Files
tactility/Drivers/cst816t-module/source/cst816t.cpp
2026-07-20 23:43:17 +02:00

255 lines
8.9 KiB
C++

// SPDX-License-Identifier: Apache-2.0
#include <drivers/cst816t.h>
#include <cst816t_module.h>
#include <tactility/check.h>
#include <tactility/device.h>
#include <tactility/driver.h>
#include <tactility/drivers/gpio_controller.h>
#include <tactility/drivers/gpio_descriptor.h>
#include <tactility/drivers/i2c_controller.h>
#include <tactility/drivers/pointer.h>
#include <tactility/error.h>
#include <tactility/log.h>
#include <freertos/FreeRTOS.h>
#include <freertos/task.h>
#include <cstdlib>
constexpr auto* TAG = "CST816T";
#define GET_CONFIG(device) (static_cast<const Cst816tConfig*>((device)->config))
// Register map and reset/bring-up sequence taken from https://github.com/koendv/cst816t
// (src/cst816t.cpp) - the manufacturer datasheet (DS-CST816T V2.2) covers electrical
// characteristics and I2C timing only, not the register map.
static constexpr uint8_t REG_GESTURE_ID = 0x01;
static constexpr uint8_t REG_CHIP_ID = 0xA7;
static constexpr uint8_t REG_DIS_AUTOSLEEP = 0xFE;
static constexpr TickType_t TIMEOUT = pdMS_TO_TICKS(50);
struct Cst816tInternal {
GpioDescriptor* reset_descriptor;
bool swap_xy;
bool mirror_x;
bool mirror_y;
bool touched;
uint16_t x;
uint16_t y;
};
// region Driver lifecycle
// Timings match the reference driver linked above: it holds RST high for 100ms (well past the
// datasheet's Tpor/Tron minimum of 100ms), pulses it low for 10ms (Trst minimum is 0.1ms), then
// waits another 100ms (Tron) for the chip to finish reinitializing before any I2C traffic.
static error_t reset_pulse(GpioDescriptor* descriptor, bool active_high) {
bool idle_level = !active_high;
bool ok = gpio_descriptor_set_flags(descriptor, GPIO_FLAG_DIRECTION_OUTPUT) == ERROR_NONE;
ok = ok && gpio_descriptor_set_level(descriptor, idle_level) == ERROR_NONE;
vTaskDelay(pdMS_TO_TICKS(100));
ok = ok && gpio_descriptor_set_level(descriptor, active_high) == ERROR_NONE;
vTaskDelay(pdMS_TO_TICKS(10));
ok = ok && gpio_descriptor_set_level(descriptor, idle_level) == ERROR_NONE;
vTaskDelay(pdMS_TO_TICKS(100));
return ok ? ERROR_NONE : ERROR_RESOURCE;
}
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<Cst816tInternal*>(malloc(sizeof(Cst816tInternal)));
if (internal == nullptr) {
return ERROR_OUT_OF_MEMORY;
}
internal->reset_descriptor = nullptr;
internal->swap_xy = config->swap_xy;
internal->mirror_x = config->mirror_x;
internal->mirror_y = config->mirror_y;
internal->touched = false;
internal->x = 0;
internal->y = 0;
if (config->pin_reset.gpio_controller != nullptr) {
internal->reset_descriptor = gpio_descriptor_acquire(config->pin_reset.gpio_controller, config->pin_reset.pin, GPIO_OWNER_GPIO);
if (internal->reset_descriptor == nullptr) {
LOG_E(TAG, "Failed to acquire reset pin");
free(internal);
return ERROR_RESOURCE;
}
if (reset_pulse(internal->reset_descriptor, config->reset_active_high) != ERROR_NONE) {
LOG_E(TAG, "Failed to pulse reset pin");
gpio_descriptor_release(internal->reset_descriptor);
free(internal);
return ERROR_RESOURCE;
}
}
uint8_t chip_id = 0;
if (i2c_controller_register8_get(parent, config->address, REG_CHIP_ID, &chip_id, TIMEOUT) != ERROR_NONE) {
LOG_E(TAG, "Failed to read chip ID");
if (internal->reset_descriptor != nullptr) {
gpio_descriptor_release(internal->reset_descriptor);
}
free(internal);
return ERROR_RESOURCE;
}
LOG_I(TAG, "Chip ID 0x%02X", chip_id);
// Auto-sleep would otherwise drop the controller into standby after ~2s of inactivity,
// adding wake-up latency to the next touch; disabled since exit_sleep() isn't implemented
// here (see README) so there'd be no way back out once it kicked in.
uint8_t dis_auto_sleep = 0xFF;
if (i2c_controller_register8_set(parent, config->address, REG_DIS_AUTOSLEEP, dis_auto_sleep, TIMEOUT) != ERROR_NONE) {
LOG_W(TAG, "Failed to disable auto-sleep (non-fatal)");
}
device_set_driver_data(device, internal);
return ERROR_NONE;
}
static error_t stop(Device* device) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
if (internal->reset_descriptor != nullptr) {
gpio_descriptor_release(internal->reset_descriptor);
}
free(internal);
device_set_driver_data(device, nullptr);
return ERROR_NONE;
}
// endregion
// region PointerApi
static error_t cst816t_read_data(Device* device, TickType_t) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
const auto* config = GET_CONFIG(device);
auto* parent = device_get_parent(device);
// Burst-reads gesture_id, finger_num and X/Y in one transaction, matching the reference
// driver: the chip presents them as one contiguous 6-byte block starting at REG_GESTURE_ID.
uint8_t data[6];
error_t error = i2c_controller_read_register(parent, config->address, REG_GESTURE_ID, data, sizeof(data), TIMEOUT);
if (error != ERROR_NONE) {
return error;
}
uint8_t finger_num = data[1];
internal->touched = finger_num > 0;
// Top nibble of the high byte is reserved/event-type; the coordinate itself is 12-bit.
internal->x = static_cast<uint16_t>(((data[2] & 0x0F) << 8) | data[3]);
internal->y = static_cast<uint16_t>(((data[4] & 0x0F) << 8) | data[5]);
return ERROR_NONE;
}
// Single-touch only - see README for why.
static bool cst816t_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<Cst816tInternal*>(device_get_driver_data(device));
const auto* config = GET_CONFIG(device);
if (!internal->touched || max_point_count == 0) {
*point_count = 0;
return false;
}
// Order matches esp_lcd_touch's own software coordinate adjustment (mirror X, mirror Y,
// then swap) so behavior lines up with the other touch modules in this codebase.
uint16_t point_x = internal->x;
uint16_t point_y = internal->y;
if (internal->mirror_x) {
point_x = config->x_max - point_x;
}
if (internal->mirror_y) {
point_y = config->y_max - point_y;
}
if (internal->swap_xy) {
uint16_t tmp = point_x;
point_x = point_y;
point_y = tmp;
}
x[0] = point_x;
y[0] = point_y;
if (strength != nullptr) {
strength[0] = 0;
}
*point_count = 1;
return true;
}
static error_t cst816t_set_swap_xy(Device* device, bool swap) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
internal->swap_xy = swap;
return ERROR_NONE;
}
static error_t cst816t_get_swap_xy(Device* device, bool* swap) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
*swap = internal->swap_xy;
return ERROR_NONE;
}
static error_t cst816t_set_mirror_x(Device* device, bool mirror) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
internal->mirror_x = mirror;
return ERROR_NONE;
}
static error_t cst816t_get_mirror_x(Device* device, bool* mirror) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
*mirror = internal->mirror_x;
return ERROR_NONE;
}
static error_t cst816t_set_mirror_y(Device* device, bool mirror) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
internal->mirror_y = mirror;
return ERROR_NONE;
}
static error_t cst816t_get_mirror_y(Device* device, bool* mirror) {
auto* internal = static_cast<Cst816tInternal*>(device_get_driver_data(device));
*mirror = internal->mirror_y;
return ERROR_NONE;
}
// endregion
static const PointerApi cst816t_pointer_api = {
// Unsupported (null per PointerApi's contract): the reference driver defines
// REG_SLEEP_MODE (0xE5) but never writes it, and the datasheet says waking up needs a
// hardware reset pulse rather than a register write.
.enter_sleep = nullptr,
.exit_sleep = nullptr,
.read_data = cst816t_read_data,
.get_touched_points = cst816t_get_touched_points,
.set_swap_xy = cst816t_set_swap_xy,
.get_swap_xy = cst816t_get_swap_xy,
.set_mirror_x = cst816t_set_mirror_x,
.get_mirror_x = cst816t_get_mirror_x,
.set_mirror_y = cst816t_set_mirror_y,
.get_mirror_y = cst816t_get_mirror_y,
};
Driver cst816t_driver = {
.name = "cst816t",
.compatible = (const char*[]) { "hynitron,cst816t", nullptr },
.start_device = start,
.stop_device = stop,
.api = &cst816t_pointer_api,
.device_type = &POINTER_TYPE,
.owner = &cst816t_module,
.internal = nullptr
};