Fix for usermod sornt& rotary encoder.
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e43cdc6674
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6463fbee32
@ -60,9 +60,16 @@ class UsermodTemperature : public Usermod {
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if (oneWire->reset()) { // if reset() fails there are no OneWire devices
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oneWire->skip(); // skip ROM
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oneWire->write(0xBE); // read (temperature) from EEPROM
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delayMicroseconds(250);
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for (byte i=0; i < 9; i++) data[i] = oneWire->read(); // first 2 bytes contain temperature
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if (OneWire::crc8(data,8) != data[8]) DEBUG_PRINTLN(F("CRC error reading temperature."));
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delayMicroseconds(150);
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oneWire->read_bytes(data, 9); // first 2 bytes contain temperature
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#ifdef WLED_DEBUG
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if (OneWire::crc8(data,8) != data[8]) {
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DEBUG_PRINTLN(F("CRC error reading temperature."));
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for (byte i=0; i < 9; i++) DEBUG_PRINTF("0x%02X ", data[i]);
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DEBUG_PRINT(F(" => "));
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DEBUG_PRINTF("0x%02X\n", OneWire::crc8(data,8));
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}
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#endif
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switch(sensorFound) {
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case 0x10: // DS18S20 has 9-bit precision
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result = (data[1] << 8) | data[0];
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@ -116,6 +123,7 @@ class UsermodTemperature : public Usermod {
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case 0x42: // DS28EA00
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DEBUG_PRINTLN(F("Sensor found."));
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sensorFound = deviceAddress[0];
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DEBUG_PRINTF("0x%02X\n", sensorFound);
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return true;
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}
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}
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@ -162,7 +162,6 @@ public:
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break;
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}
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}
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re_sortModes(palettes_qstrings, palettes_alpha_indexes, strip.getPaletteCount(), skipPaletteCount);
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}
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@ -189,6 +188,7 @@ public:
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bool complete = false;
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for (size_t i = 0; i < strlen_P(json); i++) {
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singleJsonSymbol = pgm_read_byte_near(json + i);
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if (singleJsonSymbol == '\0') break;
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switch (singleJsonSymbol) {
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case '"':
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insideQuotes = !insideQuotes;
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@ -200,18 +200,14 @@ public:
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case '[':
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break;
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case ']':
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complete = true;
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if (!insideQuotes) complete = true;
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break;
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case ',':
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modeIndex++;
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if (!insideQuotes) modeIndex++;
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default:
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if (!insideQuotes) {
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break;
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}
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}
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if (complete) {
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break;
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if (!insideQuotes) break;
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}
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if (complete) break;
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}
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return modeStrings;
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}
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@ -97,6 +97,7 @@ public:
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*/
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void setup()
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{
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DEBUG_PRINTLN(F("Usermod Rotary Encoder init."));
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PinManagerPinType pins[3] = { { pinA, false }, { pinB, false }, { pinC, false } };
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if (!pinManager.allocateMultiplePins(pins, 3, PinOwner::UM_RotaryEncoderUI)) {
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// BUG: configuring this usermod with conflicting pins
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@ -443,14 +444,11 @@ public:
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DEBUG_PRINTLN(F(": No config found. (Using defaults.)"));
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return false;
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}
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int8_t newDTpin = pinA;
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int8_t newCLKpin = pinB;
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int8_t newSWpin = pinC;
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int8_t newDTpin = top[FPSTR(_DT_pin)] | pinA;
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int8_t newCLKpin = top[FPSTR(_CLK_pin)] | pinB;
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int8_t newSWpin = top[FPSTR(_SW_pin)] | pinC;
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enabled = top[FPSTR(_enabled)] | enabled;
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newDTpin = top[FPSTR(_DT_pin)] | newDTpin;
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newCLKpin = top[FPSTR(_CLK_pin)] | newCLKpin;
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newSWpin = top[FPSTR(_SW_pin)] | newSWpin;
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DEBUG_PRINT(FPSTR(_name));
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if (!initDone) {
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@ -102,6 +102,7 @@ public:
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*/
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void setup()
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{
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DEBUG_PRINTLN(F("Usermod Rotary Encoder init."));
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PinManagerPinType pins[3] = { { pinA, false }, { pinB, false }, { pinC, false } };
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if (!pinManager.allocateMultiplePins(pins, 3, PinOwner::UM_RotaryEncoderUI)) {
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// BUG: configuring this usermod with conflicting pins
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@ -514,14 +515,11 @@ public:
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DEBUG_PRINTLN(F(": No config found. (Using defaults.)"));
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return false;
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}
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int8_t newDTpin = pinA;
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int8_t newCLKpin = pinB;
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int8_t newSWpin = pinC;
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int8_t newDTpin = top[FPSTR(_DT_pin)] | pinA;
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int8_t newCLKpin = top[FPSTR(_CLK_pin)] | pinB;
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int8_t newSWpin = top[FPSTR(_SW_pin)] | pinC;
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enabled = top[FPSTR(_enabled)] | enabled;
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newDTpin = top[FPSTR(_DT_pin)] | newDTpin;
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newCLKpin = top[FPSTR(_CLK_pin)] | newCLKpin;
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newSWpin = top[FPSTR(_SW_pin)] | newSWpin;
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DEBUG_PRINT(FPSTR(_name));
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if (!initDone) {
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