204 lines
4.5 KiB
C++
204 lines
4.5 KiB
C++
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#include "pins_arduino.h"
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#include "WProgram.h"
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void setDmxChannel(byte channelID, byte value);
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void shiftDmxOut(int pin, int theByte);
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void processDmx();
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void setup();
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void loop();
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int sig = 5; // signal
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int value = 0;
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int value1 = 0;
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int value2 = 0;
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int value3 = 0;
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int i=0;
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byte checksum;
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byte id=0;
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int valueadd = 3;
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byte buffer[4];
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byte color[256];
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byte dmxChannel[64];
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void setDmxChannel(byte channelID, byte value) {
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if (channelID < 64)
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dmxChannel[channelID] = value;
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}
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/* Sends a DMX byte out on a pin. Assumes a 16 MHz clock.
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* Disables interrupts, which will disrupt the millis() function if used
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* too frequently. */
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void shiftDmxOut(int pin, int theByte)
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{
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int port_to_output[] = {
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NOT_A_PORT,
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NOT_A_PORT,
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_SFR_IO_ADDR(PORTB),
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_SFR_IO_ADDR(PORTC),
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_SFR_IO_ADDR(PORTD)
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};
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int portNumber = port_to_output[digitalPinToPort(pin)];
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int pinMask = digitalPinToBitMask(pin);
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// the first thing we do is to write te pin to high
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// it will be the mark between bytes. It may be also
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// high from before
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_SFR_BYTE(_SFR_IO8(portNumber)) |= pinMask;
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delayMicroseconds(10);
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// disable interrupts, otherwise the timer 0 overflow interrupt that
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// tracks milliseconds will make us delay longer than we want.
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cli();
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// DMX starts with a start-bit that must always be zero
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_SFR_BYTE(_SFR_IO8(portNumber)) &= ~pinMask;
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// we need a delay of 4us (then one bit is transfered)
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// this seems more stable then using delayMicroseconds
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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for (int i = 0; i < 8; i++)
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{
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if (theByte & 01)
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{
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_SFR_BYTE(_SFR_IO8(portNumber)) |= pinMask;
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}
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else
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{
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_SFR_BYTE(_SFR_IO8(portNumber)) &= ~pinMask;
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}
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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asm("nop\n nop\n nop\n nop\n nop\n nop\n nop\n nop\n");
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theByte >>= 1;
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}
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// the last thing we do is to write the pin to high
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// it will be the mark between bytes. (this break is have to be between 8 us and 1 sec)
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_SFR_BYTE(_SFR_IO8(portNumber)) |= pinMask;
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// reenable interrupts.
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sei();
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}
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void processDmx() {
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/***** sending the dmx signal *****/
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// sending the break (the break can be between 88us and 1sec)
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digitalWrite(sig, LOW);
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delay(10);
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dmxChannel[0] = 0;
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for (int count = 0; count <= 64; count++)
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{
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if (count < 64)
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shiftDmxOut(sig, dmxChannel[count]);
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else
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shiftDmxOut(sig,0);
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}
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/***** sending the dmx signal end *****/
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}
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void setup()
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{
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Serial.begin(57600);
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delay(100);
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pinMode(sig, OUTPUT);
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}
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void loop()
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{
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if (Serial.available()) {
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value = Serial.read();
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if (value == 0xD9)
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{
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while (!Serial.available());
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id=Serial.read();
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i=0;
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while (i<4) {
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if (Serial.available()) {
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buffer[i]= Serial.read();
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i=i+1;
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}
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}
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checksum = (buffer[0]+buffer[1]+buffer[2]);
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if ( buffer[3] == checksum ) //CHECKSUM (8 bits menos significativos)
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{
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if (id==0)
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{
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color[0] = buffer[0];
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color[1] = buffer[1];
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color[2] = buffer[2];
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}
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else
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{
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color[id*3+1] = buffer[0];
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color[id*3+2] = buffer[1];
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color[id*3+3] = buffer[2];
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}
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}
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else
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{
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Serial.print(id ,BYTE);
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Serial.print(buffer[0] ,BYTE);
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Serial.print(buffer[1] ,BYTE);
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Serial.print(buffer[2] ,BYTE);
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Serial.print(buffer[3] ,BYTE);
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Serial.print(checksum ,BYTE);
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}
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}
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}
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if (id==0) for (i=0; i<=2; i++) setDmxChannel(i,color[i]);
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else for (i=id*3+1; i<=id*3+3; i++) setDmxChannel(i,color[i]);
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/*setDmxChannel(8, value2);
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setDmxChannel(9, value3);
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setDmxChannel(16,value1); //id 5
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setDmxChannel(17, value2);
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setDmxChannel(18, value3);*/
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processDmx();
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}
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int main(void)
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{
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init();
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setup();
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for (;;)
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loop();
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return 0;
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}
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