dbf850c434
- M5 Unit Modules library + M5 Unit Test app - Minor fixes for TodoList, TwoEleven, Snake, Brainfuck and Breakout - Fixed SerialConsole to use the uart controller as it was broken in one of the many updates - Fixed keyboard input in TwoEleven, Breakout, Magic8Ball and Snake - Bluetooth Media Keys app, supports pressing physical keys to trigger the corresponding buttonmatrix button - Epub Reader app
291 lines
8.9 KiB
C++
291 lines
8.9 KiB
C++
#pragma once
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#include "View.h"
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#include "esp_log.h"
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#include <string>
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#include <sstream>
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#include <lvgl.h>
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#include <tt_lvgl.h>
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#include <Tactility/RecursiveMutex.h>
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#include <Tactility/Thread.h>
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#include <TactilityCpp/LvglLock.h>
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#include <tactility/device.h>
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#include <tactility/drivers/uart_controller.h>
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constexpr size_t receiveBufferSize = 512;
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constexpr size_t renderBufferSize = receiveBufferSize + 2; // Leave space for newline at split and null terminator at the end
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class ConsoleView final : public View {
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const char* TAG = "SerialConsole";
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lv_obj_t* _Nullable parent = nullptr;
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lv_obj_t* _Nullable logTextarea = nullptr;
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lv_obj_t* _Nullable inputTextarea = nullptr;
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Device* uartDev = nullptr;
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std::unique_ptr<tt::Thread> uartThread _Nullable = nullptr;
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bool uartThreadInterrupted = false;
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std::unique_ptr<tt::Thread> viewThread _Nullable = nullptr;
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bool viewThreadInterrupted = false;
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tt::RecursiveMutex mutex;
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uint8_t receiveBuffer[receiveBufferSize];
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uint8_t renderBuffer[renderBufferSize];
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size_t receiveBufferPosition = 0;
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std::string terminatorString = "\n";
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LvglLock lvglLock;
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bool isUartThreadInterrupted() const {
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auto lock = mutex.asScopedLock();
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lock.lock();
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return uartThreadInterrupted;
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}
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bool isViewThreadInterrupted() const {
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auto lock = mutex.asScopedLock();
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lock.lock();
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return viewThreadInterrupted;
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}
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void updateViews() {
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if (parent == nullptr) {
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return;
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}
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// Updating the view is expensive, so we only want to set the text once:
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// Gather all the lines in a single buffer
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if (mutex.lock()) {
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size_t first_part_size = receiveBufferSize - receiveBufferPosition;
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memcpy(renderBuffer, receiveBuffer + receiveBufferPosition, first_part_size);
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renderBuffer[receiveBufferPosition] = '\n';
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if (receiveBufferPosition > 0) {
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memcpy(renderBuffer + first_part_size + 1, receiveBuffer, (receiveBufferSize - first_part_size));
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renderBuffer[receiveBufferSize - 1] = 0x00;
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}
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mutex.unlock();
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}
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if (lvglLock.lock()) {
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lv_textarea_set_text(logTextarea, (const char*)renderBuffer);
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lvglLock.unlock();
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}
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}
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int32_t viewThreadMain() {
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while (!isViewThreadInterrupted()) {
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auto start_time = tt::kernel::getTicks();
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updateViews();
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auto end_time = tt::kernel::getTicks();
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auto time_diff = end_time - start_time;
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auto target_delay = tt::kernel::millisToTicks(500U);
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if (time_diff < target_delay) {
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tt::kernel::delayTicks(target_delay - time_diff);
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}
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}
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return 0;
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}
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int32_t uartThreadMain() {
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while (!isUartThreadInterrupted()) {
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uint8_t byte;
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error_t err = uart_controller_read_byte(uartDev, &byte, tt::kernel::millisToTicks(50));
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// Thread might've been interrupted in the meanwhile
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if (isUartThreadInterrupted()) {
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break;
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}
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if (err == ERROR_NONE) {
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mutex.lock();
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receiveBuffer[receiveBufferPosition++] = byte;
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if (receiveBufferPosition == receiveBufferSize) {
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receiveBufferPosition = 0;
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}
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mutex.unlock();
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}
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}
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return 0;
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}
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static void onSendClickedCallback(lv_event_t* event) {
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auto* view = (ConsoleView*)lv_event_get_user_data(event);
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view->onSendClicked();
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}
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static void onTerminatorDropdownValueChangedCallback(lv_event_t* event) {
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auto* view = (ConsoleView*)lv_event_get_user_data(event);
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view->onTerminatorDropDownValueChanged(event);
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}
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void onTerminatorDropDownValueChanged(lv_event_t* event) {
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auto* dropdown = static_cast<lv_obj_t*>(lv_event_get_target(event));
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mutex.lock();
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switch (lv_dropdown_get_selected(dropdown)) {
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case 0:
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terminatorString = "\n";
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break;
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case 1:
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terminatorString = "\r\n";
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break;
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}
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mutex.unlock();
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}
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void onSendClicked() {
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mutex.lock();
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std::string input_text = lv_textarea_get_text(inputTextarea);
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std::string to_send;
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to_send.append(input_text + terminatorString);
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Device* localUart = uartDev;
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mutex.unlock();
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if (localUart != nullptr) {
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error_t err = uart_controller_write_bytes(
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localUart,
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reinterpret_cast<const uint8_t*>(to_send.c_str()),
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to_send.length(),
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tt::kernel::millisToTicks(100)
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);
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if (err != ERROR_NONE) {
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ESP_LOGE(TAG, "Failed to send \"%s\"", input_text.c_str());
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}
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}
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lv_textarea_set_text(inputTextarea, "");
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}
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public:
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void startLogic(Device* dev) {
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assert(dev != nullptr);
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if (dev == nullptr) return;
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memset(receiveBuffer, 0, receiveBufferSize);
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assert(uartThread == nullptr);
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assert(uartDev == nullptr);
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uartDev = dev;
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uartThreadInterrupted = false;
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uartThread = std::make_unique<tt::Thread>(
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"SerConsUart",
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4096,
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[this] { return uartThreadMain(); }
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);
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uartThread->setPriority(tt::Thread::Priority::High);
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uartThread->start();
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}
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void startViews(lv_obj_t* parent) {
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this->parent = parent;
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lv_obj_set_style_pad_gap(parent, 2, 0);
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logTextarea = lv_textarea_create(parent);
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lv_textarea_set_placeholder_text(logTextarea, "Waiting for data...");
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lv_obj_set_flex_grow(logTextarea, 1);
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lv_obj_set_width(logTextarea, LV_PCT(100));
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lv_obj_add_state(logTextarea, LV_STATE_DISABLED);
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lv_obj_set_style_margin_ver(logTextarea, 0, 0);
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auto* input_wrapper = lv_obj_create(parent);
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lv_obj_set_size(input_wrapper, LV_PCT(100), LV_SIZE_CONTENT);
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lv_obj_set_style_pad_all(input_wrapper, 0, 0);
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lv_obj_set_style_border_width(input_wrapper, 0, 0);
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lv_obj_set_width(input_wrapper, LV_PCT(100));
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lv_obj_set_flex_flow(input_wrapper, LV_FLEX_FLOW_ROW);
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inputTextarea = lv_textarea_create(input_wrapper);
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lv_textarea_set_one_line(inputTextarea, true);
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lv_textarea_set_placeholder_text(inputTextarea, "Text to send");
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lv_obj_set_width(inputTextarea, LV_PCT(100));
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lv_obj_set_flex_grow(inputTextarea, 1);
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auto* terminator_dropdown = lv_dropdown_create(input_wrapper);
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lv_dropdown_set_options(terminator_dropdown, "\\n\n\\r\\n");
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lv_obj_set_width(terminator_dropdown, 70);
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lv_obj_add_event_cb(terminator_dropdown, onTerminatorDropdownValueChangedCallback, LV_EVENT_VALUE_CHANGED, this);
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auto* button = lv_button_create(input_wrapper);
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auto* button_label = lv_label_create(button);
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lv_label_set_text(button_label, "Send");
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lv_obj_add_event_cb(button, onSendClickedCallback, LV_EVENT_SHORT_CLICKED, this);
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viewThreadInterrupted = false;
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viewThread = std::make_unique<tt::Thread>(
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"SerConsView",
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4096,
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[this] { return viewThreadMain(); }
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);
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viewThread->setPriority(tt::Thread::Priority::Higher);
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viewThread->start();
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}
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void stopLogic() {
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auto lock = mutex.asScopedLock();
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lock.lock();
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uartThreadInterrupted = true;
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// Detach thread, it will auto-delete when leaving the current scope
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auto old_uart_thread = std::move(uartThread);
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// Unlock so thread can lock
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lock.unlock();
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if (old_uart_thread->getState() != tt::Thread::State::Stopped) {
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// Wait for thread to finish
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old_uart_thread->join();
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}
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}
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void stopViews() {
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auto lock = mutex.asScopedLock();
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lock.lock();
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viewThreadInterrupted = true;
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// Detach thread, it will auto-delete when leaving the current scope
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auto old_view_thread = std::move(viewThread);
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// Unlock so thread can lock
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lock.unlock();
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if (old_view_thread->getState() != tt::Thread::State::Stopped) {
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// Wait for thread to finish
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old_view_thread->join();
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}
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}
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void stopUart() {
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auto lock = mutex.asScopedLock();
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lock.lock();
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if (uartDev != nullptr) {
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uart_controller_close(uartDev);
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uartDev = nullptr;
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}
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}
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void onStart(lv_obj_t* parent, Device* dev) {
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auto lock = mutex.asScopedLock();
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lock.lock();
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startLogic(dev);
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startViews(parent);
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}
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void onStop() override {
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stopViews();
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stopLogic();
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stopUart();
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}
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};
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