kiss.c 6.9 KB

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  1. /*
  2. * tnc_kiss.c
  3. *
  4. * Created on: Feb 26, 2019
  5. * Author: curiousmuch
  6. */
  7. // basic set of functions at this moment which decodes KISS
  8. #include "freertos/FreeRTOS.h"
  9. #include "freertos/task.h"
  10. #include "freertos/ringbuf.h"
  11. #include "esp_log.h"
  12. #include <stdio.h>
  13. #include "cc1200.h"
  14. #include "kiss.h"
  15. #include "bt_spp.h"
  16. #include "fcs_calc.h"
  17. kiss_buffer_t rx_buffer;
  18. kiss_buffer_t tx_buffer;
  19. tnc_settings_t tnc_settings;
  20. void static kiss_clear_tx_buffer(void)
  21. {
  22. ESP_LOGD(TNC_TAG, "TNC buffer cleared.");
  23. tx_buffer.index = 0;
  24. tx_buffer.status = FRAME_INCOMPLETE;
  25. }
  26. void static kiss_append_tx_buffer(uint8_t chr)
  27. {
  28. ESP_LOGD(TNC_TAG, "Appending %x to KISS TX buffer.", chr);
  29. // ERROR - Packet Buffer Overflow
  30. if (tx_buffer.index >= tx_buffer.max_len)
  31. {
  32. ESP_LOGE(TNC_TAG, "TNC TX buffer overflow");
  33. kiss_clear_tx_buffer();
  34. }
  35. tx_buffer.buf[(tx_buffer.index)] = chr;
  36. tx_buffer.index = tx_buffer.index + 1;
  37. }
  38. void kiss_transmit(uint8_t type, uint8_t *data, uint32_t len)
  39. {
  40. uint32_t i;
  41. // TODO: Cancel TX to BLE TX Buffer if overflow is detected
  42. kiss_clear_tx_buffer();
  43. kiss_append_tx_buffer(KISS_FEND);
  44. kiss_append_tx_buffer(type);
  45. // cycle
  46. for (i=0; i<(len); i++)
  47. {
  48. if (data[i] == KISS_FEND)
  49. {
  50. kiss_append_tx_buffer(KISS_FESC);
  51. kiss_append_tx_buffer(KISS_TFEND);
  52. }
  53. else if (data[i] == KISS_FESC)
  54. {
  55. kiss_append_tx_buffer(KISS_FESC);
  56. kiss_append_tx_buffer(KISS_TFESC);
  57. }
  58. else
  59. {
  60. kiss_append_tx_buffer(data[i]);
  61. }
  62. }
  63. kiss_append_tx_buffer(KISS_FEND);
  64. bt_spp_tx(tx_buffer.buf, tx_buffer.index);
  65. // send via BLE or feed to TX buffer
  66. }
  67. void kiss_clear_buffer(void)
  68. {
  69. ESP_LOGD(TNC_TAG, "TNC buffer cleared.");
  70. rx_buffer.index = 0;
  71. }
  72. void kiss_append_buffer(uint8_t chr)
  73. {
  74. ESP_LOGD(TNC_TAG, "Appending %x to TNC buffer.", chr);
  75. // ERROR - Packet Buffer Overflow
  76. if (rx_buffer.index >= rx_buffer.max_len)
  77. {
  78. ESP_LOGE(TNC_TAG, "TNC buffer overflow");
  79. kiss_clear_buffer();
  80. }
  81. rx_buffer.buf[(rx_buffer.index)] = chr;
  82. rx_buffer.index = rx_buffer.index + 1;
  83. }
  84. extern RingbufHandle_t radio_tx_buf;
  85. // Frame Format
  86. // [ Command Byte ][ Data ]
  87. void kiss_process_frame(void)
  88. {
  89. uint8_t data_byte, tnc_number;
  90. data_byte = rx_buffer.buf[0];
  91. tnc_number = (data_byte >> 4) & 0x0F; // TODO: Have KISS code respect TNC number
  92. switch( data_byte ) {
  93. case KISS_DATAFRAME: {
  94. ESP_LOGI(TNC_TAG, "Received Data Frame - Length %d", (rx_buffer.index));
  95. // unblock AX.25 code to process code
  96. uint32_t fcs = fcs_calc(&rx_buffer.buf[1], rx_buffer.index-1);
  97. rx_buffer.buf[rx_buffer.index] = fcs & 0xFF;
  98. rx_buffer.buf[rx_buffer.index+1] = fcs>>8 & 0xFF;
  99. xRingbufferSend(radio_tx_buf, &rx_buffer.buf[1], ((rx_buffer.index+1)*sizeof(uint8_t)), 10/portTICK_PERIOD_MS);
  100. ESP_LOG_BUFFER_HEXDUMP(TNC_TAG, &rx_buffer.buf[1], rx_buffer.index+1, ESP_LOG_INFO);
  101. //cc1200_radio_APRSTXPacket(rx_buffer.buf, (rx_buffer.index+2), tnc_settings.tx_delay, tnc_settings.tx_tail);
  102. break;
  103. }
  104. case KISS_CMD_TXDELAY: {
  105. ESP_LOGI(TNC_TAG, "Updated TX Delay");
  106. tnc_settings.tx_delay = rx_buffer.buf[1];
  107. break;
  108. }
  109. case KISS_CMD_P: {
  110. ESP_LOGI(TNC_TAG, "Update Persistence");
  111. tnc_settings.persistence = rx_buffer.buf[1];
  112. break;
  113. }
  114. case KISS_CMD_SLOTTIME: {
  115. ESP_LOGI(TNC_TAG, "Updated Slottime");
  116. tnc_settings.slot_time = rx_buffer.buf[1];
  117. break;
  118. }
  119. case KISS_CMD_TXTAIL: {
  120. ESP_LOGI(TNC_TAG, "Updated TX Tail");
  121. tnc_settings.tx_tail= rx_buffer.buf[1];
  122. break;
  123. }
  124. case KISS_CMD_FULLDUPLEX: {
  125. ESP_LOGI(TNC_TAG, "Updated Full/Half Duplex Setting");
  126. tnc_settings.full_duplex = rx_buffer.buf[1];
  127. break;
  128. }
  129. // case KISS_CMD_SETHARDWARE: {
  130. // break;
  131. // }
  132. // case KISS_CMD_RETURN: {
  133. // tnc_settings.tx_delay = rx_buffer.buff_ptr[1];
  134. // break;
  135. // }
  136. default: {
  137. // error
  138. break;
  139. }
  140. }
  141. kiss_clear_buffer();
  142. return;
  143. }
  144. void kiss_set_tnc_paramters(tnc_settings_t s)
  145. {
  146. tnc_settings.tx_delay = s.tx_delay;
  147. tnc_settings.persistence = s.persistence;
  148. tnc_settings.slot_time = s.slot_time;
  149. tnc_settings.tx_tail = s.tx_tail;
  150. tnc_settings.full_duplex = s.full_duplex;
  151. // tnc_settings.tnc_number = s.tnc_number;
  152. }
  153. void kiss_set_tx_cb(tnc_cb_t tx_cb)
  154. {
  155. tnc_settings.tx_callback = tx_cb;
  156. }
  157. void kiss_set_rx_cb(tnc_cb_t rx_cb)
  158. {
  159. tnc_settings.rx_callback = rx_cb;
  160. }
  161. // TNC needs the ability to RX KISS frame, decode it, schedule it, and then send out via APRS or Arrow-Net
  162. // TNC needs the ability to switch to RX mode,
  163. void kiss_init(void)
  164. {
  165. // TODO: make frame buffer dynamic
  166. rx_buffer.max_len = FRAME_BUFFER_SIZE;
  167. tx_buffer.max_len = FRAME_BUFFER_SIZE;
  168. // TODO: Store / retrieve default TNC settings from flash?
  169. // set default TNC settings
  170. tnc_settings.tx_delay = 5;
  171. tnc_settings.persistence = 63;
  172. tnc_settings.slot_time = 10;
  173. tnc_settings.tx_tail = 1;
  174. tnc_settings.full_duplex = 0;
  175. // setup TNC task with queue
  176. }
  177. // Decode KISS-TNC data from SPP Interface and combine until there is
  178. // is a valid packet. Pass valid packet / frame to AX.25 engine.
  179. // Data Flow:
  180. // (1) SPP interface hands over data array which is runs a state machine to decode the KISS Frame
  181. // (2) Decoded information is uploaded thrown into a buffer
  182. // (3) When frame is complete the state machine will copy or indicate to another task to dump the buffer
  183. // If the frame is not completed, the state machine will wait until more data is provided by the SPP interface.
  184. // If the frame is corrupted or the buffer fills, the frame will be dumped and the error must be logged.
  185. KISS_STATE_t kiss_state = FRAME_END;
  186. void kiss_receive(uint8_t* data, uint16_t len)
  187. {
  188. uint32_t i;
  189. uint8_t chr;
  190. for (i=0; i<len; i++)
  191. {
  192. chr = data[i];
  193. switch(kiss_state) {
  194. case ESC_MODE: {
  195. if (chr == KISS_TFEND)
  196. {
  197. kiss_append_buffer(KISS_FEND); // append FEND to frame
  198. kiss_state = FRAME_ASS; // return to assembly
  199. }
  200. else if (chr == KISS_TFESC)
  201. {
  202. kiss_append_buffer(KISS_FESC); // append FESC to frame
  203. kiss_state = FRAME_ASS; // return to assembly
  204. }
  205. else if (chr == KISS_FEND)
  206. {
  207. kiss_process_frame(); // process frame
  208. kiss_state = FRAME_END; // end frame assembly
  209. }
  210. else
  211. {
  212. // log error
  213. kiss_append_buffer(chr); // append chr to frame
  214. kiss_state = FRAME_ASS; // return to assembly
  215. }
  216. break;
  217. }
  218. case FRAME_END: {
  219. if (chr != KISS_FEND)
  220. {
  221. kiss_append_buffer(chr); // append chr to frame
  222. kiss_state = FRAME_ASS; // return to assembly
  223. }
  224. else
  225. {
  226. kiss_state = FRAME_END; // stay in frame end
  227. }
  228. break;
  229. }
  230. case FRAME_ASS: {
  231. if (chr == KISS_FESC)
  232. {
  233. kiss_state = ESC_MODE;
  234. }
  235. else if (chr == KISS_FEND)
  236. {
  237. kiss_process_frame(); // process frame
  238. kiss_state = FRAME_END; // end frame assembly
  239. }
  240. else
  241. {
  242. kiss_append_buffer(chr); // append chr to frame
  243. kiss_state = FRAME_ASS; // continue frame assembly
  244. }
  245. break;
  246. default: {
  247. ESP_LOGE(TNC_TAG, "TNC FSM Error");
  248. }
  249. }
  250. }
  251. }
  252. }