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https://github.com/DCC-EX/CommandStation-EX.git
synced 2024-11-23 08:06:13 +01:00
A few more name changes to more generic names
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35f3cca9b3
commit
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@ -67,12 +67,12 @@ size_t Display::write(uint8_t b) {
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}
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}
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void Display::loop() {
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void Display::loop() {
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if (!lcdDisplay) return;
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if (!displayHandler) return;
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lcdDisplay->loop2(false);
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displayHandler->loop2(false);
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}
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}
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Display *Display::loop2(bool force) {
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Display *Display::loop2(bool force) {
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if (!lcdDisplay) return NULL;
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if (!displayHandler) return NULL;
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// If output device is busy, don't do anything on this loop
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// If output device is busy, don't do anything on this loop
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// This avoids blocking while waiting for the device to complete.
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// This avoids blocking while waiting for the device to complete.
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@ -21,4 +21,4 @@
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#include "DisplayInterface.h"
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#include "DisplayInterface.h"
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DisplayInterface *DisplayInterface::lcdDisplay = 0;
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DisplayInterface *DisplayInterface::displayHandler = 0;
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@ -41,7 +41,7 @@ public:
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if (!displayNo) clear();
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if (!displayNo) clear();
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}
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}
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static DisplayInterface *lcdDisplay;
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static DisplayInterface *displayHandler;
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};
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};
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#endif
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#endif
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@ -40,14 +40,14 @@
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// LiquidCrystal_I2C for I2C LCD driver for HD44780 with PCF8574 'backpack'.
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// LiquidCrystal_I2C for I2C LCD driver for HD44780 with PCF8574 'backpack'.
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#if defined(OLED_DRIVER)
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#if defined(OLED_DRIVER)
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#define CONDITIONAL_LCD_START for (DisplayInterface * dummy=new SSD1306AsciiWire(OLED_DRIVER);dummy!=NULL; dummy=dummy->loop2(true))
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#define CONDITIONAL_DISPLAY_START for (DisplayInterface * dummy=new SSD1306AsciiWire(OLED_DRIVER);dummy!=NULL; dummy=dummy->loop2(true))
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#elif defined(LCD_DRIVER)
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#elif defined(LCD_DRIVER)
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#define CONDITIONAL_LCD_START for (DisplayInterface * dummy=new LiquidCrystal_I2C(LCD_DRIVER);dummy!=NULL; dummy=dummy->loop2(true))
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#define CONDITIONAL_DISPLAY_START for (DisplayInterface * dummy=new LiquidCrystal_I2C(LCD_DRIVER);dummy!=NULL; dummy=dummy->loop2(true))
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#else
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#else
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// Create null display handler just in case someone calls lcdDisplay->something without checking if lcdDisplay is NULL!
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// Create null display handler just in case someone calls displayHandler->something without checking if displayHandler is NULL!
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#define CONDITIONAL_LCD_START { new DisplayInterface(); }
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#define CONDITIONAL_DISPLAY_START { new DisplayInterface(); }
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#endif
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#endif
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#endif // LCD_Implementation_h
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#endif // LCD_Implementation_h
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@ -110,11 +110,11 @@ protected:
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oled = new SSD1306AsciiWire();
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oled = new SSD1306AsciiWire();
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// Store pointer to this object into CS display hook, so that we
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// Store pointer to this object into CS display hook, so that we
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// will intercept any subsequent calls to lcdDisplay methods.
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// will intercept any subsequent calls to displayHandler methods.
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// Make a note of the existing display reference, to that we can
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// Make a note of the existing display reference, to that we can
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// pass on anything we're not interested in.
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// pass on anything we're not interested in.
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_nextDisplay = DisplayInterface::lcdDisplay;
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_nextDisplay = DisplayInterface::displayHandler;
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DisplayInterface::lcdDisplay = this;
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DisplayInterface::displayHandler = this;
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addDevice(this);
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addDevice(this);
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}
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}
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@ -57,7 +57,7 @@ LiquidCrystal_I2C::LiquidCrystal_I2C(I2CAddress lcd_Addr, uint8_t lcd_cols,
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_displayfunction = LCD_4BITMODE | LCD_1LINE | LCD_5x8DOTS;
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_displayfunction = LCD_4BITMODE | LCD_1LINE | LCD_5x8DOTS;
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begin();
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begin();
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backlight();
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backlight();
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lcdDisplay = this;
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displayHandler = this;
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}
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}
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}
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}
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@ -160,7 +160,7 @@ SSD1306AsciiWire::SSD1306AsciiWire(int width, int height) {
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if (I2CManager.exists(address)) {
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if (I2CManager.exists(address)) {
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begin(address, width, height);
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begin(address, width, height);
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// Set singleton Address so CS is able to call it.
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// Set singleton Address so CS is able to call it.
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lcdDisplay = this;
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displayHandler = this;
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return;
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return;
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}
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}
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}
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}
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@ -45,19 +45,19 @@ void StringFormatter::lcd(byte row, const FSH* input...) {
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send2(&USB_SERIAL,input,args);
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send2(&USB_SERIAL,input,args);
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send(&USB_SERIAL,F(" *>\n"));
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send(&USB_SERIAL,F(" *>\n"));
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if (!Display::lcdDisplay) return;
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if (!Display::displayHandler) return;
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Display::lcdDisplay->setRow(row);
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Display::displayHandler->setRow(row);
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va_start(args, input);
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va_start(args, input);
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send2(Display::lcdDisplay,input,args);
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send2(Display::displayHandler,input,args);
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}
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}
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void StringFormatter::lcd2(uint8_t display, byte row, const FSH* input...) {
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void StringFormatter::lcd2(uint8_t display, byte row, const FSH* input...) {
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va_list args;
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va_list args;
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if (!Display::lcdDisplay) return;
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if (!Display::displayHandler) return;
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Display::lcdDisplay->setRow(display, row);
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Display::displayHandler->setRow(display, row);
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va_start(args, input);
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va_start(args, input);
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send2(Display::lcdDisplay,input,args);
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send2(Display::displayHandler,input,args);
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}
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}
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void StringFormatter::send(Print * stream, const FSH* input...) {
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void StringFormatter::send(Print * stream, const FSH* input...) {
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@ -13,7 +13,8 @@
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// PCF8575 I2C GPIO driver added.
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// PCF8575 I2C GPIO driver added.
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// EX-RAIL ANOUT function for triggering analogue
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// EX-RAIL ANOUT function for triggering analogue
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// HAL drivers (e.g. analogue outputs, DFPlayer, PWM).
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// HAL drivers (e.g. analogue outputs, DFPlayer, PWM).
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// Installable HAL OLED Display Driver.
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// Installable HAL OLED Display Driver, with
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// support for multiple displays.
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// Layered HAL Drivers PCA9685pwm and Servo added for
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// Layered HAL Drivers PCA9685pwm and Servo added for
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// (1) native PWM on PCA9685 module and
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// (1) native PWM on PCA9685 module and
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// (2) animations of servo movement via PCA9685pwm.
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// (2) animations of servo movement via PCA9685pwm.
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