for Reduce CW Keying error
This commit is contained in:
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@ -1,5 +1,5 @@
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/*************************************************************************
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KD8CEC'S Memory Keyer for HAM
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KD8CEC's Memory Keyer for HAM
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This source code is written for All amateur radio operator,
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I have not had amateur radio communication for a long time. CW has been
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@ -160,6 +160,16 @@ int count = 0; //to generally count ticks, loops, etc
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#define HAM_BAND_FREQS 302 //40, 1 BAND = 4Byte most bit is mode
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#define TUNING_STEP 342 //TUNING STEP * 6 (index 1 + STEPS 5)
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//for reduce cw key error, eeprom address
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#define CW_ADC_ST_FROM 348 //CW ADC Range STRAIGHT KEY from
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#define CW_ADC_ST_TO 349 //CW ADC Range STRAIGHT KEY to
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#define CW_ADC_DOT_FROM 350 //CW ADC Range DOT from
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#define CW_ADC_DOT_TO 351 //CW ADC Range DOT to
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#define CW_ADC_DASH_FROM 352 //CW ADC Range DASH from
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#define CW_ADC_DASH_TO 353 //CW ADC Range DASH to
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#define CW_ADC_BOTH_FROM 354 //CW ADC Range BOTH from
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#define CW_ADC_BOTH_TO 355 //CW ADC Range BOTH to
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//Check Firmware type and version
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#define FIRMWAR_ID_ADDR 776 //776 : 0x59, 777 :0x58, 778 : 0x68 : Id Number, if not found id, erase eeprom(32~1023) for prevent system error.
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#define VERSION_ADDRESS 779 //check Firmware version
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@ -245,6 +255,16 @@ byte isTxType = 0; //000000[0 - isSplit] [0 - isTXStop]
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byte arTuneStep[5];
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byte tuneStepIndex; //default Value 0, start Offset is 0 because of check new user
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//CW ADC Range
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byte cwAdcSTFrom = 0;
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byte cwAdcSTTo = 0;
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byte cwAdcDotFrom = 0;
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byte cwAdcDotTo = 0;
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byte cwAdcDashtFrom = 0;
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byte cwAdcDashTo = 0;
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byte cwAdcBothFrom = 0;
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byte cwAdcBothTo = 0;
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//Variables for auto cw mode
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byte isCWAutoMode = 0; //0 : none, 1 : CW_AutoMode_Menu_Selection, 2 : CW_AutoMode Sending
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byte cwAutoTextCount = 0; //cwAutoText Count
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@ -686,7 +706,10 @@ void initSettings(){
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EEPROM.get(VFO_B, vfoB);
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EEPROM.get(CW_SIDETONE, sideTone);
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EEPROM.get(CW_SPEED, cwSpeed);
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//End of original code
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//----------------------------------------------------------------
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//Add Lines by KD8CEC
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//for custom source Section =============================
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//ID & Version Check from EEProm
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//if found different firmware, erase eeprom (32
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@ -788,6 +811,44 @@ void initSettings(){
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if (tuneStepIndex == 0) //New User
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tuneStepIndex = 3;
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//CW Key ADC Range ======= adjust set value for reduce cw keying error
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//by KD8CEC
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EEPROM.get(CW_ADC_ST_FROM, cwAdcSTFrom);
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EEPROM.get(CW_ADC_ST_TO, cwAdcSTTo);
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EEPROM.get(CW_ADC_DOT_FROM, cwAdcDotFrom);
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EEPROM.get(CW_ADC_DOT_TO, cwAdcDotTo);
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EEPROM.get(CW_ADC_DASH_FROM, cwAdcDashtFrom);
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EEPROM.get(CW_ADC_DASH_TO, cwAdcDashTo);
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EEPROM.get(CW_ADC_BOTH_FROM, cwAdcBothFrom);
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EEPROM.get(CW_ADC_BOTH_TO, cwAdcBothTo);
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//default Value (for original hardware)
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if (cwAdcSTFrom >= cwAdcSTTo)
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{
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cwAdcSTFrom = 0;
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cwAdcSTTo = 50;
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}
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if (cwAdcBothFrom >= cwAdcBothTo)
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{
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cwAdcBothFrom = 51;
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cwAdcBothTo = 300;
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}
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if (cwAdcDotFrom >= cwAdcDotTo)
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{
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cwAdcDotFrom = 301;
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cwAdcDotTo = 600;
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}
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if (cwAdcDashtFrom >= cwAdcDashTo)
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{
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cwAdcDashtFrom = 601;
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cwAdcDashTo = 800;
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}
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if (cwDelayTime < 1 || cwDelayTime > 250)
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cwDelayTime = 60;
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@ -798,6 +859,7 @@ void initSettings(){
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if (vfoB_mode < 2)
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vfoB_mode = 3;
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//original code with modified by kd8cec
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if (usbCarrier > 12010000l || usbCarrier < 11990000l)
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usbCarrier = 11995000l;
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@ -810,8 +872,9 @@ void initSettings(){
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vfoB = 14150000l;
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vfoB_mode = 3;
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}
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//end of original code section
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//for protect eeprom life
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//for protect eeprom life by KD8CEC
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vfoA_eeprom = vfoA;
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vfoB_eeprom = vfoB;
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vfoA_mode_eeprom = vfoA_mode;
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@ -83,41 +83,45 @@ void cwKeyUp(){
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cwTimeout = millis() + cwDelayTime * 10;
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}
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/*****************************************************************************
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// New logic, by RON
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// modified by KD8CEC
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******************************************************************************/
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//Variables for Ron's new logic
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#define DIT_L 0x01 // DIT latch
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#define DAH_L 0x02 // DAH latch
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#define DIT_PROC 0x04 // DIT is being processed
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#define PDLSWAP 0x08 // 0 for normal, 1 for swap
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#define IAMBICB 0x10 // 0 for Iambic A, 1 for Iambic B
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enum KSTYPE {IDLE, CHK_DIT, CHK_DAH, KEYED_PREP, KEYED, INTER_ELEMENT };
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static long ktimer;
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bool Iambic_Key = true;
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unsigned char keyerControl = IAMBICB;
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unsigned char keyerState = IDLE;
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//Below is a test to reduce the keying error.
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/*
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//Below is a test to reduce the keying error. do not delete lines
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//create by KD8CEC for compatible with new CW Logic
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char update_PaddleLatch(byte isUpdateKeyState) {
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int paddle = analogRead(ANALOG_KEYER);
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unsigned char tmpKeyerControl;
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if (paddle > 800) // above 4v is up
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tmpKeyerControl = 0;
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//if (paddle > 800) // above 4v is up
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// tmpKeyerControl = 0;
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//else if (paddle > 600) // 4-3v is DASH
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else if (paddle > 693 && paddle < 700) // 4-3v is DASH
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if (paddle > cwAdcDashtFrom && cwAdcDashTo < 700) // 4-3v is DASH
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tmpKeyerControl |= DAH_L;
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//else if (paddle > 300) //1-2v is DOT
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else if (paddle > 323 && paddle < 328) //1-2v is DOT
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else if (paddle > cwAdcDotFrom && paddle < cwAdcDotTo) //1-2v is DOT
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tmpKeyerControl |= DIT_L;
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//else if (paddle > 50)
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else if (paddle > 280 && paddle < 290)
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else if (paddle > cwAdcBothFrom && paddle < cwAdcBothTo)
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tmpKeyerControl |= (DAH_L | DIT_L) ; //both are between 1 and 2v
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else
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{
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if (Iambic_Key)
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tmpKeyerControl = 0 ;
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else if (paddle > cwAdcSTFrom && paddle < cwAdcSTTo)
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tmpKeyerControl = DIT_L ;
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else
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tmpKeyerControl = 0 ;
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}
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tmpKeyerControl = 0 ; //STRAIGHT KEY in original code
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//keyerControl |= (DAH_L | DIT_L) ; //STRAIGHT KEY in original code
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@ -135,8 +139,8 @@ char update_PaddleLatch(byte isUpdateKeyState) {
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//if (analogRead(ANALOG_DOT) < 600 ) keyerControl |= DIT_L;
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//if (analogRead(ANALOG_DASH) < 600 ) keyerControl |= DAH_L;
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}
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*/
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/*
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//create by KD8CEC for compatible with new CW Logic
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char update_PaddleLatch(byte isUpdateKeyState) {
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int paddle = analogRead(ANALOG_KEYER);
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@ -163,8 +167,12 @@ char update_PaddleLatch(byte isUpdateKeyState) {
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return tmpKeyerControl;
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}
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*/
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//This function is Ron's Logic.
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/*****************************************************************************
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// New logic, by RON
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// modified by KD8CEC
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******************************************************************************/
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void cwKeyer(void){
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byte paddle;
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lastPaddle = 0;
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@ -13,6 +13,7 @@
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#define printLineF1(x) (printLineF(1, x))
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#define printLineF2(x) (printLineF(0, x))
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//Ham band move by KD8CEC
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void menuBand(int btn){
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int knob = 0;
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int stepChangeCount = 0;
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@ -117,6 +118,7 @@ void menuBand(int btn){
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menuOn = 0;
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}
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//Convert Mode, Number by KD8CEC
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//0: default, 1:not use, 2:LSB, 3:USB, 4:CW, 5:AM, 6:FM
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byte modeToByte(){
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if (isUSB)
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@ -125,12 +127,15 @@ byte modeToByte(){
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return 2;
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}
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//Convert Number to Mode by KD8CEC
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void byteToMode(byte modeValue){
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if (modeValue == 3)
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isUSB = 1;
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else
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isUSB = 0;
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}
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//Convert Number to Mode by KD8CEC
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void byteWithFreqToMode(byte modeValue){
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if (modeValue == 3)
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isUSB = 1;
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@ -140,6 +145,7 @@ void byteWithFreqToMode(byte modeValue){
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isUSB = 0;
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}
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//VFO Toggle and save VFO Information, modified by KD8CEC
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void menuVfoToggle(int btn, char isUseDelayTime)
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{
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if (!btn){
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@ -229,6 +235,7 @@ void menuSidebandToggle(int btn){
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}
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}
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//Select CW Key Type by KD8CEC
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void menuSetupKeyType(int btn){
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if (!btn && digitalRead(PTT) == HIGH){
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if (Iambic_Key)
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@ -263,7 +270,88 @@ void menuSetupKeyType(int btn){
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}
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}
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//Analog pin monitoring with CW Key and function keys connected.
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//by KD8CEC
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void menuADCMonitor(int btn){
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int adcPinA0 = 0; //A0(BLACK, EncoderA)
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int adcPinA1 = 0; //A1(BROWN, EncoderB)
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int adcPinA2 = 0; //A2(RED, Function Key)
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int adcPinA3 = 0; //A3(ORANGE, CW Key)
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int adcPinA6 = 0; //A6(BLUE, Ptt)
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int adcPinA7 = 0; //A7(VIOLET, Spare)
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unsigned long pressKeyTime = 0;
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if (!btn){
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printLineF2(F("ADC Line Monitor"));
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return;
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}
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printLineF2(F("Exit:Long PTT"));
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delay_background(2000, 0);
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printLineF1(F("A0 A1 A2"));
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printLineF2(F("A3 A6 A7"));
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delay_background(3000, 0);
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while (true) {
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adcPinA0 = analogRead(A0); //A0(BLACK, EncoderA)
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adcPinA1 = analogRead(A1); //A1(BROWN, EncoderB)
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adcPinA2 = analogRead(A2); //A2(RED, Function Key)
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adcPinA3 = analogRead(A3); //A3(ORANGE, CW Key)
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adcPinA6 = analogRead(A6); //A6(BLUE, Ptt)
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adcPinA7 = analogRead(A7); //A7(VIOLET, Spare)
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/*
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sprintf(c, "%4d %4d %4d", adcPinA0, adcPinA1, adcPinA2);
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printLine1(c);
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sprintf(c, "%4d %4d %4d", adcPinA3, adcPinA6, adcPinA7);
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printLine2(c);
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*/
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if (adcPinA6 < 10) {
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if (pressKeyTime == 0)
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pressKeyTime = millis();
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else if (pressKeyTime < (millis() - 3000))
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break;
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}
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else
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pressKeyTime = 0;
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ltoa(adcPinA0, c, 10);
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//strcat(b, c);
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strcpy(b, c);
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strcat(b, ", ");
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ltoa(adcPinA1, c, 10);
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strcat(b, c);
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strcat(b, ", ");
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ltoa(adcPinA2, c, 10);
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strcat(b, c);
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printLine1(b);
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//strcpy(b, " ");
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ltoa(adcPinA3, c, 10);
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strcpy(b, c);
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strcat(b, ", ");
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ltoa(adcPinA6, c, 10);
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strcat(b, c);
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strcat(b, ", ");
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ltoa(adcPinA7, c, 10);
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strcat(b, c);
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printLine2(b);
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delay_background(200, 0);
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} //end of while
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printLine2ClearAndUpdate();
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menuOn = 0;
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}
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//Function to disbled transmission
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//by KD8CEC
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void menuTxOnOff(int btn, byte optionType){
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if (!btn){
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if ((isTxType & optionType) == 0)
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@ -377,6 +465,7 @@ void menuCWSpeed(int btn){
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menuOn = 0;
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}
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//Builtin CW Keyer Logic by KD8CEC
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void menuCWAutoKey(int btn){
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if (!btn){
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printLineF2(F("CW AutoKey Mode?"));
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@ -400,6 +489,7 @@ void menuCWAutoKey(int btn){
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menuOn = 0;
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}
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//Modified by KD8CEC
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void menuSetupCwDelay(int btn){
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int knob = 0;
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int tmpCWDelay = cwDelayTime * 10;
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@ -448,6 +538,7 @@ void menuSetupCwDelay(int btn){
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menuOn = 0;
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}
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//CW Time delay by KD8CEC
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void menuSetupTXCWInterval(int btn){
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int knob = 0;
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int tmpTXCWInterval = delayBeforeCWStartTime * 2;
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@ -659,6 +750,7 @@ void printCarrierFreq(unsigned long freq){
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printLine2(c);
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}
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//modified by KD8CEC (just 1 line remarked //usbCarrier = ...
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void menuSetupCarrier(int btn){
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int knob = 0;
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unsigned long prevCarrier;
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@ -712,6 +804,7 @@ void menuSetupCarrier(int btn){
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menuOn = 0;
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}
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//Modified by KD8CEC
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void menuSetupCwTone(int btn){
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int knob = 0;
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int prev_sideTone;
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@ -760,6 +853,7 @@ void menuSetupCwTone(int btn){
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menuOn = 0;
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}
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//Lock Dial move by KD8CEC
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void setDialLock(byte tmpLock, byte fromMode) {
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if (tmpLock == 1)
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isDialLock |= (vfoActive == VFO_A ? 0x01 : 0x02);
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@ -782,6 +876,7 @@ unsigned int btnDownTimeCount;
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#define PRESS_ADJUST_TUNE 1000
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#define PRESS_LOCK_CONTROL 2000
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//Modified by KD8CEC
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void doMenu(){
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int select=0, i,btnState;
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char isNeedDisplay = 0;
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@ -865,7 +960,7 @@ void doMenu(){
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btnState = btnDown();
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if (i > 0){
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if (modeCalibrate && select + i < 160)
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if (modeCalibrate && select + i < 170)
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select += i;
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if (!modeCalibrate && select + i < 80)
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select += i;
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@ -905,8 +1000,10 @@ void doMenu(){
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else if (select < 140 && modeCalibrate)
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menuSetupKeyType(btnState);
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else if (select < 150 && modeCalibrate)
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menuTxOnOff(btnState, 0x01); //TX OFF / ON
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menuADCMonitor(btnState);
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else if (select < 160 && modeCalibrate)
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menuTxOnOff(btnState, 0x01); //TX OFF / ON
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else if (select < 170 && modeCalibrate)
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menuExit(btnState);
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Check_Cat(0); //To prevent disconnections
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