mirror of
https://github.com/ByteWelder/Tactility.git
synced 2026-08-18 07:55:06 +00:00
462 lines
14 KiB
C++
462 lines
14 KiB
C++
#include "tactility/time.h"
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#include <Tactility/DeprecatedPaths.h>
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#include <Tactility/Tactility.h>
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#include <Tactility/TactilityConfig.h>
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#include <Tactility/Timer.h>
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#include <app/event.h>
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#include <app/manager.h>
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#include <app/manifest.h>
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#include <lvgl_window_manager/window_manager.h>
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#include <algorithm>
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#include <cstring>
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#include <format>
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#include <utility>
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#include <lvgl/fonts.h>
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#include <lvgl/lvgl.h>
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#include <lvgl/widgets/toolbar.h>
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#ifdef ESP_PLATFORM
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#include <esp_vfs_fat.h>
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#include <esp_heap_caps.h>
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#include <Tactility/MountPoints.h>
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#endif
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namespace tt::app::systeminfo {
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constexpr auto* TAG = "SystemInfo";
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extern const ::AppManifest manifest;
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namespace {
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size_t getHeapFree() {
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#ifdef ESP_PLATFORM
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return heap_caps_get_free_size(MALLOC_CAP_INTERNAL);
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#else
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return 4096 * 1024;
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#endif
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}
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size_t getHeapTotal() {
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#ifdef ESP_PLATFORM
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return heap_caps_get_total_size(MALLOC_CAP_INTERNAL);
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#else
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return 8192 * 1024;
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#endif
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}
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size_t getSpiFree() {
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#ifdef ESP_PLATFORM
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return heap_caps_get_free_size(MALLOC_CAP_SPIRAM);
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#else
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return 4096 * 1024;
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#endif
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}
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size_t getSpiTotal() {
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#ifdef ESP_PLATFORM
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return heap_caps_get_total_size(MALLOC_CAP_SPIRAM);
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#else
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return 8192 * 1024;
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#endif
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}
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enum class StorageUnit {
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Bytes,
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Kilobytes,
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Megabytes,
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Gigabytes
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};
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StorageUnit getStorageUnit(uint64_t value) {
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using enum StorageUnit;
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if (value / (1024 * 1024 * 1024) > 0) {
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return Gigabytes;
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} else if (value / (1024 * 1024) > 0) {
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return Megabytes;
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} else if (value / 1024 > 0) {
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return Kilobytes;
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} else {
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return Bytes;
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}
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}
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std::string getStorageUnitString(StorageUnit unit) {
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using enum StorageUnit;
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switch (unit) {
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case Bytes:
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return "bytes";
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case Kilobytes:
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return "kB";
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case Megabytes:
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return "MB";
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case Gigabytes:
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return "GB";
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default:
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std::unreachable();
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}
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}
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std::string getStorageValue(StorageUnit unit, uint64_t bytes) {
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using enum StorageUnit;
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switch (unit) {
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case Bytes:
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return std::to_string(bytes);
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case Kilobytes:
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return std::to_string(bytes / 1024);
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case Megabytes:
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return std::format("{:.1f}", static_cast<float>(bytes) / 1024.f / 1024.f);
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case Gigabytes:
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return std::format("{:.1f}", static_cast<float>(bytes) / 1024.f / 1024.f / 1024.f);
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default:
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std::unreachable();
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}
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}
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struct MemoryBarWidgets {
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lv_obj_t* bar = nullptr;
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lv_obj_t* label = nullptr;
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};
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MemoryBarWidgets createMemoryBar(lv_obj_t* parent, const char* label) {
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auto* container = lv_obj_create(parent);
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lv_obj_set_size(container, LV_PCT(100), LV_SIZE_CONTENT);
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lv_obj_set_style_pad_all(container, 0, LV_STATE_DEFAULT);
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lv_obj_set_style_border_width(container, 0, LV_STATE_DEFAULT);
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lv_obj_set_flex_flow(container, LV_FLEX_FLOW_ROW);
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lv_obj_set_style_bg_opa(container, 0, LV_STATE_DEFAULT);
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auto* left_label = lv_label_create(container);
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lv_label_set_text(left_label, label);
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auto label_width = 6 * lvgl_get_text_font_height(FONT_SIZE_DEFAULT);
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lv_obj_set_width(left_label, label_width);
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auto* bar = lv_bar_create(container);
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lv_obj_set_flex_grow(bar, 1);
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auto* bottom_label = lv_label_create(parent);
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lv_obj_set_width(bottom_label, LV_PCT(100));
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lv_obj_set_style_text_align(bottom_label, LV_TEXT_ALIGN_RIGHT, 0);
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if (lvgl_get_ui_density() == LVGL_UI_DENSITY_COMPACT) {
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lv_obj_set_style_pad_bottom(bottom_label, 2, LV_STATE_DEFAULT);
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} else {
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lv_obj_set_style_pad_bottom(bottom_label, 12, LV_STATE_DEFAULT);
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}
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return {bar, bottom_label};
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}
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void updateMemoryBar(const MemoryBarWidgets& widgets, uint64_t free, uint64_t total) {
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uint64_t used = total - free;
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// Scale down the uint64_t until it fits int32_t for the lv_bar
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uint64_t free_scaled = free;
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uint64_t total_scaled = total;
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while (total_scaled > static_cast<uint64_t>(INT32_MAX)) {
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free_scaled /= 1024;
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total_scaled /= 1024;
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}
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if (total > 0) {
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lv_bar_set_range(widgets.bar, 0, total_scaled);
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} else {
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lv_bar_set_range(widgets.bar, 0, 1);
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}
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lv_bar_set_value(widgets.bar, (total_scaled - free_scaled), LV_ANIM_OFF);
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const auto unit = getStorageUnit(total);
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const auto unit_label = getStorageUnitString(unit);
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const auto free_converted = getStorageValue(unit, free);
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const auto total_converted = getStorageValue(unit, total);
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lv_label_set_text_fmt(widgets.label, "%s / %s %s free (%llu / %llu bytes)",
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free_converted.c_str(), total_converted.c_str(), unit_label.c_str(),
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(unsigned long long)free, (unsigned long long)total);
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}
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#if configUSE_TRACE_FACILITY
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const char* getTaskState(const TaskStatus_t& task) {
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switch (task.eCurrentState) {
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case eRunning:
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return "running";
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case eReady:
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return "ready";
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case eBlocked:
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return "blocked";
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case eSuspended:
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return "suspended";
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case eDeleted:
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return "deleted";
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case eInvalid:
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default:
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return "invalid";
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}
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}
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void clearContainer(lv_obj_t* container) {
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lv_obj_clean(container);
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}
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void addRtosTask(lv_obj_t* parent, const TaskStatus_t& task) {
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auto* label = lv_label_create(parent);
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const char* name = (task.pcTaskName == nullptr || task.pcTaskName[0] == 0) ? "(unnamed)" : task.pcTaskName;
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lv_label_set_text_fmt(label, "%s (%s)", name, getTaskState(task));
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}
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void updateRtosTasks(lv_obj_t* parent) {
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clearContainer(parent);
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UBaseType_t count = uxTaskGetNumberOfTasks();
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auto* tasks = (TaskStatus_t*)malloc(sizeof(TaskStatus_t) * count);
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if (!tasks) {
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auto* error_label = lv_label_create(parent);
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lv_label_set_text(error_label, "Failed to allocate memory for task list");
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return;
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}
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uint32_t totalRuntime = 0;
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UBaseType_t actual = uxTaskGetSystemState(tasks, count, &totalRuntime);
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for (int i = 0; i < actual; ++i) {
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addRtosTask(parent, tasks[i]);
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}
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free(tasks);
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}
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#endif
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lv_obj_t* createTab(lv_obj_t* tabview, const char* name) {
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auto* tab = lv_tabview_add_tab(tabview, name);
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lv_obj_set_flex_flow(tab, LV_FLEX_FLOW_COLUMN);
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lv_obj_set_style_pad_row(tab, 0, LV_STATE_DEFAULT);
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lv_obj_set_style_border_width(tab, 0, LV_STATE_DEFAULT);
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return tab;
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}
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struct Context {
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uint32_t appInstanceId;
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std::unique_ptr<Timer> memoryTimer;
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std::unique_ptr<Timer> tasksTimer;
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MemoryBarWidgets internalMemBar;
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MemoryBarWidgets externalMemBar;
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MemoryBarWidgets dataStorageBar;
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MemoryBarWidgets sdcardStorageBar;
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MemoryBarWidgets systemStorageBar;
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lv_obj_t* tasksContainer = nullptr;
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lv_obj_t* psramContainer = nullptr;
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bool hasExternalMem = false;
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bool hasDataStorage = false;
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bool hasSystemStorage = false;
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};
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void updateMemory(Context* ctx) {
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updateMemoryBar(ctx->internalMemBar, getHeapFree(), getHeapTotal());
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if (ctx->hasExternalMem) {
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updateMemoryBar(ctx->externalMemBar, getSpiFree(), getSpiTotal());
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}
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}
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void updateStorage(Context* ctx) {
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#ifdef ESP_PLATFORM
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uint64_t storage_total = 0;
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uint64_t storage_free = 0;
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if (ctx->hasDataStorage) {
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if (esp_vfs_fat_info(file::MOUNT_POINT_DATA, &storage_total, &storage_free) == ESP_OK) {
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updateMemoryBar(ctx->dataStorageBar, storage_free, storage_total);
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}
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}
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std::string sdcard_path;
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if (findFirstMountedSdCardPath(sdcard_path) && esp_vfs_fat_info(sdcard_path.c_str(), &storage_total, &storage_free) == ESP_OK) {
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updateMemoryBar(ctx->sdcardStorageBar, storage_free, storage_total);
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}
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if (ctx->hasSystemStorage) {
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if (esp_vfs_fat_info(file::MOUNT_POINT_SYSTEM, &storage_total, &storage_free) == ESP_OK) {
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updateMemoryBar(ctx->systemStorageBar, storage_free, storage_total);
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}
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}
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#endif
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}
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void updateTasks(Context* ctx) {
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#if configUSE_TRACE_FACILITY
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if (ctx->tasksContainer) {
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updateRtosTasks(ctx->tasksContainer); // Tasks tab: show state
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}
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#endif
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}
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void onBackPressed(lv_event_t* event) {
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auto* ctx = static_cast<Context*>(lv_event_get_user_data(event));
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// Async, non-blocking - must NOT call app_manager_stop() directly here: that bound-waits
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// (thread_join) for this app's own thread to finish, which needs the LVGL lock
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// (window_manager_remove()) - but this callback runs ON the LVGL task, which would
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// deadlock against itself.
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AppEvent closeEvent { .type = APP_EVENT_CLOSE, .timestamp = 0, .result = {} };
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app_event_emit(ctx->appInstanceId, &closeEvent);
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}
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void createWidgets(lv_obj_t* parent, void* userData) {
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auto* ctx = static_cast<Context*>(userData);
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lv_obj_set_flex_flow(parent, LV_FLEX_FLOW_COLUMN);
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lv_obj_set_style_pad_row(parent, 0, LV_STATE_DEFAULT);
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auto* toolbar = lvgl_toolbar_create(parent, "System Info");
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// The global toolbar nav callback only knows how to stop old-model apps.
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lvgl_toolbar_set_nav_action(toolbar, LV_SYMBOL_CLOSE, onBackPressed, ctx);
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auto* wrapper = lv_obj_create(parent);
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lv_obj_set_style_border_width(wrapper, 0, LV_STATE_DEFAULT);
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lv_obj_set_flex_flow(wrapper, LV_FLEX_FLOW_COLUMN);
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lv_obj_set_width(wrapper, LV_PCT(100));
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lv_obj_set_flex_grow(wrapper, 1);
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lv_obj_set_style_pad_all(wrapper, 0, LV_STATE_DEFAULT);
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auto* tabview = lv_tabview_create(wrapper);
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lv_tabview_set_tab_bar_position(tabview, LV_DIR_LEFT);
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auto tab_bar_width = 6 * lvgl_get_text_font_height(FONT_SIZE_DEFAULT);
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lv_tabview_set_tab_bar_size(tabview, tab_bar_width);
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// Create tabs
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auto* memory_tab = createTab(tabview, "Memory");
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auto* storage_tab = createTab(tabview, "Storage");
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auto* tasks_tab = createTab(tabview, "Tasks");
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auto* about_tab = createTab(tabview, "About");
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// Memory tab content
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ctx->internalMemBar = createMemoryBar(memory_tab, "Internal");
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ctx->hasExternalMem = getSpiTotal() > 0;
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if (ctx->hasExternalMem) {
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ctx->externalMemBar = createMemoryBar(memory_tab, "External");
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}
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#ifdef ESP_PLATFORM
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// Storage tab content
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uint64_t storage_total = 0;
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uint64_t storage_free = 0;
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ctx->hasDataStorage = (esp_vfs_fat_info(file::MOUNT_POINT_DATA, &storage_total, &storage_free) == ESP_OK);
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if (ctx->hasDataStorage) {
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ctx->dataStorageBar = createMemoryBar(storage_tab, file::MOUNT_POINT_DATA);
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}
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std::string sdcard_path;
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if (findFirstMountedSdCardPath(sdcard_path) && esp_vfs_fat_info(sdcard_path.c_str(), &storage_total, &storage_free) == ESP_OK) {
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ctx->sdcardStorageBar = createMemoryBar(storage_tab, sdcard_path.c_str());
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}
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if (config::SHOW_SYSTEM_PARTITION) {
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ctx->hasSystemStorage = (esp_vfs_fat_info(file::MOUNT_POINT_SYSTEM, &storage_total, &storage_free) == ESP_OK);
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if (ctx->hasSystemStorage) {
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ctx->systemStorageBar = createMemoryBar(storage_tab, file::MOUNT_POINT_SYSTEM);
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}
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}
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#endif
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#if configUSE_TRACE_FACILITY
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// Tasks tab - container for dynamic updates
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ctx->tasksContainer = lv_obj_create(tasks_tab);
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lv_obj_set_size(ctx->tasksContainer, LV_PCT(100), LV_SIZE_CONTENT);
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lv_obj_set_style_pad_all(ctx->tasksContainer, 8, LV_STATE_DEFAULT);
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lv_obj_set_style_border_width(ctx->tasksContainer, 0, LV_STATE_DEFAULT);
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lv_obj_set_flex_flow(ctx->tasksContainer, LV_FLEX_FLOW_COLUMN);
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lv_obj_set_style_bg_opa(ctx->tasksContainer, 0, LV_STATE_DEFAULT);
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#endif
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// Build info
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auto* tactility_version = lv_label_create(about_tab);
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lv_label_set_text_fmt(tactility_version, "Tactility v%s", TT_VERSION);
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#ifdef ESP_PLATFORM
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auto* esp_idf_version = lv_label_create(about_tab);
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lv_label_set_text_fmt(esp_idf_version, "ESP-IDF v%d.%d.%d", ESP_IDF_VERSION_MAJOR, ESP_IDF_VERSION_MINOR, ESP_IDF_VERSION_PATCH);
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#endif
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auto* device_vendor = lv_label_create(about_tab);
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lv_label_set_text_fmt(device_vendor, "Hardware vendor: %s", CONFIG_TT_DEVICE_VENDOR);
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auto* device_device_name = lv_label_create(about_tab);
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lv_label_set_text_fmt(device_device_name, "Hardware model: %s", CONFIG_TT_DEVICE_NAME_SIMPLE);
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// Initial updates
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updateMemory(ctx);
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updateStorage(ctx); // Storage: one-time update on show (doesn't change frequently)
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updateTasks(ctx);
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}
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int32_t appMain(uint32_t appInstanceId, int argc, char* argv[]) {
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Context ctx {};
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ctx.appInstanceId = appInstanceId;
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// Run for this app instance's whole lifetime (mirrors GpsSettings) - both timers keep the
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// displayed values fresh regardless of whether the app is currently topmost.
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ctx.memoryTimer = std::make_unique<Timer>(Timer::Type::Periodic, millis_to_ticks(10000), [&ctx] {
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lvgl_lock();
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updateMemory(&ctx);
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lvgl_unlock();
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});
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ctx.tasksTimer = std::make_unique<Timer>(Timer::Type::Periodic, millis_to_ticks(15000), [&ctx] {
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lvgl_lock();
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updateTasks(&ctx);
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lvgl_unlock();
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});
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AppEventSubscription sub {};
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sub.app_instance_id = appInstanceId;
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app_event_subscribe(&sub);
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WindowId window = window_manager_create(appInstanceId, createWidgets, &ctx);
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ctx.memoryTimer->start(); // Memory: every 10s
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ctx.tasksTimer->start(); // Tasks/CPU: every 15s
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bool shouldClose = false;
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while (!shouldClose) {
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AppEvent event {};
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if (app_event_await(&sub, &event, portMAX_DELAY) != ERROR_NONE) {
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break;
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}
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switch (event.type) {
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case APP_EVENT_CLOSE:
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app_manager_finish(appInstanceId);
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shouldClose = true;
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break;
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default:
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break;
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}
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}
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ctx.memoryTimer->stop();
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ctx.tasksTimer->stop();
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window_manager_remove(window);
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app_event_unsubscribe(&sub);
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return 0;
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}
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} // namespace
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extern const ::AppManifest manifest = {
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.id = "SystemInfo",
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.name = "System Info",
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.category = APP_CATEGORY_SYSTEM,
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.location = { APP_LOCATION_MEMORY, reinterpret_cast<void*>(appMain) }
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};
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} // namespace
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