mirror of
https://codeberg.org/mclemens/ubitxv6.git
synced 2024-11-20 00:56:14 -05:00
Merge updated pdq_gfx_update branch into one_stop_settings
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commit
4d7739d6dd
138
setup.cpp
138
setup.cpp
@ -25,11 +25,74 @@ void setupExit(){
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//this is used by the si5351 routines in the ubitx_5351 file
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extern uint32_t si5351bx_vcoa;
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static const unsigned int COLOR_TEXT = DISPLAY_WHITE;
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static const unsigned int COLOR_BACKGROUND = DISPLAY_BLACK;
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static const unsigned int COLOR_TITLE_BACKGROUND = DISPLAY_NAVY;
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static const unsigned int COLOR_SETTING_BACKGROUND = DISPLAY_NAVY;
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static const unsigned int COLOR_ACTIVE_BORDER = DISPLAY_WHITE;
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static const unsigned int COLOR_INACTIVE_BORDER = COLOR_BACKGROUND;
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static const unsigned int LAYOUT_OUTER_BORDER_X = 10;
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static const unsigned int LAYOUT_OUTER_BORDER_Y = 10;
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static const unsigned int LAYOUT_OUTER_BORDER_WIDTH = 300;
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static const unsigned int LAYOUT_OUTER_BORDER_HEIGHT = 220;
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static const unsigned int LAYOUT_INNER_BORDER_X = 12;
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static const unsigned int LAYOUT_INNER_BORDER_Y = 12;
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static const unsigned int LAYOUT_INNER_BORDER_WIDTH = 296;
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static const unsigned int LAYOUT_INNER_BORDER_HEIGHT = 216;
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static const unsigned int LAYOUT_TITLE_X = LAYOUT_INNER_BORDER_X;
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static const unsigned int LAYOUT_TITLE_Y = LAYOUT_INNER_BORDER_Y;
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static const unsigned int LAYOUT_TITLE_WIDTH = LAYOUT_INNER_BORDER_WIDTH;
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static const unsigned int LAYOUT_TITLE_HEIGHT = 35;
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static const unsigned int LAYOUT_ITEM_X = 30;
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static const unsigned int LAYOUT_ITEM_Y = LAYOUT_TITLE_Y + LAYOUT_TITLE_HEIGHT + 5;
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static const unsigned int LAYOUT_ITEM_WIDTH = 260;
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static const unsigned int LAYOUT_ITEM_HEIGHT = 30;
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static const unsigned int LAYOUT_ITEM_PITCH_Y = LAYOUT_ITEM_HEIGHT + 1;
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static const unsigned int LAYOUT_SETTING_VALUE_X = LAYOUT_ITEM_X;
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static const unsigned int LAYOUT_SETTING_VALUE_Y = LAYOUT_ITEM_Y + 3*LAYOUT_ITEM_PITCH_Y;
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static const unsigned int LAYOUT_SETTING_VALUE_WIDTH = LAYOUT_ITEM_WIDTH;
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static const unsigned int LAYOUT_SETTING_VALUE_HEIGHT = LAYOUT_ITEM_HEIGHT;
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static const unsigned int LAYOUT_INSTRUCTION_TEXT_X = 20;
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static const unsigned int LAYOUT_INSTRUCTION_TEXT_Y = LAYOUT_ITEM_Y + 5*LAYOUT_ITEM_PITCH_Y;
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static const unsigned int LAYOUT_INSTRUCTION_TEXT_WIDTH = LAYOUT_ITEM_WIDTH;
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static const unsigned int LAYOUT_INSTRUCTION_TEXT_HEIGHT = LAYOUT_ITEM_HEIGHT;
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void displayDialog(const __FlashStringHelper* title, const __FlashStringHelper* instructions){
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strcpy_P(b,(const char*)title);
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strcpy_P(c,(const char*)instructions);
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displayClear(COLOR_BACKGROUND);
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displayRect(LAYOUT_OUTER_BORDER_X,LAYOUT_OUTER_BORDER_Y,LAYOUT_OUTER_BORDER_WIDTH,LAYOUT_OUTER_BORDER_HEIGHT, COLOR_ACTIVE_BORDER);
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displayRect(LAYOUT_INNER_BORDER_X,LAYOUT_INNER_BORDER_Y,LAYOUT_INNER_BORDER_WIDTH,LAYOUT_INNER_BORDER_HEIGHT, COLOR_ACTIVE_BORDER);
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displayText(b, LAYOUT_TITLE_X, LAYOUT_TITLE_Y, LAYOUT_TITLE_WIDTH, LAYOUT_TITLE_HEIGHT, COLOR_TEXT, COLOR_TITLE_BACKGROUND, COLOR_ACTIVE_BORDER);
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displayText(c, LAYOUT_INSTRUCTION_TEXT_X, LAYOUT_INSTRUCTION_TEXT_Y, LAYOUT_INSTRUCTION_TEXT_WIDTH, LAYOUT_INSTRUCTION_TEXT_HEIGHT, COLOR_TEXT, COLOR_BACKGROUND, COLOR_BACKGROUND);
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}
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void printCarrierFreq(unsigned long freq){
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memset(c, 0, sizeof(c));
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memset(b, 0, sizeof(b));
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ultoa(freq, b, DEC);
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strncat(c, b, 2);
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strcat_P(c,(const char*)F("."));
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strncat(c, &b[2], 3);
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strcat(c,(const char*)F("."));
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strncat(c, &b[5], 1);
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_TITLE_BACKGROUND, COLOR_BACKGROUND);
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}
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void setupFreq(){
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int knob = 0;
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int32_t prev_calibration;
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displayDialog("Set Frequency", "Push TUNE to Save");
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displayDialog(F("Set Frequency"),F("Push TUNE to Save"));
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//round off the the nearest khz
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{
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@ -38,13 +101,18 @@ void setupFreq(){
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setFrequency(freq);
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}
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displayRawText("You should have a", 20, 50, DISPLAY_CYAN, DISPLAY_NAVY);
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displayRawText("signal exactly at ", 20, 75, DISPLAY_CYAN, DISPLAY_NAVY);
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strcpy_P(c,(const char*)F("You should have a"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_ITEM_Y, LAYOUT_ITEM_WIDTH, LAYOUT_ITEM_HEIGHT, COLOR_TEXT, COLOR_BACKGROUND, COLOR_BACKGROUND);
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strcpy_P(c,(const char*)F("signal exactly at"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_ITEM_Y + 1*LAYOUT_ITEM_PITCH_Y, LAYOUT_ITEM_WIDTH, LAYOUT_ITEM_HEIGHT, COLOR_TEXT, COLOR_BACKGROUND, COLOR_BACKGROUND);
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ltoa(GetActiveVfoFreq()/1000l, c, 10);
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strcat(c, " KHz");
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displayRawText(c, 20, 100, DISPLAY_CYAN, DISPLAY_NAVY);
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strcat_P(c,(const char*)F(" KHz"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_ITEM_Y + 2*LAYOUT_ITEM_PITCH_Y, LAYOUT_ITEM_WIDTH, LAYOUT_ITEM_HEIGHT, COLOR_TEXT, COLOR_BACKGROUND, COLOR_BACKGROUND);
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strcpy_P(c,(const char*)F("Rotate to zerobeat"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_ITEM_Y + 4*LAYOUT_ITEM_PITCH_Y, LAYOUT_ITEM_WIDTH, LAYOUT_ITEM_HEIGHT, COLOR_TEXT, COLOR_BACKGROUND, COLOR_BACKGROUND);
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displayRawText("Rotate to zerobeat", 20, 180, DISPLAY_CYAN, DISPLAY_NAVY);
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ltoa(calibration, b, 10);
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displayText(b, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_TITLE_BACKGROUND, COLOR_BACKGROUND);
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//keep clear of any previous button press
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while (btnDown())
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active_delay(100);
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@ -53,11 +121,6 @@ void setupFreq(){
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prev_calibration = globalSettings.oscillatorCal;
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globalSettings.oscillatorCal = 0;
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// ltoa(calibration/8750, c, 10);
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// strcpy(b, c);
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// strcat(b, "Hz");
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// printLine2(b);
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while (!btnDown())
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{
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knob = enc_read();
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@ -72,10 +135,8 @@ void setupFreq(){
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si5351_set_calibration(globalSettings.oscillatorCal);
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setFrequency(GetActiveVfoFreq());
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//displayRawText("Rotate to zerobeat", 20, 120, DISPLAY_CYAN, DISPLAY_NAVY);
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ltoa(globalSettings.oscillatorCal, b, 10);
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displayText(b, 100, 140, 100, 26, DISPLAY_CYAN, DISPLAY_NAVY, DISPLAY_WHITE);
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displayText(b, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_TITLE_BACKGROUND, COLOR_BACKGROUND);
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}
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SaveSettingsToEeprom();
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@ -95,7 +156,7 @@ void setupBFO(){
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prevCarrier = globalSettings.usbCarrierFreq;
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displayDialog("Set BFO", "Press TUNE to Save");
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displayDialog(F("Set BFO"),F("Press TUNE to Save"));
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globalSettings.usbCarrierFreq = 11053000l;
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si5351bx_setfreq(0, globalSettings.usbCarrierFreq);
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@ -127,14 +188,14 @@ void setupCwDelay(){
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int knob = 0;
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int prev_cw_delay;
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displayDialog("Set CW T/R Delay", "Press tune to Save");
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displayDialog(F("Set CW T/R Delay"),F("Press tune to Save"));
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active_delay(500);
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prev_cw_delay = globalSettings.cwActiveTimeoutMs;
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ltoa(globalSettings.cwActiveTimeoutMs, b, 10);
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strcat(b, " msec");
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displayText(b, 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcat_P(b,(const char*)F(" msec"));
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displayText(b, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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while (!btnDown()){
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knob = enc_read();
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@ -147,8 +208,8 @@ void setupCwDelay(){
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continue; //don't update the frequency or the display
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ltoa(globalSettings.cwActiveTimeoutMs, b, 10);
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strcat(b, " msec");
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displayText(b, 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcat_P(b,(const char*)F(" msec"));
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displayText(b, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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}
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@ -158,16 +219,19 @@ void setupCwDelay(){
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}
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void setupKeyer(){
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displayDialog("Set CW Keyer", "Press tune to Save");
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displayDialog(F("Set CW Keyer"),F("Press tune to Save"));
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if(KeyerMode_e::KEYER_STRAIGHT == globalSettings.keyerMode){
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displayText("< Hand Key >", 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcpy_P(c,(const char*)F("< Hand Key >"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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}
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else if(KeyerMode_e::KEYER_IAMBIC_A == globalSettings.keyerMode){
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displayText("< Iambic A >", 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcpy_P(c,(const char*)F("< Iambic A >"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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}
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else{
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displayText("< Iambic B >", 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcpy_P(c,(const char*)F("< Iambic B >"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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}
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int knob = 0;
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@ -187,13 +251,16 @@ void setupKeyer(){
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}
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if (KeyerMode_e::KEYER_STRAIGHT == tmp_mode){
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displayText("< Hand Key >", 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcpy_P(c,(const char*)F("< Hand Key >"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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}
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else if(KeyerMode_e::KEYER_IAMBIC_A == tmp_mode){
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displayText("< Iambic A >", 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcpy_P(c,(const char*)F("< Iambic A >"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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}
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else if (KeyerMode_e::KEYER_IAMBIC_B == tmp_mode){
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displayText("< Iambic B >", 100, 100, 120, 26, DISPLAY_CYAN, DISPLAY_BLACK, DISPLAY_BLACK);
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strcpy_P(c,(const char*)F("< Iambic B >"));
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displayText(c, LAYOUT_SETTING_VALUE_X, LAYOUT_SETTING_VALUE_Y, LAYOUT_SETTING_VALUE_WIDTH, LAYOUT_SETTING_VALUE_HEIGHT, COLOR_TEXT, COLOR_SETTING_BACKGROUND, COLOR_BACKGROUND);
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}
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}
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@ -205,23 +272,6 @@ void setupKeyer(){
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setupExit();
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}
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static const unsigned int COLOR_TEXT = DISPLAY_WHITE;
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static const unsigned int COLOR_BACKGROUND = DISPLAY_BLACK;
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static const unsigned int COLOR_TITLE_BACKGROUND = DISPLAY_NAVY;
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static const unsigned int COLOR_ACTIVE_BORDER = DISPLAY_WHITE;
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static const unsigned int COLOR_INACTIVE_BORDER = DISPLAY_DARKGREY;
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static const unsigned int LAYOUT_TITLE_X = 10;
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static const unsigned int LAYOUT_TITLE_Y = 10;
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static const unsigned int LAYOUT_TITLE_WIDTH = 300;
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static const unsigned int LAYOUT_TITLE_HEIGHT = 35;
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static const unsigned int LAYOUT_ITEM_X = 30;
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static const unsigned int LAYOUT_ITEM_Y = LAYOUT_TITLE_Y + LAYOUT_TITLE_HEIGHT + 5;
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static const unsigned int LAYOUT_ITEM_WIDTH = 260;
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static const unsigned int LAYOUT_ITEM_HEIGHT = 30;
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static const unsigned int LAYOUT_ITEM_PITCH_Y = 31;
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const char MI_SET_FREQ [] PROGMEM = "Set Freq...";
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const char MI_SET_BFO [] PROGMEM = "Set BFO...";
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const char MI_CW_DELAY [] PROGMEM = "CW Delay...";
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7
ubitx.h
7
ubitx.h
@ -126,13 +126,6 @@ void doSetup2(); //main setup function, displays the setup menu, calls various d
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void setupBFO();
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void setupFreq();
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//displays a nice dialog box with a title and instructions as footnotes
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void displayDialog(char *title, char *instructions);
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void printCarrierFreq(unsigned long freq); //used to display the frequency in the command area (ex: fast tuning)
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//main functions to check if any button is pressed and other user interface events
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void doCommands(); //does the commands with encoder to jump from button to button
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void checkTouch(); //does the commands with a touch on the buttons
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24
ubitx_ui.cpp
24
ubitx_ui.cpp
@ -219,30 +219,6 @@ int getValueByKnob(int minimum, int maximum, int step_size, int initial, char*
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return knob_value;
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}
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void printCarrierFreq(unsigned long freq){
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memset(c, 0, sizeof(c));
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memset(b, 0, sizeof(b));
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ultoa(freq, b, DEC);
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strncat(c, b, 2);
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strcat(c, ".");
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strncat(c, &b[2], 3);
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strcat(c, ".");
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strncat(c, &b[5], 1);
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displayText(c, 110, 100, 100, 30, COLOR_TEXT, COLOR_BACKGROUND, COLOR_BACKGROUND);
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}
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void displayDialog(char *title, char *instructions){
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displayClear(COLOR_BACKGROUND);
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displayRect(10,10,300,220, COLOR_TEXT);
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displayHline(20,45,280,COLOR_TEXT);
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displayRect(12,12,296,216, COLOR_TEXT);
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displayRawText(title, 20, 20, COLOR_TEXT, COLOR_BACKGROUND);
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displayRawText(instructions, 20, 200, COLOR_TEXT, COLOR_BACKGROUND);
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}
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void displayVFO(Vfo_e vfo){
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int x, y;
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int displayColor, displayBackground, displayBorder;
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