knx/examples/knx-demo/knx-demo.ino

90 lines
2.1 KiB
C++

#include <knx.h>
// create named references for easy access to group objects
#define goCurrent knx.getGroupObject(0)
#define goMax knx.getGroupObject(1)
#define goMin knx.getGroupObject(2)
#define goReset knx.getGroupObject(3)
float currentValue = 0;
float maxValue = 0;
float minValue = RAND_MAX;
long lastsend = 0;
void measureTemp()
{
long now = millis();
if ((now - lastsend) < 2000)
return;
lastsend = now;
int r = rand();
currentValue = (r * 1.0) / (RAND_MAX * 1.0);
currentValue *= 100 * 100;
// write new value to groupobject
goCurrent.objectWriteFloatDpt9(currentValue);
if (currentValue > maxValue)
{
maxValue = currentValue;
goMax.objectWriteFloatDpt9(maxValue);
}
if (currentValue < minValue)
{
minValue = currentValue;
goMin.objectWriteFloatDpt9(minValue);
}
}
// callback from reset-GO
void resetCallback(GroupObject& go)
{
if (go.objectReadBool())
{
maxValue = 0;
minValue = 10000;
}
}
void setup()
{
SerialDBG.begin(115200);
randomSeed(millis());
// read adress table, association table, groupobject table and parameters from eeprom
knx.readMemory();
// print values of parameters if device is already configured
if (knx.configured())
{
// register callback for reset GO
goReset.callback(resetCallback);
SerialDBG.print("Timeout: "); SerialDBG.println(knx.paramByte(0));
SerialDBG.print("Zykl. senden: "); SerialDBG.println(knx.paramByte(1));
SerialDBG.print("Min/Max senden: "); SerialDBG.println(knx.paramByte(2));
SerialDBG.print("Aenderung senden: "); SerialDBG.println(knx.paramByte(3));
SerialDBG.print("Abgleich: "); SerialDBG.println(knx.paramByte(4));
}
// start the framework. Will get wifi first.
knx.start();
}
void loop()
{
// don't delay here to much. Otherwise you might lose packages or mess up the timing with ETS
knx.loop();
// only run the application code if the device was configured with ETS
if (!knx.configured())
return;
measureTemp();
}