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version0.2
...
version0.3
Author | SHA1 | Date | |
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14888bb7d7 | ||
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57cd385b8a | ||
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60777178a8 | ||
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dd68b38454 | ||
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d229a10092 | ||
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3d019cdd44 | ||
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4745790dfa | ||
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85832de034 | ||
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4830db78cb | ||
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5eca64d2a9 | ||
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0d9ec08bd7 | ||
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98c26730c6 | ||
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3a306429ea | ||
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4f634a8277 | ||
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a49d5e85b8 | ||
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282c196f63 |
@@ -130,10 +130,21 @@ void CatGetFreqMode(unsigned long freq, byte fromType)
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}
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}
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//Mode Check
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//Mode Check
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if (cwMode == 0)
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{
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if (isUSB)
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if (isUSB)
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CAT_BUFF[4] = CAT_MODE_USB;
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CAT_BUFF[4] = CAT_MODE_USB;
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else
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else
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CAT_BUFF[4] = CAT_MODE_LSB;
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CAT_BUFF[4] = CAT_MODE_LSB;
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}
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else if (cwMode == 1)
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{
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CAT_BUFF[4] = CAT_MODE_CW;
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}
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else
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{
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CAT_BUFF[4] = CAT_MODE_CW;
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}
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SendCatData(5);
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SendCatData(5);
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}
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}
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@@ -198,12 +209,18 @@ void CatSetMode(byte tmpMode, byte fromType)
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if (!inTx)
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if (!inTx)
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{
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{
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if (tmpMode == CAT_MODE_USB)
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if (tmpMode == CAT_MODE_CW)
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{
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{
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cwMode = 1;
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}
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else if (tmpMode == CAT_MODE_USB)
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{
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cwMode = 0;
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isUSB = true;
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isUSB = true;
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}
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}
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else
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else
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{
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{
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cwMode = 0;
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isUSB = false;
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isUSB = false;
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}
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}
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@@ -358,10 +375,21 @@ void ReadEEPRom_FT817(byte fromType)
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CAT_BUFF[1] = 0xB2;
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CAT_BUFF[1] = 0xB2;
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break; case 0x69 : //FM Mic (#29) Contains 0-100 (decimal) as displayed
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break; case 0x69 : //FM Mic (#29) Contains 0-100 (decimal) as displayed
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case 0x78 :
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case 0x78 :
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if (cwMode == 0)
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{
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if (isUSB)
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if (isUSB)
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CAT_BUFF[0] = CAT_MODE_USB;
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CAT_BUFF[0] = CAT_MODE_USB;
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else
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else
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CAT_BUFF[0] = CAT_MODE_LSB;
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CAT_BUFF[0] = CAT_MODE_LSB;
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}
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else if (cwMode == 1)
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{
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CAT_BUFF[0] = CAT_MODE_CW;
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}
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else if (cwMode == 2)
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{
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CAT_BUFF[0] = CAT_MODE_CW;
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}
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if (CAT_BUFF[0] != 0) CAT_BUFF[0] = 1 << 5;
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if (CAT_BUFF[0] != 0) CAT_BUFF[0] = 1 << 5;
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break;
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break;
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@@ -384,7 +412,7 @@ void ReadEEPRom_FT817(byte fromType)
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//7A 6 ? ?
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//7A 6 ? ?
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//7A 7 SPL On/Off 0 = Off, 1 = On
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//7A 7 SPL On/Off 0 = Off, 1 = On
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CAT_BUFF[0] = (isSplitOn ? 0xFF : 0x7F);
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CAT_BUFF[0] = (splitOn ? 0xFF : 0x7F);
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break;
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break;
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case 0xB3 : //
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case 0xB3 : //
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CAT_BUFF[0] = 0x00;
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CAT_BUFF[0] = 0x00;
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@@ -472,7 +500,7 @@ void WriteEEPRom_FT817(byte fromType)
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printLineF2(F("Sidetone set! CAT"));
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printLineF2(F("Sidetone set! CAT"));
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EEPROM.put(CW_SIDETONE, sideTone);
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EEPROM.put(CW_SIDETONE, sideTone);
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delay(300); //If timeout errors occur in the calling software, remove them
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delay(300); //If timeout errors occur in the calling software, remove them
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printLine2(""); //Ham radio deluxe is the only one that supports this feature yet. and ham radio deluxe has wait time as greater than 500ms
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clearLine2();
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}
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}
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break;
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break;
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@@ -484,7 +512,8 @@ void WriteEEPRom_FT817(byte fromType)
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printLineF2(F("Sidetone set! CAT"));
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printLineF2(F("Sidetone set! CAT"));
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EEPROM.put(CW_SIDETONE, sideTone);
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EEPROM.put(CW_SIDETONE, sideTone);
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delay(300); //If timeout errors occur in the calling software, remove them
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delay(300); //If timeout errors occur in the calling software, remove them
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printLine2(""); //Ham radio deluxe is the only one that supports this feature yet. and ham radio deluxe has wait time as greater than 500ms
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clearLine2();
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line2DisplayStatus = 0;
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}
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}
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break;
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break;
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@@ -504,7 +533,7 @@ void WriteEEPRom_FT817(byte fromType)
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printLineF2(F("CW Speed set!"));
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printLineF2(F("CW Speed set!"));
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EEPROM.put(CW_DELAY, cwDelayTime);
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EEPROM.put(CW_DELAY, cwDelayTime);
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delay(300);
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delay(300);
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printLine2("");
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clearLine2();
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break;
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break;
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case 0x62 : //
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case 0x62 : //
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//5-0 CW Speed (4-60 WPM) (#21) From 0 to 38 (HEX) with 0 = 4 WPM and 38 = 60 WPM (1 WPM steps)
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//5-0 CW Speed (4-60 WPM) (#21) From 0 to 38 (HEX) with 0 = 4 WPM and 38 = 60 WPM (1 WPM steps)
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@@ -513,7 +542,7 @@ void WriteEEPRom_FT817(byte fromType)
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printLineF2(F("CW Speed set!"));
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printLineF2(F("CW Speed set!"));
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EEPROM.put(CW_SPEED, cwSpeed);
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EEPROM.put(CW_SPEED, cwSpeed);
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delay(300);
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delay(300);
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printLine2("");
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clearLine2();
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break;
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break;
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/*
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/*
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@@ -299,7 +299,11 @@ void controlAutoCW(){
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printLineFromEEPRom(0, 2, cwStartIndex + displayScrolStep + CW_DATA_OFSTADJ, cwEndIndex + CW_DATA_OFSTADJ);
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printLineFromEEPRom(0, 2, cwStartIndex + displayScrolStep + CW_DATA_OFSTADJ, cwEndIndex + CW_DATA_OFSTADJ);
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lcd.setCursor(0,0);
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byte diplayAutoCWLine = 0;
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if ((displayOption1 & 0x01) == 0x01)
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diplayAutoCWLine = 1;
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lcd.setCursor(0, diplayAutoCWLine);
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lcd.write(byteToChar(selectedCWTextIndex));
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lcd.write(byteToChar(selectedCWTextIndex));
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lcd.write(':');
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lcd.write(':');
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isNeedScroll = (cwEndIndex - cwStartIndex) > 14 ? 1 : 0;
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isNeedScroll = (cwEndIndex - cwStartIndex) > 14 ? 1 : 0;
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@@ -361,6 +365,11 @@ void controlAutoCW(){
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//check interval time, if you want adjust interval between chars, modify below
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//check interval time, if you want adjust interval between chars, modify below
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if (isAutoCWHold == 0 && (millis() - autoCWbeforeTime > cwSpeed * 3))
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if (isAutoCWHold == 0 && (millis() - autoCWbeforeTime > cwSpeed * 3))
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{
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{
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if (!inTx){ //if not TX Status, change RX -> TX
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keyDown = 0;
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startTx(TX_CW, 0); //disable updateDisplay Command for reduce latency time
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}
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sendCWChar(EEPROM.read(CW_AUTO_DATA + autoCWSendCharIndex++));
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sendCWChar(EEPROM.read(CW_AUTO_DATA + autoCWSendCharIndex++));
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if (autoCWSendCharIndex > autoCWSendCharEndIndex) { //finish auto cw send
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if (autoCWSendCharIndex > autoCWSendCharEndIndex) { //finish auto cw send
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@@ -84,6 +84,7 @@
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#define PTT (A3)
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#define PTT (A3)
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#define ANALOG_KEYER (A6)
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#define ANALOG_KEYER (A6)
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#define ANALOG_SPARE (A7)
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#define ANALOG_SPARE (A7)
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#define ANALOG_SMETER (A7) //by KD8CEC
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/**
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/**
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* The Raduino board is the size of a standard 16x2 LCD panel. It has three connectors:
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* The Raduino board is the size of a standard 16x2 LCD panel. It has three connectors:
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@@ -150,6 +151,7 @@ int count = 0; //to generally count ticks, loops, etc
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#define CW_SPEED 28
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#define CW_SPEED 28
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//AT328 has 1KBytes EEPROM
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//AT328 has 1KBytes EEPROM
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#define CW_CAL 252
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#define VFO_A_MODE 256
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#define VFO_A_MODE 256
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#define VFO_B_MODE 257
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#define VFO_B_MODE 257
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#define CW_DELAY 258
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#define CW_DELAY 258
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@@ -158,7 +160,8 @@ int count = 0; //to generally count ticks, loops, etc
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#define TX_TUNE_TYPE 261 //
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#define TX_TUNE_TYPE 261 //
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#define HAM_BAND_RANGE 262 //FROM (2BYTE) TO (2BYTE) * 10 = 40byte
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#define HAM_BAND_RANGE 262 //FROM (2BYTE) TO (2BYTE) * 10 = 40byte
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#define HAM_BAND_FREQS 302 //40, 1 BAND = 4Byte most bit is mode
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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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#define TUNING_STEP 342 //TUNING STEP * 6 (index 1 + STEPS 5) //1STEP :
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//for reduce cw key error, eeprom address
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//for reduce cw key error, eeprom address
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#define CW_ADC_MOST_BIT1 348 //most 2bits of DOT_TO , DOT_FROM, ST_TO, ST_FROM
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#define CW_ADC_MOST_BIT1 348 //most 2bits of DOT_TO , DOT_FROM, ST_TO, ST_FROM
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@@ -172,6 +175,14 @@ int count = 0; //to generally count ticks, loops, etc
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#define CW_ADC_DASH_TO 355 //CW ADC Range DASH to (Lower 8 bit)
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#define CW_ADC_DASH_TO 355 //CW ADC Range DASH to (Lower 8 bit)
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#define CW_ADC_BOTH_FROM 356 //CW ADC Range BOTH from (Lower 8 bit)
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#define CW_ADC_BOTH_FROM 356 //CW ADC Range BOTH from (Lower 8 bit)
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#define CW_ADC_BOTH_TO 357 //CW ADC Range BOTH to (Lower 8 bit)
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#define CW_ADC_BOTH_TO 357 //CW ADC Range BOTH to (Lower 8 bit)
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#define CW_KEY_TYPE 358
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#define DISPLAY_OPTION1 361 //Display Option1
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#define DISPLAY_OPTION2 362 //Display Option2
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#define CHANNEL_FREQ 630 //Channel 1 ~ 20, 1 Channel = 4 bytes
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#define CHANNEL_DESC 710 //Channel 1 ~ 20, 1 Channel = 4 bytes
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#define RESERVE3 770 //Reserve3 between Channel and Firmware id check
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//Check Firmware type and version
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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 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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@@ -227,7 +238,7 @@ int count = 0; //to generally count ticks, loops, etc
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char ritOn = 0;
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char ritOn = 0;
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char vfoActive = VFO_A;
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char vfoActive = VFO_A;
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int8_t meter_reading = 0; // a -1 on meter makes it invisible
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int8_t meter_reading = 0; // a -1 on meter makes it invisible
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unsigned long vfoA=7150000L, vfoB=14200000L, sideTone=800, usbCarrier;
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unsigned long vfoA=7150000L, vfoB=14200000L, sideTone=800, usbCarrier, cwmCarrier;
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unsigned long vfoA_eeprom, vfoB_eeprom; //for protect eeprom life
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unsigned long vfoA_eeprom, vfoB_eeprom; //for protect eeprom life
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unsigned long frequency, ritRxFrequency, ritTxFrequency; //frequency is the current frequency on the dial
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unsigned long frequency, ritRxFrequency, ritTxFrequency; //frequency is the current frequency on the dial
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@@ -244,7 +255,6 @@ byte saveIntervalSec = 10; //second
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unsigned long saveCheckTime = 0;
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unsigned long saveCheckTime = 0;
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unsigned long saveCheckFreq = 0;
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unsigned long saveCheckFreq = 0;
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bool isSplitOn = false;
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byte cwDelayTime = 60;
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byte cwDelayTime = 60;
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byte delayBeforeCWStartTime = 50;
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byte delayBeforeCWStartTime = 50;
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@@ -255,9 +265,12 @@ byte sideToneSub = 0;
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//DialLock
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//DialLock
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byte isDialLock = 0; //000000[0]vfoB [0]vfoA 0Bit : A, 1Bit : B
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byte isDialLock = 0; //000000[0]vfoB [0]vfoA 0Bit : A, 1Bit : B
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byte isTxType = 0; //000000[0 - isSplit] [0 - isTXStop]
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byte isTxType = 0; //000000[0 - isSplit] [0 - isTXStop]
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byte arTuneStep[5];
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long arTuneStep[5];
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byte tuneStepIndex; //default Value 0, start Offset is 0 because of check new user
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byte tuneStepIndex; //default Value 0, start Offset is 0 because of check new user
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|
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byte displayOption1 = 0;
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byte displayOption2 = 0;
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//CW ADC Range
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//CW ADC Range
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int cwAdcSTFrom = 0;
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int cwAdcSTFrom = 0;
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int cwAdcSTTo = 0;
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int cwAdcSTTo = 0;
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@@ -267,6 +280,10 @@ int cwAdcDashFrom = 0;
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int cwAdcDashTo = 0;
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int cwAdcDashTo = 0;
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int cwAdcBothFrom = 0;
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int cwAdcBothFrom = 0;
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int cwAdcBothTo = 0;
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int cwAdcBothTo = 0;
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||||||
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byte cwKeyType = 0; //0: straight, 1 : iambica, 2: iambicb
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|
bool Iambic_Key = true;
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|
#define IAMBICB 0x10 // 0 for Iambic A, 1 for Iambic B
|
||||||
|
unsigned char keyerControl = IAMBICB;
|
||||||
|
|
||||||
//Variables for auto cw mode
|
//Variables for auto cw mode
|
||||||
byte isCWAutoMode = 0; //0 : none, 1 : CW_AutoMode_Menu_Selection, 2 : CW_AutoMode Sending
|
byte isCWAutoMode = 0; //0 : none, 1 : CW_AutoMode_Menu_Selection, 2 : CW_AutoMode Sending
|
||||||
@@ -286,9 +303,13 @@ byte userCallsignLength = 0; //7 : display callsign at system startup, 6~0 :
|
|||||||
*/
|
*/
|
||||||
boolean txCAT = false; //turned on if the transmitting due to a CAT command
|
boolean txCAT = false; //turned on if the transmitting due to a CAT command
|
||||||
char inTx = 0; //it is set to 1 if in transmit mode (whatever the reason : cw, ptt or cat)
|
char inTx = 0; //it is set to 1 if in transmit mode (whatever the reason : cw, ptt or cat)
|
||||||
char splitOn = 0; //working split, uses VFO B as the transmit frequency, (NOT IMPLEMENTED YET)
|
char splitOn = 0; //working split, uses VFO B as the transmit frequency
|
||||||
char keyDown = 0; //in cw mode, denotes the carrier is being transmitted
|
char keyDown = 0; //in cw mode, denotes the carrier is being transmitted
|
||||||
char isUSB = 0; //upper sideband was selected, this is reset to the default for the
|
char isUSB = 0; //upper sideband was selected, this is reset to the default for the
|
||||||
|
|
||||||
|
char cwMode = 0; //compatible original source, and extend mode //if cwMode == 0, mode check : isUSB, cwMode > 0, mode Check : cwMode
|
||||||
|
//iscwMode = 0 : ssbmode, 1 :cwl, 2 : cwu, 3 : cwn (none tx)
|
||||||
|
|
||||||
//frequency when it crosses the frequency border of 10 MHz
|
//frequency when it crosses the frequency border of 10 MHz
|
||||||
byte menuOn = 0; //set to 1 when the menu is being displayed, if a menu item sets it to zero, the menu is exited
|
byte menuOn = 0; //set to 1 when the menu is being displayed, if a menu item sets it to zero, the menu is exited
|
||||||
unsigned long cwTimeout = 0; //milliseconds to go before the cw transmit line is released and the radio goes back to rx mode
|
unsigned long cwTimeout = 0; //milliseconds to go before the cw transmit line is released and the radio goes back to rx mode
|
||||||
@@ -296,6 +317,14 @@ unsigned long dbgCount = 0; //not used now
|
|||||||
unsigned char txFilter = 0; //which of the four transmit filters are in use
|
unsigned char txFilter = 0; //which of the four transmit filters are in use
|
||||||
boolean modeCalibrate = false;//this mode of menus shows extended menus to calibrate the oscillators and choose the proper
|
boolean modeCalibrate = false;//this mode of menus shows extended menus to calibrate the oscillators and choose the proper
|
||||||
//beat frequency
|
//beat frequency
|
||||||
|
|
||||||
|
unsigned long beforeIdle_ProcessTime = 0; //for check Idle time
|
||||||
|
byte line2DisplayStatus = 0; //0:Clear, 1 : menu, 1: DisplayFrom Idle,
|
||||||
|
char lcdMeter[17];
|
||||||
|
|
||||||
|
byte isIFShift = 0; //1 = ifShift, 2 extend
|
||||||
|
long ifShiftValue = 0; //
|
||||||
|
|
||||||
/**
|
/**
|
||||||
* Below are the basic functions that control the uBitx. Understanding the functions before
|
* Below are the basic functions that control the uBitx. Understanding the functions before
|
||||||
* you start hacking around
|
* you start hacking around
|
||||||
@@ -348,22 +377,24 @@ void setNextHamBandFreq(unsigned long f, char moveDirection)
|
|||||||
|
|
||||||
EEPROM.get(HAM_BAND_FREQS + 4 * findedIndex, resultFreq);
|
EEPROM.get(HAM_BAND_FREQS + 4 * findedIndex, resultFreq);
|
||||||
|
|
||||||
loadMode = (byte)(resultFreq >> 30);
|
//loadMode = (byte)(resultFreq >> 30);
|
||||||
resultFreq = resultFreq & 0x3FFFFFFF;
|
//resultFreq = resultFreq & 0x3FFFFFFF;
|
||||||
|
loadMode = (byte)(resultFreq >> 29);
|
||||||
|
resultFreq = resultFreq & 0x1FFFFFFF;
|
||||||
|
|
||||||
if ((resultFreq / 1000) < hamBandRange[(unsigned char)findedIndex][0] || (resultFreq / 1000) > hamBandRange[(unsigned char)findedIndex][1])
|
if ((resultFreq / 1000) < hamBandRange[(unsigned char)findedIndex][0] || (resultFreq / 1000) > hamBandRange[(unsigned char)findedIndex][1])
|
||||||
resultFreq = (unsigned long)(hamBandRange[(unsigned char)findedIndex][0]) * 1000;
|
resultFreq = (unsigned long)(hamBandRange[(unsigned char)findedIndex][0]) * 1000;
|
||||||
|
|
||||||
setFrequency(resultFreq);
|
setFrequency(resultFreq);
|
||||||
byteWithFreqToMode(loadMode);
|
byteToMode(loadMode, 1);
|
||||||
}
|
}
|
||||||
|
|
||||||
void saveBandFreqByIndex(unsigned long f, unsigned long mode, char bandIndex) {
|
void saveBandFreqByIndex(unsigned long f, unsigned long mode, char bandIndex) {
|
||||||
if (bandIndex >= 0)
|
if (bandIndex >= 0)
|
||||||
EEPROM.put(HAM_BAND_FREQS + 4 * bandIndex, (f & 0x3FFFFFFF) | (mode << 30) );
|
//EEPROM.put(HAM_BAND_FREQS + 4 * bandIndex, (f & 0x3FFFFFFF) | (mode << 30) );
|
||||||
|
EEPROM.put(HAM_BAND_FREQS + 4 * bandIndex, (f & 0x1FFFFFFF) | (mode << 29) );
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
/*
|
/*
|
||||||
KD8CEC
|
KD8CEC
|
||||||
When using the basic delay of the Arduino, the program freezes.
|
When using the basic delay of the Arduino, the program freezes.
|
||||||
@@ -457,14 +488,28 @@ void setFrequency(unsigned long f){
|
|||||||
|
|
||||||
setTXFilters(f);
|
setTXFilters(f);
|
||||||
|
|
||||||
|
if (cwMode == 0)
|
||||||
|
{
|
||||||
if (isUSB){
|
if (isUSB){
|
||||||
si5351bx_setfreq(2, SECOND_OSC_USB - usbCarrier + f);
|
si5351bx_setfreq(2, SECOND_OSC_USB - usbCarrier + f + (isIFShift ? ifShiftValue : 0));
|
||||||
si5351bx_setfreq(1, SECOND_OSC_USB);
|
si5351bx_setfreq(1, SECOND_OSC_USB);
|
||||||
}
|
}
|
||||||
else{
|
else{
|
||||||
si5351bx_setfreq(2, SECOND_OSC_LSB + usbCarrier + f);
|
si5351bx_setfreq(2, SECOND_OSC_LSB + usbCarrier + f + (isIFShift ? ifShiftValue : 0));
|
||||||
si5351bx_setfreq(1, SECOND_OSC_LSB);
|
si5351bx_setfreq(1, SECOND_OSC_LSB);
|
||||||
}
|
}
|
||||||
|
}
|
||||||
|
else
|
||||||
|
{
|
||||||
|
if (cwMode == 1){ //CWL
|
||||||
|
si5351bx_setfreq(2, SECOND_OSC_LSB + cwmCarrier + f + (isIFShift ? ifShiftValue : 0));
|
||||||
|
si5351bx_setfreq(1, SECOND_OSC_LSB);
|
||||||
|
}
|
||||||
|
else{ //CWU
|
||||||
|
si5351bx_setfreq(2, SECOND_OSC_USB - cwmCarrier + f + (isIFShift ? ifShiftValue : 0));
|
||||||
|
si5351bx_setfreq(1, SECOND_OSC_USB);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
frequency = f;
|
frequency = f;
|
||||||
}
|
}
|
||||||
@@ -492,6 +537,21 @@ void startTx(byte txMode, byte isDisplayUpdate){
|
|||||||
ritRxFrequency = frequency;
|
ritRxFrequency = frequency;
|
||||||
setFrequency(ritTxFrequency);
|
setFrequency(ritTxFrequency);
|
||||||
}
|
}
|
||||||
|
else if (splitOn == 1) {
|
||||||
|
if (vfoActive == VFO_B) {
|
||||||
|
vfoActive = VFO_A;
|
||||||
|
frequency = vfoA;
|
||||||
|
byteToMode(vfoA_mode, 0);
|
||||||
|
}
|
||||||
|
else if (vfoActive == VFO_A){
|
||||||
|
vfoActive = VFO_B;
|
||||||
|
frequency = vfoB;
|
||||||
|
byteToMode(vfoB_mode, 0);
|
||||||
|
}
|
||||||
|
|
||||||
|
setFrequency(frequency);
|
||||||
|
} //end of else
|
||||||
|
|
||||||
|
|
||||||
if (txMode == TX_CW){
|
if (txMode == TX_CW){
|
||||||
//turn off the second local oscillator and the bfo
|
//turn off the second local oscillator and the bfo
|
||||||
@@ -501,11 +561,23 @@ void startTx(byte txMode, byte isDisplayUpdate){
|
|||||||
//shif the first oscillator to the tx frequency directly
|
//shif the first oscillator to the tx frequency directly
|
||||||
//the key up and key down will toggle the carrier unbalancing
|
//the key up and key down will toggle the carrier unbalancing
|
||||||
//the exact cw frequency is the tuned frequency + sidetone
|
//the exact cw frequency is the tuned frequency + sidetone
|
||||||
|
|
||||||
|
if (cwMode == 0)
|
||||||
|
{
|
||||||
if (isUSB)
|
if (isUSB)
|
||||||
si5351bx_setfreq(2, frequency + sideTone);
|
si5351bx_setfreq(2, frequency + sideTone);
|
||||||
else
|
else
|
||||||
si5351bx_setfreq(2, frequency - sideTone);
|
si5351bx_setfreq(2, frequency - sideTone);
|
||||||
}
|
}
|
||||||
|
else if (cwMode == 1) //CWL
|
||||||
|
{
|
||||||
|
si5351bx_setfreq(2, frequency - sideTone);
|
||||||
|
}
|
||||||
|
else //CWU
|
||||||
|
{
|
||||||
|
si5351bx_setfreq(2, frequency + sideTone);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
//reduce latency time when begin of CW mode
|
//reduce latency time when begin of CW mode
|
||||||
if (isDisplayUpdate == 1)
|
if (isDisplayUpdate == 1)
|
||||||
@@ -516,10 +588,28 @@ void stopTx(){
|
|||||||
inTx = 0;
|
inTx = 0;
|
||||||
|
|
||||||
digitalWrite(TX_RX, 0); //turn off the tx
|
digitalWrite(TX_RX, 0); //turn off the tx
|
||||||
si5351bx_setfreq(0, usbCarrier); //set back the carrier oscillator anyway, cw tx switches it off
|
|
||||||
|
if (cwMode == 0)
|
||||||
|
si5351bx_setfreq(0, usbCarrier + (isIFShift ? ifShiftValue : 0)); //set back the carrier oscillator anyway, cw tx switches it off
|
||||||
|
else
|
||||||
|
si5351bx_setfreq(0, cwmCarrier + (isIFShift ? ifShiftValue : 0)); //set back the carrier oscillator anyway, cw tx switches it off
|
||||||
|
|
||||||
if (ritOn)
|
if (ritOn)
|
||||||
setFrequency(ritRxFrequency);
|
setFrequency(ritRxFrequency);
|
||||||
|
else if (splitOn == 1) {
|
||||||
|
//vfo Change
|
||||||
|
if (vfoActive == VFO_B){
|
||||||
|
vfoActive = VFO_A;
|
||||||
|
frequency = vfoA;
|
||||||
|
byteToMode(vfoA_mode, 0);
|
||||||
|
}
|
||||||
|
else if (vfoActive == VFO_A){
|
||||||
|
vfoActive = VFO_B;
|
||||||
|
frequency = vfoB;
|
||||||
|
byteToMode(vfoB_mode, 0);
|
||||||
|
}
|
||||||
|
setFrequency(frequency);
|
||||||
|
} //end of else
|
||||||
else
|
else
|
||||||
setFrequency(frequency);
|
setFrequency(frequency);
|
||||||
|
|
||||||
@@ -669,9 +759,8 @@ void doRIT(){
|
|||||||
updateDisplay();
|
updateDisplay();
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
/*
|
||||||
/**
|
save Frequency and mode to eeprom for Auto Save with protected eeprom cycle, by kd8cec
|
||||||
save Frequency and mode to eeprom
|
|
||||||
*/
|
*/
|
||||||
void storeFrequencyAndMode(byte saveType)
|
void storeFrequencyAndMode(byte saveType)
|
||||||
{
|
{
|
||||||
@@ -703,6 +792,22 @@ void storeFrequencyAndMode(byte saveType)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
//calculate step size from 1 byte, compatible uBITX Manager, by KD8CEC
|
||||||
|
unsigned int byteToSteps(byte srcByte) {
|
||||||
|
byte powerVal = (byte)(srcByte >> 6);
|
||||||
|
unsigned int baseVal = srcByte & 0x3F;
|
||||||
|
|
||||||
|
if (powerVal == 1)
|
||||||
|
return baseVal * 10;
|
||||||
|
else if (powerVal == 2)
|
||||||
|
return baseVal * 100;
|
||||||
|
else if (powerVal == 3)
|
||||||
|
return baseVal * 1000;
|
||||||
|
else
|
||||||
|
return baseVal;
|
||||||
|
}
|
||||||
|
|
||||||
|
|
||||||
/**
|
/**
|
||||||
* The settings are read from EEPROM. The first time around, the values may not be
|
* The settings are read from EEPROM. The first time around, the values may not be
|
||||||
* present or out of range, in this case, some intelligent defaults are copied into the
|
* present or out of range, in this case, some intelligent defaults are copied into the
|
||||||
@@ -745,6 +850,7 @@ void initSettings(){
|
|||||||
if (EEPROM.read(VERSION_ADDRESS) != VERSION_NUM)
|
if (EEPROM.read(VERSION_ADDRESS) != VERSION_NUM)
|
||||||
EEPROM.write(VERSION_ADDRESS, VERSION_NUM);
|
EEPROM.write(VERSION_ADDRESS, VERSION_NUM);
|
||||||
|
|
||||||
|
EEPROM.get(CW_CAL, cwmCarrier);
|
||||||
|
|
||||||
//for Save VFO_A_MODE to eeprom
|
//for Save VFO_A_MODE to eeprom
|
||||||
//0: default, 1:not use, 2:LSB, 3:USB, 4:CW, 5:AM, 6:FM
|
//0: default, 1:not use, 2:LSB, 3:USB, 4:CW, 5:AM, 6:FM
|
||||||
@@ -756,6 +862,24 @@ void initSettings(){
|
|||||||
|
|
||||||
//CW interval between TX and CW Start
|
//CW interval between TX and CW Start
|
||||||
EEPROM.get(CW_START, delayBeforeCWStartTime);
|
EEPROM.get(CW_START, delayBeforeCWStartTime);
|
||||||
|
EEPROM.get(CW_KEY_TYPE, cwKeyType);
|
||||||
|
if (cwKeyType > 2)
|
||||||
|
cwKeyType = 0;
|
||||||
|
|
||||||
|
if (cwKeyType == 0)
|
||||||
|
Iambic_Key = false;
|
||||||
|
else
|
||||||
|
{
|
||||||
|
Iambic_Key = true;
|
||||||
|
if (cwKeyType == 1)
|
||||||
|
keyerControl &= ~IAMBICB;
|
||||||
|
else
|
||||||
|
keyerControl |= IAMBICB;
|
||||||
|
}
|
||||||
|
|
||||||
|
|
||||||
|
EEPROM.get(DISPLAY_OPTION1, displayOption1);
|
||||||
|
EEPROM.get(DISPLAY_OPTION2, displayOption2);
|
||||||
|
|
||||||
//User callsign information
|
//User callsign information
|
||||||
if (EEPROM.read(USER_CALLSIGN_KEY) == 0x59)
|
if (EEPROM.read(USER_CALLSIGN_KEY) == 0x59)
|
||||||
@@ -790,7 +914,7 @@ void initSettings(){
|
|||||||
hamBandRange[0][0] = 1810; hamBandRange[0][1] = 2000;
|
hamBandRange[0][0] = 1810; hamBandRange[0][1] = 2000;
|
||||||
hamBandRange[1][0] = 3500; hamBandRange[1][1] = 3800;
|
hamBandRange[1][0] = 3500; hamBandRange[1][1] = 3800;
|
||||||
hamBandRange[2][0] = 5351; hamBandRange[2][1] = 5367;
|
hamBandRange[2][0] = 5351; hamBandRange[2][1] = 5367;
|
||||||
hamBandRange[3][0] = 7000; hamBandRange[3][1] = 7200;
|
hamBandRange[3][0] = 7000; hamBandRange[3][1] = 7300; //region 1
|
||||||
hamBandRange[4][0] = 10100; hamBandRange[4][1] = 10150;
|
hamBandRange[4][0] = 10100; hamBandRange[4][1] = 10150;
|
||||||
hamBandRange[5][0] = 14000; hamBandRange[5][1] = 14350;
|
hamBandRange[5][0] = 14000; hamBandRange[5][1] = 14350;
|
||||||
hamBandRange[6][0] = 18068; hamBandRange[6][1] = 18168;
|
hamBandRange[6][0] = 18068; hamBandRange[6][1] = 18168;
|
||||||
@@ -804,8 +928,8 @@ void initSettings(){
|
|||||||
findedValidValueCount = 0;
|
findedValidValueCount = 0;
|
||||||
EEPROM.get(TUNING_STEP, tuneStepIndex);
|
EEPROM.get(TUNING_STEP, tuneStepIndex);
|
||||||
for (byte i = 0; i < 5; i++) {
|
for (byte i = 0; i < 5; i++) {
|
||||||
arTuneStep[i] = EEPROM.read(TUNING_STEP + i + 1);
|
arTuneStep[i] = byteToSteps(EEPROM.read(TUNING_STEP + i + 1));
|
||||||
if (arTuneStep[i] >= 1 && arTuneStep[i] < 251) //Maximum 250 for check valid Value
|
if (arTuneStep[i] >= 1 && arTuneStep[i] <= 60000) //Maximum 650 for check valid Value
|
||||||
findedValidValueCount++;
|
findedValidValueCount++;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -876,14 +1000,17 @@ void initSettings(){
|
|||||||
if (usbCarrier > 12010000l || usbCarrier < 11990000l)
|
if (usbCarrier > 12010000l || usbCarrier < 11990000l)
|
||||||
usbCarrier = 11995000l;
|
usbCarrier = 11995000l;
|
||||||
|
|
||||||
|
if (cwmCarrier > 12010000l || cwmCarrier < 11990000l)
|
||||||
|
cwmCarrier = 11995000l;
|
||||||
|
|
||||||
if (vfoA > 35000000l || 3500000l > vfoA) {
|
if (vfoA > 35000000l || 3500000l > vfoA) {
|
||||||
vfoA = 7150000l;
|
vfoA = 7150000l;
|
||||||
vfoA_mode = 2;
|
vfoA_mode = 2; //LSB
|
||||||
}
|
}
|
||||||
|
|
||||||
if (vfoB > 35000000l || 3500000l > vfoB) {
|
if (vfoB > 35000000l || 3500000l > vfoB) {
|
||||||
vfoB = 14150000l;
|
vfoB = 14150000l;
|
||||||
vfoB_mode = 3;
|
vfoB_mode = 3; //USB
|
||||||
}
|
}
|
||||||
//end of original code section
|
//end of original code section
|
||||||
|
|
||||||
@@ -923,6 +1050,7 @@ void initPorts(){
|
|||||||
|
|
||||||
pinMode(PTT, INPUT_PULLUP);
|
pinMode(PTT, INPUT_PULLUP);
|
||||||
pinMode(ANALOG_KEYER, INPUT_PULLUP);
|
pinMode(ANALOG_KEYER, INPUT_PULLUP);
|
||||||
|
pinMode(ANALOG_SMETER, INPUT); //by KD8CEC
|
||||||
|
|
||||||
pinMode(CW_TONE, OUTPUT);
|
pinMode(CW_TONE, OUTPUT);
|
||||||
digitalWrite(CW_TONE, 0);
|
digitalWrite(CW_TONE, 0);
|
||||||
@@ -958,7 +1086,7 @@ void setup()
|
|||||||
|
|
||||||
//Serial.begin(9600);
|
//Serial.begin(9600);
|
||||||
lcd.begin(16, 2);
|
lcd.begin(16, 2);
|
||||||
printLineF(1, F("CECBT v0.30"));
|
printLineF(1, F("CECBT v0.35"));
|
||||||
|
|
||||||
Init_Cat(38400, SERIAL_8N1);
|
Init_Cat(38400, SERIAL_8N1);
|
||||||
initMeter(); //not used in this build
|
initMeter(); //not used in this build
|
||||||
@@ -972,15 +1100,16 @@ void setup()
|
|||||||
else {
|
else {
|
||||||
printLineF(0, F("uBITX v0.20"));
|
printLineF(0, F("uBITX v0.20"));
|
||||||
delay(500);
|
delay(500);
|
||||||
printLine2("");
|
clearLine2();
|
||||||
}
|
}
|
||||||
|
|
||||||
initPorts();
|
initPorts();
|
||||||
|
|
||||||
|
byteToMode(vfoA_mode, 0);
|
||||||
initOscillators();
|
initOscillators();
|
||||||
|
|
||||||
frequency = vfoA;
|
frequency = vfoA;
|
||||||
saveCheckFreq = frequency; //for auto save frequency
|
saveCheckFreq = frequency; //for auto save frequency
|
||||||
byteToMode(vfoA_mode);
|
|
||||||
setFrequency(vfoA);
|
setFrequency(vfoA);
|
||||||
updateDisplay();
|
updateDisplay();
|
||||||
|
|
||||||
@@ -989,13 +1118,11 @@ void setup()
|
|||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
/**
|
|
||||||
* The loop checks for keydown, ptt, function button and tuning.
|
|
||||||
*/
|
|
||||||
//for debug
|
//for debug
|
||||||
int dbgCnt = 0;
|
int dbgCnt = 0;
|
||||||
byte flasher = 0;
|
byte flasher = 0;
|
||||||
|
|
||||||
|
//Auto save Frequency and Mode with Protected eeprom life by KD8CEC
|
||||||
void checkAutoSaveFreqMode()
|
void checkAutoSaveFreqMode()
|
||||||
{
|
{
|
||||||
//when tx or ritOn, disable auto save
|
//when tx or ritOn, disable auto save
|
||||||
@@ -1044,9 +1171,16 @@ void loop(){
|
|||||||
if (!inTx){
|
if (!inTx){
|
||||||
if (ritOn)
|
if (ritOn)
|
||||||
doRIT();
|
doRIT();
|
||||||
|
//else if (isIFShift)
|
||||||
|
// doIFShift();
|
||||||
else
|
else
|
||||||
doTuningWithThresHold();
|
doTuningWithThresHold();
|
||||||
|
|
||||||
|
if (isCWAutoMode == 0 && beforeIdle_ProcessTime < millis() - 250) {
|
||||||
|
idle_process();
|
||||||
|
beforeIdle_ProcessTime = millis();
|
||||||
}
|
}
|
||||||
|
} //end of check TX Status
|
||||||
|
|
||||||
//we check CAT after the encoder as it might put the radio into TX
|
//we check CAT after the encoder as it might put the radio into TX
|
||||||
Check_Cat(inTx? 1 : 0);
|
Check_Cat(inTx? 1 : 0);
|
||||||
|
@@ -14,6 +14,7 @@ void btnWaitForClick(){
|
|||||||
void factory_alignment(){
|
void factory_alignment(){
|
||||||
|
|
||||||
factoryCalibration(1);
|
factoryCalibration(1);
|
||||||
|
line2DisplayStatus = 1;
|
||||||
|
|
||||||
if (calibration == 0){
|
if (calibration == 0){
|
||||||
printLine2("Setup Aborted");
|
printLine2("Setup Aborted");
|
||||||
@@ -36,6 +37,7 @@ void factory_alignment(){
|
|||||||
|
|
||||||
|
|
||||||
printLine2("#3:Test 3.5MHz");
|
printLine2("#3:Test 3.5MHz");
|
||||||
|
cwMode = 0;
|
||||||
isUSB = false;
|
isUSB = false;
|
||||||
setFrequency(3500000l);
|
setFrequency(3500000l);
|
||||||
updateDisplay();
|
updateDisplay();
|
||||||
@@ -58,6 +60,7 @@ void factory_alignment(){
|
|||||||
btnWaitForClick();
|
btnWaitForClick();
|
||||||
printLine2("#5:Test 14MHz");
|
printLine2("#5:Test 14MHz");
|
||||||
|
|
||||||
|
cwMode = 0;
|
||||||
isUSB = true;
|
isUSB = true;
|
||||||
setFrequency(14000000l);
|
setFrequency(14000000l);
|
||||||
updateDisplay();
|
updateDisplay();
|
||||||
@@ -79,6 +82,7 @@ void factory_alignment(){
|
|||||||
printLine2("Alignment done");
|
printLine2("Alignment done");
|
||||||
delay(1000);
|
delay(1000);
|
||||||
|
|
||||||
|
cwMode = 0;
|
||||||
isUSB = false;
|
isUSB = false;
|
||||||
setFrequency(7150000l);
|
setFrequency(7150000l);
|
||||||
updateDisplay();
|
updateDisplay();
|
||||||
|
257
ubitx_20/ubitx_idle.ino
Normal file
257
ubitx_20/ubitx_idle.ino
Normal file
@@ -0,0 +1,257 @@
|
|||||||
|
/*************************************************************************
|
||||||
|
KD8CEC's uBITX Idle time Processing
|
||||||
|
Functions that run at times that do not affect TX, CW, and CAT
|
||||||
|
It is called in 1/10 time unit.
|
||||||
|
-----------------------------------------------------------------------------
|
||||||
|
This program is free software: you can redistribute it and/or modify
|
||||||
|
it under the terms of the GNU General Public License as published by
|
||||||
|
the Free Software Foundation, either version 3 of the License, or
|
||||||
|
(at your option) any later version.
|
||||||
|
|
||||||
|
This program is distributed in the hope that it will be useful,
|
||||||
|
but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||||
|
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||||
|
GNU General Public License for more details.
|
||||||
|
|
||||||
|
You should have received a copy of the GNU General Public License
|
||||||
|
along with this program. If not, see <http://www.gnu.org/licenses/>.
|
||||||
|
|
||||||
|
**************************************************************************/
|
||||||
|
char line2Buffer[16];
|
||||||
|
//KD8CEC 200Hz ST
|
||||||
|
//L14.150 200Hz ST
|
||||||
|
//U14.150 +150khz
|
||||||
|
int freqScrollPosition = 0;
|
||||||
|
//Example Line2 Optinal Display
|
||||||
|
//immediate execution, not call by scheulder
|
||||||
|
void updateLine2Buffer(char isDirectCall)
|
||||||
|
{
|
||||||
|
unsigned long tmpFreq = 0;
|
||||||
|
if (isDirectCall == 0)
|
||||||
|
{
|
||||||
|
if (ritOn)
|
||||||
|
{
|
||||||
|
line2Buffer[0] = 'R';
|
||||||
|
line2Buffer[1] = 'i';
|
||||||
|
line2Buffer[2] = 't';
|
||||||
|
line2Buffer[3] = 'T';
|
||||||
|
line2Buffer[4] = 'X';
|
||||||
|
line2Buffer[5] = ':';
|
||||||
|
|
||||||
|
//display frequency
|
||||||
|
tmpFreq = ritTxFrequency;
|
||||||
|
for (int i = 15; i >= 6; i--) {
|
||||||
|
if (tmpFreq > 0) {
|
||||||
|
if (i == 12 || i == 8) line2Buffer[i] = '.';
|
||||||
|
else {
|
||||||
|
line2Buffer[i] = tmpFreq % 10 + 0x30;
|
||||||
|
tmpFreq /= 10;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
else
|
||||||
|
line2Buffer[i] = ' ';
|
||||||
|
}
|
||||||
|
|
||||||
|
return;
|
||||||
|
} //end of ritOn display
|
||||||
|
|
||||||
|
//======================================================
|
||||||
|
//other VFO display
|
||||||
|
//======================================================
|
||||||
|
if (vfoActive == VFO_B)
|
||||||
|
{
|
||||||
|
tmpFreq = vfoA;
|
||||||
|
//line2Buffer[0] = 'A';
|
||||||
|
}
|
||||||
|
else
|
||||||
|
{
|
||||||
|
tmpFreq = vfoB;
|
||||||
|
//line2Buffer[0] = 'B';
|
||||||
|
}
|
||||||
|
|
||||||
|
// EXAMPLE 1 & 2
|
||||||
|
//U14.150.100
|
||||||
|
//display frequency
|
||||||
|
for (int i = 9; i >= 0; i--) {
|
||||||
|
if (tmpFreq > 0) {
|
||||||
|
if (i == 2 || i == 6) line2Buffer[i] = '.';
|
||||||
|
else {
|
||||||
|
line2Buffer[i] = tmpFreq % 10 + 0x30;
|
||||||
|
tmpFreq /= 10;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
else
|
||||||
|
line2Buffer[i] = ' ';
|
||||||
|
}
|
||||||
|
|
||||||
|
//EXAMPLE #1
|
||||||
|
if ((displayOption1 & 0x04) == 0x00) //none scroll display
|
||||||
|
line2Buffer[6] = 'k';
|
||||||
|
else
|
||||||
|
{
|
||||||
|
//example #2
|
||||||
|
if (freqScrollPosition++ > 18) //none scroll display time
|
||||||
|
{
|
||||||
|
line2Buffer[6] = 'k';
|
||||||
|
if (freqScrollPosition > 25)
|
||||||
|
freqScrollPosition = -1;
|
||||||
|
}
|
||||||
|
else //scroll frequency
|
||||||
|
{
|
||||||
|
line2Buffer[10] = 'H';
|
||||||
|
line2Buffer[11] = 'z';
|
||||||
|
|
||||||
|
if (freqScrollPosition < 7)
|
||||||
|
{
|
||||||
|
for (int i = 11; i >= 0; i--)
|
||||||
|
if (i - (7 - freqScrollPosition) >= 0)
|
||||||
|
line2Buffer[i] = line2Buffer[i - (7 - freqScrollPosition)];
|
||||||
|
else
|
||||||
|
line2Buffer[i] = ' ';
|
||||||
|
}
|
||||||
|
else
|
||||||
|
{
|
||||||
|
for (int i = 0; i < 11; i++)
|
||||||
|
if (i + (freqScrollPosition - 7) <= 11)
|
||||||
|
line2Buffer[i] = line2Buffer[i + (freqScrollPosition - 7)];
|
||||||
|
else
|
||||||
|
line2Buffer[i] = ' ';
|
||||||
|
}
|
||||||
|
}
|
||||||
|
} //scroll
|
||||||
|
|
||||||
|
line2Buffer[7] = ' ';
|
||||||
|
} //check direct call by encoder
|
||||||
|
|
||||||
|
if (isIFShift)
|
||||||
|
{
|
||||||
|
if (isDirectCall == 1)
|
||||||
|
for (int i = 0; i < 16; i++)
|
||||||
|
line2Buffer[i] = ' ';
|
||||||
|
|
||||||
|
//IFShift Offset Value
|
||||||
|
line2Buffer[8] = 'I';
|
||||||
|
line2Buffer[9] = 'F';
|
||||||
|
|
||||||
|
if (ifShiftValue == 0)
|
||||||
|
{
|
||||||
|
line2Buffer[10] = 'S';
|
||||||
|
line2Buffer[11] = ':';
|
||||||
|
line2Buffer[12] = 'O';
|
||||||
|
line2Buffer[13] = 'F';
|
||||||
|
line2Buffer[14] = 'F';
|
||||||
|
}
|
||||||
|
else
|
||||||
|
{
|
||||||
|
line2Buffer[10] = ifShiftValue >= 0 ? '+' : 0;
|
||||||
|
line2Buffer[11] = 0;
|
||||||
|
line2Buffer[12] = ' ';
|
||||||
|
|
||||||
|
//11, 12, 13, 14, 15
|
||||||
|
memset(b, 0, sizeof(b));
|
||||||
|
ltoa(ifShiftValue, b, DEC);
|
||||||
|
strncat(line2Buffer, b, 5);
|
||||||
|
}
|
||||||
|
|
||||||
|
if (isDirectCall == 1) //if call by encoder (not scheduler), immediate print value
|
||||||
|
printLine2(line2Buffer);
|
||||||
|
} // end of display IF
|
||||||
|
else // step display
|
||||||
|
{
|
||||||
|
if (isDirectCall != 0)
|
||||||
|
return;
|
||||||
|
|
||||||
|
memset(&line2Buffer[8], ' ', 8);
|
||||||
|
//Step
|
||||||
|
long tmpStep = arTuneStep[tuneStepIndex -1];
|
||||||
|
|
||||||
|
byte isStepKhz = 0;
|
||||||
|
if (tmpStep >= 1000)
|
||||||
|
{
|
||||||
|
isStepKhz = 2;
|
||||||
|
}
|
||||||
|
|
||||||
|
for (int i = 10; i >= 8 - isStepKhz; i--) {
|
||||||
|
if (tmpStep > 0) {
|
||||||
|
line2Buffer[i + isStepKhz] = tmpStep % 10 + 0x30;
|
||||||
|
tmpStep /= 10;
|
||||||
|
}
|
||||||
|
else
|
||||||
|
line2Buffer[i +isStepKhz] = ' ';
|
||||||
|
}
|
||||||
|
//if (isStepKhz == 1)
|
||||||
|
// line2Buffer[10] = 'k';
|
||||||
|
|
||||||
|
if (isStepKhz == 0)
|
||||||
|
{
|
||||||
|
line2Buffer[11] = 'H';
|
||||||
|
line2Buffer[12] = 'z';
|
||||||
|
}
|
||||||
|
|
||||||
|
line2Buffer[13] = ' ';
|
||||||
|
//if (
|
||||||
|
//Check CW Key cwKeyType = 0; //0: straight, 1 : iambica, 2: iambicb
|
||||||
|
if (cwKeyType == 0)
|
||||||
|
{
|
||||||
|
line2Buffer[14] = 'S';
|
||||||
|
line2Buffer[15] = 'T';
|
||||||
|
}
|
||||||
|
else if (cwKeyType == 1)
|
||||||
|
{
|
||||||
|
line2Buffer[14] = 'I';
|
||||||
|
line2Buffer[15] = 'A';
|
||||||
|
}
|
||||||
|
else
|
||||||
|
{
|
||||||
|
line2Buffer[14] = 'I';
|
||||||
|
line2Buffer[15] = 'B';
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
}
|
||||||
|
|
||||||
|
//meterType : 0 = S.Meter, 1 : P.Meter
|
||||||
|
void DisplayMeter(byte meterType, byte meterValue, char drawPosition)
|
||||||
|
{
|
||||||
|
drawMeter(meterValue); //call original source code
|
||||||
|
int lineNumber = 0;
|
||||||
|
if ((displayOption1 & 0x01) == 0x01)
|
||||||
|
lineNumber = 1;
|
||||||
|
|
||||||
|
lcd.setCursor(drawPosition, lineNumber);
|
||||||
|
|
||||||
|
for (int i = 0; i < 6; i++) //meter 5 + +db 1 = 6
|
||||||
|
lcd.write(lcdMeter[i]);
|
||||||
|
|
||||||
|
}
|
||||||
|
|
||||||
|
byte testValue = 0;
|
||||||
|
char checkCount = 0;
|
||||||
|
void idle_process()
|
||||||
|
{
|
||||||
|
//space for user graphic display
|
||||||
|
if (menuOn == 0)
|
||||||
|
{
|
||||||
|
if ((displayOption1 & 0x10) == 0x10) //always empty topline
|
||||||
|
return;
|
||||||
|
|
||||||
|
//if line2DisplayStatus == 0 <-- this condition is clear Line, you can display any message
|
||||||
|
if (line2DisplayStatus == 0 || (((displayOption1 & 0x04) == 0x04) && line2DisplayStatus == 2)) {
|
||||||
|
if (checkCount++ > 1)
|
||||||
|
{
|
||||||
|
updateLine2Buffer(0); //call by scheduler
|
||||||
|
printLine2(line2Buffer);
|
||||||
|
line2DisplayStatus = 2;
|
||||||
|
checkCount = 0;
|
||||||
|
}
|
||||||
|
|
||||||
|
//EX for Meters
|
||||||
|
/*
|
||||||
|
DisplayMeter(0, testValue++, 7);
|
||||||
|
if (testValue > 30)
|
||||||
|
testValue = 0;
|
||||||
|
*/
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
@@ -91,8 +91,6 @@ void cwKeyUp(){
|
|||||||
#define IAMBICB 0x10 // 0 for Iambic A, 1 for Iambic B
|
#define IAMBICB 0x10 // 0 for Iambic A, 1 for Iambic B
|
||||||
enum KSTYPE {IDLE, CHK_DIT, CHK_DAH, KEYED_PREP, KEYED, INTER_ELEMENT };
|
enum KSTYPE {IDLE, CHK_DIT, CHK_DAH, KEYED_PREP, KEYED, INTER_ELEMENT };
|
||||||
static long ktimer;
|
static long ktimer;
|
||||||
bool Iambic_Key = true;
|
|
||||||
unsigned char keyerControl = IAMBICB;
|
|
||||||
unsigned char keyerState = IDLE;
|
unsigned char keyerState = IDLE;
|
||||||
|
|
||||||
//Below is a test to reduce the keying error. do not delete lines
|
//Below is a test to reduce the keying error. do not delete lines
|
||||||
@@ -101,17 +99,17 @@ char update_PaddleLatch(byte isUpdateKeyState) {
|
|||||||
unsigned char tmpKeyerControl;
|
unsigned char tmpKeyerControl;
|
||||||
int paddle = analogRead(ANALOG_KEYER);
|
int paddle = analogRead(ANALOG_KEYER);
|
||||||
|
|
||||||
if (paddle > cwAdcDashFrom && paddle < cwAdcDashTo)
|
if (paddle >= cwAdcDashFrom && paddle <= cwAdcDashTo)
|
||||||
tmpKeyerControl |= DAH_L;
|
tmpKeyerControl |= DAH_L;
|
||||||
else if (paddle > cwAdcDotFrom && paddle < cwAdcDotTo)
|
else if (paddle >= cwAdcDotFrom && paddle <= cwAdcDotTo)
|
||||||
tmpKeyerControl |= DIT_L;
|
tmpKeyerControl |= DIT_L;
|
||||||
else if (paddle > cwAdcBothFrom && paddle < cwAdcBothTo)
|
else if (paddle >= cwAdcBothFrom && paddle <= cwAdcBothTo)
|
||||||
tmpKeyerControl |= (DAH_L | DIT_L) ;
|
tmpKeyerControl |= (DAH_L | DIT_L) ;
|
||||||
else
|
else
|
||||||
{
|
{
|
||||||
if (Iambic_Key)
|
if (Iambic_Key)
|
||||||
tmpKeyerControl = 0 ;
|
tmpKeyerControl = 0 ;
|
||||||
else if (paddle > cwAdcSTFrom && paddle < cwAdcSTTo)
|
else if (paddle >= cwAdcSTFrom && paddle <= cwAdcSTTo)
|
||||||
tmpKeyerControl = DIT_L ;
|
tmpKeyerControl = DIT_L ;
|
||||||
else
|
else
|
||||||
tmpKeyerControl = 0 ;
|
tmpKeyerControl = 0 ;
|
||||||
|
File diff suppressed because it is too large
Load Diff
@@ -109,7 +109,11 @@ void initOscillators(){
|
|||||||
//initialize the SI5351
|
//initialize the SI5351
|
||||||
si5351bx_init();
|
si5351bx_init();
|
||||||
si5351bx_vcoa = (SI5351BX_XTAL * SI5351BX_MSA) + calibration; // apply the calibration correction factor
|
si5351bx_vcoa = (SI5351BX_XTAL * SI5351BX_MSA) + calibration; // apply the calibration correction factor
|
||||||
si5351bx_setfreq(0, usbCarrier);
|
|
||||||
|
if (cwMode == 0)
|
||||||
|
si5351bx_setfreq(0, usbCarrier + (isIFShift ? ifShiftValue : 0));
|
||||||
|
else
|
||||||
|
si5351bx_setfreq(0, cwmCarrier + (isIFShift ? ifShiftValue : 0));
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
|
@@ -25,8 +25,8 @@ int btnDown(){
|
|||||||
* The current reading of the meter is assembled in the string called meter
|
* The current reading of the meter is assembled in the string called meter
|
||||||
*/
|
*/
|
||||||
|
|
||||||
//char meter[17];
|
|
||||||
|
|
||||||
|
/*
|
||||||
const PROGMEM uint8_t s_meter_bitmap[] = {
|
const PROGMEM uint8_t s_meter_bitmap[] = {
|
||||||
B00000,B00000,B00000,B00000,B00000,B00100,B00100,B11011,
|
B00000,B00000,B00000,B00000,B00000,B00100,B00100,B11011,
|
||||||
B10000,B10000,B10000,B10000,B10100,B10100,B10100,B11011,
|
B10000,B10000,B10000,B10000,B10100,B10100,B10100,B11011,
|
||||||
@@ -35,7 +35,18 @@ const PROGMEM uint8_t s_meter_bitmap[] = {
|
|||||||
B00010,B00010,B00010,B00010,B00110,B00110,B00110,B11011,
|
B00010,B00010,B00010,B00010,B00110,B00110,B00110,B11011,
|
||||||
B00001,B00001,B00001,B00001,B00101,B00101,B00101,B11011
|
B00001,B00001,B00001,B00001,B00101,B00101,B00101,B11011
|
||||||
};
|
};
|
||||||
PGM_P ps_meter_bitmap = reinterpret_cast<PGM_P>(s_meter_bitmap);
|
*/
|
||||||
|
|
||||||
|
const PROGMEM uint8_t meters_bitmap[] = {
|
||||||
|
B10000, B10000, B10000, B10000, B10000, B10000, B10000, B10000 , //custom 1
|
||||||
|
B11000, B11000, B11000, B11000, B11000, B11000, B11000, B11000 , //custom 2
|
||||||
|
B11100, B11100, B11100, B11100, B11100, B11100, B11100, B11100 , //custom 3
|
||||||
|
B11110, B11110, B11110, B11110, B11110, B11110, B11110, B11110 , //custom 4
|
||||||
|
B11111, B11111, B11111, B11111, B11111, B11111, B11111, B11111 , //custom 5
|
||||||
|
B01000, B11100, B01000, B00000, B10111, B10101, B10101, B10111 //custom 6
|
||||||
|
};
|
||||||
|
|
||||||
|
PGM_P p_metes_bitmap = reinterpret_cast<PGM_P>(meters_bitmap);
|
||||||
|
|
||||||
const PROGMEM uint8_t lock_bitmap[8] = {
|
const PROGMEM uint8_t lock_bitmap[8] = {
|
||||||
0b01110,
|
0b01110,
|
||||||
@@ -60,38 +71,56 @@ void initMeter(){
|
|||||||
lcd.createChar(0, tmpbytes);
|
lcd.createChar(0, tmpbytes);
|
||||||
|
|
||||||
for (i = 0; i < 8; i++)
|
for (i = 0; i < 8; i++)
|
||||||
tmpbytes[i] = pgm_read_byte(ps_meter_bitmap + i);
|
tmpbytes[i] = pgm_read_byte(p_metes_bitmap + i);
|
||||||
lcd.createChar(1, tmpbytes);
|
lcd.createChar(1, tmpbytes);
|
||||||
|
|
||||||
for (i = 0; i < 8; i++)
|
for (i = 0; i < 8; i++)
|
||||||
tmpbytes[i] = pgm_read_byte(ps_meter_bitmap + i + 8);
|
tmpbytes[i] = pgm_read_byte(p_metes_bitmap + i + 8);
|
||||||
lcd.createChar(2, tmpbytes);
|
lcd.createChar(2, tmpbytes);
|
||||||
|
|
||||||
for (i = 0; i < 8; i++)
|
for (i = 0; i < 8; i++)
|
||||||
tmpbytes[i] = pgm_read_byte(ps_meter_bitmap + i + 16);
|
tmpbytes[i] = pgm_read_byte(p_metes_bitmap + i + 16);
|
||||||
lcd.createChar(3, tmpbytes);
|
lcd.createChar(3, tmpbytes);
|
||||||
|
|
||||||
for (i = 0; i < 8; i++)
|
for (i = 0; i < 8; i++)
|
||||||
tmpbytes[i] = pgm_read_byte(ps_meter_bitmap + i + 24);
|
tmpbytes[i] = pgm_read_byte(p_metes_bitmap + i + 24);
|
||||||
lcd.createChar(4, tmpbytes);
|
lcd.createChar(4, tmpbytes);
|
||||||
|
|
||||||
for (i = 0; i < 8; i++)
|
for (i = 0; i < 8; i++)
|
||||||
tmpbytes[i] = pgm_read_byte(ps_meter_bitmap + i + 28);
|
tmpbytes[i] = pgm_read_byte(p_metes_bitmap + i + 32);
|
||||||
lcd.createChar(5, tmpbytes);
|
lcd.createChar(5, tmpbytes);
|
||||||
|
|
||||||
for (i = 0; i < 8; i++)
|
for (i = 0; i < 8; i++)
|
||||||
tmpbytes[i] = pgm_read_byte(ps_meter_bitmap + i + 32);
|
tmpbytes[i] = pgm_read_byte(p_metes_bitmap + i + 40);
|
||||||
lcd.createChar(6, tmpbytes);
|
lcd.createChar(6, tmpbytes);
|
||||||
}
|
}
|
||||||
|
|
||||||
/**
|
//by KD8CEC
|
||||||
* The meter is drawn with special characters.
|
//0 ~ 25 : 30 over : + 10
|
||||||
* character 1 is used to simple draw the blocks of the scale of the meter
|
void drawMeter(int needle) {
|
||||||
* characters 2 to 6 are used to draw the needle in positions 1 to within the block
|
//5Char + O over
|
||||||
* This displays a meter from 0 to 100, -1 displays nothing
|
int drawCharLength = needle / 5;
|
||||||
*/
|
int drawCharLengthLast = needle % 5;
|
||||||
|
int i;
|
||||||
|
|
||||||
/*
|
for (i = 0; i < 5; i++) {
|
||||||
|
if (needle >= 5)
|
||||||
|
lcdMeter[i] = 5; //full
|
||||||
|
else if (needle > 0)
|
||||||
|
lcdMeter[i] = needle; //full
|
||||||
|
else //0
|
||||||
|
lcdMeter[i] = 0x20;
|
||||||
|
|
||||||
|
needle -= 5;
|
||||||
|
}
|
||||||
|
|
||||||
|
if (needle > 0)
|
||||||
|
lcdMeter[5] = 6;
|
||||||
|
else
|
||||||
|
lcdMeter[5] = 0x20;
|
||||||
|
}
|
||||||
|
|
||||||
|
/*
|
||||||
void drawMeter(int8_t needle){
|
void drawMeter(int8_t needle){
|
||||||
int16_t best, i, s;
|
int16_t best, i, s;
|
||||||
|
|
||||||
@@ -101,21 +130,23 @@ void drawMeter(int8_t needle){
|
|||||||
s = (needle * 4)/10;
|
s = (needle * 4)/10;
|
||||||
for (i = 0; i < 8; i++){
|
for (i = 0; i < 8; i++){
|
||||||
if (s >= 5)
|
if (s >= 5)
|
||||||
meter[i] = 1;
|
lcdMeter[i] = 1;
|
||||||
else if (s >= 0)
|
else if (s >= 0)
|
||||||
meter[i] = 2 + s;
|
lcdMeter[i] = 2 + s;
|
||||||
else
|
else
|
||||||
meter[i] = 1;
|
lcdMeter[i] = 1;
|
||||||
s = s - 5;
|
s = s - 5;
|
||||||
}
|
}
|
||||||
if (needle >= 40)
|
if (needle >= 40)
|
||||||
meter[i-1] = 6;
|
lcdMeter[i-1] = 6;
|
||||||
meter[i] = 0;
|
lcdMeter[i] = 0;
|
||||||
}
|
}
|
||||||
*/
|
*/
|
||||||
|
|
||||||
// The generic routine to display one line on the LCD
|
// The generic routine to display one line on the LCD
|
||||||
void printLine(unsigned char linenmbr, const char *c) {
|
void printLine(unsigned char linenmbr, const char *c) {
|
||||||
|
if ((displayOption1 & 0x01) == 0x01)
|
||||||
|
linenmbr = (linenmbr == 0 ? 1 : 0); //Line Toggle
|
||||||
|
|
||||||
if (strcmp(c, printBuff[linenmbr])) { // only refresh the display when there was a change
|
if (strcmp(c, printBuff[linenmbr])) { // only refresh the display when there was a change
|
||||||
lcd.setCursor(0, linenmbr); // place the cursor at the beginning of the selected line
|
lcd.setCursor(0, linenmbr); // place the cursor at the beginning of the selected line
|
||||||
lcd.print(c);
|
lcd.print(c);
|
||||||
@@ -145,6 +176,9 @@ void printLineF(char linenmbr, const __FlashStringHelper *c)
|
|||||||
|
|
||||||
#define LCD_MAX_COLUMN 16
|
#define LCD_MAX_COLUMN 16
|
||||||
void printLineFromEEPRom(char linenmbr, char lcdColumn, byte eepromStartIndex, byte eepromEndIndex) {
|
void printLineFromEEPRom(char linenmbr, char lcdColumn, byte eepromStartIndex, byte eepromEndIndex) {
|
||||||
|
if ((displayOption1 & 0x01) == 0x01)
|
||||||
|
linenmbr = (linenmbr == 0 ? 1 : 0); //Line Toggle
|
||||||
|
|
||||||
lcd.setCursor(lcdColumn, linenmbr);
|
lcd.setCursor(lcdColumn, linenmbr);
|
||||||
|
|
||||||
for (byte i = eepromStartIndex; i <= eepromEndIndex; i++)
|
for (byte i = eepromStartIndex; i <= eepromEndIndex; i++)
|
||||||
@@ -168,6 +202,12 @@ void printLine2(const char *c){
|
|||||||
printLine(0,c);
|
printLine(0,c);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
void clearLine2()
|
||||||
|
{
|
||||||
|
printLine2("");
|
||||||
|
line2DisplayStatus = 0;
|
||||||
|
}
|
||||||
|
|
||||||
// short cut to print to the first line
|
// short cut to print to the first line
|
||||||
void printLine1Clear(){
|
void printLine1Clear(){
|
||||||
printLine(1,"");
|
printLine(1,"");
|
||||||
@@ -179,6 +219,7 @@ void printLine2Clear(){
|
|||||||
|
|
||||||
void printLine2ClearAndUpdate(){
|
void printLine2ClearAndUpdate(){
|
||||||
printLine(0, "");
|
printLine(0, "");
|
||||||
|
line2DisplayStatus = 0;
|
||||||
updateDisplay();
|
updateDisplay();
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -194,7 +235,6 @@ char byteToChar(byte srcByte){
|
|||||||
void updateDisplay() {
|
void updateDisplay() {
|
||||||
// tks Jack Purdum W8TEE
|
// tks Jack Purdum W8TEE
|
||||||
// replaced fsprint commmands by str commands for code size reduction
|
// replaced fsprint commmands by str commands for code size reduction
|
||||||
|
|
||||||
// replace code for Frequency numbering error (alignment, point...) by KD8CEC
|
// replace code for Frequency numbering error (alignment, point...) by KD8CEC
|
||||||
int i;
|
int i;
|
||||||
unsigned long tmpFreq = frequency; //
|
unsigned long tmpFreq = frequency; //
|
||||||
@@ -221,11 +261,22 @@ void updateDisplay() {
|
|||||||
if (ritOn)
|
if (ritOn)
|
||||||
strcpy(c, "RIT ");
|
strcpy(c, "RIT ");
|
||||||
else {
|
else {
|
||||||
|
if (cwMode == 0)
|
||||||
|
{
|
||||||
if (isUSB)
|
if (isUSB)
|
||||||
strcpy(c, "USB ");
|
strcpy(c, "USB ");
|
||||||
else
|
else
|
||||||
strcpy(c, "LSB ");
|
strcpy(c, "LSB ");
|
||||||
}
|
}
|
||||||
|
else if (cwMode == 1)
|
||||||
|
{
|
||||||
|
strcpy(c, "CWL ");
|
||||||
|
}
|
||||||
|
else
|
||||||
|
{
|
||||||
|
strcpy(c, "CWU ");
|
||||||
|
}
|
||||||
|
}
|
||||||
if (vfoActive == VFO_A) // VFO A is active
|
if (vfoActive == VFO_A) // VFO A is active
|
||||||
strcat(c, "A:");
|
strcat(c, "A:");
|
||||||
else
|
else
|
||||||
@@ -251,18 +302,22 @@ void updateDisplay() {
|
|||||||
// strcat(c, " TX");
|
// strcat(c, " TX");
|
||||||
printLine(1, c);
|
printLine(1, c);
|
||||||
|
|
||||||
|
byte diplayVFOLine = 1;
|
||||||
|
if ((displayOption1 & 0x01) == 0x01)
|
||||||
|
diplayVFOLine = 0;
|
||||||
|
|
||||||
if ((vfoActive == VFO_A && ((isDialLock & 0x01) == 0x01)) ||
|
if ((vfoActive == VFO_A && ((isDialLock & 0x01) == 0x01)) ||
|
||||||
(vfoActive == VFO_B && ((isDialLock & 0x02) == 0x02))) {
|
(vfoActive == VFO_B && ((isDialLock & 0x02) == 0x02))) {
|
||||||
lcd.setCursor(5,1);
|
lcd.setCursor(5,diplayVFOLine);
|
||||||
lcd.write((uint8_t)0);
|
lcd.write((uint8_t)0);
|
||||||
}
|
}
|
||||||
else if (isCWAutoMode == 2){
|
else if (isCWAutoMode == 2){
|
||||||
lcd.setCursor(5,1);
|
lcd.setCursor(5,diplayVFOLine);
|
||||||
lcd.write(0x7E);
|
lcd.write(0x7E);
|
||||||
}
|
}
|
||||||
else
|
else
|
||||||
{
|
{
|
||||||
lcd.setCursor(5,1);
|
lcd.setCursor(5,diplayVFOLine);
|
||||||
lcd.write(":");
|
lcd.write(":");
|
||||||
}
|
}
|
||||||
|
|
||||||
|
Reference in New Issue
Block a user