. }
  118. } else {
  119. instance->common.parser_step = 0;
  120. }
  121. } else {
  122. instance->common.parser_step = 0;
  123. }
  124. break;
  125. case 2:
  126. if (level) {
  127. if (duration >= (instance->common.te_shot * 2 + instance->common.te_delta*2)) {
  128. //Found stop bit
  129. instance->common.parser_step = 0;
  130. if (instance->common.code_count_bit>= instance->common.code_min_count_bit_for_found) {
  131. instance->common.code_last_found = instance->common.code_found;
  132. instance->common.code_last_count_bit = instance->common.code_count_bit;
  133. if (instance->common.callback) instance->common.callback((SubGhzProtocolCommon*)instance, instance->common.context);
  134. }
  135. instance->common.code_found = 0;
  136. instance->common.code_count_bit = 0;
  137. break;
  138. } else {
  139. instance->common.te_last = duration;
  140. instance->common.parser_step = 3;
  141. }
  142. }else{
  143. instance->common.parser_step = 0;
  144. }
  145. break;
  146. case 3:
  147. if(!level){
  148. if ((DURATION_DIFF(instance->common.te_last,instance->common.te_shot)< instance->common.te_delta)
  149. && (DURATION_DIFF(duration,instance->common.te_long)< instance->common.te_delta)) {
  150. subghz_protocol_common_add_bit(&instance->common, 0);
  151. instance->common.parser_step = 2;
  152. } else if ((DURATION_DIFF(instance->common.te_last,instance->common.te_long )< instance->common.te_delta)
  153. && (DURATION_DIFF(duration,instance->common.te_shot)< instance->common.te_delta)) {
  154. subghz_protocol_common_add_bit(&instance->common, 1);
  155. instance->common.parser_step = 2;
  156. } else {
  157. instance->common.parser_step = 0;
  158. }
  159. } else {
  160. instance->common.parser_step = 0;
  161. }
  162. break;
  163. }
  164. }
  165. void subghz_protocol_nero_sketch_to_str(SubGhzProtocolNeroSketch* instance, string_t output) {
  166. uint32_t code_found_hi = instance->common.code_last_found >> 32;
  167. uint32_t code_found_lo = instance->common.code_last_found & 0x00000000ffffffff;
  168. uint64_t code_found_reverse = subghz_protocol_common_reverse_key(instance->common.code_last_found, instance->common.code_last_count_bit);
  169. uint32_t code_found_reverse_hi = code_found_reverse>>32;
  170. uint32_t code_found_reverse_lo = code_found_reverse&0x00000000ffffffff;
  171. string_cat_printf(output,
  172. "%s, %d Bit\r\n"
  173. " KEY:0x%lX%08lX\r\n"
  174. " YEK:0x%lX%08lX\r\n",
  175. instance->common.name,
  176. instance->common.code_last_count_bit,
  177. code_found_hi,
  178. code_found_lo,
  179. code_found_reverse_hi,
  180. code_found_reverse_lo
  181. );
  182. }
  183. void subghz_protocol_nero_sketch_to_save_str(SubGhzProtocolNeroSketch* instance, string_t output) {
  184. uint32_t code_found_hi = instance->common.code_last_found >> 32;
  185. uint32_t code_found_lo = instance->common.code_last_found & 0x00000000ffffffff;
  186. string_printf(
  187. output,
  188. "Protocol: %s\n"
  189. "Bit: %d\n"
  190. "Key: %08lX%08lX\n",
  191. instance->common.name,
  192. instance->common.code_last_count_bit,
  193. code_found_hi,
  194. code_found_lo
  195. );
  196. }
  197. bool subghz_protocol_nero_sketch_to_load_protocol(FileWorker* file_worker, SubGhzProtocolNeroSketch* instance){
  198. bool loaded = false;
  199. string_t temp_str;
  200. string_init(temp_str);
  201. int res = 0;
  202. int data = 0;
  203. do {
  204. // Read and parse bit data from 2nd line
  205. if(!file_worker_read_until(file_worker, temp_str, '\n')) {
  206. break;
  207. }
  208. res = sscanf(string_get_cstr(temp_str), "Bit: %d\n", &data);
  209. if(res != 1) {
  210. break;
  211. }
  212. instance->common.code_last_count_bit = (uint8_t)data;
  213. // Read and parse key data from 3nd line
  214. if(!file_worker_read_until(file_worker, temp_str, '\n')) {
  215. break;
  216. }
  217. uint32_t temp_key_hi = 0;
  218. uint32_t temp_key_lo = 0;
  219. res = sscanf(string_get_cstr(temp_str), "Key: %08lX%08lX\n", &temp_key_hi, &temp_key_lo);
  220. if(res != 2) {
  221. break;
  222. }
  223. instance->common.code_last_found = (uint64_t)temp_key_hi<<32 | temp_key_lo;
  224. loaded = true;
  225. } while(0);
  226. string_clear(temp_str);
  227. return loaded;
  228. }