#include #include #include #include #include #include #include #define TAG "usb_settings" namespace tt::app::usbsettings { extern const ::AppManifest manifest; namespace { struct Context { uint32_t appInstanceId; }; void onBackPressed(lv_event_t* event) { auto* ctx = static_cast(lv_event_get_user_data(event)); // Async, non-blocking - must NOT call app_manager_stop() directly here: that bound-waits // (thread_join) for this app's own thread to finish, which needs the LVGL lock // (window_manager_remove()) - but this callback runs ON the LVGL task, which would // deadlock against itself. AppEvent closeEvent { .type = APP_EVENT_CLOSE, .timestamp = 0, .result = {} }; app_event_emit(ctx->appInstanceId, &closeEvent); } void onRebootMassStorageSdmmc(lv_event_t* event) { hal::usb::rebootIntoMassStorageSdmmc(); } // Flash reboot handler void onRebootMassStorageFlash(lv_event_t* event) { hal::usb::rebootIntoMassStorageFlash(); } void createWidgets(lv_obj_t* parent, void* userData) { auto* ctx = static_cast(userData); auto* toolbar = lvgl_toolbar_create(parent, "USB"); // The global toolbar nav callback only knows how to stop old-model apps. lvgl_toolbar_set_nav_action(toolbar, LV_SYMBOL_CLOSE, onBackPressed, ctx); lv_obj_align(toolbar, LV_ALIGN_TOP_MID, 0, 0); // Create a wrapper container for buttons auto* wrapper = lv_obj_create(parent); lv_obj_set_flex_flow(wrapper, LV_FLEX_FLOW_COLUMN); lv_obj_set_flex_align(wrapper, LV_FLEX_ALIGN_CENTER, LV_FLEX_ALIGN_CENTER, LV_FLEX_ALIGN_CENTER); lv_obj_set_size(wrapper, lv_pct(100), LV_SIZE_CONTENT); lv_obj_align(wrapper, LV_ALIGN_CENTER, 0, 0); bool hasSd = hal::usb::canRebootIntoMassStorageSdmmc(); bool hasFlash = hal::usb::canRebootIntoMassStorageFlash(); if (hasSd) { auto* button_sd = lv_button_create(wrapper); auto* label_sd = lv_label_create(button_sd); lv_label_set_text(label_sd, "Reboot as USB storage (SD)"); lv_obj_add_event_cb(button_sd, onRebootMassStorageSdmmc, LV_EVENT_SHORT_CLICKED, nullptr); } if (hasFlash) { auto* button_flash = lv_button_create(wrapper); auto* label_flash = lv_label_create(button_flash); lv_label_set_text(label_flash, "Reboot as USB storage (Flash)"); lv_obj_add_event_cb(button_flash, onRebootMassStorageFlash, LV_EVENT_SHORT_CLICKED, nullptr); } if (!hasSd && !hasFlash) { bool supported = hal::usb::isSupported(); const char* message = supported ? "USB storage not available" : "USB driver not supported"; auto* label = lv_label_create(wrapper); lv_label_set_text(label, message); } } int32_t appMain(uint32_t appInstanceId, int argc, char* argv[]) { Context ctx {}; ctx.appInstanceId = appInstanceId; AppEventSubscription sub {}; sub.app_instance_id = appInstanceId; app_event_subscribe(&sub); WindowId window = window_manager_create(appInstanceId, createWidgets, &ctx); bool shouldClose = false; while (!shouldClose) { AppEvent event {}; if (app_event_await(&sub, &event, portMAX_DELAY) != ERROR_NONE) { break; } switch (event.type) { case APP_EVENT_CLOSE: shouldClose = true; break; default: break; } } window_manager_remove(window); app_event_unsubscribe(&sub); return 0; } } // namespace extern const ::AppManifest manifest = { .id = "tactility.usbsettings", .name = "USB", .category = APP_CATEGORY_SETTINGS, .location = { APP_LOCATION_MEMORY, reinterpret_cast(appMain) } }; } // namespace