Files
tactility/Drivers/axs15231b-module/source/axs15231b_touch.cpp
T
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

212 lines
8.1 KiB
C++

// SPDX-License-Identifier: Apache-2.0
#include <drivers/axs15231b_touch.h>
#include <axs15231b_module.h>
#include <tactility/check.h>
#include <tactility/device.h>
#include <tactility/driver.h>
#include <tactility/drivers/esp32_i2c.h>
#include <tactility/drivers/esp32_i2c_master.h>
#include <tactility/drivers/i2c_controller.h>
#include <tactility/drivers/pointer.h>
#include <tactility/error.h>
#include <tactility/log.h>
#include <esp_err.h>
#include <esp_lcd_axs15231b.h>
#include <esp_lcd_io_i2c.h>
#include <esp_lcd_panel_io.h>
#include <esp_lcd_touch.h>
#include <cstdlib>
#define TAG "AXS15231BTouch"
#define GET_CONFIG(device) (static_cast<const Axs15231bTouchConfig*>((device)->config))
struct Axs15231bTouchInternal {
esp_lcd_panel_io_handle_t io_handle;
esp_lcd_touch_handle_t touch_handle;
};
static inline gpio_num_t pin_or_nc(const struct GpioPinSpec& pin) {
return pin.gpio_controller == nullptr ? GPIO_NUM_NC : static_cast<gpio_num_t>(pin.pin);
}
// region Driver lifecycle
// AXS15231B always sits at a fixed I2C address (ESP_LCD_TOUCH_IO_I2C_AXS15231B_ADDRESS), unlike
// GT911's strapping-dependent address, so no bus probing is needed here.
static esp_err_t create_io_handle(Device* parent, esp_lcd_panel_io_handle_t* out_handle) {
esp_lcd_panel_io_i2c_config_t io_config = ESP_LCD_TOUCH_IO_I2C_AXS15231B_CONFIG();
auto* parent_driver = device_get_driver(parent);
if (driver_is_compatible(parent_driver, "espressif,esp32-i2c")) {
auto port = static_cast<const Esp32I2cConfig*>(parent->config)->port;
return esp_lcd_new_panel_io_i2c_v1(port, &io_config, out_handle);
}
if (driver_is_compatible(parent_driver, "espressif,esp32-i2c-master")) {
auto bus = esp32_i2c_master_get_bus_handle(parent);
io_config.scl_speed_hz = esp32_i2c_master_get_clock_frequency(parent);
return esp_lcd_new_panel_io_i2c_v2(bus, &io_config, out_handle);
}
LOG_E(TAG, "Unsupported I2C driver");
return ESP_ERR_NOT_SUPPORTED;
}
static error_t start(Device* device) {
auto* parent = device_get_parent(device);
check(device_get_type(parent) == &I2C_CONTROLLER_TYPE);
const auto* config = GET_CONFIG(device);
auto* internal = static_cast<Axs15231bTouchInternal*>(malloc(sizeof(Axs15231bTouchInternal)));
if (internal == nullptr) {
return ERROR_OUT_OF_MEMORY;
}
esp_err_t ret = create_io_handle(parent, &internal->io_handle);
if (ret != ESP_OK) {
free(internal);
return ERROR_RESOURCE;
}
esp_lcd_touch_config_t touch_config = {
.x_max = config->x_max,
.y_max = config->y_max,
.rst_gpio_num = pin_or_nc(config->pin_reset),
.int_gpio_num = pin_or_nc(config->pin_interrupt),
.levels = {
.reset = config->reset_active_high ? 1u : 0u,
.interrupt = config->interrupt_active_high ? 1u : 0u,
},
.flags = {
.swap_xy = config->swap_xy ? 1u : 0u,
.mirror_x = config->mirror_x ? 1u : 0u,
.mirror_y = config->mirror_y ? 1u : 0u,
},
.process_coordinates = nullptr,
.interrupt_callback = nullptr,
.user_data = nullptr,
.driver_data = nullptr,
};
ret = esp_lcd_touch_new_i2c_axs15231b(internal->io_handle, &touch_config, &internal->touch_handle);
if (ret != ESP_OK) {
LOG_E(TAG, "Failed to create touch handle: %s", esp_err_to_name(ret));
esp_lcd_panel_io_del(internal->io_handle);
free(internal);
return ERROR_RESOURCE;
}
device_set_driver_data(device, internal);
return ERROR_NONE;
}
static error_t stop(Device* device) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
// esp_lcd_touch_del() only releases the touch-side resources; the panel IO handle is owned
// separately and needs its own deletion.
if (internal->touch_handle != nullptr) {
if (esp_lcd_touch_del(internal->touch_handle) != ESP_OK) {
LOG_E(TAG, "Failed to delete touch handle");
return ERROR_RESOURCE;
}
internal->touch_handle = nullptr;
}
if (internal->io_handle != nullptr) {
if (esp_lcd_panel_io_del(internal->io_handle) != ESP_OK) {
LOG_E(TAG, "Failed to delete panel IO handle");
return ERROR_RESOURCE;
}
internal->io_handle = nullptr;
}
free(internal);
device_set_driver_data(device, nullptr);
return ERROR_NONE;
}
// endregion
// region PointerApi
static error_t axs15231b_touch_enter_sleep(Device* device) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_enter_sleep(internal->touch_handle) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static error_t axs15231b_touch_exit_sleep(Device* device) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_exit_sleep(internal->touch_handle) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static error_t axs15231b_touch_read_data(Device* device, TickType_t timeout) {
(void)timeout; // esp_lcd_touch_read_data() has no timeout parameter
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_read_data(internal->touch_handle) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static bool axs15231b_touch_get_touched_points(Device* device, uint16_t* x, uint16_t* y, uint16_t* strength, uint8_t* point_count, uint8_t max_point_count) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_get_coordinates(internal->touch_handle, x, y, strength, point_count, max_point_count);
}
static error_t axs15231b_touch_set_swap_xy(Device* device, bool swap) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_set_swap_xy(internal->touch_handle, swap) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static error_t axs15231b_touch_get_swap_xy(Device* device, bool* swap) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_get_swap_xy(internal->touch_handle, swap) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static error_t axs15231b_touch_set_mirror_x(Device* device, bool mirror) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_set_mirror_x(internal->touch_handle, mirror) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static error_t axs15231b_touch_get_mirror_x(Device* device, bool* mirror) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_get_mirror_x(internal->touch_handle, mirror) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static error_t axs15231b_touch_set_mirror_y(Device* device, bool mirror) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_set_mirror_y(internal->touch_handle, mirror) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
static error_t axs15231b_touch_get_mirror_y(Device* device, bool* mirror) {
auto* internal = static_cast<Axs15231bTouchInternal*>(device_get_driver_data(device));
return esp_lcd_touch_get_mirror_y(internal->touch_handle, mirror) == ESP_OK ? ERROR_NONE : ERROR_RESOURCE;
}
// endregion
static const PointerApi axs15231b_touch_pointer_api = {
.enter_sleep = axs15231b_touch_enter_sleep,
.exit_sleep = axs15231b_touch_exit_sleep,
.read_data = axs15231b_touch_read_data,
.get_touched_points = axs15231b_touch_get_touched_points,
.set_swap_xy = axs15231b_touch_set_swap_xy,
.get_swap_xy = axs15231b_touch_get_swap_xy,
.set_mirror_x = axs15231b_touch_set_mirror_x,
.get_mirror_x = axs15231b_touch_get_mirror_x,
.set_mirror_y = axs15231b_touch_set_mirror_y,
.get_mirror_y = axs15231b_touch_get_mirror_y,
};
Driver axs15231b_touch_driver = {
.name = "axs15231b_touch",
.compatible = (const char*[]) { "axs,axs15231b-touch", nullptr },
.start_device = start,
.stop_device = stop,
.api = &axs15231b_touch_pointer_api,
.device_type = &POINTER_TYPE,
.owner = &axs15231b_module,
.internal = nullptr
};