Files
tactility/TactilityKernel/source/drivers/display.cpp
Ken Van Hoeylandt d896657bf9 Device migrations, drivers and fixes (#571)
Device migrations:

- cyd-4848S040c
- guition-jc1060p470ciwy
- guition-jc2432w328c
- guition-jc3248w535c (known issue with display and touch, Shadowtrance will look into it)
- guition-jc8048w550c
- heltec-wifi-lora-32-v3
- lilygo-tdeck-max (excluding graphics)
- lilygo-tdisplay
- lilygo-tdisplay-s3
- lilygo-tdongle-s3
- lilygo-tlora-pager

Driver migrations:

- Implemented haptic driver interface in kernel
- AXS15231b
- BQ25896
- BQ27220
- CST328
- CST6xx
- DRV2605
- JD9165
- Custom LilyGO driver for T-Lora Pager
- SSD1306
- ST7701
- ST7735
- SY6970
- TCA8418

Fixes/improvements:

- Boot app: support for multiple power devices, improved UI
- lvgl_devices and related code: fixes for mapping
- Support for arrays in dts parser
2026-07-18 15:01:42 +02:00

129 lines
4.4 KiB
C++

// SPDX-License-Identifier: Apache-2.0
#include <tactility/drivers/display.h>
#include <tactility/device.h>
#define DISPLAY_DRIVER_API(driver) ((struct DisplayApi*)driver->api)
extern "C" {
bool display_has_capability(struct Device* device, uint32_t capability) {
const auto* driver = device_get_driver(device);
const auto* api = DISPLAY_DRIVER_API(driver);
if (api->has_capability != nullptr) {
return api->has_capability(device, capability);
}
return (api->capabilities & capability) == capability;
}
error_t display_reset(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->reset(device);
}
error_t display_init(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->init(device);
}
error_t display_draw_bitmap(Device* device, int32_t x_start, int32_t y_start, int32_t x_end, int32_t y_end, const void* color_data) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->draw_bitmap(device, x_start, y_start, x_end, y_end, color_data);
}
error_t display_mirror(Device* device, bool x_axis, bool y_axis) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->mirror(device, x_axis, y_axis);
}
error_t display_swap_xy(Device* device, bool swap_axes) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->swap_xy(device, swap_axes);
}
bool display_get_swap_xy(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->get_swap_xy(device);
}
bool display_get_mirror_x(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->get_mirror_x(device);
}
bool display_get_mirror_y(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->get_mirror_y(device);
}
error_t display_set_gap(Device* device, int32_t x_gap, int32_t y_gap) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->set_gap(device, x_gap, y_gap);
}
int32_t display_get_gap_x(Device* device) {
const auto* driver = device_get_driver(device);
const auto* api = DISPLAY_DRIVER_API(driver);
return api->get_gap_x != nullptr ? api->get_gap_x(device) : 0;
}
int32_t display_get_gap_y(Device* device) {
const auto* driver = device_get_driver(device);
const auto* api = DISPLAY_DRIVER_API(driver);
return api->get_gap_y != nullptr ? api->get_gap_y(device) : 0;
}
error_t display_invert_color(Device* device, bool invert_color_data) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->invert_color(device, invert_color_data);
}
error_t display_disp_on_off(Device* device, bool on_off) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->disp_on_off(device, on_off);
}
error_t display_disp_sleep(Device* device, bool sleep) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->disp_sleep(device, sleep);
}
enum DisplayColorFormat display_get_color_format(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->get_color_format(device);
}
uint16_t display_get_resolution_x(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->get_resolution_x(device);
}
uint16_t display_get_resolution_y(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->get_resolution_y(device);
}
void display_get_frame_buffer(Device* device, uint8_t index, void** out_buffer) {
const auto* driver = device_get_driver(device);
DISPLAY_DRIVER_API(driver)->get_frame_buffer(device, index, out_buffer);
}
uint8_t display_get_frame_buffer_count(Device* device) {
const auto* driver = device_get_driver(device);
return DISPLAY_DRIVER_API(driver)->get_frame_buffer_count(device);
}
error_t display_get_backlight(Device* device, Device** backlight) {
const auto* driver = device_get_driver(device);
const auto* api = DISPLAY_DRIVER_API(driver);
if (api->get_backlight == nullptr) {
return ERROR_NOT_SUPPORTED;
}
return api->get_backlight(device, backlight);
}
const struct DeviceType DISPLAY_TYPE {
.name = "display"
};
}