RgbwPacketFormatter.cpp 4.4 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143
  1. #include <RgbwPacketFormatter.h>
  2. #include <Units.h>
  3. #define STATUS_COMMAND(status, groupId) ( RGBW_GROUP_1_ON + ((groupId - 1)*2) + status )
  4. #define GROUP_FOR_STATUS_COMMAND(buttonId) ( (buttonId - 1) / 2 )
  5. bool RgbwPacketFormatter::canHandle(const uint8_t *packet, const size_t len) {
  6. return len == packetLength && (packet[0] & 0xF0) == RGBW_PROTOCOL_ID_BYTE;
  7. }
  8. void RgbwPacketFormatter::initializePacket(uint8_t* packet) {
  9. size_t packetPtr = 0;
  10. packet[packetPtr++] = RGBW_PROTOCOL_ID_BYTE;
  11. packet[packetPtr++] = deviceId >> 8;
  12. packet[packetPtr++] = deviceId & 0xFF;
  13. packet[packetPtr++] = 0;
  14. packet[packetPtr++] = (groupId & 0x07);
  15. packet[packetPtr++] = 0;
  16. packet[packetPtr++] = sequenceNum++;
  17. }
  18. void RgbwPacketFormatter::unpair() {
  19. PacketFormatter::updateStatus(ON);
  20. updateColorWhite();
  21. }
  22. void RgbwPacketFormatter::modeSpeedDown() {
  23. command(RGBW_SPEED_DOWN, 0);
  24. }
  25. void RgbwPacketFormatter::modeSpeedUp() {
  26. command(RGBW_SPEED_UP, 0);
  27. }
  28. void RgbwPacketFormatter::nextMode() {
  29. lastMode = (lastMode + 1) % RGBW_NUM_MODES;
  30. updateMode(lastMode);
  31. }
  32. void RgbwPacketFormatter::previousMode() {
  33. lastMode = (lastMode - 1) % RGBW_NUM_MODES;
  34. updateMode(lastMode);
  35. }
  36. void RgbwPacketFormatter::updateMode(uint8_t mode) {
  37. command(RGBW_DISCO_MODE, 0);
  38. currentPacket[0] = RGBW_PROTOCOL_ID_BYTE | mode;
  39. }
  40. void RgbwPacketFormatter::updateStatus(MiLightStatus status, uint8_t groupId) {
  41. command(STATUS_COMMAND(status, groupId), 0);
  42. }
  43. void RgbwPacketFormatter::updateBrightness(uint8_t value) {
  44. // Expect an input value in [0, 100]. Map it down to [0, 25].
  45. const uint8_t adjustedBrightness = Units::rescale(value, 25, 100);
  46. // The actual protocol uses a bizarre range where min is 16, max is 23:
  47. // [16, 15, ..., 0, 31, ..., 23]
  48. const uint8_t packetBrightnessValue = (
  49. ((31 - adjustedBrightness) + 17) % 32
  50. );
  51. command(RGBW_BRIGHTNESS, 0);
  52. currentPacket[RGBW_BRIGHTNESS_GROUP_INDEX] |= (packetBrightnessValue << 3);
  53. }
  54. void RgbwPacketFormatter::command(uint8_t command, uint8_t arg) {
  55. pushPacket();
  56. if (held) {
  57. command |= 0x80;
  58. }
  59. currentPacket[RGBW_COMMAND_INDEX] = command;
  60. }
  61. void RgbwPacketFormatter::updateHue(uint16_t value) {
  62. const int16_t remappedColor = (value + 40) % 360;
  63. updateColorRaw(Units::rescale(remappedColor, 255, 360));
  64. }
  65. void RgbwPacketFormatter::updateColorRaw(uint8_t value) {
  66. command(RGBW_COLOR, 0);
  67. currentPacket[RGBW_COLOR_INDEX] = value;
  68. }
  69. void RgbwPacketFormatter::updateColorWhite() {
  70. uint8_t button = RGBW_GROUP_1_MAX_LEVEL + ((groupId - 1)*2);
  71. command(button, 0);
  72. }
  73. void RgbwPacketFormatter::enableNightMode() {
  74. uint8_t button = STATUS_COMMAND(OFF, groupId);
  75. command(button, 0);
  76. command(button | 0x10, 0);
  77. }
  78. BulbId RgbwPacketFormatter::parsePacket(const uint8_t* packet, JsonObject& result, GroupStateStore* stateStore) {
  79. uint8_t command = packet[RGBW_COMMAND_INDEX] & 0x7F;
  80. BulbId bulbId(
  81. (packet[1] << 8) | packet[2],
  82. packet[RGBW_BRIGHTNESS_GROUP_INDEX] & 0x7,
  83. REMOTE_TYPE_RGBW
  84. );
  85. if (command >= RGBW_ALL_ON && command <= RGBW_GROUP_4_OFF) {
  86. result["state"] = (command % 2) ? "ON" : "OFF";
  87. // Determine group ID from button ID for on/off. The remote's state is from
  88. // the last packet sent, not the current one, and that can be wrong for
  89. // on/off commands.
  90. bulbId.groupId = GROUP_FOR_STATUS_COMMAND(command);
  91. } else if (command >= RGBW_ALL_MAX_LEVEL && command <= RGBW_GROUP_4_MAX_LEVEL) {
  92. result["command"] = "white_mode";
  93. bulbId.groupId = GROUP_FOR_STATUS_COMMAND(command & 0xF);
  94. } else if (command == RGBW_BRIGHTNESS) {
  95. uint8_t brightness = 31;
  96. brightness -= packet[RGBW_BRIGHTNESS_GROUP_INDEX] >> 3;
  97. brightness += 17;
  98. brightness %= 32;
  99. result["brightness"] = Units::rescale<uint8_t, uint8_t>(brightness, 255, 25);
  100. } else if (command == RGBW_COLOR) {
  101. uint16_t remappedColor = Units::rescale<uint16_t, uint16_t>(packet[RGBW_COLOR_INDEX], 360.0, 255.0);
  102. remappedColor = (remappedColor + 320) % 360;
  103. result["hue"] = remappedColor;
  104. } else if (command == RGBW_SPEED_DOWN) {
  105. result["command"] = "mode_speed_down";
  106. } else if (command == RGBW_SPEED_UP) {
  107. result["command"] = "mode_speed_up";
  108. } else if (command == RGBW_DISCO_MODE) {
  109. result["mode"] = packet[0] & ~RGBW_PROTOCOL_ID_BYTE;
  110. } else {
  111. result["button_id"] = command;
  112. }
  113. return bulbId;
  114. }
  115. void RgbwPacketFormatter::format(uint8_t const* packet, char* buffer) {
  116. PacketFormatter::formatV1Packet(packet, buffer);
  117. }