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#define SP_US(_str,_a) Serial.print(_str); Serial.print(" took: "); Serial.print(_a); Serial.println("µs") |
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#define SP_US(_str,_a) Serial.print(_str); Serial.print(" took: "); Serial.print(_a); Serial.println("µs") |
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#define TIMEIF_US(_str,_f, _l) t=micros(); _f; t=micros()-t; if(t > _l) { SP_US(_str, t); } |
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#define TIMEIF_US(_str,_f, _l) t=micros(); _f; t=micros()-t; if(t > _l) { SP_US(_str, t); } |
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uint8_t softstart_led(uint8_t led, uint16_t startval, uint16_t stopval, uint8_t factor){ |
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static uint8_t lastled = 255; |
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static uint8_t current_pwm = 0; |
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if(led != lastled){ |
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pwmController.setChannelPWM(led, startval); |
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lastled = led; |
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current_pwm = startval; |
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return 1; |
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} |
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if(current_pwm == stopval){ |
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return 0; |
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} |
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else if(startval > stopval){ |
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current_pwm -= 1; |
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} |
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else { |
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current_pwm += 1; |
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} |
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pwmController.setChannelPWM(led, current_pwm*factor); |
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return 1; |
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} |
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#define LEDCOUNT 13 |
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void ledsequence(uint8_t direction, uint8_t onoff, uint8_t factor){ |
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static int8_t led = 0; |
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static uint8_t brightness = 0; |
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static uint8_t lastbrightness = 0; |
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static uint8_t finish = 1; |
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static uint32_t status = 0; |
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uint32_t status_build = 0; |
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status_build |= direction << 16; |
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status_build |= onoff << 8; |
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status_build |= factor; |
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if(status_build != status){ // check if any parameter changed |
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finish = 0; // set state unfinished -> start action |
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if(direction) led = 0; // reset led counter depending of direction |
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else led = LEDCOUNT-1; |
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if(onoff) brightness = 127; // set brightness value depending of on/off |
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else brightness = 0; |
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status = status_build; // set parameter memory |
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Serial.println("----Status Changed!"); |
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} |
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if(!finish){ // finish == 0 -> action pending |
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if(!softstart_led(led,lastbrightness, brightness, factor)){ |
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Serial.print("one LED finished, new set led: "); |
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Serial.print(led); |
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Serial.print(" last: "); |
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Serial.print(lastbrightness); |
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Serial.print(" curr: "); |
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Serial.println(brightness); |
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if(direction){ |
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led++; |
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if(led >= LEDCOUNT) { |
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finish = 1; |
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lastbrightness = brightness; |
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} |
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} |
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else{ |
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led--; |
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if(led < 0){ |
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lastbrightness = brightness; |
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finish = 1; |
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} |
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} |
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} |
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} |
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} |
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void loop() { |
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void loop() { |
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<<<<<<< HEAD |
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static uint32_t dimmtimer = 0; |
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/* static uint8_t led = 0; |
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static uint16_t brightness = 127; |
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static uint16_t lastbrightness = 0; |
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if(millis() - dimmtimer > 2){ |
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if(softstart_led(led, lastbrightness, brightness)){ |
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// do nothing |
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} |
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else{ |
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if(led < LEDCOUNT-1) led++; |
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else { |
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led = 0; |
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uint16_t mem = lastbrightness; |
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lastbrightness = brightness; |
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brightness = mem; |
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} |
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softstart_led((led), lastbrightness, brightness); |
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} |
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if(led >= LEDCOUNT){ |
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//led = 0; |
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//uint16_t mem = lastbrightness; |
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//lastbrightness = brightness; |
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// brightness = mem; |
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} |
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dimmtimer = millis(); |
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}*/ |
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static uint8_t direction = 1; |
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static uint8_t onoff = 1; |
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|
if(millis() - dimmtimer > 2){ |
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ledsequence(direction, onoff, 4); |
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} |
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if(millis() > 25000) onoff = 0; |
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|
TIMEIF_US("OTA", ArduinoOTA.handle(), 20000); |
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|
TIMEIF_US("HTTP", server.handleClient(), 20000); |
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|
======= |
|
|
TIMEIF_US("OTA", ArduinoOTA.handle(), 1000); |
|
|
TIMEIF_US("OTA", ArduinoOTA.handle(), 1000); |
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TIMEIF_US("HTTP", server.handleClient(), 1000); |
|
|
TIMEIF_US("HTTP", server.handleClient(), 1000); |
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|
>>>>>>> d0b824963bd79fc436b4b312e49b48081860d8d4 |
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|
} |
|
|
} |