Files
crosspoint-reader-mod/lib/hal/HalDisplay.cpp
CaptainFrito fdcd71e94d feat: Lyra Icons (#725)
/!\ This PR depends on
https://github.com/crosspoint-reader/crosspoint-reader/pull/732 being
merged first

Also requires the
https://github.com/open-x4-epaper/community-sdk/pull/18 PR

## Summary

Lyra theme icons on the home menu, in the file browser and on empty book
covers

![IMG_8023
Medium](https://github.com/user-attachments/assets/ba7c1407-94d2-4353-80ff-d5b800c6ac5b)
![IMG_8024
Medium](https://github.com/user-attachments/assets/edb59e13-b1c9-4c86-bef3-c61cc8134e64)
![IMG_7958
Medium](https://github.com/user-attachments/assets/d3079ce1-95f0-43f4-bbc7-1f747cc70203)
![IMG_8033
Medium](https://github.com/user-attachments/assets/f3e2e03b-0fa8-47b7-8717-c0b71361b7a8)


## Additional Context

- Added a function to the open-x4-sdk renderer to draw transparent
images
- Added a scripts/convert_icon.py script to convert svg/png icons into a
C array that can be directly imported into the project. Usage:
```bash
python ./scripts/convert_icon.py 'path/to/icon.png' cover 32 32
```
This will create a components/icons/cover.h file with a C array called
CoverIcon, of size 32x32px. Lyra uses icons from
https://lucide.dev/icons with a stroke width of 2px, that can be
downloaded with any desired size on the site.

> The file browser is noticeably slower with the addition of icons, and
using an image buffer like on the home page doesn't help very much. Any
suggestions to optimize this are welcome.

---

### AI Usage

While CrossPoint doesn't have restrictions on AI tools in contributing,
please be transparent about their usage as it
helps set the right context for reviewers.


Did you use AI tools to help write this code? _**PARTIALLY**_
The icon conversion python script was generated by Copilot as I am not a
python dev.

---------

Co-authored-by: Dave Allie <dave@daveallie.com>
2026-02-19 21:38:09 +11:00

59 lines
2.2 KiB
C++

#include <HalDisplay.h>
#include <HalGPIO.h>
#define SD_SPI_MISO 7
HalDisplay::HalDisplay() : einkDisplay(EPD_SCLK, EPD_MOSI, EPD_CS, EPD_DC, EPD_RST, EPD_BUSY) {}
HalDisplay::~HalDisplay() {}
void HalDisplay::begin() { einkDisplay.begin(); }
void HalDisplay::clearScreen(uint8_t color) const { einkDisplay.clearScreen(color); }
void HalDisplay::drawImage(const uint8_t* imageData, uint16_t x, uint16_t y, uint16_t w, uint16_t h,
bool fromProgmem) const {
einkDisplay.drawImage(imageData, x, y, w, h, fromProgmem);
}
void HalDisplay::drawImageTransparent(const uint8_t* imageData, uint16_t x, uint16_t y, uint16_t w, uint16_t h,
bool fromProgmem) const {
einkDisplay.drawImageTransparent(imageData, x, y, w, h, fromProgmem);
}
EInkDisplay::RefreshMode convertRefreshMode(HalDisplay::RefreshMode mode) {
switch (mode) {
case HalDisplay::FULL_REFRESH:
return EInkDisplay::FULL_REFRESH;
case HalDisplay::HALF_REFRESH:
return EInkDisplay::HALF_REFRESH;
case HalDisplay::FAST_REFRESH:
default:
return EInkDisplay::FAST_REFRESH;
}
}
void HalDisplay::displayBuffer(HalDisplay::RefreshMode mode, bool turnOffScreen) {
einkDisplay.displayBuffer(convertRefreshMode(mode), turnOffScreen);
}
void HalDisplay::refreshDisplay(HalDisplay::RefreshMode mode, bool turnOffScreen) {
einkDisplay.refreshDisplay(convertRefreshMode(mode), turnOffScreen);
}
void HalDisplay::deepSleep() { einkDisplay.deepSleep(); }
uint8_t* HalDisplay::getFrameBuffer() const { return einkDisplay.getFrameBuffer(); }
void HalDisplay::copyGrayscaleBuffers(const uint8_t* lsbBuffer, const uint8_t* msbBuffer) {
einkDisplay.copyGrayscaleBuffers(lsbBuffer, msbBuffer);
}
void HalDisplay::copyGrayscaleLsbBuffers(const uint8_t* lsbBuffer) { einkDisplay.copyGrayscaleLsbBuffers(lsbBuffer); }
void HalDisplay::copyGrayscaleMsbBuffers(const uint8_t* msbBuffer) { einkDisplay.copyGrayscaleMsbBuffers(msbBuffer); }
void HalDisplay::cleanupGrayscaleBuffers(const uint8_t* bwBuffer) { einkDisplay.cleanupGrayscaleBuffers(bwBuffer); }
void HalDisplay::displayGrayBuffer(bool turnOffScreen) { einkDisplay.displayGrayBuffer(turnOffScreen); }