toshiba_ir.c 6.8 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248
  1. #include "toshiba_ir.h"
  2. #include <stdint.h>
  3. #include <stdio.h>
  4. #include "esp_log.h"
  5. #include "rxTimer.h"
  6. #include <string.h>
  7. #include "config.h"
  8. uint8_t xorBytes(const uint8_t * const start, const uint16_t length);
  9. /**
  10. * @Analys of Toshiba IR Rx:
  11. * 0 1 2 3 4 5 6 7 8
  12. * F2 0D 03 FC 01 D0 A3 00 72 30 Grader
  13. * F2 0D 03 FC 01 90 A3 00 32 26 Grader
  14. * F2 0D 03 FC 01 40 A3 00 E2 21 Grader
  15. * F2 0D 03 FC 01 30 A3 00 92 20 Grader
  16. * F2 0D 03 FC 01 20 A3 00 82 19 Grader
  17. * F2 0D 03 FC 01 10 A3 00 B2 18
  18. * F2 0D 03 FC 01 00 A3 00 A2 17
  19. *
  20. * F2 0D 03 FC 01 D0 03 00 D2 Auto Fan 0000 0 (0 is Auto, 2-6 is the speed, 6 is Max)
  21. * F2 0D 03 FC 01 D0 43 00 92 1 0100 2
  22. * 2 0110 3
  23. * F2 0D 03 FC 01 D0 83 00 52 3 1000 4
  24. * 4 1010 5
  25. * F2 0D 03 FC 01 D0 C3 00 12 5 1100 6
  26. *
  27. * F2 0D 03 FC 01 60 83 00 E2 ON 1000 0011 (3 is ON, 7 is OFF)
  28. * F2 0D 03 FC 01 60 87 00 E6 OFF 1000 0111
  29. *
  30. */
  31. /*****
  32. * Panasonic decode 19 bytes
  33. *
  34. * 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9
  35. * 30 deg 4004072000123C61 C560007007000091 000054 0011 1100 - 11100 1C 28
  36. * 24 deg 4004072000120C61 C560007007000091 000078 0000 1100 - 10000 10 16
  37. * 23 deg 4004072000127461 C560007007000091 000038 0111 0100 - 01110 E 14
  38. * 22 deg 4004072000123461 C560007007000091 000058 0011 0100 - 01100 C 12
  39. * 21.5 400407200012D461 C560007007000091 000098 1101 0100 - 01011 B 11
  40. * 21 deg 4004072000125461 C560007007000091 000018 0101 0100 - 01010 A 10
  41. * 16 deg 4004072000120461 C560007007000091 000070 0000 0100 - 00000 0 00
  42. * 0220E00400482086 A306000EE0000089 00000E 0010 0010 17 grader
  43. *
  44. *
  45. * Fan in byte ([8] >> 4)
  46. * 10 = Auto
  47. * 3 = F1
  48. * 4 = F2
  49. * 5 = F3
  50. * 6 = F4
  51. * 7 = F5
  52. *
  53. * Power in data->raw[5]&0x01
  54. * 0 = OFF
  55. * 1 = ON
  56. */
  57. uint8_t data[kPanasonicNumberOfBytes]; // Temp data during rx
  58. uint8_t dataTransfer[kPanasonicNumberOfBytes]; // Send as pointer to receiver
  59. enum
  60. {
  61. UNKNOWN,
  62. STARTER,
  63. T0,
  64. T1,
  65. DONE
  66. };
  67. static uint8_t rx_state = UNKNOWN;
  68. static uint32_t rx_numBits;
  69. void Toshiba_ir_ResetDecoder()
  70. {
  71. //ESP_LOGI("T", "Reset decoder");
  72. rx_numBits = 0;
  73. rx_state = UNKNOWN;
  74. memset(data,0,kPanasonicNumberOfBytes);
  75. }
  76. static void addBit(uint8_t value)
  77. {
  78. if( value == 1 ) {
  79. const uint8_t byteNo = rx_numBits / 8;
  80. const uint8_t shiftBits = rx_numBits % 8;
  81. //ESP_LOGI("BIT RX:","%u %u", byteNo, shiftBits);
  82. data[byteNo] |= 1u << (7-shiftBits);
  83. }
  84. rx_numBits++;
  85. }
  86. #define HDR_MARK_MIN (kPanasonicAcHdrMark-200)
  87. #define HDR_MARK_MAX (kPanasonicAcHdrMark+200)
  88. #define HDR_SPACE_MIN (kPanasonicAcHdrSpace-200)
  89. #define HDR_SPACE_MAX (kPanasonicAcHdrSpace+200)
  90. #define T0_PULSE_MIN (kPanasonicAcBitMark-100)
  91. #define T0_PULSE_MAX (kPanasonicAcBitMark+100)
  92. #define SHORT_PULSE_MIN (kPanasonicAcZeroSpace-100)
  93. #define SHORT_PULSE_MAX (kPanasonicAcZeroSpace+100)
  94. #define LONG_PULSE_MIN (kPanasonicAcOneSpace-100)
  95. #define LONG_PULSE_MAX (kPanasonicAcOneSpace+100)
  96. #define GAP_PULSE_MIN (kPanasonicAcUsualGap-200)
  97. #define GAP_PULSE_MAX (kPanasonicAcUsualGap+200)
  98. // Pulse decoder
  99. static int32_t rx_decode(uint32_t width)
  100. {
  101. switch (rx_state) {
  102. case UNKNOWN: // Start of frame A
  103. if ( HDR_MARK_MIN <= width && width <= HDR_MARK_MAX )
  104. {
  105. rx_state = STARTER;
  106. ESP_LOGI("T", "STARTER A");
  107. }
  108. else
  109. {
  110. ESP_LOGI("T", "Err STARTER A");
  111. return -1; // error, reset
  112. }
  113. break;
  114. case STARTER: // Start of frame B
  115. if ( HDR_SPACE_MIN <= width && width <= HDR_SPACE_MAX )
  116. {
  117. rx_state = T0;
  118. ESP_LOGI("T", "STARTER B");
  119. }
  120. else
  121. {
  122. ESP_LOGI("T", "Err STARTER B");
  123. return -1; // error, reset
  124. }
  125. break;
  126. case T0: // First half of pulse
  127. if(rx_numBits == kPanasonicNumberOfBits)
  128. { // end of frame
  129. ESP_LOGI("T", "END OF FRAME");
  130. rx_state = DONE;
  131. return 1;
  132. }
  133. else if( T0_PULSE_MIN <= width && width <= T0_PULSE_MAX )
  134. {
  135. rx_state = T1;
  136. //ESP_LOGI("T", "T0");
  137. }
  138. else
  139. {
  140. ESP_LOGI("T", "Err T0");
  141. return -1; // error, reset
  142. }
  143. break;
  144. case T1:
  145. if( SHORT_PULSE_MIN <= width && width <= SHORT_PULSE_MAX )
  146. {
  147. addBit(0);
  148. //ESP_LOGI("T", "Short %u",rx_numBits);
  149. }
  150. else if( LONG_PULSE_MIN <= width && width <= LONG_PULSE_MAX )
  151. {
  152. addBit(1);
  153. //ESP_LOGI("T", "Long %u", rx_numBits);
  154. }
  155. else if( GAP_PULSE_MIN <= width && width <= GAP_PULSE_MAX )
  156. {
  157. ESP_LOGI("T", "GAP-Pulse. Restart");
  158. rx_numBits = 0;
  159. rx_state = UNKNOWN;
  160. break;
  161. }
  162. else
  163. {
  164. ESP_LOGI("T", "Err T1");
  165. return -1; // error, reset
  166. }
  167. rx_state = T0;
  168. break;
  169. }
  170. return 0;
  171. }
  172. uint8_t* nextPulseToshiba_ir(uint32_t width)
  173. {
  174. uint8_t* retVal = NULL;
  175. if (width > 0)
  176. {
  177. if (rx_state != DONE)
  178. {
  179. // Send the pulse to the decoder
  180. switch (rx_decode(width))
  181. {
  182. case -1:
  183. Toshiba_ir_ResetDecoder();
  184. break;
  185. case 1:
  186. rx_state = DONE;
  187. // Check checksum
  188. //if( xorBytes(data,8) == data[8] ) {
  189. memcpy(dataTransfer,data,kPanasonicNumberOfBytes);
  190. Toshiba_ir_ResetDecoder();
  191. retVal = dataTransfer;
  192. /*}
  193. else {
  194. ESP_LOGE("TOSHIBA", "WRONG CHKSUM");
  195. Toshiba_ir_ResetDecoder();
  196. }*/
  197. break;
  198. }
  199. }
  200. }
  201. return retVal;
  202. }
  203. /// Calculate a rolling XOR of all the bytes of an array.
  204. /// @param[in] start A ptr to the start of the byte array to calculate over.
  205. /// @param[in] length How many bytes to use in the calculation.
  206. /// @return The 8-bit calculated result of all the bytes and init value.
  207. /// Copied from: https://github.com/crankyoldgit/IRremoteESP8266/blob/master/src/IRutils.cpp
  208. uint8_t xorBytes(const uint8_t * const start, const uint16_t length) {
  209. uint8_t checksum = 0;
  210. const uint8_t *ptr;
  211. for (ptr = start; ptr - start < length; ptr++) checksum ^= *ptr;
  212. return checksum;
  213. }