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3 commits
741793c298
...
cb41667710
Author | SHA1 | Date | |
---|---|---|---|
KemoNine | cb41667710 | ||
KemoNine | 137d1c46f1 | ||
KemoNine | e132cf1e6f |
2
.gitignore
vendored
2
.gitignore
vendored
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@ -1,3 +1,5 @@
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build/
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serial_debugger*.bak
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gui_backup/
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serial_debugger.ino.beta
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serial_debugger.ino.orig
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@ -1,203 +0,0 @@
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// Varous system includes
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#include <Arduino.h>
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// Various library includes
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#include <Adafruit_NeoPixel.h>
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#include <Adafruit_GFX.h>
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#include <Adafruit_ILI9341.h>
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#include <BBQ10Keyboard.h>
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#include <CircularBuffer.h>
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// Various local includes
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#include "serial_debugger_GSLC.h"
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// Battery level measurement
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#define VBATPIN A6
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float measuredVBat;
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int batteryPercent;
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// TFT Setup
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#define TFT_CS 9
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#define TFT_DC 10
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Adafruit_ILI9341 tft(TFT_CS, TFT_DC);
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#include <Fonts/FreeMono9pt7b.h>
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#define CHARS_HORIZONTAL 28
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#define CHARS_ROWS 13
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CircularBuffer<char,364> textBuffer;
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// Keyboard
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BBQ10Keyboard keyboard;
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#define KBD_BTN_1 0x06
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#define KBD_BTN_2 0x11
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#define KBD_BTN_3 0x07
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#define KBD_BTN_4 0x12
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#define KBD_SW_UP 0x01
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#define KBD_SW_DN 0x02
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#define KBD_SW_LF 0x03
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#define KBD_SW_RT 0x04
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#define KBD_SW_OK 0x05
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// NeoPixels
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#define PIXELS_NUM_BOARD 1
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#define PIXELS_NUM_WING 1
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#define PIXELS_WING_PIN 11
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Adafruit_NeoPixel pixels_board(PIXELS_NUM_BOARD, PIN_NEOPIXEL, NEO_GRB + NEO_KHZ800);
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Adafruit_NeoPixel pixels_wing(PIXELS_NUM_WING, PIXELS_WING_PIN, NEO_GRB + NEO_KHZ800);
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// Various loop handlers
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void handlerKeyboard();
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void handlerBatteryLevel();
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// GUI Slice
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gslc_tsElemRef* m_pElemBatteryLevel= NULL;
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gslc_tsElemRef* m_pElemStatusText = NULL;
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gslc_tsElemRef* m_pElemText = NULL;
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gslc_tsElemRef* m_pTextSlider = NULL;
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static int16_t DebugOut(char ch) { if (ch == (char)'\n') Serial.println(""); else Serial.write(ch); return 0; }
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bool CbSlidePos(void* pvGui,void* pvElemRef,int16_t nPos);
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void setup() {
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Serial.begin(115200);
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// Setup red LED to indicate device is on (in case we disable NeoPixel battery level later)
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pinMode(3, OUTPUT);
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digitalWrite(3, HIGH);
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// Setup NeoPixels
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pixels_board.begin();
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pixels_wing.begin();
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pixels_board.clear();
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pixels_wing.clear();
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pixels_board.setBrightness(10);
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pixels_wing.setBrightness(5);
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// Start with blank wing indicator
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pixels_wing.show();
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// Green : pixels.Color(0, 255, 0)
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// Yellow : pixels.Color(255, 255, 0)
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// Orange : pixels.Color(255, 128, 0)
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// Red : pixels.Color(255, 0, 0)
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pixels_board.setPixelColor(0, pixels_board.Color(0, 0, 255));
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pixels_board.show();
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// Setup BBQ10Keyboard
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Wire.begin();
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keyboard.begin();
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keyboard.setBacklight(0.5f);
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// GUI Slice (TFT is setup through GUI Slice)
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gslc_InitDebug(&DebugOut);
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InitGUIslice_gen();
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}
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// Main program via the Arduino standard methods
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void loop() {
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// Handle keyboard events
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handlerKeyboard();
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// Update battery level as appropriate
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handlerBatteryLevel();
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// Update UI
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gslc_Update(&m_gui);
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}
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// Keyboard handler
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void handlerKeyboard() {
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// Check if keys were pressed
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if (keyboard.keyCount()) {
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// Get keyboard event
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const BBQ10Keyboard::KeyEvent key = keyboard.keyEvent();
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char output[28];
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snprintf(output, 28, "key: '%c' (dec %d, hex %02x)", key.key, key.key, key.key);
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for (int i=0; i<sizeof(output); i++) {
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char toPush = output[i];
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if (toPush != '\0') {
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textBuffer.push(toPush);
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}
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else if (toPush == '\0') {
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textBuffer.push('\n');
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break;
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}
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}
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// Add keycodes to text box
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for (int i=0; i<textBuffer.size(); i++) {
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//tft.print(textBuffer[i]);
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}
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// Pick color for signaling a key was pressed (short or long press)
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uint32_t keyboard_pixel_color = pixels_wing.Color(0, 0, 255);
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if (key.state == BBQ10Keyboard::StateLongPress) {
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keyboard_pixel_color = pixels_wing.Color(0, 255, 255);
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}
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// Display indicator accordingly
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if (key.state == BBQ10Keyboard::StatePress || key.state == BBQ10Keyboard::StateLongPress) {
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pixels_wing.setPixelColor(0, keyboard_pixel_color);
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pixels_wing.show();
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}
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else {
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pixels_wing.clear();
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pixels_wing.show();
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}
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}
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}
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// Measure battery level and change NeoPixel accordingly
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void handlerBatteryLevel() {
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measuredVBat = analogRead(VBATPIN);
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measuredVBat *= 2; // we divided by 2, so multiply back
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measuredVBat *= 3.3; // Multiply by 3.3V, our reference voltage
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measuredVBat /= 1024; // convert to voltage
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batteryPercent = (measuredVBat / 3.3) * 100;
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gslc_tsColor colorForHeaderElements;
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if (batteryPercent >= 75) {
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pixels_board.setPixelColor(0, pixels_board.Color(0, 255, 0));
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colorForHeaderElements = GSLC_COL_GREEN;
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}
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else if (batteryPercent >= 50) {
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colorForHeaderElements = GSLC_COL_YELLOW;
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pixels_board.setPixelColor(0, pixels_board.Color(255, 255, 0));
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}
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else if (batteryPercent >= 25) {
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colorForHeaderElements = GSLC_COL_ORANGE;
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pixels_board.setPixelColor(0, pixels_board.Color(255, 128, 0));
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}
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else {
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colorForHeaderElements = GSLC_COL_RED;
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pixels_board.setPixelColor(0, pixels_board.Color(255, 0, 0));
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}
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gslc_ElemXProgressSetVal(&m_gui, m_pElemBatteryLevel, batteryPercent);
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gslc_tsXProgress* pGauge = (gslc_tsXProgress*)gslc_GetXDataFromRef(&m_gui,m_pElemBatteryLevel,GSLC_TYPEX_PROGRESS,__LINE__);
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pGauge->colGauge = colorForHeaderElements;
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gslc_ElemSetTxtCol(&m_gui, m_pElemBatteryLevel, colorForHeaderElements);
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gslc_ElemSetTxtCol(&m_gui, m_pElemStatusText, colorForHeaderElements);
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// Update GUI and NeoPixel with battery status information
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gslc_Update(&m_gui);
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pixels_board.show();
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}
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// Slider callback function
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bool CbSlidePos(void* pvGui,void* pvElemRef,int16_t nPos) {
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gslc_tsGui* pGui = (gslc_tsGui*)(pvGui);
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gslc_tsElemRef* pElemRef = (gslc_tsElemRef*)(pvElemRef);
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gslc_tsElem* pElem = gslc_GetElemFromRef(pGui,pElemRef);
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int16_t nVal;
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// From the element's ID we can determine which slider was updated.
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switch (pElem->nId) {
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case E_TXTSCROLL:
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// Fetch the slider position
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nVal = gslc_ElemXSliderGetPos(pGui,m_pTextSlider);
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break;
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default:
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break;
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}
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return true;
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}
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@ -1,218 +0,0 @@
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//<File !Start!>
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// Varous system includes
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#include <Arduino.h>
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//<File !End!>
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// Various library includes
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#include <Adafruit_NeoPixel.h>
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#include <Adafruit_GFX.h>
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//<Includes !Start!>
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//<Includes !End!>
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#include <Adafruit_ILI9341.h>
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#include <BBQ10Keyboard.h>
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#include <CircularBuffer.h>
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// Various local includes
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#include "serial_debugger_GSLC.h"
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// Battery level measurement
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#define VBATPIN A6
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float measuredVBat;
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int batteryPercent;
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// TFT Setup
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#define TFT_CS 9
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#define TFT_DC 10
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Adafruit_ILI9341 tft(TFT_CS, TFT_DC);
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#include <Fonts/FreeMono9pt7b.h>
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#define CHARS_HORIZONTAL 28
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#define CHARS_ROWS 13
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CircularBuffer<char,364> textBuffer;
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// Keyboard
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BBQ10Keyboard keyboard;
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#define KBD_BTN_1 0x06
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#define KBD_BTN_2 0x11
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#define KBD_BTN_3 0x07
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#define KBD_BTN_4 0x12
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#define KBD_SW_UP 0x01
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#define KBD_SW_DN 0x02
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#define KBD_SW_LF 0x03
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#define KBD_SW_RT 0x04
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#define KBD_SW_OK 0x05
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// NeoPixels
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#define PIXELS_NUM_BOARD 1
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#define PIXELS_NUM_WING 1
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#define PIXELS_WING_PIN 11
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Adafruit_NeoPixel pixels_board(PIXELS_NUM_BOARD, PIN_NEOPIXEL, NEO_GRB + NEO_KHZ800);
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Adafruit_NeoPixel pixels_wing(PIXELS_NUM_WING, PIXELS_WING_PIN, NEO_GRB + NEO_KHZ800);
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// Various loop handlers
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void handlerKeyboard();
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void handlerBatteryLevel();
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// GUI Slice
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gslc_tsElemRef* m_pElemBatteryLevel= NULL;
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gslc_tsElemRef* m_pElemStatusText = NULL;
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gslc_tsElemRef* m_pElemText = NULL;
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gslc_tsElemRef* m_pTextSlider = NULL;
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static int16_t DebugOut(char ch) { if (ch == (char)'\n') Serial.println(""); else Serial.write(ch); return 0; }
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bool CbSlidePos(void* pvGui,void* pvElemRef,int16_t nPos);
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void setup() {
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Serial.begin(115200);
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// Setup red LED to indicate device is on (in case we disable NeoPixel battery level later)
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pinMode(3, OUTPUT);
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digitalWrite(3, HIGH);
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// Setup NeoPixels
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pixels_board.begin();
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pixels_wing.begin();
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pixels_board.clear();
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pixels_wing.clear();
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pixels_board.setBrightness(10);
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pixels_wing.setBrightness(5);
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// Start with blank wing indicator
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pixels_wing.show();
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// Green : pixels.Color(0, 255, 0)
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// Yellow : pixels.Color(255, 255, 0)
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// Orange : pixels.Color(255, 128, 0)
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// Red : pixels.Color(255, 0, 0)
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pixels_board.setPixelColor(0, pixels_board.Color(0, 0, 255));
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pixels_board.show();
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// Setup BBQ10Keyboard
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Wire.begin();
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keyboard.begin();
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keyboard.setBacklight(0.5f);
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// GUI Slice (TFT is setup through GUI Slice)
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gslc_InitDebug(&DebugOut);
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InitGUIslice_gen();
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}
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// Main program via the Arduino standard methods
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void loop() {
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// Handle keyboard events
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handlerKeyboard();
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// Update battery level as appropriate
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handlerBatteryLevel();
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// Update UI
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gslc_Update(&m_gui);
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}
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// Keyboard handler
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void handlerKeyboard() {
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// Check if keys were pressed
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if (keyboard.keyCount()) {
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// Get keyboard event
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const BBQ10Keyboard::KeyEvent key = keyboard.keyEvent();
|
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char output[28];
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snprintf(output, 28, "key: '%c' (dec %d, hex %02x)", key.key, key.key, key.key);
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for (int i=0; i<sizeof(output); i++) {
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char toPush = output[i];
|
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if (toPush != '\0') {
|
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textBuffer.push(toPush);
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}
|
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else if (toPush == '\0') {
|
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textBuffer.push('\n');
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break;
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}
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}
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|
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// Add keycodes to text box
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for (int i=0; i<textBuffer.size(); i++) {
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//tft.print(textBuffer[i]);
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}
|
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// Pick color for signaling a key was pressed (short or long press)
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uint32_t keyboard_pixel_color = pixels_wing.Color(0, 0, 255);
|
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if (key.state == BBQ10Keyboard::StateLongPress) {
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keyboard_pixel_color = pixels_wing.Color(0, 255, 255);
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}
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// Display indicator accordingly
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if (key.state == BBQ10Keyboard::StatePress || key.state == BBQ10Keyboard::StateLongPress) {
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pixels_wing.setPixelColor(0, keyboard_pixel_color);
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pixels_wing.show();
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}
|
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else {
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pixels_wing.clear();
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pixels_wing.show();
|
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}
|
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}
|
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}
|
||||
|
||||
// Measure battery level and change NeoPixel accordingly
|
||||
void handlerBatteryLevel() {
|
||||
measuredVBat = analogRead(VBATPIN);
|
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measuredVBat *= 2; // we divided by 2, so multiply back
|
||||
measuredVBat *= 3.3; // Multiply by 3.3V, our reference voltage
|
||||
measuredVBat /= 1024; // convert to voltage
|
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batteryPercent = (measuredVBat / 3.3) * 100;
|
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|
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gslc_tsColor colorForHeaderElements;
|
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if (batteryPercent >= 75) {
|
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pixels_board.setPixelColor(0, pixels_board.Color(0, 255, 0));
|
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colorForHeaderElements = GSLC_COL_GREEN;
|
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}
|
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else if (batteryPercent >= 50) {
|
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colorForHeaderElements = GSLC_COL_YELLOW;
|
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pixels_board.setPixelColor(0, pixels_board.Color(255, 255, 0));
|
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}
|
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else if (batteryPercent >= 25) {
|
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colorForHeaderElements = GSLC_COL_ORANGE;
|
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pixels_board.setPixelColor(0, pixels_board.Color(255, 128, 0));
|
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}
|
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else {
|
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colorForHeaderElements = GSLC_COL_RED;
|
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pixels_board.setPixelColor(0, pixels_board.Color(255, 0, 0));
|
||||
}
|
||||
|
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gslc_ElemXProgressSetVal(&m_gui, m_pElemBatteryLevel, batteryPercent);
|
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gslc_tsXProgress* pGauge = (gslc_tsXProgress*)gslc_GetXDataFromRef(&m_gui,m_pElemBatteryLevel,GSLC_TYPEX_PROGRESS,__LINE__);
|
||||
pGauge->colGauge = colorForHeaderElements;
|
||||
gslc_ElemSetTxtCol(&m_gui, m_pElemBatteryLevel, colorForHeaderElements);
|
||||
gslc_ElemSetTxtCol(&m_gui, m_pElemStatusText, colorForHeaderElements);
|
||||
|
||||
// Update GUI and NeoPixel with battery status information
|
||||
gslc_Update(&m_gui);
|
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pixels_board.show();
|
||||
}
|
||||
|
||||
// Slider callback function
|
||||
bool CbSlidePos(void* pvGui,void* pvElemRef,int16_t nPos) {
|
||||
gslc_tsGui* pGui = (gslc_tsGui*)(pvGui);
|
||||
gslc_tsElemRef* pElemRef = (gslc_tsElemRef*)(pvElemRef);
|
||||
gslc_tsElem* pElem = gslc_GetElemFromRef(pGui,pElemRef);
|
||||
int16_t nVal;
|
||||
|
||||
// From the element's ID we can determine which slider was updated.
|
||||
switch (pElem->nId) {
|
||||
case E_TXTSCROLL:
|
||||
// Fetch the slider position
|
||||
nVal = gslc_ElemXSliderGetPos(pGui,m_pTextSlider);
|
||||
break;
|
||||
default:
|
||||
break;
|
||||
}
|
||||
|
||||
return true;
|
||||
}
|
||||
|
||||
//<Checkbox Callback !Start!>
|
||||
//<Checkbox Callback !End!>
|
||||
//<Keypad Callback !Start!>
|
||||
//<Keypad Callback !End!>
|
||||
//<Spinner Callback !Start!>
|
||||
//<Spinner Callback !End!>
|
||||
//<Listbox Callback !Start!>
|
||||
//<Listbox Callback !End!>
|
Reference in a new issue