MiLightClient.cpp 7.4 KB

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  1. #include <MiLightClient.h>
  2. #include <MiLightRadioConfig.h>
  3. MiLightRadio* MiLightClient::getRadio(const MiLightRadioType type) {
  4. MiLightRadioStack* stack = NULL;
  5. if (type == RGBW) {
  6. stack = rgbwRadio;
  7. } else if (type == CCT) {
  8. stack = cctRadio;
  9. } else if (type == RGBW_CCT) {
  10. stack = rgbwCctRadio;
  11. }
  12. if (stack != NULL) {
  13. MiLightRadio *radio = stack->getRadio();
  14. if (currentRadio != stack->type) {
  15. radio->configure();
  16. }
  17. currentRadio = stack->type;
  18. return radio;
  19. }
  20. return NULL;
  21. }
  22. void MiLightClient::setResendCount(const unsigned int resendCount) {
  23. this->resendCount = resendCount;
  24. }
  25. uint8_t MiLightClient::nextSequenceNum() {
  26. return sequenceNum++;
  27. }
  28. bool MiLightClient::available(const MiLightRadioType radioType) {
  29. MiLightRadio* radio = getRadio(radioType);
  30. radio->begin();
  31. if (radio == NULL) {
  32. return false;
  33. }
  34. return radio->available();
  35. }
  36. void MiLightClient::read(const MiLightRadioType radioType, uint8_t packet[]) {
  37. MiLightRadio* radio = getRadio(radioType);
  38. if (radio == NULL) {
  39. return;
  40. }
  41. size_t length;
  42. radio->read(packet, length);
  43. }
  44. void MiLightClient::write(const MiLightRadioType radioType,
  45. uint8_t packet[]) {
  46. MiLightRadio* radio = getRadio(radioType);
  47. if (radio == NULL) {
  48. return;
  49. }
  50. for (int i = 0; i < this->resendCount; i++) {
  51. radio->write(packet, MILIGHT_PACKET_LENGTH);
  52. }
  53. }
  54. void MiLightClient::writeRgbw(
  55. const uint16_t deviceId,
  56. const uint8_t color,
  57. const uint8_t brightness,
  58. const uint8_t groupId,
  59. const uint8_t button) {
  60. uint8_t packet[MilightRgbwConfig.packetLength];
  61. size_t packetPtr = 0;
  62. packet[packetPtr++] = RGBW;
  63. packet[packetPtr++] = deviceId >> 8;
  64. packet[packetPtr++] = deviceId & 0xFF;
  65. packet[packetPtr++] = color;
  66. packet[packetPtr++] = (brightness << 3) | (groupId & 0x07);
  67. packet[packetPtr++] = button;
  68. packet[packetPtr++] = nextSequenceNum();
  69. write(RGBW, packet);
  70. }
  71. void MiLightClient::writeCct(const uint16_t deviceId,
  72. const uint8_t groupId,
  73. const uint8_t button) {
  74. uint8_t packet[MilightRgbwConfig.packetLength];
  75. uint8_t sequenceNum = nextSequenceNum();
  76. size_t packetPtr = 0;
  77. packet[packetPtr++] = CCT;
  78. packet[packetPtr++] = deviceId >> 8;
  79. packet[packetPtr++] = deviceId & 0xFF;
  80. packet[packetPtr++] = groupId;
  81. packet[packetPtr++] = button;
  82. packet[packetPtr++] = sequenceNum;
  83. packet[packetPtr++] = sequenceNum;
  84. write(CCT, packet);
  85. }
  86. void MiLightClient::updateColorRaw(const uint16_t deviceId, const uint8_t groupId, const uint16_t color) {
  87. writeRgbw(deviceId, color, 0, groupId, RGBW_COLOR);
  88. }
  89. void MiLightClient::updateHue(const uint16_t deviceId, const uint8_t groupId, const uint16_t hue) {
  90. // Map color as a Hue value in [0, 359] to [0, 255]. The protocol also has
  91. // 0 being roughly magenta (#FF00FF)
  92. const int16_t remappedColor = (hue + 40) % 360;
  93. const uint8_t adjustedColor = round(remappedColor * (255 / 360.0));
  94. writeRgbw(deviceId, adjustedColor, 0, groupId, RGBW_COLOR);
  95. }
  96. void MiLightClient::updateBrightness(const uint16_t deviceId, const uint8_t groupId, const uint8_t brightness) {
  97. // Expect an input value in [0, 100]. Map it down to [0, 25].
  98. const uint8_t adjustedBrightness = round(brightness * (25 / 100.0));
  99. // The actual protocol uses a bizarre range where min is 16, max is 23:
  100. // [16, 15, ..., 0, 31, ..., 23]
  101. const uint8_t packetBrightnessValue = (
  102. ((31 - adjustedBrightness) + 17) % 32
  103. );
  104. writeRgbw(deviceId, 0, packetBrightnessValue, groupId, RGBW_BRIGHTNESS);
  105. }
  106. void MiLightClient::updateStatus(const MiLightRadioType type, const uint16_t deviceId, const uint8_t groupId, MiLightStatus status) {
  107. if (type == RGBW) {
  108. uint8_t button = RGBW_GROUP_1_ON + ((groupId - 1)*2) + status;
  109. writeRgbw(deviceId, 0, 0, groupId, button);
  110. } else {
  111. writeCct(deviceId, groupId, getCctStatusButton(groupId, status));
  112. }
  113. }
  114. void MiLightClient::updateColorWhite(const uint16_t deviceId, const uint8_t groupId) {
  115. uint8_t button = RGBW_GROUP_1_MAX_LEVEL + ((groupId - 1)*2);
  116. pressButton(RGBW, deviceId, groupId, button);
  117. }
  118. void MiLightClient::pair(const MiLightRadioType type, const uint16_t deviceId, const uint8_t groupId) {
  119. updateStatus(type, deviceId, groupId, ON);
  120. }
  121. void MiLightClient::unpair(const MiLightRadioType type, const uint16_t deviceId, const uint8_t groupId) {
  122. if (type == RGBW) {
  123. updateStatus(RGBW, deviceId, groupId, ON);
  124. delay(1);
  125. updateColorWhite(deviceId, groupId);
  126. } else if (type == CCT) {
  127. for (int i = 0; i < 5; i++) {
  128. updateStatus(CCT, deviceId, groupId, ON);
  129. delay(1);
  130. }
  131. }
  132. }
  133. void MiLightClient::pressButton(const MiLightRadioType type, const uint16_t deviceId, const uint8_t groupId, const uint8_t button) {
  134. if (type == RGBW) {
  135. writeRgbw(deviceId, 0, 0, groupId, button);
  136. } else if (type == CCT) {
  137. writeCct(deviceId, groupId, button);
  138. }
  139. }
  140. void MiLightClient::allOn(const MiLightRadioType type, const uint16_t deviceId) {
  141. if (type == RGBW) {
  142. writeRgbw(deviceId, 0, 0, 0, RGBW_ALL_ON);
  143. } else if (type == CCT) {
  144. writeCct(deviceId, 0, CCT_ALL_ON);
  145. }
  146. }
  147. void MiLightClient::allOff(const MiLightRadioType type, const uint16_t deviceId) {
  148. if (type == RGBW) {
  149. writeRgbw(deviceId, 0, 0, 0, RGBW_ALL_OFF);
  150. } else if (type == CCT) {
  151. writeCct(deviceId, 0, CCT_ALL_OFF);
  152. }
  153. }
  154. void MiLightClient::increaseCctBrightness(const uint16_t deviceId, const uint8_t groupId) {
  155. writeCct(deviceId, groupId, CCT_BRIGHTNESS_UP);
  156. }
  157. void MiLightClient::decreaseCctBrightness(const uint16_t deviceId, const uint8_t groupId) {
  158. writeCct(deviceId, groupId, CCT_BRIGHTNESS_DOWN);
  159. }
  160. void MiLightClient::updateCctBrightness(const uint16_t deviceId, const uint8_t groupId, const uint8_t brightness) {
  161. for (int i = 0; i < MILIGHT_CCT_INTERVALS; i++) {
  162. decreaseCctBrightness(deviceId, groupId);
  163. }
  164. for (int i = 0; i < brightness/10; i++) {
  165. increaseCctBrightness(deviceId, groupId);
  166. }
  167. }
  168. void MiLightClient::increaseTemperature(const uint16_t deviceId, const uint8_t groupId) {
  169. writeCct(deviceId, groupId, CCT_TEMPERATURE_UP);
  170. }
  171. void MiLightClient::decreaseTemperature(const uint16_t deviceId, const uint8_t groupId) {
  172. writeCct(deviceId, groupId, CCT_TEMPERATURE_DOWN);
  173. }
  174. void MiLightClient::updateTemperature(const uint16_t deviceId, const uint8_t groupId, const uint8_t temperature) {
  175. for (int i = 0; i < MILIGHT_CCT_INTERVALS; i++) {
  176. decreaseTemperature(deviceId, groupId);
  177. }
  178. for (int i = 0; i < temperature; i++) {
  179. increaseTemperature(deviceId, groupId);
  180. }
  181. }
  182. uint8_t MiLightClient::getCctStatusButton(uint8_t groupId, MiLightStatus status) {
  183. uint8_t button = 0;
  184. if (status == ON) {
  185. switch(groupId) {
  186. case 1:
  187. button = CCT_GROUP_1_ON;
  188. break;
  189. case 2:
  190. button = CCT_GROUP_2_ON;
  191. break;
  192. case 3:
  193. button = CCT_GROUP_3_ON;
  194. break;
  195. case 4:
  196. button = CCT_GROUP_4_ON;
  197. break;
  198. }
  199. } else {
  200. switch(groupId) {
  201. case 1:
  202. button = CCT_GROUP_1_OFF;
  203. break;
  204. case 2:
  205. button = CCT_GROUP_2_OFF;
  206. break;
  207. case 3:
  208. button = CCT_GROUP_3_OFF;
  209. break;
  210. case 4:
  211. button = CCT_GROUP_4_OFF;
  212. break;
  213. }
  214. }
  215. return button;
  216. }
  217. MiLightRadioType MiLightClient::getRadioType(const String& typeName) {
  218. if (typeName.equalsIgnoreCase("rgbw")) {
  219. return RGBW;
  220. } else if (typeName.equalsIgnoreCase("cct")) {
  221. return CCT;
  222. } else {
  223. return UNKNOWN;
  224. }
  225. }