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https://github.com/DarkMatterCore/nxdumptool.git
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5cc387c9b6
titleGetApplicationMetadataEntries() and titleGetGameCardApplicationMetadataEntries() will now return dynamically allocated copies of internal pre-filtered / pre-processed arrays, which are generated using the background gamecard thread. This results in less overhead for any potential calls to these functions. Other changes include: * title: rename TitleGameCardApplicationMetadataEntry -> TitleGameCardApplicationMetadata. * title: add `has_patch` field to TitleGameCardApplicationMetadata struct. * title: declare internal TitleApplicationMetadata arrays to hold pre-filtered application metadata. * title: declare internal TitleGameCardApplicationMetadata array to hold pre-processed gamecard application metadata. * title: move filtering logic from titleGetApplicationMetadataEntries() to a new function: titleGenerateFilteredApplicationMetadataPointerArray(). * title: move processing logic from titleGetGameCardApplicationMetadataEntries() to a new function: titleGenerateGameCardApplicationMetadataArray(). * title: rename titleGetPatchVersionString() -> titleGetDisplayVersionString(). * title: add extra debug log messages to some functions. * title: update titleFreeApplicationMetadata() to also free the new internal metadata arrays. * title: update background thread logic in titleGameCardInfoThreadFunc() to also regenerate the pre-filtered application metadata and gamecard application metadata arrays right after a successful call to titleRefreshGameCardTitleInfo(). * title: update titleGetDisplayVersionString() to also support base application titles. * title: simplify string generation logic in titleGenerateGameCardFileName() by using the cached gamecard application metadata array. * GameCardStatusTask: add GetGameCardStatus() method. * GameCardTab: fix callback argument type in class constructor. * GameCardTab: update ProcessGameCardStatus() to block user inputs while processing the new gamecard status. * RootView: add GetGameCardStatus() method. * StatusInfoTask: turn IsInternetConnectionAvailable() into an inline method. * TitleMetadataTask: turn GetApplicationMetadata() into an inline method. * TitleMetadataTask: move debug log messages around. * TitlesTab: update PopulateList() to block user inputs while updating the titles list. * UmsTask: turn GetUmsDevices() into an inline method. * UsbHostTask: turn GetUsbHostSpeed() into an inline method.
97 lines
3.4 KiB
C++
97 lines
3.4 KiB
C++
/*
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* ums_task.cpp
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*
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* Copyright (c) 2020-2024, DarkMatterCore <pabloacurielz@gmail.com>.
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*
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* This file is part of nxdumptool (https://github.com/DarkMatterCore/nxdumptool).
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*
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* nxdumptool is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* nxdumptool is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include <tasks/ums_task.hpp>
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using namespace brls::i18n::literals; /* For _i18n. */
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namespace nxdt::tasks
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{
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UmsTask::UmsTask() : brls::RepeatingTask(REPEATING_TASK_INTERVAL)
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{
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brls::RepeatingTask::start();
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LOG_MSG_DEBUG("UMS task started.");
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}
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UmsTask::~UmsTask()
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{
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/* Clear UMS device vector. */
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this->ums_devices_vector.clear();
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/* Free UMS devices buffer. */
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if (this->ums_devices) free(this->ums_devices);
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LOG_MSG_DEBUG("UMS task stopped.");
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}
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void UmsTask::run(retro_time_t current_time)
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{
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brls::RepeatingTask::run(current_time);
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if (umsIsDeviceInfoUpdated())
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{
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LOG_MSG_DEBUG("UMS device info updated.");
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brls::Application::notify("tasks/notifications/ums_device"_i18n);
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/* Update UMS device vector. */
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this->PopulateUmsDeviceVector();
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/* Fire task event. */
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this->ums_event.fire(this->ums_devices_vector);
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}
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}
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void UmsTask::PopulateUmsDeviceVector(void)
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{
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/* Clear UMS device vector. */
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this->ums_devices_vector.clear();
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/* Free UMS devices buffer. */
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if (this->ums_devices) free(this->ums_devices);
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/* Reset UMS devices counter. */
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this->ums_devices_count = 0;
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/* Get UMS devices. */
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this->ums_devices = umsGetDevices(&(this->ums_devices_count));
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if (this->ums_devices)
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{
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/* Fill UMS device vector. */
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for(u32 i = 0; i < this->ums_devices_count; i++)
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{
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const UsbHsFsDevice *cur_ums_device = &(this->ums_devices[i]);
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int name_len = static_cast<int>(strlen(cur_ums_device->name) - 1);
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std::string ums_info{};
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if (cur_ums_device->product_name[0])
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{
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ums_info = fmt::format("{1:.{0}} ({2}, LUN #{3}, FS#{4}, {5})", name_len, cur_ums_device->name, cur_ums_device->product_name, cur_ums_device->lun, cur_ums_device->fs_idx, LIBUSBHSFS_FS_TYPE_STR(cur_ums_device->fs_type));
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} else {
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ums_info = fmt::format("{1:.{0}} (LUN #{2}, FS#{3}, {4})", name_len, cur_ums_device->name, cur_ums_device->lun, cur_ums_device->fs_idx, LIBUSBHSFS_FS_TYPE_STR(cur_ums_device->fs_type));
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}
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this->ums_devices_vector.push_back(std::make_pair(cur_ums_device, ums_info));
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}
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}
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LOG_MSG_DEBUG("Retrieved info for %u UMS %s.", this->ums_devices_count, this->ums_devices_count == 1 ? "device" : "devices");
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}
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}
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