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MeshCore-Solo/src/helpers/ui/GxEPDDisplay.cpp

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#include "GxEPDDisplay.h"
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#ifdef EXP_PIN_BACKLIGHT
#include <PCA9557.h>
extern PCA9557 expander;
#endif
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#ifndef DISPLAY_ROTATION
#define DISPLAY_ROTATION 0
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#endif
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#ifdef ESP32
SPIClass SPI1 = SPIClass(FSPI);
#endif
// GFX fonts use the baseline as the cursor origin. UI code assumes top-of-cell
// coordinates (same convention as the OLED driver). Add the font ascender so
// the two conventions match.
static int fontAscender(int sz, bool use_lemon, int scale) {
if (sz == 3) return 26; // FreeSans18pt7b: proportional, baseline origin
if (use_lemon) return 8 * scale; // Lemon GFX font: baseline origin, ascender 8px×scale
return 0; // GFX built-in font: cursor is top-left of cell
}
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bool GxEPDDisplay::begin() {
display.epd2.selectSPI(SPI1, SPISettings(4000000, MSBFIRST, SPI_MODE0));
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#ifdef ESP32
SPI1.begin(PIN_DISPLAY_SCLK, PIN_DISPLAY_MISO, PIN_DISPLAY_MOSI, PIN_DISPLAY_CS);
#else
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SPI1.begin();
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#endif
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display.init(115200, true, 2, false);
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display.setRotation(DISPLAY_ROTATION);
setTextSize(1);
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display.setPartialWindow(0, 0, display.width(), display.height());
display.fillScreen(GxEPD_WHITE);
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display.display(true);
#if DISP_BACKLIGHT
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digitalWrite(DISP_BACKLIGHT, LOW);
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pinMode(DISP_BACKLIGHT, OUTPUT);
#endif
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_init = true;
return true;
}
void GxEPDDisplay::turnOn() {
if (!_init) begin();
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#if defined(DISP_BACKLIGHT) && !defined(BACKLIGHT_BTN)
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digitalWrite(DISP_BACKLIGHT, HIGH);
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#elif defined(EXP_PIN_BACKLIGHT) && !defined(BACKLIGHT_BTN)
expander.digitalWrite(EXP_PIN_BACKLIGHT, HIGH);
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#endif
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_isOn = true;
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}
void GxEPDDisplay::turnOff() {
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#if defined(DISP_BACKLIGHT) && !defined(BACKLIGHT_BTN)
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digitalWrite(DISP_BACKLIGHT, LOW);
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#elif defined(EXP_PIN_BACKLIGHT) && !defined(BACKLIGHT_BTN)
expander.digitalWrite(EXP_PIN_BACKLIGHT, LOW);
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#endif
_isOn = false;
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}
void GxEPDDisplay::clear() {
display.fillScreen(GxEPD_WHITE);
display.setTextColor(GxEPD_BLACK);
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display_crc.reset();
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}
void GxEPDDisplay::startFrame(Color bkg) {
display.fillScreen(GxEPD_WHITE);
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display.setTextColor(_curr_color = GxEPD_BLACK);
_text_sz = 1;
int sc = (width() >= height()) ? 2 : 1;
display.setFont(_use_lemon ? &Lemon : NULL);
display.setTextSize(sc);
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display_crc.reset();
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}
void GxEPDDisplay::setTextSize(int sz) {
_text_sz = sz;
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display_crc.update<int>(sz);
// Size 1 scales with orientation: 1× in portrait (≈OLED width), 2× in landscape.
// Size 2 always uses 2× built-in (12×16) — fixed because layout Y-positions are hardcoded.
// Size 3 always uses FreeSans18pt for large headings.
int sc = (width() >= height()) ? 2 : 1;
switch (sz) {
case 3:
display.setFont(&FreeSans18pt7b);
display.setTextSize(1);
break;
case 2:
display.setFont(NULL);
display.setTextSize(2);
break;
default:
display.setFont(_use_lemon ? &Lemon : NULL);
display.setTextSize(sc);
break;
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}
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}
void GxEPDDisplay::setColor(Color c) {
display_crc.update<Color>(c);
// e-ink: DARK background = white paper, LIGHT foreground = black ink
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if (c == DARK) {
display.setTextColor(_curr_color = GxEPD_WHITE);
} else {
display.setTextColor(_curr_color = GxEPD_BLACK);
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}
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}
void GxEPDDisplay::setCursor(int x, int y) {
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display_crc.update<int>(x);
display_crc.update<int>(y);
// Offset y by the font ascender: callers pass top-of-cell y, GFX fonts
// expect baseline y. Without this, text would be clipped at the top.
int sc = (width() >= height()) ? 2 : 1;
display.setCursor(x, y + fontAscender(_text_sz, _use_lemon, sc));
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}
void GxEPDDisplay::print(const char* str) {
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display_crc.update<char>(str, strlen(str));
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display.print(str);
}
void GxEPDDisplay::fillRect(int x, int y, int w, int h) {
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display_crc.update<int>(x);
display_crc.update<int>(y);
display_crc.update<int>(w);
display_crc.update<int>(h);
display.fillRect(x, y, w, h, _curr_color);
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}
void GxEPDDisplay::drawRect(int x, int y, int w, int h) {
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display_crc.update<int>(x);
display_crc.update<int>(y);
display_crc.update<int>(w);
display_crc.update<int>(h);
display.drawRect(x, y, w, h, _curr_color);
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}
void GxEPDDisplay::drawXbm(int x, int y, const uint8_t* bits, int w, int h) {
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display_crc.update<int>(x);
display_crc.update<int>(y);
display_crc.update<int>(w);
display_crc.update<int>(h);
display_crc.update<uint8_t>(bits, w * h / 8);
uint16_t widthInBytes = (w + 7) / 8;
for (uint16_t by = 0; by < h; by++) {
for (uint16_t bx = 0; bx < w; bx++) {
uint16_t byteOffset = (by * widthInBytes) + (bx / 8);
uint8_t bitMask = 0x80 >> (bx & 7);
if (pgm_read_byte(bits + byteOffset) & bitMask) {
display.drawPixel(x + bx, y + by, _curr_color);
}
}
}
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}
uint16_t GxEPDDisplay::getTextWidth(const char* str) {
int16_t x1, y1;
uint16_t w, h;
display.getTextBounds(str, 0, 0, &x1, &y1, &w, &h);
return w;
}
void GxEPDDisplay::setDisplayRotation(uint8_t rot) {
display.setRotation(rot & 3);
setDimensions(display.width(), display.height());
last_display_crc_value = -1; // force redraw on next endFrame
}
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void GxEPDDisplay::endFrame() {
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uint32_t crc = display_crc.finalize();
if (crc != last_display_crc_value) {
display.display(true);
last_display_crc_value = crc;
}
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}