mirror of
https://github.com/meshtastic/firmware.git
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594 lines
19 KiB
C++
594 lines
19 KiB
C++
#pragma once
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#include "configuration.h"
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#include "detect/ScanI2C.h"
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#include "mesh/generated/meshtastic/config.pb.h"
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#include <OLEDDisplay.h>
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#if !HAS_SCREEN
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#include "power.h"
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namespace graphics
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{
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// Noop class for boards without screen.
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class Screen
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{
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public:
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explicit Screen(ScanI2C::DeviceAddress, meshtastic_Config_DisplayConfig_OledType, OLEDDISPLAY_GEOMETRY);
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void onPress() {}
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void setup() {}
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void setOn(bool) {}
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void print(const char *) {}
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void doDeepSleep() {}
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void forceDisplay(bool forceUiUpdate = false) {}
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void startFirmwareUpdateScreen() {}
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void increaseBrightness() {}
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void decreaseBrightness() {}
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void setFunctionSymbal(std::string) {}
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void removeFunctionSymbal(std::string) {}
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void startAlert(const char *) {}
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void endAlert() {}
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};
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} // namespace graphics
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#else
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#include <cstring>
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#include <OLEDDisplayUi.h>
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#include "../configuration.h"
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#include "gps/GeoCoord.h"
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#include "graphics/ScreenFonts.h"
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#ifdef USE_ST7567
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#include <ST7567Wire.h>
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#elif defined(USE_SH1106) || defined(USE_SH1107) || defined(USE_SH1107_128_64)
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#include <SH1106Wire.h>
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#elif defined(USE_SSD1306)
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#include <SSD1306Wire.h>
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#elif defined(USE_ST7789)
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#include <ST7789Spi.h>
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#else
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// the SH1106/SSD1306 variant is auto-detected
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#include <AutoOLEDWire.h>
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#endif
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#include "EInkDisplay2.h"
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#include "EInkDynamicDisplay.h"
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#include "PointStruct.h"
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#include "TFTDisplay.h"
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#include "TypedQueue.h"
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#include "commands.h"
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#include "concurrency/LockGuard.h"
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#include "concurrency/OSThread.h"
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#include "input/InputBroker.h"
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#include "mesh/MeshModule.h"
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#include "power.h"
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#include <string>
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// 0 to 255, though particular variants might define different defaults
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#ifndef BRIGHTNESS_DEFAULT
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#define BRIGHTNESS_DEFAULT 150
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#endif
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// Meters to feet conversion
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#ifndef METERS_TO_FEET
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#define METERS_TO_FEET 3.28
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#endif
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// Feet to miles conversion
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#ifndef MILES_TO_FEET
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#define MILES_TO_FEET 5280
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#endif
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// Intuitive colors. E-Ink display is inverted from OLED(?)
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#define EINK_BLACK OLEDDISPLAY_COLOR::WHITE
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#define EINK_WHITE OLEDDISPLAY_COLOR::BLACK
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// Base segment dimensions for T-Watch segmented display
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#define SEGMENT_WIDTH 16
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#define SEGMENT_HEIGHT 4
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/// Convert an integer GPS coords to a floating point
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#define DegD(i) (i * 1e-7)
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namespace
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{
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/// A basic 2D point class for drawing
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class Point
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{
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public:
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float x, y;
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Point(float _x, float _y) : x(_x), y(_y) {}
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/// Apply a rotation around zero (standard rotation matrix math)
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void rotate(float radian)
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{
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float cos = cosf(radian), sin = sinf(radian);
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float rx = x * cos + y * sin, ry = -x * sin + y * cos;
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x = rx;
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y = ry;
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}
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void translate(int16_t dx, int dy)
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{
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x += dx;
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y += dy;
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}
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void scale(float f)
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{
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// We use -f here to counter the flip that happens
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// on the y axis when drawing and rotating on screen
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x *= f;
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y *= -f;
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}
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};
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} // namespace
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namespace graphics
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{
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// Forward declarations
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class Screen;
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/// Handles gathering and displaying debug information.
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class DebugInfo
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{
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public:
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DebugInfo(const DebugInfo &) = delete;
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DebugInfo &operator=(const DebugInfo &) = delete;
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private:
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friend Screen;
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DebugInfo() {}
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/// Renders the debug screen.
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void drawFrame(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
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void drawFrameSettings(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
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void drawFrameWiFi(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
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/// Protects all of internal state.
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concurrency::Lock lock;
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};
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/**
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* @brief This class deals with showing things on the screen of the device.
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*
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* @details Other than setup(), this class is thread-safe as long as drawFrame is not called
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* multiple times simultaneously. All state-changing calls are queued and executed
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* when the main loop calls us.
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*/
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class Screen : public concurrency::OSThread
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{
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CallbackObserver<Screen, const meshtastic::Status *> powerStatusObserver =
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CallbackObserver<Screen, const meshtastic::Status *>(this, &Screen::handleStatusUpdate);
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CallbackObserver<Screen, const meshtastic::Status *> gpsStatusObserver =
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CallbackObserver<Screen, const meshtastic::Status *>(this, &Screen::handleStatusUpdate);
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CallbackObserver<Screen, const meshtastic::Status *> nodeStatusObserver =
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CallbackObserver<Screen, const meshtastic::Status *>(this, &Screen::handleStatusUpdate);
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CallbackObserver<Screen, const meshtastic_MeshPacket *> textMessageObserver =
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CallbackObserver<Screen, const meshtastic_MeshPacket *>(this, &Screen::handleTextMessage);
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CallbackObserver<Screen, const UIFrameEvent *> uiFrameEventObserver =
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CallbackObserver<Screen, const UIFrameEvent *>(this, &Screen::handleUIFrameEvent); // Sent by Mesh Modules
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CallbackObserver<Screen, const InputEvent *> inputObserver =
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CallbackObserver<Screen, const InputEvent *>(this, &Screen::handleInputEvent);
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CallbackObserver<Screen, const meshtastic_AdminMessage *> adminMessageObserver =
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CallbackObserver<Screen, const meshtastic_AdminMessage *>(this, &Screen::handleAdminMessage);
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public:
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explicit Screen(ScanI2C::DeviceAddress, meshtastic_Config_DisplayConfig_OledType, OLEDDISPLAY_GEOMETRY);
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~Screen();
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Screen(const Screen &) = delete;
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Screen &operator=(const Screen &) = delete;
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ScanI2C::DeviceAddress address_found;
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meshtastic_Config_DisplayConfig_OledType model;
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OLEDDISPLAY_GEOMETRY geometry;
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/// Initializes the UI, turns on the display, starts showing boot screen.
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//
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// Not thread safe - must be called before any other methods are called.
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void setup();
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/// Turns the screen on/off. Optionally, pass a custom screensaver frame for E-Ink
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void setOn(bool on, FrameCallback einkScreensaver = NULL)
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{
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if (!on)
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// We handle off commands immediately, because they might be called because the CPU is shutting down
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handleSetOn(false, einkScreensaver);
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else
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enqueueCmd(ScreenCmd{.cmd = Cmd::SET_ON});
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}
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/**
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* Prepare the display for the unit going to the lowest power mode possible. Most screens will just
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* poweroff, but eink screens will show a "I'm sleeping" graphic, possibly with a QR code
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*/
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void doDeepSleep();
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void blink();
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void drawFrameText(OLEDDisplay *, OLEDDisplayUiState *, int16_t, int16_t, const char *);
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void getTimeAgoStr(uint32_t agoSecs, char *timeStr, uint8_t maxLength);
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// Draw north
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void drawCompassNorth(OLEDDisplay *display, int16_t compassX, int16_t compassY, float myHeading);
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static uint16_t getCompassDiam(uint32_t displayWidth, uint32_t displayHeight);
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float estimatedHeading(double lat, double lon);
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void drawNodeHeading(OLEDDisplay *display, int16_t compassX, int16_t compassY, uint16_t compassDiam, float headingRadian);
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void drawColumns(OLEDDisplay *display, int16_t x, int16_t y, const char **fields);
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/// Handle button press, trackball or swipe action)
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void onPress() { enqueueCmd(ScreenCmd{.cmd = Cmd::ON_PRESS}); }
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void showPrevFrame() { enqueueCmd(ScreenCmd{.cmd = Cmd::SHOW_PREV_FRAME}); }
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void showNextFrame() { enqueueCmd(ScreenCmd{.cmd = Cmd::SHOW_NEXT_FRAME}); }
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// generic alert start
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void startAlert(FrameCallback _alertFrame)
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{
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alertFrame = _alertFrame;
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ScreenCmd cmd;
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cmd.cmd = Cmd::START_ALERT_FRAME;
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enqueueCmd(cmd);
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}
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void startAlert(const char *_alertMessage)
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{
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startAlert([_alertMessage](OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y) -> void {
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uint16_t x_offset = display->width() / 2;
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display->setTextAlignment(TEXT_ALIGN_CENTER);
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display->setFont(FONT_MEDIUM);
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display->drawString(x_offset + x, 26 + y, _alertMessage);
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});
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}
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void endAlert()
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{
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ScreenCmd cmd;
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cmd.cmd = Cmd::STOP_ALERT_FRAME;
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enqueueCmd(cmd);
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}
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void startFirmwareUpdateScreen()
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{
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ScreenCmd cmd;
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cmd.cmd = Cmd::START_FIRMWARE_UPDATE_SCREEN;
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enqueueCmd(cmd);
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}
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// Function to allow the AccelerometerThread to set the heading if a sensor provides it
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// Mutex needed?
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void setHeading(long _heading)
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{
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hasCompass = true;
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compassHeading = _heading;
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}
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bool hasHeading() { return hasCompass; }
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long getHeading() { return compassHeading; }
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// functions for display brightness
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void increaseBrightness();
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void decreaseBrightness();
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void setFunctionSymbal(std::string sym);
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void removeFunctionSymbal(std::string sym);
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/// Stops showing the boot screen.
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void stopBootScreen() { enqueueCmd(ScreenCmd{.cmd = Cmd::STOP_BOOT_SCREEN}); }
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/// Writes a string to the screen.
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void print(const char *text)
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{
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ScreenCmd cmd;
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cmd.cmd = Cmd::PRINT;
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// TODO(girts): strdup() here is scary, but we can't use std::string as
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// FreeRTOS queue is just dumbly copying memory contents. It would be
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// nice if we had a queue that could copy objects by value.
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cmd.print_text = strdup(text);
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if (!enqueueCmd(cmd)) {
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free(cmd.print_text);
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}
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}
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/// generates a very brief time delta display
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std::string drawTimeDelta(uint32_t days, uint32_t hours, uint32_t minutes, uint32_t seconds);
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/// Overrides the default utf8 character conversion, to replace empty space with question marks
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static char customFontTableLookup(const uint8_t ch)
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{
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// UTF-8 to font table index converter
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// Code form http://playground.arduino.cc/Main/Utf8ascii
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static uint8_t LASTCHAR;
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static bool SKIPREST; // Only display a single unconvertable-character symbol per sequence of unconvertable characters
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if (ch < 128) { // Standard ASCII-set 0..0x7F handling
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LASTCHAR = 0;
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SKIPREST = false;
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return ch;
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}
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uint8_t last = LASTCHAR; // get last char
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LASTCHAR = ch;
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#if defined(OLED_PL)
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switch (last) { // conversion depending on first UTF8-character
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case 0xC2: {
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SKIPREST = false;
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return (uint8_t)ch;
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}
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case 0xC3: {
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if (ch == 147)
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return (uint8_t)(ch); // Ó
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else if (ch == 179)
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return (uint8_t)(148); // ó
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else
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return (uint8_t)(ch | 0xC0);
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break;
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}
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case 0xC4: {
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SKIPREST = false;
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return (uint8_t)(ch);
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}
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case 0xC5: {
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SKIPREST = false;
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if (ch == 132)
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return (uint8_t)(136); // ń
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else if (ch == 186)
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return (uint8_t)(137); // ź
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else
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return (uint8_t)(ch);
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break;
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}
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}
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// We want to strip out prefix chars for two-byte char formats
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if (ch == 0xC2 || ch == 0xC3 || ch == 0xC4 || ch == 0xC5)
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return (uint8_t)0;
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#endif
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#if defined(OLED_UA) || defined(OLED_RU)
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switch (last) { // conversion depending on first UTF8-character
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case 0xC2: {
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SKIPREST = false;
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return (uint8_t)ch;
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}
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case 0xC3: {
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SKIPREST = false;
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return (uint8_t)(ch | 0xC0);
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}
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// map UTF-8 cyrillic chars to it Windows-1251 (CP-1251) ASCII codes
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// note: in this case we must use compatible font - provided ArialMT_Plain_10/16/24 by 'ThingPulse/esp8266-oled-ssd1306'
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// library have empty chars for non-latin ASCII symbols
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case 0xD0: {
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SKIPREST = false;
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if (ch == 132)
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return (uint8_t)(170); // Є
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if (ch == 134)
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return (uint8_t)(178); // І
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if (ch == 135)
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return (uint8_t)(175); // Ї
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if (ch == 129)
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return (uint8_t)(168); // Ё
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if (ch > 143 && ch < 192)
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return (uint8_t)(ch + 48);
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break;
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}
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case 0xD1: {
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SKIPREST = false;
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if (ch == 148)
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return (uint8_t)(186); // є
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if (ch == 150)
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return (uint8_t)(179); // і
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if (ch == 151)
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return (uint8_t)(191); // ї
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if (ch == 145)
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return (uint8_t)(184); // ё
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if (ch > 127 && ch < 144)
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return (uint8_t)(ch + 112);
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break;
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}
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case 0xD2: {
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SKIPREST = false;
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if (ch == 144)
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return (uint8_t)(165); // Ґ
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if (ch == 145)
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return (uint8_t)(180); // ґ
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break;
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}
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}
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// We want to strip out prefix chars for two-byte char formats
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if (ch == 0xC2 || ch == 0xC3 || ch == 0x82 || ch == 0xD0 || ch == 0xD1)
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return (uint8_t)0;
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#endif
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// If we already returned an unconvertable-character symbol for this unconvertable-character sequence, return NULs for the
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// rest of it
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if (SKIPREST)
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return (uint8_t)0;
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SKIPREST = true;
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return (uint8_t)191; // otherwise: return ¿ if character can't be converted (note that the font map we're using doesn't
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// stick to standard EASCII codes)
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}
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/// Returns a handle to the DebugInfo screen.
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//
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// Use this handle to set things like battery status, user count, GPS status, etc.
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DebugInfo *debug_info() { return &debugInfo; }
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// Handle observer events
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int handleStatusUpdate(const meshtastic::Status *arg);
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int handleTextMessage(const meshtastic_MeshPacket *arg);
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int handleUIFrameEvent(const UIFrameEvent *arg);
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int handleInputEvent(const InputEvent *arg);
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int handleAdminMessage(const meshtastic_AdminMessage *arg);
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/// Used to force (super slow) eink displays to draw critical frames
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void forceDisplay(bool forceUiUpdate = false);
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/// Draws our SSL cert screen during boot (called from WebServer)
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void setSSLFrames();
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void setWelcomeFrames();
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#ifdef USE_EINK
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/// Draw an image to remain on E-Ink display after screen off
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void setScreensaverFrames(FrameCallback einkScreensaver = NULL);
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#endif
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protected:
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/// Updates the UI.
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//
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// Called periodically from the main loop.
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int32_t runOnce() final;
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bool isAUTOOled = false;
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// Screen dimensions (for convenience)
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// Defined during Screen::setup
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uint16_t displayWidth = 0;
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uint16_t displayHeight = 0;
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private:
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FrameCallback alertFrames[1];
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struct ScreenCmd {
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Cmd cmd;
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union {
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uint32_t bluetooth_pin;
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char *print_text;
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};
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};
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/// Enques given command item to be processed by main loop().
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bool enqueueCmd(const ScreenCmd &cmd)
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{
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if (!useDisplay)
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return false; // not enqueued if our display is not in use
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else {
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bool success = cmdQueue.enqueue(cmd, 0);
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enabled = true; // handle ASAP (we are the registered reader for cmdQueue, but might have been disabled)
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return success;
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}
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}
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// Implementations of various commands, called from doTask().
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void handleSetOn(bool on, FrameCallback einkScreensaver = NULL);
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void handleOnPress();
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void handleShowNextFrame();
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void handleShowPrevFrame();
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void handlePrint(const char *text);
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void handleStartFirmwareUpdateScreen();
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// Info collected by setFrames method.
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// Index location of specific frames. Used to apply the FrameFocus parameter of setFrames
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struct FramesetInfo {
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struct FramePositions {
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uint8_t fault = 0;
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uint8_t textMessage = 0;
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uint8_t focusedModule = 0;
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uint8_t log = 0;
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uint8_t settings = 0;
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uint8_t wifi = 0;
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} positions;
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uint8_t frameCount = 0;
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} framesetInfo;
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// Which frame we want to be displayed, after we regen the frameset by calling setFrames
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enum FrameFocus : uint8_t {
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FOCUS_DEFAULT, // No specific frame
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FOCUS_PRESERVE, // Return to the previous frame
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FOCUS_FAULT,
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FOCUS_TEXTMESSAGE,
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FOCUS_MODULE, // Note: target module should call requestFocus(), otherwise no info about which module to focus
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};
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|
||
// Regenerate the normal set of frames, focusing a specific frame if requested
|
||
// Call when a frame should be added / removed, or custom frames should be cleared
|
||
void setFrames(FrameFocus focus = FOCUS_DEFAULT);
|
||
|
||
/// Try to start drawing ASAP
|
||
void setFastFramerate();
|
||
|
||
// Sets frame up for immediate drawing
|
||
void setFrameImmediateDraw(FrameCallback *drawFrames);
|
||
|
||
/// Called when debug screen is to be drawn, calls through to debugInfo.drawFrame.
|
||
static void drawDebugInfoTrampoline(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
|
||
|
||
static void drawDebugInfoSettingsTrampoline(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
|
||
|
||
static void drawDebugInfoWiFiTrampoline(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
|
||
|
||
#ifdef T_WATCH_S3
|
||
static void drawAnalogClockFrame(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
|
||
|
||
static void drawDigitalClockFrame(OLEDDisplay *display, OLEDDisplayUiState *state, int16_t x, int16_t y);
|
||
|
||
static void drawSegmentedDisplayCharacter(OLEDDisplay *display, int x, int y, uint8_t number, float scale = 1);
|
||
|
||
static void drawHorizontalSegment(OLEDDisplay *display, int x, int y, int width, int height);
|
||
|
||
static void drawVerticalSegment(OLEDDisplay *display, int x, int y, int width, int height);
|
||
|
||
static void drawSegmentedDisplayColon(OLEDDisplay *display, int x, int y, float scale = 1);
|
||
|
||
static void drawWatchFaceToggleButton(OLEDDisplay *display, int16_t x, int16_t y, bool digitalMode = true, float scale = 1);
|
||
|
||
static void drawBluetoothConnectedIcon(OLEDDisplay *display, int16_t x, int16_t y);
|
||
|
||
// Whether we are showing the digital watch face or the analog one
|
||
bool digitalWatchFace = true;
|
||
#endif
|
||
|
||
/// callback for current alert frame
|
||
FrameCallback alertFrame;
|
||
|
||
/// Queue of commands to execute in doTask.
|
||
TypedQueue<ScreenCmd> cmdQueue;
|
||
/// Whether we are using a display
|
||
bool useDisplay = false;
|
||
/// Whether the display is currently powered
|
||
bool screenOn = false;
|
||
// Whether we are showing the regular screen (as opposed to booth screen or
|
||
// Bluetooth PIN screen)
|
||
bool showingNormalScreen = false;
|
||
|
||
// Implementation to Adjust Brightness
|
||
uint8_t brightness = BRIGHTNESS_DEFAULT; // H = 254, MH = 192, ML = 130 L = 103
|
||
|
||
bool hasCompass = false;
|
||
float compassHeading;
|
||
/// Holds state for debug information
|
||
DebugInfo debugInfo;
|
||
|
||
/// Display device
|
||
OLEDDisplay *dispdev;
|
||
|
||
/// UI helper for rendering to frames and switching between them
|
||
OLEDDisplayUi *ui;
|
||
};
|
||
|
||
} // namespace graphics
|
||
|
||
#endif |