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Merge branch 'nano-revision-2.0' into nano-revision-2.1

nano-6
Stephan Richter 10 months ago
parent
commit
70425f8d22
  1. 1
      Software/Sender/Sender.ino
  2. 77
      Software/TempSender/TempSender.ino

1
Software/Sender/Sender.ino

@ -94,7 +94,6 @@ void send(int btn, long duration){
void loop(){ void loop(){
unsigned long now = micros(); unsigned long now = micros();
boolean pause = true;
for (int i=0;i<8;i++){ for (int i=0;i<8;i++){
// we emulate a capacitor: // we emulate a capacitor:
// when the button is pressed, it slowly loads, if the button is released, it unloads. // when the button is pressed, it slowly loads, if the button is released, it unloads.

77
Software/TempSender/TempSender.ino

@ -4,23 +4,27 @@
* If a button is pressed, a corresponding flag is set. * If a button is pressed, a corresponding flag is set.
* The main loop checks for the state of those flags and * The main loop checks for the state of those flags and
* sends a message on the RS485 bus whenever a flag is set. * sends a message on the RS485 bus whenever a flag is set.
*
* Additionally, the temperature is read from a DHT22 sensor once per minute
*/ */
// include the library code: // include the library code:
#include <SoftRS485.h> #include <SoftRS485.h>
#include <AM2302-Sensor.h> #include <AM2302-Sensor.h>
#define PROGRAM "RS485-Nano 2.1 / TempSender 1.1" #define PROGRAM "RS485-Nano 2.1 / TempSender 1.2"
#define BTN_INT 3 // button interrupt pin #define BTN_INT 3 // button interrupt pin
#define Max485_RO 2 // read-output of Max485 #define Max485_RO 2 // read-output of Max485
#define Max485_RE 3 // not-read-enable of Max485 #define Max485_RE 3 // not-read-enable of Max485
#define Max485_DE 8 // data enable of Max485 #define Max485_DE 8 // data enable of Max485
#define Max485_DI 9 // data input of Max485 #define Max485_DI 9 // data input of Max485
#define TRESHOLD 1024
#define DHT_PIN 4 #define DHT_PIN 4
#define TRESHOLD 100000 // 100ms
#define PERIOD 100000000 // 100s #define PERIOD 100000000 // 100s
#define ID 3
#define ID 0
// 0=Test // 0=Test
// 1=Arbeitszimmer // 1=Arbeitszimmer
// 2=Küche // 2=Küche
@ -31,12 +35,19 @@
AM2302::AM2302_Sensor am2302{DHT_PIN}; AM2302::AM2302_Sensor am2302{DHT_PIN};
boolean raw_states[8];
boolean states[8]; boolean states[8];
unsigned long capacitor[8];
unsigned long times[8]; unsigned long times[8];
unsigned long sensor_time = PERIOD; unsigned long sensor_time = PERIOD;
void setup(){ void setup(){
for (int i=0; i<8;i++) {
capacitor[i] = 0;
raw_states[i] = LOW;
states[i] = LOW;
}
Serial.begin(115200); Serial.begin(115200);
am2302.begin(); am2302.begin();
init485(Max485_RO,Max485_RE,Max485_DE,Max485_DI); // library initialization: init485(Max485_RO,Max485_RE,Max485_DE,Max485_DI); // library initialization:
@ -50,7 +61,7 @@ void setup(){
pinMode(20,INPUT_PULLUP); pinMode(20,INPUT_PULLUP);
pinMode(21,INPUT_PULLUP); pinMode(21,INPUT_PULLUP);
attachInterrupt(digitalPinToInterrupt(2),isr,FALLING); attachInterrupt(digitalPinToInterrupt(BTN_INT),isr,CHANGE);
// Print a message to the LCD. // Print a message to the LCD.
Serial.println(PROGRAM); Serial.println(PROGRAM);
#ifdef LOG_TO_SERIAL #ifdef LOG_TO_SERIAL
@ -59,45 +70,55 @@ void setup(){
} }
void isr(){ void isr(){
states[0] = !digitalRead(14); raw_states[0] = analogRead(14)<400;
states[1] = !digitalRead(15); raw_states[1] = analogRead(15)<400;
states[2] = !digitalRead(16); raw_states[2] = analogRead(16)<400;
states[3] = !digitalRead(17); raw_states[3] = analogRead(17)<400;
states[4] = !digitalRead(18); raw_states[4] = analogRead(18)<400;
states[5] = !digitalRead(19); raw_states[5] = analogRead(19)<400;
states[6] = !(analogRead(20)>200); raw_states[6] = analogRead(20)<400;
states[7] = !(analogRead(21)>200); raw_states[7] = analogRead(21)<400;
#ifdef LOG_TO_SERIAL #ifdef LOG_TO_SERIAL
for (int i=0;i<8;i++){ for (int i=0;i<8;i++){
Serial.print(" "); Serial.print(states[i]); Serial.print(" "); Serial.print(" ");
Serial.print(raw_states[i]);
Serial.print(" ");
} }
Serial.println(); Serial.println();
#endif #endif
} }
void send(int btn, long duration){
String s = "{nano:"+String(ID)+",btn:"+String(btn)+",ms:"+String(duration)+"}";
#ifdef SEND_485 #ifdef SEND_485
void send(int btn){
String s = "{nano:"+String(ID)+",btn:"+String(btn)+"}";
for (int i = 0; i<10; i++){ for (int i = 0; i<10; i++){
if (send485(s.c_str())) break; if (send485(s.c_str())) break;
Serial.println("collision detected, trying again:"); Serial.println("collision detected, trying again:");
} }
} #else
Serial.println(s);
#endif #endif
}
void loop(){ void loop(){
unsigned long now = micros(); unsigned long now = micros();
for (int i=0;i<8;i++){ for (int i=0;i<8;i++){
if (states[i]){ // we emulate a capacitor:
delay(1); // when the button is pressed, it slowly loads, if the button is released, it unloads.
if (now - times[i] > TRESHOLD){ capacitor[i] = raw_states[i] ? capacitor[i]+1 : capacitor[i]>>1;
#ifdef SEND_485
send(i+1); // if the capacitor reaches a certain treshold, the state is changed
#endif boolean new_state = capacitor[i]>TRESHOLD;
times[i] = now;
} // TODO: drop state after a maximum HIGH time
states[i] = 0;
// when the state changes, the duration of the last state is calculated
if (states[i] != new_state){
long diff = (now - times[i])/1000;
times[i] = now;
if (states[i]) send(i+1,diff); // old state was HIGH → we are going LOW
states[i] = new_state;
} }
} }
@ -107,10 +128,6 @@ void loop(){
if (status == 0){ if (status == 0){
String s = "{nano:"+String(ID)+",temp:"+String(am2302.get_Temperature())+",humi:"+String(am2302.get_Hunidity())+"}"; String s = "{nano:"+String(ID)+",temp:"+String(am2302.get_Temperature())+",humi:"+String(am2302.get_Hunidity())+"}";
send485(s.c_str()); send485(s.c_str());
#ifdef LOG_TO_SERIAL
Serial.println(s);
#endif
} }
} }
} }

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