mirror of
https://codeberg.org/mclemens/hl2-interface.git
synced 2024-11-03 07:27:39 -05:00
132 lines
4.6 KiB
C++
132 lines
4.6 KiB
C++
//***************************************************************************************
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//* Hermes Lite 2 Interface Box *
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//* *
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//* Reads I2C data from the Hermes Lite 2 and a) controls an antenna switch based *
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//* on the selected band and b) sets the correct LPF of the Hardrock 50 Power Amp *
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//* *
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//* Based on HL2-PA70 by Cesc Gudayol (EA3IGT) Version 3.0.1 from 01/04/2021 *
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//* More info: https://github.com/ea3igt/HL2-PA70 *
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//* *
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//* Adapted by Michael Clemens (DK1MI) *
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//* More info: https://dk1mi.radio/hl2-hr50-interface *
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//* *
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//***************************************************************************************
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//* THE SOFTWARE IS PROVIDED “AS IS”, WITHOUT WARRANTY OF ANY KIND *
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//***************************************************************************************
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//
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// Pin Configuration:
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// - PIN A04 INPUT: SDA for I2C Slave (Hermes Lite 2 Control bus)
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// - PIN A05 INPUT: SCL for I2C Slave (Hermes Lite 2 Control bus)
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// - PIN D10 OUTPUT: Antenna Switch
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#include <Wire.h> //For I2C control
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#include <EEPROM.h> //To store values from PA70-Controller
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#include <util/delay.h> //Library to delay inside one Interrupt
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//#define TEST //Uncomment if Testing (Serial Monitor traces)
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// Declaration for the Hermes Lites v2 I2C (Listen to Adress 0x20)
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// HW SDA pin A4
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// HW SCL pin A5
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#define Antenna 10 //Pin D10
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// Other Configurations
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byte previousI2CBand; //to store previously I2C Band decoded
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int selected_antenna = 0;
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// SetUp function initializations
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void setup() {
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Serial.begin(9600);
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// I2C Slave Setup
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Wire.begin(0x20); // join i2c bus with address to listen
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Wire.onReceive(receiveEvent); // register event
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// Antenna
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pinMode(Antenna, OUTPUT);
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delay(200);
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//Get stored Band from EEPROM for initial filter selection
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previousI2CBand=EEPROM.read(1); //Read I2C byte Band from EEPROM byte 1
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decodeBand(previousI2CBand);
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}
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// Main loop program
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void loop()
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{
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// do nothing
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}
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void receiveEvent(int howMany) { //Triggered when receive I2C information from HL2
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byte c[10];
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int i= 0;
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while (0 < Wire.available()) { // loop through all but the last
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c[i] = Wire.read(); // receive byte as a character
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i++;
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}
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#ifdef TEST
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Serial.print(F("I2C BUS DATA:"));
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Serial.println(c[1]); // write to usb monitor
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#endif
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byte myC=c[1] & B00111111; //Get 6 least significative bits
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decodeBand(myC); //Decode Band
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// toggle Antenna
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digitalWrite(Antenna,selected_antenna);
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//Store Last Selected Band into EEPROM
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EEPROM.write(1,myC); //Byte 1 for I2C decoded
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#ifdef TEST
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// write to usb monitor
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Serial.print(F("LPF BAND CONTROL (Binary):"));
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Serial.println(selectedBand);
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Serial.print(F("PTT CONTROL:"));
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Serial.println(PTTStatus);
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#endif
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}
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//Function to decode HL2 band and select/map the filter
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//**************** Change accordingly *****************
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void decodeBand(byte c)
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{
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switch (c) {
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case 0x1: //160m
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selected_antenna = 0;
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Serial.println("HRBN10;"); // sets the Hardrock-50 to 160m
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break;
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case 0x2: //80m
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selected_antenna = 0;
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Serial.println("HRBN9;"); // sets the Hardrock-50 to 80m
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break;
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case 0x4: //60m & 40m
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selected_antenna = 0;
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Serial.println("HRBN7;"); // sets the Hardrock-50 to 40m
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break;
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case 0x8: //30m & 20m
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selected_antenna = 1;
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Serial.println("HRBN5;"); // sets the Hardrock-50 to 20m
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break;
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case 0x10: //17m & 15m
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selected_antenna = 1;
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Serial.println("HRBN3;"); // sets the Hardrock-50 to 15m
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break;
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case 0x20: //12m & 10m
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selected_antenna = 1;
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Serial.println("HRBN1;"); // sets the Hardrock-50 to 10m
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break;
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case 0x00: //6m
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selected_antenna = 1;
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Serial.println("HRBN0;"); // sets the Hardrock-50 to 6m
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break;
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}
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} |