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introducing ICNT86Touchscreen
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esphome/components/icnt86/__init__.py
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esphome/components/icnt86/__init__.py
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esphome/components/icnt86/icnt86.cpp
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esphome/components/icnt86/icnt86.cpp
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#include "icnt86.h"
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#include "esphome/core/log.h"
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namespace esphome {
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namespace icnt86 {
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static const char *const TAG = "icnt86";
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static const uint8_t MAX_BUTTONS = 4;
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static const uint8_t MAX_TOUCH_POINTS = 5;
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static const uint8_t MAX_DATA_LEN = (7 + MAX_TOUCH_POINTS * 10); // 7 Header + (Points * 10 data bytes)
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#define UBYTE uint8_t
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#define UWORD uint16_t
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#define UDOUBLE uint32_t
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struct ICNT86ButtonReport {
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uint16_t length; // Always 14 (0x000E)
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uint8_t report_id; // Always 0x03
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uint16_t timestamp; // Number in units of 100 us
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uint8_t btn_value; // Only use bit 0..3
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uint16_t btn_signal[MAX_BUTTONS];
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} __attribute__((packed));
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struct ICNT86TouchRecord {
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uint8_t : 5;
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uint8_t touch_type : 3;
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uint8_t tip : 1;
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uint8_t event_id : 2;
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uint8_t touch_id : 5;
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uint16_t x;
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uint16_t y;
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uint8_t pressure;
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uint16_t major_axis_length;
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uint8_t orientation;
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} __attribute__((packed));
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void ICNT86TouchscreenStore::gpio_intr(ICNT86TouchscreenStore *store) { store->touch = true; }
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float ICNT86Touchscreen::get_setup_priority() const { return setup_priority::HARDWARE - 1.0f; }
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void ICNT86Touchscreen::setup() {
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ESP_LOGCONFIG(TAG, "Setting up icnt86 Touchscreen...");
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// Register interrupt pin
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this->interrupt_pin_->pin_mode(gpio::FLAG_INPUT | gpio::FLAG_PULLUP);
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this->interrupt_pin_->setup();
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this->store_.pin = this->interrupt_pin_->to_isr();
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this->interrupt_pin_->attach_interrupt(ICNT86TouchscreenStore::gpio_intr, &this->store_,
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gpio::INTERRUPT_FALLING_EDGE);
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// Perform reset if necessary
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if (this->reset_pin_ != nullptr) {
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this->reset_pin_->setup();
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this->reset_();
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}
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// Update display dimensions if they were updated during display setup
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this->display_width_ = this->display_->get_width();
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this->display_height_ = this->display_->get_height();
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this->rotation_ = static_cast<TouchRotation>(this->display_->get_rotation());
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// Trigger initial read to activate the interrupt
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this->store_.touch = true;
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}
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void ICNT86Touchscreen::loop() {
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if (!this->store_.touch) {
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return;
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}
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ESP_LOGD(TAG, "touch");
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this->store_.touch = false;
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char buf[100];
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char mask[1] = {0x00};
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// Read report length
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uint16_t data_len;
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this->ICNT_Read_(0x1001, buf, 1);
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uint8_t touch_count = buf[0];
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ESP_LOGD(TAG, "Touch count: %d", touch_count);
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if (buf[0] == 0x00) { // No new touch
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this->ICNT_Write_(0x1001, mask, 1);
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delay(1);
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return;
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} else {
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if (touch_count > 5 || touch_count < 1) {
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this->ICNT_Write_(0x1001, mask, 1);
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touch_count = 0;
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for (auto *listener : this->touch_listeners_)
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listener->release();
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return;
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}
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this->ICNT_Read_(0x1002, buf, touch_count * 7);
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this->ICNT_Write_(0x1001, mask, 1);
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for (UBYTE i = 0; i < touch_count; i++) {
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UWORD X = ((UWORD) buf[2 + 7 * i] << 8) + buf[1 + 7 * i];
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UWORD Y = ((UWORD) buf[4 + 7 * i] << 8) + buf[3 + 7 * i];
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UWORD P = buf[5 + 7 * i];
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UWORD TouchEvenid = buf[6 + 7 * i];
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TouchPoint tp;
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switch (this->rotation_) {
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case ROTATE_0_DEGREES:
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// Origin is top right, so mirror X by default
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tp.x = this->display_width_ - X;
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tp.y = Y;
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break;
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case ROTATE_90_DEGREES:
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tp.x = Y;
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tp.y = X;
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break;
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case ROTATE_180_DEGREES:
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tp.x = Y;
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tp.y = this->display_height_ - Y;
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break;
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case ROTATE_270_DEGREES:
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tp.x = this->display_height_ - Y;
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tp.y = this->display_width_ - X;
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break;
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}
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tp.id = TouchEvenid;
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tp.state = P;
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ESP_LOGD(TAG, "Touch x: %d, y: %d, p: %d", X, Y, P);
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this->defer([this, tp]() { this->send_touch_(tp); });
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}
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}
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}
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void ICNT86Touchscreen::reset_() {
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if (this->reset_pin_ != nullptr) {
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this->reset_pin_->digital_write(false);
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delay(10);
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this->reset_pin_->digital_write(true);
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delay(10);
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}
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}
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void ICNT86Touchscreen::I2C_Write_Byte_(UWORD Reg, char *Data, UBYTE len) {
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char wbuf[50] = {(Reg >> 8) & 0xff, Reg & 0xff};
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for (UBYTE i = 0; i < len; i++) {
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wbuf[i + 2] = Data[i];
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}
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this->write((const uint8_t *) wbuf, len + 2);
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}
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void ICNT86Touchscreen::dump_config() {
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ESP_LOGCONFIG(TAG, "icnt86 Touchscreen:");
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LOG_I2C_DEVICE(this);
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LOG_PIN(" Interrupt Pin: ", this->interrupt_pin_);
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LOG_PIN(" Reset Pin: ", this->reset_pin_);
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}
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void ICNT86Touchscreen::ICNT_Read_(UWORD Reg, char *Data, UBYTE len) { this->I2C_Read_Byte_(Reg, Data, len); }
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void ICNT86Touchscreen::ICNT_Write_(UWORD Reg, char *Data, UBYTE len) { this->I2C_Write_Byte_(Reg, Data, len); }
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void ICNT86Touchscreen::I2C_Read_Byte_(UWORD Reg, char *Data, UBYTE len) {
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char *rbuf = Data;
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this->I2C_Write_Byte_(Reg, 0, 0);
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this->read((uint8_t *) rbuf, len);
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}
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} // namespace icnt86
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} // namespace esphome
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esphome/components/icnt86/icnt86.h
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esphome/components/icnt86/icnt86.h
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#pragma once
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#include "esphome/components/i2c/i2c.h"
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#include "esphome/components/touchscreen/touchscreen.h"
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#include "esphome/core/component.h"
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#include "esphome/core/hal.h"
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namespace esphome {
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namespace icnt86 {
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using namespace touchscreen;
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#define UBYTE uint8_t
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#define UWORD uint16_t
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#define UDOUBLE uint32_t
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struct ICNT86TouchscreenStore {
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volatile bool touch;
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ISRInternalGPIOPin pin;
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static void gpio_intr(ICNT86TouchscreenStore *store);
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};
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class ICNT86Touchscreen : public Touchscreen, public Component, public i2c::I2CDevice {
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public:
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void setup() override;
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void loop() override;
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void dump_config() override;
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float get_setup_priority() const override;
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void set_interrupt_pin(InternalGPIOPin *pin) { this->interrupt_pin_ = pin; }
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void set_reset_pin(GPIOPin *pin) { this->reset_pin_ = pin; }
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protected:
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void reset_();
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void I2C_Write_Byte_(UWORD Reg, char *Data, UBYTE len);
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void ICNT_Read_(UWORD Reg, char *Data, UBYTE len);
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void ICNT_Write_(UWORD Reg, char *Data, UBYTE len);
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void I2C_Read_Byte_(UWORD Reg, char *Data, UBYTE len);
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void ICNT_ReadVersion_();
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ICNT86TouchscreenStore store_;
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InternalGPIOPin *interrupt_pin_;
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GPIOPin *reset_pin_{nullptr};
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};
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} // namespace icnt86
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} // namespace esphome
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esphome/components/icnt86/touchscreen.py
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esphome/components/icnt86/touchscreen.py
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import esphome.codegen as cg
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import esphome.config_validation as cv
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from esphome import pins
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from esphome.components import i2c, touchscreen
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from esphome.const import CONF_ID, CONF_INTERRUPT_PIN, CONF_RESET_PIN
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CODEOWNERS = ["@siemon-geeroms"]
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DEPENDENCIES = ["i2c"]
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icnt86_ns = cg.esphome_ns.namespace("icnt86")
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ICNT86Touchscreen = icnt86_ns.class_(
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"ICNT86Touchscreen",
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touchscreen.Touchscreen,
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cg.Component,
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i2c.I2CDevice,
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)
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CONF_ICNT86_ID = "icnt86_id"
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CONF_RTS_PIN = "rts_pin"
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CONFIG_SCHEMA = touchscreen.TOUCHSCREEN_SCHEMA.extend(
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cv.Schema(
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{
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cv.GenerateID(): cv.declare_id(ICNT86Touchscreen),
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cv.Required(CONF_INTERRUPT_PIN): pins.internal_gpio_input_pin_schema,
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cv.Optional(CONF_RESET_PIN): pins.gpio_output_pin_schema,
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}
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)
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.extend(i2c.i2c_device_schema(0x48))
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.extend(cv.COMPONENT_SCHEMA)
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)
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async def to_code(config):
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var = cg.new_Pvariable(config[CONF_ID])
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await cg.register_component(var, config)
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await i2c.register_i2c_device(var, config)
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await touchscreen.register_touchscreen(var, config)
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interrupt_pin = await cg.gpio_pin_expression(config[CONF_INTERRUPT_PIN])
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cg.add(var.set_interrupt_pin(interrupt_pin))
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if CONF_RESET_PIN in config:
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rts_pin = await cg.gpio_pin_expression(config[CONF_RESET_PIN])
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cg.add(var.set_reset_pin(rts_pin))
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