Next universe overflow and Art-Net DMX start address (#2607)
* Improve calculation LEDs in next universe * Fix Art-Net DMX start address
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@ -105,6 +105,13 @@ void handleE131Packet(e131_packet_t* p, IPAddress clientIP, byte protocol){
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realtimeIP = clientIP;
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byte wChannel = 0;
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uint16_t totalLen = strip.getLengthTotal();
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uint16_t availDMXLen = dmxChannels - DMXAddress + 1;
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uint16_t dataOffset = DMXAddress;
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// DMX data in Art-Net packet starts at index 0, for E1.31 at index 1
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if (protocol == P_ARTNET && dataOffset > 0) {
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dataOffset--;
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}
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switch (DMXMode) {
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case DMX_MODE_DISABLED:
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@ -113,55 +120,55 @@ void handleE131Packet(e131_packet_t* p, IPAddress clientIP, byte protocol){
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case DMX_MODE_SINGLE_RGB: // RGB only
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if (uni != e131Universe) return;
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if (dmxChannels-DMXAddress+1 < 3) return;
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if (availDMXLen < 3) return;
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realtimeLock(realtimeTimeoutMs, mde);
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if (realtimeOverride) return;
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wChannel = (dmxChannels-DMXAddress+1 > 3) ? e131_data[DMXAddress+3] : 0;
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wChannel = (availDMXLen > 3) ? e131_data[dataOffset+3] : 0;
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for (uint16_t i = 0; i < totalLen; i++)
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setRealtimePixel(i, e131_data[DMXAddress+0], e131_data[DMXAddress+1], e131_data[DMXAddress+2], wChannel);
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setRealtimePixel(i, e131_data[dataOffset+0], e131_data[dataOffset+1], e131_data[dataOffset+2], wChannel);
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break;
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case DMX_MODE_SINGLE_DRGB: // Dimmer + RGB
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if (uni != e131Universe) return;
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if (dmxChannels-DMXAddress+1 < 4) return;
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if (availDMXLen < 4) return;
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realtimeLock(realtimeTimeoutMs, mde);
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if (realtimeOverride) return;
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wChannel = (dmxChannels-DMXAddress+1 > 4) ? e131_data[DMXAddress+4] : 0;
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if (DMXOldDimmer != e131_data[DMXAddress+0]) {
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DMXOldDimmer = e131_data[DMXAddress+0];
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bri = e131_data[DMXAddress+0];
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wChannel = (availDMXLen > 4) ? e131_data[dataOffset+4] : 0;
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if (DMXOldDimmer != e131_data[dataOffset+0]) {
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DMXOldDimmer = e131_data[dataOffset+0];
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bri = e131_data[dataOffset+0];
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strip.setBrightness(bri, true);
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}
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for (uint16_t i = 0; i < totalLen; i++)
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setRealtimePixel(i, e131_data[DMXAddress+1], e131_data[DMXAddress+2], e131_data[DMXAddress+3], wChannel);
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setRealtimePixel(i, e131_data[dataOffset+1], e131_data[dataOffset+2], e131_data[dataOffset+3], wChannel);
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break;
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case DMX_MODE_EFFECT: // Length 1: Apply Preset ID, length 11-13: apply effect config
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if (uni != e131Universe) return;
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if (dmxChannels-DMXAddress+1 < 11) {
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if (dmxChannels-DMXAddress+1 > 1) return;
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applyPreset(e131_data[DMXAddress+0], CALL_MODE_NOTIFICATION);
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if (availDMXLen < 11) {
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if (availDMXLen > 1) return;
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applyPreset(e131_data[dataOffset+0], CALL_MODE_NOTIFICATION);
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return;
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}
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if (DMXOldDimmer != e131_data[DMXAddress+0]) {
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DMXOldDimmer = e131_data[DMXAddress+0];
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bri = e131_data[DMXAddress+0];
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if (DMXOldDimmer != e131_data[dataOffset+0]) {
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DMXOldDimmer = e131_data[dataOffset+0];
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bri = e131_data[dataOffset+0];
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}
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if (e131_data[DMXAddress+1] < MODE_COUNT)
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effectCurrent = e131_data[DMXAddress+ 1];
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effectSpeed = e131_data[DMXAddress+ 2]; // flickers
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effectIntensity = e131_data[DMXAddress+ 3];
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effectPalette = e131_data[DMXAddress+ 4];
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col[0] = e131_data[DMXAddress+ 5];
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col[1] = e131_data[DMXAddress+ 6];
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col[2] = e131_data[DMXAddress+ 7];
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colSec[0] = e131_data[DMXAddress+ 8];
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colSec[1] = e131_data[DMXAddress+ 9];
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colSec[2] = e131_data[DMXAddress+10];
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if (dmxChannels-DMXAddress+1 > 11)
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if (e131_data[dataOffset+1] < MODE_COUNT)
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effectCurrent = e131_data[dataOffset+ 1];
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effectSpeed = e131_data[dataOffset+ 2]; // flickers
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effectIntensity = e131_data[dataOffset+ 3];
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effectPalette = e131_data[dataOffset+ 4];
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col[0] = e131_data[dataOffset+ 5];
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col[1] = e131_data[dataOffset+ 6];
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col[2] = e131_data[dataOffset+ 7];
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colSec[0] = e131_data[dataOffset+ 8];
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colSec[1] = e131_data[dataOffset+ 9];
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colSec[2] = e131_data[dataOffset+10];
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if (availDMXLen > 11)
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{
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col[3] = e131_data[DMXAddress+11]; //white
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colSec[3] = e131_data[DMXAddress+12];
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col[3] = e131_data[dataOffset+11]; //white
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colSec[3] = e131_data[dataOffset+12];
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}
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transitionDelayTemp = 0; // act fast
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colorUpdated(CALL_MODE_NOTIFICATION); // don't send UDP
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@ -177,22 +184,26 @@ void handleE131Packet(e131_packet_t* p, IPAddress clientIP, byte protocol){
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const uint16_t dmxChannelsPerLed = is4Chan ? 4 : 3;
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const uint16_t ledsPerUniverse = is4Chan ? MAX_4_CH_LEDS_PER_UNIVERSE : MAX_3_CH_LEDS_PER_UNIVERSE;
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if (realtimeOverride) return;
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uint16_t previousLeds, dmxOffset;
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uint16_t previousLeds, dmxOffset, ledsTotal;
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if (previousUniverses == 0) {
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if (dmxChannels-DMXAddress < 1) return;
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dmxOffset = DMXAddress;
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if (availDMXLen < 1) return;
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dmxOffset = dataOffset;
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previousLeds = 0;
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// First DMX address is dimmer in DMX_MODE_MULTIPLE_DRGB mode.
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if (DMXMode == DMX_MODE_MULTIPLE_DRGB) {
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strip.setBrightness(e131_data[dmxOffset++], true);
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ledsTotal = (availDMXLen - 1) / dmxChannelsPerLed;
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} else {
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ledsTotal = availDMXLen / dmxChannelsPerLed;
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}
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} else {
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// All subsequent universes start at the first channel.
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dmxOffset = (protocol == P_ARTNET) ? 0 : 1;
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uint16_t ledsInFirstUniverse = (MAX_CHANNELS_PER_UNIVERSE - DMXAddress) / dmxChannelsPerLed;
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uint16_t dimmerOffset = (DMXMode == DMX_MODE_MULTIPLE_DRGB) ? 1 : 0;
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uint16_t ledsInFirstUniverse = ((MAX_CHANNELS_PER_UNIVERSE - DMXAddress + 1) - dimmerOffset) / dmxChannelsPerLed;
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previousLeds = ledsInFirstUniverse + (previousUniverses - 1) * ledsPerUniverse;
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ledsTotal = previousLeds + (dmxChannels / dmxChannelsPerLed);
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}
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uint16_t ledsTotal = previousLeds + (dmxChannels - dmxOffset +1) / dmxChannelsPerLed;
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if (!is4Chan) {
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for (uint16_t i = previousLeds; i < ledsTotal; i++) {
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setRealtimePixel(i, e131_data[dmxOffset], e131_data[dmxOffset+1], e131_data[dmxOffset+2], 0);
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