rename LED LEDInterface
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@ -2,7 +2,7 @@
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/* USB_LED_bit are codes from http://www.usb.org/developers/hidpage/HID1_11.pdf keyboard output report
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*/
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Code_LEDLock::Code_LEDLock(const uint16_t scancode, LED& refLED)
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Code_LEDLock::Code_LEDLock(const uint16_t scancode, LEDInterface& refLED)
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: scancode(scancode), refLED(refLED)
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{
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switch (scancode) //initilize USB_LED_bit for given scancode
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@ -3,7 +3,7 @@
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#include <Arduino.h>
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#include <inttypes.h>
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#include <Code.h>
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#include <LED.h>
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#include <LEDInterface.h>
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extern volatile uint8_t keyboard_leds;
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@ -21,11 +21,11 @@ class Code_LEDLock : public Code
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private:
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const uint16_t scancode;
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uint8_t USB_LED_bit; //codes used by keyboard output report
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LED& refLED; //indicator on keyboard
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LEDInterface& refLED; //indicator on keyboard
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void updateLED() const;
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public:
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Code_LEDLock(const uint16_t scancode, LED& refLED);
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Code_LEDLock(const uint16_t scancode, LEDInterface& refLED);
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virtual void press();
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virtual void release();
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};
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@ -31,7 +31,7 @@ void Debug::printScansPerSecond()
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//Sometimes OS takes 6 seconds to recongnize keyboard.
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//wait_for_OS() will blink LED and count up once per second for specified number of seconds.
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void Debug::wait_for_OS(LED& led, const uint8_t seconds)
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void Debug::wait_for_OS(LEDInterface& led, const uint8_t seconds)
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{
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for (uint8_t elapsed = 0; elapsed < seconds; elapsed++)
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{
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@ -1,13 +1,13 @@
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#ifndef DEBUG_H
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#define DEBUG_H
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#include <Arduino.h>
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#include <LED.h>
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#include <LEDInterface.h>
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class Debug
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{
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public:
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void printMicrosecondsPerScan(); //print microseconds per scan every second
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void printScansPerSecond(); //print scans per second every second
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void wait_for_OS(LED& led, uint8_t seconds); //wait for OS to recongnize keyboard
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void wait_for_OS(LEDInterface& led, uint8_t seconds); //wait for OS to recongnize keyboard
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};
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#endif
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13
src/LED.h
13
src/LED.h
@ -1,13 +0,0 @@
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#ifndef LED_H
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#define LED_H
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/* LED is an interface class
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Each LED object is an IC pin that is used to power an LED on and off.
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*/
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class LED
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{
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public:
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virtual void on()=0;
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virtual void off()=0;
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};
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#endif
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12
src/LEDInterface.h
Normal file
12
src/LEDInterface.h
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@ -0,0 +1,12 @@
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#ifndef LEDINTERFACE_H
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#define LEDINTERFACE_H
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/* Each LED object is an IC pin that is used to power an LED on and off.
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*/
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class LEDInterface
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{
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public:
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virtual void on()=0;
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virtual void off()=0;
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};
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#endif
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@ -3,13 +3,13 @@
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#include <Arduino.h>
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#include <inttypes.h>
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#include <Wire.h>
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#include <LED.h>
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#include <LEDInterface.h>
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#include <PortInterface.h>
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/* A LED_IOE object is an I/O expander pin that is connected to an LED indicator light.
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Input/Ouput Direction configuration are set to ouput in PortWrite_*.begin() and PortRead_*.begin(). todo PortRead_*??
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*/
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class LED_IOE : public LED
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class LED_IOE : public LEDInterface
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{
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private:
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PortInterface& refPort;
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@ -2,11 +2,11 @@
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#define LED_UC_H
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#include <Arduino.h>
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#include <inttypes.h>
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#include <LED.h>
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#include <LEDInterface.h>
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/* A LED_uC turns LED on and off.
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*/
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class LED_uC: public LED
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class LED_uC: public LEDInterface
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{
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private:
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const uint8_t pin; //Aduino pin that is connected to an LED
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@ -4,7 +4,7 @@
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#include <Arduino.h>
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#include <inttypes.h>
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#include <LayerState.h>
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#include <LED.h>
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#include <LEDInterface.h>
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/* Basic LayerState with layer LED indictor lights.
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begin() should be called once to turn on LED for initial active layer.
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@ -12,10 +12,10 @@ begin() should be called once to turn on LED for initial active layer.
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class LayerState_LED : public LayerState
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{
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private:
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LED*const *const ptrsLEDs; //array of LEDs, where layerId is array index
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LEDInterface*const *const ptrsLEDs; //array of LEDs, where layerId is array index
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virtual void setActiveLayer(const uint8_t layerId);//set active layerId and turn on it's LED
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public:
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LayerState_LED(LED*const ptrsLEDs[]): ptrsLEDs(ptrsLEDs) {}
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LayerState_LED(LEDInterface*const ptrsLEDs[]): ptrsLEDs(ptrsLEDs) {}
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void begin();
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};
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#endif
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@ -50,7 +50,7 @@ The active layerId is used as an index to dereference the prtsLayerLEDs[] array.
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*/
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enum layers { NORMAL, FN };
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LED* prtsLayerLEDs[] = { &LED_normal, &LED_fn }; //array index matches enum layerIds
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LEDInterface* prtsLayerLEDs[] = { &LED_normal, &LED_fn }; //array index matches enum layerIds
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LayerState_LED layerState(prtsLayerLEDs);
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Code_LayerHold l_fn(FN, layerState);
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@ -28,7 +28,7 @@ This layout table shows left and right matrices:
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#include <LED_uC.h>
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//right matrix
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#include <PortMCP23S17.h>
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#include <Port_MCP23S17.h>
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#include <Scanner_IOE.h>
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#include <LED_IOE.h>
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@ -47,8 +47,8 @@ LED_uC LED_CapsLck(21);
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// --------------- RIGHT SCANNER ---------------
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const uint8_t IOE_ADDR = 0x20; //MCP23S17 address, all 3 ADDR pins are grounded
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PortMCP23S17 portA(IOE_ADDR, 0, 1<<0 | 1<<1 ); //for read and LED
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PortMCP23S17 portB(IOE_ADDR, 1, 0); //for strobe and LED
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Port_MCP23S17 portA(IOE_ADDR, 0, 1<<0 | 1<<1 ); //for read and LED
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Port_MCP23S17 portB(IOE_ADDR, 1, 0); //for strobe and LED
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Scanner_IOE scanner_R(LOW, portB, portA);
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@ -60,7 +60,7 @@ LED_IOE LED_fn(portB, 1<<4);
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// ---------------- LAYER CODE -----------------
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enum layers { NORMAL, FN };
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LED* prtsLayerLEDs[] = { &LED_normal, &LED_fn }; //array index matches enum layerIds
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LEDInterface* prtsLayerLEDs[] = { &LED_normal, &LED_fn }; //array index matches enum layerIds
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LayerState_LED layerState(prtsLayerLEDs);
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Code_LayerHold l_fn(FN, layerState);
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